arm_neon.h 2.3 MB

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  1. /*===---- arm_neon.h - ARM Neon intrinsics ---------------------------------===
  2. *
  3. * Permission is hereby granted, free of charge, to any person obtaining a copy
  4. * of this software and associated documentation files (the "Software"), to deal
  5. * in the Software without restriction, including without limitation the rights
  6. * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
  7. * copies of the Software, and to permit persons to whom the Software is
  8. * furnished to do so, subject to the following conditions:
  9. *
  10. * The above copyright notice and this permission notice shall be included in
  11. * all copies or substantial portions of the Software.
  12. *
  13. * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
  14. * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
  15. * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
  16. * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
  17. * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
  18. * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
  19. * THE SOFTWARE.
  20. *
  21. *===-----------------------------------------------------------------------===
  22. */
  23. #ifndef __ARM_NEON_H
  24. #define __ARM_NEON_H
  25. #if !defined(__ARM_NEON)
  26. #error "NEON support not enabled"
  27. #endif
  28. #include <stdint.h>
  29. typedef float float32_t;
  30. typedef __fp16 float16_t;
  31. #ifdef __aarch64__
  32. typedef double float64_t;
  33. #endif
  34. #ifdef __aarch64__
  35. typedef uint8_t poly8_t;
  36. typedef uint16_t poly16_t;
  37. typedef uint64_t poly64_t;
  38. typedef __uint128_t poly128_t;
  39. #else
  40. typedef int8_t poly8_t;
  41. typedef int16_t poly16_t;
  42. #endif
  43. typedef __attribute__((neon_vector_type(8))) int8_t int8x8_t;
  44. typedef __attribute__((neon_vector_type(16))) int8_t int8x16_t;
  45. typedef __attribute__((neon_vector_type(4))) int16_t int16x4_t;
  46. typedef __attribute__((neon_vector_type(8))) int16_t int16x8_t;
  47. typedef __attribute__((neon_vector_type(2))) int32_t int32x2_t;
  48. typedef __attribute__((neon_vector_type(4))) int32_t int32x4_t;
  49. typedef __attribute__((neon_vector_type(1))) int64_t int64x1_t;
  50. typedef __attribute__((neon_vector_type(2))) int64_t int64x2_t;
  51. typedef __attribute__((neon_vector_type(8))) uint8_t uint8x8_t;
  52. typedef __attribute__((neon_vector_type(16))) uint8_t uint8x16_t;
  53. typedef __attribute__((neon_vector_type(4))) uint16_t uint16x4_t;
  54. typedef __attribute__((neon_vector_type(8))) uint16_t uint16x8_t;
  55. typedef __attribute__((neon_vector_type(2))) uint32_t uint32x2_t;
  56. typedef __attribute__((neon_vector_type(4))) uint32_t uint32x4_t;
  57. typedef __attribute__((neon_vector_type(1))) uint64_t uint64x1_t;
  58. typedef __attribute__((neon_vector_type(2))) uint64_t uint64x2_t;
  59. typedef __attribute__((neon_vector_type(4))) float16_t float16x4_t;
  60. typedef __attribute__((neon_vector_type(8))) float16_t float16x8_t;
  61. typedef __attribute__((neon_vector_type(2))) float32_t float32x2_t;
  62. typedef __attribute__((neon_vector_type(4))) float32_t float32x4_t;
  63. #ifdef __aarch64__
  64. typedef __attribute__((neon_vector_type(1))) float64_t float64x1_t;
  65. typedef __attribute__((neon_vector_type(2))) float64_t float64x2_t;
  66. #endif
  67. typedef __attribute__((neon_polyvector_type(8))) poly8_t poly8x8_t;
  68. typedef __attribute__((neon_polyvector_type(16))) poly8_t poly8x16_t;
  69. typedef __attribute__((neon_polyvector_type(4))) poly16_t poly16x4_t;
  70. typedef __attribute__((neon_polyvector_type(8))) poly16_t poly16x8_t;
  71. #ifdef __aarch64__
  72. typedef __attribute__((neon_polyvector_type(1))) poly64_t poly64x1_t;
  73. typedef __attribute__((neon_polyvector_type(2))) poly64_t poly64x2_t;
  74. #endif
  75. typedef struct int8x8x2_t {
  76. int8x8_t val[2];
  77. } int8x8x2_t;
  78. typedef struct int8x16x2_t {
  79. int8x16_t val[2];
  80. } int8x16x2_t;
  81. typedef struct int16x4x2_t {
  82. int16x4_t val[2];
  83. } int16x4x2_t;
  84. typedef struct int16x8x2_t {
  85. int16x8_t val[2];
  86. } int16x8x2_t;
  87. typedef struct int32x2x2_t {
  88. int32x2_t val[2];
  89. } int32x2x2_t;
  90. typedef struct int32x4x2_t {
  91. int32x4_t val[2];
  92. } int32x4x2_t;
  93. typedef struct int64x1x2_t {
  94. int64x1_t val[2];
  95. } int64x1x2_t;
  96. typedef struct int64x2x2_t {
  97. int64x2_t val[2];
  98. } int64x2x2_t;
  99. typedef struct uint8x8x2_t {
  100. uint8x8_t val[2];
  101. } uint8x8x2_t;
  102. typedef struct uint8x16x2_t {
  103. uint8x16_t val[2];
  104. } uint8x16x2_t;
  105. typedef struct uint16x4x2_t {
  106. uint16x4_t val[2];
  107. } uint16x4x2_t;
  108. typedef struct uint16x8x2_t {
  109. uint16x8_t val[2];
  110. } uint16x8x2_t;
  111. typedef struct uint32x2x2_t {
  112. uint32x2_t val[2];
  113. } uint32x2x2_t;
  114. typedef struct uint32x4x2_t {
  115. uint32x4_t val[2];
  116. } uint32x4x2_t;
  117. typedef struct uint64x1x2_t {
  118. uint64x1_t val[2];
  119. } uint64x1x2_t;
  120. typedef struct uint64x2x2_t {
  121. uint64x2_t val[2];
  122. } uint64x2x2_t;
  123. typedef struct float16x4x2_t {
  124. float16x4_t val[2];
  125. } float16x4x2_t;
  126. typedef struct float16x8x2_t {
  127. float16x8_t val[2];
  128. } float16x8x2_t;
  129. typedef struct float32x2x2_t {
  130. float32x2_t val[2];
  131. } float32x2x2_t;
  132. typedef struct float32x4x2_t {
  133. float32x4_t val[2];
  134. } float32x4x2_t;
  135. #ifdef __aarch64__
  136. typedef struct float64x1x2_t {
  137. float64x1_t val[2];
  138. } float64x1x2_t;
  139. typedef struct float64x2x2_t {
  140. float64x2_t val[2];
  141. } float64x2x2_t;
  142. #endif
  143. typedef struct poly8x8x2_t {
  144. poly8x8_t val[2];
  145. } poly8x8x2_t;
  146. typedef struct poly8x16x2_t {
  147. poly8x16_t val[2];
  148. } poly8x16x2_t;
  149. typedef struct poly16x4x2_t {
  150. poly16x4_t val[2];
  151. } poly16x4x2_t;
  152. typedef struct poly16x8x2_t {
  153. poly16x8_t val[2];
  154. } poly16x8x2_t;
  155. #ifdef __aarch64__
  156. typedef struct poly64x1x2_t {
  157. poly64x1_t val[2];
  158. } poly64x1x2_t;
  159. typedef struct poly64x2x2_t {
  160. poly64x2_t val[2];
  161. } poly64x2x2_t;
  162. #endif
  163. typedef struct int8x8x3_t {
  164. int8x8_t val[3];
  165. } int8x8x3_t;
  166. typedef struct int8x16x3_t {
  167. int8x16_t val[3];
  168. } int8x16x3_t;
  169. typedef struct int16x4x3_t {
  170. int16x4_t val[3];
  171. } int16x4x3_t;
  172. typedef struct int16x8x3_t {
  173. int16x8_t val[3];
  174. } int16x8x3_t;
  175. typedef struct int32x2x3_t {
  176. int32x2_t val[3];
  177. } int32x2x3_t;
  178. typedef struct int32x4x3_t {
  179. int32x4_t val[3];
  180. } int32x4x3_t;
  181. typedef struct int64x1x3_t {
  182. int64x1_t val[3];
  183. } int64x1x3_t;
  184. typedef struct int64x2x3_t {
  185. int64x2_t val[3];
  186. } int64x2x3_t;
  187. typedef struct uint8x8x3_t {
  188. uint8x8_t val[3];
  189. } uint8x8x3_t;
  190. typedef struct uint8x16x3_t {
  191. uint8x16_t val[3];
  192. } uint8x16x3_t;
  193. typedef struct uint16x4x3_t {
  194. uint16x4_t val[3];
  195. } uint16x4x3_t;
  196. typedef struct uint16x8x3_t {
  197. uint16x8_t val[3];
  198. } uint16x8x3_t;
  199. typedef struct uint32x2x3_t {
  200. uint32x2_t val[3];
  201. } uint32x2x3_t;
  202. typedef struct uint32x4x3_t {
  203. uint32x4_t val[3];
  204. } uint32x4x3_t;
  205. typedef struct uint64x1x3_t {
  206. uint64x1_t val[3];
  207. } uint64x1x3_t;
  208. typedef struct uint64x2x3_t {
  209. uint64x2_t val[3];
  210. } uint64x2x3_t;
  211. typedef struct float16x4x3_t {
  212. float16x4_t val[3];
  213. } float16x4x3_t;
  214. typedef struct float16x8x3_t {
  215. float16x8_t val[3];
  216. } float16x8x3_t;
  217. typedef struct float32x2x3_t {
  218. float32x2_t val[3];
  219. } float32x2x3_t;
  220. typedef struct float32x4x3_t {
  221. float32x4_t val[3];
  222. } float32x4x3_t;
  223. #ifdef __aarch64__
  224. typedef struct float64x1x3_t {
  225. float64x1_t val[3];
  226. } float64x1x3_t;
  227. typedef struct float64x2x3_t {
  228. float64x2_t val[3];
  229. } float64x2x3_t;
  230. #endif
  231. typedef struct poly8x8x3_t {
  232. poly8x8_t val[3];
  233. } poly8x8x3_t;
  234. typedef struct poly8x16x3_t {
  235. poly8x16_t val[3];
  236. } poly8x16x3_t;
  237. typedef struct poly16x4x3_t {
  238. poly16x4_t val[3];
  239. } poly16x4x3_t;
  240. typedef struct poly16x8x3_t {
  241. poly16x8_t val[3];
  242. } poly16x8x3_t;
  243. #ifdef __aarch64__
  244. typedef struct poly64x1x3_t {
  245. poly64x1_t val[3];
  246. } poly64x1x3_t;
  247. typedef struct poly64x2x3_t {
  248. poly64x2_t val[3];
  249. } poly64x2x3_t;
  250. #endif
  251. typedef struct int8x8x4_t {
  252. int8x8_t val[4];
  253. } int8x8x4_t;
  254. typedef struct int8x16x4_t {
  255. int8x16_t val[4];
  256. } int8x16x4_t;
  257. typedef struct int16x4x4_t {
  258. int16x4_t val[4];
  259. } int16x4x4_t;
  260. typedef struct int16x8x4_t {
  261. int16x8_t val[4];
  262. } int16x8x4_t;
  263. typedef struct int32x2x4_t {
  264. int32x2_t val[4];
  265. } int32x2x4_t;
  266. typedef struct int32x4x4_t {
  267. int32x4_t val[4];
  268. } int32x4x4_t;
  269. typedef struct int64x1x4_t {
  270. int64x1_t val[4];
  271. } int64x1x4_t;
  272. typedef struct int64x2x4_t {
  273. int64x2_t val[4];
  274. } int64x2x4_t;
  275. typedef struct uint8x8x4_t {
  276. uint8x8_t val[4];
  277. } uint8x8x4_t;
  278. typedef struct uint8x16x4_t {
  279. uint8x16_t val[4];
  280. } uint8x16x4_t;
  281. typedef struct uint16x4x4_t {
  282. uint16x4_t val[4];
  283. } uint16x4x4_t;
  284. typedef struct uint16x8x4_t {
  285. uint16x8_t val[4];
  286. } uint16x8x4_t;
  287. typedef struct uint32x2x4_t {
  288. uint32x2_t val[4];
  289. } uint32x2x4_t;
  290. typedef struct uint32x4x4_t {
  291. uint32x4_t val[4];
  292. } uint32x4x4_t;
  293. typedef struct uint64x1x4_t {
  294. uint64x1_t val[4];
  295. } uint64x1x4_t;
  296. typedef struct uint64x2x4_t {
  297. uint64x2_t val[4];
  298. } uint64x2x4_t;
  299. typedef struct float16x4x4_t {
  300. float16x4_t val[4];
  301. } float16x4x4_t;
  302. typedef struct float16x8x4_t {
  303. float16x8_t val[4];
  304. } float16x8x4_t;
  305. typedef struct float32x2x4_t {
  306. float32x2_t val[4];
  307. } float32x2x4_t;
  308. typedef struct float32x4x4_t {
  309. float32x4_t val[4];
  310. } float32x4x4_t;
  311. #ifdef __aarch64__
  312. typedef struct float64x1x4_t {
  313. float64x1_t val[4];
  314. } float64x1x4_t;
  315. typedef struct float64x2x4_t {
  316. float64x2_t val[4];
  317. } float64x2x4_t;
  318. #endif
  319. typedef struct poly8x8x4_t {
  320. poly8x8_t val[4];
  321. } poly8x8x4_t;
  322. typedef struct poly8x16x4_t {
  323. poly8x16_t val[4];
  324. } poly8x16x4_t;
  325. typedef struct poly16x4x4_t {
  326. poly16x4_t val[4];
  327. } poly16x4x4_t;
  328. typedef struct poly16x8x4_t {
  329. poly16x8_t val[4];
  330. } poly16x8x4_t;
  331. #ifdef __aarch64__
  332. typedef struct poly64x1x4_t {
  333. poly64x1_t val[4];
  334. } poly64x1x4_t;
  335. typedef struct poly64x2x4_t {
  336. poly64x2_t val[4];
  337. } poly64x2x4_t;
  338. #endif
  339. #define __ai static __inline__ __attribute__((__always_inline__, __nodebug__))
  340. #ifdef __LITTLE_ENDIAN__
  341. __ai uint8x16_t vabdq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  342. uint8x16_t __ret;
  343. __ret = (uint8x16_t) __builtin_neon_vabdq_v((int8x16_t)__p0, (int8x16_t)__p1, 48);
  344. return __ret;
  345. }
  346. #else
  347. __ai uint8x16_t vabdq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  348. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  349. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  350. uint8x16_t __ret;
  351. __ret = (uint8x16_t) __builtin_neon_vabdq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 48);
  352. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  353. return __ret;
  354. }
  355. __ai uint8x16_t __noswap_vabdq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  356. uint8x16_t __ret;
  357. __ret = (uint8x16_t) __builtin_neon_vabdq_v((int8x16_t)__p0, (int8x16_t)__p1, 48);
  358. return __ret;
  359. }
  360. #endif
  361. #ifdef __LITTLE_ENDIAN__
  362. __ai uint32x4_t vabdq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  363. uint32x4_t __ret;
  364. __ret = (uint32x4_t) __builtin_neon_vabdq_v((int8x16_t)__p0, (int8x16_t)__p1, 50);
  365. return __ret;
  366. }
  367. #else
  368. __ai uint32x4_t vabdq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  369. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  370. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  371. uint32x4_t __ret;
  372. __ret = (uint32x4_t) __builtin_neon_vabdq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 50);
  373. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  374. return __ret;
  375. }
  376. __ai uint32x4_t __noswap_vabdq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  377. uint32x4_t __ret;
  378. __ret = (uint32x4_t) __builtin_neon_vabdq_v((int8x16_t)__p0, (int8x16_t)__p1, 50);
  379. return __ret;
  380. }
  381. #endif
  382. #ifdef __LITTLE_ENDIAN__
  383. __ai uint16x8_t vabdq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  384. uint16x8_t __ret;
  385. __ret = (uint16x8_t) __builtin_neon_vabdq_v((int8x16_t)__p0, (int8x16_t)__p1, 49);
  386. return __ret;
  387. }
  388. #else
  389. __ai uint16x8_t vabdq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  390. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  391. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  392. uint16x8_t __ret;
  393. __ret = (uint16x8_t) __builtin_neon_vabdq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 49);
  394. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  395. return __ret;
  396. }
  397. __ai uint16x8_t __noswap_vabdq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  398. uint16x8_t __ret;
  399. __ret = (uint16x8_t) __builtin_neon_vabdq_v((int8x16_t)__p0, (int8x16_t)__p1, 49);
  400. return __ret;
  401. }
  402. #endif
  403. #ifdef __LITTLE_ENDIAN__
  404. __ai int8x16_t vabdq_s8(int8x16_t __p0, int8x16_t __p1) {
  405. int8x16_t __ret;
  406. __ret = (int8x16_t) __builtin_neon_vabdq_v((int8x16_t)__p0, (int8x16_t)__p1, 32);
  407. return __ret;
  408. }
  409. #else
  410. __ai int8x16_t vabdq_s8(int8x16_t __p0, int8x16_t __p1) {
  411. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  412. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  413. int8x16_t __ret;
  414. __ret = (int8x16_t) __builtin_neon_vabdq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 32);
  415. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  416. return __ret;
  417. }
  418. __ai int8x16_t __noswap_vabdq_s8(int8x16_t __p0, int8x16_t __p1) {
  419. int8x16_t __ret;
  420. __ret = (int8x16_t) __builtin_neon_vabdq_v((int8x16_t)__p0, (int8x16_t)__p1, 32);
  421. return __ret;
  422. }
  423. #endif
  424. #ifdef __LITTLE_ENDIAN__
  425. __ai float32x4_t vabdq_f32(float32x4_t __p0, float32x4_t __p1) {
  426. float32x4_t __ret;
  427. __ret = (float32x4_t) __builtin_neon_vabdq_v((int8x16_t)__p0, (int8x16_t)__p1, 41);
  428. return __ret;
  429. }
  430. #else
  431. __ai float32x4_t vabdq_f32(float32x4_t __p0, float32x4_t __p1) {
  432. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  433. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  434. float32x4_t __ret;
  435. __ret = (float32x4_t) __builtin_neon_vabdq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 41);
  436. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  437. return __ret;
  438. }
  439. #endif
  440. #ifdef __LITTLE_ENDIAN__
  441. __ai int32x4_t vabdq_s32(int32x4_t __p0, int32x4_t __p1) {
  442. int32x4_t __ret;
  443. __ret = (int32x4_t) __builtin_neon_vabdq_v((int8x16_t)__p0, (int8x16_t)__p1, 34);
  444. return __ret;
  445. }
  446. #else
  447. __ai int32x4_t vabdq_s32(int32x4_t __p0, int32x4_t __p1) {
  448. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  449. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  450. int32x4_t __ret;
  451. __ret = (int32x4_t) __builtin_neon_vabdq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 34);
  452. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  453. return __ret;
  454. }
  455. __ai int32x4_t __noswap_vabdq_s32(int32x4_t __p0, int32x4_t __p1) {
  456. int32x4_t __ret;
  457. __ret = (int32x4_t) __builtin_neon_vabdq_v((int8x16_t)__p0, (int8x16_t)__p1, 34);
  458. return __ret;
  459. }
  460. #endif
  461. #ifdef __LITTLE_ENDIAN__
  462. __ai int16x8_t vabdq_s16(int16x8_t __p0, int16x8_t __p1) {
  463. int16x8_t __ret;
  464. __ret = (int16x8_t) __builtin_neon_vabdq_v((int8x16_t)__p0, (int8x16_t)__p1, 33);
  465. return __ret;
  466. }
  467. #else
  468. __ai int16x8_t vabdq_s16(int16x8_t __p0, int16x8_t __p1) {
  469. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  470. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  471. int16x8_t __ret;
  472. __ret = (int16x8_t) __builtin_neon_vabdq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 33);
  473. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  474. return __ret;
  475. }
  476. __ai int16x8_t __noswap_vabdq_s16(int16x8_t __p0, int16x8_t __p1) {
  477. int16x8_t __ret;
  478. __ret = (int16x8_t) __builtin_neon_vabdq_v((int8x16_t)__p0, (int8x16_t)__p1, 33);
  479. return __ret;
  480. }
  481. #endif
  482. #ifdef __LITTLE_ENDIAN__
  483. __ai uint8x8_t vabd_u8(uint8x8_t __p0, uint8x8_t __p1) {
  484. uint8x8_t __ret;
  485. __ret = (uint8x8_t) __builtin_neon_vabd_v((int8x8_t)__p0, (int8x8_t)__p1, 16);
  486. return __ret;
  487. }
  488. #else
  489. __ai uint8x8_t vabd_u8(uint8x8_t __p0, uint8x8_t __p1) {
  490. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  491. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  492. uint8x8_t __ret;
  493. __ret = (uint8x8_t) __builtin_neon_vabd_v((int8x8_t)__rev0, (int8x8_t)__rev1, 16);
  494. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  495. return __ret;
  496. }
  497. __ai uint8x8_t __noswap_vabd_u8(uint8x8_t __p0, uint8x8_t __p1) {
  498. uint8x8_t __ret;
  499. __ret = (uint8x8_t) __builtin_neon_vabd_v((int8x8_t)__p0, (int8x8_t)__p1, 16);
  500. return __ret;
  501. }
  502. #endif
  503. #ifdef __LITTLE_ENDIAN__
  504. __ai uint32x2_t vabd_u32(uint32x2_t __p0, uint32x2_t __p1) {
  505. uint32x2_t __ret;
  506. __ret = (uint32x2_t) __builtin_neon_vabd_v((int8x8_t)__p0, (int8x8_t)__p1, 18);
  507. return __ret;
  508. }
  509. #else
  510. __ai uint32x2_t vabd_u32(uint32x2_t __p0, uint32x2_t __p1) {
  511. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  512. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  513. uint32x2_t __ret;
  514. __ret = (uint32x2_t) __builtin_neon_vabd_v((int8x8_t)__rev0, (int8x8_t)__rev1, 18);
  515. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  516. return __ret;
  517. }
  518. __ai uint32x2_t __noswap_vabd_u32(uint32x2_t __p0, uint32x2_t __p1) {
  519. uint32x2_t __ret;
  520. __ret = (uint32x2_t) __builtin_neon_vabd_v((int8x8_t)__p0, (int8x8_t)__p1, 18);
  521. return __ret;
  522. }
  523. #endif
  524. #ifdef __LITTLE_ENDIAN__
  525. __ai uint16x4_t vabd_u16(uint16x4_t __p0, uint16x4_t __p1) {
  526. uint16x4_t __ret;
  527. __ret = (uint16x4_t) __builtin_neon_vabd_v((int8x8_t)__p0, (int8x8_t)__p1, 17);
  528. return __ret;
  529. }
  530. #else
  531. __ai uint16x4_t vabd_u16(uint16x4_t __p0, uint16x4_t __p1) {
  532. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  533. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  534. uint16x4_t __ret;
  535. __ret = (uint16x4_t) __builtin_neon_vabd_v((int8x8_t)__rev0, (int8x8_t)__rev1, 17);
  536. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  537. return __ret;
  538. }
  539. __ai uint16x4_t __noswap_vabd_u16(uint16x4_t __p0, uint16x4_t __p1) {
  540. uint16x4_t __ret;
  541. __ret = (uint16x4_t) __builtin_neon_vabd_v((int8x8_t)__p0, (int8x8_t)__p1, 17);
  542. return __ret;
  543. }
  544. #endif
  545. #ifdef __LITTLE_ENDIAN__
  546. __ai int8x8_t vabd_s8(int8x8_t __p0, int8x8_t __p1) {
  547. int8x8_t __ret;
  548. __ret = (int8x8_t) __builtin_neon_vabd_v((int8x8_t)__p0, (int8x8_t)__p1, 0);
  549. return __ret;
  550. }
  551. #else
  552. __ai int8x8_t vabd_s8(int8x8_t __p0, int8x8_t __p1) {
  553. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  554. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  555. int8x8_t __ret;
  556. __ret = (int8x8_t) __builtin_neon_vabd_v((int8x8_t)__rev0, (int8x8_t)__rev1, 0);
  557. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  558. return __ret;
  559. }
  560. __ai int8x8_t __noswap_vabd_s8(int8x8_t __p0, int8x8_t __p1) {
  561. int8x8_t __ret;
  562. __ret = (int8x8_t) __builtin_neon_vabd_v((int8x8_t)__p0, (int8x8_t)__p1, 0);
  563. return __ret;
  564. }
  565. #endif
  566. #ifdef __LITTLE_ENDIAN__
  567. __ai float32x2_t vabd_f32(float32x2_t __p0, float32x2_t __p1) {
  568. float32x2_t __ret;
  569. __ret = (float32x2_t) __builtin_neon_vabd_v((int8x8_t)__p0, (int8x8_t)__p1, 9);
  570. return __ret;
  571. }
  572. #else
  573. __ai float32x2_t vabd_f32(float32x2_t __p0, float32x2_t __p1) {
  574. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  575. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  576. float32x2_t __ret;
  577. __ret = (float32x2_t) __builtin_neon_vabd_v((int8x8_t)__rev0, (int8x8_t)__rev1, 9);
  578. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  579. return __ret;
  580. }
  581. #endif
  582. #ifdef __LITTLE_ENDIAN__
  583. __ai int32x2_t vabd_s32(int32x2_t __p0, int32x2_t __p1) {
  584. int32x2_t __ret;
  585. __ret = (int32x2_t) __builtin_neon_vabd_v((int8x8_t)__p0, (int8x8_t)__p1, 2);
  586. return __ret;
  587. }
  588. #else
  589. __ai int32x2_t vabd_s32(int32x2_t __p0, int32x2_t __p1) {
  590. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  591. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  592. int32x2_t __ret;
  593. __ret = (int32x2_t) __builtin_neon_vabd_v((int8x8_t)__rev0, (int8x8_t)__rev1, 2);
  594. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  595. return __ret;
  596. }
  597. __ai int32x2_t __noswap_vabd_s32(int32x2_t __p0, int32x2_t __p1) {
  598. int32x2_t __ret;
  599. __ret = (int32x2_t) __builtin_neon_vabd_v((int8x8_t)__p0, (int8x8_t)__p1, 2);
  600. return __ret;
  601. }
  602. #endif
  603. #ifdef __LITTLE_ENDIAN__
  604. __ai int16x4_t vabd_s16(int16x4_t __p0, int16x4_t __p1) {
  605. int16x4_t __ret;
  606. __ret = (int16x4_t) __builtin_neon_vabd_v((int8x8_t)__p0, (int8x8_t)__p1, 1);
  607. return __ret;
  608. }
  609. #else
  610. __ai int16x4_t vabd_s16(int16x4_t __p0, int16x4_t __p1) {
  611. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  612. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  613. int16x4_t __ret;
  614. __ret = (int16x4_t) __builtin_neon_vabd_v((int8x8_t)__rev0, (int8x8_t)__rev1, 1);
  615. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  616. return __ret;
  617. }
  618. __ai int16x4_t __noswap_vabd_s16(int16x4_t __p0, int16x4_t __p1) {
  619. int16x4_t __ret;
  620. __ret = (int16x4_t) __builtin_neon_vabd_v((int8x8_t)__p0, (int8x8_t)__p1, 1);
  621. return __ret;
  622. }
  623. #endif
  624. #ifdef __LITTLE_ENDIAN__
  625. __ai int8x16_t vabsq_s8(int8x16_t __p0) {
  626. int8x16_t __ret;
  627. __ret = (int8x16_t) __builtin_neon_vabsq_v((int8x16_t)__p0, 32);
  628. return __ret;
  629. }
  630. #else
  631. __ai int8x16_t vabsq_s8(int8x16_t __p0) {
  632. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  633. int8x16_t __ret;
  634. __ret = (int8x16_t) __builtin_neon_vabsq_v((int8x16_t)__rev0, 32);
  635. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  636. return __ret;
  637. }
  638. #endif
  639. #ifdef __LITTLE_ENDIAN__
  640. __ai float32x4_t vabsq_f32(float32x4_t __p0) {
  641. float32x4_t __ret;
  642. __ret = (float32x4_t) __builtin_neon_vabsq_v((int8x16_t)__p0, 41);
  643. return __ret;
  644. }
  645. #else
  646. __ai float32x4_t vabsq_f32(float32x4_t __p0) {
  647. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  648. float32x4_t __ret;
  649. __ret = (float32x4_t) __builtin_neon_vabsq_v((int8x16_t)__rev0, 41);
  650. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  651. return __ret;
  652. }
  653. #endif
  654. #ifdef __LITTLE_ENDIAN__
  655. __ai int32x4_t vabsq_s32(int32x4_t __p0) {
  656. int32x4_t __ret;
  657. __ret = (int32x4_t) __builtin_neon_vabsq_v((int8x16_t)__p0, 34);
  658. return __ret;
  659. }
  660. #else
  661. __ai int32x4_t vabsq_s32(int32x4_t __p0) {
  662. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  663. int32x4_t __ret;
  664. __ret = (int32x4_t) __builtin_neon_vabsq_v((int8x16_t)__rev0, 34);
  665. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  666. return __ret;
  667. }
  668. #endif
  669. #ifdef __LITTLE_ENDIAN__
  670. __ai int16x8_t vabsq_s16(int16x8_t __p0) {
  671. int16x8_t __ret;
  672. __ret = (int16x8_t) __builtin_neon_vabsq_v((int8x16_t)__p0, 33);
  673. return __ret;
  674. }
  675. #else
  676. __ai int16x8_t vabsq_s16(int16x8_t __p0) {
  677. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  678. int16x8_t __ret;
  679. __ret = (int16x8_t) __builtin_neon_vabsq_v((int8x16_t)__rev0, 33);
  680. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  681. return __ret;
  682. }
  683. #endif
  684. #ifdef __LITTLE_ENDIAN__
  685. __ai int8x8_t vabs_s8(int8x8_t __p0) {
  686. int8x8_t __ret;
  687. __ret = (int8x8_t) __builtin_neon_vabs_v((int8x8_t)__p0, 0);
  688. return __ret;
  689. }
  690. #else
  691. __ai int8x8_t vabs_s8(int8x8_t __p0) {
  692. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  693. int8x8_t __ret;
  694. __ret = (int8x8_t) __builtin_neon_vabs_v((int8x8_t)__rev0, 0);
  695. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  696. return __ret;
  697. }
  698. #endif
  699. #ifdef __LITTLE_ENDIAN__
  700. __ai float32x2_t vabs_f32(float32x2_t __p0) {
  701. float32x2_t __ret;
  702. __ret = (float32x2_t) __builtin_neon_vabs_v((int8x8_t)__p0, 9);
  703. return __ret;
  704. }
  705. #else
  706. __ai float32x2_t vabs_f32(float32x2_t __p0) {
  707. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  708. float32x2_t __ret;
  709. __ret = (float32x2_t) __builtin_neon_vabs_v((int8x8_t)__rev0, 9);
  710. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  711. return __ret;
  712. }
  713. #endif
  714. #ifdef __LITTLE_ENDIAN__
  715. __ai int32x2_t vabs_s32(int32x2_t __p0) {
  716. int32x2_t __ret;
  717. __ret = (int32x2_t) __builtin_neon_vabs_v((int8x8_t)__p0, 2);
  718. return __ret;
  719. }
  720. #else
  721. __ai int32x2_t vabs_s32(int32x2_t __p0) {
  722. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  723. int32x2_t __ret;
  724. __ret = (int32x2_t) __builtin_neon_vabs_v((int8x8_t)__rev0, 2);
  725. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  726. return __ret;
  727. }
  728. #endif
  729. #ifdef __LITTLE_ENDIAN__
  730. __ai int16x4_t vabs_s16(int16x4_t __p0) {
  731. int16x4_t __ret;
  732. __ret = (int16x4_t) __builtin_neon_vabs_v((int8x8_t)__p0, 1);
  733. return __ret;
  734. }
  735. #else
  736. __ai int16x4_t vabs_s16(int16x4_t __p0) {
  737. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  738. int16x4_t __ret;
  739. __ret = (int16x4_t) __builtin_neon_vabs_v((int8x8_t)__rev0, 1);
  740. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  741. return __ret;
  742. }
  743. #endif
  744. #ifdef __LITTLE_ENDIAN__
  745. __ai uint8x16_t vaddq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  746. uint8x16_t __ret;
  747. __ret = __p0 + __p1;
  748. return __ret;
  749. }
  750. #else
  751. __ai uint8x16_t vaddq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  752. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  753. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  754. uint8x16_t __ret;
  755. __ret = __rev0 + __rev1;
  756. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  757. return __ret;
  758. }
  759. #endif
  760. #ifdef __LITTLE_ENDIAN__
  761. __ai uint32x4_t vaddq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  762. uint32x4_t __ret;
  763. __ret = __p0 + __p1;
  764. return __ret;
  765. }
  766. #else
  767. __ai uint32x4_t vaddq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  768. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  769. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  770. uint32x4_t __ret;
  771. __ret = __rev0 + __rev1;
  772. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  773. return __ret;
  774. }
  775. #endif
  776. #ifdef __LITTLE_ENDIAN__
  777. __ai uint64x2_t vaddq_u64(uint64x2_t __p0, uint64x2_t __p1) {
  778. uint64x2_t __ret;
  779. __ret = __p0 + __p1;
  780. return __ret;
  781. }
  782. #else
  783. __ai uint64x2_t vaddq_u64(uint64x2_t __p0, uint64x2_t __p1) {
  784. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  785. uint64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  786. uint64x2_t __ret;
  787. __ret = __rev0 + __rev1;
  788. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  789. return __ret;
  790. }
  791. #endif
  792. #ifdef __LITTLE_ENDIAN__
  793. __ai uint16x8_t vaddq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  794. uint16x8_t __ret;
  795. __ret = __p0 + __p1;
  796. return __ret;
  797. }
  798. #else
  799. __ai uint16x8_t vaddq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  800. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  801. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  802. uint16x8_t __ret;
  803. __ret = __rev0 + __rev1;
  804. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  805. return __ret;
  806. }
  807. #endif
  808. #ifdef __LITTLE_ENDIAN__
  809. __ai int8x16_t vaddq_s8(int8x16_t __p0, int8x16_t __p1) {
  810. int8x16_t __ret;
  811. __ret = __p0 + __p1;
  812. return __ret;
  813. }
  814. #else
  815. __ai int8x16_t vaddq_s8(int8x16_t __p0, int8x16_t __p1) {
  816. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  817. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  818. int8x16_t __ret;
  819. __ret = __rev0 + __rev1;
  820. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  821. return __ret;
  822. }
  823. #endif
  824. #ifdef __LITTLE_ENDIAN__
  825. __ai float32x4_t vaddq_f32(float32x4_t __p0, float32x4_t __p1) {
  826. float32x4_t __ret;
  827. __ret = __p0 + __p1;
  828. return __ret;
  829. }
  830. #else
  831. __ai float32x4_t vaddq_f32(float32x4_t __p0, float32x4_t __p1) {
  832. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  833. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  834. float32x4_t __ret;
  835. __ret = __rev0 + __rev1;
  836. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  837. return __ret;
  838. }
  839. #endif
  840. #ifdef __LITTLE_ENDIAN__
  841. __ai int32x4_t vaddq_s32(int32x4_t __p0, int32x4_t __p1) {
  842. int32x4_t __ret;
  843. __ret = __p0 + __p1;
  844. return __ret;
  845. }
  846. #else
  847. __ai int32x4_t vaddq_s32(int32x4_t __p0, int32x4_t __p1) {
  848. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  849. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  850. int32x4_t __ret;
  851. __ret = __rev0 + __rev1;
  852. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  853. return __ret;
  854. }
  855. #endif
  856. #ifdef __LITTLE_ENDIAN__
  857. __ai int64x2_t vaddq_s64(int64x2_t __p0, int64x2_t __p1) {
  858. int64x2_t __ret;
  859. __ret = __p0 + __p1;
  860. return __ret;
  861. }
  862. #else
  863. __ai int64x2_t vaddq_s64(int64x2_t __p0, int64x2_t __p1) {
  864. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  865. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  866. int64x2_t __ret;
  867. __ret = __rev0 + __rev1;
  868. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  869. return __ret;
  870. }
  871. #endif
  872. #ifdef __LITTLE_ENDIAN__
  873. __ai int16x8_t vaddq_s16(int16x8_t __p0, int16x8_t __p1) {
  874. int16x8_t __ret;
  875. __ret = __p0 + __p1;
  876. return __ret;
  877. }
  878. #else
  879. __ai int16x8_t vaddq_s16(int16x8_t __p0, int16x8_t __p1) {
  880. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  881. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  882. int16x8_t __ret;
  883. __ret = __rev0 + __rev1;
  884. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  885. return __ret;
  886. }
  887. #endif
  888. #ifdef __LITTLE_ENDIAN__
  889. __ai uint8x8_t vadd_u8(uint8x8_t __p0, uint8x8_t __p1) {
  890. uint8x8_t __ret;
  891. __ret = __p0 + __p1;
  892. return __ret;
  893. }
  894. #else
  895. __ai uint8x8_t vadd_u8(uint8x8_t __p0, uint8x8_t __p1) {
  896. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  897. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  898. uint8x8_t __ret;
  899. __ret = __rev0 + __rev1;
  900. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  901. return __ret;
  902. }
  903. #endif
  904. #ifdef __LITTLE_ENDIAN__
  905. __ai uint32x2_t vadd_u32(uint32x2_t __p0, uint32x2_t __p1) {
  906. uint32x2_t __ret;
  907. __ret = __p0 + __p1;
  908. return __ret;
  909. }
  910. #else
  911. __ai uint32x2_t vadd_u32(uint32x2_t __p0, uint32x2_t __p1) {
  912. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  913. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  914. uint32x2_t __ret;
  915. __ret = __rev0 + __rev1;
  916. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  917. return __ret;
  918. }
  919. #endif
  920. #ifdef __LITTLE_ENDIAN__
  921. __ai uint64x1_t vadd_u64(uint64x1_t __p0, uint64x1_t __p1) {
  922. uint64x1_t __ret;
  923. __ret = __p0 + __p1;
  924. return __ret;
  925. }
  926. #else
  927. __ai uint64x1_t vadd_u64(uint64x1_t __p0, uint64x1_t __p1) {
  928. uint64x1_t __ret;
  929. __ret = __p0 + __p1;
  930. return __ret;
  931. }
  932. #endif
  933. #ifdef __LITTLE_ENDIAN__
  934. __ai uint16x4_t vadd_u16(uint16x4_t __p0, uint16x4_t __p1) {
  935. uint16x4_t __ret;
  936. __ret = __p0 + __p1;
  937. return __ret;
  938. }
  939. #else
  940. __ai uint16x4_t vadd_u16(uint16x4_t __p0, uint16x4_t __p1) {
  941. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  942. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  943. uint16x4_t __ret;
  944. __ret = __rev0 + __rev1;
  945. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  946. return __ret;
  947. }
  948. #endif
  949. #ifdef __LITTLE_ENDIAN__
  950. __ai int8x8_t vadd_s8(int8x8_t __p0, int8x8_t __p1) {
  951. int8x8_t __ret;
  952. __ret = __p0 + __p1;
  953. return __ret;
  954. }
  955. #else
  956. __ai int8x8_t vadd_s8(int8x8_t __p0, int8x8_t __p1) {
  957. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  958. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  959. int8x8_t __ret;
  960. __ret = __rev0 + __rev1;
  961. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  962. return __ret;
  963. }
  964. #endif
  965. #ifdef __LITTLE_ENDIAN__
  966. __ai float32x2_t vadd_f32(float32x2_t __p0, float32x2_t __p1) {
  967. float32x2_t __ret;
  968. __ret = __p0 + __p1;
  969. return __ret;
  970. }
  971. #else
  972. __ai float32x2_t vadd_f32(float32x2_t __p0, float32x2_t __p1) {
  973. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  974. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  975. float32x2_t __ret;
  976. __ret = __rev0 + __rev1;
  977. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  978. return __ret;
  979. }
  980. #endif
  981. #ifdef __LITTLE_ENDIAN__
  982. __ai int32x2_t vadd_s32(int32x2_t __p0, int32x2_t __p1) {
  983. int32x2_t __ret;
  984. __ret = __p0 + __p1;
  985. return __ret;
  986. }
  987. #else
  988. __ai int32x2_t vadd_s32(int32x2_t __p0, int32x2_t __p1) {
  989. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  990. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  991. int32x2_t __ret;
  992. __ret = __rev0 + __rev1;
  993. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  994. return __ret;
  995. }
  996. #endif
  997. #ifdef __LITTLE_ENDIAN__
  998. __ai int64x1_t vadd_s64(int64x1_t __p0, int64x1_t __p1) {
  999. int64x1_t __ret;
  1000. __ret = __p0 + __p1;
  1001. return __ret;
  1002. }
  1003. #else
  1004. __ai int64x1_t vadd_s64(int64x1_t __p0, int64x1_t __p1) {
  1005. int64x1_t __ret;
  1006. __ret = __p0 + __p1;
  1007. return __ret;
  1008. }
  1009. #endif
  1010. #ifdef __LITTLE_ENDIAN__
  1011. __ai int16x4_t vadd_s16(int16x4_t __p0, int16x4_t __p1) {
  1012. int16x4_t __ret;
  1013. __ret = __p0 + __p1;
  1014. return __ret;
  1015. }
  1016. #else
  1017. __ai int16x4_t vadd_s16(int16x4_t __p0, int16x4_t __p1) {
  1018. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  1019. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  1020. int16x4_t __ret;
  1021. __ret = __rev0 + __rev1;
  1022. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  1023. return __ret;
  1024. }
  1025. #endif
  1026. #ifdef __LITTLE_ENDIAN__
  1027. __ai uint16x4_t vaddhn_u32(uint32x4_t __p0, uint32x4_t __p1) {
  1028. uint16x4_t __ret;
  1029. __ret = (uint16x4_t) __builtin_neon_vaddhn_v((int8x16_t)__p0, (int8x16_t)__p1, 17);
  1030. return __ret;
  1031. }
  1032. #else
  1033. __ai uint16x4_t vaddhn_u32(uint32x4_t __p0, uint32x4_t __p1) {
  1034. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  1035. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  1036. uint16x4_t __ret;
  1037. __ret = (uint16x4_t) __builtin_neon_vaddhn_v((int8x16_t)__rev0, (int8x16_t)__rev1, 17);
  1038. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  1039. return __ret;
  1040. }
  1041. __ai uint16x4_t __noswap_vaddhn_u32(uint32x4_t __p0, uint32x4_t __p1) {
  1042. uint16x4_t __ret;
  1043. __ret = (uint16x4_t) __builtin_neon_vaddhn_v((int8x16_t)__p0, (int8x16_t)__p1, 17);
  1044. return __ret;
  1045. }
  1046. #endif
  1047. #ifdef __LITTLE_ENDIAN__
  1048. __ai uint32x2_t vaddhn_u64(uint64x2_t __p0, uint64x2_t __p1) {
  1049. uint32x2_t __ret;
  1050. __ret = (uint32x2_t) __builtin_neon_vaddhn_v((int8x16_t)__p0, (int8x16_t)__p1, 18);
  1051. return __ret;
  1052. }
  1053. #else
  1054. __ai uint32x2_t vaddhn_u64(uint64x2_t __p0, uint64x2_t __p1) {
  1055. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  1056. uint64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  1057. uint32x2_t __ret;
  1058. __ret = (uint32x2_t) __builtin_neon_vaddhn_v((int8x16_t)__rev0, (int8x16_t)__rev1, 18);
  1059. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  1060. return __ret;
  1061. }
  1062. __ai uint32x2_t __noswap_vaddhn_u64(uint64x2_t __p0, uint64x2_t __p1) {
  1063. uint32x2_t __ret;
  1064. __ret = (uint32x2_t) __builtin_neon_vaddhn_v((int8x16_t)__p0, (int8x16_t)__p1, 18);
  1065. return __ret;
  1066. }
  1067. #endif
  1068. #ifdef __LITTLE_ENDIAN__
  1069. __ai uint8x8_t vaddhn_u16(uint16x8_t __p0, uint16x8_t __p1) {
  1070. uint8x8_t __ret;
  1071. __ret = (uint8x8_t) __builtin_neon_vaddhn_v((int8x16_t)__p0, (int8x16_t)__p1, 16);
  1072. return __ret;
  1073. }
  1074. #else
  1075. __ai uint8x8_t vaddhn_u16(uint16x8_t __p0, uint16x8_t __p1) {
  1076. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  1077. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  1078. uint8x8_t __ret;
  1079. __ret = (uint8x8_t) __builtin_neon_vaddhn_v((int8x16_t)__rev0, (int8x16_t)__rev1, 16);
  1080. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  1081. return __ret;
  1082. }
  1083. __ai uint8x8_t __noswap_vaddhn_u16(uint16x8_t __p0, uint16x8_t __p1) {
  1084. uint8x8_t __ret;
  1085. __ret = (uint8x8_t) __builtin_neon_vaddhn_v((int8x16_t)__p0, (int8x16_t)__p1, 16);
  1086. return __ret;
  1087. }
  1088. #endif
  1089. #ifdef __LITTLE_ENDIAN__
  1090. __ai int16x4_t vaddhn_s32(int32x4_t __p0, int32x4_t __p1) {
  1091. int16x4_t __ret;
  1092. __ret = (int16x4_t) __builtin_neon_vaddhn_v((int8x16_t)__p0, (int8x16_t)__p1, 1);
  1093. return __ret;
  1094. }
  1095. #else
  1096. __ai int16x4_t vaddhn_s32(int32x4_t __p0, int32x4_t __p1) {
  1097. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  1098. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  1099. int16x4_t __ret;
  1100. __ret = (int16x4_t) __builtin_neon_vaddhn_v((int8x16_t)__rev0, (int8x16_t)__rev1, 1);
  1101. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  1102. return __ret;
  1103. }
  1104. __ai int16x4_t __noswap_vaddhn_s32(int32x4_t __p0, int32x4_t __p1) {
  1105. int16x4_t __ret;
  1106. __ret = (int16x4_t) __builtin_neon_vaddhn_v((int8x16_t)__p0, (int8x16_t)__p1, 1);
  1107. return __ret;
  1108. }
  1109. #endif
  1110. #ifdef __LITTLE_ENDIAN__
  1111. __ai int32x2_t vaddhn_s64(int64x2_t __p0, int64x2_t __p1) {
  1112. int32x2_t __ret;
  1113. __ret = (int32x2_t) __builtin_neon_vaddhn_v((int8x16_t)__p0, (int8x16_t)__p1, 2);
  1114. return __ret;
  1115. }
  1116. #else
  1117. __ai int32x2_t vaddhn_s64(int64x2_t __p0, int64x2_t __p1) {
  1118. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  1119. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  1120. int32x2_t __ret;
  1121. __ret = (int32x2_t) __builtin_neon_vaddhn_v((int8x16_t)__rev0, (int8x16_t)__rev1, 2);
  1122. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  1123. return __ret;
  1124. }
  1125. __ai int32x2_t __noswap_vaddhn_s64(int64x2_t __p0, int64x2_t __p1) {
  1126. int32x2_t __ret;
  1127. __ret = (int32x2_t) __builtin_neon_vaddhn_v((int8x16_t)__p0, (int8x16_t)__p1, 2);
  1128. return __ret;
  1129. }
  1130. #endif
  1131. #ifdef __LITTLE_ENDIAN__
  1132. __ai int8x8_t vaddhn_s16(int16x8_t __p0, int16x8_t __p1) {
  1133. int8x8_t __ret;
  1134. __ret = (int8x8_t) __builtin_neon_vaddhn_v((int8x16_t)__p0, (int8x16_t)__p1, 0);
  1135. return __ret;
  1136. }
  1137. #else
  1138. __ai int8x8_t vaddhn_s16(int16x8_t __p0, int16x8_t __p1) {
  1139. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  1140. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  1141. int8x8_t __ret;
  1142. __ret = (int8x8_t) __builtin_neon_vaddhn_v((int8x16_t)__rev0, (int8x16_t)__rev1, 0);
  1143. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  1144. return __ret;
  1145. }
  1146. __ai int8x8_t __noswap_vaddhn_s16(int16x8_t __p0, int16x8_t __p1) {
  1147. int8x8_t __ret;
  1148. __ret = (int8x8_t) __builtin_neon_vaddhn_v((int8x16_t)__p0, (int8x16_t)__p1, 0);
  1149. return __ret;
  1150. }
  1151. #endif
  1152. #ifdef __LITTLE_ENDIAN__
  1153. __ai uint8x16_t vandq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  1154. uint8x16_t __ret;
  1155. __ret = __p0 & __p1;
  1156. return __ret;
  1157. }
  1158. #else
  1159. __ai uint8x16_t vandq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  1160. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  1161. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  1162. uint8x16_t __ret;
  1163. __ret = __rev0 & __rev1;
  1164. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  1165. return __ret;
  1166. }
  1167. #endif
  1168. #ifdef __LITTLE_ENDIAN__
  1169. __ai uint32x4_t vandq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  1170. uint32x4_t __ret;
  1171. __ret = __p0 & __p1;
  1172. return __ret;
  1173. }
  1174. #else
  1175. __ai uint32x4_t vandq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  1176. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  1177. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  1178. uint32x4_t __ret;
  1179. __ret = __rev0 & __rev1;
  1180. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  1181. return __ret;
  1182. }
  1183. #endif
  1184. #ifdef __LITTLE_ENDIAN__
  1185. __ai uint64x2_t vandq_u64(uint64x2_t __p0, uint64x2_t __p1) {
  1186. uint64x2_t __ret;
  1187. __ret = __p0 & __p1;
  1188. return __ret;
  1189. }
  1190. #else
  1191. __ai uint64x2_t vandq_u64(uint64x2_t __p0, uint64x2_t __p1) {
  1192. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  1193. uint64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  1194. uint64x2_t __ret;
  1195. __ret = __rev0 & __rev1;
  1196. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  1197. return __ret;
  1198. }
  1199. #endif
  1200. #ifdef __LITTLE_ENDIAN__
  1201. __ai uint16x8_t vandq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  1202. uint16x8_t __ret;
  1203. __ret = __p0 & __p1;
  1204. return __ret;
  1205. }
  1206. #else
  1207. __ai uint16x8_t vandq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  1208. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  1209. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  1210. uint16x8_t __ret;
  1211. __ret = __rev0 & __rev1;
  1212. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  1213. return __ret;
  1214. }
  1215. #endif
  1216. #ifdef __LITTLE_ENDIAN__
  1217. __ai int8x16_t vandq_s8(int8x16_t __p0, int8x16_t __p1) {
  1218. int8x16_t __ret;
  1219. __ret = __p0 & __p1;
  1220. return __ret;
  1221. }
  1222. #else
  1223. __ai int8x16_t vandq_s8(int8x16_t __p0, int8x16_t __p1) {
  1224. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  1225. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  1226. int8x16_t __ret;
  1227. __ret = __rev0 & __rev1;
  1228. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  1229. return __ret;
  1230. }
  1231. #endif
  1232. #ifdef __LITTLE_ENDIAN__
  1233. __ai int32x4_t vandq_s32(int32x4_t __p0, int32x4_t __p1) {
  1234. int32x4_t __ret;
  1235. __ret = __p0 & __p1;
  1236. return __ret;
  1237. }
  1238. #else
  1239. __ai int32x4_t vandq_s32(int32x4_t __p0, int32x4_t __p1) {
  1240. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  1241. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  1242. int32x4_t __ret;
  1243. __ret = __rev0 & __rev1;
  1244. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  1245. return __ret;
  1246. }
  1247. #endif
  1248. #ifdef __LITTLE_ENDIAN__
  1249. __ai int64x2_t vandq_s64(int64x2_t __p0, int64x2_t __p1) {
  1250. int64x2_t __ret;
  1251. __ret = __p0 & __p1;
  1252. return __ret;
  1253. }
  1254. #else
  1255. __ai int64x2_t vandq_s64(int64x2_t __p0, int64x2_t __p1) {
  1256. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  1257. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  1258. int64x2_t __ret;
  1259. __ret = __rev0 & __rev1;
  1260. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  1261. return __ret;
  1262. }
  1263. #endif
  1264. #ifdef __LITTLE_ENDIAN__
  1265. __ai int16x8_t vandq_s16(int16x8_t __p0, int16x8_t __p1) {
  1266. int16x8_t __ret;
  1267. __ret = __p0 & __p1;
  1268. return __ret;
  1269. }
  1270. #else
  1271. __ai int16x8_t vandq_s16(int16x8_t __p0, int16x8_t __p1) {
  1272. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  1273. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  1274. int16x8_t __ret;
  1275. __ret = __rev0 & __rev1;
  1276. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  1277. return __ret;
  1278. }
  1279. #endif
  1280. #ifdef __LITTLE_ENDIAN__
  1281. __ai uint8x8_t vand_u8(uint8x8_t __p0, uint8x8_t __p1) {
  1282. uint8x8_t __ret;
  1283. __ret = __p0 & __p1;
  1284. return __ret;
  1285. }
  1286. #else
  1287. __ai uint8x8_t vand_u8(uint8x8_t __p0, uint8x8_t __p1) {
  1288. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  1289. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  1290. uint8x8_t __ret;
  1291. __ret = __rev0 & __rev1;
  1292. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  1293. return __ret;
  1294. }
  1295. #endif
  1296. #ifdef __LITTLE_ENDIAN__
  1297. __ai uint32x2_t vand_u32(uint32x2_t __p0, uint32x2_t __p1) {
  1298. uint32x2_t __ret;
  1299. __ret = __p0 & __p1;
  1300. return __ret;
  1301. }
  1302. #else
  1303. __ai uint32x2_t vand_u32(uint32x2_t __p0, uint32x2_t __p1) {
  1304. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  1305. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  1306. uint32x2_t __ret;
  1307. __ret = __rev0 & __rev1;
  1308. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  1309. return __ret;
  1310. }
  1311. #endif
  1312. #ifdef __LITTLE_ENDIAN__
  1313. __ai uint64x1_t vand_u64(uint64x1_t __p0, uint64x1_t __p1) {
  1314. uint64x1_t __ret;
  1315. __ret = __p0 & __p1;
  1316. return __ret;
  1317. }
  1318. #else
  1319. __ai uint64x1_t vand_u64(uint64x1_t __p0, uint64x1_t __p1) {
  1320. uint64x1_t __ret;
  1321. __ret = __p0 & __p1;
  1322. return __ret;
  1323. }
  1324. #endif
  1325. #ifdef __LITTLE_ENDIAN__
  1326. __ai uint16x4_t vand_u16(uint16x4_t __p0, uint16x4_t __p1) {
  1327. uint16x4_t __ret;
  1328. __ret = __p0 & __p1;
  1329. return __ret;
  1330. }
  1331. #else
  1332. __ai uint16x4_t vand_u16(uint16x4_t __p0, uint16x4_t __p1) {
  1333. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  1334. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  1335. uint16x4_t __ret;
  1336. __ret = __rev0 & __rev1;
  1337. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  1338. return __ret;
  1339. }
  1340. #endif
  1341. #ifdef __LITTLE_ENDIAN__
  1342. __ai int8x8_t vand_s8(int8x8_t __p0, int8x8_t __p1) {
  1343. int8x8_t __ret;
  1344. __ret = __p0 & __p1;
  1345. return __ret;
  1346. }
  1347. #else
  1348. __ai int8x8_t vand_s8(int8x8_t __p0, int8x8_t __p1) {
  1349. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  1350. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  1351. int8x8_t __ret;
  1352. __ret = __rev0 & __rev1;
  1353. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  1354. return __ret;
  1355. }
  1356. #endif
  1357. #ifdef __LITTLE_ENDIAN__
  1358. __ai int32x2_t vand_s32(int32x2_t __p0, int32x2_t __p1) {
  1359. int32x2_t __ret;
  1360. __ret = __p0 & __p1;
  1361. return __ret;
  1362. }
  1363. #else
  1364. __ai int32x2_t vand_s32(int32x2_t __p0, int32x2_t __p1) {
  1365. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  1366. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  1367. int32x2_t __ret;
  1368. __ret = __rev0 & __rev1;
  1369. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  1370. return __ret;
  1371. }
  1372. #endif
  1373. #ifdef __LITTLE_ENDIAN__
  1374. __ai int64x1_t vand_s64(int64x1_t __p0, int64x1_t __p1) {
  1375. int64x1_t __ret;
  1376. __ret = __p0 & __p1;
  1377. return __ret;
  1378. }
  1379. #else
  1380. __ai int64x1_t vand_s64(int64x1_t __p0, int64x1_t __p1) {
  1381. int64x1_t __ret;
  1382. __ret = __p0 & __p1;
  1383. return __ret;
  1384. }
  1385. #endif
  1386. #ifdef __LITTLE_ENDIAN__
  1387. __ai int16x4_t vand_s16(int16x4_t __p0, int16x4_t __p1) {
  1388. int16x4_t __ret;
  1389. __ret = __p0 & __p1;
  1390. return __ret;
  1391. }
  1392. #else
  1393. __ai int16x4_t vand_s16(int16x4_t __p0, int16x4_t __p1) {
  1394. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  1395. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  1396. int16x4_t __ret;
  1397. __ret = __rev0 & __rev1;
  1398. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  1399. return __ret;
  1400. }
  1401. #endif
  1402. #ifdef __LITTLE_ENDIAN__
  1403. __ai uint8x16_t vbicq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  1404. uint8x16_t __ret;
  1405. __ret = __p0 & ~__p1;
  1406. return __ret;
  1407. }
  1408. #else
  1409. __ai uint8x16_t vbicq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  1410. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  1411. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  1412. uint8x16_t __ret;
  1413. __ret = __rev0 & ~__rev1;
  1414. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  1415. return __ret;
  1416. }
  1417. #endif
  1418. #ifdef __LITTLE_ENDIAN__
  1419. __ai uint32x4_t vbicq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  1420. uint32x4_t __ret;
  1421. __ret = __p0 & ~__p1;
  1422. return __ret;
  1423. }
  1424. #else
  1425. __ai uint32x4_t vbicq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  1426. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  1427. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  1428. uint32x4_t __ret;
  1429. __ret = __rev0 & ~__rev1;
  1430. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  1431. return __ret;
  1432. }
  1433. #endif
  1434. #ifdef __LITTLE_ENDIAN__
  1435. __ai uint64x2_t vbicq_u64(uint64x2_t __p0, uint64x2_t __p1) {
  1436. uint64x2_t __ret;
  1437. __ret = __p0 & ~__p1;
  1438. return __ret;
  1439. }
  1440. #else
  1441. __ai uint64x2_t vbicq_u64(uint64x2_t __p0, uint64x2_t __p1) {
  1442. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  1443. uint64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  1444. uint64x2_t __ret;
  1445. __ret = __rev0 & ~__rev1;
  1446. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  1447. return __ret;
  1448. }
  1449. #endif
  1450. #ifdef __LITTLE_ENDIAN__
  1451. __ai uint16x8_t vbicq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  1452. uint16x8_t __ret;
  1453. __ret = __p0 & ~__p1;
  1454. return __ret;
  1455. }
  1456. #else
  1457. __ai uint16x8_t vbicq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  1458. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  1459. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  1460. uint16x8_t __ret;
  1461. __ret = __rev0 & ~__rev1;
  1462. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  1463. return __ret;
  1464. }
  1465. #endif
  1466. #ifdef __LITTLE_ENDIAN__
  1467. __ai int8x16_t vbicq_s8(int8x16_t __p0, int8x16_t __p1) {
  1468. int8x16_t __ret;
  1469. __ret = __p0 & ~__p1;
  1470. return __ret;
  1471. }
  1472. #else
  1473. __ai int8x16_t vbicq_s8(int8x16_t __p0, int8x16_t __p1) {
  1474. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  1475. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  1476. int8x16_t __ret;
  1477. __ret = __rev0 & ~__rev1;
  1478. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  1479. return __ret;
  1480. }
  1481. #endif
  1482. #ifdef __LITTLE_ENDIAN__
  1483. __ai int32x4_t vbicq_s32(int32x4_t __p0, int32x4_t __p1) {
  1484. int32x4_t __ret;
  1485. __ret = __p0 & ~__p1;
  1486. return __ret;
  1487. }
  1488. #else
  1489. __ai int32x4_t vbicq_s32(int32x4_t __p0, int32x4_t __p1) {
  1490. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  1491. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  1492. int32x4_t __ret;
  1493. __ret = __rev0 & ~__rev1;
  1494. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  1495. return __ret;
  1496. }
  1497. #endif
  1498. #ifdef __LITTLE_ENDIAN__
  1499. __ai int64x2_t vbicq_s64(int64x2_t __p0, int64x2_t __p1) {
  1500. int64x2_t __ret;
  1501. __ret = __p0 & ~__p1;
  1502. return __ret;
  1503. }
  1504. #else
  1505. __ai int64x2_t vbicq_s64(int64x2_t __p0, int64x2_t __p1) {
  1506. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  1507. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  1508. int64x2_t __ret;
  1509. __ret = __rev0 & ~__rev1;
  1510. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  1511. return __ret;
  1512. }
  1513. #endif
  1514. #ifdef __LITTLE_ENDIAN__
  1515. __ai int16x8_t vbicq_s16(int16x8_t __p0, int16x8_t __p1) {
  1516. int16x8_t __ret;
  1517. __ret = __p0 & ~__p1;
  1518. return __ret;
  1519. }
  1520. #else
  1521. __ai int16x8_t vbicq_s16(int16x8_t __p0, int16x8_t __p1) {
  1522. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  1523. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  1524. int16x8_t __ret;
  1525. __ret = __rev0 & ~__rev1;
  1526. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  1527. return __ret;
  1528. }
  1529. #endif
  1530. #ifdef __LITTLE_ENDIAN__
  1531. __ai uint8x8_t vbic_u8(uint8x8_t __p0, uint8x8_t __p1) {
  1532. uint8x8_t __ret;
  1533. __ret = __p0 & ~__p1;
  1534. return __ret;
  1535. }
  1536. #else
  1537. __ai uint8x8_t vbic_u8(uint8x8_t __p0, uint8x8_t __p1) {
  1538. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  1539. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  1540. uint8x8_t __ret;
  1541. __ret = __rev0 & ~__rev1;
  1542. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  1543. return __ret;
  1544. }
  1545. #endif
  1546. #ifdef __LITTLE_ENDIAN__
  1547. __ai uint32x2_t vbic_u32(uint32x2_t __p0, uint32x2_t __p1) {
  1548. uint32x2_t __ret;
  1549. __ret = __p0 & ~__p1;
  1550. return __ret;
  1551. }
  1552. #else
  1553. __ai uint32x2_t vbic_u32(uint32x2_t __p0, uint32x2_t __p1) {
  1554. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  1555. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  1556. uint32x2_t __ret;
  1557. __ret = __rev0 & ~__rev1;
  1558. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  1559. return __ret;
  1560. }
  1561. #endif
  1562. #ifdef __LITTLE_ENDIAN__
  1563. __ai uint64x1_t vbic_u64(uint64x1_t __p0, uint64x1_t __p1) {
  1564. uint64x1_t __ret;
  1565. __ret = __p0 & ~__p1;
  1566. return __ret;
  1567. }
  1568. #else
  1569. __ai uint64x1_t vbic_u64(uint64x1_t __p0, uint64x1_t __p1) {
  1570. uint64x1_t __ret;
  1571. __ret = __p0 & ~__p1;
  1572. return __ret;
  1573. }
  1574. #endif
  1575. #ifdef __LITTLE_ENDIAN__
  1576. __ai uint16x4_t vbic_u16(uint16x4_t __p0, uint16x4_t __p1) {
  1577. uint16x4_t __ret;
  1578. __ret = __p0 & ~__p1;
  1579. return __ret;
  1580. }
  1581. #else
  1582. __ai uint16x4_t vbic_u16(uint16x4_t __p0, uint16x4_t __p1) {
  1583. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  1584. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  1585. uint16x4_t __ret;
  1586. __ret = __rev0 & ~__rev1;
  1587. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  1588. return __ret;
  1589. }
  1590. #endif
  1591. #ifdef __LITTLE_ENDIAN__
  1592. __ai int8x8_t vbic_s8(int8x8_t __p0, int8x8_t __p1) {
  1593. int8x8_t __ret;
  1594. __ret = __p0 & ~__p1;
  1595. return __ret;
  1596. }
  1597. #else
  1598. __ai int8x8_t vbic_s8(int8x8_t __p0, int8x8_t __p1) {
  1599. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  1600. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  1601. int8x8_t __ret;
  1602. __ret = __rev0 & ~__rev1;
  1603. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  1604. return __ret;
  1605. }
  1606. #endif
  1607. #ifdef __LITTLE_ENDIAN__
  1608. __ai int32x2_t vbic_s32(int32x2_t __p0, int32x2_t __p1) {
  1609. int32x2_t __ret;
  1610. __ret = __p0 & ~__p1;
  1611. return __ret;
  1612. }
  1613. #else
  1614. __ai int32x2_t vbic_s32(int32x2_t __p0, int32x2_t __p1) {
  1615. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  1616. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  1617. int32x2_t __ret;
  1618. __ret = __rev0 & ~__rev1;
  1619. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  1620. return __ret;
  1621. }
  1622. #endif
  1623. #ifdef __LITTLE_ENDIAN__
  1624. __ai int64x1_t vbic_s64(int64x1_t __p0, int64x1_t __p1) {
  1625. int64x1_t __ret;
  1626. __ret = __p0 & ~__p1;
  1627. return __ret;
  1628. }
  1629. #else
  1630. __ai int64x1_t vbic_s64(int64x1_t __p0, int64x1_t __p1) {
  1631. int64x1_t __ret;
  1632. __ret = __p0 & ~__p1;
  1633. return __ret;
  1634. }
  1635. #endif
  1636. #ifdef __LITTLE_ENDIAN__
  1637. __ai int16x4_t vbic_s16(int16x4_t __p0, int16x4_t __p1) {
  1638. int16x4_t __ret;
  1639. __ret = __p0 & ~__p1;
  1640. return __ret;
  1641. }
  1642. #else
  1643. __ai int16x4_t vbic_s16(int16x4_t __p0, int16x4_t __p1) {
  1644. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  1645. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  1646. int16x4_t __ret;
  1647. __ret = __rev0 & ~__rev1;
  1648. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  1649. return __ret;
  1650. }
  1651. #endif
  1652. #ifdef __LITTLE_ENDIAN__
  1653. __ai poly8x8_t vbsl_p8(uint8x8_t __p0, poly8x8_t __p1, poly8x8_t __p2) {
  1654. poly8x8_t __ret;
  1655. __ret = (poly8x8_t) __builtin_neon_vbsl_v((int8x8_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 4);
  1656. return __ret;
  1657. }
  1658. #else
  1659. __ai poly8x8_t vbsl_p8(uint8x8_t __p0, poly8x8_t __p1, poly8x8_t __p2) {
  1660. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  1661. poly8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  1662. poly8x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  1663. poly8x8_t __ret;
  1664. __ret = (poly8x8_t) __builtin_neon_vbsl_v((int8x8_t)__rev0, (int8x8_t)__rev1, (int8x8_t)__rev2, 4);
  1665. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  1666. return __ret;
  1667. }
  1668. #endif
  1669. #ifdef __LITTLE_ENDIAN__
  1670. __ai poly16x4_t vbsl_p16(uint16x4_t __p0, poly16x4_t __p1, poly16x4_t __p2) {
  1671. poly16x4_t __ret;
  1672. __ret = (poly16x4_t) __builtin_neon_vbsl_v((int8x8_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 5);
  1673. return __ret;
  1674. }
  1675. #else
  1676. __ai poly16x4_t vbsl_p16(uint16x4_t __p0, poly16x4_t __p1, poly16x4_t __p2) {
  1677. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  1678. poly16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  1679. poly16x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  1680. poly16x4_t __ret;
  1681. __ret = (poly16x4_t) __builtin_neon_vbsl_v((int8x8_t)__rev0, (int8x8_t)__rev1, (int8x8_t)__rev2, 5);
  1682. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  1683. return __ret;
  1684. }
  1685. #endif
  1686. #ifdef __LITTLE_ENDIAN__
  1687. __ai poly8x16_t vbslq_p8(uint8x16_t __p0, poly8x16_t __p1, poly8x16_t __p2) {
  1688. poly8x16_t __ret;
  1689. __ret = (poly8x16_t) __builtin_neon_vbslq_v((int8x16_t)__p0, (int8x16_t)__p1, (int8x16_t)__p2, 36);
  1690. return __ret;
  1691. }
  1692. #else
  1693. __ai poly8x16_t vbslq_p8(uint8x16_t __p0, poly8x16_t __p1, poly8x16_t __p2) {
  1694. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  1695. poly8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  1696. poly8x16_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  1697. poly8x16_t __ret;
  1698. __ret = (poly8x16_t) __builtin_neon_vbslq_v((int8x16_t)__rev0, (int8x16_t)__rev1, (int8x16_t)__rev2, 36);
  1699. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  1700. return __ret;
  1701. }
  1702. #endif
  1703. #ifdef __LITTLE_ENDIAN__
  1704. __ai poly16x8_t vbslq_p16(uint16x8_t __p0, poly16x8_t __p1, poly16x8_t __p2) {
  1705. poly16x8_t __ret;
  1706. __ret = (poly16x8_t) __builtin_neon_vbslq_v((int8x16_t)__p0, (int8x16_t)__p1, (int8x16_t)__p2, 37);
  1707. return __ret;
  1708. }
  1709. #else
  1710. __ai poly16x8_t vbslq_p16(uint16x8_t __p0, poly16x8_t __p1, poly16x8_t __p2) {
  1711. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  1712. poly16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  1713. poly16x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  1714. poly16x8_t __ret;
  1715. __ret = (poly16x8_t) __builtin_neon_vbslq_v((int8x16_t)__rev0, (int8x16_t)__rev1, (int8x16_t)__rev2, 37);
  1716. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  1717. return __ret;
  1718. }
  1719. #endif
  1720. #ifdef __LITTLE_ENDIAN__
  1721. __ai uint8x16_t vbslq_u8(uint8x16_t __p0, uint8x16_t __p1, uint8x16_t __p2) {
  1722. uint8x16_t __ret;
  1723. __ret = (uint8x16_t) __builtin_neon_vbslq_v((int8x16_t)__p0, (int8x16_t)__p1, (int8x16_t)__p2, 48);
  1724. return __ret;
  1725. }
  1726. #else
  1727. __ai uint8x16_t vbslq_u8(uint8x16_t __p0, uint8x16_t __p1, uint8x16_t __p2) {
  1728. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  1729. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  1730. uint8x16_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  1731. uint8x16_t __ret;
  1732. __ret = (uint8x16_t) __builtin_neon_vbslq_v((int8x16_t)__rev0, (int8x16_t)__rev1, (int8x16_t)__rev2, 48);
  1733. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  1734. return __ret;
  1735. }
  1736. #endif
  1737. #ifdef __LITTLE_ENDIAN__
  1738. __ai uint32x4_t vbslq_u32(uint32x4_t __p0, uint32x4_t __p1, uint32x4_t __p2) {
  1739. uint32x4_t __ret;
  1740. __ret = (uint32x4_t) __builtin_neon_vbslq_v((int8x16_t)__p0, (int8x16_t)__p1, (int8x16_t)__p2, 50);
  1741. return __ret;
  1742. }
  1743. #else
  1744. __ai uint32x4_t vbslq_u32(uint32x4_t __p0, uint32x4_t __p1, uint32x4_t __p2) {
  1745. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  1746. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  1747. uint32x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  1748. uint32x4_t __ret;
  1749. __ret = (uint32x4_t) __builtin_neon_vbslq_v((int8x16_t)__rev0, (int8x16_t)__rev1, (int8x16_t)__rev2, 50);
  1750. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  1751. return __ret;
  1752. }
  1753. #endif
  1754. #ifdef __LITTLE_ENDIAN__
  1755. __ai uint64x2_t vbslq_u64(uint64x2_t __p0, uint64x2_t __p1, uint64x2_t __p2) {
  1756. uint64x2_t __ret;
  1757. __ret = (uint64x2_t) __builtin_neon_vbslq_v((int8x16_t)__p0, (int8x16_t)__p1, (int8x16_t)__p2, 51);
  1758. return __ret;
  1759. }
  1760. #else
  1761. __ai uint64x2_t vbslq_u64(uint64x2_t __p0, uint64x2_t __p1, uint64x2_t __p2) {
  1762. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  1763. uint64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  1764. uint64x2_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 1, 0);
  1765. uint64x2_t __ret;
  1766. __ret = (uint64x2_t) __builtin_neon_vbslq_v((int8x16_t)__rev0, (int8x16_t)__rev1, (int8x16_t)__rev2, 51);
  1767. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  1768. return __ret;
  1769. }
  1770. #endif
  1771. #ifdef __LITTLE_ENDIAN__
  1772. __ai uint16x8_t vbslq_u16(uint16x8_t __p0, uint16x8_t __p1, uint16x8_t __p2) {
  1773. uint16x8_t __ret;
  1774. __ret = (uint16x8_t) __builtin_neon_vbslq_v((int8x16_t)__p0, (int8x16_t)__p1, (int8x16_t)__p2, 49);
  1775. return __ret;
  1776. }
  1777. #else
  1778. __ai uint16x8_t vbslq_u16(uint16x8_t __p0, uint16x8_t __p1, uint16x8_t __p2) {
  1779. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  1780. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  1781. uint16x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  1782. uint16x8_t __ret;
  1783. __ret = (uint16x8_t) __builtin_neon_vbslq_v((int8x16_t)__rev0, (int8x16_t)__rev1, (int8x16_t)__rev2, 49);
  1784. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  1785. return __ret;
  1786. }
  1787. #endif
  1788. #ifdef __LITTLE_ENDIAN__
  1789. __ai int8x16_t vbslq_s8(uint8x16_t __p0, int8x16_t __p1, int8x16_t __p2) {
  1790. int8x16_t __ret;
  1791. __ret = (int8x16_t) __builtin_neon_vbslq_v((int8x16_t)__p0, (int8x16_t)__p1, (int8x16_t)__p2, 32);
  1792. return __ret;
  1793. }
  1794. #else
  1795. __ai int8x16_t vbslq_s8(uint8x16_t __p0, int8x16_t __p1, int8x16_t __p2) {
  1796. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  1797. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  1798. int8x16_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  1799. int8x16_t __ret;
  1800. __ret = (int8x16_t) __builtin_neon_vbslq_v((int8x16_t)__rev0, (int8x16_t)__rev1, (int8x16_t)__rev2, 32);
  1801. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  1802. return __ret;
  1803. }
  1804. #endif
  1805. #ifdef __LITTLE_ENDIAN__
  1806. __ai float32x4_t vbslq_f32(uint32x4_t __p0, float32x4_t __p1, float32x4_t __p2) {
  1807. float32x4_t __ret;
  1808. __ret = (float32x4_t) __builtin_neon_vbslq_v((int8x16_t)__p0, (int8x16_t)__p1, (int8x16_t)__p2, 41);
  1809. return __ret;
  1810. }
  1811. #else
  1812. __ai float32x4_t vbslq_f32(uint32x4_t __p0, float32x4_t __p1, float32x4_t __p2) {
  1813. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  1814. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  1815. float32x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  1816. float32x4_t __ret;
  1817. __ret = (float32x4_t) __builtin_neon_vbslq_v((int8x16_t)__rev0, (int8x16_t)__rev1, (int8x16_t)__rev2, 41);
  1818. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  1819. return __ret;
  1820. }
  1821. #endif
  1822. #ifdef __LITTLE_ENDIAN__
  1823. __ai int32x4_t vbslq_s32(uint32x4_t __p0, int32x4_t __p1, int32x4_t __p2) {
  1824. int32x4_t __ret;
  1825. __ret = (int32x4_t) __builtin_neon_vbslq_v((int8x16_t)__p0, (int8x16_t)__p1, (int8x16_t)__p2, 34);
  1826. return __ret;
  1827. }
  1828. #else
  1829. __ai int32x4_t vbslq_s32(uint32x4_t __p0, int32x4_t __p1, int32x4_t __p2) {
  1830. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  1831. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  1832. int32x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  1833. int32x4_t __ret;
  1834. __ret = (int32x4_t) __builtin_neon_vbslq_v((int8x16_t)__rev0, (int8x16_t)__rev1, (int8x16_t)__rev2, 34);
  1835. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  1836. return __ret;
  1837. }
  1838. #endif
  1839. #ifdef __LITTLE_ENDIAN__
  1840. __ai int64x2_t vbslq_s64(uint64x2_t __p0, int64x2_t __p1, int64x2_t __p2) {
  1841. int64x2_t __ret;
  1842. __ret = (int64x2_t) __builtin_neon_vbslq_v((int8x16_t)__p0, (int8x16_t)__p1, (int8x16_t)__p2, 35);
  1843. return __ret;
  1844. }
  1845. #else
  1846. __ai int64x2_t vbslq_s64(uint64x2_t __p0, int64x2_t __p1, int64x2_t __p2) {
  1847. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  1848. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  1849. int64x2_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 1, 0);
  1850. int64x2_t __ret;
  1851. __ret = (int64x2_t) __builtin_neon_vbslq_v((int8x16_t)__rev0, (int8x16_t)__rev1, (int8x16_t)__rev2, 35);
  1852. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  1853. return __ret;
  1854. }
  1855. #endif
  1856. #ifdef __LITTLE_ENDIAN__
  1857. __ai int16x8_t vbslq_s16(uint16x8_t __p0, int16x8_t __p1, int16x8_t __p2) {
  1858. int16x8_t __ret;
  1859. __ret = (int16x8_t) __builtin_neon_vbslq_v((int8x16_t)__p0, (int8x16_t)__p1, (int8x16_t)__p2, 33);
  1860. return __ret;
  1861. }
  1862. #else
  1863. __ai int16x8_t vbslq_s16(uint16x8_t __p0, int16x8_t __p1, int16x8_t __p2) {
  1864. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  1865. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  1866. int16x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  1867. int16x8_t __ret;
  1868. __ret = (int16x8_t) __builtin_neon_vbslq_v((int8x16_t)__rev0, (int8x16_t)__rev1, (int8x16_t)__rev2, 33);
  1869. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  1870. return __ret;
  1871. }
  1872. #endif
  1873. #ifdef __LITTLE_ENDIAN__
  1874. __ai uint8x8_t vbsl_u8(uint8x8_t __p0, uint8x8_t __p1, uint8x8_t __p2) {
  1875. uint8x8_t __ret;
  1876. __ret = (uint8x8_t) __builtin_neon_vbsl_v((int8x8_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 16);
  1877. return __ret;
  1878. }
  1879. #else
  1880. __ai uint8x8_t vbsl_u8(uint8x8_t __p0, uint8x8_t __p1, uint8x8_t __p2) {
  1881. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  1882. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  1883. uint8x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  1884. uint8x8_t __ret;
  1885. __ret = (uint8x8_t) __builtin_neon_vbsl_v((int8x8_t)__rev0, (int8x8_t)__rev1, (int8x8_t)__rev2, 16);
  1886. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  1887. return __ret;
  1888. }
  1889. #endif
  1890. #ifdef __LITTLE_ENDIAN__
  1891. __ai uint32x2_t vbsl_u32(uint32x2_t __p0, uint32x2_t __p1, uint32x2_t __p2) {
  1892. uint32x2_t __ret;
  1893. __ret = (uint32x2_t) __builtin_neon_vbsl_v((int8x8_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 18);
  1894. return __ret;
  1895. }
  1896. #else
  1897. __ai uint32x2_t vbsl_u32(uint32x2_t __p0, uint32x2_t __p1, uint32x2_t __p2) {
  1898. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  1899. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  1900. uint32x2_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 1, 0);
  1901. uint32x2_t __ret;
  1902. __ret = (uint32x2_t) __builtin_neon_vbsl_v((int8x8_t)__rev0, (int8x8_t)__rev1, (int8x8_t)__rev2, 18);
  1903. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  1904. return __ret;
  1905. }
  1906. #endif
  1907. #ifdef __LITTLE_ENDIAN__
  1908. __ai uint64x1_t vbsl_u64(uint64x1_t __p0, uint64x1_t __p1, uint64x1_t __p2) {
  1909. uint64x1_t __ret;
  1910. __ret = (uint64x1_t) __builtin_neon_vbsl_v((int8x8_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 19);
  1911. return __ret;
  1912. }
  1913. #else
  1914. __ai uint64x1_t vbsl_u64(uint64x1_t __p0, uint64x1_t __p1, uint64x1_t __p2) {
  1915. uint64x1_t __ret;
  1916. __ret = (uint64x1_t) __builtin_neon_vbsl_v((int8x8_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 19);
  1917. return __ret;
  1918. }
  1919. #endif
  1920. #ifdef __LITTLE_ENDIAN__
  1921. __ai uint16x4_t vbsl_u16(uint16x4_t __p0, uint16x4_t __p1, uint16x4_t __p2) {
  1922. uint16x4_t __ret;
  1923. __ret = (uint16x4_t) __builtin_neon_vbsl_v((int8x8_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 17);
  1924. return __ret;
  1925. }
  1926. #else
  1927. __ai uint16x4_t vbsl_u16(uint16x4_t __p0, uint16x4_t __p1, uint16x4_t __p2) {
  1928. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  1929. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  1930. uint16x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  1931. uint16x4_t __ret;
  1932. __ret = (uint16x4_t) __builtin_neon_vbsl_v((int8x8_t)__rev0, (int8x8_t)__rev1, (int8x8_t)__rev2, 17);
  1933. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  1934. return __ret;
  1935. }
  1936. #endif
  1937. #ifdef __LITTLE_ENDIAN__
  1938. __ai int8x8_t vbsl_s8(uint8x8_t __p0, int8x8_t __p1, int8x8_t __p2) {
  1939. int8x8_t __ret;
  1940. __ret = (int8x8_t) __builtin_neon_vbsl_v((int8x8_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 0);
  1941. return __ret;
  1942. }
  1943. #else
  1944. __ai int8x8_t vbsl_s8(uint8x8_t __p0, int8x8_t __p1, int8x8_t __p2) {
  1945. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  1946. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  1947. int8x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  1948. int8x8_t __ret;
  1949. __ret = (int8x8_t) __builtin_neon_vbsl_v((int8x8_t)__rev0, (int8x8_t)__rev1, (int8x8_t)__rev2, 0);
  1950. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  1951. return __ret;
  1952. }
  1953. #endif
  1954. #ifdef __LITTLE_ENDIAN__
  1955. __ai float32x2_t vbsl_f32(uint32x2_t __p0, float32x2_t __p1, float32x2_t __p2) {
  1956. float32x2_t __ret;
  1957. __ret = (float32x2_t) __builtin_neon_vbsl_v((int8x8_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 9);
  1958. return __ret;
  1959. }
  1960. #else
  1961. __ai float32x2_t vbsl_f32(uint32x2_t __p0, float32x2_t __p1, float32x2_t __p2) {
  1962. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  1963. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  1964. float32x2_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 1, 0);
  1965. float32x2_t __ret;
  1966. __ret = (float32x2_t) __builtin_neon_vbsl_v((int8x8_t)__rev0, (int8x8_t)__rev1, (int8x8_t)__rev2, 9);
  1967. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  1968. return __ret;
  1969. }
  1970. #endif
  1971. #ifdef __LITTLE_ENDIAN__
  1972. __ai int32x2_t vbsl_s32(uint32x2_t __p0, int32x2_t __p1, int32x2_t __p2) {
  1973. int32x2_t __ret;
  1974. __ret = (int32x2_t) __builtin_neon_vbsl_v((int8x8_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 2);
  1975. return __ret;
  1976. }
  1977. #else
  1978. __ai int32x2_t vbsl_s32(uint32x2_t __p0, int32x2_t __p1, int32x2_t __p2) {
  1979. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  1980. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  1981. int32x2_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 1, 0);
  1982. int32x2_t __ret;
  1983. __ret = (int32x2_t) __builtin_neon_vbsl_v((int8x8_t)__rev0, (int8x8_t)__rev1, (int8x8_t)__rev2, 2);
  1984. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  1985. return __ret;
  1986. }
  1987. #endif
  1988. #ifdef __LITTLE_ENDIAN__
  1989. __ai int64x1_t vbsl_s64(uint64x1_t __p0, int64x1_t __p1, int64x1_t __p2) {
  1990. int64x1_t __ret;
  1991. __ret = (int64x1_t) __builtin_neon_vbsl_v((int8x8_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 3);
  1992. return __ret;
  1993. }
  1994. #else
  1995. __ai int64x1_t vbsl_s64(uint64x1_t __p0, int64x1_t __p1, int64x1_t __p2) {
  1996. int64x1_t __ret;
  1997. __ret = (int64x1_t) __builtin_neon_vbsl_v((int8x8_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 3);
  1998. return __ret;
  1999. }
  2000. #endif
  2001. #ifdef __LITTLE_ENDIAN__
  2002. __ai int16x4_t vbsl_s16(uint16x4_t __p0, int16x4_t __p1, int16x4_t __p2) {
  2003. int16x4_t __ret;
  2004. __ret = (int16x4_t) __builtin_neon_vbsl_v((int8x8_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 1);
  2005. return __ret;
  2006. }
  2007. #else
  2008. __ai int16x4_t vbsl_s16(uint16x4_t __p0, int16x4_t __p1, int16x4_t __p2) {
  2009. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  2010. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  2011. int16x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  2012. int16x4_t __ret;
  2013. __ret = (int16x4_t) __builtin_neon_vbsl_v((int8x8_t)__rev0, (int8x8_t)__rev1, (int8x8_t)__rev2, 1);
  2014. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  2015. return __ret;
  2016. }
  2017. #endif
  2018. #ifdef __LITTLE_ENDIAN__
  2019. __ai uint32x4_t vcageq_f32(float32x4_t __p0, float32x4_t __p1) {
  2020. uint32x4_t __ret;
  2021. __ret = (uint32x4_t) __builtin_neon_vcageq_v((int8x16_t)__p0, (int8x16_t)__p1, 50);
  2022. return __ret;
  2023. }
  2024. #else
  2025. __ai uint32x4_t vcageq_f32(float32x4_t __p0, float32x4_t __p1) {
  2026. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  2027. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  2028. uint32x4_t __ret;
  2029. __ret = (uint32x4_t) __builtin_neon_vcageq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 50);
  2030. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  2031. return __ret;
  2032. }
  2033. #endif
  2034. #ifdef __LITTLE_ENDIAN__
  2035. __ai uint32x2_t vcage_f32(float32x2_t __p0, float32x2_t __p1) {
  2036. uint32x2_t __ret;
  2037. __ret = (uint32x2_t) __builtin_neon_vcage_v((int8x8_t)__p0, (int8x8_t)__p1, 18);
  2038. return __ret;
  2039. }
  2040. #else
  2041. __ai uint32x2_t vcage_f32(float32x2_t __p0, float32x2_t __p1) {
  2042. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  2043. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  2044. uint32x2_t __ret;
  2045. __ret = (uint32x2_t) __builtin_neon_vcage_v((int8x8_t)__rev0, (int8x8_t)__rev1, 18);
  2046. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  2047. return __ret;
  2048. }
  2049. #endif
  2050. #ifdef __LITTLE_ENDIAN__
  2051. __ai uint32x4_t vcagtq_f32(float32x4_t __p0, float32x4_t __p1) {
  2052. uint32x4_t __ret;
  2053. __ret = (uint32x4_t) __builtin_neon_vcagtq_v((int8x16_t)__p0, (int8x16_t)__p1, 50);
  2054. return __ret;
  2055. }
  2056. #else
  2057. __ai uint32x4_t vcagtq_f32(float32x4_t __p0, float32x4_t __p1) {
  2058. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  2059. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  2060. uint32x4_t __ret;
  2061. __ret = (uint32x4_t) __builtin_neon_vcagtq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 50);
  2062. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  2063. return __ret;
  2064. }
  2065. #endif
  2066. #ifdef __LITTLE_ENDIAN__
  2067. __ai uint32x2_t vcagt_f32(float32x2_t __p0, float32x2_t __p1) {
  2068. uint32x2_t __ret;
  2069. __ret = (uint32x2_t) __builtin_neon_vcagt_v((int8x8_t)__p0, (int8x8_t)__p1, 18);
  2070. return __ret;
  2071. }
  2072. #else
  2073. __ai uint32x2_t vcagt_f32(float32x2_t __p0, float32x2_t __p1) {
  2074. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  2075. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  2076. uint32x2_t __ret;
  2077. __ret = (uint32x2_t) __builtin_neon_vcagt_v((int8x8_t)__rev0, (int8x8_t)__rev1, 18);
  2078. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  2079. return __ret;
  2080. }
  2081. #endif
  2082. #ifdef __LITTLE_ENDIAN__
  2083. __ai uint32x4_t vcaleq_f32(float32x4_t __p0, float32x4_t __p1) {
  2084. uint32x4_t __ret;
  2085. __ret = (uint32x4_t) __builtin_neon_vcaleq_v((int8x16_t)__p0, (int8x16_t)__p1, 50);
  2086. return __ret;
  2087. }
  2088. #else
  2089. __ai uint32x4_t vcaleq_f32(float32x4_t __p0, float32x4_t __p1) {
  2090. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  2091. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  2092. uint32x4_t __ret;
  2093. __ret = (uint32x4_t) __builtin_neon_vcaleq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 50);
  2094. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  2095. return __ret;
  2096. }
  2097. #endif
  2098. #ifdef __LITTLE_ENDIAN__
  2099. __ai uint32x2_t vcale_f32(float32x2_t __p0, float32x2_t __p1) {
  2100. uint32x2_t __ret;
  2101. __ret = (uint32x2_t) __builtin_neon_vcale_v((int8x8_t)__p0, (int8x8_t)__p1, 18);
  2102. return __ret;
  2103. }
  2104. #else
  2105. __ai uint32x2_t vcale_f32(float32x2_t __p0, float32x2_t __p1) {
  2106. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  2107. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  2108. uint32x2_t __ret;
  2109. __ret = (uint32x2_t) __builtin_neon_vcale_v((int8x8_t)__rev0, (int8x8_t)__rev1, 18);
  2110. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  2111. return __ret;
  2112. }
  2113. #endif
  2114. #ifdef __LITTLE_ENDIAN__
  2115. __ai uint32x4_t vcaltq_f32(float32x4_t __p0, float32x4_t __p1) {
  2116. uint32x4_t __ret;
  2117. __ret = (uint32x4_t) __builtin_neon_vcaltq_v((int8x16_t)__p0, (int8x16_t)__p1, 50);
  2118. return __ret;
  2119. }
  2120. #else
  2121. __ai uint32x4_t vcaltq_f32(float32x4_t __p0, float32x4_t __p1) {
  2122. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  2123. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  2124. uint32x4_t __ret;
  2125. __ret = (uint32x4_t) __builtin_neon_vcaltq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 50);
  2126. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  2127. return __ret;
  2128. }
  2129. #endif
  2130. #ifdef __LITTLE_ENDIAN__
  2131. __ai uint32x2_t vcalt_f32(float32x2_t __p0, float32x2_t __p1) {
  2132. uint32x2_t __ret;
  2133. __ret = (uint32x2_t) __builtin_neon_vcalt_v((int8x8_t)__p0, (int8x8_t)__p1, 18);
  2134. return __ret;
  2135. }
  2136. #else
  2137. __ai uint32x2_t vcalt_f32(float32x2_t __p0, float32x2_t __p1) {
  2138. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  2139. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  2140. uint32x2_t __ret;
  2141. __ret = (uint32x2_t) __builtin_neon_vcalt_v((int8x8_t)__rev0, (int8x8_t)__rev1, 18);
  2142. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  2143. return __ret;
  2144. }
  2145. #endif
  2146. #ifdef __LITTLE_ENDIAN__
  2147. __ai uint8x8_t vceq_p8(poly8x8_t __p0, poly8x8_t __p1) {
  2148. uint8x8_t __ret;
  2149. __ret = (uint8x8_t)(__p0 == __p1);
  2150. return __ret;
  2151. }
  2152. #else
  2153. __ai uint8x8_t vceq_p8(poly8x8_t __p0, poly8x8_t __p1) {
  2154. poly8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  2155. poly8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  2156. uint8x8_t __ret;
  2157. __ret = (uint8x8_t)(__rev0 == __rev1);
  2158. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  2159. return __ret;
  2160. }
  2161. #endif
  2162. #ifdef __LITTLE_ENDIAN__
  2163. __ai uint8x16_t vceqq_p8(poly8x16_t __p0, poly8x16_t __p1) {
  2164. uint8x16_t __ret;
  2165. __ret = (uint8x16_t)(__p0 == __p1);
  2166. return __ret;
  2167. }
  2168. #else
  2169. __ai uint8x16_t vceqq_p8(poly8x16_t __p0, poly8x16_t __p1) {
  2170. poly8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  2171. poly8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  2172. uint8x16_t __ret;
  2173. __ret = (uint8x16_t)(__rev0 == __rev1);
  2174. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  2175. return __ret;
  2176. }
  2177. #endif
  2178. #ifdef __LITTLE_ENDIAN__
  2179. __ai uint8x16_t vceqq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  2180. uint8x16_t __ret;
  2181. __ret = (uint8x16_t)(__p0 == __p1);
  2182. return __ret;
  2183. }
  2184. #else
  2185. __ai uint8x16_t vceqq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  2186. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  2187. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  2188. uint8x16_t __ret;
  2189. __ret = (uint8x16_t)(__rev0 == __rev1);
  2190. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  2191. return __ret;
  2192. }
  2193. #endif
  2194. #ifdef __LITTLE_ENDIAN__
  2195. __ai uint32x4_t vceqq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  2196. uint32x4_t __ret;
  2197. __ret = (uint32x4_t)(__p0 == __p1);
  2198. return __ret;
  2199. }
  2200. #else
  2201. __ai uint32x4_t vceqq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  2202. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  2203. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  2204. uint32x4_t __ret;
  2205. __ret = (uint32x4_t)(__rev0 == __rev1);
  2206. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  2207. return __ret;
  2208. }
  2209. #endif
  2210. #ifdef __LITTLE_ENDIAN__
  2211. __ai uint16x8_t vceqq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  2212. uint16x8_t __ret;
  2213. __ret = (uint16x8_t)(__p0 == __p1);
  2214. return __ret;
  2215. }
  2216. #else
  2217. __ai uint16x8_t vceqq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  2218. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  2219. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  2220. uint16x8_t __ret;
  2221. __ret = (uint16x8_t)(__rev0 == __rev1);
  2222. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  2223. return __ret;
  2224. }
  2225. #endif
  2226. #ifdef __LITTLE_ENDIAN__
  2227. __ai uint8x16_t vceqq_s8(int8x16_t __p0, int8x16_t __p1) {
  2228. uint8x16_t __ret;
  2229. __ret = (uint8x16_t)(__p0 == __p1);
  2230. return __ret;
  2231. }
  2232. #else
  2233. __ai uint8x16_t vceqq_s8(int8x16_t __p0, int8x16_t __p1) {
  2234. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  2235. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  2236. uint8x16_t __ret;
  2237. __ret = (uint8x16_t)(__rev0 == __rev1);
  2238. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  2239. return __ret;
  2240. }
  2241. #endif
  2242. #ifdef __LITTLE_ENDIAN__
  2243. __ai uint32x4_t vceqq_f32(float32x4_t __p0, float32x4_t __p1) {
  2244. uint32x4_t __ret;
  2245. __ret = (uint32x4_t)(__p0 == __p1);
  2246. return __ret;
  2247. }
  2248. #else
  2249. __ai uint32x4_t vceqq_f32(float32x4_t __p0, float32x4_t __p1) {
  2250. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  2251. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  2252. uint32x4_t __ret;
  2253. __ret = (uint32x4_t)(__rev0 == __rev1);
  2254. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  2255. return __ret;
  2256. }
  2257. #endif
  2258. #ifdef __LITTLE_ENDIAN__
  2259. __ai uint32x4_t vceqq_s32(int32x4_t __p0, int32x4_t __p1) {
  2260. uint32x4_t __ret;
  2261. __ret = (uint32x4_t)(__p0 == __p1);
  2262. return __ret;
  2263. }
  2264. #else
  2265. __ai uint32x4_t vceqq_s32(int32x4_t __p0, int32x4_t __p1) {
  2266. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  2267. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  2268. uint32x4_t __ret;
  2269. __ret = (uint32x4_t)(__rev0 == __rev1);
  2270. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  2271. return __ret;
  2272. }
  2273. #endif
  2274. #ifdef __LITTLE_ENDIAN__
  2275. __ai uint16x8_t vceqq_s16(int16x8_t __p0, int16x8_t __p1) {
  2276. uint16x8_t __ret;
  2277. __ret = (uint16x8_t)(__p0 == __p1);
  2278. return __ret;
  2279. }
  2280. #else
  2281. __ai uint16x8_t vceqq_s16(int16x8_t __p0, int16x8_t __p1) {
  2282. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  2283. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  2284. uint16x8_t __ret;
  2285. __ret = (uint16x8_t)(__rev0 == __rev1);
  2286. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  2287. return __ret;
  2288. }
  2289. #endif
  2290. #ifdef __LITTLE_ENDIAN__
  2291. __ai uint8x8_t vceq_u8(uint8x8_t __p0, uint8x8_t __p1) {
  2292. uint8x8_t __ret;
  2293. __ret = (uint8x8_t)(__p0 == __p1);
  2294. return __ret;
  2295. }
  2296. #else
  2297. __ai uint8x8_t vceq_u8(uint8x8_t __p0, uint8x8_t __p1) {
  2298. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  2299. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  2300. uint8x8_t __ret;
  2301. __ret = (uint8x8_t)(__rev0 == __rev1);
  2302. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  2303. return __ret;
  2304. }
  2305. #endif
  2306. #ifdef __LITTLE_ENDIAN__
  2307. __ai uint32x2_t vceq_u32(uint32x2_t __p0, uint32x2_t __p1) {
  2308. uint32x2_t __ret;
  2309. __ret = (uint32x2_t)(__p0 == __p1);
  2310. return __ret;
  2311. }
  2312. #else
  2313. __ai uint32x2_t vceq_u32(uint32x2_t __p0, uint32x2_t __p1) {
  2314. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  2315. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  2316. uint32x2_t __ret;
  2317. __ret = (uint32x2_t)(__rev0 == __rev1);
  2318. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  2319. return __ret;
  2320. }
  2321. #endif
  2322. #ifdef __LITTLE_ENDIAN__
  2323. __ai uint16x4_t vceq_u16(uint16x4_t __p0, uint16x4_t __p1) {
  2324. uint16x4_t __ret;
  2325. __ret = (uint16x4_t)(__p0 == __p1);
  2326. return __ret;
  2327. }
  2328. #else
  2329. __ai uint16x4_t vceq_u16(uint16x4_t __p0, uint16x4_t __p1) {
  2330. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  2331. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  2332. uint16x4_t __ret;
  2333. __ret = (uint16x4_t)(__rev0 == __rev1);
  2334. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  2335. return __ret;
  2336. }
  2337. #endif
  2338. #ifdef __LITTLE_ENDIAN__
  2339. __ai uint8x8_t vceq_s8(int8x8_t __p0, int8x8_t __p1) {
  2340. uint8x8_t __ret;
  2341. __ret = (uint8x8_t)(__p0 == __p1);
  2342. return __ret;
  2343. }
  2344. #else
  2345. __ai uint8x8_t vceq_s8(int8x8_t __p0, int8x8_t __p1) {
  2346. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  2347. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  2348. uint8x8_t __ret;
  2349. __ret = (uint8x8_t)(__rev0 == __rev1);
  2350. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  2351. return __ret;
  2352. }
  2353. #endif
  2354. #ifdef __LITTLE_ENDIAN__
  2355. __ai uint32x2_t vceq_f32(float32x2_t __p0, float32x2_t __p1) {
  2356. uint32x2_t __ret;
  2357. __ret = (uint32x2_t)(__p0 == __p1);
  2358. return __ret;
  2359. }
  2360. #else
  2361. __ai uint32x2_t vceq_f32(float32x2_t __p0, float32x2_t __p1) {
  2362. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  2363. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  2364. uint32x2_t __ret;
  2365. __ret = (uint32x2_t)(__rev0 == __rev1);
  2366. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  2367. return __ret;
  2368. }
  2369. #endif
  2370. #ifdef __LITTLE_ENDIAN__
  2371. __ai uint32x2_t vceq_s32(int32x2_t __p0, int32x2_t __p1) {
  2372. uint32x2_t __ret;
  2373. __ret = (uint32x2_t)(__p0 == __p1);
  2374. return __ret;
  2375. }
  2376. #else
  2377. __ai uint32x2_t vceq_s32(int32x2_t __p0, int32x2_t __p1) {
  2378. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  2379. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  2380. uint32x2_t __ret;
  2381. __ret = (uint32x2_t)(__rev0 == __rev1);
  2382. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  2383. return __ret;
  2384. }
  2385. #endif
  2386. #ifdef __LITTLE_ENDIAN__
  2387. __ai uint16x4_t vceq_s16(int16x4_t __p0, int16x4_t __p1) {
  2388. uint16x4_t __ret;
  2389. __ret = (uint16x4_t)(__p0 == __p1);
  2390. return __ret;
  2391. }
  2392. #else
  2393. __ai uint16x4_t vceq_s16(int16x4_t __p0, int16x4_t __p1) {
  2394. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  2395. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  2396. uint16x4_t __ret;
  2397. __ret = (uint16x4_t)(__rev0 == __rev1);
  2398. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  2399. return __ret;
  2400. }
  2401. #endif
  2402. #ifdef __LITTLE_ENDIAN__
  2403. __ai uint8x16_t vcgeq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  2404. uint8x16_t __ret;
  2405. __ret = (uint8x16_t)(__p0 >= __p1);
  2406. return __ret;
  2407. }
  2408. #else
  2409. __ai uint8x16_t vcgeq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  2410. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  2411. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  2412. uint8x16_t __ret;
  2413. __ret = (uint8x16_t)(__rev0 >= __rev1);
  2414. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  2415. return __ret;
  2416. }
  2417. #endif
  2418. #ifdef __LITTLE_ENDIAN__
  2419. __ai uint32x4_t vcgeq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  2420. uint32x4_t __ret;
  2421. __ret = (uint32x4_t)(__p0 >= __p1);
  2422. return __ret;
  2423. }
  2424. #else
  2425. __ai uint32x4_t vcgeq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  2426. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  2427. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  2428. uint32x4_t __ret;
  2429. __ret = (uint32x4_t)(__rev0 >= __rev1);
  2430. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  2431. return __ret;
  2432. }
  2433. #endif
  2434. #ifdef __LITTLE_ENDIAN__
  2435. __ai uint16x8_t vcgeq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  2436. uint16x8_t __ret;
  2437. __ret = (uint16x8_t)(__p0 >= __p1);
  2438. return __ret;
  2439. }
  2440. #else
  2441. __ai uint16x8_t vcgeq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  2442. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  2443. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  2444. uint16x8_t __ret;
  2445. __ret = (uint16x8_t)(__rev0 >= __rev1);
  2446. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  2447. return __ret;
  2448. }
  2449. #endif
  2450. #ifdef __LITTLE_ENDIAN__
  2451. __ai uint8x16_t vcgeq_s8(int8x16_t __p0, int8x16_t __p1) {
  2452. uint8x16_t __ret;
  2453. __ret = (uint8x16_t)(__p0 >= __p1);
  2454. return __ret;
  2455. }
  2456. #else
  2457. __ai uint8x16_t vcgeq_s8(int8x16_t __p0, int8x16_t __p1) {
  2458. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  2459. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  2460. uint8x16_t __ret;
  2461. __ret = (uint8x16_t)(__rev0 >= __rev1);
  2462. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  2463. return __ret;
  2464. }
  2465. #endif
  2466. #ifdef __LITTLE_ENDIAN__
  2467. __ai uint32x4_t vcgeq_f32(float32x4_t __p0, float32x4_t __p1) {
  2468. uint32x4_t __ret;
  2469. __ret = (uint32x4_t)(__p0 >= __p1);
  2470. return __ret;
  2471. }
  2472. #else
  2473. __ai uint32x4_t vcgeq_f32(float32x4_t __p0, float32x4_t __p1) {
  2474. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  2475. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  2476. uint32x4_t __ret;
  2477. __ret = (uint32x4_t)(__rev0 >= __rev1);
  2478. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  2479. return __ret;
  2480. }
  2481. #endif
  2482. #ifdef __LITTLE_ENDIAN__
  2483. __ai uint32x4_t vcgeq_s32(int32x4_t __p0, int32x4_t __p1) {
  2484. uint32x4_t __ret;
  2485. __ret = (uint32x4_t)(__p0 >= __p1);
  2486. return __ret;
  2487. }
  2488. #else
  2489. __ai uint32x4_t vcgeq_s32(int32x4_t __p0, int32x4_t __p1) {
  2490. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  2491. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  2492. uint32x4_t __ret;
  2493. __ret = (uint32x4_t)(__rev0 >= __rev1);
  2494. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  2495. return __ret;
  2496. }
  2497. #endif
  2498. #ifdef __LITTLE_ENDIAN__
  2499. __ai uint16x8_t vcgeq_s16(int16x8_t __p0, int16x8_t __p1) {
  2500. uint16x8_t __ret;
  2501. __ret = (uint16x8_t)(__p0 >= __p1);
  2502. return __ret;
  2503. }
  2504. #else
  2505. __ai uint16x8_t vcgeq_s16(int16x8_t __p0, int16x8_t __p1) {
  2506. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  2507. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  2508. uint16x8_t __ret;
  2509. __ret = (uint16x8_t)(__rev0 >= __rev1);
  2510. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  2511. return __ret;
  2512. }
  2513. #endif
  2514. #ifdef __LITTLE_ENDIAN__
  2515. __ai uint8x8_t vcge_u8(uint8x8_t __p0, uint8x8_t __p1) {
  2516. uint8x8_t __ret;
  2517. __ret = (uint8x8_t)(__p0 >= __p1);
  2518. return __ret;
  2519. }
  2520. #else
  2521. __ai uint8x8_t vcge_u8(uint8x8_t __p0, uint8x8_t __p1) {
  2522. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  2523. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  2524. uint8x8_t __ret;
  2525. __ret = (uint8x8_t)(__rev0 >= __rev1);
  2526. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  2527. return __ret;
  2528. }
  2529. #endif
  2530. #ifdef __LITTLE_ENDIAN__
  2531. __ai uint32x2_t vcge_u32(uint32x2_t __p0, uint32x2_t __p1) {
  2532. uint32x2_t __ret;
  2533. __ret = (uint32x2_t)(__p0 >= __p1);
  2534. return __ret;
  2535. }
  2536. #else
  2537. __ai uint32x2_t vcge_u32(uint32x2_t __p0, uint32x2_t __p1) {
  2538. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  2539. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  2540. uint32x2_t __ret;
  2541. __ret = (uint32x2_t)(__rev0 >= __rev1);
  2542. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  2543. return __ret;
  2544. }
  2545. #endif
  2546. #ifdef __LITTLE_ENDIAN__
  2547. __ai uint16x4_t vcge_u16(uint16x4_t __p0, uint16x4_t __p1) {
  2548. uint16x4_t __ret;
  2549. __ret = (uint16x4_t)(__p0 >= __p1);
  2550. return __ret;
  2551. }
  2552. #else
  2553. __ai uint16x4_t vcge_u16(uint16x4_t __p0, uint16x4_t __p1) {
  2554. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  2555. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  2556. uint16x4_t __ret;
  2557. __ret = (uint16x4_t)(__rev0 >= __rev1);
  2558. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  2559. return __ret;
  2560. }
  2561. #endif
  2562. #ifdef __LITTLE_ENDIAN__
  2563. __ai uint8x8_t vcge_s8(int8x8_t __p0, int8x8_t __p1) {
  2564. uint8x8_t __ret;
  2565. __ret = (uint8x8_t)(__p0 >= __p1);
  2566. return __ret;
  2567. }
  2568. #else
  2569. __ai uint8x8_t vcge_s8(int8x8_t __p0, int8x8_t __p1) {
  2570. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  2571. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  2572. uint8x8_t __ret;
  2573. __ret = (uint8x8_t)(__rev0 >= __rev1);
  2574. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  2575. return __ret;
  2576. }
  2577. #endif
  2578. #ifdef __LITTLE_ENDIAN__
  2579. __ai uint32x2_t vcge_f32(float32x2_t __p0, float32x2_t __p1) {
  2580. uint32x2_t __ret;
  2581. __ret = (uint32x2_t)(__p0 >= __p1);
  2582. return __ret;
  2583. }
  2584. #else
  2585. __ai uint32x2_t vcge_f32(float32x2_t __p0, float32x2_t __p1) {
  2586. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  2587. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  2588. uint32x2_t __ret;
  2589. __ret = (uint32x2_t)(__rev0 >= __rev1);
  2590. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  2591. return __ret;
  2592. }
  2593. #endif
  2594. #ifdef __LITTLE_ENDIAN__
  2595. __ai uint32x2_t vcge_s32(int32x2_t __p0, int32x2_t __p1) {
  2596. uint32x2_t __ret;
  2597. __ret = (uint32x2_t)(__p0 >= __p1);
  2598. return __ret;
  2599. }
  2600. #else
  2601. __ai uint32x2_t vcge_s32(int32x2_t __p0, int32x2_t __p1) {
  2602. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  2603. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  2604. uint32x2_t __ret;
  2605. __ret = (uint32x2_t)(__rev0 >= __rev1);
  2606. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  2607. return __ret;
  2608. }
  2609. #endif
  2610. #ifdef __LITTLE_ENDIAN__
  2611. __ai uint16x4_t vcge_s16(int16x4_t __p0, int16x4_t __p1) {
  2612. uint16x4_t __ret;
  2613. __ret = (uint16x4_t)(__p0 >= __p1);
  2614. return __ret;
  2615. }
  2616. #else
  2617. __ai uint16x4_t vcge_s16(int16x4_t __p0, int16x4_t __p1) {
  2618. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  2619. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  2620. uint16x4_t __ret;
  2621. __ret = (uint16x4_t)(__rev0 >= __rev1);
  2622. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  2623. return __ret;
  2624. }
  2625. #endif
  2626. #ifdef __LITTLE_ENDIAN__
  2627. __ai uint8x16_t vcgtq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  2628. uint8x16_t __ret;
  2629. __ret = (uint8x16_t)(__p0 > __p1);
  2630. return __ret;
  2631. }
  2632. #else
  2633. __ai uint8x16_t vcgtq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  2634. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  2635. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  2636. uint8x16_t __ret;
  2637. __ret = (uint8x16_t)(__rev0 > __rev1);
  2638. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  2639. return __ret;
  2640. }
  2641. #endif
  2642. #ifdef __LITTLE_ENDIAN__
  2643. __ai uint32x4_t vcgtq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  2644. uint32x4_t __ret;
  2645. __ret = (uint32x4_t)(__p0 > __p1);
  2646. return __ret;
  2647. }
  2648. #else
  2649. __ai uint32x4_t vcgtq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  2650. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  2651. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  2652. uint32x4_t __ret;
  2653. __ret = (uint32x4_t)(__rev0 > __rev1);
  2654. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  2655. return __ret;
  2656. }
  2657. #endif
  2658. #ifdef __LITTLE_ENDIAN__
  2659. __ai uint16x8_t vcgtq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  2660. uint16x8_t __ret;
  2661. __ret = (uint16x8_t)(__p0 > __p1);
  2662. return __ret;
  2663. }
  2664. #else
  2665. __ai uint16x8_t vcgtq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  2666. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  2667. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  2668. uint16x8_t __ret;
  2669. __ret = (uint16x8_t)(__rev0 > __rev1);
  2670. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  2671. return __ret;
  2672. }
  2673. #endif
  2674. #ifdef __LITTLE_ENDIAN__
  2675. __ai uint8x16_t vcgtq_s8(int8x16_t __p0, int8x16_t __p1) {
  2676. uint8x16_t __ret;
  2677. __ret = (uint8x16_t)(__p0 > __p1);
  2678. return __ret;
  2679. }
  2680. #else
  2681. __ai uint8x16_t vcgtq_s8(int8x16_t __p0, int8x16_t __p1) {
  2682. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  2683. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  2684. uint8x16_t __ret;
  2685. __ret = (uint8x16_t)(__rev0 > __rev1);
  2686. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  2687. return __ret;
  2688. }
  2689. #endif
  2690. #ifdef __LITTLE_ENDIAN__
  2691. __ai uint32x4_t vcgtq_f32(float32x4_t __p0, float32x4_t __p1) {
  2692. uint32x4_t __ret;
  2693. __ret = (uint32x4_t)(__p0 > __p1);
  2694. return __ret;
  2695. }
  2696. #else
  2697. __ai uint32x4_t vcgtq_f32(float32x4_t __p0, float32x4_t __p1) {
  2698. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  2699. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  2700. uint32x4_t __ret;
  2701. __ret = (uint32x4_t)(__rev0 > __rev1);
  2702. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  2703. return __ret;
  2704. }
  2705. #endif
  2706. #ifdef __LITTLE_ENDIAN__
  2707. __ai uint32x4_t vcgtq_s32(int32x4_t __p0, int32x4_t __p1) {
  2708. uint32x4_t __ret;
  2709. __ret = (uint32x4_t)(__p0 > __p1);
  2710. return __ret;
  2711. }
  2712. #else
  2713. __ai uint32x4_t vcgtq_s32(int32x4_t __p0, int32x4_t __p1) {
  2714. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  2715. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  2716. uint32x4_t __ret;
  2717. __ret = (uint32x4_t)(__rev0 > __rev1);
  2718. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  2719. return __ret;
  2720. }
  2721. #endif
  2722. #ifdef __LITTLE_ENDIAN__
  2723. __ai uint16x8_t vcgtq_s16(int16x8_t __p0, int16x8_t __p1) {
  2724. uint16x8_t __ret;
  2725. __ret = (uint16x8_t)(__p0 > __p1);
  2726. return __ret;
  2727. }
  2728. #else
  2729. __ai uint16x8_t vcgtq_s16(int16x8_t __p0, int16x8_t __p1) {
  2730. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  2731. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  2732. uint16x8_t __ret;
  2733. __ret = (uint16x8_t)(__rev0 > __rev1);
  2734. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  2735. return __ret;
  2736. }
  2737. #endif
  2738. #ifdef __LITTLE_ENDIAN__
  2739. __ai uint8x8_t vcgt_u8(uint8x8_t __p0, uint8x8_t __p1) {
  2740. uint8x8_t __ret;
  2741. __ret = (uint8x8_t)(__p0 > __p1);
  2742. return __ret;
  2743. }
  2744. #else
  2745. __ai uint8x8_t vcgt_u8(uint8x8_t __p0, uint8x8_t __p1) {
  2746. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  2747. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  2748. uint8x8_t __ret;
  2749. __ret = (uint8x8_t)(__rev0 > __rev1);
  2750. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  2751. return __ret;
  2752. }
  2753. #endif
  2754. #ifdef __LITTLE_ENDIAN__
  2755. __ai uint32x2_t vcgt_u32(uint32x2_t __p0, uint32x2_t __p1) {
  2756. uint32x2_t __ret;
  2757. __ret = (uint32x2_t)(__p0 > __p1);
  2758. return __ret;
  2759. }
  2760. #else
  2761. __ai uint32x2_t vcgt_u32(uint32x2_t __p0, uint32x2_t __p1) {
  2762. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  2763. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  2764. uint32x2_t __ret;
  2765. __ret = (uint32x2_t)(__rev0 > __rev1);
  2766. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  2767. return __ret;
  2768. }
  2769. #endif
  2770. #ifdef __LITTLE_ENDIAN__
  2771. __ai uint16x4_t vcgt_u16(uint16x4_t __p0, uint16x4_t __p1) {
  2772. uint16x4_t __ret;
  2773. __ret = (uint16x4_t)(__p0 > __p1);
  2774. return __ret;
  2775. }
  2776. #else
  2777. __ai uint16x4_t vcgt_u16(uint16x4_t __p0, uint16x4_t __p1) {
  2778. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  2779. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  2780. uint16x4_t __ret;
  2781. __ret = (uint16x4_t)(__rev0 > __rev1);
  2782. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  2783. return __ret;
  2784. }
  2785. #endif
  2786. #ifdef __LITTLE_ENDIAN__
  2787. __ai uint8x8_t vcgt_s8(int8x8_t __p0, int8x8_t __p1) {
  2788. uint8x8_t __ret;
  2789. __ret = (uint8x8_t)(__p0 > __p1);
  2790. return __ret;
  2791. }
  2792. #else
  2793. __ai uint8x8_t vcgt_s8(int8x8_t __p0, int8x8_t __p1) {
  2794. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  2795. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  2796. uint8x8_t __ret;
  2797. __ret = (uint8x8_t)(__rev0 > __rev1);
  2798. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  2799. return __ret;
  2800. }
  2801. #endif
  2802. #ifdef __LITTLE_ENDIAN__
  2803. __ai uint32x2_t vcgt_f32(float32x2_t __p0, float32x2_t __p1) {
  2804. uint32x2_t __ret;
  2805. __ret = (uint32x2_t)(__p0 > __p1);
  2806. return __ret;
  2807. }
  2808. #else
  2809. __ai uint32x2_t vcgt_f32(float32x2_t __p0, float32x2_t __p1) {
  2810. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  2811. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  2812. uint32x2_t __ret;
  2813. __ret = (uint32x2_t)(__rev0 > __rev1);
  2814. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  2815. return __ret;
  2816. }
  2817. #endif
  2818. #ifdef __LITTLE_ENDIAN__
  2819. __ai uint32x2_t vcgt_s32(int32x2_t __p0, int32x2_t __p1) {
  2820. uint32x2_t __ret;
  2821. __ret = (uint32x2_t)(__p0 > __p1);
  2822. return __ret;
  2823. }
  2824. #else
  2825. __ai uint32x2_t vcgt_s32(int32x2_t __p0, int32x2_t __p1) {
  2826. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  2827. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  2828. uint32x2_t __ret;
  2829. __ret = (uint32x2_t)(__rev0 > __rev1);
  2830. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  2831. return __ret;
  2832. }
  2833. #endif
  2834. #ifdef __LITTLE_ENDIAN__
  2835. __ai uint16x4_t vcgt_s16(int16x4_t __p0, int16x4_t __p1) {
  2836. uint16x4_t __ret;
  2837. __ret = (uint16x4_t)(__p0 > __p1);
  2838. return __ret;
  2839. }
  2840. #else
  2841. __ai uint16x4_t vcgt_s16(int16x4_t __p0, int16x4_t __p1) {
  2842. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  2843. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  2844. uint16x4_t __ret;
  2845. __ret = (uint16x4_t)(__rev0 > __rev1);
  2846. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  2847. return __ret;
  2848. }
  2849. #endif
  2850. #ifdef __LITTLE_ENDIAN__
  2851. __ai uint8x16_t vcleq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  2852. uint8x16_t __ret;
  2853. __ret = (uint8x16_t)(__p0 <= __p1);
  2854. return __ret;
  2855. }
  2856. #else
  2857. __ai uint8x16_t vcleq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  2858. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  2859. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  2860. uint8x16_t __ret;
  2861. __ret = (uint8x16_t)(__rev0 <= __rev1);
  2862. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  2863. return __ret;
  2864. }
  2865. #endif
  2866. #ifdef __LITTLE_ENDIAN__
  2867. __ai uint32x4_t vcleq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  2868. uint32x4_t __ret;
  2869. __ret = (uint32x4_t)(__p0 <= __p1);
  2870. return __ret;
  2871. }
  2872. #else
  2873. __ai uint32x4_t vcleq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  2874. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  2875. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  2876. uint32x4_t __ret;
  2877. __ret = (uint32x4_t)(__rev0 <= __rev1);
  2878. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  2879. return __ret;
  2880. }
  2881. #endif
  2882. #ifdef __LITTLE_ENDIAN__
  2883. __ai uint16x8_t vcleq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  2884. uint16x8_t __ret;
  2885. __ret = (uint16x8_t)(__p0 <= __p1);
  2886. return __ret;
  2887. }
  2888. #else
  2889. __ai uint16x8_t vcleq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  2890. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  2891. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  2892. uint16x8_t __ret;
  2893. __ret = (uint16x8_t)(__rev0 <= __rev1);
  2894. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  2895. return __ret;
  2896. }
  2897. #endif
  2898. #ifdef __LITTLE_ENDIAN__
  2899. __ai uint8x16_t vcleq_s8(int8x16_t __p0, int8x16_t __p1) {
  2900. uint8x16_t __ret;
  2901. __ret = (uint8x16_t)(__p0 <= __p1);
  2902. return __ret;
  2903. }
  2904. #else
  2905. __ai uint8x16_t vcleq_s8(int8x16_t __p0, int8x16_t __p1) {
  2906. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  2907. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  2908. uint8x16_t __ret;
  2909. __ret = (uint8x16_t)(__rev0 <= __rev1);
  2910. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  2911. return __ret;
  2912. }
  2913. #endif
  2914. #ifdef __LITTLE_ENDIAN__
  2915. __ai uint32x4_t vcleq_f32(float32x4_t __p0, float32x4_t __p1) {
  2916. uint32x4_t __ret;
  2917. __ret = (uint32x4_t)(__p0 <= __p1);
  2918. return __ret;
  2919. }
  2920. #else
  2921. __ai uint32x4_t vcleq_f32(float32x4_t __p0, float32x4_t __p1) {
  2922. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  2923. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  2924. uint32x4_t __ret;
  2925. __ret = (uint32x4_t)(__rev0 <= __rev1);
  2926. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  2927. return __ret;
  2928. }
  2929. #endif
  2930. #ifdef __LITTLE_ENDIAN__
  2931. __ai uint32x4_t vcleq_s32(int32x4_t __p0, int32x4_t __p1) {
  2932. uint32x4_t __ret;
  2933. __ret = (uint32x4_t)(__p0 <= __p1);
  2934. return __ret;
  2935. }
  2936. #else
  2937. __ai uint32x4_t vcleq_s32(int32x4_t __p0, int32x4_t __p1) {
  2938. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  2939. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  2940. uint32x4_t __ret;
  2941. __ret = (uint32x4_t)(__rev0 <= __rev1);
  2942. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  2943. return __ret;
  2944. }
  2945. #endif
  2946. #ifdef __LITTLE_ENDIAN__
  2947. __ai uint16x8_t vcleq_s16(int16x8_t __p0, int16x8_t __p1) {
  2948. uint16x8_t __ret;
  2949. __ret = (uint16x8_t)(__p0 <= __p1);
  2950. return __ret;
  2951. }
  2952. #else
  2953. __ai uint16x8_t vcleq_s16(int16x8_t __p0, int16x8_t __p1) {
  2954. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  2955. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  2956. uint16x8_t __ret;
  2957. __ret = (uint16x8_t)(__rev0 <= __rev1);
  2958. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  2959. return __ret;
  2960. }
  2961. #endif
  2962. #ifdef __LITTLE_ENDIAN__
  2963. __ai uint8x8_t vcle_u8(uint8x8_t __p0, uint8x8_t __p1) {
  2964. uint8x8_t __ret;
  2965. __ret = (uint8x8_t)(__p0 <= __p1);
  2966. return __ret;
  2967. }
  2968. #else
  2969. __ai uint8x8_t vcle_u8(uint8x8_t __p0, uint8x8_t __p1) {
  2970. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  2971. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  2972. uint8x8_t __ret;
  2973. __ret = (uint8x8_t)(__rev0 <= __rev1);
  2974. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  2975. return __ret;
  2976. }
  2977. #endif
  2978. #ifdef __LITTLE_ENDIAN__
  2979. __ai uint32x2_t vcle_u32(uint32x2_t __p0, uint32x2_t __p1) {
  2980. uint32x2_t __ret;
  2981. __ret = (uint32x2_t)(__p0 <= __p1);
  2982. return __ret;
  2983. }
  2984. #else
  2985. __ai uint32x2_t vcle_u32(uint32x2_t __p0, uint32x2_t __p1) {
  2986. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  2987. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  2988. uint32x2_t __ret;
  2989. __ret = (uint32x2_t)(__rev0 <= __rev1);
  2990. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  2991. return __ret;
  2992. }
  2993. #endif
  2994. #ifdef __LITTLE_ENDIAN__
  2995. __ai uint16x4_t vcle_u16(uint16x4_t __p0, uint16x4_t __p1) {
  2996. uint16x4_t __ret;
  2997. __ret = (uint16x4_t)(__p0 <= __p1);
  2998. return __ret;
  2999. }
  3000. #else
  3001. __ai uint16x4_t vcle_u16(uint16x4_t __p0, uint16x4_t __p1) {
  3002. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  3003. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  3004. uint16x4_t __ret;
  3005. __ret = (uint16x4_t)(__rev0 <= __rev1);
  3006. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  3007. return __ret;
  3008. }
  3009. #endif
  3010. #ifdef __LITTLE_ENDIAN__
  3011. __ai uint8x8_t vcle_s8(int8x8_t __p0, int8x8_t __p1) {
  3012. uint8x8_t __ret;
  3013. __ret = (uint8x8_t)(__p0 <= __p1);
  3014. return __ret;
  3015. }
  3016. #else
  3017. __ai uint8x8_t vcle_s8(int8x8_t __p0, int8x8_t __p1) {
  3018. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  3019. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  3020. uint8x8_t __ret;
  3021. __ret = (uint8x8_t)(__rev0 <= __rev1);
  3022. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  3023. return __ret;
  3024. }
  3025. #endif
  3026. #ifdef __LITTLE_ENDIAN__
  3027. __ai uint32x2_t vcle_f32(float32x2_t __p0, float32x2_t __p1) {
  3028. uint32x2_t __ret;
  3029. __ret = (uint32x2_t)(__p0 <= __p1);
  3030. return __ret;
  3031. }
  3032. #else
  3033. __ai uint32x2_t vcle_f32(float32x2_t __p0, float32x2_t __p1) {
  3034. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  3035. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  3036. uint32x2_t __ret;
  3037. __ret = (uint32x2_t)(__rev0 <= __rev1);
  3038. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  3039. return __ret;
  3040. }
  3041. #endif
  3042. #ifdef __LITTLE_ENDIAN__
  3043. __ai uint32x2_t vcle_s32(int32x2_t __p0, int32x2_t __p1) {
  3044. uint32x2_t __ret;
  3045. __ret = (uint32x2_t)(__p0 <= __p1);
  3046. return __ret;
  3047. }
  3048. #else
  3049. __ai uint32x2_t vcle_s32(int32x2_t __p0, int32x2_t __p1) {
  3050. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  3051. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  3052. uint32x2_t __ret;
  3053. __ret = (uint32x2_t)(__rev0 <= __rev1);
  3054. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  3055. return __ret;
  3056. }
  3057. #endif
  3058. #ifdef __LITTLE_ENDIAN__
  3059. __ai uint16x4_t vcle_s16(int16x4_t __p0, int16x4_t __p1) {
  3060. uint16x4_t __ret;
  3061. __ret = (uint16x4_t)(__p0 <= __p1);
  3062. return __ret;
  3063. }
  3064. #else
  3065. __ai uint16x4_t vcle_s16(int16x4_t __p0, int16x4_t __p1) {
  3066. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  3067. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  3068. uint16x4_t __ret;
  3069. __ret = (uint16x4_t)(__rev0 <= __rev1);
  3070. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  3071. return __ret;
  3072. }
  3073. #endif
  3074. #ifdef __LITTLE_ENDIAN__
  3075. __ai int8x16_t vclsq_s8(int8x16_t __p0) {
  3076. int8x16_t __ret;
  3077. __ret = (int8x16_t) __builtin_neon_vclsq_v((int8x16_t)__p0, 32);
  3078. return __ret;
  3079. }
  3080. #else
  3081. __ai int8x16_t vclsq_s8(int8x16_t __p0) {
  3082. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  3083. int8x16_t __ret;
  3084. __ret = (int8x16_t) __builtin_neon_vclsq_v((int8x16_t)__rev0, 32);
  3085. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  3086. return __ret;
  3087. }
  3088. #endif
  3089. #ifdef __LITTLE_ENDIAN__
  3090. __ai int32x4_t vclsq_s32(int32x4_t __p0) {
  3091. int32x4_t __ret;
  3092. __ret = (int32x4_t) __builtin_neon_vclsq_v((int8x16_t)__p0, 34);
  3093. return __ret;
  3094. }
  3095. #else
  3096. __ai int32x4_t vclsq_s32(int32x4_t __p0) {
  3097. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  3098. int32x4_t __ret;
  3099. __ret = (int32x4_t) __builtin_neon_vclsq_v((int8x16_t)__rev0, 34);
  3100. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  3101. return __ret;
  3102. }
  3103. #endif
  3104. #ifdef __LITTLE_ENDIAN__
  3105. __ai int16x8_t vclsq_s16(int16x8_t __p0) {
  3106. int16x8_t __ret;
  3107. __ret = (int16x8_t) __builtin_neon_vclsq_v((int8x16_t)__p0, 33);
  3108. return __ret;
  3109. }
  3110. #else
  3111. __ai int16x8_t vclsq_s16(int16x8_t __p0) {
  3112. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  3113. int16x8_t __ret;
  3114. __ret = (int16x8_t) __builtin_neon_vclsq_v((int8x16_t)__rev0, 33);
  3115. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  3116. return __ret;
  3117. }
  3118. #endif
  3119. #ifdef __LITTLE_ENDIAN__
  3120. __ai int8x8_t vcls_s8(int8x8_t __p0) {
  3121. int8x8_t __ret;
  3122. __ret = (int8x8_t) __builtin_neon_vcls_v((int8x8_t)__p0, 0);
  3123. return __ret;
  3124. }
  3125. #else
  3126. __ai int8x8_t vcls_s8(int8x8_t __p0) {
  3127. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  3128. int8x8_t __ret;
  3129. __ret = (int8x8_t) __builtin_neon_vcls_v((int8x8_t)__rev0, 0);
  3130. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  3131. return __ret;
  3132. }
  3133. #endif
  3134. #ifdef __LITTLE_ENDIAN__
  3135. __ai int32x2_t vcls_s32(int32x2_t __p0) {
  3136. int32x2_t __ret;
  3137. __ret = (int32x2_t) __builtin_neon_vcls_v((int8x8_t)__p0, 2);
  3138. return __ret;
  3139. }
  3140. #else
  3141. __ai int32x2_t vcls_s32(int32x2_t __p0) {
  3142. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  3143. int32x2_t __ret;
  3144. __ret = (int32x2_t) __builtin_neon_vcls_v((int8x8_t)__rev0, 2);
  3145. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  3146. return __ret;
  3147. }
  3148. #endif
  3149. #ifdef __LITTLE_ENDIAN__
  3150. __ai int16x4_t vcls_s16(int16x4_t __p0) {
  3151. int16x4_t __ret;
  3152. __ret = (int16x4_t) __builtin_neon_vcls_v((int8x8_t)__p0, 1);
  3153. return __ret;
  3154. }
  3155. #else
  3156. __ai int16x4_t vcls_s16(int16x4_t __p0) {
  3157. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  3158. int16x4_t __ret;
  3159. __ret = (int16x4_t) __builtin_neon_vcls_v((int8x8_t)__rev0, 1);
  3160. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  3161. return __ret;
  3162. }
  3163. #endif
  3164. #ifdef __LITTLE_ENDIAN__
  3165. __ai uint8x16_t vcltq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  3166. uint8x16_t __ret;
  3167. __ret = (uint8x16_t)(__p0 < __p1);
  3168. return __ret;
  3169. }
  3170. #else
  3171. __ai uint8x16_t vcltq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  3172. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  3173. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  3174. uint8x16_t __ret;
  3175. __ret = (uint8x16_t)(__rev0 < __rev1);
  3176. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  3177. return __ret;
  3178. }
  3179. #endif
  3180. #ifdef __LITTLE_ENDIAN__
  3181. __ai uint32x4_t vcltq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  3182. uint32x4_t __ret;
  3183. __ret = (uint32x4_t)(__p0 < __p1);
  3184. return __ret;
  3185. }
  3186. #else
  3187. __ai uint32x4_t vcltq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  3188. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  3189. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  3190. uint32x4_t __ret;
  3191. __ret = (uint32x4_t)(__rev0 < __rev1);
  3192. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  3193. return __ret;
  3194. }
  3195. #endif
  3196. #ifdef __LITTLE_ENDIAN__
  3197. __ai uint16x8_t vcltq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  3198. uint16x8_t __ret;
  3199. __ret = (uint16x8_t)(__p0 < __p1);
  3200. return __ret;
  3201. }
  3202. #else
  3203. __ai uint16x8_t vcltq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  3204. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  3205. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  3206. uint16x8_t __ret;
  3207. __ret = (uint16x8_t)(__rev0 < __rev1);
  3208. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  3209. return __ret;
  3210. }
  3211. #endif
  3212. #ifdef __LITTLE_ENDIAN__
  3213. __ai uint8x16_t vcltq_s8(int8x16_t __p0, int8x16_t __p1) {
  3214. uint8x16_t __ret;
  3215. __ret = (uint8x16_t)(__p0 < __p1);
  3216. return __ret;
  3217. }
  3218. #else
  3219. __ai uint8x16_t vcltq_s8(int8x16_t __p0, int8x16_t __p1) {
  3220. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  3221. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  3222. uint8x16_t __ret;
  3223. __ret = (uint8x16_t)(__rev0 < __rev1);
  3224. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  3225. return __ret;
  3226. }
  3227. #endif
  3228. #ifdef __LITTLE_ENDIAN__
  3229. __ai uint32x4_t vcltq_f32(float32x4_t __p0, float32x4_t __p1) {
  3230. uint32x4_t __ret;
  3231. __ret = (uint32x4_t)(__p0 < __p1);
  3232. return __ret;
  3233. }
  3234. #else
  3235. __ai uint32x4_t vcltq_f32(float32x4_t __p0, float32x4_t __p1) {
  3236. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  3237. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  3238. uint32x4_t __ret;
  3239. __ret = (uint32x4_t)(__rev0 < __rev1);
  3240. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  3241. return __ret;
  3242. }
  3243. #endif
  3244. #ifdef __LITTLE_ENDIAN__
  3245. __ai uint32x4_t vcltq_s32(int32x4_t __p0, int32x4_t __p1) {
  3246. uint32x4_t __ret;
  3247. __ret = (uint32x4_t)(__p0 < __p1);
  3248. return __ret;
  3249. }
  3250. #else
  3251. __ai uint32x4_t vcltq_s32(int32x4_t __p0, int32x4_t __p1) {
  3252. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  3253. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  3254. uint32x4_t __ret;
  3255. __ret = (uint32x4_t)(__rev0 < __rev1);
  3256. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  3257. return __ret;
  3258. }
  3259. #endif
  3260. #ifdef __LITTLE_ENDIAN__
  3261. __ai uint16x8_t vcltq_s16(int16x8_t __p0, int16x8_t __p1) {
  3262. uint16x8_t __ret;
  3263. __ret = (uint16x8_t)(__p0 < __p1);
  3264. return __ret;
  3265. }
  3266. #else
  3267. __ai uint16x8_t vcltq_s16(int16x8_t __p0, int16x8_t __p1) {
  3268. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  3269. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  3270. uint16x8_t __ret;
  3271. __ret = (uint16x8_t)(__rev0 < __rev1);
  3272. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  3273. return __ret;
  3274. }
  3275. #endif
  3276. #ifdef __LITTLE_ENDIAN__
  3277. __ai uint8x8_t vclt_u8(uint8x8_t __p0, uint8x8_t __p1) {
  3278. uint8x8_t __ret;
  3279. __ret = (uint8x8_t)(__p0 < __p1);
  3280. return __ret;
  3281. }
  3282. #else
  3283. __ai uint8x8_t vclt_u8(uint8x8_t __p0, uint8x8_t __p1) {
  3284. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  3285. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  3286. uint8x8_t __ret;
  3287. __ret = (uint8x8_t)(__rev0 < __rev1);
  3288. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  3289. return __ret;
  3290. }
  3291. #endif
  3292. #ifdef __LITTLE_ENDIAN__
  3293. __ai uint32x2_t vclt_u32(uint32x2_t __p0, uint32x2_t __p1) {
  3294. uint32x2_t __ret;
  3295. __ret = (uint32x2_t)(__p0 < __p1);
  3296. return __ret;
  3297. }
  3298. #else
  3299. __ai uint32x2_t vclt_u32(uint32x2_t __p0, uint32x2_t __p1) {
  3300. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  3301. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  3302. uint32x2_t __ret;
  3303. __ret = (uint32x2_t)(__rev0 < __rev1);
  3304. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  3305. return __ret;
  3306. }
  3307. #endif
  3308. #ifdef __LITTLE_ENDIAN__
  3309. __ai uint16x4_t vclt_u16(uint16x4_t __p0, uint16x4_t __p1) {
  3310. uint16x4_t __ret;
  3311. __ret = (uint16x4_t)(__p0 < __p1);
  3312. return __ret;
  3313. }
  3314. #else
  3315. __ai uint16x4_t vclt_u16(uint16x4_t __p0, uint16x4_t __p1) {
  3316. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  3317. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  3318. uint16x4_t __ret;
  3319. __ret = (uint16x4_t)(__rev0 < __rev1);
  3320. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  3321. return __ret;
  3322. }
  3323. #endif
  3324. #ifdef __LITTLE_ENDIAN__
  3325. __ai uint8x8_t vclt_s8(int8x8_t __p0, int8x8_t __p1) {
  3326. uint8x8_t __ret;
  3327. __ret = (uint8x8_t)(__p0 < __p1);
  3328. return __ret;
  3329. }
  3330. #else
  3331. __ai uint8x8_t vclt_s8(int8x8_t __p0, int8x8_t __p1) {
  3332. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  3333. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  3334. uint8x8_t __ret;
  3335. __ret = (uint8x8_t)(__rev0 < __rev1);
  3336. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  3337. return __ret;
  3338. }
  3339. #endif
  3340. #ifdef __LITTLE_ENDIAN__
  3341. __ai uint32x2_t vclt_f32(float32x2_t __p0, float32x2_t __p1) {
  3342. uint32x2_t __ret;
  3343. __ret = (uint32x2_t)(__p0 < __p1);
  3344. return __ret;
  3345. }
  3346. #else
  3347. __ai uint32x2_t vclt_f32(float32x2_t __p0, float32x2_t __p1) {
  3348. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  3349. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  3350. uint32x2_t __ret;
  3351. __ret = (uint32x2_t)(__rev0 < __rev1);
  3352. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  3353. return __ret;
  3354. }
  3355. #endif
  3356. #ifdef __LITTLE_ENDIAN__
  3357. __ai uint32x2_t vclt_s32(int32x2_t __p0, int32x2_t __p1) {
  3358. uint32x2_t __ret;
  3359. __ret = (uint32x2_t)(__p0 < __p1);
  3360. return __ret;
  3361. }
  3362. #else
  3363. __ai uint32x2_t vclt_s32(int32x2_t __p0, int32x2_t __p1) {
  3364. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  3365. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  3366. uint32x2_t __ret;
  3367. __ret = (uint32x2_t)(__rev0 < __rev1);
  3368. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  3369. return __ret;
  3370. }
  3371. #endif
  3372. #ifdef __LITTLE_ENDIAN__
  3373. __ai uint16x4_t vclt_s16(int16x4_t __p0, int16x4_t __p1) {
  3374. uint16x4_t __ret;
  3375. __ret = (uint16x4_t)(__p0 < __p1);
  3376. return __ret;
  3377. }
  3378. #else
  3379. __ai uint16x4_t vclt_s16(int16x4_t __p0, int16x4_t __p1) {
  3380. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  3381. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  3382. uint16x4_t __ret;
  3383. __ret = (uint16x4_t)(__rev0 < __rev1);
  3384. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  3385. return __ret;
  3386. }
  3387. #endif
  3388. #ifdef __LITTLE_ENDIAN__
  3389. __ai uint8x16_t vclzq_u8(uint8x16_t __p0) {
  3390. uint8x16_t __ret;
  3391. __ret = (uint8x16_t) __builtin_neon_vclzq_v((int8x16_t)__p0, 48);
  3392. return __ret;
  3393. }
  3394. #else
  3395. __ai uint8x16_t vclzq_u8(uint8x16_t __p0) {
  3396. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  3397. uint8x16_t __ret;
  3398. __ret = (uint8x16_t) __builtin_neon_vclzq_v((int8x16_t)__rev0, 48);
  3399. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  3400. return __ret;
  3401. }
  3402. #endif
  3403. #ifdef __LITTLE_ENDIAN__
  3404. __ai uint32x4_t vclzq_u32(uint32x4_t __p0) {
  3405. uint32x4_t __ret;
  3406. __ret = (uint32x4_t) __builtin_neon_vclzq_v((int8x16_t)__p0, 50);
  3407. return __ret;
  3408. }
  3409. #else
  3410. __ai uint32x4_t vclzq_u32(uint32x4_t __p0) {
  3411. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  3412. uint32x4_t __ret;
  3413. __ret = (uint32x4_t) __builtin_neon_vclzq_v((int8x16_t)__rev0, 50);
  3414. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  3415. return __ret;
  3416. }
  3417. #endif
  3418. #ifdef __LITTLE_ENDIAN__
  3419. __ai uint16x8_t vclzq_u16(uint16x8_t __p0) {
  3420. uint16x8_t __ret;
  3421. __ret = (uint16x8_t) __builtin_neon_vclzq_v((int8x16_t)__p0, 49);
  3422. return __ret;
  3423. }
  3424. #else
  3425. __ai uint16x8_t vclzq_u16(uint16x8_t __p0) {
  3426. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  3427. uint16x8_t __ret;
  3428. __ret = (uint16x8_t) __builtin_neon_vclzq_v((int8x16_t)__rev0, 49);
  3429. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  3430. return __ret;
  3431. }
  3432. #endif
  3433. #ifdef __LITTLE_ENDIAN__
  3434. __ai int8x16_t vclzq_s8(int8x16_t __p0) {
  3435. int8x16_t __ret;
  3436. __ret = (int8x16_t) __builtin_neon_vclzq_v((int8x16_t)__p0, 32);
  3437. return __ret;
  3438. }
  3439. #else
  3440. __ai int8x16_t vclzq_s8(int8x16_t __p0) {
  3441. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  3442. int8x16_t __ret;
  3443. __ret = (int8x16_t) __builtin_neon_vclzq_v((int8x16_t)__rev0, 32);
  3444. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  3445. return __ret;
  3446. }
  3447. #endif
  3448. #ifdef __LITTLE_ENDIAN__
  3449. __ai int32x4_t vclzq_s32(int32x4_t __p0) {
  3450. int32x4_t __ret;
  3451. __ret = (int32x4_t) __builtin_neon_vclzq_v((int8x16_t)__p0, 34);
  3452. return __ret;
  3453. }
  3454. #else
  3455. __ai int32x4_t vclzq_s32(int32x4_t __p0) {
  3456. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  3457. int32x4_t __ret;
  3458. __ret = (int32x4_t) __builtin_neon_vclzq_v((int8x16_t)__rev0, 34);
  3459. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  3460. return __ret;
  3461. }
  3462. #endif
  3463. #ifdef __LITTLE_ENDIAN__
  3464. __ai int16x8_t vclzq_s16(int16x8_t __p0) {
  3465. int16x8_t __ret;
  3466. __ret = (int16x8_t) __builtin_neon_vclzq_v((int8x16_t)__p0, 33);
  3467. return __ret;
  3468. }
  3469. #else
  3470. __ai int16x8_t vclzq_s16(int16x8_t __p0) {
  3471. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  3472. int16x8_t __ret;
  3473. __ret = (int16x8_t) __builtin_neon_vclzq_v((int8x16_t)__rev0, 33);
  3474. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  3475. return __ret;
  3476. }
  3477. #endif
  3478. #ifdef __LITTLE_ENDIAN__
  3479. __ai uint8x8_t vclz_u8(uint8x8_t __p0) {
  3480. uint8x8_t __ret;
  3481. __ret = (uint8x8_t) __builtin_neon_vclz_v((int8x8_t)__p0, 16);
  3482. return __ret;
  3483. }
  3484. #else
  3485. __ai uint8x8_t vclz_u8(uint8x8_t __p0) {
  3486. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  3487. uint8x8_t __ret;
  3488. __ret = (uint8x8_t) __builtin_neon_vclz_v((int8x8_t)__rev0, 16);
  3489. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  3490. return __ret;
  3491. }
  3492. #endif
  3493. #ifdef __LITTLE_ENDIAN__
  3494. __ai uint32x2_t vclz_u32(uint32x2_t __p0) {
  3495. uint32x2_t __ret;
  3496. __ret = (uint32x2_t) __builtin_neon_vclz_v((int8x8_t)__p0, 18);
  3497. return __ret;
  3498. }
  3499. #else
  3500. __ai uint32x2_t vclz_u32(uint32x2_t __p0) {
  3501. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  3502. uint32x2_t __ret;
  3503. __ret = (uint32x2_t) __builtin_neon_vclz_v((int8x8_t)__rev0, 18);
  3504. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  3505. return __ret;
  3506. }
  3507. #endif
  3508. #ifdef __LITTLE_ENDIAN__
  3509. __ai uint16x4_t vclz_u16(uint16x4_t __p0) {
  3510. uint16x4_t __ret;
  3511. __ret = (uint16x4_t) __builtin_neon_vclz_v((int8x8_t)__p0, 17);
  3512. return __ret;
  3513. }
  3514. #else
  3515. __ai uint16x4_t vclz_u16(uint16x4_t __p0) {
  3516. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  3517. uint16x4_t __ret;
  3518. __ret = (uint16x4_t) __builtin_neon_vclz_v((int8x8_t)__rev0, 17);
  3519. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  3520. return __ret;
  3521. }
  3522. #endif
  3523. #ifdef __LITTLE_ENDIAN__
  3524. __ai int8x8_t vclz_s8(int8x8_t __p0) {
  3525. int8x8_t __ret;
  3526. __ret = (int8x8_t) __builtin_neon_vclz_v((int8x8_t)__p0, 0);
  3527. return __ret;
  3528. }
  3529. #else
  3530. __ai int8x8_t vclz_s8(int8x8_t __p0) {
  3531. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  3532. int8x8_t __ret;
  3533. __ret = (int8x8_t) __builtin_neon_vclz_v((int8x8_t)__rev0, 0);
  3534. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  3535. return __ret;
  3536. }
  3537. #endif
  3538. #ifdef __LITTLE_ENDIAN__
  3539. __ai int32x2_t vclz_s32(int32x2_t __p0) {
  3540. int32x2_t __ret;
  3541. __ret = (int32x2_t) __builtin_neon_vclz_v((int8x8_t)__p0, 2);
  3542. return __ret;
  3543. }
  3544. #else
  3545. __ai int32x2_t vclz_s32(int32x2_t __p0) {
  3546. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  3547. int32x2_t __ret;
  3548. __ret = (int32x2_t) __builtin_neon_vclz_v((int8x8_t)__rev0, 2);
  3549. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  3550. return __ret;
  3551. }
  3552. #endif
  3553. #ifdef __LITTLE_ENDIAN__
  3554. __ai int16x4_t vclz_s16(int16x4_t __p0) {
  3555. int16x4_t __ret;
  3556. __ret = (int16x4_t) __builtin_neon_vclz_v((int8x8_t)__p0, 1);
  3557. return __ret;
  3558. }
  3559. #else
  3560. __ai int16x4_t vclz_s16(int16x4_t __p0) {
  3561. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  3562. int16x4_t __ret;
  3563. __ret = (int16x4_t) __builtin_neon_vclz_v((int8x8_t)__rev0, 1);
  3564. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  3565. return __ret;
  3566. }
  3567. #endif
  3568. #ifdef __LITTLE_ENDIAN__
  3569. __ai poly8x8_t vcnt_p8(poly8x8_t __p0) {
  3570. poly8x8_t __ret;
  3571. __ret = (poly8x8_t) __builtin_neon_vcnt_v((int8x8_t)__p0, 4);
  3572. return __ret;
  3573. }
  3574. #else
  3575. __ai poly8x8_t vcnt_p8(poly8x8_t __p0) {
  3576. poly8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  3577. poly8x8_t __ret;
  3578. __ret = (poly8x8_t) __builtin_neon_vcnt_v((int8x8_t)__rev0, 4);
  3579. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  3580. return __ret;
  3581. }
  3582. #endif
  3583. #ifdef __LITTLE_ENDIAN__
  3584. __ai poly8x16_t vcntq_p8(poly8x16_t __p0) {
  3585. poly8x16_t __ret;
  3586. __ret = (poly8x16_t) __builtin_neon_vcntq_v((int8x16_t)__p0, 36);
  3587. return __ret;
  3588. }
  3589. #else
  3590. __ai poly8x16_t vcntq_p8(poly8x16_t __p0) {
  3591. poly8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  3592. poly8x16_t __ret;
  3593. __ret = (poly8x16_t) __builtin_neon_vcntq_v((int8x16_t)__rev0, 36);
  3594. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  3595. return __ret;
  3596. }
  3597. #endif
  3598. #ifdef __LITTLE_ENDIAN__
  3599. __ai uint8x16_t vcntq_u8(uint8x16_t __p0) {
  3600. uint8x16_t __ret;
  3601. __ret = (uint8x16_t) __builtin_neon_vcntq_v((int8x16_t)__p0, 48);
  3602. return __ret;
  3603. }
  3604. #else
  3605. __ai uint8x16_t vcntq_u8(uint8x16_t __p0) {
  3606. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  3607. uint8x16_t __ret;
  3608. __ret = (uint8x16_t) __builtin_neon_vcntq_v((int8x16_t)__rev0, 48);
  3609. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  3610. return __ret;
  3611. }
  3612. #endif
  3613. #ifdef __LITTLE_ENDIAN__
  3614. __ai int8x16_t vcntq_s8(int8x16_t __p0) {
  3615. int8x16_t __ret;
  3616. __ret = (int8x16_t) __builtin_neon_vcntq_v((int8x16_t)__p0, 32);
  3617. return __ret;
  3618. }
  3619. #else
  3620. __ai int8x16_t vcntq_s8(int8x16_t __p0) {
  3621. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  3622. int8x16_t __ret;
  3623. __ret = (int8x16_t) __builtin_neon_vcntq_v((int8x16_t)__rev0, 32);
  3624. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  3625. return __ret;
  3626. }
  3627. #endif
  3628. #ifdef __LITTLE_ENDIAN__
  3629. __ai uint8x8_t vcnt_u8(uint8x8_t __p0) {
  3630. uint8x8_t __ret;
  3631. __ret = (uint8x8_t) __builtin_neon_vcnt_v((int8x8_t)__p0, 16);
  3632. return __ret;
  3633. }
  3634. #else
  3635. __ai uint8x8_t vcnt_u8(uint8x8_t __p0) {
  3636. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  3637. uint8x8_t __ret;
  3638. __ret = (uint8x8_t) __builtin_neon_vcnt_v((int8x8_t)__rev0, 16);
  3639. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  3640. return __ret;
  3641. }
  3642. #endif
  3643. #ifdef __LITTLE_ENDIAN__
  3644. __ai int8x8_t vcnt_s8(int8x8_t __p0) {
  3645. int8x8_t __ret;
  3646. __ret = (int8x8_t) __builtin_neon_vcnt_v((int8x8_t)__p0, 0);
  3647. return __ret;
  3648. }
  3649. #else
  3650. __ai int8x8_t vcnt_s8(int8x8_t __p0) {
  3651. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  3652. int8x8_t __ret;
  3653. __ret = (int8x8_t) __builtin_neon_vcnt_v((int8x8_t)__rev0, 0);
  3654. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  3655. return __ret;
  3656. }
  3657. #endif
  3658. #ifdef __LITTLE_ENDIAN__
  3659. __ai poly8x16_t vcombine_p8(poly8x8_t __p0, poly8x8_t __p1) {
  3660. poly8x16_t __ret;
  3661. __ret = __builtin_shufflevector(__p0, __p1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15);
  3662. return __ret;
  3663. }
  3664. #else
  3665. __ai poly8x16_t vcombine_p8(poly8x8_t __p0, poly8x8_t __p1) {
  3666. poly8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  3667. poly8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  3668. poly8x16_t __ret;
  3669. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15);
  3670. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  3671. return __ret;
  3672. }
  3673. #endif
  3674. #ifdef __LITTLE_ENDIAN__
  3675. __ai poly16x8_t vcombine_p16(poly16x4_t __p0, poly16x4_t __p1) {
  3676. poly16x8_t __ret;
  3677. __ret = __builtin_shufflevector(__p0, __p1, 0, 1, 2, 3, 4, 5, 6, 7);
  3678. return __ret;
  3679. }
  3680. #else
  3681. __ai poly16x8_t vcombine_p16(poly16x4_t __p0, poly16x4_t __p1) {
  3682. poly16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  3683. poly16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  3684. poly16x8_t __ret;
  3685. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 1, 2, 3, 4, 5, 6, 7);
  3686. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  3687. return __ret;
  3688. }
  3689. #endif
  3690. #ifdef __LITTLE_ENDIAN__
  3691. __ai uint8x16_t vcombine_u8(uint8x8_t __p0, uint8x8_t __p1) {
  3692. uint8x16_t __ret;
  3693. __ret = __builtin_shufflevector(__p0, __p1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15);
  3694. return __ret;
  3695. }
  3696. #else
  3697. __ai uint8x16_t vcombine_u8(uint8x8_t __p0, uint8x8_t __p1) {
  3698. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  3699. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  3700. uint8x16_t __ret;
  3701. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15);
  3702. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  3703. return __ret;
  3704. }
  3705. __ai uint8x16_t __noswap_vcombine_u8(uint8x8_t __p0, uint8x8_t __p1) {
  3706. uint8x16_t __ret;
  3707. __ret = __builtin_shufflevector(__p0, __p1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15);
  3708. return __ret;
  3709. }
  3710. #endif
  3711. #ifdef __LITTLE_ENDIAN__
  3712. __ai uint32x4_t vcombine_u32(uint32x2_t __p0, uint32x2_t __p1) {
  3713. uint32x4_t __ret;
  3714. __ret = __builtin_shufflevector(__p0, __p1, 0, 1, 2, 3);
  3715. return __ret;
  3716. }
  3717. #else
  3718. __ai uint32x4_t vcombine_u32(uint32x2_t __p0, uint32x2_t __p1) {
  3719. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  3720. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  3721. uint32x4_t __ret;
  3722. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 1, 2, 3);
  3723. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  3724. return __ret;
  3725. }
  3726. __ai uint32x4_t __noswap_vcombine_u32(uint32x2_t __p0, uint32x2_t __p1) {
  3727. uint32x4_t __ret;
  3728. __ret = __builtin_shufflevector(__p0, __p1, 0, 1, 2, 3);
  3729. return __ret;
  3730. }
  3731. #endif
  3732. #ifdef __LITTLE_ENDIAN__
  3733. __ai uint64x2_t vcombine_u64(uint64x1_t __p0, uint64x1_t __p1) {
  3734. uint64x2_t __ret;
  3735. __ret = __builtin_shufflevector(__p0, __p1, 0, 1);
  3736. return __ret;
  3737. }
  3738. #else
  3739. __ai uint64x2_t vcombine_u64(uint64x1_t __p0, uint64x1_t __p1) {
  3740. uint64x2_t __ret;
  3741. __ret = __builtin_shufflevector(__p0, __p1, 0, 1);
  3742. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  3743. return __ret;
  3744. }
  3745. #endif
  3746. #ifdef __LITTLE_ENDIAN__
  3747. __ai uint16x8_t vcombine_u16(uint16x4_t __p0, uint16x4_t __p1) {
  3748. uint16x8_t __ret;
  3749. __ret = __builtin_shufflevector(__p0, __p1, 0, 1, 2, 3, 4, 5, 6, 7);
  3750. return __ret;
  3751. }
  3752. #else
  3753. __ai uint16x8_t vcombine_u16(uint16x4_t __p0, uint16x4_t __p1) {
  3754. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  3755. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  3756. uint16x8_t __ret;
  3757. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 1, 2, 3, 4, 5, 6, 7);
  3758. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  3759. return __ret;
  3760. }
  3761. __ai uint16x8_t __noswap_vcombine_u16(uint16x4_t __p0, uint16x4_t __p1) {
  3762. uint16x8_t __ret;
  3763. __ret = __builtin_shufflevector(__p0, __p1, 0, 1, 2, 3, 4, 5, 6, 7);
  3764. return __ret;
  3765. }
  3766. #endif
  3767. #ifdef __LITTLE_ENDIAN__
  3768. __ai int8x16_t vcombine_s8(int8x8_t __p0, int8x8_t __p1) {
  3769. int8x16_t __ret;
  3770. __ret = __builtin_shufflevector(__p0, __p1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15);
  3771. return __ret;
  3772. }
  3773. #else
  3774. __ai int8x16_t vcombine_s8(int8x8_t __p0, int8x8_t __p1) {
  3775. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  3776. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  3777. int8x16_t __ret;
  3778. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15);
  3779. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  3780. return __ret;
  3781. }
  3782. __ai int8x16_t __noswap_vcombine_s8(int8x8_t __p0, int8x8_t __p1) {
  3783. int8x16_t __ret;
  3784. __ret = __builtin_shufflevector(__p0, __p1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15);
  3785. return __ret;
  3786. }
  3787. #endif
  3788. #ifdef __LITTLE_ENDIAN__
  3789. __ai float32x4_t vcombine_f32(float32x2_t __p0, float32x2_t __p1) {
  3790. float32x4_t __ret;
  3791. __ret = __builtin_shufflevector(__p0, __p1, 0, 1, 2, 3);
  3792. return __ret;
  3793. }
  3794. #else
  3795. __ai float32x4_t vcombine_f32(float32x2_t __p0, float32x2_t __p1) {
  3796. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  3797. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  3798. float32x4_t __ret;
  3799. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 1, 2, 3);
  3800. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  3801. return __ret;
  3802. }
  3803. __ai float32x4_t __noswap_vcombine_f32(float32x2_t __p0, float32x2_t __p1) {
  3804. float32x4_t __ret;
  3805. __ret = __builtin_shufflevector(__p0, __p1, 0, 1, 2, 3);
  3806. return __ret;
  3807. }
  3808. #endif
  3809. #ifdef __LITTLE_ENDIAN__
  3810. __ai float16x8_t vcombine_f16(float16x4_t __p0, float16x4_t __p1) {
  3811. float16x8_t __ret;
  3812. __ret = __builtin_shufflevector(__p0, __p1, 0, 1, 2, 3, 4, 5, 6, 7);
  3813. return __ret;
  3814. }
  3815. #else
  3816. __ai float16x8_t vcombine_f16(float16x4_t __p0, float16x4_t __p1) {
  3817. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  3818. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  3819. float16x8_t __ret;
  3820. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 1, 2, 3, 4, 5, 6, 7);
  3821. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  3822. return __ret;
  3823. }
  3824. __ai float16x8_t __noswap_vcombine_f16(float16x4_t __p0, float16x4_t __p1) {
  3825. float16x8_t __ret;
  3826. __ret = __builtin_shufflevector(__p0, __p1, 0, 1, 2, 3, 4, 5, 6, 7);
  3827. return __ret;
  3828. }
  3829. #endif
  3830. #ifdef __LITTLE_ENDIAN__
  3831. __ai int32x4_t vcombine_s32(int32x2_t __p0, int32x2_t __p1) {
  3832. int32x4_t __ret;
  3833. __ret = __builtin_shufflevector(__p0, __p1, 0, 1, 2, 3);
  3834. return __ret;
  3835. }
  3836. #else
  3837. __ai int32x4_t vcombine_s32(int32x2_t __p0, int32x2_t __p1) {
  3838. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  3839. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  3840. int32x4_t __ret;
  3841. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 1, 2, 3);
  3842. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  3843. return __ret;
  3844. }
  3845. __ai int32x4_t __noswap_vcombine_s32(int32x2_t __p0, int32x2_t __p1) {
  3846. int32x4_t __ret;
  3847. __ret = __builtin_shufflevector(__p0, __p1, 0, 1, 2, 3);
  3848. return __ret;
  3849. }
  3850. #endif
  3851. #ifdef __LITTLE_ENDIAN__
  3852. __ai int64x2_t vcombine_s64(int64x1_t __p0, int64x1_t __p1) {
  3853. int64x2_t __ret;
  3854. __ret = __builtin_shufflevector(__p0, __p1, 0, 1);
  3855. return __ret;
  3856. }
  3857. #else
  3858. __ai int64x2_t vcombine_s64(int64x1_t __p0, int64x1_t __p1) {
  3859. int64x2_t __ret;
  3860. __ret = __builtin_shufflevector(__p0, __p1, 0, 1);
  3861. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  3862. return __ret;
  3863. }
  3864. #endif
  3865. #ifdef __LITTLE_ENDIAN__
  3866. __ai int16x8_t vcombine_s16(int16x4_t __p0, int16x4_t __p1) {
  3867. int16x8_t __ret;
  3868. __ret = __builtin_shufflevector(__p0, __p1, 0, 1, 2, 3, 4, 5, 6, 7);
  3869. return __ret;
  3870. }
  3871. #else
  3872. __ai int16x8_t vcombine_s16(int16x4_t __p0, int16x4_t __p1) {
  3873. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  3874. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  3875. int16x8_t __ret;
  3876. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 1, 2, 3, 4, 5, 6, 7);
  3877. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  3878. return __ret;
  3879. }
  3880. __ai int16x8_t __noswap_vcombine_s16(int16x4_t __p0, int16x4_t __p1) {
  3881. int16x8_t __ret;
  3882. __ret = __builtin_shufflevector(__p0, __p1, 0, 1, 2, 3, 4, 5, 6, 7);
  3883. return __ret;
  3884. }
  3885. #endif
  3886. #ifdef __LITTLE_ENDIAN__
  3887. __ai poly8x8_t vcreate_p8(uint64_t __p0) {
  3888. poly8x8_t __ret;
  3889. __ret = (poly8x8_t)(__p0);
  3890. return __ret;
  3891. }
  3892. #else
  3893. __ai poly8x8_t vcreate_p8(uint64_t __p0) {
  3894. poly8x8_t __ret;
  3895. __ret = (poly8x8_t)(__p0);
  3896. return __ret;
  3897. }
  3898. #endif
  3899. #ifdef __LITTLE_ENDIAN__
  3900. __ai poly16x4_t vcreate_p16(uint64_t __p0) {
  3901. poly16x4_t __ret;
  3902. __ret = (poly16x4_t)(__p0);
  3903. return __ret;
  3904. }
  3905. #else
  3906. __ai poly16x4_t vcreate_p16(uint64_t __p0) {
  3907. poly16x4_t __ret;
  3908. __ret = (poly16x4_t)(__p0);
  3909. return __ret;
  3910. }
  3911. #endif
  3912. #ifdef __LITTLE_ENDIAN__
  3913. __ai uint8x8_t vcreate_u8(uint64_t __p0) {
  3914. uint8x8_t __ret;
  3915. __ret = (uint8x8_t)(__p0);
  3916. return __ret;
  3917. }
  3918. #else
  3919. __ai uint8x8_t vcreate_u8(uint64_t __p0) {
  3920. uint8x8_t __ret;
  3921. __ret = (uint8x8_t)(__p0);
  3922. return __ret;
  3923. }
  3924. #endif
  3925. #ifdef __LITTLE_ENDIAN__
  3926. __ai uint32x2_t vcreate_u32(uint64_t __p0) {
  3927. uint32x2_t __ret;
  3928. __ret = (uint32x2_t)(__p0);
  3929. return __ret;
  3930. }
  3931. #else
  3932. __ai uint32x2_t vcreate_u32(uint64_t __p0) {
  3933. uint32x2_t __ret;
  3934. __ret = (uint32x2_t)(__p0);
  3935. return __ret;
  3936. }
  3937. #endif
  3938. #ifdef __LITTLE_ENDIAN__
  3939. __ai uint64x1_t vcreate_u64(uint64_t __p0) {
  3940. uint64x1_t __ret;
  3941. __ret = (uint64x1_t)(__p0);
  3942. return __ret;
  3943. }
  3944. #else
  3945. __ai uint64x1_t vcreate_u64(uint64_t __p0) {
  3946. uint64x1_t __ret;
  3947. __ret = (uint64x1_t)(__p0);
  3948. return __ret;
  3949. }
  3950. #endif
  3951. #ifdef __LITTLE_ENDIAN__
  3952. __ai uint16x4_t vcreate_u16(uint64_t __p0) {
  3953. uint16x4_t __ret;
  3954. __ret = (uint16x4_t)(__p0);
  3955. return __ret;
  3956. }
  3957. #else
  3958. __ai uint16x4_t vcreate_u16(uint64_t __p0) {
  3959. uint16x4_t __ret;
  3960. __ret = (uint16x4_t)(__p0);
  3961. return __ret;
  3962. }
  3963. #endif
  3964. #ifdef __LITTLE_ENDIAN__
  3965. __ai int8x8_t vcreate_s8(uint64_t __p0) {
  3966. int8x8_t __ret;
  3967. __ret = (int8x8_t)(__p0);
  3968. return __ret;
  3969. }
  3970. #else
  3971. __ai int8x8_t vcreate_s8(uint64_t __p0) {
  3972. int8x8_t __ret;
  3973. __ret = (int8x8_t)(__p0);
  3974. return __ret;
  3975. }
  3976. #endif
  3977. #ifdef __LITTLE_ENDIAN__
  3978. __ai float32x2_t vcreate_f32(uint64_t __p0) {
  3979. float32x2_t __ret;
  3980. __ret = (float32x2_t)(__p0);
  3981. return __ret;
  3982. }
  3983. #else
  3984. __ai float32x2_t vcreate_f32(uint64_t __p0) {
  3985. float32x2_t __ret;
  3986. __ret = (float32x2_t)(__p0);
  3987. return __ret;
  3988. }
  3989. #endif
  3990. #ifdef __LITTLE_ENDIAN__
  3991. __ai float16x4_t vcreate_f16(uint64_t __p0) {
  3992. float16x4_t __ret;
  3993. __ret = (float16x4_t)(__p0);
  3994. return __ret;
  3995. }
  3996. #else
  3997. __ai float16x4_t vcreate_f16(uint64_t __p0) {
  3998. float16x4_t __ret;
  3999. __ret = (float16x4_t)(__p0);
  4000. return __ret;
  4001. }
  4002. #endif
  4003. #ifdef __LITTLE_ENDIAN__
  4004. __ai int32x2_t vcreate_s32(uint64_t __p0) {
  4005. int32x2_t __ret;
  4006. __ret = (int32x2_t)(__p0);
  4007. return __ret;
  4008. }
  4009. #else
  4010. __ai int32x2_t vcreate_s32(uint64_t __p0) {
  4011. int32x2_t __ret;
  4012. __ret = (int32x2_t)(__p0);
  4013. return __ret;
  4014. }
  4015. #endif
  4016. #ifdef __LITTLE_ENDIAN__
  4017. __ai int64x1_t vcreate_s64(uint64_t __p0) {
  4018. int64x1_t __ret;
  4019. __ret = (int64x1_t)(__p0);
  4020. return __ret;
  4021. }
  4022. #else
  4023. __ai int64x1_t vcreate_s64(uint64_t __p0) {
  4024. int64x1_t __ret;
  4025. __ret = (int64x1_t)(__p0);
  4026. return __ret;
  4027. }
  4028. #endif
  4029. #ifdef __LITTLE_ENDIAN__
  4030. __ai int16x4_t vcreate_s16(uint64_t __p0) {
  4031. int16x4_t __ret;
  4032. __ret = (int16x4_t)(__p0);
  4033. return __ret;
  4034. }
  4035. #else
  4036. __ai int16x4_t vcreate_s16(uint64_t __p0) {
  4037. int16x4_t __ret;
  4038. __ret = (int16x4_t)(__p0);
  4039. return __ret;
  4040. }
  4041. #endif
  4042. #ifdef __LITTLE_ENDIAN__
  4043. __ai float32x4_t vcvtq_f32_u32(uint32x4_t __p0) {
  4044. float32x4_t __ret;
  4045. __ret = (float32x4_t) __builtin_neon_vcvtq_f32_v((int8x16_t)__p0, 50);
  4046. return __ret;
  4047. }
  4048. #else
  4049. __ai float32x4_t vcvtq_f32_u32(uint32x4_t __p0) {
  4050. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  4051. float32x4_t __ret;
  4052. __ret = (float32x4_t) __builtin_neon_vcvtq_f32_v((int8x16_t)__rev0, 50);
  4053. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  4054. return __ret;
  4055. }
  4056. #endif
  4057. #ifdef __LITTLE_ENDIAN__
  4058. __ai float32x4_t vcvtq_f32_s32(int32x4_t __p0) {
  4059. float32x4_t __ret;
  4060. __ret = (float32x4_t) __builtin_neon_vcvtq_f32_v((int8x16_t)__p0, 34);
  4061. return __ret;
  4062. }
  4063. #else
  4064. __ai float32x4_t vcvtq_f32_s32(int32x4_t __p0) {
  4065. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  4066. float32x4_t __ret;
  4067. __ret = (float32x4_t) __builtin_neon_vcvtq_f32_v((int8x16_t)__rev0, 34);
  4068. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  4069. return __ret;
  4070. }
  4071. #endif
  4072. #ifdef __LITTLE_ENDIAN__
  4073. __ai float32x2_t vcvt_f32_u32(uint32x2_t __p0) {
  4074. float32x2_t __ret;
  4075. __ret = (float32x2_t) __builtin_neon_vcvt_f32_v((int8x8_t)__p0, 18);
  4076. return __ret;
  4077. }
  4078. #else
  4079. __ai float32x2_t vcvt_f32_u32(uint32x2_t __p0) {
  4080. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  4081. float32x2_t __ret;
  4082. __ret = (float32x2_t) __builtin_neon_vcvt_f32_v((int8x8_t)__rev0, 18);
  4083. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  4084. return __ret;
  4085. }
  4086. #endif
  4087. #ifdef __LITTLE_ENDIAN__
  4088. __ai float32x2_t vcvt_f32_s32(int32x2_t __p0) {
  4089. float32x2_t __ret;
  4090. __ret = (float32x2_t) __builtin_neon_vcvt_f32_v((int8x8_t)__p0, 2);
  4091. return __ret;
  4092. }
  4093. #else
  4094. __ai float32x2_t vcvt_f32_s32(int32x2_t __p0) {
  4095. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  4096. float32x2_t __ret;
  4097. __ret = (float32x2_t) __builtin_neon_vcvt_f32_v((int8x8_t)__rev0, 2);
  4098. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  4099. return __ret;
  4100. }
  4101. #endif
  4102. #ifdef __LITTLE_ENDIAN__
  4103. #define vcvtq_n_f32_u32(__p0, __p1) __extension__ ({ \
  4104. uint32x4_t __s0 = __p0; \
  4105. float32x4_t __ret; \
  4106. __ret = (float32x4_t) __builtin_neon_vcvtq_n_f32_v((int8x16_t)__s0, __p1, 50); \
  4107. __ret; \
  4108. })
  4109. #else
  4110. #define vcvtq_n_f32_u32(__p0, __p1) __extension__ ({ \
  4111. uint32x4_t __s0 = __p0; \
  4112. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  4113. float32x4_t __ret; \
  4114. __ret = (float32x4_t) __builtin_neon_vcvtq_n_f32_v((int8x16_t)__rev0, __p1, 50); \
  4115. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  4116. __ret; \
  4117. })
  4118. #endif
  4119. #ifdef __LITTLE_ENDIAN__
  4120. #define vcvtq_n_f32_s32(__p0, __p1) __extension__ ({ \
  4121. int32x4_t __s0 = __p0; \
  4122. float32x4_t __ret; \
  4123. __ret = (float32x4_t) __builtin_neon_vcvtq_n_f32_v((int8x16_t)__s0, __p1, 34); \
  4124. __ret; \
  4125. })
  4126. #else
  4127. #define vcvtq_n_f32_s32(__p0, __p1) __extension__ ({ \
  4128. int32x4_t __s0 = __p0; \
  4129. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  4130. float32x4_t __ret; \
  4131. __ret = (float32x4_t) __builtin_neon_vcvtq_n_f32_v((int8x16_t)__rev0, __p1, 34); \
  4132. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  4133. __ret; \
  4134. })
  4135. #endif
  4136. #ifdef __LITTLE_ENDIAN__
  4137. #define vcvt_n_f32_u32(__p0, __p1) __extension__ ({ \
  4138. uint32x2_t __s0 = __p0; \
  4139. float32x2_t __ret; \
  4140. __ret = (float32x2_t) __builtin_neon_vcvt_n_f32_v((int8x8_t)__s0, __p1, 18); \
  4141. __ret; \
  4142. })
  4143. #else
  4144. #define vcvt_n_f32_u32(__p0, __p1) __extension__ ({ \
  4145. uint32x2_t __s0 = __p0; \
  4146. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  4147. float32x2_t __ret; \
  4148. __ret = (float32x2_t) __builtin_neon_vcvt_n_f32_v((int8x8_t)__rev0, __p1, 18); \
  4149. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  4150. __ret; \
  4151. })
  4152. #endif
  4153. #ifdef __LITTLE_ENDIAN__
  4154. #define vcvt_n_f32_s32(__p0, __p1) __extension__ ({ \
  4155. int32x2_t __s0 = __p0; \
  4156. float32x2_t __ret; \
  4157. __ret = (float32x2_t) __builtin_neon_vcvt_n_f32_v((int8x8_t)__s0, __p1, 2); \
  4158. __ret; \
  4159. })
  4160. #else
  4161. #define vcvt_n_f32_s32(__p0, __p1) __extension__ ({ \
  4162. int32x2_t __s0 = __p0; \
  4163. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  4164. float32x2_t __ret; \
  4165. __ret = (float32x2_t) __builtin_neon_vcvt_n_f32_v((int8x8_t)__rev0, __p1, 2); \
  4166. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  4167. __ret; \
  4168. })
  4169. #endif
  4170. #ifdef __LITTLE_ENDIAN__
  4171. #define vcvtq_n_s32_f32(__p0, __p1) __extension__ ({ \
  4172. float32x4_t __s0 = __p0; \
  4173. int32x4_t __ret; \
  4174. __ret = (int32x4_t) __builtin_neon_vcvtq_n_s32_v((int8x16_t)__s0, __p1, 34); \
  4175. __ret; \
  4176. })
  4177. #else
  4178. #define vcvtq_n_s32_f32(__p0, __p1) __extension__ ({ \
  4179. float32x4_t __s0 = __p0; \
  4180. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  4181. int32x4_t __ret; \
  4182. __ret = (int32x4_t) __builtin_neon_vcvtq_n_s32_v((int8x16_t)__rev0, __p1, 34); \
  4183. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  4184. __ret; \
  4185. })
  4186. #endif
  4187. #ifdef __LITTLE_ENDIAN__
  4188. #define vcvt_n_s32_f32(__p0, __p1) __extension__ ({ \
  4189. float32x2_t __s0 = __p0; \
  4190. int32x2_t __ret; \
  4191. __ret = (int32x2_t) __builtin_neon_vcvt_n_s32_v((int8x8_t)__s0, __p1, 2); \
  4192. __ret; \
  4193. })
  4194. #else
  4195. #define vcvt_n_s32_f32(__p0, __p1) __extension__ ({ \
  4196. float32x2_t __s0 = __p0; \
  4197. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  4198. int32x2_t __ret; \
  4199. __ret = (int32x2_t) __builtin_neon_vcvt_n_s32_v((int8x8_t)__rev0, __p1, 2); \
  4200. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  4201. __ret; \
  4202. })
  4203. #endif
  4204. #ifdef __LITTLE_ENDIAN__
  4205. #define vcvtq_n_u32_f32(__p0, __p1) __extension__ ({ \
  4206. float32x4_t __s0 = __p0; \
  4207. uint32x4_t __ret; \
  4208. __ret = (uint32x4_t) __builtin_neon_vcvtq_n_u32_v((int8x16_t)__s0, __p1, 50); \
  4209. __ret; \
  4210. })
  4211. #else
  4212. #define vcvtq_n_u32_f32(__p0, __p1) __extension__ ({ \
  4213. float32x4_t __s0 = __p0; \
  4214. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  4215. uint32x4_t __ret; \
  4216. __ret = (uint32x4_t) __builtin_neon_vcvtq_n_u32_v((int8x16_t)__rev0, __p1, 50); \
  4217. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  4218. __ret; \
  4219. })
  4220. #endif
  4221. #ifdef __LITTLE_ENDIAN__
  4222. #define vcvt_n_u32_f32(__p0, __p1) __extension__ ({ \
  4223. float32x2_t __s0 = __p0; \
  4224. uint32x2_t __ret; \
  4225. __ret = (uint32x2_t) __builtin_neon_vcvt_n_u32_v((int8x8_t)__s0, __p1, 18); \
  4226. __ret; \
  4227. })
  4228. #else
  4229. #define vcvt_n_u32_f32(__p0, __p1) __extension__ ({ \
  4230. float32x2_t __s0 = __p0; \
  4231. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  4232. uint32x2_t __ret; \
  4233. __ret = (uint32x2_t) __builtin_neon_vcvt_n_u32_v((int8x8_t)__rev0, __p1, 18); \
  4234. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  4235. __ret; \
  4236. })
  4237. #endif
  4238. #ifdef __LITTLE_ENDIAN__
  4239. __ai int32x4_t vcvtq_s32_f32(float32x4_t __p0) {
  4240. int32x4_t __ret;
  4241. __ret = (int32x4_t) __builtin_neon_vcvtq_s32_v((int8x16_t)__p0, 34);
  4242. return __ret;
  4243. }
  4244. #else
  4245. __ai int32x4_t vcvtq_s32_f32(float32x4_t __p0) {
  4246. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  4247. int32x4_t __ret;
  4248. __ret = (int32x4_t) __builtin_neon_vcvtq_s32_v((int8x16_t)__rev0, 34);
  4249. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  4250. return __ret;
  4251. }
  4252. #endif
  4253. #ifdef __LITTLE_ENDIAN__
  4254. __ai int32x2_t vcvt_s32_f32(float32x2_t __p0) {
  4255. int32x2_t __ret;
  4256. __ret = (int32x2_t) __builtin_neon_vcvt_s32_v((int8x8_t)__p0, 2);
  4257. return __ret;
  4258. }
  4259. #else
  4260. __ai int32x2_t vcvt_s32_f32(float32x2_t __p0) {
  4261. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  4262. int32x2_t __ret;
  4263. __ret = (int32x2_t) __builtin_neon_vcvt_s32_v((int8x8_t)__rev0, 2);
  4264. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  4265. return __ret;
  4266. }
  4267. #endif
  4268. #ifdef __LITTLE_ENDIAN__
  4269. __ai uint32x4_t vcvtq_u32_f32(float32x4_t __p0) {
  4270. uint32x4_t __ret;
  4271. __ret = (uint32x4_t) __builtin_neon_vcvtq_u32_v((int8x16_t)__p0, 50);
  4272. return __ret;
  4273. }
  4274. #else
  4275. __ai uint32x4_t vcvtq_u32_f32(float32x4_t __p0) {
  4276. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  4277. uint32x4_t __ret;
  4278. __ret = (uint32x4_t) __builtin_neon_vcvtq_u32_v((int8x16_t)__rev0, 50);
  4279. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  4280. return __ret;
  4281. }
  4282. #endif
  4283. #ifdef __LITTLE_ENDIAN__
  4284. __ai uint32x2_t vcvt_u32_f32(float32x2_t __p0) {
  4285. uint32x2_t __ret;
  4286. __ret = (uint32x2_t) __builtin_neon_vcvt_u32_v((int8x8_t)__p0, 18);
  4287. return __ret;
  4288. }
  4289. #else
  4290. __ai uint32x2_t vcvt_u32_f32(float32x2_t __p0) {
  4291. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  4292. uint32x2_t __ret;
  4293. __ret = (uint32x2_t) __builtin_neon_vcvt_u32_v((int8x8_t)__rev0, 18);
  4294. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  4295. return __ret;
  4296. }
  4297. #endif
  4298. #ifdef __LITTLE_ENDIAN__
  4299. #define vdup_lane_p8(__p0, __p1) __extension__ ({ \
  4300. poly8x8_t __s0 = __p0; \
  4301. poly8x8_t __ret; \
  4302. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1); \
  4303. __ret; \
  4304. })
  4305. #else
  4306. #define vdup_lane_p8(__p0, __p1) __extension__ ({ \
  4307. poly8x8_t __s0 = __p0; \
  4308. poly8x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  4309. poly8x8_t __ret; \
  4310. __ret = __builtin_shufflevector(__rev0, __rev0, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1); \
  4311. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  4312. __ret; \
  4313. })
  4314. #endif
  4315. #ifdef __LITTLE_ENDIAN__
  4316. #define vdup_lane_p16(__p0, __p1) __extension__ ({ \
  4317. poly16x4_t __s0 = __p0; \
  4318. poly16x4_t __ret; \
  4319. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1, __p1, __p1); \
  4320. __ret; \
  4321. })
  4322. #else
  4323. #define vdup_lane_p16(__p0, __p1) __extension__ ({ \
  4324. poly16x4_t __s0 = __p0; \
  4325. poly16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  4326. poly16x4_t __ret; \
  4327. __ret = __builtin_shufflevector(__rev0, __rev0, __p1, __p1, __p1, __p1); \
  4328. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  4329. __ret; \
  4330. })
  4331. #endif
  4332. #ifdef __LITTLE_ENDIAN__
  4333. #define vdupq_lane_p8(__p0, __p1) __extension__ ({ \
  4334. poly8x8_t __s0 = __p0; \
  4335. poly8x16_t __ret; \
  4336. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1); \
  4337. __ret; \
  4338. })
  4339. #else
  4340. #define vdupq_lane_p8(__p0, __p1) __extension__ ({ \
  4341. poly8x8_t __s0 = __p0; \
  4342. poly8x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  4343. poly8x16_t __ret; \
  4344. __ret = __builtin_shufflevector(__rev0, __rev0, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1); \
  4345. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  4346. __ret; \
  4347. })
  4348. #endif
  4349. #ifdef __LITTLE_ENDIAN__
  4350. #define vdupq_lane_p16(__p0, __p1) __extension__ ({ \
  4351. poly16x4_t __s0 = __p0; \
  4352. poly16x8_t __ret; \
  4353. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1); \
  4354. __ret; \
  4355. })
  4356. #else
  4357. #define vdupq_lane_p16(__p0, __p1) __extension__ ({ \
  4358. poly16x4_t __s0 = __p0; \
  4359. poly16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  4360. poly16x8_t __ret; \
  4361. __ret = __builtin_shufflevector(__rev0, __rev0, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1); \
  4362. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  4363. __ret; \
  4364. })
  4365. #endif
  4366. #ifdef __LITTLE_ENDIAN__
  4367. #define vdupq_lane_u8(__p0, __p1) __extension__ ({ \
  4368. uint8x8_t __s0 = __p0; \
  4369. uint8x16_t __ret; \
  4370. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1); \
  4371. __ret; \
  4372. })
  4373. #else
  4374. #define vdupq_lane_u8(__p0, __p1) __extension__ ({ \
  4375. uint8x8_t __s0 = __p0; \
  4376. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  4377. uint8x16_t __ret; \
  4378. __ret = __builtin_shufflevector(__rev0, __rev0, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1); \
  4379. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  4380. __ret; \
  4381. })
  4382. #endif
  4383. #ifdef __LITTLE_ENDIAN__
  4384. #define vdupq_lane_u32(__p0, __p1) __extension__ ({ \
  4385. uint32x2_t __s0 = __p0; \
  4386. uint32x4_t __ret; \
  4387. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1, __p1, __p1); \
  4388. __ret; \
  4389. })
  4390. #else
  4391. #define vdupq_lane_u32(__p0, __p1) __extension__ ({ \
  4392. uint32x2_t __s0 = __p0; \
  4393. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  4394. uint32x4_t __ret; \
  4395. __ret = __builtin_shufflevector(__rev0, __rev0, __p1, __p1, __p1, __p1); \
  4396. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  4397. __ret; \
  4398. })
  4399. #endif
  4400. #ifdef __LITTLE_ENDIAN__
  4401. #define vdupq_lane_u64(__p0, __p1) __extension__ ({ \
  4402. uint64x1_t __s0 = __p0; \
  4403. uint64x2_t __ret; \
  4404. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1); \
  4405. __ret; \
  4406. })
  4407. #else
  4408. #define vdupq_lane_u64(__p0, __p1) __extension__ ({ \
  4409. uint64x1_t __s0 = __p0; \
  4410. uint64x2_t __ret; \
  4411. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1); \
  4412. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  4413. __ret; \
  4414. })
  4415. #endif
  4416. #ifdef __LITTLE_ENDIAN__
  4417. #define vdupq_lane_u16(__p0, __p1) __extension__ ({ \
  4418. uint16x4_t __s0 = __p0; \
  4419. uint16x8_t __ret; \
  4420. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1); \
  4421. __ret; \
  4422. })
  4423. #else
  4424. #define vdupq_lane_u16(__p0, __p1) __extension__ ({ \
  4425. uint16x4_t __s0 = __p0; \
  4426. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  4427. uint16x8_t __ret; \
  4428. __ret = __builtin_shufflevector(__rev0, __rev0, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1); \
  4429. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  4430. __ret; \
  4431. })
  4432. #endif
  4433. #ifdef __LITTLE_ENDIAN__
  4434. #define vdupq_lane_s8(__p0, __p1) __extension__ ({ \
  4435. int8x8_t __s0 = __p0; \
  4436. int8x16_t __ret; \
  4437. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1); \
  4438. __ret; \
  4439. })
  4440. #else
  4441. #define vdupq_lane_s8(__p0, __p1) __extension__ ({ \
  4442. int8x8_t __s0 = __p0; \
  4443. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  4444. int8x16_t __ret; \
  4445. __ret = __builtin_shufflevector(__rev0, __rev0, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1); \
  4446. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  4447. __ret; \
  4448. })
  4449. #endif
  4450. #ifdef __LITTLE_ENDIAN__
  4451. #define vdupq_lane_f32(__p0, __p1) __extension__ ({ \
  4452. float32x2_t __s0 = __p0; \
  4453. float32x4_t __ret; \
  4454. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1, __p1, __p1); \
  4455. __ret; \
  4456. })
  4457. #else
  4458. #define vdupq_lane_f32(__p0, __p1) __extension__ ({ \
  4459. float32x2_t __s0 = __p0; \
  4460. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  4461. float32x4_t __ret; \
  4462. __ret = __builtin_shufflevector(__rev0, __rev0, __p1, __p1, __p1, __p1); \
  4463. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  4464. __ret; \
  4465. })
  4466. #endif
  4467. #ifdef __LITTLE_ENDIAN__
  4468. #define vdupq_lane_s32(__p0, __p1) __extension__ ({ \
  4469. int32x2_t __s0 = __p0; \
  4470. int32x4_t __ret; \
  4471. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1, __p1, __p1); \
  4472. __ret; \
  4473. })
  4474. #else
  4475. #define vdupq_lane_s32(__p0, __p1) __extension__ ({ \
  4476. int32x2_t __s0 = __p0; \
  4477. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  4478. int32x4_t __ret; \
  4479. __ret = __builtin_shufflevector(__rev0, __rev0, __p1, __p1, __p1, __p1); \
  4480. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  4481. __ret; \
  4482. })
  4483. #endif
  4484. #ifdef __LITTLE_ENDIAN__
  4485. #define vdupq_lane_s64(__p0, __p1) __extension__ ({ \
  4486. int64x1_t __s0 = __p0; \
  4487. int64x2_t __ret; \
  4488. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1); \
  4489. __ret; \
  4490. })
  4491. #else
  4492. #define vdupq_lane_s64(__p0, __p1) __extension__ ({ \
  4493. int64x1_t __s0 = __p0; \
  4494. int64x2_t __ret; \
  4495. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1); \
  4496. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  4497. __ret; \
  4498. })
  4499. #endif
  4500. #ifdef __LITTLE_ENDIAN__
  4501. #define vdupq_lane_s16(__p0, __p1) __extension__ ({ \
  4502. int16x4_t __s0 = __p0; \
  4503. int16x8_t __ret; \
  4504. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1); \
  4505. __ret; \
  4506. })
  4507. #else
  4508. #define vdupq_lane_s16(__p0, __p1) __extension__ ({ \
  4509. int16x4_t __s0 = __p0; \
  4510. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  4511. int16x8_t __ret; \
  4512. __ret = __builtin_shufflevector(__rev0, __rev0, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1); \
  4513. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  4514. __ret; \
  4515. })
  4516. #endif
  4517. #ifdef __LITTLE_ENDIAN__
  4518. #define vdup_lane_u8(__p0, __p1) __extension__ ({ \
  4519. uint8x8_t __s0 = __p0; \
  4520. uint8x8_t __ret; \
  4521. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1); \
  4522. __ret; \
  4523. })
  4524. #else
  4525. #define vdup_lane_u8(__p0, __p1) __extension__ ({ \
  4526. uint8x8_t __s0 = __p0; \
  4527. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  4528. uint8x8_t __ret; \
  4529. __ret = __builtin_shufflevector(__rev0, __rev0, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1); \
  4530. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  4531. __ret; \
  4532. })
  4533. #endif
  4534. #ifdef __LITTLE_ENDIAN__
  4535. #define vdup_lane_u32(__p0, __p1) __extension__ ({ \
  4536. uint32x2_t __s0 = __p0; \
  4537. uint32x2_t __ret; \
  4538. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1); \
  4539. __ret; \
  4540. })
  4541. #else
  4542. #define vdup_lane_u32(__p0, __p1) __extension__ ({ \
  4543. uint32x2_t __s0 = __p0; \
  4544. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  4545. uint32x2_t __ret; \
  4546. __ret = __builtin_shufflevector(__rev0, __rev0, __p1, __p1); \
  4547. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  4548. __ret; \
  4549. })
  4550. #endif
  4551. #ifdef __LITTLE_ENDIAN__
  4552. #define vdup_lane_u64(__p0, __p1) __extension__ ({ \
  4553. uint64x1_t __s0 = __p0; \
  4554. uint64x1_t __ret; \
  4555. __ret = __builtin_shufflevector(__s0, __s0, __p1); \
  4556. __ret; \
  4557. })
  4558. #else
  4559. #define vdup_lane_u64(__p0, __p1) __extension__ ({ \
  4560. uint64x1_t __s0 = __p0; \
  4561. uint64x1_t __ret; \
  4562. __ret = __builtin_shufflevector(__s0, __s0, __p1); \
  4563. __ret; \
  4564. })
  4565. #endif
  4566. #ifdef __LITTLE_ENDIAN__
  4567. #define vdup_lane_u16(__p0, __p1) __extension__ ({ \
  4568. uint16x4_t __s0 = __p0; \
  4569. uint16x4_t __ret; \
  4570. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1, __p1, __p1); \
  4571. __ret; \
  4572. })
  4573. #else
  4574. #define vdup_lane_u16(__p0, __p1) __extension__ ({ \
  4575. uint16x4_t __s0 = __p0; \
  4576. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  4577. uint16x4_t __ret; \
  4578. __ret = __builtin_shufflevector(__rev0, __rev0, __p1, __p1, __p1, __p1); \
  4579. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  4580. __ret; \
  4581. })
  4582. #endif
  4583. #ifdef __LITTLE_ENDIAN__
  4584. #define vdup_lane_s8(__p0, __p1) __extension__ ({ \
  4585. int8x8_t __s0 = __p0; \
  4586. int8x8_t __ret; \
  4587. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1); \
  4588. __ret; \
  4589. })
  4590. #else
  4591. #define vdup_lane_s8(__p0, __p1) __extension__ ({ \
  4592. int8x8_t __s0 = __p0; \
  4593. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  4594. int8x8_t __ret; \
  4595. __ret = __builtin_shufflevector(__rev0, __rev0, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1); \
  4596. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  4597. __ret; \
  4598. })
  4599. #endif
  4600. #ifdef __LITTLE_ENDIAN__
  4601. #define vdup_lane_f32(__p0, __p1) __extension__ ({ \
  4602. float32x2_t __s0 = __p0; \
  4603. float32x2_t __ret; \
  4604. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1); \
  4605. __ret; \
  4606. })
  4607. #else
  4608. #define vdup_lane_f32(__p0, __p1) __extension__ ({ \
  4609. float32x2_t __s0 = __p0; \
  4610. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  4611. float32x2_t __ret; \
  4612. __ret = __builtin_shufflevector(__rev0, __rev0, __p1, __p1); \
  4613. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  4614. __ret; \
  4615. })
  4616. #endif
  4617. #ifdef __LITTLE_ENDIAN__
  4618. #define vdup_lane_s32(__p0, __p1) __extension__ ({ \
  4619. int32x2_t __s0 = __p0; \
  4620. int32x2_t __ret; \
  4621. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1); \
  4622. __ret; \
  4623. })
  4624. #else
  4625. #define vdup_lane_s32(__p0, __p1) __extension__ ({ \
  4626. int32x2_t __s0 = __p0; \
  4627. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  4628. int32x2_t __ret; \
  4629. __ret = __builtin_shufflevector(__rev0, __rev0, __p1, __p1); \
  4630. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  4631. __ret; \
  4632. })
  4633. #endif
  4634. #ifdef __LITTLE_ENDIAN__
  4635. #define vdup_lane_s64(__p0, __p1) __extension__ ({ \
  4636. int64x1_t __s0 = __p0; \
  4637. int64x1_t __ret; \
  4638. __ret = __builtin_shufflevector(__s0, __s0, __p1); \
  4639. __ret; \
  4640. })
  4641. #else
  4642. #define vdup_lane_s64(__p0, __p1) __extension__ ({ \
  4643. int64x1_t __s0 = __p0; \
  4644. int64x1_t __ret; \
  4645. __ret = __builtin_shufflevector(__s0, __s0, __p1); \
  4646. __ret; \
  4647. })
  4648. #endif
  4649. #ifdef __LITTLE_ENDIAN__
  4650. #define vdup_lane_s16(__p0, __p1) __extension__ ({ \
  4651. int16x4_t __s0 = __p0; \
  4652. int16x4_t __ret; \
  4653. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1, __p1, __p1); \
  4654. __ret; \
  4655. })
  4656. #else
  4657. #define vdup_lane_s16(__p0, __p1) __extension__ ({ \
  4658. int16x4_t __s0 = __p0; \
  4659. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  4660. int16x4_t __ret; \
  4661. __ret = __builtin_shufflevector(__rev0, __rev0, __p1, __p1, __p1, __p1); \
  4662. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  4663. __ret; \
  4664. })
  4665. #endif
  4666. #ifdef __LITTLE_ENDIAN__
  4667. __ai poly8x8_t vdup_n_p8(poly8_t __p0) {
  4668. poly8x8_t __ret;
  4669. __ret = (poly8x8_t) {__p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0};
  4670. return __ret;
  4671. }
  4672. #else
  4673. __ai poly8x8_t vdup_n_p8(poly8_t __p0) {
  4674. poly8x8_t __ret;
  4675. __ret = (poly8x8_t) {__p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0};
  4676. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  4677. return __ret;
  4678. }
  4679. #endif
  4680. #ifdef __LITTLE_ENDIAN__
  4681. __ai poly16x4_t vdup_n_p16(poly16_t __p0) {
  4682. poly16x4_t __ret;
  4683. __ret = (poly16x4_t) {__p0, __p0, __p0, __p0};
  4684. return __ret;
  4685. }
  4686. #else
  4687. __ai poly16x4_t vdup_n_p16(poly16_t __p0) {
  4688. poly16x4_t __ret;
  4689. __ret = (poly16x4_t) {__p0, __p0, __p0, __p0};
  4690. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  4691. return __ret;
  4692. }
  4693. #endif
  4694. #ifdef __LITTLE_ENDIAN__
  4695. __ai poly8x16_t vdupq_n_p8(poly8_t __p0) {
  4696. poly8x16_t __ret;
  4697. __ret = (poly8x16_t) {__p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0};
  4698. return __ret;
  4699. }
  4700. #else
  4701. __ai poly8x16_t vdupq_n_p8(poly8_t __p0) {
  4702. poly8x16_t __ret;
  4703. __ret = (poly8x16_t) {__p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0};
  4704. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  4705. return __ret;
  4706. }
  4707. #endif
  4708. #ifdef __LITTLE_ENDIAN__
  4709. __ai poly16x8_t vdupq_n_p16(poly16_t __p0) {
  4710. poly16x8_t __ret;
  4711. __ret = (poly16x8_t) {__p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0};
  4712. return __ret;
  4713. }
  4714. #else
  4715. __ai poly16x8_t vdupq_n_p16(poly16_t __p0) {
  4716. poly16x8_t __ret;
  4717. __ret = (poly16x8_t) {__p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0};
  4718. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  4719. return __ret;
  4720. }
  4721. #endif
  4722. #ifdef __LITTLE_ENDIAN__
  4723. __ai uint8x16_t vdupq_n_u8(uint8_t __p0) {
  4724. uint8x16_t __ret;
  4725. __ret = (uint8x16_t) {__p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0};
  4726. return __ret;
  4727. }
  4728. #else
  4729. __ai uint8x16_t vdupq_n_u8(uint8_t __p0) {
  4730. uint8x16_t __ret;
  4731. __ret = (uint8x16_t) {__p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0};
  4732. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  4733. return __ret;
  4734. }
  4735. #endif
  4736. #ifdef __LITTLE_ENDIAN__
  4737. __ai uint32x4_t vdupq_n_u32(uint32_t __p0) {
  4738. uint32x4_t __ret;
  4739. __ret = (uint32x4_t) {__p0, __p0, __p0, __p0};
  4740. return __ret;
  4741. }
  4742. #else
  4743. __ai uint32x4_t vdupq_n_u32(uint32_t __p0) {
  4744. uint32x4_t __ret;
  4745. __ret = (uint32x4_t) {__p0, __p0, __p0, __p0};
  4746. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  4747. return __ret;
  4748. }
  4749. #endif
  4750. #ifdef __LITTLE_ENDIAN__
  4751. __ai uint64x2_t vdupq_n_u64(uint64_t __p0) {
  4752. uint64x2_t __ret;
  4753. __ret = (uint64x2_t) {__p0, __p0};
  4754. return __ret;
  4755. }
  4756. #else
  4757. __ai uint64x2_t vdupq_n_u64(uint64_t __p0) {
  4758. uint64x2_t __ret;
  4759. __ret = (uint64x2_t) {__p0, __p0};
  4760. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  4761. return __ret;
  4762. }
  4763. #endif
  4764. #ifdef __LITTLE_ENDIAN__
  4765. __ai uint16x8_t vdupq_n_u16(uint16_t __p0) {
  4766. uint16x8_t __ret;
  4767. __ret = (uint16x8_t) {__p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0};
  4768. return __ret;
  4769. }
  4770. #else
  4771. __ai uint16x8_t vdupq_n_u16(uint16_t __p0) {
  4772. uint16x8_t __ret;
  4773. __ret = (uint16x8_t) {__p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0};
  4774. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  4775. return __ret;
  4776. }
  4777. #endif
  4778. #ifdef __LITTLE_ENDIAN__
  4779. __ai int8x16_t vdupq_n_s8(int8_t __p0) {
  4780. int8x16_t __ret;
  4781. __ret = (int8x16_t) {__p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0};
  4782. return __ret;
  4783. }
  4784. #else
  4785. __ai int8x16_t vdupq_n_s8(int8_t __p0) {
  4786. int8x16_t __ret;
  4787. __ret = (int8x16_t) {__p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0};
  4788. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  4789. return __ret;
  4790. }
  4791. #endif
  4792. #ifdef __LITTLE_ENDIAN__
  4793. __ai float32x4_t vdupq_n_f32(float32_t __p0) {
  4794. float32x4_t __ret;
  4795. __ret = (float32x4_t) {__p0, __p0, __p0, __p0};
  4796. return __ret;
  4797. }
  4798. #else
  4799. __ai float32x4_t vdupq_n_f32(float32_t __p0) {
  4800. float32x4_t __ret;
  4801. __ret = (float32x4_t) {__p0, __p0, __p0, __p0};
  4802. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  4803. return __ret;
  4804. }
  4805. #endif
  4806. #ifdef __LITTLE_ENDIAN__
  4807. #define vdupq_n_f16(__p0) __extension__ ({ \
  4808. float16_t __s0 = __p0; \
  4809. float16x8_t __ret; \
  4810. __ret = (float16x8_t) {__s0, __s0, __s0, __s0, __s0, __s0, __s0, __s0}; \
  4811. __ret; \
  4812. })
  4813. #else
  4814. #define vdupq_n_f16(__p0) __extension__ ({ \
  4815. float16_t __s0 = __p0; \
  4816. float16x8_t __ret; \
  4817. __ret = (float16x8_t) {__s0, __s0, __s0, __s0, __s0, __s0, __s0, __s0}; \
  4818. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  4819. __ret; \
  4820. })
  4821. #endif
  4822. #ifdef __LITTLE_ENDIAN__
  4823. __ai int32x4_t vdupq_n_s32(int32_t __p0) {
  4824. int32x4_t __ret;
  4825. __ret = (int32x4_t) {__p0, __p0, __p0, __p0};
  4826. return __ret;
  4827. }
  4828. #else
  4829. __ai int32x4_t vdupq_n_s32(int32_t __p0) {
  4830. int32x4_t __ret;
  4831. __ret = (int32x4_t) {__p0, __p0, __p0, __p0};
  4832. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  4833. return __ret;
  4834. }
  4835. #endif
  4836. #ifdef __LITTLE_ENDIAN__
  4837. __ai int64x2_t vdupq_n_s64(int64_t __p0) {
  4838. int64x2_t __ret;
  4839. __ret = (int64x2_t) {__p0, __p0};
  4840. return __ret;
  4841. }
  4842. #else
  4843. __ai int64x2_t vdupq_n_s64(int64_t __p0) {
  4844. int64x2_t __ret;
  4845. __ret = (int64x2_t) {__p0, __p0};
  4846. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  4847. return __ret;
  4848. }
  4849. #endif
  4850. #ifdef __LITTLE_ENDIAN__
  4851. __ai int16x8_t vdupq_n_s16(int16_t __p0) {
  4852. int16x8_t __ret;
  4853. __ret = (int16x8_t) {__p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0};
  4854. return __ret;
  4855. }
  4856. #else
  4857. __ai int16x8_t vdupq_n_s16(int16_t __p0) {
  4858. int16x8_t __ret;
  4859. __ret = (int16x8_t) {__p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0};
  4860. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  4861. return __ret;
  4862. }
  4863. #endif
  4864. #ifdef __LITTLE_ENDIAN__
  4865. __ai uint8x8_t vdup_n_u8(uint8_t __p0) {
  4866. uint8x8_t __ret;
  4867. __ret = (uint8x8_t) {__p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0};
  4868. return __ret;
  4869. }
  4870. #else
  4871. __ai uint8x8_t vdup_n_u8(uint8_t __p0) {
  4872. uint8x8_t __ret;
  4873. __ret = (uint8x8_t) {__p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0};
  4874. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  4875. return __ret;
  4876. }
  4877. #endif
  4878. #ifdef __LITTLE_ENDIAN__
  4879. __ai uint32x2_t vdup_n_u32(uint32_t __p0) {
  4880. uint32x2_t __ret;
  4881. __ret = (uint32x2_t) {__p0, __p0};
  4882. return __ret;
  4883. }
  4884. #else
  4885. __ai uint32x2_t vdup_n_u32(uint32_t __p0) {
  4886. uint32x2_t __ret;
  4887. __ret = (uint32x2_t) {__p0, __p0};
  4888. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  4889. return __ret;
  4890. }
  4891. #endif
  4892. #ifdef __LITTLE_ENDIAN__
  4893. __ai uint64x1_t vdup_n_u64(uint64_t __p0) {
  4894. uint64x1_t __ret;
  4895. __ret = (uint64x1_t) {__p0};
  4896. return __ret;
  4897. }
  4898. #else
  4899. __ai uint64x1_t vdup_n_u64(uint64_t __p0) {
  4900. uint64x1_t __ret;
  4901. __ret = (uint64x1_t) {__p0};
  4902. return __ret;
  4903. }
  4904. #endif
  4905. #ifdef __LITTLE_ENDIAN__
  4906. __ai uint16x4_t vdup_n_u16(uint16_t __p0) {
  4907. uint16x4_t __ret;
  4908. __ret = (uint16x4_t) {__p0, __p0, __p0, __p0};
  4909. return __ret;
  4910. }
  4911. #else
  4912. __ai uint16x4_t vdup_n_u16(uint16_t __p0) {
  4913. uint16x4_t __ret;
  4914. __ret = (uint16x4_t) {__p0, __p0, __p0, __p0};
  4915. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  4916. return __ret;
  4917. }
  4918. #endif
  4919. #ifdef __LITTLE_ENDIAN__
  4920. __ai int8x8_t vdup_n_s8(int8_t __p0) {
  4921. int8x8_t __ret;
  4922. __ret = (int8x8_t) {__p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0};
  4923. return __ret;
  4924. }
  4925. #else
  4926. __ai int8x8_t vdup_n_s8(int8_t __p0) {
  4927. int8x8_t __ret;
  4928. __ret = (int8x8_t) {__p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0};
  4929. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  4930. return __ret;
  4931. }
  4932. #endif
  4933. #ifdef __LITTLE_ENDIAN__
  4934. __ai float32x2_t vdup_n_f32(float32_t __p0) {
  4935. float32x2_t __ret;
  4936. __ret = (float32x2_t) {__p0, __p0};
  4937. return __ret;
  4938. }
  4939. #else
  4940. __ai float32x2_t vdup_n_f32(float32_t __p0) {
  4941. float32x2_t __ret;
  4942. __ret = (float32x2_t) {__p0, __p0};
  4943. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  4944. return __ret;
  4945. }
  4946. #endif
  4947. #ifdef __LITTLE_ENDIAN__
  4948. #define vdup_n_f16(__p0) __extension__ ({ \
  4949. float16_t __s0 = __p0; \
  4950. float16x4_t __ret; \
  4951. __ret = (float16x4_t) {__s0, __s0, __s0, __s0}; \
  4952. __ret; \
  4953. })
  4954. #else
  4955. #define vdup_n_f16(__p0) __extension__ ({ \
  4956. float16_t __s0 = __p0; \
  4957. float16x4_t __ret; \
  4958. __ret = (float16x4_t) {__s0, __s0, __s0, __s0}; \
  4959. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  4960. __ret; \
  4961. })
  4962. #endif
  4963. #ifdef __LITTLE_ENDIAN__
  4964. __ai int32x2_t vdup_n_s32(int32_t __p0) {
  4965. int32x2_t __ret;
  4966. __ret = (int32x2_t) {__p0, __p0};
  4967. return __ret;
  4968. }
  4969. #else
  4970. __ai int32x2_t vdup_n_s32(int32_t __p0) {
  4971. int32x2_t __ret;
  4972. __ret = (int32x2_t) {__p0, __p0};
  4973. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  4974. return __ret;
  4975. }
  4976. #endif
  4977. #ifdef __LITTLE_ENDIAN__
  4978. __ai int64x1_t vdup_n_s64(int64_t __p0) {
  4979. int64x1_t __ret;
  4980. __ret = (int64x1_t) {__p0};
  4981. return __ret;
  4982. }
  4983. #else
  4984. __ai int64x1_t vdup_n_s64(int64_t __p0) {
  4985. int64x1_t __ret;
  4986. __ret = (int64x1_t) {__p0};
  4987. return __ret;
  4988. }
  4989. #endif
  4990. #ifdef __LITTLE_ENDIAN__
  4991. __ai int16x4_t vdup_n_s16(int16_t __p0) {
  4992. int16x4_t __ret;
  4993. __ret = (int16x4_t) {__p0, __p0, __p0, __p0};
  4994. return __ret;
  4995. }
  4996. #else
  4997. __ai int16x4_t vdup_n_s16(int16_t __p0) {
  4998. int16x4_t __ret;
  4999. __ret = (int16x4_t) {__p0, __p0, __p0, __p0};
  5000. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  5001. return __ret;
  5002. }
  5003. #endif
  5004. #ifdef __LITTLE_ENDIAN__
  5005. __ai uint8x16_t veorq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  5006. uint8x16_t __ret;
  5007. __ret = __p0 ^ __p1;
  5008. return __ret;
  5009. }
  5010. #else
  5011. __ai uint8x16_t veorq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  5012. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  5013. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  5014. uint8x16_t __ret;
  5015. __ret = __rev0 ^ __rev1;
  5016. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  5017. return __ret;
  5018. }
  5019. #endif
  5020. #ifdef __LITTLE_ENDIAN__
  5021. __ai uint32x4_t veorq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  5022. uint32x4_t __ret;
  5023. __ret = __p0 ^ __p1;
  5024. return __ret;
  5025. }
  5026. #else
  5027. __ai uint32x4_t veorq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  5028. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  5029. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  5030. uint32x4_t __ret;
  5031. __ret = __rev0 ^ __rev1;
  5032. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  5033. return __ret;
  5034. }
  5035. #endif
  5036. #ifdef __LITTLE_ENDIAN__
  5037. __ai uint64x2_t veorq_u64(uint64x2_t __p0, uint64x2_t __p1) {
  5038. uint64x2_t __ret;
  5039. __ret = __p0 ^ __p1;
  5040. return __ret;
  5041. }
  5042. #else
  5043. __ai uint64x2_t veorq_u64(uint64x2_t __p0, uint64x2_t __p1) {
  5044. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  5045. uint64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  5046. uint64x2_t __ret;
  5047. __ret = __rev0 ^ __rev1;
  5048. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  5049. return __ret;
  5050. }
  5051. #endif
  5052. #ifdef __LITTLE_ENDIAN__
  5053. __ai uint16x8_t veorq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  5054. uint16x8_t __ret;
  5055. __ret = __p0 ^ __p1;
  5056. return __ret;
  5057. }
  5058. #else
  5059. __ai uint16x8_t veorq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  5060. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  5061. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  5062. uint16x8_t __ret;
  5063. __ret = __rev0 ^ __rev1;
  5064. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  5065. return __ret;
  5066. }
  5067. #endif
  5068. #ifdef __LITTLE_ENDIAN__
  5069. __ai int8x16_t veorq_s8(int8x16_t __p0, int8x16_t __p1) {
  5070. int8x16_t __ret;
  5071. __ret = __p0 ^ __p1;
  5072. return __ret;
  5073. }
  5074. #else
  5075. __ai int8x16_t veorq_s8(int8x16_t __p0, int8x16_t __p1) {
  5076. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  5077. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  5078. int8x16_t __ret;
  5079. __ret = __rev0 ^ __rev1;
  5080. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  5081. return __ret;
  5082. }
  5083. #endif
  5084. #ifdef __LITTLE_ENDIAN__
  5085. __ai int32x4_t veorq_s32(int32x4_t __p0, int32x4_t __p1) {
  5086. int32x4_t __ret;
  5087. __ret = __p0 ^ __p1;
  5088. return __ret;
  5089. }
  5090. #else
  5091. __ai int32x4_t veorq_s32(int32x4_t __p0, int32x4_t __p1) {
  5092. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  5093. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  5094. int32x4_t __ret;
  5095. __ret = __rev0 ^ __rev1;
  5096. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  5097. return __ret;
  5098. }
  5099. #endif
  5100. #ifdef __LITTLE_ENDIAN__
  5101. __ai int64x2_t veorq_s64(int64x2_t __p0, int64x2_t __p1) {
  5102. int64x2_t __ret;
  5103. __ret = __p0 ^ __p1;
  5104. return __ret;
  5105. }
  5106. #else
  5107. __ai int64x2_t veorq_s64(int64x2_t __p0, int64x2_t __p1) {
  5108. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  5109. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  5110. int64x2_t __ret;
  5111. __ret = __rev0 ^ __rev1;
  5112. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  5113. return __ret;
  5114. }
  5115. #endif
  5116. #ifdef __LITTLE_ENDIAN__
  5117. __ai int16x8_t veorq_s16(int16x8_t __p0, int16x8_t __p1) {
  5118. int16x8_t __ret;
  5119. __ret = __p0 ^ __p1;
  5120. return __ret;
  5121. }
  5122. #else
  5123. __ai int16x8_t veorq_s16(int16x8_t __p0, int16x8_t __p1) {
  5124. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  5125. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  5126. int16x8_t __ret;
  5127. __ret = __rev0 ^ __rev1;
  5128. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  5129. return __ret;
  5130. }
  5131. #endif
  5132. #ifdef __LITTLE_ENDIAN__
  5133. __ai uint8x8_t veor_u8(uint8x8_t __p0, uint8x8_t __p1) {
  5134. uint8x8_t __ret;
  5135. __ret = __p0 ^ __p1;
  5136. return __ret;
  5137. }
  5138. #else
  5139. __ai uint8x8_t veor_u8(uint8x8_t __p0, uint8x8_t __p1) {
  5140. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  5141. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  5142. uint8x8_t __ret;
  5143. __ret = __rev0 ^ __rev1;
  5144. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  5145. return __ret;
  5146. }
  5147. #endif
  5148. #ifdef __LITTLE_ENDIAN__
  5149. __ai uint32x2_t veor_u32(uint32x2_t __p0, uint32x2_t __p1) {
  5150. uint32x2_t __ret;
  5151. __ret = __p0 ^ __p1;
  5152. return __ret;
  5153. }
  5154. #else
  5155. __ai uint32x2_t veor_u32(uint32x2_t __p0, uint32x2_t __p1) {
  5156. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  5157. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  5158. uint32x2_t __ret;
  5159. __ret = __rev0 ^ __rev1;
  5160. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  5161. return __ret;
  5162. }
  5163. #endif
  5164. #ifdef __LITTLE_ENDIAN__
  5165. __ai uint64x1_t veor_u64(uint64x1_t __p0, uint64x1_t __p1) {
  5166. uint64x1_t __ret;
  5167. __ret = __p0 ^ __p1;
  5168. return __ret;
  5169. }
  5170. #else
  5171. __ai uint64x1_t veor_u64(uint64x1_t __p0, uint64x1_t __p1) {
  5172. uint64x1_t __ret;
  5173. __ret = __p0 ^ __p1;
  5174. return __ret;
  5175. }
  5176. #endif
  5177. #ifdef __LITTLE_ENDIAN__
  5178. __ai uint16x4_t veor_u16(uint16x4_t __p0, uint16x4_t __p1) {
  5179. uint16x4_t __ret;
  5180. __ret = __p0 ^ __p1;
  5181. return __ret;
  5182. }
  5183. #else
  5184. __ai uint16x4_t veor_u16(uint16x4_t __p0, uint16x4_t __p1) {
  5185. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  5186. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  5187. uint16x4_t __ret;
  5188. __ret = __rev0 ^ __rev1;
  5189. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  5190. return __ret;
  5191. }
  5192. #endif
  5193. #ifdef __LITTLE_ENDIAN__
  5194. __ai int8x8_t veor_s8(int8x8_t __p0, int8x8_t __p1) {
  5195. int8x8_t __ret;
  5196. __ret = __p0 ^ __p1;
  5197. return __ret;
  5198. }
  5199. #else
  5200. __ai int8x8_t veor_s8(int8x8_t __p0, int8x8_t __p1) {
  5201. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  5202. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  5203. int8x8_t __ret;
  5204. __ret = __rev0 ^ __rev1;
  5205. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  5206. return __ret;
  5207. }
  5208. #endif
  5209. #ifdef __LITTLE_ENDIAN__
  5210. __ai int32x2_t veor_s32(int32x2_t __p0, int32x2_t __p1) {
  5211. int32x2_t __ret;
  5212. __ret = __p0 ^ __p1;
  5213. return __ret;
  5214. }
  5215. #else
  5216. __ai int32x2_t veor_s32(int32x2_t __p0, int32x2_t __p1) {
  5217. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  5218. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  5219. int32x2_t __ret;
  5220. __ret = __rev0 ^ __rev1;
  5221. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  5222. return __ret;
  5223. }
  5224. #endif
  5225. #ifdef __LITTLE_ENDIAN__
  5226. __ai int64x1_t veor_s64(int64x1_t __p0, int64x1_t __p1) {
  5227. int64x1_t __ret;
  5228. __ret = __p0 ^ __p1;
  5229. return __ret;
  5230. }
  5231. #else
  5232. __ai int64x1_t veor_s64(int64x1_t __p0, int64x1_t __p1) {
  5233. int64x1_t __ret;
  5234. __ret = __p0 ^ __p1;
  5235. return __ret;
  5236. }
  5237. #endif
  5238. #ifdef __LITTLE_ENDIAN__
  5239. __ai int16x4_t veor_s16(int16x4_t __p0, int16x4_t __p1) {
  5240. int16x4_t __ret;
  5241. __ret = __p0 ^ __p1;
  5242. return __ret;
  5243. }
  5244. #else
  5245. __ai int16x4_t veor_s16(int16x4_t __p0, int16x4_t __p1) {
  5246. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  5247. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  5248. int16x4_t __ret;
  5249. __ret = __rev0 ^ __rev1;
  5250. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  5251. return __ret;
  5252. }
  5253. #endif
  5254. #ifdef __LITTLE_ENDIAN__
  5255. #define vext_p8(__p0, __p1, __p2) __extension__ ({ \
  5256. poly8x8_t __s0 = __p0; \
  5257. poly8x8_t __s1 = __p1; \
  5258. poly8x8_t __ret; \
  5259. __ret = (poly8x8_t) __builtin_neon_vext_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 4); \
  5260. __ret; \
  5261. })
  5262. #else
  5263. #define vext_p8(__p0, __p1, __p2) __extension__ ({ \
  5264. poly8x8_t __s0 = __p0; \
  5265. poly8x8_t __s1 = __p1; \
  5266. poly8x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  5267. poly8x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  5268. poly8x8_t __ret; \
  5269. __ret = (poly8x8_t) __builtin_neon_vext_v((int8x8_t)__rev0, (int8x8_t)__rev1, __p2, 4); \
  5270. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  5271. __ret; \
  5272. })
  5273. #endif
  5274. #ifdef __LITTLE_ENDIAN__
  5275. #define vext_p16(__p0, __p1, __p2) __extension__ ({ \
  5276. poly16x4_t __s0 = __p0; \
  5277. poly16x4_t __s1 = __p1; \
  5278. poly16x4_t __ret; \
  5279. __ret = (poly16x4_t) __builtin_neon_vext_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 5); \
  5280. __ret; \
  5281. })
  5282. #else
  5283. #define vext_p16(__p0, __p1, __p2) __extension__ ({ \
  5284. poly16x4_t __s0 = __p0; \
  5285. poly16x4_t __s1 = __p1; \
  5286. poly16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  5287. poly16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  5288. poly16x4_t __ret; \
  5289. __ret = (poly16x4_t) __builtin_neon_vext_v((int8x8_t)__rev0, (int8x8_t)__rev1, __p2, 5); \
  5290. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  5291. __ret; \
  5292. })
  5293. #endif
  5294. #ifdef __LITTLE_ENDIAN__
  5295. #define vextq_p8(__p0, __p1, __p2) __extension__ ({ \
  5296. poly8x16_t __s0 = __p0; \
  5297. poly8x16_t __s1 = __p1; \
  5298. poly8x16_t __ret; \
  5299. __ret = (poly8x16_t) __builtin_neon_vextq_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 36); \
  5300. __ret; \
  5301. })
  5302. #else
  5303. #define vextq_p8(__p0, __p1, __p2) __extension__ ({ \
  5304. poly8x16_t __s0 = __p0; \
  5305. poly8x16_t __s1 = __p1; \
  5306. poly8x16_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  5307. poly8x16_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  5308. poly8x16_t __ret; \
  5309. __ret = (poly8x16_t) __builtin_neon_vextq_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 36); \
  5310. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  5311. __ret; \
  5312. })
  5313. #endif
  5314. #ifdef __LITTLE_ENDIAN__
  5315. #define vextq_p16(__p0, __p1, __p2) __extension__ ({ \
  5316. poly16x8_t __s0 = __p0; \
  5317. poly16x8_t __s1 = __p1; \
  5318. poly16x8_t __ret; \
  5319. __ret = (poly16x8_t) __builtin_neon_vextq_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 37); \
  5320. __ret; \
  5321. })
  5322. #else
  5323. #define vextq_p16(__p0, __p1, __p2) __extension__ ({ \
  5324. poly16x8_t __s0 = __p0; \
  5325. poly16x8_t __s1 = __p1; \
  5326. poly16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  5327. poly16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  5328. poly16x8_t __ret; \
  5329. __ret = (poly16x8_t) __builtin_neon_vextq_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 37); \
  5330. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  5331. __ret; \
  5332. })
  5333. #endif
  5334. #ifdef __LITTLE_ENDIAN__
  5335. #define vextq_u8(__p0, __p1, __p2) __extension__ ({ \
  5336. uint8x16_t __s0 = __p0; \
  5337. uint8x16_t __s1 = __p1; \
  5338. uint8x16_t __ret; \
  5339. __ret = (uint8x16_t) __builtin_neon_vextq_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 48); \
  5340. __ret; \
  5341. })
  5342. #else
  5343. #define vextq_u8(__p0, __p1, __p2) __extension__ ({ \
  5344. uint8x16_t __s0 = __p0; \
  5345. uint8x16_t __s1 = __p1; \
  5346. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  5347. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  5348. uint8x16_t __ret; \
  5349. __ret = (uint8x16_t) __builtin_neon_vextq_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 48); \
  5350. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  5351. __ret; \
  5352. })
  5353. #endif
  5354. #ifdef __LITTLE_ENDIAN__
  5355. #define vextq_u32(__p0, __p1, __p2) __extension__ ({ \
  5356. uint32x4_t __s0 = __p0; \
  5357. uint32x4_t __s1 = __p1; \
  5358. uint32x4_t __ret; \
  5359. __ret = (uint32x4_t) __builtin_neon_vextq_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 50); \
  5360. __ret; \
  5361. })
  5362. #else
  5363. #define vextq_u32(__p0, __p1, __p2) __extension__ ({ \
  5364. uint32x4_t __s0 = __p0; \
  5365. uint32x4_t __s1 = __p1; \
  5366. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  5367. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  5368. uint32x4_t __ret; \
  5369. __ret = (uint32x4_t) __builtin_neon_vextq_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 50); \
  5370. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  5371. __ret; \
  5372. })
  5373. #endif
  5374. #ifdef __LITTLE_ENDIAN__
  5375. #define vextq_u64(__p0, __p1, __p2) __extension__ ({ \
  5376. uint64x2_t __s0 = __p0; \
  5377. uint64x2_t __s1 = __p1; \
  5378. uint64x2_t __ret; \
  5379. __ret = (uint64x2_t) __builtin_neon_vextq_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 51); \
  5380. __ret; \
  5381. })
  5382. #else
  5383. #define vextq_u64(__p0, __p1, __p2) __extension__ ({ \
  5384. uint64x2_t __s0 = __p0; \
  5385. uint64x2_t __s1 = __p1; \
  5386. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  5387. uint64x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  5388. uint64x2_t __ret; \
  5389. __ret = (uint64x2_t) __builtin_neon_vextq_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 51); \
  5390. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  5391. __ret; \
  5392. })
  5393. #endif
  5394. #ifdef __LITTLE_ENDIAN__
  5395. #define vextq_u16(__p0, __p1, __p2) __extension__ ({ \
  5396. uint16x8_t __s0 = __p0; \
  5397. uint16x8_t __s1 = __p1; \
  5398. uint16x8_t __ret; \
  5399. __ret = (uint16x8_t) __builtin_neon_vextq_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 49); \
  5400. __ret; \
  5401. })
  5402. #else
  5403. #define vextq_u16(__p0, __p1, __p2) __extension__ ({ \
  5404. uint16x8_t __s0 = __p0; \
  5405. uint16x8_t __s1 = __p1; \
  5406. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  5407. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  5408. uint16x8_t __ret; \
  5409. __ret = (uint16x8_t) __builtin_neon_vextq_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 49); \
  5410. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  5411. __ret; \
  5412. })
  5413. #endif
  5414. #ifdef __LITTLE_ENDIAN__
  5415. #define vextq_s8(__p0, __p1, __p2) __extension__ ({ \
  5416. int8x16_t __s0 = __p0; \
  5417. int8x16_t __s1 = __p1; \
  5418. int8x16_t __ret; \
  5419. __ret = (int8x16_t) __builtin_neon_vextq_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 32); \
  5420. __ret; \
  5421. })
  5422. #else
  5423. #define vextq_s8(__p0, __p1, __p2) __extension__ ({ \
  5424. int8x16_t __s0 = __p0; \
  5425. int8x16_t __s1 = __p1; \
  5426. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  5427. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  5428. int8x16_t __ret; \
  5429. __ret = (int8x16_t) __builtin_neon_vextq_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 32); \
  5430. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  5431. __ret; \
  5432. })
  5433. #endif
  5434. #ifdef __LITTLE_ENDIAN__
  5435. #define vextq_f32(__p0, __p1, __p2) __extension__ ({ \
  5436. float32x4_t __s0 = __p0; \
  5437. float32x4_t __s1 = __p1; \
  5438. float32x4_t __ret; \
  5439. __ret = (float32x4_t) __builtin_neon_vextq_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 41); \
  5440. __ret; \
  5441. })
  5442. #else
  5443. #define vextq_f32(__p0, __p1, __p2) __extension__ ({ \
  5444. float32x4_t __s0 = __p0; \
  5445. float32x4_t __s1 = __p1; \
  5446. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  5447. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  5448. float32x4_t __ret; \
  5449. __ret = (float32x4_t) __builtin_neon_vextq_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 41); \
  5450. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  5451. __ret; \
  5452. })
  5453. #endif
  5454. #ifdef __LITTLE_ENDIAN__
  5455. #define vextq_s32(__p0, __p1, __p2) __extension__ ({ \
  5456. int32x4_t __s0 = __p0; \
  5457. int32x4_t __s1 = __p1; \
  5458. int32x4_t __ret; \
  5459. __ret = (int32x4_t) __builtin_neon_vextq_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 34); \
  5460. __ret; \
  5461. })
  5462. #else
  5463. #define vextq_s32(__p0, __p1, __p2) __extension__ ({ \
  5464. int32x4_t __s0 = __p0; \
  5465. int32x4_t __s1 = __p1; \
  5466. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  5467. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  5468. int32x4_t __ret; \
  5469. __ret = (int32x4_t) __builtin_neon_vextq_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 34); \
  5470. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  5471. __ret; \
  5472. })
  5473. #endif
  5474. #ifdef __LITTLE_ENDIAN__
  5475. #define vextq_s64(__p0, __p1, __p2) __extension__ ({ \
  5476. int64x2_t __s0 = __p0; \
  5477. int64x2_t __s1 = __p1; \
  5478. int64x2_t __ret; \
  5479. __ret = (int64x2_t) __builtin_neon_vextq_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 35); \
  5480. __ret; \
  5481. })
  5482. #else
  5483. #define vextq_s64(__p0, __p1, __p2) __extension__ ({ \
  5484. int64x2_t __s0 = __p0; \
  5485. int64x2_t __s1 = __p1; \
  5486. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  5487. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  5488. int64x2_t __ret; \
  5489. __ret = (int64x2_t) __builtin_neon_vextq_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 35); \
  5490. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  5491. __ret; \
  5492. })
  5493. #endif
  5494. #ifdef __LITTLE_ENDIAN__
  5495. #define vextq_s16(__p0, __p1, __p2) __extension__ ({ \
  5496. int16x8_t __s0 = __p0; \
  5497. int16x8_t __s1 = __p1; \
  5498. int16x8_t __ret; \
  5499. __ret = (int16x8_t) __builtin_neon_vextq_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 33); \
  5500. __ret; \
  5501. })
  5502. #else
  5503. #define vextq_s16(__p0, __p1, __p2) __extension__ ({ \
  5504. int16x8_t __s0 = __p0; \
  5505. int16x8_t __s1 = __p1; \
  5506. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  5507. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  5508. int16x8_t __ret; \
  5509. __ret = (int16x8_t) __builtin_neon_vextq_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 33); \
  5510. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  5511. __ret; \
  5512. })
  5513. #endif
  5514. #ifdef __LITTLE_ENDIAN__
  5515. #define vext_u8(__p0, __p1, __p2) __extension__ ({ \
  5516. uint8x8_t __s0 = __p0; \
  5517. uint8x8_t __s1 = __p1; \
  5518. uint8x8_t __ret; \
  5519. __ret = (uint8x8_t) __builtin_neon_vext_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 16); \
  5520. __ret; \
  5521. })
  5522. #else
  5523. #define vext_u8(__p0, __p1, __p2) __extension__ ({ \
  5524. uint8x8_t __s0 = __p0; \
  5525. uint8x8_t __s1 = __p1; \
  5526. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  5527. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  5528. uint8x8_t __ret; \
  5529. __ret = (uint8x8_t) __builtin_neon_vext_v((int8x8_t)__rev0, (int8x8_t)__rev1, __p2, 16); \
  5530. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  5531. __ret; \
  5532. })
  5533. #endif
  5534. #ifdef __LITTLE_ENDIAN__
  5535. #define vext_u32(__p0, __p1, __p2) __extension__ ({ \
  5536. uint32x2_t __s0 = __p0; \
  5537. uint32x2_t __s1 = __p1; \
  5538. uint32x2_t __ret; \
  5539. __ret = (uint32x2_t) __builtin_neon_vext_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 18); \
  5540. __ret; \
  5541. })
  5542. #else
  5543. #define vext_u32(__p0, __p1, __p2) __extension__ ({ \
  5544. uint32x2_t __s0 = __p0; \
  5545. uint32x2_t __s1 = __p1; \
  5546. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  5547. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  5548. uint32x2_t __ret; \
  5549. __ret = (uint32x2_t) __builtin_neon_vext_v((int8x8_t)__rev0, (int8x8_t)__rev1, __p2, 18); \
  5550. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  5551. __ret; \
  5552. })
  5553. #endif
  5554. #ifdef __LITTLE_ENDIAN__
  5555. #define vext_u64(__p0, __p1, __p2) __extension__ ({ \
  5556. uint64x1_t __s0 = __p0; \
  5557. uint64x1_t __s1 = __p1; \
  5558. uint64x1_t __ret; \
  5559. __ret = (uint64x1_t) __builtin_neon_vext_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 19); \
  5560. __ret; \
  5561. })
  5562. #else
  5563. #define vext_u64(__p0, __p1, __p2) __extension__ ({ \
  5564. uint64x1_t __s0 = __p0; \
  5565. uint64x1_t __s1 = __p1; \
  5566. uint64x1_t __ret; \
  5567. __ret = (uint64x1_t) __builtin_neon_vext_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 19); \
  5568. __ret; \
  5569. })
  5570. #endif
  5571. #ifdef __LITTLE_ENDIAN__
  5572. #define vext_u16(__p0, __p1, __p2) __extension__ ({ \
  5573. uint16x4_t __s0 = __p0; \
  5574. uint16x4_t __s1 = __p1; \
  5575. uint16x4_t __ret; \
  5576. __ret = (uint16x4_t) __builtin_neon_vext_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 17); \
  5577. __ret; \
  5578. })
  5579. #else
  5580. #define vext_u16(__p0, __p1, __p2) __extension__ ({ \
  5581. uint16x4_t __s0 = __p0; \
  5582. uint16x4_t __s1 = __p1; \
  5583. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  5584. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  5585. uint16x4_t __ret; \
  5586. __ret = (uint16x4_t) __builtin_neon_vext_v((int8x8_t)__rev0, (int8x8_t)__rev1, __p2, 17); \
  5587. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  5588. __ret; \
  5589. })
  5590. #endif
  5591. #ifdef __LITTLE_ENDIAN__
  5592. #define vext_s8(__p0, __p1, __p2) __extension__ ({ \
  5593. int8x8_t __s0 = __p0; \
  5594. int8x8_t __s1 = __p1; \
  5595. int8x8_t __ret; \
  5596. __ret = (int8x8_t) __builtin_neon_vext_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 0); \
  5597. __ret; \
  5598. })
  5599. #else
  5600. #define vext_s8(__p0, __p1, __p2) __extension__ ({ \
  5601. int8x8_t __s0 = __p0; \
  5602. int8x8_t __s1 = __p1; \
  5603. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  5604. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  5605. int8x8_t __ret; \
  5606. __ret = (int8x8_t) __builtin_neon_vext_v((int8x8_t)__rev0, (int8x8_t)__rev1, __p2, 0); \
  5607. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  5608. __ret; \
  5609. })
  5610. #endif
  5611. #ifdef __LITTLE_ENDIAN__
  5612. #define vext_f32(__p0, __p1, __p2) __extension__ ({ \
  5613. float32x2_t __s0 = __p0; \
  5614. float32x2_t __s1 = __p1; \
  5615. float32x2_t __ret; \
  5616. __ret = (float32x2_t) __builtin_neon_vext_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 9); \
  5617. __ret; \
  5618. })
  5619. #else
  5620. #define vext_f32(__p0, __p1, __p2) __extension__ ({ \
  5621. float32x2_t __s0 = __p0; \
  5622. float32x2_t __s1 = __p1; \
  5623. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  5624. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  5625. float32x2_t __ret; \
  5626. __ret = (float32x2_t) __builtin_neon_vext_v((int8x8_t)__rev0, (int8x8_t)__rev1, __p2, 9); \
  5627. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  5628. __ret; \
  5629. })
  5630. #endif
  5631. #ifdef __LITTLE_ENDIAN__
  5632. #define vext_s32(__p0, __p1, __p2) __extension__ ({ \
  5633. int32x2_t __s0 = __p0; \
  5634. int32x2_t __s1 = __p1; \
  5635. int32x2_t __ret; \
  5636. __ret = (int32x2_t) __builtin_neon_vext_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 2); \
  5637. __ret; \
  5638. })
  5639. #else
  5640. #define vext_s32(__p0, __p1, __p2) __extension__ ({ \
  5641. int32x2_t __s0 = __p0; \
  5642. int32x2_t __s1 = __p1; \
  5643. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  5644. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  5645. int32x2_t __ret; \
  5646. __ret = (int32x2_t) __builtin_neon_vext_v((int8x8_t)__rev0, (int8x8_t)__rev1, __p2, 2); \
  5647. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  5648. __ret; \
  5649. })
  5650. #endif
  5651. #ifdef __LITTLE_ENDIAN__
  5652. #define vext_s64(__p0, __p1, __p2) __extension__ ({ \
  5653. int64x1_t __s0 = __p0; \
  5654. int64x1_t __s1 = __p1; \
  5655. int64x1_t __ret; \
  5656. __ret = (int64x1_t) __builtin_neon_vext_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 3); \
  5657. __ret; \
  5658. })
  5659. #else
  5660. #define vext_s64(__p0, __p1, __p2) __extension__ ({ \
  5661. int64x1_t __s0 = __p0; \
  5662. int64x1_t __s1 = __p1; \
  5663. int64x1_t __ret; \
  5664. __ret = (int64x1_t) __builtin_neon_vext_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 3); \
  5665. __ret; \
  5666. })
  5667. #endif
  5668. #ifdef __LITTLE_ENDIAN__
  5669. #define vext_s16(__p0, __p1, __p2) __extension__ ({ \
  5670. int16x4_t __s0 = __p0; \
  5671. int16x4_t __s1 = __p1; \
  5672. int16x4_t __ret; \
  5673. __ret = (int16x4_t) __builtin_neon_vext_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 1); \
  5674. __ret; \
  5675. })
  5676. #else
  5677. #define vext_s16(__p0, __p1, __p2) __extension__ ({ \
  5678. int16x4_t __s0 = __p0; \
  5679. int16x4_t __s1 = __p1; \
  5680. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  5681. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  5682. int16x4_t __ret; \
  5683. __ret = (int16x4_t) __builtin_neon_vext_v((int8x8_t)__rev0, (int8x8_t)__rev1, __p2, 1); \
  5684. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  5685. __ret; \
  5686. })
  5687. #endif
  5688. #ifdef __LITTLE_ENDIAN__
  5689. __ai poly8x8_t vget_high_p8(poly8x16_t __p0) {
  5690. poly8x8_t __ret;
  5691. __ret = __builtin_shufflevector(__p0, __p0, 8, 9, 10, 11, 12, 13, 14, 15);
  5692. return __ret;
  5693. }
  5694. #else
  5695. __ai poly8x8_t vget_high_p8(poly8x16_t __p0) {
  5696. poly8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  5697. poly8x8_t __ret;
  5698. __ret = __builtin_shufflevector(__rev0, __rev0, 8, 9, 10, 11, 12, 13, 14, 15);
  5699. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  5700. return __ret;
  5701. }
  5702. __ai poly8x8_t __noswap_vget_high_p8(poly8x16_t __p0) {
  5703. poly8x8_t __ret;
  5704. __ret = __builtin_shufflevector(__p0, __p0, 8, 9, 10, 11, 12, 13, 14, 15);
  5705. return __ret;
  5706. }
  5707. #endif
  5708. #ifdef __LITTLE_ENDIAN__
  5709. __ai poly16x4_t vget_high_p16(poly16x8_t __p0) {
  5710. poly16x4_t __ret;
  5711. __ret = __builtin_shufflevector(__p0, __p0, 4, 5, 6, 7);
  5712. return __ret;
  5713. }
  5714. #else
  5715. __ai poly16x4_t vget_high_p16(poly16x8_t __p0) {
  5716. poly16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  5717. poly16x4_t __ret;
  5718. __ret = __builtin_shufflevector(__rev0, __rev0, 4, 5, 6, 7);
  5719. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  5720. return __ret;
  5721. }
  5722. #endif
  5723. #ifdef __LITTLE_ENDIAN__
  5724. __ai uint8x8_t vget_high_u8(uint8x16_t __p0) {
  5725. uint8x8_t __ret;
  5726. __ret = __builtin_shufflevector(__p0, __p0, 8, 9, 10, 11, 12, 13, 14, 15);
  5727. return __ret;
  5728. }
  5729. #else
  5730. __ai uint8x8_t vget_high_u8(uint8x16_t __p0) {
  5731. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  5732. uint8x8_t __ret;
  5733. __ret = __builtin_shufflevector(__rev0, __rev0, 8, 9, 10, 11, 12, 13, 14, 15);
  5734. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  5735. return __ret;
  5736. }
  5737. __ai uint8x8_t __noswap_vget_high_u8(uint8x16_t __p0) {
  5738. uint8x8_t __ret;
  5739. __ret = __builtin_shufflevector(__p0, __p0, 8, 9, 10, 11, 12, 13, 14, 15);
  5740. return __ret;
  5741. }
  5742. #endif
  5743. #ifdef __LITTLE_ENDIAN__
  5744. __ai uint32x2_t vget_high_u32(uint32x4_t __p0) {
  5745. uint32x2_t __ret;
  5746. __ret = __builtin_shufflevector(__p0, __p0, 2, 3);
  5747. return __ret;
  5748. }
  5749. #else
  5750. __ai uint32x2_t vget_high_u32(uint32x4_t __p0) {
  5751. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  5752. uint32x2_t __ret;
  5753. __ret = __builtin_shufflevector(__rev0, __rev0, 2, 3);
  5754. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  5755. return __ret;
  5756. }
  5757. __ai uint32x2_t __noswap_vget_high_u32(uint32x4_t __p0) {
  5758. uint32x2_t __ret;
  5759. __ret = __builtin_shufflevector(__p0, __p0, 2, 3);
  5760. return __ret;
  5761. }
  5762. #endif
  5763. #ifdef __LITTLE_ENDIAN__
  5764. __ai uint64x1_t vget_high_u64(uint64x2_t __p0) {
  5765. uint64x1_t __ret;
  5766. __ret = __builtin_shufflevector(__p0, __p0, 1);
  5767. return __ret;
  5768. }
  5769. #else
  5770. __ai uint64x1_t vget_high_u64(uint64x2_t __p0) {
  5771. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  5772. uint64x1_t __ret;
  5773. __ret = __builtin_shufflevector(__rev0, __rev0, 1);
  5774. return __ret;
  5775. }
  5776. #endif
  5777. #ifdef __LITTLE_ENDIAN__
  5778. __ai uint16x4_t vget_high_u16(uint16x8_t __p0) {
  5779. uint16x4_t __ret;
  5780. __ret = __builtin_shufflevector(__p0, __p0, 4, 5, 6, 7);
  5781. return __ret;
  5782. }
  5783. #else
  5784. __ai uint16x4_t vget_high_u16(uint16x8_t __p0) {
  5785. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  5786. uint16x4_t __ret;
  5787. __ret = __builtin_shufflevector(__rev0, __rev0, 4, 5, 6, 7);
  5788. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  5789. return __ret;
  5790. }
  5791. __ai uint16x4_t __noswap_vget_high_u16(uint16x8_t __p0) {
  5792. uint16x4_t __ret;
  5793. __ret = __builtin_shufflevector(__p0, __p0, 4, 5, 6, 7);
  5794. return __ret;
  5795. }
  5796. #endif
  5797. #ifdef __LITTLE_ENDIAN__
  5798. __ai int8x8_t vget_high_s8(int8x16_t __p0) {
  5799. int8x8_t __ret;
  5800. __ret = __builtin_shufflevector(__p0, __p0, 8, 9, 10, 11, 12, 13, 14, 15);
  5801. return __ret;
  5802. }
  5803. #else
  5804. __ai int8x8_t vget_high_s8(int8x16_t __p0) {
  5805. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  5806. int8x8_t __ret;
  5807. __ret = __builtin_shufflevector(__rev0, __rev0, 8, 9, 10, 11, 12, 13, 14, 15);
  5808. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  5809. return __ret;
  5810. }
  5811. __ai int8x8_t __noswap_vget_high_s8(int8x16_t __p0) {
  5812. int8x8_t __ret;
  5813. __ret = __builtin_shufflevector(__p0, __p0, 8, 9, 10, 11, 12, 13, 14, 15);
  5814. return __ret;
  5815. }
  5816. #endif
  5817. #ifdef __LITTLE_ENDIAN__
  5818. __ai float32x2_t vget_high_f32(float32x4_t __p0) {
  5819. float32x2_t __ret;
  5820. __ret = __builtin_shufflevector(__p0, __p0, 2, 3);
  5821. return __ret;
  5822. }
  5823. #else
  5824. __ai float32x2_t vget_high_f32(float32x4_t __p0) {
  5825. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  5826. float32x2_t __ret;
  5827. __ret = __builtin_shufflevector(__rev0, __rev0, 2, 3);
  5828. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  5829. return __ret;
  5830. }
  5831. __ai float32x2_t __noswap_vget_high_f32(float32x4_t __p0) {
  5832. float32x2_t __ret;
  5833. __ret = __builtin_shufflevector(__p0, __p0, 2, 3);
  5834. return __ret;
  5835. }
  5836. #endif
  5837. #ifdef __LITTLE_ENDIAN__
  5838. __ai float16x4_t vget_high_f16(float16x8_t __p0) {
  5839. float16x4_t __ret;
  5840. __ret = __builtin_shufflevector(__p0, __p0, 4, 5, 6, 7);
  5841. return __ret;
  5842. }
  5843. #else
  5844. __ai float16x4_t vget_high_f16(float16x8_t __p0) {
  5845. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  5846. float16x4_t __ret;
  5847. __ret = __builtin_shufflevector(__rev0, __rev0, 4, 5, 6, 7);
  5848. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  5849. return __ret;
  5850. }
  5851. __ai float16x4_t __noswap_vget_high_f16(float16x8_t __p0) {
  5852. float16x4_t __ret;
  5853. __ret = __builtin_shufflevector(__p0, __p0, 4, 5, 6, 7);
  5854. return __ret;
  5855. }
  5856. #endif
  5857. #ifdef __LITTLE_ENDIAN__
  5858. __ai int32x2_t vget_high_s32(int32x4_t __p0) {
  5859. int32x2_t __ret;
  5860. __ret = __builtin_shufflevector(__p0, __p0, 2, 3);
  5861. return __ret;
  5862. }
  5863. #else
  5864. __ai int32x2_t vget_high_s32(int32x4_t __p0) {
  5865. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  5866. int32x2_t __ret;
  5867. __ret = __builtin_shufflevector(__rev0, __rev0, 2, 3);
  5868. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  5869. return __ret;
  5870. }
  5871. __ai int32x2_t __noswap_vget_high_s32(int32x4_t __p0) {
  5872. int32x2_t __ret;
  5873. __ret = __builtin_shufflevector(__p0, __p0, 2, 3);
  5874. return __ret;
  5875. }
  5876. #endif
  5877. #ifdef __LITTLE_ENDIAN__
  5878. __ai int64x1_t vget_high_s64(int64x2_t __p0) {
  5879. int64x1_t __ret;
  5880. __ret = __builtin_shufflevector(__p0, __p0, 1);
  5881. return __ret;
  5882. }
  5883. #else
  5884. __ai int64x1_t vget_high_s64(int64x2_t __p0) {
  5885. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  5886. int64x1_t __ret;
  5887. __ret = __builtin_shufflevector(__rev0, __rev0, 1);
  5888. return __ret;
  5889. }
  5890. #endif
  5891. #ifdef __LITTLE_ENDIAN__
  5892. __ai int16x4_t vget_high_s16(int16x8_t __p0) {
  5893. int16x4_t __ret;
  5894. __ret = __builtin_shufflevector(__p0, __p0, 4, 5, 6, 7);
  5895. return __ret;
  5896. }
  5897. #else
  5898. __ai int16x4_t vget_high_s16(int16x8_t __p0) {
  5899. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  5900. int16x4_t __ret;
  5901. __ret = __builtin_shufflevector(__rev0, __rev0, 4, 5, 6, 7);
  5902. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  5903. return __ret;
  5904. }
  5905. __ai int16x4_t __noswap_vget_high_s16(int16x8_t __p0) {
  5906. int16x4_t __ret;
  5907. __ret = __builtin_shufflevector(__p0, __p0, 4, 5, 6, 7);
  5908. return __ret;
  5909. }
  5910. #endif
  5911. #ifdef __LITTLE_ENDIAN__
  5912. #define vget_lane_p8(__p0, __p1) __extension__ ({ \
  5913. poly8x8_t __s0 = __p0; \
  5914. poly8_t __ret; \
  5915. __ret = (poly8_t) __builtin_neon_vget_lane_i8((int8x8_t)__s0, __p1); \
  5916. __ret; \
  5917. })
  5918. #else
  5919. #define vget_lane_p8(__p0, __p1) __extension__ ({ \
  5920. poly8x8_t __s0 = __p0; \
  5921. poly8x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  5922. poly8_t __ret; \
  5923. __ret = (poly8_t) __builtin_neon_vget_lane_i8((int8x8_t)__rev0, __p1); \
  5924. __ret; \
  5925. })
  5926. #define __noswap_vget_lane_p8(__p0, __p1) __extension__ ({ \
  5927. poly8x8_t __s0 = __p0; \
  5928. poly8_t __ret; \
  5929. __ret = (poly8_t) __builtin_neon_vget_lane_i8((int8x8_t)__s0, __p1); \
  5930. __ret; \
  5931. })
  5932. #endif
  5933. #ifdef __LITTLE_ENDIAN__
  5934. #define vget_lane_p16(__p0, __p1) __extension__ ({ \
  5935. poly16x4_t __s0 = __p0; \
  5936. poly16_t __ret; \
  5937. __ret = (poly16_t) __builtin_neon_vget_lane_i16((int8x8_t)__s0, __p1); \
  5938. __ret; \
  5939. })
  5940. #else
  5941. #define vget_lane_p16(__p0, __p1) __extension__ ({ \
  5942. poly16x4_t __s0 = __p0; \
  5943. poly16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  5944. poly16_t __ret; \
  5945. __ret = (poly16_t) __builtin_neon_vget_lane_i16((int8x8_t)__rev0, __p1); \
  5946. __ret; \
  5947. })
  5948. #define __noswap_vget_lane_p16(__p0, __p1) __extension__ ({ \
  5949. poly16x4_t __s0 = __p0; \
  5950. poly16_t __ret; \
  5951. __ret = (poly16_t) __builtin_neon_vget_lane_i16((int8x8_t)__s0, __p1); \
  5952. __ret; \
  5953. })
  5954. #endif
  5955. #ifdef __LITTLE_ENDIAN__
  5956. #define vgetq_lane_p8(__p0, __p1) __extension__ ({ \
  5957. poly8x16_t __s0 = __p0; \
  5958. poly8_t __ret; \
  5959. __ret = (poly8_t) __builtin_neon_vgetq_lane_i8((int8x16_t)__s0, __p1); \
  5960. __ret; \
  5961. })
  5962. #else
  5963. #define vgetq_lane_p8(__p0, __p1) __extension__ ({ \
  5964. poly8x16_t __s0 = __p0; \
  5965. poly8x16_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  5966. poly8_t __ret; \
  5967. __ret = (poly8_t) __builtin_neon_vgetq_lane_i8((int8x16_t)__rev0, __p1); \
  5968. __ret; \
  5969. })
  5970. #define __noswap_vgetq_lane_p8(__p0, __p1) __extension__ ({ \
  5971. poly8x16_t __s0 = __p0; \
  5972. poly8_t __ret; \
  5973. __ret = (poly8_t) __builtin_neon_vgetq_lane_i8((int8x16_t)__s0, __p1); \
  5974. __ret; \
  5975. })
  5976. #endif
  5977. #ifdef __LITTLE_ENDIAN__
  5978. #define vgetq_lane_p16(__p0, __p1) __extension__ ({ \
  5979. poly16x8_t __s0 = __p0; \
  5980. poly16_t __ret; \
  5981. __ret = (poly16_t) __builtin_neon_vgetq_lane_i16((int8x16_t)__s0, __p1); \
  5982. __ret; \
  5983. })
  5984. #else
  5985. #define vgetq_lane_p16(__p0, __p1) __extension__ ({ \
  5986. poly16x8_t __s0 = __p0; \
  5987. poly16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  5988. poly16_t __ret; \
  5989. __ret = (poly16_t) __builtin_neon_vgetq_lane_i16((int8x16_t)__rev0, __p1); \
  5990. __ret; \
  5991. })
  5992. #define __noswap_vgetq_lane_p16(__p0, __p1) __extension__ ({ \
  5993. poly16x8_t __s0 = __p0; \
  5994. poly16_t __ret; \
  5995. __ret = (poly16_t) __builtin_neon_vgetq_lane_i16((int8x16_t)__s0, __p1); \
  5996. __ret; \
  5997. })
  5998. #endif
  5999. #ifdef __LITTLE_ENDIAN__
  6000. #define vgetq_lane_u8(__p0, __p1) __extension__ ({ \
  6001. uint8x16_t __s0 = __p0; \
  6002. uint8_t __ret; \
  6003. __ret = (uint8_t) __builtin_neon_vgetq_lane_i8((int8x16_t)__s0, __p1); \
  6004. __ret; \
  6005. })
  6006. #else
  6007. #define vgetq_lane_u8(__p0, __p1) __extension__ ({ \
  6008. uint8x16_t __s0 = __p0; \
  6009. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  6010. uint8_t __ret; \
  6011. __ret = (uint8_t) __builtin_neon_vgetq_lane_i8((int8x16_t)__rev0, __p1); \
  6012. __ret; \
  6013. })
  6014. #define __noswap_vgetq_lane_u8(__p0, __p1) __extension__ ({ \
  6015. uint8x16_t __s0 = __p0; \
  6016. uint8_t __ret; \
  6017. __ret = (uint8_t) __builtin_neon_vgetq_lane_i8((int8x16_t)__s0, __p1); \
  6018. __ret; \
  6019. })
  6020. #endif
  6021. #ifdef __LITTLE_ENDIAN__
  6022. #define vgetq_lane_u32(__p0, __p1) __extension__ ({ \
  6023. uint32x4_t __s0 = __p0; \
  6024. uint32_t __ret; \
  6025. __ret = (uint32_t) __builtin_neon_vgetq_lane_i32((int8x16_t)__s0, __p1); \
  6026. __ret; \
  6027. })
  6028. #else
  6029. #define vgetq_lane_u32(__p0, __p1) __extension__ ({ \
  6030. uint32x4_t __s0 = __p0; \
  6031. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  6032. uint32_t __ret; \
  6033. __ret = (uint32_t) __builtin_neon_vgetq_lane_i32((int8x16_t)__rev0, __p1); \
  6034. __ret; \
  6035. })
  6036. #define __noswap_vgetq_lane_u32(__p0, __p1) __extension__ ({ \
  6037. uint32x4_t __s0 = __p0; \
  6038. uint32_t __ret; \
  6039. __ret = (uint32_t) __builtin_neon_vgetq_lane_i32((int8x16_t)__s0, __p1); \
  6040. __ret; \
  6041. })
  6042. #endif
  6043. #ifdef __LITTLE_ENDIAN__
  6044. #define vgetq_lane_u64(__p0, __p1) __extension__ ({ \
  6045. uint64x2_t __s0 = __p0; \
  6046. uint64_t __ret; \
  6047. __ret = (uint64_t) __builtin_neon_vgetq_lane_i64((int8x16_t)__s0, __p1); \
  6048. __ret; \
  6049. })
  6050. #else
  6051. #define vgetq_lane_u64(__p0, __p1) __extension__ ({ \
  6052. uint64x2_t __s0 = __p0; \
  6053. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  6054. uint64_t __ret; \
  6055. __ret = (uint64_t) __builtin_neon_vgetq_lane_i64((int8x16_t)__rev0, __p1); \
  6056. __ret; \
  6057. })
  6058. #define __noswap_vgetq_lane_u64(__p0, __p1) __extension__ ({ \
  6059. uint64x2_t __s0 = __p0; \
  6060. uint64_t __ret; \
  6061. __ret = (uint64_t) __builtin_neon_vgetq_lane_i64((int8x16_t)__s0, __p1); \
  6062. __ret; \
  6063. })
  6064. #endif
  6065. #ifdef __LITTLE_ENDIAN__
  6066. #define vgetq_lane_u16(__p0, __p1) __extension__ ({ \
  6067. uint16x8_t __s0 = __p0; \
  6068. uint16_t __ret; \
  6069. __ret = (uint16_t) __builtin_neon_vgetq_lane_i16((int8x16_t)__s0, __p1); \
  6070. __ret; \
  6071. })
  6072. #else
  6073. #define vgetq_lane_u16(__p0, __p1) __extension__ ({ \
  6074. uint16x8_t __s0 = __p0; \
  6075. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  6076. uint16_t __ret; \
  6077. __ret = (uint16_t) __builtin_neon_vgetq_lane_i16((int8x16_t)__rev0, __p1); \
  6078. __ret; \
  6079. })
  6080. #define __noswap_vgetq_lane_u16(__p0, __p1) __extension__ ({ \
  6081. uint16x8_t __s0 = __p0; \
  6082. uint16_t __ret; \
  6083. __ret = (uint16_t) __builtin_neon_vgetq_lane_i16((int8x16_t)__s0, __p1); \
  6084. __ret; \
  6085. })
  6086. #endif
  6087. #ifdef __LITTLE_ENDIAN__
  6088. #define vgetq_lane_s8(__p0, __p1) __extension__ ({ \
  6089. int8x16_t __s0 = __p0; \
  6090. int8_t __ret; \
  6091. __ret = (int8_t) __builtin_neon_vgetq_lane_i8((int8x16_t)__s0, __p1); \
  6092. __ret; \
  6093. })
  6094. #else
  6095. #define vgetq_lane_s8(__p0, __p1) __extension__ ({ \
  6096. int8x16_t __s0 = __p0; \
  6097. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  6098. int8_t __ret; \
  6099. __ret = (int8_t) __builtin_neon_vgetq_lane_i8((int8x16_t)__rev0, __p1); \
  6100. __ret; \
  6101. })
  6102. #define __noswap_vgetq_lane_s8(__p0, __p1) __extension__ ({ \
  6103. int8x16_t __s0 = __p0; \
  6104. int8_t __ret; \
  6105. __ret = (int8_t) __builtin_neon_vgetq_lane_i8((int8x16_t)__s0, __p1); \
  6106. __ret; \
  6107. })
  6108. #endif
  6109. #ifdef __LITTLE_ENDIAN__
  6110. #define vgetq_lane_f32(__p0, __p1) __extension__ ({ \
  6111. float32x4_t __s0 = __p0; \
  6112. float32_t __ret; \
  6113. __ret = (float32_t) __builtin_neon_vgetq_lane_f32((int8x16_t)__s0, __p1); \
  6114. __ret; \
  6115. })
  6116. #else
  6117. #define vgetq_lane_f32(__p0, __p1) __extension__ ({ \
  6118. float32x4_t __s0 = __p0; \
  6119. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  6120. float32_t __ret; \
  6121. __ret = (float32_t) __builtin_neon_vgetq_lane_f32((int8x16_t)__rev0, __p1); \
  6122. __ret; \
  6123. })
  6124. #define __noswap_vgetq_lane_f32(__p0, __p1) __extension__ ({ \
  6125. float32x4_t __s0 = __p0; \
  6126. float32_t __ret; \
  6127. __ret = (float32_t) __builtin_neon_vgetq_lane_f32((int8x16_t)__s0, __p1); \
  6128. __ret; \
  6129. })
  6130. #endif
  6131. #ifdef __LITTLE_ENDIAN__
  6132. #define vgetq_lane_s32(__p0, __p1) __extension__ ({ \
  6133. int32x4_t __s0 = __p0; \
  6134. int32_t __ret; \
  6135. __ret = (int32_t) __builtin_neon_vgetq_lane_i32((int8x16_t)__s0, __p1); \
  6136. __ret; \
  6137. })
  6138. #else
  6139. #define vgetq_lane_s32(__p0, __p1) __extension__ ({ \
  6140. int32x4_t __s0 = __p0; \
  6141. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  6142. int32_t __ret; \
  6143. __ret = (int32_t) __builtin_neon_vgetq_lane_i32((int8x16_t)__rev0, __p1); \
  6144. __ret; \
  6145. })
  6146. #define __noswap_vgetq_lane_s32(__p0, __p1) __extension__ ({ \
  6147. int32x4_t __s0 = __p0; \
  6148. int32_t __ret; \
  6149. __ret = (int32_t) __builtin_neon_vgetq_lane_i32((int8x16_t)__s0, __p1); \
  6150. __ret; \
  6151. })
  6152. #endif
  6153. #ifdef __LITTLE_ENDIAN__
  6154. #define vgetq_lane_s64(__p0, __p1) __extension__ ({ \
  6155. int64x2_t __s0 = __p0; \
  6156. int64_t __ret; \
  6157. __ret = (int64_t) __builtin_neon_vgetq_lane_i64((int8x16_t)__s0, __p1); \
  6158. __ret; \
  6159. })
  6160. #else
  6161. #define vgetq_lane_s64(__p0, __p1) __extension__ ({ \
  6162. int64x2_t __s0 = __p0; \
  6163. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  6164. int64_t __ret; \
  6165. __ret = (int64_t) __builtin_neon_vgetq_lane_i64((int8x16_t)__rev0, __p1); \
  6166. __ret; \
  6167. })
  6168. #define __noswap_vgetq_lane_s64(__p0, __p1) __extension__ ({ \
  6169. int64x2_t __s0 = __p0; \
  6170. int64_t __ret; \
  6171. __ret = (int64_t) __builtin_neon_vgetq_lane_i64((int8x16_t)__s0, __p1); \
  6172. __ret; \
  6173. })
  6174. #endif
  6175. #ifdef __LITTLE_ENDIAN__
  6176. #define vgetq_lane_s16(__p0, __p1) __extension__ ({ \
  6177. int16x8_t __s0 = __p0; \
  6178. int16_t __ret; \
  6179. __ret = (int16_t) __builtin_neon_vgetq_lane_i16((int8x16_t)__s0, __p1); \
  6180. __ret; \
  6181. })
  6182. #else
  6183. #define vgetq_lane_s16(__p0, __p1) __extension__ ({ \
  6184. int16x8_t __s0 = __p0; \
  6185. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  6186. int16_t __ret; \
  6187. __ret = (int16_t) __builtin_neon_vgetq_lane_i16((int8x16_t)__rev0, __p1); \
  6188. __ret; \
  6189. })
  6190. #define __noswap_vgetq_lane_s16(__p0, __p1) __extension__ ({ \
  6191. int16x8_t __s0 = __p0; \
  6192. int16_t __ret; \
  6193. __ret = (int16_t) __builtin_neon_vgetq_lane_i16((int8x16_t)__s0, __p1); \
  6194. __ret; \
  6195. })
  6196. #endif
  6197. #ifdef __LITTLE_ENDIAN__
  6198. #define vget_lane_u8(__p0, __p1) __extension__ ({ \
  6199. uint8x8_t __s0 = __p0; \
  6200. uint8_t __ret; \
  6201. __ret = (uint8_t) __builtin_neon_vget_lane_i8((int8x8_t)__s0, __p1); \
  6202. __ret; \
  6203. })
  6204. #else
  6205. #define vget_lane_u8(__p0, __p1) __extension__ ({ \
  6206. uint8x8_t __s0 = __p0; \
  6207. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  6208. uint8_t __ret; \
  6209. __ret = (uint8_t) __builtin_neon_vget_lane_i8((int8x8_t)__rev0, __p1); \
  6210. __ret; \
  6211. })
  6212. #define __noswap_vget_lane_u8(__p0, __p1) __extension__ ({ \
  6213. uint8x8_t __s0 = __p0; \
  6214. uint8_t __ret; \
  6215. __ret = (uint8_t) __builtin_neon_vget_lane_i8((int8x8_t)__s0, __p1); \
  6216. __ret; \
  6217. })
  6218. #endif
  6219. #ifdef __LITTLE_ENDIAN__
  6220. #define vget_lane_u32(__p0, __p1) __extension__ ({ \
  6221. uint32x2_t __s0 = __p0; \
  6222. uint32_t __ret; \
  6223. __ret = (uint32_t) __builtin_neon_vget_lane_i32((int8x8_t)__s0, __p1); \
  6224. __ret; \
  6225. })
  6226. #else
  6227. #define vget_lane_u32(__p0, __p1) __extension__ ({ \
  6228. uint32x2_t __s0 = __p0; \
  6229. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  6230. uint32_t __ret; \
  6231. __ret = (uint32_t) __builtin_neon_vget_lane_i32((int8x8_t)__rev0, __p1); \
  6232. __ret; \
  6233. })
  6234. #define __noswap_vget_lane_u32(__p0, __p1) __extension__ ({ \
  6235. uint32x2_t __s0 = __p0; \
  6236. uint32_t __ret; \
  6237. __ret = (uint32_t) __builtin_neon_vget_lane_i32((int8x8_t)__s0, __p1); \
  6238. __ret; \
  6239. })
  6240. #endif
  6241. #ifdef __LITTLE_ENDIAN__
  6242. #define vget_lane_u64(__p0, __p1) __extension__ ({ \
  6243. uint64x1_t __s0 = __p0; \
  6244. uint64_t __ret; \
  6245. __ret = (uint64_t) __builtin_neon_vget_lane_i64((int8x8_t)__s0, __p1); \
  6246. __ret; \
  6247. })
  6248. #else
  6249. #define vget_lane_u64(__p0, __p1) __extension__ ({ \
  6250. uint64x1_t __s0 = __p0; \
  6251. uint64_t __ret; \
  6252. __ret = (uint64_t) __builtin_neon_vget_lane_i64((int8x8_t)__s0, __p1); \
  6253. __ret; \
  6254. })
  6255. #define __noswap_vget_lane_u64(__p0, __p1) __extension__ ({ \
  6256. uint64x1_t __s0 = __p0; \
  6257. uint64_t __ret; \
  6258. __ret = (uint64_t) __builtin_neon_vget_lane_i64((int8x8_t)__s0, __p1); \
  6259. __ret; \
  6260. })
  6261. #endif
  6262. #ifdef __LITTLE_ENDIAN__
  6263. #define vget_lane_u16(__p0, __p1) __extension__ ({ \
  6264. uint16x4_t __s0 = __p0; \
  6265. uint16_t __ret; \
  6266. __ret = (uint16_t) __builtin_neon_vget_lane_i16((int8x8_t)__s0, __p1); \
  6267. __ret; \
  6268. })
  6269. #else
  6270. #define vget_lane_u16(__p0, __p1) __extension__ ({ \
  6271. uint16x4_t __s0 = __p0; \
  6272. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  6273. uint16_t __ret; \
  6274. __ret = (uint16_t) __builtin_neon_vget_lane_i16((int8x8_t)__rev0, __p1); \
  6275. __ret; \
  6276. })
  6277. #define __noswap_vget_lane_u16(__p0, __p1) __extension__ ({ \
  6278. uint16x4_t __s0 = __p0; \
  6279. uint16_t __ret; \
  6280. __ret = (uint16_t) __builtin_neon_vget_lane_i16((int8x8_t)__s0, __p1); \
  6281. __ret; \
  6282. })
  6283. #endif
  6284. #ifdef __LITTLE_ENDIAN__
  6285. #define vget_lane_s8(__p0, __p1) __extension__ ({ \
  6286. int8x8_t __s0 = __p0; \
  6287. int8_t __ret; \
  6288. __ret = (int8_t) __builtin_neon_vget_lane_i8((int8x8_t)__s0, __p1); \
  6289. __ret; \
  6290. })
  6291. #else
  6292. #define vget_lane_s8(__p0, __p1) __extension__ ({ \
  6293. int8x8_t __s0 = __p0; \
  6294. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  6295. int8_t __ret; \
  6296. __ret = (int8_t) __builtin_neon_vget_lane_i8((int8x8_t)__rev0, __p1); \
  6297. __ret; \
  6298. })
  6299. #define __noswap_vget_lane_s8(__p0, __p1) __extension__ ({ \
  6300. int8x8_t __s0 = __p0; \
  6301. int8_t __ret; \
  6302. __ret = (int8_t) __builtin_neon_vget_lane_i8((int8x8_t)__s0, __p1); \
  6303. __ret; \
  6304. })
  6305. #endif
  6306. #ifdef __LITTLE_ENDIAN__
  6307. #define vget_lane_f32(__p0, __p1) __extension__ ({ \
  6308. float32x2_t __s0 = __p0; \
  6309. float32_t __ret; \
  6310. __ret = (float32_t) __builtin_neon_vget_lane_f32((int8x8_t)__s0, __p1); \
  6311. __ret; \
  6312. })
  6313. #else
  6314. #define vget_lane_f32(__p0, __p1) __extension__ ({ \
  6315. float32x2_t __s0 = __p0; \
  6316. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  6317. float32_t __ret; \
  6318. __ret = (float32_t) __builtin_neon_vget_lane_f32((int8x8_t)__rev0, __p1); \
  6319. __ret; \
  6320. })
  6321. #define __noswap_vget_lane_f32(__p0, __p1) __extension__ ({ \
  6322. float32x2_t __s0 = __p0; \
  6323. float32_t __ret; \
  6324. __ret = (float32_t) __builtin_neon_vget_lane_f32((int8x8_t)__s0, __p1); \
  6325. __ret; \
  6326. })
  6327. #endif
  6328. #ifdef __LITTLE_ENDIAN__
  6329. #define vget_lane_s32(__p0, __p1) __extension__ ({ \
  6330. int32x2_t __s0 = __p0; \
  6331. int32_t __ret; \
  6332. __ret = (int32_t) __builtin_neon_vget_lane_i32((int8x8_t)__s0, __p1); \
  6333. __ret; \
  6334. })
  6335. #else
  6336. #define vget_lane_s32(__p0, __p1) __extension__ ({ \
  6337. int32x2_t __s0 = __p0; \
  6338. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  6339. int32_t __ret; \
  6340. __ret = (int32_t) __builtin_neon_vget_lane_i32((int8x8_t)__rev0, __p1); \
  6341. __ret; \
  6342. })
  6343. #define __noswap_vget_lane_s32(__p0, __p1) __extension__ ({ \
  6344. int32x2_t __s0 = __p0; \
  6345. int32_t __ret; \
  6346. __ret = (int32_t) __builtin_neon_vget_lane_i32((int8x8_t)__s0, __p1); \
  6347. __ret; \
  6348. })
  6349. #endif
  6350. #ifdef __LITTLE_ENDIAN__
  6351. #define vget_lane_s64(__p0, __p1) __extension__ ({ \
  6352. int64x1_t __s0 = __p0; \
  6353. int64_t __ret; \
  6354. __ret = (int64_t) __builtin_neon_vget_lane_i64((int8x8_t)__s0, __p1); \
  6355. __ret; \
  6356. })
  6357. #else
  6358. #define vget_lane_s64(__p0, __p1) __extension__ ({ \
  6359. int64x1_t __s0 = __p0; \
  6360. int64_t __ret; \
  6361. __ret = (int64_t) __builtin_neon_vget_lane_i64((int8x8_t)__s0, __p1); \
  6362. __ret; \
  6363. })
  6364. #define __noswap_vget_lane_s64(__p0, __p1) __extension__ ({ \
  6365. int64x1_t __s0 = __p0; \
  6366. int64_t __ret; \
  6367. __ret = (int64_t) __builtin_neon_vget_lane_i64((int8x8_t)__s0, __p1); \
  6368. __ret; \
  6369. })
  6370. #endif
  6371. #ifdef __LITTLE_ENDIAN__
  6372. #define vget_lane_s16(__p0, __p1) __extension__ ({ \
  6373. int16x4_t __s0 = __p0; \
  6374. int16_t __ret; \
  6375. __ret = (int16_t) __builtin_neon_vget_lane_i16((int8x8_t)__s0, __p1); \
  6376. __ret; \
  6377. })
  6378. #else
  6379. #define vget_lane_s16(__p0, __p1) __extension__ ({ \
  6380. int16x4_t __s0 = __p0; \
  6381. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  6382. int16_t __ret; \
  6383. __ret = (int16_t) __builtin_neon_vget_lane_i16((int8x8_t)__rev0, __p1); \
  6384. __ret; \
  6385. })
  6386. #define __noswap_vget_lane_s16(__p0, __p1) __extension__ ({ \
  6387. int16x4_t __s0 = __p0; \
  6388. int16_t __ret; \
  6389. __ret = (int16_t) __builtin_neon_vget_lane_i16((int8x8_t)__s0, __p1); \
  6390. __ret; \
  6391. })
  6392. #endif
  6393. #ifdef __LITTLE_ENDIAN__
  6394. __ai poly8x8_t vget_low_p8(poly8x16_t __p0) {
  6395. poly8x8_t __ret;
  6396. __ret = __builtin_shufflevector(__p0, __p0, 0, 1, 2, 3, 4, 5, 6, 7);
  6397. return __ret;
  6398. }
  6399. #else
  6400. __ai poly8x8_t vget_low_p8(poly8x16_t __p0) {
  6401. poly8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  6402. poly8x8_t __ret;
  6403. __ret = __builtin_shufflevector(__rev0, __rev0, 0, 1, 2, 3, 4, 5, 6, 7);
  6404. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  6405. return __ret;
  6406. }
  6407. #endif
  6408. #ifdef __LITTLE_ENDIAN__
  6409. __ai poly16x4_t vget_low_p16(poly16x8_t __p0) {
  6410. poly16x4_t __ret;
  6411. __ret = __builtin_shufflevector(__p0, __p0, 0, 1, 2, 3);
  6412. return __ret;
  6413. }
  6414. #else
  6415. __ai poly16x4_t vget_low_p16(poly16x8_t __p0) {
  6416. poly16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  6417. poly16x4_t __ret;
  6418. __ret = __builtin_shufflevector(__rev0, __rev0, 0, 1, 2, 3);
  6419. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  6420. return __ret;
  6421. }
  6422. #endif
  6423. #ifdef __LITTLE_ENDIAN__
  6424. __ai uint8x8_t vget_low_u8(uint8x16_t __p0) {
  6425. uint8x8_t __ret;
  6426. __ret = __builtin_shufflevector(__p0, __p0, 0, 1, 2, 3, 4, 5, 6, 7);
  6427. return __ret;
  6428. }
  6429. #else
  6430. __ai uint8x8_t vget_low_u8(uint8x16_t __p0) {
  6431. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  6432. uint8x8_t __ret;
  6433. __ret = __builtin_shufflevector(__rev0, __rev0, 0, 1, 2, 3, 4, 5, 6, 7);
  6434. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  6435. return __ret;
  6436. }
  6437. #endif
  6438. #ifdef __LITTLE_ENDIAN__
  6439. __ai uint32x2_t vget_low_u32(uint32x4_t __p0) {
  6440. uint32x2_t __ret;
  6441. __ret = __builtin_shufflevector(__p0, __p0, 0, 1);
  6442. return __ret;
  6443. }
  6444. #else
  6445. __ai uint32x2_t vget_low_u32(uint32x4_t __p0) {
  6446. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  6447. uint32x2_t __ret;
  6448. __ret = __builtin_shufflevector(__rev0, __rev0, 0, 1);
  6449. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  6450. return __ret;
  6451. }
  6452. #endif
  6453. #ifdef __LITTLE_ENDIAN__
  6454. __ai uint64x1_t vget_low_u64(uint64x2_t __p0) {
  6455. uint64x1_t __ret;
  6456. __ret = __builtin_shufflevector(__p0, __p0, 0);
  6457. return __ret;
  6458. }
  6459. #else
  6460. __ai uint64x1_t vget_low_u64(uint64x2_t __p0) {
  6461. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  6462. uint64x1_t __ret;
  6463. __ret = __builtin_shufflevector(__rev0, __rev0, 0);
  6464. return __ret;
  6465. }
  6466. #endif
  6467. #ifdef __LITTLE_ENDIAN__
  6468. __ai uint16x4_t vget_low_u16(uint16x8_t __p0) {
  6469. uint16x4_t __ret;
  6470. __ret = __builtin_shufflevector(__p0, __p0, 0, 1, 2, 3);
  6471. return __ret;
  6472. }
  6473. #else
  6474. __ai uint16x4_t vget_low_u16(uint16x8_t __p0) {
  6475. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  6476. uint16x4_t __ret;
  6477. __ret = __builtin_shufflevector(__rev0, __rev0, 0, 1, 2, 3);
  6478. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  6479. return __ret;
  6480. }
  6481. #endif
  6482. #ifdef __LITTLE_ENDIAN__
  6483. __ai int8x8_t vget_low_s8(int8x16_t __p0) {
  6484. int8x8_t __ret;
  6485. __ret = __builtin_shufflevector(__p0, __p0, 0, 1, 2, 3, 4, 5, 6, 7);
  6486. return __ret;
  6487. }
  6488. #else
  6489. __ai int8x8_t vget_low_s8(int8x16_t __p0) {
  6490. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  6491. int8x8_t __ret;
  6492. __ret = __builtin_shufflevector(__rev0, __rev0, 0, 1, 2, 3, 4, 5, 6, 7);
  6493. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  6494. return __ret;
  6495. }
  6496. #endif
  6497. #ifdef __LITTLE_ENDIAN__
  6498. __ai float32x2_t vget_low_f32(float32x4_t __p0) {
  6499. float32x2_t __ret;
  6500. __ret = __builtin_shufflevector(__p0, __p0, 0, 1);
  6501. return __ret;
  6502. }
  6503. #else
  6504. __ai float32x2_t vget_low_f32(float32x4_t __p0) {
  6505. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  6506. float32x2_t __ret;
  6507. __ret = __builtin_shufflevector(__rev0, __rev0, 0, 1);
  6508. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  6509. return __ret;
  6510. }
  6511. #endif
  6512. #ifdef __LITTLE_ENDIAN__
  6513. __ai float16x4_t vget_low_f16(float16x8_t __p0) {
  6514. float16x4_t __ret;
  6515. __ret = __builtin_shufflevector(__p0, __p0, 0, 1, 2, 3);
  6516. return __ret;
  6517. }
  6518. #else
  6519. __ai float16x4_t vget_low_f16(float16x8_t __p0) {
  6520. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  6521. float16x4_t __ret;
  6522. __ret = __builtin_shufflevector(__rev0, __rev0, 0, 1, 2, 3);
  6523. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  6524. return __ret;
  6525. }
  6526. #endif
  6527. #ifdef __LITTLE_ENDIAN__
  6528. __ai int32x2_t vget_low_s32(int32x4_t __p0) {
  6529. int32x2_t __ret;
  6530. __ret = __builtin_shufflevector(__p0, __p0, 0, 1);
  6531. return __ret;
  6532. }
  6533. #else
  6534. __ai int32x2_t vget_low_s32(int32x4_t __p0) {
  6535. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  6536. int32x2_t __ret;
  6537. __ret = __builtin_shufflevector(__rev0, __rev0, 0, 1);
  6538. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  6539. return __ret;
  6540. }
  6541. #endif
  6542. #ifdef __LITTLE_ENDIAN__
  6543. __ai int64x1_t vget_low_s64(int64x2_t __p0) {
  6544. int64x1_t __ret;
  6545. __ret = __builtin_shufflevector(__p0, __p0, 0);
  6546. return __ret;
  6547. }
  6548. #else
  6549. __ai int64x1_t vget_low_s64(int64x2_t __p0) {
  6550. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  6551. int64x1_t __ret;
  6552. __ret = __builtin_shufflevector(__rev0, __rev0, 0);
  6553. return __ret;
  6554. }
  6555. #endif
  6556. #ifdef __LITTLE_ENDIAN__
  6557. __ai int16x4_t vget_low_s16(int16x8_t __p0) {
  6558. int16x4_t __ret;
  6559. __ret = __builtin_shufflevector(__p0, __p0, 0, 1, 2, 3);
  6560. return __ret;
  6561. }
  6562. #else
  6563. __ai int16x4_t vget_low_s16(int16x8_t __p0) {
  6564. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  6565. int16x4_t __ret;
  6566. __ret = __builtin_shufflevector(__rev0, __rev0, 0, 1, 2, 3);
  6567. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  6568. return __ret;
  6569. }
  6570. #endif
  6571. #ifdef __LITTLE_ENDIAN__
  6572. __ai uint8x16_t vhaddq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  6573. uint8x16_t __ret;
  6574. __ret = (uint8x16_t) __builtin_neon_vhaddq_v((int8x16_t)__p0, (int8x16_t)__p1, 48);
  6575. return __ret;
  6576. }
  6577. #else
  6578. __ai uint8x16_t vhaddq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  6579. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  6580. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  6581. uint8x16_t __ret;
  6582. __ret = (uint8x16_t) __builtin_neon_vhaddq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 48);
  6583. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  6584. return __ret;
  6585. }
  6586. #endif
  6587. #ifdef __LITTLE_ENDIAN__
  6588. __ai uint32x4_t vhaddq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  6589. uint32x4_t __ret;
  6590. __ret = (uint32x4_t) __builtin_neon_vhaddq_v((int8x16_t)__p0, (int8x16_t)__p1, 50);
  6591. return __ret;
  6592. }
  6593. #else
  6594. __ai uint32x4_t vhaddq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  6595. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  6596. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  6597. uint32x4_t __ret;
  6598. __ret = (uint32x4_t) __builtin_neon_vhaddq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 50);
  6599. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  6600. return __ret;
  6601. }
  6602. #endif
  6603. #ifdef __LITTLE_ENDIAN__
  6604. __ai uint16x8_t vhaddq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  6605. uint16x8_t __ret;
  6606. __ret = (uint16x8_t) __builtin_neon_vhaddq_v((int8x16_t)__p0, (int8x16_t)__p1, 49);
  6607. return __ret;
  6608. }
  6609. #else
  6610. __ai uint16x8_t vhaddq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  6611. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  6612. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  6613. uint16x8_t __ret;
  6614. __ret = (uint16x8_t) __builtin_neon_vhaddq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 49);
  6615. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  6616. return __ret;
  6617. }
  6618. #endif
  6619. #ifdef __LITTLE_ENDIAN__
  6620. __ai int8x16_t vhaddq_s8(int8x16_t __p0, int8x16_t __p1) {
  6621. int8x16_t __ret;
  6622. __ret = (int8x16_t) __builtin_neon_vhaddq_v((int8x16_t)__p0, (int8x16_t)__p1, 32);
  6623. return __ret;
  6624. }
  6625. #else
  6626. __ai int8x16_t vhaddq_s8(int8x16_t __p0, int8x16_t __p1) {
  6627. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  6628. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  6629. int8x16_t __ret;
  6630. __ret = (int8x16_t) __builtin_neon_vhaddq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 32);
  6631. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  6632. return __ret;
  6633. }
  6634. #endif
  6635. #ifdef __LITTLE_ENDIAN__
  6636. __ai int32x4_t vhaddq_s32(int32x4_t __p0, int32x4_t __p1) {
  6637. int32x4_t __ret;
  6638. __ret = (int32x4_t) __builtin_neon_vhaddq_v((int8x16_t)__p0, (int8x16_t)__p1, 34);
  6639. return __ret;
  6640. }
  6641. #else
  6642. __ai int32x4_t vhaddq_s32(int32x4_t __p0, int32x4_t __p1) {
  6643. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  6644. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  6645. int32x4_t __ret;
  6646. __ret = (int32x4_t) __builtin_neon_vhaddq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 34);
  6647. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  6648. return __ret;
  6649. }
  6650. #endif
  6651. #ifdef __LITTLE_ENDIAN__
  6652. __ai int16x8_t vhaddq_s16(int16x8_t __p0, int16x8_t __p1) {
  6653. int16x8_t __ret;
  6654. __ret = (int16x8_t) __builtin_neon_vhaddq_v((int8x16_t)__p0, (int8x16_t)__p1, 33);
  6655. return __ret;
  6656. }
  6657. #else
  6658. __ai int16x8_t vhaddq_s16(int16x8_t __p0, int16x8_t __p1) {
  6659. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  6660. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  6661. int16x8_t __ret;
  6662. __ret = (int16x8_t) __builtin_neon_vhaddq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 33);
  6663. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  6664. return __ret;
  6665. }
  6666. #endif
  6667. #ifdef __LITTLE_ENDIAN__
  6668. __ai uint8x8_t vhadd_u8(uint8x8_t __p0, uint8x8_t __p1) {
  6669. uint8x8_t __ret;
  6670. __ret = (uint8x8_t) __builtin_neon_vhadd_v((int8x8_t)__p0, (int8x8_t)__p1, 16);
  6671. return __ret;
  6672. }
  6673. #else
  6674. __ai uint8x8_t vhadd_u8(uint8x8_t __p0, uint8x8_t __p1) {
  6675. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  6676. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  6677. uint8x8_t __ret;
  6678. __ret = (uint8x8_t) __builtin_neon_vhadd_v((int8x8_t)__rev0, (int8x8_t)__rev1, 16);
  6679. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  6680. return __ret;
  6681. }
  6682. #endif
  6683. #ifdef __LITTLE_ENDIAN__
  6684. __ai uint32x2_t vhadd_u32(uint32x2_t __p0, uint32x2_t __p1) {
  6685. uint32x2_t __ret;
  6686. __ret = (uint32x2_t) __builtin_neon_vhadd_v((int8x8_t)__p0, (int8x8_t)__p1, 18);
  6687. return __ret;
  6688. }
  6689. #else
  6690. __ai uint32x2_t vhadd_u32(uint32x2_t __p0, uint32x2_t __p1) {
  6691. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  6692. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  6693. uint32x2_t __ret;
  6694. __ret = (uint32x2_t) __builtin_neon_vhadd_v((int8x8_t)__rev0, (int8x8_t)__rev1, 18);
  6695. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  6696. return __ret;
  6697. }
  6698. #endif
  6699. #ifdef __LITTLE_ENDIAN__
  6700. __ai uint16x4_t vhadd_u16(uint16x4_t __p0, uint16x4_t __p1) {
  6701. uint16x4_t __ret;
  6702. __ret = (uint16x4_t) __builtin_neon_vhadd_v((int8x8_t)__p0, (int8x8_t)__p1, 17);
  6703. return __ret;
  6704. }
  6705. #else
  6706. __ai uint16x4_t vhadd_u16(uint16x4_t __p0, uint16x4_t __p1) {
  6707. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  6708. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  6709. uint16x4_t __ret;
  6710. __ret = (uint16x4_t) __builtin_neon_vhadd_v((int8x8_t)__rev0, (int8x8_t)__rev1, 17);
  6711. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  6712. return __ret;
  6713. }
  6714. #endif
  6715. #ifdef __LITTLE_ENDIAN__
  6716. __ai int8x8_t vhadd_s8(int8x8_t __p0, int8x8_t __p1) {
  6717. int8x8_t __ret;
  6718. __ret = (int8x8_t) __builtin_neon_vhadd_v((int8x8_t)__p0, (int8x8_t)__p1, 0);
  6719. return __ret;
  6720. }
  6721. #else
  6722. __ai int8x8_t vhadd_s8(int8x8_t __p0, int8x8_t __p1) {
  6723. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  6724. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  6725. int8x8_t __ret;
  6726. __ret = (int8x8_t) __builtin_neon_vhadd_v((int8x8_t)__rev0, (int8x8_t)__rev1, 0);
  6727. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  6728. return __ret;
  6729. }
  6730. #endif
  6731. #ifdef __LITTLE_ENDIAN__
  6732. __ai int32x2_t vhadd_s32(int32x2_t __p0, int32x2_t __p1) {
  6733. int32x2_t __ret;
  6734. __ret = (int32x2_t) __builtin_neon_vhadd_v((int8x8_t)__p0, (int8x8_t)__p1, 2);
  6735. return __ret;
  6736. }
  6737. #else
  6738. __ai int32x2_t vhadd_s32(int32x2_t __p0, int32x2_t __p1) {
  6739. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  6740. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  6741. int32x2_t __ret;
  6742. __ret = (int32x2_t) __builtin_neon_vhadd_v((int8x8_t)__rev0, (int8x8_t)__rev1, 2);
  6743. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  6744. return __ret;
  6745. }
  6746. #endif
  6747. #ifdef __LITTLE_ENDIAN__
  6748. __ai int16x4_t vhadd_s16(int16x4_t __p0, int16x4_t __p1) {
  6749. int16x4_t __ret;
  6750. __ret = (int16x4_t) __builtin_neon_vhadd_v((int8x8_t)__p0, (int8x8_t)__p1, 1);
  6751. return __ret;
  6752. }
  6753. #else
  6754. __ai int16x4_t vhadd_s16(int16x4_t __p0, int16x4_t __p1) {
  6755. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  6756. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  6757. int16x4_t __ret;
  6758. __ret = (int16x4_t) __builtin_neon_vhadd_v((int8x8_t)__rev0, (int8x8_t)__rev1, 1);
  6759. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  6760. return __ret;
  6761. }
  6762. #endif
  6763. #ifdef __LITTLE_ENDIAN__
  6764. __ai uint8x16_t vhsubq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  6765. uint8x16_t __ret;
  6766. __ret = (uint8x16_t) __builtin_neon_vhsubq_v((int8x16_t)__p0, (int8x16_t)__p1, 48);
  6767. return __ret;
  6768. }
  6769. #else
  6770. __ai uint8x16_t vhsubq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  6771. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  6772. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  6773. uint8x16_t __ret;
  6774. __ret = (uint8x16_t) __builtin_neon_vhsubq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 48);
  6775. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  6776. return __ret;
  6777. }
  6778. #endif
  6779. #ifdef __LITTLE_ENDIAN__
  6780. __ai uint32x4_t vhsubq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  6781. uint32x4_t __ret;
  6782. __ret = (uint32x4_t) __builtin_neon_vhsubq_v((int8x16_t)__p0, (int8x16_t)__p1, 50);
  6783. return __ret;
  6784. }
  6785. #else
  6786. __ai uint32x4_t vhsubq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  6787. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  6788. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  6789. uint32x4_t __ret;
  6790. __ret = (uint32x4_t) __builtin_neon_vhsubq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 50);
  6791. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  6792. return __ret;
  6793. }
  6794. #endif
  6795. #ifdef __LITTLE_ENDIAN__
  6796. __ai uint16x8_t vhsubq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  6797. uint16x8_t __ret;
  6798. __ret = (uint16x8_t) __builtin_neon_vhsubq_v((int8x16_t)__p0, (int8x16_t)__p1, 49);
  6799. return __ret;
  6800. }
  6801. #else
  6802. __ai uint16x8_t vhsubq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  6803. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  6804. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  6805. uint16x8_t __ret;
  6806. __ret = (uint16x8_t) __builtin_neon_vhsubq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 49);
  6807. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  6808. return __ret;
  6809. }
  6810. #endif
  6811. #ifdef __LITTLE_ENDIAN__
  6812. __ai int8x16_t vhsubq_s8(int8x16_t __p0, int8x16_t __p1) {
  6813. int8x16_t __ret;
  6814. __ret = (int8x16_t) __builtin_neon_vhsubq_v((int8x16_t)__p0, (int8x16_t)__p1, 32);
  6815. return __ret;
  6816. }
  6817. #else
  6818. __ai int8x16_t vhsubq_s8(int8x16_t __p0, int8x16_t __p1) {
  6819. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  6820. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  6821. int8x16_t __ret;
  6822. __ret = (int8x16_t) __builtin_neon_vhsubq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 32);
  6823. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  6824. return __ret;
  6825. }
  6826. #endif
  6827. #ifdef __LITTLE_ENDIAN__
  6828. __ai int32x4_t vhsubq_s32(int32x4_t __p0, int32x4_t __p1) {
  6829. int32x4_t __ret;
  6830. __ret = (int32x4_t) __builtin_neon_vhsubq_v((int8x16_t)__p0, (int8x16_t)__p1, 34);
  6831. return __ret;
  6832. }
  6833. #else
  6834. __ai int32x4_t vhsubq_s32(int32x4_t __p0, int32x4_t __p1) {
  6835. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  6836. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  6837. int32x4_t __ret;
  6838. __ret = (int32x4_t) __builtin_neon_vhsubq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 34);
  6839. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  6840. return __ret;
  6841. }
  6842. #endif
  6843. #ifdef __LITTLE_ENDIAN__
  6844. __ai int16x8_t vhsubq_s16(int16x8_t __p0, int16x8_t __p1) {
  6845. int16x8_t __ret;
  6846. __ret = (int16x8_t) __builtin_neon_vhsubq_v((int8x16_t)__p0, (int8x16_t)__p1, 33);
  6847. return __ret;
  6848. }
  6849. #else
  6850. __ai int16x8_t vhsubq_s16(int16x8_t __p0, int16x8_t __p1) {
  6851. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  6852. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  6853. int16x8_t __ret;
  6854. __ret = (int16x8_t) __builtin_neon_vhsubq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 33);
  6855. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  6856. return __ret;
  6857. }
  6858. #endif
  6859. #ifdef __LITTLE_ENDIAN__
  6860. __ai uint8x8_t vhsub_u8(uint8x8_t __p0, uint8x8_t __p1) {
  6861. uint8x8_t __ret;
  6862. __ret = (uint8x8_t) __builtin_neon_vhsub_v((int8x8_t)__p0, (int8x8_t)__p1, 16);
  6863. return __ret;
  6864. }
  6865. #else
  6866. __ai uint8x8_t vhsub_u8(uint8x8_t __p0, uint8x8_t __p1) {
  6867. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  6868. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  6869. uint8x8_t __ret;
  6870. __ret = (uint8x8_t) __builtin_neon_vhsub_v((int8x8_t)__rev0, (int8x8_t)__rev1, 16);
  6871. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  6872. return __ret;
  6873. }
  6874. #endif
  6875. #ifdef __LITTLE_ENDIAN__
  6876. __ai uint32x2_t vhsub_u32(uint32x2_t __p0, uint32x2_t __p1) {
  6877. uint32x2_t __ret;
  6878. __ret = (uint32x2_t) __builtin_neon_vhsub_v((int8x8_t)__p0, (int8x8_t)__p1, 18);
  6879. return __ret;
  6880. }
  6881. #else
  6882. __ai uint32x2_t vhsub_u32(uint32x2_t __p0, uint32x2_t __p1) {
  6883. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  6884. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  6885. uint32x2_t __ret;
  6886. __ret = (uint32x2_t) __builtin_neon_vhsub_v((int8x8_t)__rev0, (int8x8_t)__rev1, 18);
  6887. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  6888. return __ret;
  6889. }
  6890. #endif
  6891. #ifdef __LITTLE_ENDIAN__
  6892. __ai uint16x4_t vhsub_u16(uint16x4_t __p0, uint16x4_t __p1) {
  6893. uint16x4_t __ret;
  6894. __ret = (uint16x4_t) __builtin_neon_vhsub_v((int8x8_t)__p0, (int8x8_t)__p1, 17);
  6895. return __ret;
  6896. }
  6897. #else
  6898. __ai uint16x4_t vhsub_u16(uint16x4_t __p0, uint16x4_t __p1) {
  6899. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  6900. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  6901. uint16x4_t __ret;
  6902. __ret = (uint16x4_t) __builtin_neon_vhsub_v((int8x8_t)__rev0, (int8x8_t)__rev1, 17);
  6903. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  6904. return __ret;
  6905. }
  6906. #endif
  6907. #ifdef __LITTLE_ENDIAN__
  6908. __ai int8x8_t vhsub_s8(int8x8_t __p0, int8x8_t __p1) {
  6909. int8x8_t __ret;
  6910. __ret = (int8x8_t) __builtin_neon_vhsub_v((int8x8_t)__p0, (int8x8_t)__p1, 0);
  6911. return __ret;
  6912. }
  6913. #else
  6914. __ai int8x8_t vhsub_s8(int8x8_t __p0, int8x8_t __p1) {
  6915. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  6916. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  6917. int8x8_t __ret;
  6918. __ret = (int8x8_t) __builtin_neon_vhsub_v((int8x8_t)__rev0, (int8x8_t)__rev1, 0);
  6919. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  6920. return __ret;
  6921. }
  6922. #endif
  6923. #ifdef __LITTLE_ENDIAN__
  6924. __ai int32x2_t vhsub_s32(int32x2_t __p0, int32x2_t __p1) {
  6925. int32x2_t __ret;
  6926. __ret = (int32x2_t) __builtin_neon_vhsub_v((int8x8_t)__p0, (int8x8_t)__p1, 2);
  6927. return __ret;
  6928. }
  6929. #else
  6930. __ai int32x2_t vhsub_s32(int32x2_t __p0, int32x2_t __p1) {
  6931. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  6932. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  6933. int32x2_t __ret;
  6934. __ret = (int32x2_t) __builtin_neon_vhsub_v((int8x8_t)__rev0, (int8x8_t)__rev1, 2);
  6935. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  6936. return __ret;
  6937. }
  6938. #endif
  6939. #ifdef __LITTLE_ENDIAN__
  6940. __ai int16x4_t vhsub_s16(int16x4_t __p0, int16x4_t __p1) {
  6941. int16x4_t __ret;
  6942. __ret = (int16x4_t) __builtin_neon_vhsub_v((int8x8_t)__p0, (int8x8_t)__p1, 1);
  6943. return __ret;
  6944. }
  6945. #else
  6946. __ai int16x4_t vhsub_s16(int16x4_t __p0, int16x4_t __p1) {
  6947. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  6948. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  6949. int16x4_t __ret;
  6950. __ret = (int16x4_t) __builtin_neon_vhsub_v((int8x8_t)__rev0, (int8x8_t)__rev1, 1);
  6951. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  6952. return __ret;
  6953. }
  6954. #endif
  6955. #ifdef __LITTLE_ENDIAN__
  6956. #define vld1_p8(__p0) __extension__ ({ \
  6957. poly8x8_t __ret; \
  6958. __ret = (poly8x8_t) __builtin_neon_vld1_v(__p0, 4); \
  6959. __ret; \
  6960. })
  6961. #else
  6962. #define vld1_p8(__p0) __extension__ ({ \
  6963. poly8x8_t __ret; \
  6964. __ret = (poly8x8_t) __builtin_neon_vld1_v(__p0, 4); \
  6965. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  6966. __ret; \
  6967. })
  6968. #endif
  6969. #ifdef __LITTLE_ENDIAN__
  6970. #define vld1_p16(__p0) __extension__ ({ \
  6971. poly16x4_t __ret; \
  6972. __ret = (poly16x4_t) __builtin_neon_vld1_v(__p0, 5); \
  6973. __ret; \
  6974. })
  6975. #else
  6976. #define vld1_p16(__p0) __extension__ ({ \
  6977. poly16x4_t __ret; \
  6978. __ret = (poly16x4_t) __builtin_neon_vld1_v(__p0, 5); \
  6979. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  6980. __ret; \
  6981. })
  6982. #endif
  6983. #ifdef __LITTLE_ENDIAN__
  6984. #define vld1q_p8(__p0) __extension__ ({ \
  6985. poly8x16_t __ret; \
  6986. __ret = (poly8x16_t) __builtin_neon_vld1q_v(__p0, 36); \
  6987. __ret; \
  6988. })
  6989. #else
  6990. #define vld1q_p8(__p0) __extension__ ({ \
  6991. poly8x16_t __ret; \
  6992. __ret = (poly8x16_t) __builtin_neon_vld1q_v(__p0, 36); \
  6993. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  6994. __ret; \
  6995. })
  6996. #endif
  6997. #ifdef __LITTLE_ENDIAN__
  6998. #define vld1q_p16(__p0) __extension__ ({ \
  6999. poly16x8_t __ret; \
  7000. __ret = (poly16x8_t) __builtin_neon_vld1q_v(__p0, 37); \
  7001. __ret; \
  7002. })
  7003. #else
  7004. #define vld1q_p16(__p0) __extension__ ({ \
  7005. poly16x8_t __ret; \
  7006. __ret = (poly16x8_t) __builtin_neon_vld1q_v(__p0, 37); \
  7007. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  7008. __ret; \
  7009. })
  7010. #endif
  7011. #ifdef __LITTLE_ENDIAN__
  7012. #define vld1q_u8(__p0) __extension__ ({ \
  7013. uint8x16_t __ret; \
  7014. __ret = (uint8x16_t) __builtin_neon_vld1q_v(__p0, 48); \
  7015. __ret; \
  7016. })
  7017. #else
  7018. #define vld1q_u8(__p0) __extension__ ({ \
  7019. uint8x16_t __ret; \
  7020. __ret = (uint8x16_t) __builtin_neon_vld1q_v(__p0, 48); \
  7021. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  7022. __ret; \
  7023. })
  7024. #endif
  7025. #ifdef __LITTLE_ENDIAN__
  7026. #define vld1q_u32(__p0) __extension__ ({ \
  7027. uint32x4_t __ret; \
  7028. __ret = (uint32x4_t) __builtin_neon_vld1q_v(__p0, 50); \
  7029. __ret; \
  7030. })
  7031. #else
  7032. #define vld1q_u32(__p0) __extension__ ({ \
  7033. uint32x4_t __ret; \
  7034. __ret = (uint32x4_t) __builtin_neon_vld1q_v(__p0, 50); \
  7035. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  7036. __ret; \
  7037. })
  7038. #endif
  7039. #ifdef __LITTLE_ENDIAN__
  7040. #define vld1q_u64(__p0) __extension__ ({ \
  7041. uint64x2_t __ret; \
  7042. __ret = (uint64x2_t) __builtin_neon_vld1q_v(__p0, 51); \
  7043. __ret; \
  7044. })
  7045. #else
  7046. #define vld1q_u64(__p0) __extension__ ({ \
  7047. uint64x2_t __ret; \
  7048. __ret = (uint64x2_t) __builtin_neon_vld1q_v(__p0, 51); \
  7049. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  7050. __ret; \
  7051. })
  7052. #endif
  7053. #ifdef __LITTLE_ENDIAN__
  7054. #define vld1q_u16(__p0) __extension__ ({ \
  7055. uint16x8_t __ret; \
  7056. __ret = (uint16x8_t) __builtin_neon_vld1q_v(__p0, 49); \
  7057. __ret; \
  7058. })
  7059. #else
  7060. #define vld1q_u16(__p0) __extension__ ({ \
  7061. uint16x8_t __ret; \
  7062. __ret = (uint16x8_t) __builtin_neon_vld1q_v(__p0, 49); \
  7063. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  7064. __ret; \
  7065. })
  7066. #endif
  7067. #ifdef __LITTLE_ENDIAN__
  7068. #define vld1q_s8(__p0) __extension__ ({ \
  7069. int8x16_t __ret; \
  7070. __ret = (int8x16_t) __builtin_neon_vld1q_v(__p0, 32); \
  7071. __ret; \
  7072. })
  7073. #else
  7074. #define vld1q_s8(__p0) __extension__ ({ \
  7075. int8x16_t __ret; \
  7076. __ret = (int8x16_t) __builtin_neon_vld1q_v(__p0, 32); \
  7077. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  7078. __ret; \
  7079. })
  7080. #endif
  7081. #ifdef __LITTLE_ENDIAN__
  7082. #define vld1q_f32(__p0) __extension__ ({ \
  7083. float32x4_t __ret; \
  7084. __ret = (float32x4_t) __builtin_neon_vld1q_v(__p0, 41); \
  7085. __ret; \
  7086. })
  7087. #else
  7088. #define vld1q_f32(__p0) __extension__ ({ \
  7089. float32x4_t __ret; \
  7090. __ret = (float32x4_t) __builtin_neon_vld1q_v(__p0, 41); \
  7091. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  7092. __ret; \
  7093. })
  7094. #endif
  7095. #ifdef __LITTLE_ENDIAN__
  7096. #define vld1q_s32(__p0) __extension__ ({ \
  7097. int32x4_t __ret; \
  7098. __ret = (int32x4_t) __builtin_neon_vld1q_v(__p0, 34); \
  7099. __ret; \
  7100. })
  7101. #else
  7102. #define vld1q_s32(__p0) __extension__ ({ \
  7103. int32x4_t __ret; \
  7104. __ret = (int32x4_t) __builtin_neon_vld1q_v(__p0, 34); \
  7105. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  7106. __ret; \
  7107. })
  7108. #endif
  7109. #ifdef __LITTLE_ENDIAN__
  7110. #define vld1q_s64(__p0) __extension__ ({ \
  7111. int64x2_t __ret; \
  7112. __ret = (int64x2_t) __builtin_neon_vld1q_v(__p0, 35); \
  7113. __ret; \
  7114. })
  7115. #else
  7116. #define vld1q_s64(__p0) __extension__ ({ \
  7117. int64x2_t __ret; \
  7118. __ret = (int64x2_t) __builtin_neon_vld1q_v(__p0, 35); \
  7119. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  7120. __ret; \
  7121. })
  7122. #endif
  7123. #ifdef __LITTLE_ENDIAN__
  7124. #define vld1q_s16(__p0) __extension__ ({ \
  7125. int16x8_t __ret; \
  7126. __ret = (int16x8_t) __builtin_neon_vld1q_v(__p0, 33); \
  7127. __ret; \
  7128. })
  7129. #else
  7130. #define vld1q_s16(__p0) __extension__ ({ \
  7131. int16x8_t __ret; \
  7132. __ret = (int16x8_t) __builtin_neon_vld1q_v(__p0, 33); \
  7133. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  7134. __ret; \
  7135. })
  7136. #endif
  7137. #ifdef __LITTLE_ENDIAN__
  7138. #define vld1_u8(__p0) __extension__ ({ \
  7139. uint8x8_t __ret; \
  7140. __ret = (uint8x8_t) __builtin_neon_vld1_v(__p0, 16); \
  7141. __ret; \
  7142. })
  7143. #else
  7144. #define vld1_u8(__p0) __extension__ ({ \
  7145. uint8x8_t __ret; \
  7146. __ret = (uint8x8_t) __builtin_neon_vld1_v(__p0, 16); \
  7147. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  7148. __ret; \
  7149. })
  7150. #endif
  7151. #ifdef __LITTLE_ENDIAN__
  7152. #define vld1_u32(__p0) __extension__ ({ \
  7153. uint32x2_t __ret; \
  7154. __ret = (uint32x2_t) __builtin_neon_vld1_v(__p0, 18); \
  7155. __ret; \
  7156. })
  7157. #else
  7158. #define vld1_u32(__p0) __extension__ ({ \
  7159. uint32x2_t __ret; \
  7160. __ret = (uint32x2_t) __builtin_neon_vld1_v(__p0, 18); \
  7161. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  7162. __ret; \
  7163. })
  7164. #endif
  7165. #ifdef __LITTLE_ENDIAN__
  7166. #define vld1_u64(__p0) __extension__ ({ \
  7167. uint64x1_t __ret; \
  7168. __ret = (uint64x1_t) __builtin_neon_vld1_v(__p0, 19); \
  7169. __ret; \
  7170. })
  7171. #else
  7172. #define vld1_u64(__p0) __extension__ ({ \
  7173. uint64x1_t __ret; \
  7174. __ret = (uint64x1_t) __builtin_neon_vld1_v(__p0, 19); \
  7175. __ret; \
  7176. })
  7177. #endif
  7178. #ifdef __LITTLE_ENDIAN__
  7179. #define vld1_u16(__p0) __extension__ ({ \
  7180. uint16x4_t __ret; \
  7181. __ret = (uint16x4_t) __builtin_neon_vld1_v(__p0, 17); \
  7182. __ret; \
  7183. })
  7184. #else
  7185. #define vld1_u16(__p0) __extension__ ({ \
  7186. uint16x4_t __ret; \
  7187. __ret = (uint16x4_t) __builtin_neon_vld1_v(__p0, 17); \
  7188. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  7189. __ret; \
  7190. })
  7191. #endif
  7192. #ifdef __LITTLE_ENDIAN__
  7193. #define vld1_s8(__p0) __extension__ ({ \
  7194. int8x8_t __ret; \
  7195. __ret = (int8x8_t) __builtin_neon_vld1_v(__p0, 0); \
  7196. __ret; \
  7197. })
  7198. #else
  7199. #define vld1_s8(__p0) __extension__ ({ \
  7200. int8x8_t __ret; \
  7201. __ret = (int8x8_t) __builtin_neon_vld1_v(__p0, 0); \
  7202. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  7203. __ret; \
  7204. })
  7205. #endif
  7206. #ifdef __LITTLE_ENDIAN__
  7207. #define vld1_f32(__p0) __extension__ ({ \
  7208. float32x2_t __ret; \
  7209. __ret = (float32x2_t) __builtin_neon_vld1_v(__p0, 9); \
  7210. __ret; \
  7211. })
  7212. #else
  7213. #define vld1_f32(__p0) __extension__ ({ \
  7214. float32x2_t __ret; \
  7215. __ret = (float32x2_t) __builtin_neon_vld1_v(__p0, 9); \
  7216. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  7217. __ret; \
  7218. })
  7219. #endif
  7220. #ifdef __LITTLE_ENDIAN__
  7221. #define vld1_s32(__p0) __extension__ ({ \
  7222. int32x2_t __ret; \
  7223. __ret = (int32x2_t) __builtin_neon_vld1_v(__p0, 2); \
  7224. __ret; \
  7225. })
  7226. #else
  7227. #define vld1_s32(__p0) __extension__ ({ \
  7228. int32x2_t __ret; \
  7229. __ret = (int32x2_t) __builtin_neon_vld1_v(__p0, 2); \
  7230. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  7231. __ret; \
  7232. })
  7233. #endif
  7234. #ifdef __LITTLE_ENDIAN__
  7235. #define vld1_s64(__p0) __extension__ ({ \
  7236. int64x1_t __ret; \
  7237. __ret = (int64x1_t) __builtin_neon_vld1_v(__p0, 3); \
  7238. __ret; \
  7239. })
  7240. #else
  7241. #define vld1_s64(__p0) __extension__ ({ \
  7242. int64x1_t __ret; \
  7243. __ret = (int64x1_t) __builtin_neon_vld1_v(__p0, 3); \
  7244. __ret; \
  7245. })
  7246. #endif
  7247. #ifdef __LITTLE_ENDIAN__
  7248. #define vld1_s16(__p0) __extension__ ({ \
  7249. int16x4_t __ret; \
  7250. __ret = (int16x4_t) __builtin_neon_vld1_v(__p0, 1); \
  7251. __ret; \
  7252. })
  7253. #else
  7254. #define vld1_s16(__p0) __extension__ ({ \
  7255. int16x4_t __ret; \
  7256. __ret = (int16x4_t) __builtin_neon_vld1_v(__p0, 1); \
  7257. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  7258. __ret; \
  7259. })
  7260. #endif
  7261. #ifdef __LITTLE_ENDIAN__
  7262. #define vld1_dup_p8(__p0) __extension__ ({ \
  7263. poly8x8_t __ret; \
  7264. __ret = (poly8x8_t) __builtin_neon_vld1_dup_v(__p0, 4); \
  7265. __ret; \
  7266. })
  7267. #else
  7268. #define vld1_dup_p8(__p0) __extension__ ({ \
  7269. poly8x8_t __ret; \
  7270. __ret = (poly8x8_t) __builtin_neon_vld1_dup_v(__p0, 4); \
  7271. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  7272. __ret; \
  7273. })
  7274. #endif
  7275. #ifdef __LITTLE_ENDIAN__
  7276. #define vld1_dup_p16(__p0) __extension__ ({ \
  7277. poly16x4_t __ret; \
  7278. __ret = (poly16x4_t) __builtin_neon_vld1_dup_v(__p0, 5); \
  7279. __ret; \
  7280. })
  7281. #else
  7282. #define vld1_dup_p16(__p0) __extension__ ({ \
  7283. poly16x4_t __ret; \
  7284. __ret = (poly16x4_t) __builtin_neon_vld1_dup_v(__p0, 5); \
  7285. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  7286. __ret; \
  7287. })
  7288. #endif
  7289. #ifdef __LITTLE_ENDIAN__
  7290. #define vld1q_dup_p8(__p0) __extension__ ({ \
  7291. poly8x16_t __ret; \
  7292. __ret = (poly8x16_t) __builtin_neon_vld1q_dup_v(__p0, 36); \
  7293. __ret; \
  7294. })
  7295. #else
  7296. #define vld1q_dup_p8(__p0) __extension__ ({ \
  7297. poly8x16_t __ret; \
  7298. __ret = (poly8x16_t) __builtin_neon_vld1q_dup_v(__p0, 36); \
  7299. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  7300. __ret; \
  7301. })
  7302. #endif
  7303. #ifdef __LITTLE_ENDIAN__
  7304. #define vld1q_dup_p16(__p0) __extension__ ({ \
  7305. poly16x8_t __ret; \
  7306. __ret = (poly16x8_t) __builtin_neon_vld1q_dup_v(__p0, 37); \
  7307. __ret; \
  7308. })
  7309. #else
  7310. #define vld1q_dup_p16(__p0) __extension__ ({ \
  7311. poly16x8_t __ret; \
  7312. __ret = (poly16x8_t) __builtin_neon_vld1q_dup_v(__p0, 37); \
  7313. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  7314. __ret; \
  7315. })
  7316. #endif
  7317. #ifdef __LITTLE_ENDIAN__
  7318. #define vld1q_dup_u8(__p0) __extension__ ({ \
  7319. uint8x16_t __ret; \
  7320. __ret = (uint8x16_t) __builtin_neon_vld1q_dup_v(__p0, 48); \
  7321. __ret; \
  7322. })
  7323. #else
  7324. #define vld1q_dup_u8(__p0) __extension__ ({ \
  7325. uint8x16_t __ret; \
  7326. __ret = (uint8x16_t) __builtin_neon_vld1q_dup_v(__p0, 48); \
  7327. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  7328. __ret; \
  7329. })
  7330. #endif
  7331. #ifdef __LITTLE_ENDIAN__
  7332. #define vld1q_dup_u32(__p0) __extension__ ({ \
  7333. uint32x4_t __ret; \
  7334. __ret = (uint32x4_t) __builtin_neon_vld1q_dup_v(__p0, 50); \
  7335. __ret; \
  7336. })
  7337. #else
  7338. #define vld1q_dup_u32(__p0) __extension__ ({ \
  7339. uint32x4_t __ret; \
  7340. __ret = (uint32x4_t) __builtin_neon_vld1q_dup_v(__p0, 50); \
  7341. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  7342. __ret; \
  7343. })
  7344. #endif
  7345. #ifdef __LITTLE_ENDIAN__
  7346. #define vld1q_dup_u64(__p0) __extension__ ({ \
  7347. uint64x2_t __ret; \
  7348. __ret = (uint64x2_t) __builtin_neon_vld1q_dup_v(__p0, 51); \
  7349. __ret; \
  7350. })
  7351. #else
  7352. #define vld1q_dup_u64(__p0) __extension__ ({ \
  7353. uint64x2_t __ret; \
  7354. __ret = (uint64x2_t) __builtin_neon_vld1q_dup_v(__p0, 51); \
  7355. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  7356. __ret; \
  7357. })
  7358. #endif
  7359. #ifdef __LITTLE_ENDIAN__
  7360. #define vld1q_dup_u16(__p0) __extension__ ({ \
  7361. uint16x8_t __ret; \
  7362. __ret = (uint16x8_t) __builtin_neon_vld1q_dup_v(__p0, 49); \
  7363. __ret; \
  7364. })
  7365. #else
  7366. #define vld1q_dup_u16(__p0) __extension__ ({ \
  7367. uint16x8_t __ret; \
  7368. __ret = (uint16x8_t) __builtin_neon_vld1q_dup_v(__p0, 49); \
  7369. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  7370. __ret; \
  7371. })
  7372. #endif
  7373. #ifdef __LITTLE_ENDIAN__
  7374. #define vld1q_dup_s8(__p0) __extension__ ({ \
  7375. int8x16_t __ret; \
  7376. __ret = (int8x16_t) __builtin_neon_vld1q_dup_v(__p0, 32); \
  7377. __ret; \
  7378. })
  7379. #else
  7380. #define vld1q_dup_s8(__p0) __extension__ ({ \
  7381. int8x16_t __ret; \
  7382. __ret = (int8x16_t) __builtin_neon_vld1q_dup_v(__p0, 32); \
  7383. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  7384. __ret; \
  7385. })
  7386. #endif
  7387. #ifdef __LITTLE_ENDIAN__
  7388. #define vld1q_dup_f32(__p0) __extension__ ({ \
  7389. float32x4_t __ret; \
  7390. __ret = (float32x4_t) __builtin_neon_vld1q_dup_v(__p0, 41); \
  7391. __ret; \
  7392. })
  7393. #else
  7394. #define vld1q_dup_f32(__p0) __extension__ ({ \
  7395. float32x4_t __ret; \
  7396. __ret = (float32x4_t) __builtin_neon_vld1q_dup_v(__p0, 41); \
  7397. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  7398. __ret; \
  7399. })
  7400. #endif
  7401. #ifdef __LITTLE_ENDIAN__
  7402. #define vld1q_dup_s32(__p0) __extension__ ({ \
  7403. int32x4_t __ret; \
  7404. __ret = (int32x4_t) __builtin_neon_vld1q_dup_v(__p0, 34); \
  7405. __ret; \
  7406. })
  7407. #else
  7408. #define vld1q_dup_s32(__p0) __extension__ ({ \
  7409. int32x4_t __ret; \
  7410. __ret = (int32x4_t) __builtin_neon_vld1q_dup_v(__p0, 34); \
  7411. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  7412. __ret; \
  7413. })
  7414. #endif
  7415. #ifdef __LITTLE_ENDIAN__
  7416. #define vld1q_dup_s64(__p0) __extension__ ({ \
  7417. int64x2_t __ret; \
  7418. __ret = (int64x2_t) __builtin_neon_vld1q_dup_v(__p0, 35); \
  7419. __ret; \
  7420. })
  7421. #else
  7422. #define vld1q_dup_s64(__p0) __extension__ ({ \
  7423. int64x2_t __ret; \
  7424. __ret = (int64x2_t) __builtin_neon_vld1q_dup_v(__p0, 35); \
  7425. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  7426. __ret; \
  7427. })
  7428. #endif
  7429. #ifdef __LITTLE_ENDIAN__
  7430. #define vld1q_dup_s16(__p0) __extension__ ({ \
  7431. int16x8_t __ret; \
  7432. __ret = (int16x8_t) __builtin_neon_vld1q_dup_v(__p0, 33); \
  7433. __ret; \
  7434. })
  7435. #else
  7436. #define vld1q_dup_s16(__p0) __extension__ ({ \
  7437. int16x8_t __ret; \
  7438. __ret = (int16x8_t) __builtin_neon_vld1q_dup_v(__p0, 33); \
  7439. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  7440. __ret; \
  7441. })
  7442. #endif
  7443. #ifdef __LITTLE_ENDIAN__
  7444. #define vld1_dup_u8(__p0) __extension__ ({ \
  7445. uint8x8_t __ret; \
  7446. __ret = (uint8x8_t) __builtin_neon_vld1_dup_v(__p0, 16); \
  7447. __ret; \
  7448. })
  7449. #else
  7450. #define vld1_dup_u8(__p0) __extension__ ({ \
  7451. uint8x8_t __ret; \
  7452. __ret = (uint8x8_t) __builtin_neon_vld1_dup_v(__p0, 16); \
  7453. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  7454. __ret; \
  7455. })
  7456. #endif
  7457. #ifdef __LITTLE_ENDIAN__
  7458. #define vld1_dup_u32(__p0) __extension__ ({ \
  7459. uint32x2_t __ret; \
  7460. __ret = (uint32x2_t) __builtin_neon_vld1_dup_v(__p0, 18); \
  7461. __ret; \
  7462. })
  7463. #else
  7464. #define vld1_dup_u32(__p0) __extension__ ({ \
  7465. uint32x2_t __ret; \
  7466. __ret = (uint32x2_t) __builtin_neon_vld1_dup_v(__p0, 18); \
  7467. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  7468. __ret; \
  7469. })
  7470. #endif
  7471. #ifdef __LITTLE_ENDIAN__
  7472. #define vld1_dup_u64(__p0) __extension__ ({ \
  7473. uint64x1_t __ret; \
  7474. __ret = (uint64x1_t) __builtin_neon_vld1_dup_v(__p0, 19); \
  7475. __ret; \
  7476. })
  7477. #else
  7478. #define vld1_dup_u64(__p0) __extension__ ({ \
  7479. uint64x1_t __ret; \
  7480. __ret = (uint64x1_t) __builtin_neon_vld1_dup_v(__p0, 19); \
  7481. __ret; \
  7482. })
  7483. #endif
  7484. #ifdef __LITTLE_ENDIAN__
  7485. #define vld1_dup_u16(__p0) __extension__ ({ \
  7486. uint16x4_t __ret; \
  7487. __ret = (uint16x4_t) __builtin_neon_vld1_dup_v(__p0, 17); \
  7488. __ret; \
  7489. })
  7490. #else
  7491. #define vld1_dup_u16(__p0) __extension__ ({ \
  7492. uint16x4_t __ret; \
  7493. __ret = (uint16x4_t) __builtin_neon_vld1_dup_v(__p0, 17); \
  7494. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  7495. __ret; \
  7496. })
  7497. #endif
  7498. #ifdef __LITTLE_ENDIAN__
  7499. #define vld1_dup_s8(__p0) __extension__ ({ \
  7500. int8x8_t __ret; \
  7501. __ret = (int8x8_t) __builtin_neon_vld1_dup_v(__p0, 0); \
  7502. __ret; \
  7503. })
  7504. #else
  7505. #define vld1_dup_s8(__p0) __extension__ ({ \
  7506. int8x8_t __ret; \
  7507. __ret = (int8x8_t) __builtin_neon_vld1_dup_v(__p0, 0); \
  7508. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  7509. __ret; \
  7510. })
  7511. #endif
  7512. #ifdef __LITTLE_ENDIAN__
  7513. #define vld1_dup_f32(__p0) __extension__ ({ \
  7514. float32x2_t __ret; \
  7515. __ret = (float32x2_t) __builtin_neon_vld1_dup_v(__p0, 9); \
  7516. __ret; \
  7517. })
  7518. #else
  7519. #define vld1_dup_f32(__p0) __extension__ ({ \
  7520. float32x2_t __ret; \
  7521. __ret = (float32x2_t) __builtin_neon_vld1_dup_v(__p0, 9); \
  7522. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  7523. __ret; \
  7524. })
  7525. #endif
  7526. #ifdef __LITTLE_ENDIAN__
  7527. #define vld1_dup_s32(__p0) __extension__ ({ \
  7528. int32x2_t __ret; \
  7529. __ret = (int32x2_t) __builtin_neon_vld1_dup_v(__p0, 2); \
  7530. __ret; \
  7531. })
  7532. #else
  7533. #define vld1_dup_s32(__p0) __extension__ ({ \
  7534. int32x2_t __ret; \
  7535. __ret = (int32x2_t) __builtin_neon_vld1_dup_v(__p0, 2); \
  7536. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  7537. __ret; \
  7538. })
  7539. #endif
  7540. #ifdef __LITTLE_ENDIAN__
  7541. #define vld1_dup_s64(__p0) __extension__ ({ \
  7542. int64x1_t __ret; \
  7543. __ret = (int64x1_t) __builtin_neon_vld1_dup_v(__p0, 3); \
  7544. __ret; \
  7545. })
  7546. #else
  7547. #define vld1_dup_s64(__p0) __extension__ ({ \
  7548. int64x1_t __ret; \
  7549. __ret = (int64x1_t) __builtin_neon_vld1_dup_v(__p0, 3); \
  7550. __ret; \
  7551. })
  7552. #endif
  7553. #ifdef __LITTLE_ENDIAN__
  7554. #define vld1_dup_s16(__p0) __extension__ ({ \
  7555. int16x4_t __ret; \
  7556. __ret = (int16x4_t) __builtin_neon_vld1_dup_v(__p0, 1); \
  7557. __ret; \
  7558. })
  7559. #else
  7560. #define vld1_dup_s16(__p0) __extension__ ({ \
  7561. int16x4_t __ret; \
  7562. __ret = (int16x4_t) __builtin_neon_vld1_dup_v(__p0, 1); \
  7563. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  7564. __ret; \
  7565. })
  7566. #endif
  7567. #ifdef __LITTLE_ENDIAN__
  7568. #define vld1_lane_p8(__p0, __p1, __p2) __extension__ ({ \
  7569. poly8x8_t __s1 = __p1; \
  7570. poly8x8_t __ret; \
  7571. __ret = (poly8x8_t) __builtin_neon_vld1_lane_v(__p0, (int8x8_t)__s1, __p2, 4); \
  7572. __ret; \
  7573. })
  7574. #else
  7575. #define vld1_lane_p8(__p0, __p1, __p2) __extension__ ({ \
  7576. poly8x8_t __s1 = __p1; \
  7577. poly8x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  7578. poly8x8_t __ret; \
  7579. __ret = (poly8x8_t) __builtin_neon_vld1_lane_v(__p0, (int8x8_t)__rev1, __p2, 4); \
  7580. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  7581. __ret; \
  7582. })
  7583. #endif
  7584. #ifdef __LITTLE_ENDIAN__
  7585. #define vld1_lane_p16(__p0, __p1, __p2) __extension__ ({ \
  7586. poly16x4_t __s1 = __p1; \
  7587. poly16x4_t __ret; \
  7588. __ret = (poly16x4_t) __builtin_neon_vld1_lane_v(__p0, (int8x8_t)__s1, __p2, 5); \
  7589. __ret; \
  7590. })
  7591. #else
  7592. #define vld1_lane_p16(__p0, __p1, __p2) __extension__ ({ \
  7593. poly16x4_t __s1 = __p1; \
  7594. poly16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  7595. poly16x4_t __ret; \
  7596. __ret = (poly16x4_t) __builtin_neon_vld1_lane_v(__p0, (int8x8_t)__rev1, __p2, 5); \
  7597. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  7598. __ret; \
  7599. })
  7600. #endif
  7601. #ifdef __LITTLE_ENDIAN__
  7602. #define vld1q_lane_p8(__p0, __p1, __p2) __extension__ ({ \
  7603. poly8x16_t __s1 = __p1; \
  7604. poly8x16_t __ret; \
  7605. __ret = (poly8x16_t) __builtin_neon_vld1q_lane_v(__p0, (int8x16_t)__s1, __p2, 36); \
  7606. __ret; \
  7607. })
  7608. #else
  7609. #define vld1q_lane_p8(__p0, __p1, __p2) __extension__ ({ \
  7610. poly8x16_t __s1 = __p1; \
  7611. poly8x16_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  7612. poly8x16_t __ret; \
  7613. __ret = (poly8x16_t) __builtin_neon_vld1q_lane_v(__p0, (int8x16_t)__rev1, __p2, 36); \
  7614. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  7615. __ret; \
  7616. })
  7617. #endif
  7618. #ifdef __LITTLE_ENDIAN__
  7619. #define vld1q_lane_p16(__p0, __p1, __p2) __extension__ ({ \
  7620. poly16x8_t __s1 = __p1; \
  7621. poly16x8_t __ret; \
  7622. __ret = (poly16x8_t) __builtin_neon_vld1q_lane_v(__p0, (int8x16_t)__s1, __p2, 37); \
  7623. __ret; \
  7624. })
  7625. #else
  7626. #define vld1q_lane_p16(__p0, __p1, __p2) __extension__ ({ \
  7627. poly16x8_t __s1 = __p1; \
  7628. poly16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  7629. poly16x8_t __ret; \
  7630. __ret = (poly16x8_t) __builtin_neon_vld1q_lane_v(__p0, (int8x16_t)__rev1, __p2, 37); \
  7631. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  7632. __ret; \
  7633. })
  7634. #endif
  7635. #ifdef __LITTLE_ENDIAN__
  7636. #define vld1q_lane_u8(__p0, __p1, __p2) __extension__ ({ \
  7637. uint8x16_t __s1 = __p1; \
  7638. uint8x16_t __ret; \
  7639. __ret = (uint8x16_t) __builtin_neon_vld1q_lane_v(__p0, (int8x16_t)__s1, __p2, 48); \
  7640. __ret; \
  7641. })
  7642. #else
  7643. #define vld1q_lane_u8(__p0, __p1, __p2) __extension__ ({ \
  7644. uint8x16_t __s1 = __p1; \
  7645. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  7646. uint8x16_t __ret; \
  7647. __ret = (uint8x16_t) __builtin_neon_vld1q_lane_v(__p0, (int8x16_t)__rev1, __p2, 48); \
  7648. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  7649. __ret; \
  7650. })
  7651. #endif
  7652. #ifdef __LITTLE_ENDIAN__
  7653. #define vld1q_lane_u32(__p0, __p1, __p2) __extension__ ({ \
  7654. uint32x4_t __s1 = __p1; \
  7655. uint32x4_t __ret; \
  7656. __ret = (uint32x4_t) __builtin_neon_vld1q_lane_v(__p0, (int8x16_t)__s1, __p2, 50); \
  7657. __ret; \
  7658. })
  7659. #else
  7660. #define vld1q_lane_u32(__p0, __p1, __p2) __extension__ ({ \
  7661. uint32x4_t __s1 = __p1; \
  7662. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  7663. uint32x4_t __ret; \
  7664. __ret = (uint32x4_t) __builtin_neon_vld1q_lane_v(__p0, (int8x16_t)__rev1, __p2, 50); \
  7665. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  7666. __ret; \
  7667. })
  7668. #endif
  7669. #ifdef __LITTLE_ENDIAN__
  7670. #define vld1q_lane_u64(__p0, __p1, __p2) __extension__ ({ \
  7671. uint64x2_t __s1 = __p1; \
  7672. uint64x2_t __ret; \
  7673. __ret = (uint64x2_t) __builtin_neon_vld1q_lane_v(__p0, (int8x16_t)__s1, __p2, 51); \
  7674. __ret; \
  7675. })
  7676. #else
  7677. #define vld1q_lane_u64(__p0, __p1, __p2) __extension__ ({ \
  7678. uint64x2_t __s1 = __p1; \
  7679. uint64x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  7680. uint64x2_t __ret; \
  7681. __ret = (uint64x2_t) __builtin_neon_vld1q_lane_v(__p0, (int8x16_t)__rev1, __p2, 51); \
  7682. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  7683. __ret; \
  7684. })
  7685. #endif
  7686. #ifdef __LITTLE_ENDIAN__
  7687. #define vld1q_lane_u16(__p0, __p1, __p2) __extension__ ({ \
  7688. uint16x8_t __s1 = __p1; \
  7689. uint16x8_t __ret; \
  7690. __ret = (uint16x8_t) __builtin_neon_vld1q_lane_v(__p0, (int8x16_t)__s1, __p2, 49); \
  7691. __ret; \
  7692. })
  7693. #else
  7694. #define vld1q_lane_u16(__p0, __p1, __p2) __extension__ ({ \
  7695. uint16x8_t __s1 = __p1; \
  7696. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  7697. uint16x8_t __ret; \
  7698. __ret = (uint16x8_t) __builtin_neon_vld1q_lane_v(__p0, (int8x16_t)__rev1, __p2, 49); \
  7699. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  7700. __ret; \
  7701. })
  7702. #endif
  7703. #ifdef __LITTLE_ENDIAN__
  7704. #define vld1q_lane_s8(__p0, __p1, __p2) __extension__ ({ \
  7705. int8x16_t __s1 = __p1; \
  7706. int8x16_t __ret; \
  7707. __ret = (int8x16_t) __builtin_neon_vld1q_lane_v(__p0, (int8x16_t)__s1, __p2, 32); \
  7708. __ret; \
  7709. })
  7710. #else
  7711. #define vld1q_lane_s8(__p0, __p1, __p2) __extension__ ({ \
  7712. int8x16_t __s1 = __p1; \
  7713. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  7714. int8x16_t __ret; \
  7715. __ret = (int8x16_t) __builtin_neon_vld1q_lane_v(__p0, (int8x16_t)__rev1, __p2, 32); \
  7716. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  7717. __ret; \
  7718. })
  7719. #endif
  7720. #ifdef __LITTLE_ENDIAN__
  7721. #define vld1q_lane_f32(__p0, __p1, __p2) __extension__ ({ \
  7722. float32x4_t __s1 = __p1; \
  7723. float32x4_t __ret; \
  7724. __ret = (float32x4_t) __builtin_neon_vld1q_lane_v(__p0, (int8x16_t)__s1, __p2, 41); \
  7725. __ret; \
  7726. })
  7727. #else
  7728. #define vld1q_lane_f32(__p0, __p1, __p2) __extension__ ({ \
  7729. float32x4_t __s1 = __p1; \
  7730. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  7731. float32x4_t __ret; \
  7732. __ret = (float32x4_t) __builtin_neon_vld1q_lane_v(__p0, (int8x16_t)__rev1, __p2, 41); \
  7733. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  7734. __ret; \
  7735. })
  7736. #endif
  7737. #ifdef __LITTLE_ENDIAN__
  7738. #define vld1q_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  7739. int32x4_t __s1 = __p1; \
  7740. int32x4_t __ret; \
  7741. __ret = (int32x4_t) __builtin_neon_vld1q_lane_v(__p0, (int8x16_t)__s1, __p2, 34); \
  7742. __ret; \
  7743. })
  7744. #else
  7745. #define vld1q_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  7746. int32x4_t __s1 = __p1; \
  7747. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  7748. int32x4_t __ret; \
  7749. __ret = (int32x4_t) __builtin_neon_vld1q_lane_v(__p0, (int8x16_t)__rev1, __p2, 34); \
  7750. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  7751. __ret; \
  7752. })
  7753. #endif
  7754. #ifdef __LITTLE_ENDIAN__
  7755. #define vld1q_lane_s64(__p0, __p1, __p2) __extension__ ({ \
  7756. int64x2_t __s1 = __p1; \
  7757. int64x2_t __ret; \
  7758. __ret = (int64x2_t) __builtin_neon_vld1q_lane_v(__p0, (int8x16_t)__s1, __p2, 35); \
  7759. __ret; \
  7760. })
  7761. #else
  7762. #define vld1q_lane_s64(__p0, __p1, __p2) __extension__ ({ \
  7763. int64x2_t __s1 = __p1; \
  7764. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  7765. int64x2_t __ret; \
  7766. __ret = (int64x2_t) __builtin_neon_vld1q_lane_v(__p0, (int8x16_t)__rev1, __p2, 35); \
  7767. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  7768. __ret; \
  7769. })
  7770. #endif
  7771. #ifdef __LITTLE_ENDIAN__
  7772. #define vld1q_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  7773. int16x8_t __s1 = __p1; \
  7774. int16x8_t __ret; \
  7775. __ret = (int16x8_t) __builtin_neon_vld1q_lane_v(__p0, (int8x16_t)__s1, __p2, 33); \
  7776. __ret; \
  7777. })
  7778. #else
  7779. #define vld1q_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  7780. int16x8_t __s1 = __p1; \
  7781. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  7782. int16x8_t __ret; \
  7783. __ret = (int16x8_t) __builtin_neon_vld1q_lane_v(__p0, (int8x16_t)__rev1, __p2, 33); \
  7784. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  7785. __ret; \
  7786. })
  7787. #endif
  7788. #ifdef __LITTLE_ENDIAN__
  7789. #define vld1_lane_u8(__p0, __p1, __p2) __extension__ ({ \
  7790. uint8x8_t __s1 = __p1; \
  7791. uint8x8_t __ret; \
  7792. __ret = (uint8x8_t) __builtin_neon_vld1_lane_v(__p0, (int8x8_t)__s1, __p2, 16); \
  7793. __ret; \
  7794. })
  7795. #else
  7796. #define vld1_lane_u8(__p0, __p1, __p2) __extension__ ({ \
  7797. uint8x8_t __s1 = __p1; \
  7798. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  7799. uint8x8_t __ret; \
  7800. __ret = (uint8x8_t) __builtin_neon_vld1_lane_v(__p0, (int8x8_t)__rev1, __p2, 16); \
  7801. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  7802. __ret; \
  7803. })
  7804. #endif
  7805. #ifdef __LITTLE_ENDIAN__
  7806. #define vld1_lane_u32(__p0, __p1, __p2) __extension__ ({ \
  7807. uint32x2_t __s1 = __p1; \
  7808. uint32x2_t __ret; \
  7809. __ret = (uint32x2_t) __builtin_neon_vld1_lane_v(__p0, (int8x8_t)__s1, __p2, 18); \
  7810. __ret; \
  7811. })
  7812. #else
  7813. #define vld1_lane_u32(__p0, __p1, __p2) __extension__ ({ \
  7814. uint32x2_t __s1 = __p1; \
  7815. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  7816. uint32x2_t __ret; \
  7817. __ret = (uint32x2_t) __builtin_neon_vld1_lane_v(__p0, (int8x8_t)__rev1, __p2, 18); \
  7818. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  7819. __ret; \
  7820. })
  7821. #endif
  7822. #ifdef __LITTLE_ENDIAN__
  7823. #define vld1_lane_u64(__p0, __p1, __p2) __extension__ ({ \
  7824. uint64x1_t __s1 = __p1; \
  7825. uint64x1_t __ret; \
  7826. __ret = (uint64x1_t) __builtin_neon_vld1_lane_v(__p0, (int8x8_t)__s1, __p2, 19); \
  7827. __ret; \
  7828. })
  7829. #else
  7830. #define vld1_lane_u64(__p0, __p1, __p2) __extension__ ({ \
  7831. uint64x1_t __s1 = __p1; \
  7832. uint64x1_t __ret; \
  7833. __ret = (uint64x1_t) __builtin_neon_vld1_lane_v(__p0, (int8x8_t)__s1, __p2, 19); \
  7834. __ret; \
  7835. })
  7836. #endif
  7837. #ifdef __LITTLE_ENDIAN__
  7838. #define vld1_lane_u16(__p0, __p1, __p2) __extension__ ({ \
  7839. uint16x4_t __s1 = __p1; \
  7840. uint16x4_t __ret; \
  7841. __ret = (uint16x4_t) __builtin_neon_vld1_lane_v(__p0, (int8x8_t)__s1, __p2, 17); \
  7842. __ret; \
  7843. })
  7844. #else
  7845. #define vld1_lane_u16(__p0, __p1, __p2) __extension__ ({ \
  7846. uint16x4_t __s1 = __p1; \
  7847. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  7848. uint16x4_t __ret; \
  7849. __ret = (uint16x4_t) __builtin_neon_vld1_lane_v(__p0, (int8x8_t)__rev1, __p2, 17); \
  7850. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  7851. __ret; \
  7852. })
  7853. #endif
  7854. #ifdef __LITTLE_ENDIAN__
  7855. #define vld1_lane_s8(__p0, __p1, __p2) __extension__ ({ \
  7856. int8x8_t __s1 = __p1; \
  7857. int8x8_t __ret; \
  7858. __ret = (int8x8_t) __builtin_neon_vld1_lane_v(__p0, (int8x8_t)__s1, __p2, 0); \
  7859. __ret; \
  7860. })
  7861. #else
  7862. #define vld1_lane_s8(__p0, __p1, __p2) __extension__ ({ \
  7863. int8x8_t __s1 = __p1; \
  7864. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  7865. int8x8_t __ret; \
  7866. __ret = (int8x8_t) __builtin_neon_vld1_lane_v(__p0, (int8x8_t)__rev1, __p2, 0); \
  7867. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  7868. __ret; \
  7869. })
  7870. #endif
  7871. #ifdef __LITTLE_ENDIAN__
  7872. #define vld1_lane_f32(__p0, __p1, __p2) __extension__ ({ \
  7873. float32x2_t __s1 = __p1; \
  7874. float32x2_t __ret; \
  7875. __ret = (float32x2_t) __builtin_neon_vld1_lane_v(__p0, (int8x8_t)__s1, __p2, 9); \
  7876. __ret; \
  7877. })
  7878. #else
  7879. #define vld1_lane_f32(__p0, __p1, __p2) __extension__ ({ \
  7880. float32x2_t __s1 = __p1; \
  7881. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  7882. float32x2_t __ret; \
  7883. __ret = (float32x2_t) __builtin_neon_vld1_lane_v(__p0, (int8x8_t)__rev1, __p2, 9); \
  7884. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  7885. __ret; \
  7886. })
  7887. #endif
  7888. #ifdef __LITTLE_ENDIAN__
  7889. #define vld1_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  7890. int32x2_t __s1 = __p1; \
  7891. int32x2_t __ret; \
  7892. __ret = (int32x2_t) __builtin_neon_vld1_lane_v(__p0, (int8x8_t)__s1, __p2, 2); \
  7893. __ret; \
  7894. })
  7895. #else
  7896. #define vld1_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  7897. int32x2_t __s1 = __p1; \
  7898. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  7899. int32x2_t __ret; \
  7900. __ret = (int32x2_t) __builtin_neon_vld1_lane_v(__p0, (int8x8_t)__rev1, __p2, 2); \
  7901. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  7902. __ret; \
  7903. })
  7904. #endif
  7905. #ifdef __LITTLE_ENDIAN__
  7906. #define vld1_lane_s64(__p0, __p1, __p2) __extension__ ({ \
  7907. int64x1_t __s1 = __p1; \
  7908. int64x1_t __ret; \
  7909. __ret = (int64x1_t) __builtin_neon_vld1_lane_v(__p0, (int8x8_t)__s1, __p2, 3); \
  7910. __ret; \
  7911. })
  7912. #else
  7913. #define vld1_lane_s64(__p0, __p1, __p2) __extension__ ({ \
  7914. int64x1_t __s1 = __p1; \
  7915. int64x1_t __ret; \
  7916. __ret = (int64x1_t) __builtin_neon_vld1_lane_v(__p0, (int8x8_t)__s1, __p2, 3); \
  7917. __ret; \
  7918. })
  7919. #endif
  7920. #ifdef __LITTLE_ENDIAN__
  7921. #define vld1_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  7922. int16x4_t __s1 = __p1; \
  7923. int16x4_t __ret; \
  7924. __ret = (int16x4_t) __builtin_neon_vld1_lane_v(__p0, (int8x8_t)__s1, __p2, 1); \
  7925. __ret; \
  7926. })
  7927. #else
  7928. #define vld1_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  7929. int16x4_t __s1 = __p1; \
  7930. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  7931. int16x4_t __ret; \
  7932. __ret = (int16x4_t) __builtin_neon_vld1_lane_v(__p0, (int8x8_t)__rev1, __p2, 1); \
  7933. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  7934. __ret; \
  7935. })
  7936. #endif
  7937. #ifdef __LITTLE_ENDIAN__
  7938. #define vld1_p8_x2(__p0) __extension__ ({ \
  7939. poly8x8x2_t __ret; \
  7940. __builtin_neon_vld1_x2_v(&__ret, __p0, 4); \
  7941. __ret; \
  7942. })
  7943. #else
  7944. #define vld1_p8_x2(__p0) __extension__ ({ \
  7945. poly8x8x2_t __ret; \
  7946. __builtin_neon_vld1_x2_v(&__ret, __p0, 4); \
  7947. \
  7948. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  7949. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  7950. __ret; \
  7951. })
  7952. #endif
  7953. #ifdef __LITTLE_ENDIAN__
  7954. #define vld1_p16_x2(__p0) __extension__ ({ \
  7955. poly16x4x2_t __ret; \
  7956. __builtin_neon_vld1_x2_v(&__ret, __p0, 5); \
  7957. __ret; \
  7958. })
  7959. #else
  7960. #define vld1_p16_x2(__p0) __extension__ ({ \
  7961. poly16x4x2_t __ret; \
  7962. __builtin_neon_vld1_x2_v(&__ret, __p0, 5); \
  7963. \
  7964. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  7965. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  7966. __ret; \
  7967. })
  7968. #endif
  7969. #ifdef __LITTLE_ENDIAN__
  7970. #define vld1q_p8_x2(__p0) __extension__ ({ \
  7971. poly8x16x2_t __ret; \
  7972. __builtin_neon_vld1q_x2_v(&__ret, __p0, 36); \
  7973. __ret; \
  7974. })
  7975. #else
  7976. #define vld1q_p8_x2(__p0) __extension__ ({ \
  7977. poly8x16x2_t __ret; \
  7978. __builtin_neon_vld1q_x2_v(&__ret, __p0, 36); \
  7979. \
  7980. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  7981. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  7982. __ret; \
  7983. })
  7984. #endif
  7985. #ifdef __LITTLE_ENDIAN__
  7986. #define vld1q_p16_x2(__p0) __extension__ ({ \
  7987. poly16x8x2_t __ret; \
  7988. __builtin_neon_vld1q_x2_v(&__ret, __p0, 37); \
  7989. __ret; \
  7990. })
  7991. #else
  7992. #define vld1q_p16_x2(__p0) __extension__ ({ \
  7993. poly16x8x2_t __ret; \
  7994. __builtin_neon_vld1q_x2_v(&__ret, __p0, 37); \
  7995. \
  7996. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  7997. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  7998. __ret; \
  7999. })
  8000. #endif
  8001. #ifdef __LITTLE_ENDIAN__
  8002. #define vld1q_u8_x2(__p0) __extension__ ({ \
  8003. uint8x16x2_t __ret; \
  8004. __builtin_neon_vld1q_x2_v(&__ret, __p0, 48); \
  8005. __ret; \
  8006. })
  8007. #else
  8008. #define vld1q_u8_x2(__p0) __extension__ ({ \
  8009. uint8x16x2_t __ret; \
  8010. __builtin_neon_vld1q_x2_v(&__ret, __p0, 48); \
  8011. \
  8012. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  8013. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  8014. __ret; \
  8015. })
  8016. #endif
  8017. #ifdef __LITTLE_ENDIAN__
  8018. #define vld1q_u32_x2(__p0) __extension__ ({ \
  8019. uint32x4x2_t __ret; \
  8020. __builtin_neon_vld1q_x2_v(&__ret, __p0, 50); \
  8021. __ret; \
  8022. })
  8023. #else
  8024. #define vld1q_u32_x2(__p0) __extension__ ({ \
  8025. uint32x4x2_t __ret; \
  8026. __builtin_neon_vld1q_x2_v(&__ret, __p0, 50); \
  8027. \
  8028. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  8029. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  8030. __ret; \
  8031. })
  8032. #endif
  8033. #ifdef __LITTLE_ENDIAN__
  8034. #define vld1q_u64_x2(__p0) __extension__ ({ \
  8035. uint64x2x2_t __ret; \
  8036. __builtin_neon_vld1q_x2_v(&__ret, __p0, 51); \
  8037. __ret; \
  8038. })
  8039. #else
  8040. #define vld1q_u64_x2(__p0) __extension__ ({ \
  8041. uint64x2x2_t __ret; \
  8042. __builtin_neon_vld1q_x2_v(&__ret, __p0, 51); \
  8043. \
  8044. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  8045. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  8046. __ret; \
  8047. })
  8048. #endif
  8049. #ifdef __LITTLE_ENDIAN__
  8050. #define vld1q_u16_x2(__p0) __extension__ ({ \
  8051. uint16x8x2_t __ret; \
  8052. __builtin_neon_vld1q_x2_v(&__ret, __p0, 49); \
  8053. __ret; \
  8054. })
  8055. #else
  8056. #define vld1q_u16_x2(__p0) __extension__ ({ \
  8057. uint16x8x2_t __ret; \
  8058. __builtin_neon_vld1q_x2_v(&__ret, __p0, 49); \
  8059. \
  8060. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  8061. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  8062. __ret; \
  8063. })
  8064. #endif
  8065. #ifdef __LITTLE_ENDIAN__
  8066. #define vld1q_s8_x2(__p0) __extension__ ({ \
  8067. int8x16x2_t __ret; \
  8068. __builtin_neon_vld1q_x2_v(&__ret, __p0, 32); \
  8069. __ret; \
  8070. })
  8071. #else
  8072. #define vld1q_s8_x2(__p0) __extension__ ({ \
  8073. int8x16x2_t __ret; \
  8074. __builtin_neon_vld1q_x2_v(&__ret, __p0, 32); \
  8075. \
  8076. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  8077. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  8078. __ret; \
  8079. })
  8080. #endif
  8081. #ifdef __LITTLE_ENDIAN__
  8082. #define vld1q_f32_x2(__p0) __extension__ ({ \
  8083. float32x4x2_t __ret; \
  8084. __builtin_neon_vld1q_x2_v(&__ret, __p0, 41); \
  8085. __ret; \
  8086. })
  8087. #else
  8088. #define vld1q_f32_x2(__p0) __extension__ ({ \
  8089. float32x4x2_t __ret; \
  8090. __builtin_neon_vld1q_x2_v(&__ret, __p0, 41); \
  8091. \
  8092. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  8093. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  8094. __ret; \
  8095. })
  8096. #endif
  8097. #ifdef __LITTLE_ENDIAN__
  8098. #define vld1q_s32_x2(__p0) __extension__ ({ \
  8099. int32x4x2_t __ret; \
  8100. __builtin_neon_vld1q_x2_v(&__ret, __p0, 34); \
  8101. __ret; \
  8102. })
  8103. #else
  8104. #define vld1q_s32_x2(__p0) __extension__ ({ \
  8105. int32x4x2_t __ret; \
  8106. __builtin_neon_vld1q_x2_v(&__ret, __p0, 34); \
  8107. \
  8108. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  8109. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  8110. __ret; \
  8111. })
  8112. #endif
  8113. #ifdef __LITTLE_ENDIAN__
  8114. #define vld1q_s64_x2(__p0) __extension__ ({ \
  8115. int64x2x2_t __ret; \
  8116. __builtin_neon_vld1q_x2_v(&__ret, __p0, 35); \
  8117. __ret; \
  8118. })
  8119. #else
  8120. #define vld1q_s64_x2(__p0) __extension__ ({ \
  8121. int64x2x2_t __ret; \
  8122. __builtin_neon_vld1q_x2_v(&__ret, __p0, 35); \
  8123. \
  8124. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  8125. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  8126. __ret; \
  8127. })
  8128. #endif
  8129. #ifdef __LITTLE_ENDIAN__
  8130. #define vld1q_s16_x2(__p0) __extension__ ({ \
  8131. int16x8x2_t __ret; \
  8132. __builtin_neon_vld1q_x2_v(&__ret, __p0, 33); \
  8133. __ret; \
  8134. })
  8135. #else
  8136. #define vld1q_s16_x2(__p0) __extension__ ({ \
  8137. int16x8x2_t __ret; \
  8138. __builtin_neon_vld1q_x2_v(&__ret, __p0, 33); \
  8139. \
  8140. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  8141. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  8142. __ret; \
  8143. })
  8144. #endif
  8145. #ifdef __LITTLE_ENDIAN__
  8146. #define vld1_u8_x2(__p0) __extension__ ({ \
  8147. uint8x8x2_t __ret; \
  8148. __builtin_neon_vld1_x2_v(&__ret, __p0, 16); \
  8149. __ret; \
  8150. })
  8151. #else
  8152. #define vld1_u8_x2(__p0) __extension__ ({ \
  8153. uint8x8x2_t __ret; \
  8154. __builtin_neon_vld1_x2_v(&__ret, __p0, 16); \
  8155. \
  8156. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  8157. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  8158. __ret; \
  8159. })
  8160. #endif
  8161. #ifdef __LITTLE_ENDIAN__
  8162. #define vld1_u32_x2(__p0) __extension__ ({ \
  8163. uint32x2x2_t __ret; \
  8164. __builtin_neon_vld1_x2_v(&__ret, __p0, 18); \
  8165. __ret; \
  8166. })
  8167. #else
  8168. #define vld1_u32_x2(__p0) __extension__ ({ \
  8169. uint32x2x2_t __ret; \
  8170. __builtin_neon_vld1_x2_v(&__ret, __p0, 18); \
  8171. \
  8172. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  8173. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  8174. __ret; \
  8175. })
  8176. #endif
  8177. #ifdef __LITTLE_ENDIAN__
  8178. #define vld1_u64_x2(__p0) __extension__ ({ \
  8179. uint64x1x2_t __ret; \
  8180. __builtin_neon_vld1_x2_v(&__ret, __p0, 19); \
  8181. __ret; \
  8182. })
  8183. #else
  8184. #define vld1_u64_x2(__p0) __extension__ ({ \
  8185. uint64x1x2_t __ret; \
  8186. __builtin_neon_vld1_x2_v(&__ret, __p0, 19); \
  8187. __ret; \
  8188. })
  8189. #endif
  8190. #ifdef __LITTLE_ENDIAN__
  8191. #define vld1_u16_x2(__p0) __extension__ ({ \
  8192. uint16x4x2_t __ret; \
  8193. __builtin_neon_vld1_x2_v(&__ret, __p0, 17); \
  8194. __ret; \
  8195. })
  8196. #else
  8197. #define vld1_u16_x2(__p0) __extension__ ({ \
  8198. uint16x4x2_t __ret; \
  8199. __builtin_neon_vld1_x2_v(&__ret, __p0, 17); \
  8200. \
  8201. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  8202. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  8203. __ret; \
  8204. })
  8205. #endif
  8206. #ifdef __LITTLE_ENDIAN__
  8207. #define vld1_s8_x2(__p0) __extension__ ({ \
  8208. int8x8x2_t __ret; \
  8209. __builtin_neon_vld1_x2_v(&__ret, __p0, 0); \
  8210. __ret; \
  8211. })
  8212. #else
  8213. #define vld1_s8_x2(__p0) __extension__ ({ \
  8214. int8x8x2_t __ret; \
  8215. __builtin_neon_vld1_x2_v(&__ret, __p0, 0); \
  8216. \
  8217. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  8218. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  8219. __ret; \
  8220. })
  8221. #endif
  8222. #ifdef __LITTLE_ENDIAN__
  8223. #define vld1_f32_x2(__p0) __extension__ ({ \
  8224. float32x2x2_t __ret; \
  8225. __builtin_neon_vld1_x2_v(&__ret, __p0, 9); \
  8226. __ret; \
  8227. })
  8228. #else
  8229. #define vld1_f32_x2(__p0) __extension__ ({ \
  8230. float32x2x2_t __ret; \
  8231. __builtin_neon_vld1_x2_v(&__ret, __p0, 9); \
  8232. \
  8233. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  8234. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  8235. __ret; \
  8236. })
  8237. #endif
  8238. #ifdef __LITTLE_ENDIAN__
  8239. #define vld1_s32_x2(__p0) __extension__ ({ \
  8240. int32x2x2_t __ret; \
  8241. __builtin_neon_vld1_x2_v(&__ret, __p0, 2); \
  8242. __ret; \
  8243. })
  8244. #else
  8245. #define vld1_s32_x2(__p0) __extension__ ({ \
  8246. int32x2x2_t __ret; \
  8247. __builtin_neon_vld1_x2_v(&__ret, __p0, 2); \
  8248. \
  8249. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  8250. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  8251. __ret; \
  8252. })
  8253. #endif
  8254. #ifdef __LITTLE_ENDIAN__
  8255. #define vld1_s64_x2(__p0) __extension__ ({ \
  8256. int64x1x2_t __ret; \
  8257. __builtin_neon_vld1_x2_v(&__ret, __p0, 3); \
  8258. __ret; \
  8259. })
  8260. #else
  8261. #define vld1_s64_x2(__p0) __extension__ ({ \
  8262. int64x1x2_t __ret; \
  8263. __builtin_neon_vld1_x2_v(&__ret, __p0, 3); \
  8264. __ret; \
  8265. })
  8266. #endif
  8267. #ifdef __LITTLE_ENDIAN__
  8268. #define vld1_s16_x2(__p0) __extension__ ({ \
  8269. int16x4x2_t __ret; \
  8270. __builtin_neon_vld1_x2_v(&__ret, __p0, 1); \
  8271. __ret; \
  8272. })
  8273. #else
  8274. #define vld1_s16_x2(__p0) __extension__ ({ \
  8275. int16x4x2_t __ret; \
  8276. __builtin_neon_vld1_x2_v(&__ret, __p0, 1); \
  8277. \
  8278. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  8279. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  8280. __ret; \
  8281. })
  8282. #endif
  8283. #ifdef __LITTLE_ENDIAN__
  8284. #define vld1_p8_x3(__p0) __extension__ ({ \
  8285. poly8x8x3_t __ret; \
  8286. __builtin_neon_vld1_x3_v(&__ret, __p0, 4); \
  8287. __ret; \
  8288. })
  8289. #else
  8290. #define vld1_p8_x3(__p0) __extension__ ({ \
  8291. poly8x8x3_t __ret; \
  8292. __builtin_neon_vld1_x3_v(&__ret, __p0, 4); \
  8293. \
  8294. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  8295. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  8296. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  8297. __ret; \
  8298. })
  8299. #endif
  8300. #ifdef __LITTLE_ENDIAN__
  8301. #define vld1_p16_x3(__p0) __extension__ ({ \
  8302. poly16x4x3_t __ret; \
  8303. __builtin_neon_vld1_x3_v(&__ret, __p0, 5); \
  8304. __ret; \
  8305. })
  8306. #else
  8307. #define vld1_p16_x3(__p0) __extension__ ({ \
  8308. poly16x4x3_t __ret; \
  8309. __builtin_neon_vld1_x3_v(&__ret, __p0, 5); \
  8310. \
  8311. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  8312. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  8313. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  8314. __ret; \
  8315. })
  8316. #endif
  8317. #ifdef __LITTLE_ENDIAN__
  8318. #define vld1q_p8_x3(__p0) __extension__ ({ \
  8319. poly8x16x3_t __ret; \
  8320. __builtin_neon_vld1q_x3_v(&__ret, __p0, 36); \
  8321. __ret; \
  8322. })
  8323. #else
  8324. #define vld1q_p8_x3(__p0) __extension__ ({ \
  8325. poly8x16x3_t __ret; \
  8326. __builtin_neon_vld1q_x3_v(&__ret, __p0, 36); \
  8327. \
  8328. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  8329. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  8330. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  8331. __ret; \
  8332. })
  8333. #endif
  8334. #ifdef __LITTLE_ENDIAN__
  8335. #define vld1q_p16_x3(__p0) __extension__ ({ \
  8336. poly16x8x3_t __ret; \
  8337. __builtin_neon_vld1q_x3_v(&__ret, __p0, 37); \
  8338. __ret; \
  8339. })
  8340. #else
  8341. #define vld1q_p16_x3(__p0) __extension__ ({ \
  8342. poly16x8x3_t __ret; \
  8343. __builtin_neon_vld1q_x3_v(&__ret, __p0, 37); \
  8344. \
  8345. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  8346. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  8347. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  8348. __ret; \
  8349. })
  8350. #endif
  8351. #ifdef __LITTLE_ENDIAN__
  8352. #define vld1q_u8_x3(__p0) __extension__ ({ \
  8353. uint8x16x3_t __ret; \
  8354. __builtin_neon_vld1q_x3_v(&__ret, __p0, 48); \
  8355. __ret; \
  8356. })
  8357. #else
  8358. #define vld1q_u8_x3(__p0) __extension__ ({ \
  8359. uint8x16x3_t __ret; \
  8360. __builtin_neon_vld1q_x3_v(&__ret, __p0, 48); \
  8361. \
  8362. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  8363. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  8364. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  8365. __ret; \
  8366. })
  8367. #endif
  8368. #ifdef __LITTLE_ENDIAN__
  8369. #define vld1q_u32_x3(__p0) __extension__ ({ \
  8370. uint32x4x3_t __ret; \
  8371. __builtin_neon_vld1q_x3_v(&__ret, __p0, 50); \
  8372. __ret; \
  8373. })
  8374. #else
  8375. #define vld1q_u32_x3(__p0) __extension__ ({ \
  8376. uint32x4x3_t __ret; \
  8377. __builtin_neon_vld1q_x3_v(&__ret, __p0, 50); \
  8378. \
  8379. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  8380. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  8381. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  8382. __ret; \
  8383. })
  8384. #endif
  8385. #ifdef __LITTLE_ENDIAN__
  8386. #define vld1q_u64_x3(__p0) __extension__ ({ \
  8387. uint64x2x3_t __ret; \
  8388. __builtin_neon_vld1q_x3_v(&__ret, __p0, 51); \
  8389. __ret; \
  8390. })
  8391. #else
  8392. #define vld1q_u64_x3(__p0) __extension__ ({ \
  8393. uint64x2x3_t __ret; \
  8394. __builtin_neon_vld1q_x3_v(&__ret, __p0, 51); \
  8395. \
  8396. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  8397. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  8398. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  8399. __ret; \
  8400. })
  8401. #endif
  8402. #ifdef __LITTLE_ENDIAN__
  8403. #define vld1q_u16_x3(__p0) __extension__ ({ \
  8404. uint16x8x3_t __ret; \
  8405. __builtin_neon_vld1q_x3_v(&__ret, __p0, 49); \
  8406. __ret; \
  8407. })
  8408. #else
  8409. #define vld1q_u16_x3(__p0) __extension__ ({ \
  8410. uint16x8x3_t __ret; \
  8411. __builtin_neon_vld1q_x3_v(&__ret, __p0, 49); \
  8412. \
  8413. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  8414. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  8415. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  8416. __ret; \
  8417. })
  8418. #endif
  8419. #ifdef __LITTLE_ENDIAN__
  8420. #define vld1q_s8_x3(__p0) __extension__ ({ \
  8421. int8x16x3_t __ret; \
  8422. __builtin_neon_vld1q_x3_v(&__ret, __p0, 32); \
  8423. __ret; \
  8424. })
  8425. #else
  8426. #define vld1q_s8_x3(__p0) __extension__ ({ \
  8427. int8x16x3_t __ret; \
  8428. __builtin_neon_vld1q_x3_v(&__ret, __p0, 32); \
  8429. \
  8430. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  8431. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  8432. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  8433. __ret; \
  8434. })
  8435. #endif
  8436. #ifdef __LITTLE_ENDIAN__
  8437. #define vld1q_f32_x3(__p0) __extension__ ({ \
  8438. float32x4x3_t __ret; \
  8439. __builtin_neon_vld1q_x3_v(&__ret, __p0, 41); \
  8440. __ret; \
  8441. })
  8442. #else
  8443. #define vld1q_f32_x3(__p0) __extension__ ({ \
  8444. float32x4x3_t __ret; \
  8445. __builtin_neon_vld1q_x3_v(&__ret, __p0, 41); \
  8446. \
  8447. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  8448. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  8449. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  8450. __ret; \
  8451. })
  8452. #endif
  8453. #ifdef __LITTLE_ENDIAN__
  8454. #define vld1q_s32_x3(__p0) __extension__ ({ \
  8455. int32x4x3_t __ret; \
  8456. __builtin_neon_vld1q_x3_v(&__ret, __p0, 34); \
  8457. __ret; \
  8458. })
  8459. #else
  8460. #define vld1q_s32_x3(__p0) __extension__ ({ \
  8461. int32x4x3_t __ret; \
  8462. __builtin_neon_vld1q_x3_v(&__ret, __p0, 34); \
  8463. \
  8464. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  8465. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  8466. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  8467. __ret; \
  8468. })
  8469. #endif
  8470. #ifdef __LITTLE_ENDIAN__
  8471. #define vld1q_s64_x3(__p0) __extension__ ({ \
  8472. int64x2x3_t __ret; \
  8473. __builtin_neon_vld1q_x3_v(&__ret, __p0, 35); \
  8474. __ret; \
  8475. })
  8476. #else
  8477. #define vld1q_s64_x3(__p0) __extension__ ({ \
  8478. int64x2x3_t __ret; \
  8479. __builtin_neon_vld1q_x3_v(&__ret, __p0, 35); \
  8480. \
  8481. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  8482. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  8483. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  8484. __ret; \
  8485. })
  8486. #endif
  8487. #ifdef __LITTLE_ENDIAN__
  8488. #define vld1q_s16_x3(__p0) __extension__ ({ \
  8489. int16x8x3_t __ret; \
  8490. __builtin_neon_vld1q_x3_v(&__ret, __p0, 33); \
  8491. __ret; \
  8492. })
  8493. #else
  8494. #define vld1q_s16_x3(__p0) __extension__ ({ \
  8495. int16x8x3_t __ret; \
  8496. __builtin_neon_vld1q_x3_v(&__ret, __p0, 33); \
  8497. \
  8498. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  8499. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  8500. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  8501. __ret; \
  8502. })
  8503. #endif
  8504. #ifdef __LITTLE_ENDIAN__
  8505. #define vld1_u8_x3(__p0) __extension__ ({ \
  8506. uint8x8x3_t __ret; \
  8507. __builtin_neon_vld1_x3_v(&__ret, __p0, 16); \
  8508. __ret; \
  8509. })
  8510. #else
  8511. #define vld1_u8_x3(__p0) __extension__ ({ \
  8512. uint8x8x3_t __ret; \
  8513. __builtin_neon_vld1_x3_v(&__ret, __p0, 16); \
  8514. \
  8515. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  8516. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  8517. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  8518. __ret; \
  8519. })
  8520. #endif
  8521. #ifdef __LITTLE_ENDIAN__
  8522. #define vld1_u32_x3(__p0) __extension__ ({ \
  8523. uint32x2x3_t __ret; \
  8524. __builtin_neon_vld1_x3_v(&__ret, __p0, 18); \
  8525. __ret; \
  8526. })
  8527. #else
  8528. #define vld1_u32_x3(__p0) __extension__ ({ \
  8529. uint32x2x3_t __ret; \
  8530. __builtin_neon_vld1_x3_v(&__ret, __p0, 18); \
  8531. \
  8532. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  8533. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  8534. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  8535. __ret; \
  8536. })
  8537. #endif
  8538. #ifdef __LITTLE_ENDIAN__
  8539. #define vld1_u64_x3(__p0) __extension__ ({ \
  8540. uint64x1x3_t __ret; \
  8541. __builtin_neon_vld1_x3_v(&__ret, __p0, 19); \
  8542. __ret; \
  8543. })
  8544. #else
  8545. #define vld1_u64_x3(__p0) __extension__ ({ \
  8546. uint64x1x3_t __ret; \
  8547. __builtin_neon_vld1_x3_v(&__ret, __p0, 19); \
  8548. __ret; \
  8549. })
  8550. #endif
  8551. #ifdef __LITTLE_ENDIAN__
  8552. #define vld1_u16_x3(__p0) __extension__ ({ \
  8553. uint16x4x3_t __ret; \
  8554. __builtin_neon_vld1_x3_v(&__ret, __p0, 17); \
  8555. __ret; \
  8556. })
  8557. #else
  8558. #define vld1_u16_x3(__p0) __extension__ ({ \
  8559. uint16x4x3_t __ret; \
  8560. __builtin_neon_vld1_x3_v(&__ret, __p0, 17); \
  8561. \
  8562. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  8563. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  8564. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  8565. __ret; \
  8566. })
  8567. #endif
  8568. #ifdef __LITTLE_ENDIAN__
  8569. #define vld1_s8_x3(__p0) __extension__ ({ \
  8570. int8x8x3_t __ret; \
  8571. __builtin_neon_vld1_x3_v(&__ret, __p0, 0); \
  8572. __ret; \
  8573. })
  8574. #else
  8575. #define vld1_s8_x3(__p0) __extension__ ({ \
  8576. int8x8x3_t __ret; \
  8577. __builtin_neon_vld1_x3_v(&__ret, __p0, 0); \
  8578. \
  8579. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  8580. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  8581. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  8582. __ret; \
  8583. })
  8584. #endif
  8585. #ifdef __LITTLE_ENDIAN__
  8586. #define vld1_f32_x3(__p0) __extension__ ({ \
  8587. float32x2x3_t __ret; \
  8588. __builtin_neon_vld1_x3_v(&__ret, __p0, 9); \
  8589. __ret; \
  8590. })
  8591. #else
  8592. #define vld1_f32_x3(__p0) __extension__ ({ \
  8593. float32x2x3_t __ret; \
  8594. __builtin_neon_vld1_x3_v(&__ret, __p0, 9); \
  8595. \
  8596. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  8597. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  8598. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  8599. __ret; \
  8600. })
  8601. #endif
  8602. #ifdef __LITTLE_ENDIAN__
  8603. #define vld1_s32_x3(__p0) __extension__ ({ \
  8604. int32x2x3_t __ret; \
  8605. __builtin_neon_vld1_x3_v(&__ret, __p0, 2); \
  8606. __ret; \
  8607. })
  8608. #else
  8609. #define vld1_s32_x3(__p0) __extension__ ({ \
  8610. int32x2x3_t __ret; \
  8611. __builtin_neon_vld1_x3_v(&__ret, __p0, 2); \
  8612. \
  8613. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  8614. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  8615. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  8616. __ret; \
  8617. })
  8618. #endif
  8619. #ifdef __LITTLE_ENDIAN__
  8620. #define vld1_s64_x3(__p0) __extension__ ({ \
  8621. int64x1x3_t __ret; \
  8622. __builtin_neon_vld1_x3_v(&__ret, __p0, 3); \
  8623. __ret; \
  8624. })
  8625. #else
  8626. #define vld1_s64_x3(__p0) __extension__ ({ \
  8627. int64x1x3_t __ret; \
  8628. __builtin_neon_vld1_x3_v(&__ret, __p0, 3); \
  8629. __ret; \
  8630. })
  8631. #endif
  8632. #ifdef __LITTLE_ENDIAN__
  8633. #define vld1_s16_x3(__p0) __extension__ ({ \
  8634. int16x4x3_t __ret; \
  8635. __builtin_neon_vld1_x3_v(&__ret, __p0, 1); \
  8636. __ret; \
  8637. })
  8638. #else
  8639. #define vld1_s16_x3(__p0) __extension__ ({ \
  8640. int16x4x3_t __ret; \
  8641. __builtin_neon_vld1_x3_v(&__ret, __p0, 1); \
  8642. \
  8643. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  8644. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  8645. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  8646. __ret; \
  8647. })
  8648. #endif
  8649. #ifdef __LITTLE_ENDIAN__
  8650. #define vld1_p8_x4(__p0) __extension__ ({ \
  8651. poly8x8x4_t __ret; \
  8652. __builtin_neon_vld1_x4_v(&__ret, __p0, 4); \
  8653. __ret; \
  8654. })
  8655. #else
  8656. #define vld1_p8_x4(__p0) __extension__ ({ \
  8657. poly8x8x4_t __ret; \
  8658. __builtin_neon_vld1_x4_v(&__ret, __p0, 4); \
  8659. \
  8660. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  8661. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  8662. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  8663. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  8664. __ret; \
  8665. })
  8666. #endif
  8667. #ifdef __LITTLE_ENDIAN__
  8668. #define vld1_p16_x4(__p0) __extension__ ({ \
  8669. poly16x4x4_t __ret; \
  8670. __builtin_neon_vld1_x4_v(&__ret, __p0, 5); \
  8671. __ret; \
  8672. })
  8673. #else
  8674. #define vld1_p16_x4(__p0) __extension__ ({ \
  8675. poly16x4x4_t __ret; \
  8676. __builtin_neon_vld1_x4_v(&__ret, __p0, 5); \
  8677. \
  8678. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  8679. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  8680. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  8681. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 3, 2, 1, 0); \
  8682. __ret; \
  8683. })
  8684. #endif
  8685. #ifdef __LITTLE_ENDIAN__
  8686. #define vld1q_p8_x4(__p0) __extension__ ({ \
  8687. poly8x16x4_t __ret; \
  8688. __builtin_neon_vld1q_x4_v(&__ret, __p0, 36); \
  8689. __ret; \
  8690. })
  8691. #else
  8692. #define vld1q_p8_x4(__p0) __extension__ ({ \
  8693. poly8x16x4_t __ret; \
  8694. __builtin_neon_vld1q_x4_v(&__ret, __p0, 36); \
  8695. \
  8696. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  8697. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  8698. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  8699. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  8700. __ret; \
  8701. })
  8702. #endif
  8703. #ifdef __LITTLE_ENDIAN__
  8704. #define vld1q_p16_x4(__p0) __extension__ ({ \
  8705. poly16x8x4_t __ret; \
  8706. __builtin_neon_vld1q_x4_v(&__ret, __p0, 37); \
  8707. __ret; \
  8708. })
  8709. #else
  8710. #define vld1q_p16_x4(__p0) __extension__ ({ \
  8711. poly16x8x4_t __ret; \
  8712. __builtin_neon_vld1q_x4_v(&__ret, __p0, 37); \
  8713. \
  8714. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  8715. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  8716. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  8717. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  8718. __ret; \
  8719. })
  8720. #endif
  8721. #ifdef __LITTLE_ENDIAN__
  8722. #define vld1q_u8_x4(__p0) __extension__ ({ \
  8723. uint8x16x4_t __ret; \
  8724. __builtin_neon_vld1q_x4_v(&__ret, __p0, 48); \
  8725. __ret; \
  8726. })
  8727. #else
  8728. #define vld1q_u8_x4(__p0) __extension__ ({ \
  8729. uint8x16x4_t __ret; \
  8730. __builtin_neon_vld1q_x4_v(&__ret, __p0, 48); \
  8731. \
  8732. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  8733. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  8734. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  8735. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  8736. __ret; \
  8737. })
  8738. #endif
  8739. #ifdef __LITTLE_ENDIAN__
  8740. #define vld1q_u32_x4(__p0) __extension__ ({ \
  8741. uint32x4x4_t __ret; \
  8742. __builtin_neon_vld1q_x4_v(&__ret, __p0, 50); \
  8743. __ret; \
  8744. })
  8745. #else
  8746. #define vld1q_u32_x4(__p0) __extension__ ({ \
  8747. uint32x4x4_t __ret; \
  8748. __builtin_neon_vld1q_x4_v(&__ret, __p0, 50); \
  8749. \
  8750. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  8751. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  8752. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  8753. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 3, 2, 1, 0); \
  8754. __ret; \
  8755. })
  8756. #endif
  8757. #ifdef __LITTLE_ENDIAN__
  8758. #define vld1q_u64_x4(__p0) __extension__ ({ \
  8759. uint64x2x4_t __ret; \
  8760. __builtin_neon_vld1q_x4_v(&__ret, __p0, 51); \
  8761. __ret; \
  8762. })
  8763. #else
  8764. #define vld1q_u64_x4(__p0) __extension__ ({ \
  8765. uint64x2x4_t __ret; \
  8766. __builtin_neon_vld1q_x4_v(&__ret, __p0, 51); \
  8767. \
  8768. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  8769. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  8770. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  8771. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 1, 0); \
  8772. __ret; \
  8773. })
  8774. #endif
  8775. #ifdef __LITTLE_ENDIAN__
  8776. #define vld1q_u16_x4(__p0) __extension__ ({ \
  8777. uint16x8x4_t __ret; \
  8778. __builtin_neon_vld1q_x4_v(&__ret, __p0, 49); \
  8779. __ret; \
  8780. })
  8781. #else
  8782. #define vld1q_u16_x4(__p0) __extension__ ({ \
  8783. uint16x8x4_t __ret; \
  8784. __builtin_neon_vld1q_x4_v(&__ret, __p0, 49); \
  8785. \
  8786. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  8787. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  8788. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  8789. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  8790. __ret; \
  8791. })
  8792. #endif
  8793. #ifdef __LITTLE_ENDIAN__
  8794. #define vld1q_s8_x4(__p0) __extension__ ({ \
  8795. int8x16x4_t __ret; \
  8796. __builtin_neon_vld1q_x4_v(&__ret, __p0, 32); \
  8797. __ret; \
  8798. })
  8799. #else
  8800. #define vld1q_s8_x4(__p0) __extension__ ({ \
  8801. int8x16x4_t __ret; \
  8802. __builtin_neon_vld1q_x4_v(&__ret, __p0, 32); \
  8803. \
  8804. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  8805. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  8806. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  8807. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  8808. __ret; \
  8809. })
  8810. #endif
  8811. #ifdef __LITTLE_ENDIAN__
  8812. #define vld1q_f32_x4(__p0) __extension__ ({ \
  8813. float32x4x4_t __ret; \
  8814. __builtin_neon_vld1q_x4_v(&__ret, __p0, 41); \
  8815. __ret; \
  8816. })
  8817. #else
  8818. #define vld1q_f32_x4(__p0) __extension__ ({ \
  8819. float32x4x4_t __ret; \
  8820. __builtin_neon_vld1q_x4_v(&__ret, __p0, 41); \
  8821. \
  8822. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  8823. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  8824. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  8825. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 3, 2, 1, 0); \
  8826. __ret; \
  8827. })
  8828. #endif
  8829. #ifdef __LITTLE_ENDIAN__
  8830. #define vld1q_s32_x4(__p0) __extension__ ({ \
  8831. int32x4x4_t __ret; \
  8832. __builtin_neon_vld1q_x4_v(&__ret, __p0, 34); \
  8833. __ret; \
  8834. })
  8835. #else
  8836. #define vld1q_s32_x4(__p0) __extension__ ({ \
  8837. int32x4x4_t __ret; \
  8838. __builtin_neon_vld1q_x4_v(&__ret, __p0, 34); \
  8839. \
  8840. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  8841. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  8842. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  8843. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 3, 2, 1, 0); \
  8844. __ret; \
  8845. })
  8846. #endif
  8847. #ifdef __LITTLE_ENDIAN__
  8848. #define vld1q_s64_x4(__p0) __extension__ ({ \
  8849. int64x2x4_t __ret; \
  8850. __builtin_neon_vld1q_x4_v(&__ret, __p0, 35); \
  8851. __ret; \
  8852. })
  8853. #else
  8854. #define vld1q_s64_x4(__p0) __extension__ ({ \
  8855. int64x2x4_t __ret; \
  8856. __builtin_neon_vld1q_x4_v(&__ret, __p0, 35); \
  8857. \
  8858. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  8859. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  8860. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  8861. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 1, 0); \
  8862. __ret; \
  8863. })
  8864. #endif
  8865. #ifdef __LITTLE_ENDIAN__
  8866. #define vld1q_s16_x4(__p0) __extension__ ({ \
  8867. int16x8x4_t __ret; \
  8868. __builtin_neon_vld1q_x4_v(&__ret, __p0, 33); \
  8869. __ret; \
  8870. })
  8871. #else
  8872. #define vld1q_s16_x4(__p0) __extension__ ({ \
  8873. int16x8x4_t __ret; \
  8874. __builtin_neon_vld1q_x4_v(&__ret, __p0, 33); \
  8875. \
  8876. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  8877. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  8878. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  8879. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  8880. __ret; \
  8881. })
  8882. #endif
  8883. #ifdef __LITTLE_ENDIAN__
  8884. #define vld1_u8_x4(__p0) __extension__ ({ \
  8885. uint8x8x4_t __ret; \
  8886. __builtin_neon_vld1_x4_v(&__ret, __p0, 16); \
  8887. __ret; \
  8888. })
  8889. #else
  8890. #define vld1_u8_x4(__p0) __extension__ ({ \
  8891. uint8x8x4_t __ret; \
  8892. __builtin_neon_vld1_x4_v(&__ret, __p0, 16); \
  8893. \
  8894. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  8895. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  8896. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  8897. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  8898. __ret; \
  8899. })
  8900. #endif
  8901. #ifdef __LITTLE_ENDIAN__
  8902. #define vld1_u32_x4(__p0) __extension__ ({ \
  8903. uint32x2x4_t __ret; \
  8904. __builtin_neon_vld1_x4_v(&__ret, __p0, 18); \
  8905. __ret; \
  8906. })
  8907. #else
  8908. #define vld1_u32_x4(__p0) __extension__ ({ \
  8909. uint32x2x4_t __ret; \
  8910. __builtin_neon_vld1_x4_v(&__ret, __p0, 18); \
  8911. \
  8912. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  8913. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  8914. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  8915. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 1, 0); \
  8916. __ret; \
  8917. })
  8918. #endif
  8919. #ifdef __LITTLE_ENDIAN__
  8920. #define vld1_u64_x4(__p0) __extension__ ({ \
  8921. uint64x1x4_t __ret; \
  8922. __builtin_neon_vld1_x4_v(&__ret, __p0, 19); \
  8923. __ret; \
  8924. })
  8925. #else
  8926. #define vld1_u64_x4(__p0) __extension__ ({ \
  8927. uint64x1x4_t __ret; \
  8928. __builtin_neon_vld1_x4_v(&__ret, __p0, 19); \
  8929. __ret; \
  8930. })
  8931. #endif
  8932. #ifdef __LITTLE_ENDIAN__
  8933. #define vld1_u16_x4(__p0) __extension__ ({ \
  8934. uint16x4x4_t __ret; \
  8935. __builtin_neon_vld1_x4_v(&__ret, __p0, 17); \
  8936. __ret; \
  8937. })
  8938. #else
  8939. #define vld1_u16_x4(__p0) __extension__ ({ \
  8940. uint16x4x4_t __ret; \
  8941. __builtin_neon_vld1_x4_v(&__ret, __p0, 17); \
  8942. \
  8943. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  8944. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  8945. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  8946. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 3, 2, 1, 0); \
  8947. __ret; \
  8948. })
  8949. #endif
  8950. #ifdef __LITTLE_ENDIAN__
  8951. #define vld1_s8_x4(__p0) __extension__ ({ \
  8952. int8x8x4_t __ret; \
  8953. __builtin_neon_vld1_x4_v(&__ret, __p0, 0); \
  8954. __ret; \
  8955. })
  8956. #else
  8957. #define vld1_s8_x4(__p0) __extension__ ({ \
  8958. int8x8x4_t __ret; \
  8959. __builtin_neon_vld1_x4_v(&__ret, __p0, 0); \
  8960. \
  8961. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  8962. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  8963. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  8964. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  8965. __ret; \
  8966. })
  8967. #endif
  8968. #ifdef __LITTLE_ENDIAN__
  8969. #define vld1_f32_x4(__p0) __extension__ ({ \
  8970. float32x2x4_t __ret; \
  8971. __builtin_neon_vld1_x4_v(&__ret, __p0, 9); \
  8972. __ret; \
  8973. })
  8974. #else
  8975. #define vld1_f32_x4(__p0) __extension__ ({ \
  8976. float32x2x4_t __ret; \
  8977. __builtin_neon_vld1_x4_v(&__ret, __p0, 9); \
  8978. \
  8979. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  8980. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  8981. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  8982. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 1, 0); \
  8983. __ret; \
  8984. })
  8985. #endif
  8986. #ifdef __LITTLE_ENDIAN__
  8987. #define vld1_s32_x4(__p0) __extension__ ({ \
  8988. int32x2x4_t __ret; \
  8989. __builtin_neon_vld1_x4_v(&__ret, __p0, 2); \
  8990. __ret; \
  8991. })
  8992. #else
  8993. #define vld1_s32_x4(__p0) __extension__ ({ \
  8994. int32x2x4_t __ret; \
  8995. __builtin_neon_vld1_x4_v(&__ret, __p0, 2); \
  8996. \
  8997. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  8998. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  8999. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  9000. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 1, 0); \
  9001. __ret; \
  9002. })
  9003. #endif
  9004. #ifdef __LITTLE_ENDIAN__
  9005. #define vld1_s64_x4(__p0) __extension__ ({ \
  9006. int64x1x4_t __ret; \
  9007. __builtin_neon_vld1_x4_v(&__ret, __p0, 3); \
  9008. __ret; \
  9009. })
  9010. #else
  9011. #define vld1_s64_x4(__p0) __extension__ ({ \
  9012. int64x1x4_t __ret; \
  9013. __builtin_neon_vld1_x4_v(&__ret, __p0, 3); \
  9014. __ret; \
  9015. })
  9016. #endif
  9017. #ifdef __LITTLE_ENDIAN__
  9018. #define vld1_s16_x4(__p0) __extension__ ({ \
  9019. int16x4x4_t __ret; \
  9020. __builtin_neon_vld1_x4_v(&__ret, __p0, 1); \
  9021. __ret; \
  9022. })
  9023. #else
  9024. #define vld1_s16_x4(__p0) __extension__ ({ \
  9025. int16x4x4_t __ret; \
  9026. __builtin_neon_vld1_x4_v(&__ret, __p0, 1); \
  9027. \
  9028. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  9029. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  9030. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  9031. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 3, 2, 1, 0); \
  9032. __ret; \
  9033. })
  9034. #endif
  9035. #ifdef __LITTLE_ENDIAN__
  9036. #define vld2_p8(__p0) __extension__ ({ \
  9037. poly8x8x2_t __ret; \
  9038. __builtin_neon_vld2_v(&__ret, __p0, 4); \
  9039. __ret; \
  9040. })
  9041. #else
  9042. #define vld2_p8(__p0) __extension__ ({ \
  9043. poly8x8x2_t __ret; \
  9044. __builtin_neon_vld2_v(&__ret, __p0, 4); \
  9045. \
  9046. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  9047. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  9048. __ret; \
  9049. })
  9050. #endif
  9051. #ifdef __LITTLE_ENDIAN__
  9052. #define vld2_p16(__p0) __extension__ ({ \
  9053. poly16x4x2_t __ret; \
  9054. __builtin_neon_vld2_v(&__ret, __p0, 5); \
  9055. __ret; \
  9056. })
  9057. #else
  9058. #define vld2_p16(__p0) __extension__ ({ \
  9059. poly16x4x2_t __ret; \
  9060. __builtin_neon_vld2_v(&__ret, __p0, 5); \
  9061. \
  9062. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  9063. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  9064. __ret; \
  9065. })
  9066. #endif
  9067. #ifdef __LITTLE_ENDIAN__
  9068. #define vld2q_p8(__p0) __extension__ ({ \
  9069. poly8x16x2_t __ret; \
  9070. __builtin_neon_vld2q_v(&__ret, __p0, 36); \
  9071. __ret; \
  9072. })
  9073. #else
  9074. #define vld2q_p8(__p0) __extension__ ({ \
  9075. poly8x16x2_t __ret; \
  9076. __builtin_neon_vld2q_v(&__ret, __p0, 36); \
  9077. \
  9078. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  9079. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  9080. __ret; \
  9081. })
  9082. #endif
  9083. #ifdef __LITTLE_ENDIAN__
  9084. #define vld2q_p16(__p0) __extension__ ({ \
  9085. poly16x8x2_t __ret; \
  9086. __builtin_neon_vld2q_v(&__ret, __p0, 37); \
  9087. __ret; \
  9088. })
  9089. #else
  9090. #define vld2q_p16(__p0) __extension__ ({ \
  9091. poly16x8x2_t __ret; \
  9092. __builtin_neon_vld2q_v(&__ret, __p0, 37); \
  9093. \
  9094. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  9095. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  9096. __ret; \
  9097. })
  9098. #endif
  9099. #ifdef __LITTLE_ENDIAN__
  9100. #define vld2q_u8(__p0) __extension__ ({ \
  9101. uint8x16x2_t __ret; \
  9102. __builtin_neon_vld2q_v(&__ret, __p0, 48); \
  9103. __ret; \
  9104. })
  9105. #else
  9106. #define vld2q_u8(__p0) __extension__ ({ \
  9107. uint8x16x2_t __ret; \
  9108. __builtin_neon_vld2q_v(&__ret, __p0, 48); \
  9109. \
  9110. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  9111. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  9112. __ret; \
  9113. })
  9114. #endif
  9115. #ifdef __LITTLE_ENDIAN__
  9116. #define vld2q_u32(__p0) __extension__ ({ \
  9117. uint32x4x2_t __ret; \
  9118. __builtin_neon_vld2q_v(&__ret, __p0, 50); \
  9119. __ret; \
  9120. })
  9121. #else
  9122. #define vld2q_u32(__p0) __extension__ ({ \
  9123. uint32x4x2_t __ret; \
  9124. __builtin_neon_vld2q_v(&__ret, __p0, 50); \
  9125. \
  9126. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  9127. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  9128. __ret; \
  9129. })
  9130. #endif
  9131. #ifdef __LITTLE_ENDIAN__
  9132. #define vld2q_u16(__p0) __extension__ ({ \
  9133. uint16x8x2_t __ret; \
  9134. __builtin_neon_vld2q_v(&__ret, __p0, 49); \
  9135. __ret; \
  9136. })
  9137. #else
  9138. #define vld2q_u16(__p0) __extension__ ({ \
  9139. uint16x8x2_t __ret; \
  9140. __builtin_neon_vld2q_v(&__ret, __p0, 49); \
  9141. \
  9142. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  9143. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  9144. __ret; \
  9145. })
  9146. #endif
  9147. #ifdef __LITTLE_ENDIAN__
  9148. #define vld2q_s8(__p0) __extension__ ({ \
  9149. int8x16x2_t __ret; \
  9150. __builtin_neon_vld2q_v(&__ret, __p0, 32); \
  9151. __ret; \
  9152. })
  9153. #else
  9154. #define vld2q_s8(__p0) __extension__ ({ \
  9155. int8x16x2_t __ret; \
  9156. __builtin_neon_vld2q_v(&__ret, __p0, 32); \
  9157. \
  9158. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  9159. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  9160. __ret; \
  9161. })
  9162. #endif
  9163. #ifdef __LITTLE_ENDIAN__
  9164. #define vld2q_f32(__p0) __extension__ ({ \
  9165. float32x4x2_t __ret; \
  9166. __builtin_neon_vld2q_v(&__ret, __p0, 41); \
  9167. __ret; \
  9168. })
  9169. #else
  9170. #define vld2q_f32(__p0) __extension__ ({ \
  9171. float32x4x2_t __ret; \
  9172. __builtin_neon_vld2q_v(&__ret, __p0, 41); \
  9173. \
  9174. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  9175. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  9176. __ret; \
  9177. })
  9178. #endif
  9179. #ifdef __LITTLE_ENDIAN__
  9180. #define vld2q_s32(__p0) __extension__ ({ \
  9181. int32x4x2_t __ret; \
  9182. __builtin_neon_vld2q_v(&__ret, __p0, 34); \
  9183. __ret; \
  9184. })
  9185. #else
  9186. #define vld2q_s32(__p0) __extension__ ({ \
  9187. int32x4x2_t __ret; \
  9188. __builtin_neon_vld2q_v(&__ret, __p0, 34); \
  9189. \
  9190. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  9191. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  9192. __ret; \
  9193. })
  9194. #endif
  9195. #ifdef __LITTLE_ENDIAN__
  9196. #define vld2q_s16(__p0) __extension__ ({ \
  9197. int16x8x2_t __ret; \
  9198. __builtin_neon_vld2q_v(&__ret, __p0, 33); \
  9199. __ret; \
  9200. })
  9201. #else
  9202. #define vld2q_s16(__p0) __extension__ ({ \
  9203. int16x8x2_t __ret; \
  9204. __builtin_neon_vld2q_v(&__ret, __p0, 33); \
  9205. \
  9206. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  9207. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  9208. __ret; \
  9209. })
  9210. #endif
  9211. #ifdef __LITTLE_ENDIAN__
  9212. #define vld2_u8(__p0) __extension__ ({ \
  9213. uint8x8x2_t __ret; \
  9214. __builtin_neon_vld2_v(&__ret, __p0, 16); \
  9215. __ret; \
  9216. })
  9217. #else
  9218. #define vld2_u8(__p0) __extension__ ({ \
  9219. uint8x8x2_t __ret; \
  9220. __builtin_neon_vld2_v(&__ret, __p0, 16); \
  9221. \
  9222. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  9223. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  9224. __ret; \
  9225. })
  9226. #endif
  9227. #ifdef __LITTLE_ENDIAN__
  9228. #define vld2_u32(__p0) __extension__ ({ \
  9229. uint32x2x2_t __ret; \
  9230. __builtin_neon_vld2_v(&__ret, __p0, 18); \
  9231. __ret; \
  9232. })
  9233. #else
  9234. #define vld2_u32(__p0) __extension__ ({ \
  9235. uint32x2x2_t __ret; \
  9236. __builtin_neon_vld2_v(&__ret, __p0, 18); \
  9237. \
  9238. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  9239. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  9240. __ret; \
  9241. })
  9242. #endif
  9243. #ifdef __LITTLE_ENDIAN__
  9244. #define vld2_u64(__p0) __extension__ ({ \
  9245. uint64x1x2_t __ret; \
  9246. __builtin_neon_vld2_v(&__ret, __p0, 19); \
  9247. __ret; \
  9248. })
  9249. #else
  9250. #define vld2_u64(__p0) __extension__ ({ \
  9251. uint64x1x2_t __ret; \
  9252. __builtin_neon_vld2_v(&__ret, __p0, 19); \
  9253. __ret; \
  9254. })
  9255. #endif
  9256. #ifdef __LITTLE_ENDIAN__
  9257. #define vld2_u16(__p0) __extension__ ({ \
  9258. uint16x4x2_t __ret; \
  9259. __builtin_neon_vld2_v(&__ret, __p0, 17); \
  9260. __ret; \
  9261. })
  9262. #else
  9263. #define vld2_u16(__p0) __extension__ ({ \
  9264. uint16x4x2_t __ret; \
  9265. __builtin_neon_vld2_v(&__ret, __p0, 17); \
  9266. \
  9267. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  9268. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  9269. __ret; \
  9270. })
  9271. #endif
  9272. #ifdef __LITTLE_ENDIAN__
  9273. #define vld2_s8(__p0) __extension__ ({ \
  9274. int8x8x2_t __ret; \
  9275. __builtin_neon_vld2_v(&__ret, __p0, 0); \
  9276. __ret; \
  9277. })
  9278. #else
  9279. #define vld2_s8(__p0) __extension__ ({ \
  9280. int8x8x2_t __ret; \
  9281. __builtin_neon_vld2_v(&__ret, __p0, 0); \
  9282. \
  9283. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  9284. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  9285. __ret; \
  9286. })
  9287. #endif
  9288. #ifdef __LITTLE_ENDIAN__
  9289. #define vld2_f32(__p0) __extension__ ({ \
  9290. float32x2x2_t __ret; \
  9291. __builtin_neon_vld2_v(&__ret, __p0, 9); \
  9292. __ret; \
  9293. })
  9294. #else
  9295. #define vld2_f32(__p0) __extension__ ({ \
  9296. float32x2x2_t __ret; \
  9297. __builtin_neon_vld2_v(&__ret, __p0, 9); \
  9298. \
  9299. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  9300. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  9301. __ret; \
  9302. })
  9303. #endif
  9304. #ifdef __LITTLE_ENDIAN__
  9305. #define vld2_s32(__p0) __extension__ ({ \
  9306. int32x2x2_t __ret; \
  9307. __builtin_neon_vld2_v(&__ret, __p0, 2); \
  9308. __ret; \
  9309. })
  9310. #else
  9311. #define vld2_s32(__p0) __extension__ ({ \
  9312. int32x2x2_t __ret; \
  9313. __builtin_neon_vld2_v(&__ret, __p0, 2); \
  9314. \
  9315. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  9316. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  9317. __ret; \
  9318. })
  9319. #endif
  9320. #ifdef __LITTLE_ENDIAN__
  9321. #define vld2_s64(__p0) __extension__ ({ \
  9322. int64x1x2_t __ret; \
  9323. __builtin_neon_vld2_v(&__ret, __p0, 3); \
  9324. __ret; \
  9325. })
  9326. #else
  9327. #define vld2_s64(__p0) __extension__ ({ \
  9328. int64x1x2_t __ret; \
  9329. __builtin_neon_vld2_v(&__ret, __p0, 3); \
  9330. __ret; \
  9331. })
  9332. #endif
  9333. #ifdef __LITTLE_ENDIAN__
  9334. #define vld2_s16(__p0) __extension__ ({ \
  9335. int16x4x2_t __ret; \
  9336. __builtin_neon_vld2_v(&__ret, __p0, 1); \
  9337. __ret; \
  9338. })
  9339. #else
  9340. #define vld2_s16(__p0) __extension__ ({ \
  9341. int16x4x2_t __ret; \
  9342. __builtin_neon_vld2_v(&__ret, __p0, 1); \
  9343. \
  9344. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  9345. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  9346. __ret; \
  9347. })
  9348. #endif
  9349. #ifdef __LITTLE_ENDIAN__
  9350. #define vld2_dup_p8(__p0) __extension__ ({ \
  9351. poly8x8x2_t __ret; \
  9352. __builtin_neon_vld2_dup_v(&__ret, __p0, 4); \
  9353. __ret; \
  9354. })
  9355. #else
  9356. #define vld2_dup_p8(__p0) __extension__ ({ \
  9357. poly8x8x2_t __ret; \
  9358. __builtin_neon_vld2_dup_v(&__ret, __p0, 4); \
  9359. \
  9360. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  9361. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  9362. __ret; \
  9363. })
  9364. #endif
  9365. #ifdef __LITTLE_ENDIAN__
  9366. #define vld2_dup_p16(__p0) __extension__ ({ \
  9367. poly16x4x2_t __ret; \
  9368. __builtin_neon_vld2_dup_v(&__ret, __p0, 5); \
  9369. __ret; \
  9370. })
  9371. #else
  9372. #define vld2_dup_p16(__p0) __extension__ ({ \
  9373. poly16x4x2_t __ret; \
  9374. __builtin_neon_vld2_dup_v(&__ret, __p0, 5); \
  9375. \
  9376. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  9377. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  9378. __ret; \
  9379. })
  9380. #endif
  9381. #ifdef __LITTLE_ENDIAN__
  9382. #define vld2q_dup_p8(__p0) __extension__ ({ \
  9383. poly8x16x2_t __ret; \
  9384. __builtin_neon_vld2q_dup_v(&__ret, __p0, 36); \
  9385. __ret; \
  9386. })
  9387. #else
  9388. #define vld2q_dup_p8(__p0) __extension__ ({ \
  9389. poly8x16x2_t __ret; \
  9390. __builtin_neon_vld2q_dup_v(&__ret, __p0, 36); \
  9391. \
  9392. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  9393. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  9394. __ret; \
  9395. })
  9396. #endif
  9397. #ifdef __LITTLE_ENDIAN__
  9398. #define vld2q_dup_p16(__p0) __extension__ ({ \
  9399. poly16x8x2_t __ret; \
  9400. __builtin_neon_vld2q_dup_v(&__ret, __p0, 37); \
  9401. __ret; \
  9402. })
  9403. #else
  9404. #define vld2q_dup_p16(__p0) __extension__ ({ \
  9405. poly16x8x2_t __ret; \
  9406. __builtin_neon_vld2q_dup_v(&__ret, __p0, 37); \
  9407. \
  9408. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  9409. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  9410. __ret; \
  9411. })
  9412. #endif
  9413. #ifdef __LITTLE_ENDIAN__
  9414. #define vld2q_dup_u8(__p0) __extension__ ({ \
  9415. uint8x16x2_t __ret; \
  9416. __builtin_neon_vld2q_dup_v(&__ret, __p0, 48); \
  9417. __ret; \
  9418. })
  9419. #else
  9420. #define vld2q_dup_u8(__p0) __extension__ ({ \
  9421. uint8x16x2_t __ret; \
  9422. __builtin_neon_vld2q_dup_v(&__ret, __p0, 48); \
  9423. \
  9424. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  9425. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  9426. __ret; \
  9427. })
  9428. #endif
  9429. #ifdef __LITTLE_ENDIAN__
  9430. #define vld2q_dup_u32(__p0) __extension__ ({ \
  9431. uint32x4x2_t __ret; \
  9432. __builtin_neon_vld2q_dup_v(&__ret, __p0, 50); \
  9433. __ret; \
  9434. })
  9435. #else
  9436. #define vld2q_dup_u32(__p0) __extension__ ({ \
  9437. uint32x4x2_t __ret; \
  9438. __builtin_neon_vld2q_dup_v(&__ret, __p0, 50); \
  9439. \
  9440. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  9441. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  9442. __ret; \
  9443. })
  9444. #endif
  9445. #ifdef __LITTLE_ENDIAN__
  9446. #define vld2q_dup_u64(__p0) __extension__ ({ \
  9447. uint64x2x2_t __ret; \
  9448. __builtin_neon_vld2q_dup_v(&__ret, __p0, 51); \
  9449. __ret; \
  9450. })
  9451. #else
  9452. #define vld2q_dup_u64(__p0) __extension__ ({ \
  9453. uint64x2x2_t __ret; \
  9454. __builtin_neon_vld2q_dup_v(&__ret, __p0, 51); \
  9455. \
  9456. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  9457. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  9458. __ret; \
  9459. })
  9460. #endif
  9461. #ifdef __LITTLE_ENDIAN__
  9462. #define vld2q_dup_u16(__p0) __extension__ ({ \
  9463. uint16x8x2_t __ret; \
  9464. __builtin_neon_vld2q_dup_v(&__ret, __p0, 49); \
  9465. __ret; \
  9466. })
  9467. #else
  9468. #define vld2q_dup_u16(__p0) __extension__ ({ \
  9469. uint16x8x2_t __ret; \
  9470. __builtin_neon_vld2q_dup_v(&__ret, __p0, 49); \
  9471. \
  9472. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  9473. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  9474. __ret; \
  9475. })
  9476. #endif
  9477. #ifdef __LITTLE_ENDIAN__
  9478. #define vld2q_dup_s8(__p0) __extension__ ({ \
  9479. int8x16x2_t __ret; \
  9480. __builtin_neon_vld2q_dup_v(&__ret, __p0, 32); \
  9481. __ret; \
  9482. })
  9483. #else
  9484. #define vld2q_dup_s8(__p0) __extension__ ({ \
  9485. int8x16x2_t __ret; \
  9486. __builtin_neon_vld2q_dup_v(&__ret, __p0, 32); \
  9487. \
  9488. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  9489. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  9490. __ret; \
  9491. })
  9492. #endif
  9493. #ifdef __LITTLE_ENDIAN__
  9494. #define vld2q_dup_f32(__p0) __extension__ ({ \
  9495. float32x4x2_t __ret; \
  9496. __builtin_neon_vld2q_dup_v(&__ret, __p0, 41); \
  9497. __ret; \
  9498. })
  9499. #else
  9500. #define vld2q_dup_f32(__p0) __extension__ ({ \
  9501. float32x4x2_t __ret; \
  9502. __builtin_neon_vld2q_dup_v(&__ret, __p0, 41); \
  9503. \
  9504. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  9505. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  9506. __ret; \
  9507. })
  9508. #endif
  9509. #ifdef __LITTLE_ENDIAN__
  9510. #define vld2q_dup_s32(__p0) __extension__ ({ \
  9511. int32x4x2_t __ret; \
  9512. __builtin_neon_vld2q_dup_v(&__ret, __p0, 34); \
  9513. __ret; \
  9514. })
  9515. #else
  9516. #define vld2q_dup_s32(__p0) __extension__ ({ \
  9517. int32x4x2_t __ret; \
  9518. __builtin_neon_vld2q_dup_v(&__ret, __p0, 34); \
  9519. \
  9520. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  9521. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  9522. __ret; \
  9523. })
  9524. #endif
  9525. #ifdef __LITTLE_ENDIAN__
  9526. #define vld2q_dup_s64(__p0) __extension__ ({ \
  9527. int64x2x2_t __ret; \
  9528. __builtin_neon_vld2q_dup_v(&__ret, __p0, 35); \
  9529. __ret; \
  9530. })
  9531. #else
  9532. #define vld2q_dup_s64(__p0) __extension__ ({ \
  9533. int64x2x2_t __ret; \
  9534. __builtin_neon_vld2q_dup_v(&__ret, __p0, 35); \
  9535. \
  9536. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  9537. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  9538. __ret; \
  9539. })
  9540. #endif
  9541. #ifdef __LITTLE_ENDIAN__
  9542. #define vld2q_dup_s16(__p0) __extension__ ({ \
  9543. int16x8x2_t __ret; \
  9544. __builtin_neon_vld2q_dup_v(&__ret, __p0, 33); \
  9545. __ret; \
  9546. })
  9547. #else
  9548. #define vld2q_dup_s16(__p0) __extension__ ({ \
  9549. int16x8x2_t __ret; \
  9550. __builtin_neon_vld2q_dup_v(&__ret, __p0, 33); \
  9551. \
  9552. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  9553. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  9554. __ret; \
  9555. })
  9556. #endif
  9557. #ifdef __LITTLE_ENDIAN__
  9558. #define vld2_dup_u8(__p0) __extension__ ({ \
  9559. uint8x8x2_t __ret; \
  9560. __builtin_neon_vld2_dup_v(&__ret, __p0, 16); \
  9561. __ret; \
  9562. })
  9563. #else
  9564. #define vld2_dup_u8(__p0) __extension__ ({ \
  9565. uint8x8x2_t __ret; \
  9566. __builtin_neon_vld2_dup_v(&__ret, __p0, 16); \
  9567. \
  9568. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  9569. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  9570. __ret; \
  9571. })
  9572. #endif
  9573. #ifdef __LITTLE_ENDIAN__
  9574. #define vld2_dup_u32(__p0) __extension__ ({ \
  9575. uint32x2x2_t __ret; \
  9576. __builtin_neon_vld2_dup_v(&__ret, __p0, 18); \
  9577. __ret; \
  9578. })
  9579. #else
  9580. #define vld2_dup_u32(__p0) __extension__ ({ \
  9581. uint32x2x2_t __ret; \
  9582. __builtin_neon_vld2_dup_v(&__ret, __p0, 18); \
  9583. \
  9584. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  9585. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  9586. __ret; \
  9587. })
  9588. #endif
  9589. #ifdef __LITTLE_ENDIAN__
  9590. #define vld2_dup_u64(__p0) __extension__ ({ \
  9591. uint64x1x2_t __ret; \
  9592. __builtin_neon_vld2_dup_v(&__ret, __p0, 19); \
  9593. __ret; \
  9594. })
  9595. #else
  9596. #define vld2_dup_u64(__p0) __extension__ ({ \
  9597. uint64x1x2_t __ret; \
  9598. __builtin_neon_vld2_dup_v(&__ret, __p0, 19); \
  9599. __ret; \
  9600. })
  9601. #endif
  9602. #ifdef __LITTLE_ENDIAN__
  9603. #define vld2_dup_u16(__p0) __extension__ ({ \
  9604. uint16x4x2_t __ret; \
  9605. __builtin_neon_vld2_dup_v(&__ret, __p0, 17); \
  9606. __ret; \
  9607. })
  9608. #else
  9609. #define vld2_dup_u16(__p0) __extension__ ({ \
  9610. uint16x4x2_t __ret; \
  9611. __builtin_neon_vld2_dup_v(&__ret, __p0, 17); \
  9612. \
  9613. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  9614. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  9615. __ret; \
  9616. })
  9617. #endif
  9618. #ifdef __LITTLE_ENDIAN__
  9619. #define vld2_dup_s8(__p0) __extension__ ({ \
  9620. int8x8x2_t __ret; \
  9621. __builtin_neon_vld2_dup_v(&__ret, __p0, 0); \
  9622. __ret; \
  9623. })
  9624. #else
  9625. #define vld2_dup_s8(__p0) __extension__ ({ \
  9626. int8x8x2_t __ret; \
  9627. __builtin_neon_vld2_dup_v(&__ret, __p0, 0); \
  9628. \
  9629. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  9630. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  9631. __ret; \
  9632. })
  9633. #endif
  9634. #ifdef __LITTLE_ENDIAN__
  9635. #define vld2_dup_f32(__p0) __extension__ ({ \
  9636. float32x2x2_t __ret; \
  9637. __builtin_neon_vld2_dup_v(&__ret, __p0, 9); \
  9638. __ret; \
  9639. })
  9640. #else
  9641. #define vld2_dup_f32(__p0) __extension__ ({ \
  9642. float32x2x2_t __ret; \
  9643. __builtin_neon_vld2_dup_v(&__ret, __p0, 9); \
  9644. \
  9645. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  9646. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  9647. __ret; \
  9648. })
  9649. #endif
  9650. #ifdef __LITTLE_ENDIAN__
  9651. #define vld2_dup_s32(__p0) __extension__ ({ \
  9652. int32x2x2_t __ret; \
  9653. __builtin_neon_vld2_dup_v(&__ret, __p0, 2); \
  9654. __ret; \
  9655. })
  9656. #else
  9657. #define vld2_dup_s32(__p0) __extension__ ({ \
  9658. int32x2x2_t __ret; \
  9659. __builtin_neon_vld2_dup_v(&__ret, __p0, 2); \
  9660. \
  9661. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  9662. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  9663. __ret; \
  9664. })
  9665. #endif
  9666. #ifdef __LITTLE_ENDIAN__
  9667. #define vld2_dup_s64(__p0) __extension__ ({ \
  9668. int64x1x2_t __ret; \
  9669. __builtin_neon_vld2_dup_v(&__ret, __p0, 3); \
  9670. __ret; \
  9671. })
  9672. #else
  9673. #define vld2_dup_s64(__p0) __extension__ ({ \
  9674. int64x1x2_t __ret; \
  9675. __builtin_neon_vld2_dup_v(&__ret, __p0, 3); \
  9676. __ret; \
  9677. })
  9678. #endif
  9679. #ifdef __LITTLE_ENDIAN__
  9680. #define vld2_dup_s16(__p0) __extension__ ({ \
  9681. int16x4x2_t __ret; \
  9682. __builtin_neon_vld2_dup_v(&__ret, __p0, 1); \
  9683. __ret; \
  9684. })
  9685. #else
  9686. #define vld2_dup_s16(__p0) __extension__ ({ \
  9687. int16x4x2_t __ret; \
  9688. __builtin_neon_vld2_dup_v(&__ret, __p0, 1); \
  9689. \
  9690. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  9691. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  9692. __ret; \
  9693. })
  9694. #endif
  9695. #ifdef __LITTLE_ENDIAN__
  9696. #define vld2_lane_p8(__p0, __p1, __p2) __extension__ ({ \
  9697. poly8x8x2_t __s1 = __p1; \
  9698. poly8x8x2_t __ret; \
  9699. __builtin_neon_vld2_lane_v(&__ret, __p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], __p2, 4); \
  9700. __ret; \
  9701. })
  9702. #else
  9703. #define vld2_lane_p8(__p0, __p1, __p2) __extension__ ({ \
  9704. poly8x8x2_t __s1 = __p1; \
  9705. poly8x8x2_t __rev1; \
  9706. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  9707. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  9708. poly8x8x2_t __ret; \
  9709. __builtin_neon_vld2_lane_v(&__ret, __p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], __p2, 4); \
  9710. \
  9711. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  9712. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  9713. __ret; \
  9714. })
  9715. #endif
  9716. #ifdef __LITTLE_ENDIAN__
  9717. #define vld2_lane_p16(__p0, __p1, __p2) __extension__ ({ \
  9718. poly16x4x2_t __s1 = __p1; \
  9719. poly16x4x2_t __ret; \
  9720. __builtin_neon_vld2_lane_v(&__ret, __p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], __p2, 5); \
  9721. __ret; \
  9722. })
  9723. #else
  9724. #define vld2_lane_p16(__p0, __p1, __p2) __extension__ ({ \
  9725. poly16x4x2_t __s1 = __p1; \
  9726. poly16x4x2_t __rev1; \
  9727. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  9728. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  9729. poly16x4x2_t __ret; \
  9730. __builtin_neon_vld2_lane_v(&__ret, __p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], __p2, 5); \
  9731. \
  9732. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  9733. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  9734. __ret; \
  9735. })
  9736. #endif
  9737. #ifdef __LITTLE_ENDIAN__
  9738. #define vld2q_lane_p16(__p0, __p1, __p2) __extension__ ({ \
  9739. poly16x8x2_t __s1 = __p1; \
  9740. poly16x8x2_t __ret; \
  9741. __builtin_neon_vld2q_lane_v(&__ret, __p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], __p2, 37); \
  9742. __ret; \
  9743. })
  9744. #else
  9745. #define vld2q_lane_p16(__p0, __p1, __p2) __extension__ ({ \
  9746. poly16x8x2_t __s1 = __p1; \
  9747. poly16x8x2_t __rev1; \
  9748. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  9749. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  9750. poly16x8x2_t __ret; \
  9751. __builtin_neon_vld2q_lane_v(&__ret, __p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], __p2, 37); \
  9752. \
  9753. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  9754. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  9755. __ret; \
  9756. })
  9757. #endif
  9758. #ifdef __LITTLE_ENDIAN__
  9759. #define vld2q_lane_u32(__p0, __p1, __p2) __extension__ ({ \
  9760. uint32x4x2_t __s1 = __p1; \
  9761. uint32x4x2_t __ret; \
  9762. __builtin_neon_vld2q_lane_v(&__ret, __p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], __p2, 50); \
  9763. __ret; \
  9764. })
  9765. #else
  9766. #define vld2q_lane_u32(__p0, __p1, __p2) __extension__ ({ \
  9767. uint32x4x2_t __s1 = __p1; \
  9768. uint32x4x2_t __rev1; \
  9769. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  9770. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  9771. uint32x4x2_t __ret; \
  9772. __builtin_neon_vld2q_lane_v(&__ret, __p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], __p2, 50); \
  9773. \
  9774. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  9775. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  9776. __ret; \
  9777. })
  9778. #endif
  9779. #ifdef __LITTLE_ENDIAN__
  9780. #define vld2q_lane_u16(__p0, __p1, __p2) __extension__ ({ \
  9781. uint16x8x2_t __s1 = __p1; \
  9782. uint16x8x2_t __ret; \
  9783. __builtin_neon_vld2q_lane_v(&__ret, __p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], __p2, 49); \
  9784. __ret; \
  9785. })
  9786. #else
  9787. #define vld2q_lane_u16(__p0, __p1, __p2) __extension__ ({ \
  9788. uint16x8x2_t __s1 = __p1; \
  9789. uint16x8x2_t __rev1; \
  9790. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  9791. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  9792. uint16x8x2_t __ret; \
  9793. __builtin_neon_vld2q_lane_v(&__ret, __p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], __p2, 49); \
  9794. \
  9795. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  9796. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  9797. __ret; \
  9798. })
  9799. #endif
  9800. #ifdef __LITTLE_ENDIAN__
  9801. #define vld2q_lane_f32(__p0, __p1, __p2) __extension__ ({ \
  9802. float32x4x2_t __s1 = __p1; \
  9803. float32x4x2_t __ret; \
  9804. __builtin_neon_vld2q_lane_v(&__ret, __p0, __s1.val[0], __s1.val[1], __p2, 41); \
  9805. __ret; \
  9806. })
  9807. #else
  9808. #define vld2q_lane_f32(__p0, __p1, __p2) __extension__ ({ \
  9809. float32x4x2_t __s1 = __p1; \
  9810. float32x4x2_t __rev1; \
  9811. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  9812. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  9813. float32x4x2_t __ret; \
  9814. __builtin_neon_vld2q_lane_v(&__ret, __p0, __rev1.val[0], __rev1.val[1], __p2, 41); \
  9815. \
  9816. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  9817. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  9818. __ret; \
  9819. })
  9820. #endif
  9821. #ifdef __LITTLE_ENDIAN__
  9822. #define vld2q_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  9823. int32x4x2_t __s1 = __p1; \
  9824. int32x4x2_t __ret; \
  9825. __builtin_neon_vld2q_lane_v(&__ret, __p0, __s1.val[0], __s1.val[1], __p2, 34); \
  9826. __ret; \
  9827. })
  9828. #else
  9829. #define vld2q_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  9830. int32x4x2_t __s1 = __p1; \
  9831. int32x4x2_t __rev1; \
  9832. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  9833. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  9834. int32x4x2_t __ret; \
  9835. __builtin_neon_vld2q_lane_v(&__ret, __p0, __rev1.val[0], __rev1.val[1], __p2, 34); \
  9836. \
  9837. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  9838. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  9839. __ret; \
  9840. })
  9841. #endif
  9842. #ifdef __LITTLE_ENDIAN__
  9843. #define vld2q_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  9844. int16x8x2_t __s1 = __p1; \
  9845. int16x8x2_t __ret; \
  9846. __builtin_neon_vld2q_lane_v(&__ret, __p0, __s1.val[0], __s1.val[1], __p2, 33); \
  9847. __ret; \
  9848. })
  9849. #else
  9850. #define vld2q_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  9851. int16x8x2_t __s1 = __p1; \
  9852. int16x8x2_t __rev1; \
  9853. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  9854. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  9855. int16x8x2_t __ret; \
  9856. __builtin_neon_vld2q_lane_v(&__ret, __p0, __rev1.val[0], __rev1.val[1], __p2, 33); \
  9857. \
  9858. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  9859. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  9860. __ret; \
  9861. })
  9862. #endif
  9863. #ifdef __LITTLE_ENDIAN__
  9864. #define vld2_lane_u8(__p0, __p1, __p2) __extension__ ({ \
  9865. uint8x8x2_t __s1 = __p1; \
  9866. uint8x8x2_t __ret; \
  9867. __builtin_neon_vld2_lane_v(&__ret, __p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], __p2, 16); \
  9868. __ret; \
  9869. })
  9870. #else
  9871. #define vld2_lane_u8(__p0, __p1, __p2) __extension__ ({ \
  9872. uint8x8x2_t __s1 = __p1; \
  9873. uint8x8x2_t __rev1; \
  9874. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  9875. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  9876. uint8x8x2_t __ret; \
  9877. __builtin_neon_vld2_lane_v(&__ret, __p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], __p2, 16); \
  9878. \
  9879. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  9880. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  9881. __ret; \
  9882. })
  9883. #endif
  9884. #ifdef __LITTLE_ENDIAN__
  9885. #define vld2_lane_u32(__p0, __p1, __p2) __extension__ ({ \
  9886. uint32x2x2_t __s1 = __p1; \
  9887. uint32x2x2_t __ret; \
  9888. __builtin_neon_vld2_lane_v(&__ret, __p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], __p2, 18); \
  9889. __ret; \
  9890. })
  9891. #else
  9892. #define vld2_lane_u32(__p0, __p1, __p2) __extension__ ({ \
  9893. uint32x2x2_t __s1 = __p1; \
  9894. uint32x2x2_t __rev1; \
  9895. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  9896. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  9897. uint32x2x2_t __ret; \
  9898. __builtin_neon_vld2_lane_v(&__ret, __p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], __p2, 18); \
  9899. \
  9900. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  9901. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  9902. __ret; \
  9903. })
  9904. #endif
  9905. #ifdef __LITTLE_ENDIAN__
  9906. #define vld2_lane_u16(__p0, __p1, __p2) __extension__ ({ \
  9907. uint16x4x2_t __s1 = __p1; \
  9908. uint16x4x2_t __ret; \
  9909. __builtin_neon_vld2_lane_v(&__ret, __p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], __p2, 17); \
  9910. __ret; \
  9911. })
  9912. #else
  9913. #define vld2_lane_u16(__p0, __p1, __p2) __extension__ ({ \
  9914. uint16x4x2_t __s1 = __p1; \
  9915. uint16x4x2_t __rev1; \
  9916. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  9917. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  9918. uint16x4x2_t __ret; \
  9919. __builtin_neon_vld2_lane_v(&__ret, __p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], __p2, 17); \
  9920. \
  9921. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  9922. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  9923. __ret; \
  9924. })
  9925. #endif
  9926. #ifdef __LITTLE_ENDIAN__
  9927. #define vld2_lane_s8(__p0, __p1, __p2) __extension__ ({ \
  9928. int8x8x2_t __s1 = __p1; \
  9929. int8x8x2_t __ret; \
  9930. __builtin_neon_vld2_lane_v(&__ret, __p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], __p2, 0); \
  9931. __ret; \
  9932. })
  9933. #else
  9934. #define vld2_lane_s8(__p0, __p1, __p2) __extension__ ({ \
  9935. int8x8x2_t __s1 = __p1; \
  9936. int8x8x2_t __rev1; \
  9937. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  9938. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  9939. int8x8x2_t __ret; \
  9940. __builtin_neon_vld2_lane_v(&__ret, __p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], __p2, 0); \
  9941. \
  9942. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  9943. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  9944. __ret; \
  9945. })
  9946. #endif
  9947. #ifdef __LITTLE_ENDIAN__
  9948. #define vld2_lane_f32(__p0, __p1, __p2) __extension__ ({ \
  9949. float32x2x2_t __s1 = __p1; \
  9950. float32x2x2_t __ret; \
  9951. __builtin_neon_vld2_lane_v(&__ret, __p0, __s1.val[0], __s1.val[1], __p2, 9); \
  9952. __ret; \
  9953. })
  9954. #else
  9955. #define vld2_lane_f32(__p0, __p1, __p2) __extension__ ({ \
  9956. float32x2x2_t __s1 = __p1; \
  9957. float32x2x2_t __rev1; \
  9958. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  9959. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  9960. float32x2x2_t __ret; \
  9961. __builtin_neon_vld2_lane_v(&__ret, __p0, __rev1.val[0], __rev1.val[1], __p2, 9); \
  9962. \
  9963. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  9964. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  9965. __ret; \
  9966. })
  9967. #endif
  9968. #ifdef __LITTLE_ENDIAN__
  9969. #define vld2_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  9970. int32x2x2_t __s1 = __p1; \
  9971. int32x2x2_t __ret; \
  9972. __builtin_neon_vld2_lane_v(&__ret, __p0, __s1.val[0], __s1.val[1], __p2, 2); \
  9973. __ret; \
  9974. })
  9975. #else
  9976. #define vld2_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  9977. int32x2x2_t __s1 = __p1; \
  9978. int32x2x2_t __rev1; \
  9979. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  9980. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  9981. int32x2x2_t __ret; \
  9982. __builtin_neon_vld2_lane_v(&__ret, __p0, __rev1.val[0], __rev1.val[1], __p2, 2); \
  9983. \
  9984. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  9985. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  9986. __ret; \
  9987. })
  9988. #endif
  9989. #ifdef __LITTLE_ENDIAN__
  9990. #define vld2_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  9991. int16x4x2_t __s1 = __p1; \
  9992. int16x4x2_t __ret; \
  9993. __builtin_neon_vld2_lane_v(&__ret, __p0, __s1.val[0], __s1.val[1], __p2, 1); \
  9994. __ret; \
  9995. })
  9996. #else
  9997. #define vld2_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  9998. int16x4x2_t __s1 = __p1; \
  9999. int16x4x2_t __rev1; \
  10000. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  10001. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  10002. int16x4x2_t __ret; \
  10003. __builtin_neon_vld2_lane_v(&__ret, __p0, __rev1.val[0], __rev1.val[1], __p2, 1); \
  10004. \
  10005. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  10006. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  10007. __ret; \
  10008. })
  10009. #endif
  10010. #ifdef __LITTLE_ENDIAN__
  10011. #define vld3_p8(__p0) __extension__ ({ \
  10012. poly8x8x3_t __ret; \
  10013. __builtin_neon_vld3_v(&__ret, __p0, 4); \
  10014. __ret; \
  10015. })
  10016. #else
  10017. #define vld3_p8(__p0) __extension__ ({ \
  10018. poly8x8x3_t __ret; \
  10019. __builtin_neon_vld3_v(&__ret, __p0, 4); \
  10020. \
  10021. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  10022. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  10023. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  10024. __ret; \
  10025. })
  10026. #endif
  10027. #ifdef __LITTLE_ENDIAN__
  10028. #define vld3_p16(__p0) __extension__ ({ \
  10029. poly16x4x3_t __ret; \
  10030. __builtin_neon_vld3_v(&__ret, __p0, 5); \
  10031. __ret; \
  10032. })
  10033. #else
  10034. #define vld3_p16(__p0) __extension__ ({ \
  10035. poly16x4x3_t __ret; \
  10036. __builtin_neon_vld3_v(&__ret, __p0, 5); \
  10037. \
  10038. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  10039. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  10040. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  10041. __ret; \
  10042. })
  10043. #endif
  10044. #ifdef __LITTLE_ENDIAN__
  10045. #define vld3q_p8(__p0) __extension__ ({ \
  10046. poly8x16x3_t __ret; \
  10047. __builtin_neon_vld3q_v(&__ret, __p0, 36); \
  10048. __ret; \
  10049. })
  10050. #else
  10051. #define vld3q_p8(__p0) __extension__ ({ \
  10052. poly8x16x3_t __ret; \
  10053. __builtin_neon_vld3q_v(&__ret, __p0, 36); \
  10054. \
  10055. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  10056. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  10057. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  10058. __ret; \
  10059. })
  10060. #endif
  10061. #ifdef __LITTLE_ENDIAN__
  10062. #define vld3q_p16(__p0) __extension__ ({ \
  10063. poly16x8x3_t __ret; \
  10064. __builtin_neon_vld3q_v(&__ret, __p0, 37); \
  10065. __ret; \
  10066. })
  10067. #else
  10068. #define vld3q_p16(__p0) __extension__ ({ \
  10069. poly16x8x3_t __ret; \
  10070. __builtin_neon_vld3q_v(&__ret, __p0, 37); \
  10071. \
  10072. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  10073. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  10074. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  10075. __ret; \
  10076. })
  10077. #endif
  10078. #ifdef __LITTLE_ENDIAN__
  10079. #define vld3q_u8(__p0) __extension__ ({ \
  10080. uint8x16x3_t __ret; \
  10081. __builtin_neon_vld3q_v(&__ret, __p0, 48); \
  10082. __ret; \
  10083. })
  10084. #else
  10085. #define vld3q_u8(__p0) __extension__ ({ \
  10086. uint8x16x3_t __ret; \
  10087. __builtin_neon_vld3q_v(&__ret, __p0, 48); \
  10088. \
  10089. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  10090. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  10091. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  10092. __ret; \
  10093. })
  10094. #endif
  10095. #ifdef __LITTLE_ENDIAN__
  10096. #define vld3q_u32(__p0) __extension__ ({ \
  10097. uint32x4x3_t __ret; \
  10098. __builtin_neon_vld3q_v(&__ret, __p0, 50); \
  10099. __ret; \
  10100. })
  10101. #else
  10102. #define vld3q_u32(__p0) __extension__ ({ \
  10103. uint32x4x3_t __ret; \
  10104. __builtin_neon_vld3q_v(&__ret, __p0, 50); \
  10105. \
  10106. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  10107. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  10108. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  10109. __ret; \
  10110. })
  10111. #endif
  10112. #ifdef __LITTLE_ENDIAN__
  10113. #define vld3q_u16(__p0) __extension__ ({ \
  10114. uint16x8x3_t __ret; \
  10115. __builtin_neon_vld3q_v(&__ret, __p0, 49); \
  10116. __ret; \
  10117. })
  10118. #else
  10119. #define vld3q_u16(__p0) __extension__ ({ \
  10120. uint16x8x3_t __ret; \
  10121. __builtin_neon_vld3q_v(&__ret, __p0, 49); \
  10122. \
  10123. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  10124. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  10125. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  10126. __ret; \
  10127. })
  10128. #endif
  10129. #ifdef __LITTLE_ENDIAN__
  10130. #define vld3q_s8(__p0) __extension__ ({ \
  10131. int8x16x3_t __ret; \
  10132. __builtin_neon_vld3q_v(&__ret, __p0, 32); \
  10133. __ret; \
  10134. })
  10135. #else
  10136. #define vld3q_s8(__p0) __extension__ ({ \
  10137. int8x16x3_t __ret; \
  10138. __builtin_neon_vld3q_v(&__ret, __p0, 32); \
  10139. \
  10140. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  10141. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  10142. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  10143. __ret; \
  10144. })
  10145. #endif
  10146. #ifdef __LITTLE_ENDIAN__
  10147. #define vld3q_f32(__p0) __extension__ ({ \
  10148. float32x4x3_t __ret; \
  10149. __builtin_neon_vld3q_v(&__ret, __p0, 41); \
  10150. __ret; \
  10151. })
  10152. #else
  10153. #define vld3q_f32(__p0) __extension__ ({ \
  10154. float32x4x3_t __ret; \
  10155. __builtin_neon_vld3q_v(&__ret, __p0, 41); \
  10156. \
  10157. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  10158. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  10159. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  10160. __ret; \
  10161. })
  10162. #endif
  10163. #ifdef __LITTLE_ENDIAN__
  10164. #define vld3q_s32(__p0) __extension__ ({ \
  10165. int32x4x3_t __ret; \
  10166. __builtin_neon_vld3q_v(&__ret, __p0, 34); \
  10167. __ret; \
  10168. })
  10169. #else
  10170. #define vld3q_s32(__p0) __extension__ ({ \
  10171. int32x4x3_t __ret; \
  10172. __builtin_neon_vld3q_v(&__ret, __p0, 34); \
  10173. \
  10174. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  10175. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  10176. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  10177. __ret; \
  10178. })
  10179. #endif
  10180. #ifdef __LITTLE_ENDIAN__
  10181. #define vld3q_s16(__p0) __extension__ ({ \
  10182. int16x8x3_t __ret; \
  10183. __builtin_neon_vld3q_v(&__ret, __p0, 33); \
  10184. __ret; \
  10185. })
  10186. #else
  10187. #define vld3q_s16(__p0) __extension__ ({ \
  10188. int16x8x3_t __ret; \
  10189. __builtin_neon_vld3q_v(&__ret, __p0, 33); \
  10190. \
  10191. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  10192. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  10193. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  10194. __ret; \
  10195. })
  10196. #endif
  10197. #ifdef __LITTLE_ENDIAN__
  10198. #define vld3_u8(__p0) __extension__ ({ \
  10199. uint8x8x3_t __ret; \
  10200. __builtin_neon_vld3_v(&__ret, __p0, 16); \
  10201. __ret; \
  10202. })
  10203. #else
  10204. #define vld3_u8(__p0) __extension__ ({ \
  10205. uint8x8x3_t __ret; \
  10206. __builtin_neon_vld3_v(&__ret, __p0, 16); \
  10207. \
  10208. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  10209. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  10210. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  10211. __ret; \
  10212. })
  10213. #endif
  10214. #ifdef __LITTLE_ENDIAN__
  10215. #define vld3_u32(__p0) __extension__ ({ \
  10216. uint32x2x3_t __ret; \
  10217. __builtin_neon_vld3_v(&__ret, __p0, 18); \
  10218. __ret; \
  10219. })
  10220. #else
  10221. #define vld3_u32(__p0) __extension__ ({ \
  10222. uint32x2x3_t __ret; \
  10223. __builtin_neon_vld3_v(&__ret, __p0, 18); \
  10224. \
  10225. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  10226. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  10227. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  10228. __ret; \
  10229. })
  10230. #endif
  10231. #ifdef __LITTLE_ENDIAN__
  10232. #define vld3_u64(__p0) __extension__ ({ \
  10233. uint64x1x3_t __ret; \
  10234. __builtin_neon_vld3_v(&__ret, __p0, 19); \
  10235. __ret; \
  10236. })
  10237. #else
  10238. #define vld3_u64(__p0) __extension__ ({ \
  10239. uint64x1x3_t __ret; \
  10240. __builtin_neon_vld3_v(&__ret, __p0, 19); \
  10241. __ret; \
  10242. })
  10243. #endif
  10244. #ifdef __LITTLE_ENDIAN__
  10245. #define vld3_u16(__p0) __extension__ ({ \
  10246. uint16x4x3_t __ret; \
  10247. __builtin_neon_vld3_v(&__ret, __p0, 17); \
  10248. __ret; \
  10249. })
  10250. #else
  10251. #define vld3_u16(__p0) __extension__ ({ \
  10252. uint16x4x3_t __ret; \
  10253. __builtin_neon_vld3_v(&__ret, __p0, 17); \
  10254. \
  10255. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  10256. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  10257. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  10258. __ret; \
  10259. })
  10260. #endif
  10261. #ifdef __LITTLE_ENDIAN__
  10262. #define vld3_s8(__p0) __extension__ ({ \
  10263. int8x8x3_t __ret; \
  10264. __builtin_neon_vld3_v(&__ret, __p0, 0); \
  10265. __ret; \
  10266. })
  10267. #else
  10268. #define vld3_s8(__p0) __extension__ ({ \
  10269. int8x8x3_t __ret; \
  10270. __builtin_neon_vld3_v(&__ret, __p0, 0); \
  10271. \
  10272. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  10273. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  10274. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  10275. __ret; \
  10276. })
  10277. #endif
  10278. #ifdef __LITTLE_ENDIAN__
  10279. #define vld3_f32(__p0) __extension__ ({ \
  10280. float32x2x3_t __ret; \
  10281. __builtin_neon_vld3_v(&__ret, __p0, 9); \
  10282. __ret; \
  10283. })
  10284. #else
  10285. #define vld3_f32(__p0) __extension__ ({ \
  10286. float32x2x3_t __ret; \
  10287. __builtin_neon_vld3_v(&__ret, __p0, 9); \
  10288. \
  10289. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  10290. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  10291. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  10292. __ret; \
  10293. })
  10294. #endif
  10295. #ifdef __LITTLE_ENDIAN__
  10296. #define vld3_s32(__p0) __extension__ ({ \
  10297. int32x2x3_t __ret; \
  10298. __builtin_neon_vld3_v(&__ret, __p0, 2); \
  10299. __ret; \
  10300. })
  10301. #else
  10302. #define vld3_s32(__p0) __extension__ ({ \
  10303. int32x2x3_t __ret; \
  10304. __builtin_neon_vld3_v(&__ret, __p0, 2); \
  10305. \
  10306. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  10307. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  10308. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  10309. __ret; \
  10310. })
  10311. #endif
  10312. #ifdef __LITTLE_ENDIAN__
  10313. #define vld3_s64(__p0) __extension__ ({ \
  10314. int64x1x3_t __ret; \
  10315. __builtin_neon_vld3_v(&__ret, __p0, 3); \
  10316. __ret; \
  10317. })
  10318. #else
  10319. #define vld3_s64(__p0) __extension__ ({ \
  10320. int64x1x3_t __ret; \
  10321. __builtin_neon_vld3_v(&__ret, __p0, 3); \
  10322. __ret; \
  10323. })
  10324. #endif
  10325. #ifdef __LITTLE_ENDIAN__
  10326. #define vld3_s16(__p0) __extension__ ({ \
  10327. int16x4x3_t __ret; \
  10328. __builtin_neon_vld3_v(&__ret, __p0, 1); \
  10329. __ret; \
  10330. })
  10331. #else
  10332. #define vld3_s16(__p0) __extension__ ({ \
  10333. int16x4x3_t __ret; \
  10334. __builtin_neon_vld3_v(&__ret, __p0, 1); \
  10335. \
  10336. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  10337. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  10338. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  10339. __ret; \
  10340. })
  10341. #endif
  10342. #ifdef __LITTLE_ENDIAN__
  10343. #define vld3_dup_p8(__p0) __extension__ ({ \
  10344. poly8x8x3_t __ret; \
  10345. __builtin_neon_vld3_dup_v(&__ret, __p0, 4); \
  10346. __ret; \
  10347. })
  10348. #else
  10349. #define vld3_dup_p8(__p0) __extension__ ({ \
  10350. poly8x8x3_t __ret; \
  10351. __builtin_neon_vld3_dup_v(&__ret, __p0, 4); \
  10352. \
  10353. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  10354. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  10355. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  10356. __ret; \
  10357. })
  10358. #endif
  10359. #ifdef __LITTLE_ENDIAN__
  10360. #define vld3_dup_p16(__p0) __extension__ ({ \
  10361. poly16x4x3_t __ret; \
  10362. __builtin_neon_vld3_dup_v(&__ret, __p0, 5); \
  10363. __ret; \
  10364. })
  10365. #else
  10366. #define vld3_dup_p16(__p0) __extension__ ({ \
  10367. poly16x4x3_t __ret; \
  10368. __builtin_neon_vld3_dup_v(&__ret, __p0, 5); \
  10369. \
  10370. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  10371. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  10372. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  10373. __ret; \
  10374. })
  10375. #endif
  10376. #ifdef __LITTLE_ENDIAN__
  10377. #define vld3q_dup_p8(__p0) __extension__ ({ \
  10378. poly8x16x3_t __ret; \
  10379. __builtin_neon_vld3q_dup_v(&__ret, __p0, 36); \
  10380. __ret; \
  10381. })
  10382. #else
  10383. #define vld3q_dup_p8(__p0) __extension__ ({ \
  10384. poly8x16x3_t __ret; \
  10385. __builtin_neon_vld3q_dup_v(&__ret, __p0, 36); \
  10386. \
  10387. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  10388. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  10389. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  10390. __ret; \
  10391. })
  10392. #endif
  10393. #ifdef __LITTLE_ENDIAN__
  10394. #define vld3q_dup_p16(__p0) __extension__ ({ \
  10395. poly16x8x3_t __ret; \
  10396. __builtin_neon_vld3q_dup_v(&__ret, __p0, 37); \
  10397. __ret; \
  10398. })
  10399. #else
  10400. #define vld3q_dup_p16(__p0) __extension__ ({ \
  10401. poly16x8x3_t __ret; \
  10402. __builtin_neon_vld3q_dup_v(&__ret, __p0, 37); \
  10403. \
  10404. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  10405. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  10406. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  10407. __ret; \
  10408. })
  10409. #endif
  10410. #ifdef __LITTLE_ENDIAN__
  10411. #define vld3q_dup_u8(__p0) __extension__ ({ \
  10412. uint8x16x3_t __ret; \
  10413. __builtin_neon_vld3q_dup_v(&__ret, __p0, 48); \
  10414. __ret; \
  10415. })
  10416. #else
  10417. #define vld3q_dup_u8(__p0) __extension__ ({ \
  10418. uint8x16x3_t __ret; \
  10419. __builtin_neon_vld3q_dup_v(&__ret, __p0, 48); \
  10420. \
  10421. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  10422. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  10423. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  10424. __ret; \
  10425. })
  10426. #endif
  10427. #ifdef __LITTLE_ENDIAN__
  10428. #define vld3q_dup_u32(__p0) __extension__ ({ \
  10429. uint32x4x3_t __ret; \
  10430. __builtin_neon_vld3q_dup_v(&__ret, __p0, 50); \
  10431. __ret; \
  10432. })
  10433. #else
  10434. #define vld3q_dup_u32(__p0) __extension__ ({ \
  10435. uint32x4x3_t __ret; \
  10436. __builtin_neon_vld3q_dup_v(&__ret, __p0, 50); \
  10437. \
  10438. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  10439. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  10440. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  10441. __ret; \
  10442. })
  10443. #endif
  10444. #ifdef __LITTLE_ENDIAN__
  10445. #define vld3q_dup_u64(__p0) __extension__ ({ \
  10446. uint64x2x3_t __ret; \
  10447. __builtin_neon_vld3q_dup_v(&__ret, __p0, 51); \
  10448. __ret; \
  10449. })
  10450. #else
  10451. #define vld3q_dup_u64(__p0) __extension__ ({ \
  10452. uint64x2x3_t __ret; \
  10453. __builtin_neon_vld3q_dup_v(&__ret, __p0, 51); \
  10454. \
  10455. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  10456. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  10457. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  10458. __ret; \
  10459. })
  10460. #endif
  10461. #ifdef __LITTLE_ENDIAN__
  10462. #define vld3q_dup_u16(__p0) __extension__ ({ \
  10463. uint16x8x3_t __ret; \
  10464. __builtin_neon_vld3q_dup_v(&__ret, __p0, 49); \
  10465. __ret; \
  10466. })
  10467. #else
  10468. #define vld3q_dup_u16(__p0) __extension__ ({ \
  10469. uint16x8x3_t __ret; \
  10470. __builtin_neon_vld3q_dup_v(&__ret, __p0, 49); \
  10471. \
  10472. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  10473. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  10474. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  10475. __ret; \
  10476. })
  10477. #endif
  10478. #ifdef __LITTLE_ENDIAN__
  10479. #define vld3q_dup_s8(__p0) __extension__ ({ \
  10480. int8x16x3_t __ret; \
  10481. __builtin_neon_vld3q_dup_v(&__ret, __p0, 32); \
  10482. __ret; \
  10483. })
  10484. #else
  10485. #define vld3q_dup_s8(__p0) __extension__ ({ \
  10486. int8x16x3_t __ret; \
  10487. __builtin_neon_vld3q_dup_v(&__ret, __p0, 32); \
  10488. \
  10489. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  10490. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  10491. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  10492. __ret; \
  10493. })
  10494. #endif
  10495. #ifdef __LITTLE_ENDIAN__
  10496. #define vld3q_dup_f32(__p0) __extension__ ({ \
  10497. float32x4x3_t __ret; \
  10498. __builtin_neon_vld3q_dup_v(&__ret, __p0, 41); \
  10499. __ret; \
  10500. })
  10501. #else
  10502. #define vld3q_dup_f32(__p0) __extension__ ({ \
  10503. float32x4x3_t __ret; \
  10504. __builtin_neon_vld3q_dup_v(&__ret, __p0, 41); \
  10505. \
  10506. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  10507. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  10508. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  10509. __ret; \
  10510. })
  10511. #endif
  10512. #ifdef __LITTLE_ENDIAN__
  10513. #define vld3q_dup_s32(__p0) __extension__ ({ \
  10514. int32x4x3_t __ret; \
  10515. __builtin_neon_vld3q_dup_v(&__ret, __p0, 34); \
  10516. __ret; \
  10517. })
  10518. #else
  10519. #define vld3q_dup_s32(__p0) __extension__ ({ \
  10520. int32x4x3_t __ret; \
  10521. __builtin_neon_vld3q_dup_v(&__ret, __p0, 34); \
  10522. \
  10523. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  10524. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  10525. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  10526. __ret; \
  10527. })
  10528. #endif
  10529. #ifdef __LITTLE_ENDIAN__
  10530. #define vld3q_dup_s64(__p0) __extension__ ({ \
  10531. int64x2x3_t __ret; \
  10532. __builtin_neon_vld3q_dup_v(&__ret, __p0, 35); \
  10533. __ret; \
  10534. })
  10535. #else
  10536. #define vld3q_dup_s64(__p0) __extension__ ({ \
  10537. int64x2x3_t __ret; \
  10538. __builtin_neon_vld3q_dup_v(&__ret, __p0, 35); \
  10539. \
  10540. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  10541. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  10542. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  10543. __ret; \
  10544. })
  10545. #endif
  10546. #ifdef __LITTLE_ENDIAN__
  10547. #define vld3q_dup_s16(__p0) __extension__ ({ \
  10548. int16x8x3_t __ret; \
  10549. __builtin_neon_vld3q_dup_v(&__ret, __p0, 33); \
  10550. __ret; \
  10551. })
  10552. #else
  10553. #define vld3q_dup_s16(__p0) __extension__ ({ \
  10554. int16x8x3_t __ret; \
  10555. __builtin_neon_vld3q_dup_v(&__ret, __p0, 33); \
  10556. \
  10557. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  10558. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  10559. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  10560. __ret; \
  10561. })
  10562. #endif
  10563. #ifdef __LITTLE_ENDIAN__
  10564. #define vld3_dup_u8(__p0) __extension__ ({ \
  10565. uint8x8x3_t __ret; \
  10566. __builtin_neon_vld3_dup_v(&__ret, __p0, 16); \
  10567. __ret; \
  10568. })
  10569. #else
  10570. #define vld3_dup_u8(__p0) __extension__ ({ \
  10571. uint8x8x3_t __ret; \
  10572. __builtin_neon_vld3_dup_v(&__ret, __p0, 16); \
  10573. \
  10574. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  10575. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  10576. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  10577. __ret; \
  10578. })
  10579. #endif
  10580. #ifdef __LITTLE_ENDIAN__
  10581. #define vld3_dup_u32(__p0) __extension__ ({ \
  10582. uint32x2x3_t __ret; \
  10583. __builtin_neon_vld3_dup_v(&__ret, __p0, 18); \
  10584. __ret; \
  10585. })
  10586. #else
  10587. #define vld3_dup_u32(__p0) __extension__ ({ \
  10588. uint32x2x3_t __ret; \
  10589. __builtin_neon_vld3_dup_v(&__ret, __p0, 18); \
  10590. \
  10591. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  10592. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  10593. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  10594. __ret; \
  10595. })
  10596. #endif
  10597. #ifdef __LITTLE_ENDIAN__
  10598. #define vld3_dup_u64(__p0) __extension__ ({ \
  10599. uint64x1x3_t __ret; \
  10600. __builtin_neon_vld3_dup_v(&__ret, __p0, 19); \
  10601. __ret; \
  10602. })
  10603. #else
  10604. #define vld3_dup_u64(__p0) __extension__ ({ \
  10605. uint64x1x3_t __ret; \
  10606. __builtin_neon_vld3_dup_v(&__ret, __p0, 19); \
  10607. __ret; \
  10608. })
  10609. #endif
  10610. #ifdef __LITTLE_ENDIAN__
  10611. #define vld3_dup_u16(__p0) __extension__ ({ \
  10612. uint16x4x3_t __ret; \
  10613. __builtin_neon_vld3_dup_v(&__ret, __p0, 17); \
  10614. __ret; \
  10615. })
  10616. #else
  10617. #define vld3_dup_u16(__p0) __extension__ ({ \
  10618. uint16x4x3_t __ret; \
  10619. __builtin_neon_vld3_dup_v(&__ret, __p0, 17); \
  10620. \
  10621. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  10622. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  10623. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  10624. __ret; \
  10625. })
  10626. #endif
  10627. #ifdef __LITTLE_ENDIAN__
  10628. #define vld3_dup_s8(__p0) __extension__ ({ \
  10629. int8x8x3_t __ret; \
  10630. __builtin_neon_vld3_dup_v(&__ret, __p0, 0); \
  10631. __ret; \
  10632. })
  10633. #else
  10634. #define vld3_dup_s8(__p0) __extension__ ({ \
  10635. int8x8x3_t __ret; \
  10636. __builtin_neon_vld3_dup_v(&__ret, __p0, 0); \
  10637. \
  10638. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  10639. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  10640. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  10641. __ret; \
  10642. })
  10643. #endif
  10644. #ifdef __LITTLE_ENDIAN__
  10645. #define vld3_dup_f32(__p0) __extension__ ({ \
  10646. float32x2x3_t __ret; \
  10647. __builtin_neon_vld3_dup_v(&__ret, __p0, 9); \
  10648. __ret; \
  10649. })
  10650. #else
  10651. #define vld3_dup_f32(__p0) __extension__ ({ \
  10652. float32x2x3_t __ret; \
  10653. __builtin_neon_vld3_dup_v(&__ret, __p0, 9); \
  10654. \
  10655. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  10656. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  10657. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  10658. __ret; \
  10659. })
  10660. #endif
  10661. #ifdef __LITTLE_ENDIAN__
  10662. #define vld3_dup_s32(__p0) __extension__ ({ \
  10663. int32x2x3_t __ret; \
  10664. __builtin_neon_vld3_dup_v(&__ret, __p0, 2); \
  10665. __ret; \
  10666. })
  10667. #else
  10668. #define vld3_dup_s32(__p0) __extension__ ({ \
  10669. int32x2x3_t __ret; \
  10670. __builtin_neon_vld3_dup_v(&__ret, __p0, 2); \
  10671. \
  10672. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  10673. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  10674. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  10675. __ret; \
  10676. })
  10677. #endif
  10678. #ifdef __LITTLE_ENDIAN__
  10679. #define vld3_dup_s64(__p0) __extension__ ({ \
  10680. int64x1x3_t __ret; \
  10681. __builtin_neon_vld3_dup_v(&__ret, __p0, 3); \
  10682. __ret; \
  10683. })
  10684. #else
  10685. #define vld3_dup_s64(__p0) __extension__ ({ \
  10686. int64x1x3_t __ret; \
  10687. __builtin_neon_vld3_dup_v(&__ret, __p0, 3); \
  10688. __ret; \
  10689. })
  10690. #endif
  10691. #ifdef __LITTLE_ENDIAN__
  10692. #define vld3_dup_s16(__p0) __extension__ ({ \
  10693. int16x4x3_t __ret; \
  10694. __builtin_neon_vld3_dup_v(&__ret, __p0, 1); \
  10695. __ret; \
  10696. })
  10697. #else
  10698. #define vld3_dup_s16(__p0) __extension__ ({ \
  10699. int16x4x3_t __ret; \
  10700. __builtin_neon_vld3_dup_v(&__ret, __p0, 1); \
  10701. \
  10702. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  10703. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  10704. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  10705. __ret; \
  10706. })
  10707. #endif
  10708. #ifdef __LITTLE_ENDIAN__
  10709. #define vld3_lane_p8(__p0, __p1, __p2) __extension__ ({ \
  10710. poly8x8x3_t __s1 = __p1; \
  10711. poly8x8x3_t __ret; \
  10712. __builtin_neon_vld3_lane_v(&__ret, __p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], __p2, 4); \
  10713. __ret; \
  10714. })
  10715. #else
  10716. #define vld3_lane_p8(__p0, __p1, __p2) __extension__ ({ \
  10717. poly8x8x3_t __s1 = __p1; \
  10718. poly8x8x3_t __rev1; \
  10719. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  10720. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  10721. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  10722. poly8x8x3_t __ret; \
  10723. __builtin_neon_vld3_lane_v(&__ret, __p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], __p2, 4); \
  10724. \
  10725. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  10726. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  10727. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  10728. __ret; \
  10729. })
  10730. #endif
  10731. #ifdef __LITTLE_ENDIAN__
  10732. #define vld3_lane_p16(__p0, __p1, __p2) __extension__ ({ \
  10733. poly16x4x3_t __s1 = __p1; \
  10734. poly16x4x3_t __ret; \
  10735. __builtin_neon_vld3_lane_v(&__ret, __p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], __p2, 5); \
  10736. __ret; \
  10737. })
  10738. #else
  10739. #define vld3_lane_p16(__p0, __p1, __p2) __extension__ ({ \
  10740. poly16x4x3_t __s1 = __p1; \
  10741. poly16x4x3_t __rev1; \
  10742. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  10743. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  10744. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  10745. poly16x4x3_t __ret; \
  10746. __builtin_neon_vld3_lane_v(&__ret, __p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], __p2, 5); \
  10747. \
  10748. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  10749. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  10750. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  10751. __ret; \
  10752. })
  10753. #endif
  10754. #ifdef __LITTLE_ENDIAN__
  10755. #define vld3q_lane_p16(__p0, __p1, __p2) __extension__ ({ \
  10756. poly16x8x3_t __s1 = __p1; \
  10757. poly16x8x3_t __ret; \
  10758. __builtin_neon_vld3q_lane_v(&__ret, __p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], __p2, 37); \
  10759. __ret; \
  10760. })
  10761. #else
  10762. #define vld3q_lane_p16(__p0, __p1, __p2) __extension__ ({ \
  10763. poly16x8x3_t __s1 = __p1; \
  10764. poly16x8x3_t __rev1; \
  10765. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  10766. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  10767. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  10768. poly16x8x3_t __ret; \
  10769. __builtin_neon_vld3q_lane_v(&__ret, __p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], __p2, 37); \
  10770. \
  10771. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  10772. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  10773. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  10774. __ret; \
  10775. })
  10776. #endif
  10777. #ifdef __LITTLE_ENDIAN__
  10778. #define vld3q_lane_u32(__p0, __p1, __p2) __extension__ ({ \
  10779. uint32x4x3_t __s1 = __p1; \
  10780. uint32x4x3_t __ret; \
  10781. __builtin_neon_vld3q_lane_v(&__ret, __p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], __p2, 50); \
  10782. __ret; \
  10783. })
  10784. #else
  10785. #define vld3q_lane_u32(__p0, __p1, __p2) __extension__ ({ \
  10786. uint32x4x3_t __s1 = __p1; \
  10787. uint32x4x3_t __rev1; \
  10788. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  10789. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  10790. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  10791. uint32x4x3_t __ret; \
  10792. __builtin_neon_vld3q_lane_v(&__ret, __p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], __p2, 50); \
  10793. \
  10794. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  10795. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  10796. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  10797. __ret; \
  10798. })
  10799. #endif
  10800. #ifdef __LITTLE_ENDIAN__
  10801. #define vld3q_lane_u16(__p0, __p1, __p2) __extension__ ({ \
  10802. uint16x8x3_t __s1 = __p1; \
  10803. uint16x8x3_t __ret; \
  10804. __builtin_neon_vld3q_lane_v(&__ret, __p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], __p2, 49); \
  10805. __ret; \
  10806. })
  10807. #else
  10808. #define vld3q_lane_u16(__p0, __p1, __p2) __extension__ ({ \
  10809. uint16x8x3_t __s1 = __p1; \
  10810. uint16x8x3_t __rev1; \
  10811. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  10812. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  10813. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  10814. uint16x8x3_t __ret; \
  10815. __builtin_neon_vld3q_lane_v(&__ret, __p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], __p2, 49); \
  10816. \
  10817. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  10818. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  10819. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  10820. __ret; \
  10821. })
  10822. #endif
  10823. #ifdef __LITTLE_ENDIAN__
  10824. #define vld3q_lane_f32(__p0, __p1, __p2) __extension__ ({ \
  10825. float32x4x3_t __s1 = __p1; \
  10826. float32x4x3_t __ret; \
  10827. __builtin_neon_vld3q_lane_v(&__ret, __p0, __s1.val[0], __s1.val[1], __s1.val[2], __p2, 41); \
  10828. __ret; \
  10829. })
  10830. #else
  10831. #define vld3q_lane_f32(__p0, __p1, __p2) __extension__ ({ \
  10832. float32x4x3_t __s1 = __p1; \
  10833. float32x4x3_t __rev1; \
  10834. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  10835. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  10836. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  10837. float32x4x3_t __ret; \
  10838. __builtin_neon_vld3q_lane_v(&__ret, __p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __p2, 41); \
  10839. \
  10840. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  10841. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  10842. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  10843. __ret; \
  10844. })
  10845. #endif
  10846. #ifdef __LITTLE_ENDIAN__
  10847. #define vld3q_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  10848. int32x4x3_t __s1 = __p1; \
  10849. int32x4x3_t __ret; \
  10850. __builtin_neon_vld3q_lane_v(&__ret, __p0, __s1.val[0], __s1.val[1], __s1.val[2], __p2, 34); \
  10851. __ret; \
  10852. })
  10853. #else
  10854. #define vld3q_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  10855. int32x4x3_t __s1 = __p1; \
  10856. int32x4x3_t __rev1; \
  10857. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  10858. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  10859. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  10860. int32x4x3_t __ret; \
  10861. __builtin_neon_vld3q_lane_v(&__ret, __p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __p2, 34); \
  10862. \
  10863. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  10864. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  10865. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  10866. __ret; \
  10867. })
  10868. #endif
  10869. #ifdef __LITTLE_ENDIAN__
  10870. #define vld3q_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  10871. int16x8x3_t __s1 = __p1; \
  10872. int16x8x3_t __ret; \
  10873. __builtin_neon_vld3q_lane_v(&__ret, __p0, __s1.val[0], __s1.val[1], __s1.val[2], __p2, 33); \
  10874. __ret; \
  10875. })
  10876. #else
  10877. #define vld3q_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  10878. int16x8x3_t __s1 = __p1; \
  10879. int16x8x3_t __rev1; \
  10880. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  10881. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  10882. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  10883. int16x8x3_t __ret; \
  10884. __builtin_neon_vld3q_lane_v(&__ret, __p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __p2, 33); \
  10885. \
  10886. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  10887. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  10888. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  10889. __ret; \
  10890. })
  10891. #endif
  10892. #ifdef __LITTLE_ENDIAN__
  10893. #define vld3_lane_u8(__p0, __p1, __p2) __extension__ ({ \
  10894. uint8x8x3_t __s1 = __p1; \
  10895. uint8x8x3_t __ret; \
  10896. __builtin_neon_vld3_lane_v(&__ret, __p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], __p2, 16); \
  10897. __ret; \
  10898. })
  10899. #else
  10900. #define vld3_lane_u8(__p0, __p1, __p2) __extension__ ({ \
  10901. uint8x8x3_t __s1 = __p1; \
  10902. uint8x8x3_t __rev1; \
  10903. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  10904. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  10905. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  10906. uint8x8x3_t __ret; \
  10907. __builtin_neon_vld3_lane_v(&__ret, __p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], __p2, 16); \
  10908. \
  10909. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  10910. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  10911. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  10912. __ret; \
  10913. })
  10914. #endif
  10915. #ifdef __LITTLE_ENDIAN__
  10916. #define vld3_lane_u32(__p0, __p1, __p2) __extension__ ({ \
  10917. uint32x2x3_t __s1 = __p1; \
  10918. uint32x2x3_t __ret; \
  10919. __builtin_neon_vld3_lane_v(&__ret, __p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], __p2, 18); \
  10920. __ret; \
  10921. })
  10922. #else
  10923. #define vld3_lane_u32(__p0, __p1, __p2) __extension__ ({ \
  10924. uint32x2x3_t __s1 = __p1; \
  10925. uint32x2x3_t __rev1; \
  10926. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  10927. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  10928. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  10929. uint32x2x3_t __ret; \
  10930. __builtin_neon_vld3_lane_v(&__ret, __p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], __p2, 18); \
  10931. \
  10932. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  10933. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  10934. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  10935. __ret; \
  10936. })
  10937. #endif
  10938. #ifdef __LITTLE_ENDIAN__
  10939. #define vld3_lane_u16(__p0, __p1, __p2) __extension__ ({ \
  10940. uint16x4x3_t __s1 = __p1; \
  10941. uint16x4x3_t __ret; \
  10942. __builtin_neon_vld3_lane_v(&__ret, __p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], __p2, 17); \
  10943. __ret; \
  10944. })
  10945. #else
  10946. #define vld3_lane_u16(__p0, __p1, __p2) __extension__ ({ \
  10947. uint16x4x3_t __s1 = __p1; \
  10948. uint16x4x3_t __rev1; \
  10949. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  10950. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  10951. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  10952. uint16x4x3_t __ret; \
  10953. __builtin_neon_vld3_lane_v(&__ret, __p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], __p2, 17); \
  10954. \
  10955. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  10956. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  10957. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  10958. __ret; \
  10959. })
  10960. #endif
  10961. #ifdef __LITTLE_ENDIAN__
  10962. #define vld3_lane_s8(__p0, __p1, __p2) __extension__ ({ \
  10963. int8x8x3_t __s1 = __p1; \
  10964. int8x8x3_t __ret; \
  10965. __builtin_neon_vld3_lane_v(&__ret, __p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], __p2, 0); \
  10966. __ret; \
  10967. })
  10968. #else
  10969. #define vld3_lane_s8(__p0, __p1, __p2) __extension__ ({ \
  10970. int8x8x3_t __s1 = __p1; \
  10971. int8x8x3_t __rev1; \
  10972. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  10973. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  10974. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  10975. int8x8x3_t __ret; \
  10976. __builtin_neon_vld3_lane_v(&__ret, __p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], __p2, 0); \
  10977. \
  10978. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  10979. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  10980. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  10981. __ret; \
  10982. })
  10983. #endif
  10984. #ifdef __LITTLE_ENDIAN__
  10985. #define vld3_lane_f32(__p0, __p1, __p2) __extension__ ({ \
  10986. float32x2x3_t __s1 = __p1; \
  10987. float32x2x3_t __ret; \
  10988. __builtin_neon_vld3_lane_v(&__ret, __p0, __s1.val[0], __s1.val[1], __s1.val[2], __p2, 9); \
  10989. __ret; \
  10990. })
  10991. #else
  10992. #define vld3_lane_f32(__p0, __p1, __p2) __extension__ ({ \
  10993. float32x2x3_t __s1 = __p1; \
  10994. float32x2x3_t __rev1; \
  10995. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  10996. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  10997. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  10998. float32x2x3_t __ret; \
  10999. __builtin_neon_vld3_lane_v(&__ret, __p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __p2, 9); \
  11000. \
  11001. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  11002. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  11003. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  11004. __ret; \
  11005. })
  11006. #endif
  11007. #ifdef __LITTLE_ENDIAN__
  11008. #define vld3_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  11009. int32x2x3_t __s1 = __p1; \
  11010. int32x2x3_t __ret; \
  11011. __builtin_neon_vld3_lane_v(&__ret, __p0, __s1.val[0], __s1.val[1], __s1.val[2], __p2, 2); \
  11012. __ret; \
  11013. })
  11014. #else
  11015. #define vld3_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  11016. int32x2x3_t __s1 = __p1; \
  11017. int32x2x3_t __rev1; \
  11018. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  11019. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  11020. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  11021. int32x2x3_t __ret; \
  11022. __builtin_neon_vld3_lane_v(&__ret, __p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __p2, 2); \
  11023. \
  11024. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  11025. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  11026. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  11027. __ret; \
  11028. })
  11029. #endif
  11030. #ifdef __LITTLE_ENDIAN__
  11031. #define vld3_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  11032. int16x4x3_t __s1 = __p1; \
  11033. int16x4x3_t __ret; \
  11034. __builtin_neon_vld3_lane_v(&__ret, __p0, __s1.val[0], __s1.val[1], __s1.val[2], __p2, 1); \
  11035. __ret; \
  11036. })
  11037. #else
  11038. #define vld3_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  11039. int16x4x3_t __s1 = __p1; \
  11040. int16x4x3_t __rev1; \
  11041. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  11042. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  11043. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  11044. int16x4x3_t __ret; \
  11045. __builtin_neon_vld3_lane_v(&__ret, __p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __p2, 1); \
  11046. \
  11047. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  11048. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  11049. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  11050. __ret; \
  11051. })
  11052. #endif
  11053. #ifdef __LITTLE_ENDIAN__
  11054. #define vld4_p8(__p0) __extension__ ({ \
  11055. poly8x8x4_t __ret; \
  11056. __builtin_neon_vld4_v(&__ret, __p0, 4); \
  11057. __ret; \
  11058. })
  11059. #else
  11060. #define vld4_p8(__p0) __extension__ ({ \
  11061. poly8x8x4_t __ret; \
  11062. __builtin_neon_vld4_v(&__ret, __p0, 4); \
  11063. \
  11064. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  11065. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  11066. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  11067. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  11068. __ret; \
  11069. })
  11070. #endif
  11071. #ifdef __LITTLE_ENDIAN__
  11072. #define vld4_p16(__p0) __extension__ ({ \
  11073. poly16x4x4_t __ret; \
  11074. __builtin_neon_vld4_v(&__ret, __p0, 5); \
  11075. __ret; \
  11076. })
  11077. #else
  11078. #define vld4_p16(__p0) __extension__ ({ \
  11079. poly16x4x4_t __ret; \
  11080. __builtin_neon_vld4_v(&__ret, __p0, 5); \
  11081. \
  11082. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  11083. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  11084. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  11085. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 3, 2, 1, 0); \
  11086. __ret; \
  11087. })
  11088. #endif
  11089. #ifdef __LITTLE_ENDIAN__
  11090. #define vld4q_p8(__p0) __extension__ ({ \
  11091. poly8x16x4_t __ret; \
  11092. __builtin_neon_vld4q_v(&__ret, __p0, 36); \
  11093. __ret; \
  11094. })
  11095. #else
  11096. #define vld4q_p8(__p0) __extension__ ({ \
  11097. poly8x16x4_t __ret; \
  11098. __builtin_neon_vld4q_v(&__ret, __p0, 36); \
  11099. \
  11100. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  11101. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  11102. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  11103. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  11104. __ret; \
  11105. })
  11106. #endif
  11107. #ifdef __LITTLE_ENDIAN__
  11108. #define vld4q_p16(__p0) __extension__ ({ \
  11109. poly16x8x4_t __ret; \
  11110. __builtin_neon_vld4q_v(&__ret, __p0, 37); \
  11111. __ret; \
  11112. })
  11113. #else
  11114. #define vld4q_p16(__p0) __extension__ ({ \
  11115. poly16x8x4_t __ret; \
  11116. __builtin_neon_vld4q_v(&__ret, __p0, 37); \
  11117. \
  11118. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  11119. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  11120. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  11121. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  11122. __ret; \
  11123. })
  11124. #endif
  11125. #ifdef __LITTLE_ENDIAN__
  11126. #define vld4q_u8(__p0) __extension__ ({ \
  11127. uint8x16x4_t __ret; \
  11128. __builtin_neon_vld4q_v(&__ret, __p0, 48); \
  11129. __ret; \
  11130. })
  11131. #else
  11132. #define vld4q_u8(__p0) __extension__ ({ \
  11133. uint8x16x4_t __ret; \
  11134. __builtin_neon_vld4q_v(&__ret, __p0, 48); \
  11135. \
  11136. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  11137. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  11138. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  11139. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  11140. __ret; \
  11141. })
  11142. #endif
  11143. #ifdef __LITTLE_ENDIAN__
  11144. #define vld4q_u32(__p0) __extension__ ({ \
  11145. uint32x4x4_t __ret; \
  11146. __builtin_neon_vld4q_v(&__ret, __p0, 50); \
  11147. __ret; \
  11148. })
  11149. #else
  11150. #define vld4q_u32(__p0) __extension__ ({ \
  11151. uint32x4x4_t __ret; \
  11152. __builtin_neon_vld4q_v(&__ret, __p0, 50); \
  11153. \
  11154. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  11155. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  11156. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  11157. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 3, 2, 1, 0); \
  11158. __ret; \
  11159. })
  11160. #endif
  11161. #ifdef __LITTLE_ENDIAN__
  11162. #define vld4q_u16(__p0) __extension__ ({ \
  11163. uint16x8x4_t __ret; \
  11164. __builtin_neon_vld4q_v(&__ret, __p0, 49); \
  11165. __ret; \
  11166. })
  11167. #else
  11168. #define vld4q_u16(__p0) __extension__ ({ \
  11169. uint16x8x4_t __ret; \
  11170. __builtin_neon_vld4q_v(&__ret, __p0, 49); \
  11171. \
  11172. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  11173. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  11174. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  11175. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  11176. __ret; \
  11177. })
  11178. #endif
  11179. #ifdef __LITTLE_ENDIAN__
  11180. #define vld4q_s8(__p0) __extension__ ({ \
  11181. int8x16x4_t __ret; \
  11182. __builtin_neon_vld4q_v(&__ret, __p0, 32); \
  11183. __ret; \
  11184. })
  11185. #else
  11186. #define vld4q_s8(__p0) __extension__ ({ \
  11187. int8x16x4_t __ret; \
  11188. __builtin_neon_vld4q_v(&__ret, __p0, 32); \
  11189. \
  11190. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  11191. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  11192. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  11193. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  11194. __ret; \
  11195. })
  11196. #endif
  11197. #ifdef __LITTLE_ENDIAN__
  11198. #define vld4q_f32(__p0) __extension__ ({ \
  11199. float32x4x4_t __ret; \
  11200. __builtin_neon_vld4q_v(&__ret, __p0, 41); \
  11201. __ret; \
  11202. })
  11203. #else
  11204. #define vld4q_f32(__p0) __extension__ ({ \
  11205. float32x4x4_t __ret; \
  11206. __builtin_neon_vld4q_v(&__ret, __p0, 41); \
  11207. \
  11208. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  11209. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  11210. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  11211. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 3, 2, 1, 0); \
  11212. __ret; \
  11213. })
  11214. #endif
  11215. #ifdef __LITTLE_ENDIAN__
  11216. #define vld4q_s32(__p0) __extension__ ({ \
  11217. int32x4x4_t __ret; \
  11218. __builtin_neon_vld4q_v(&__ret, __p0, 34); \
  11219. __ret; \
  11220. })
  11221. #else
  11222. #define vld4q_s32(__p0) __extension__ ({ \
  11223. int32x4x4_t __ret; \
  11224. __builtin_neon_vld4q_v(&__ret, __p0, 34); \
  11225. \
  11226. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  11227. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  11228. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  11229. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 3, 2, 1, 0); \
  11230. __ret; \
  11231. })
  11232. #endif
  11233. #ifdef __LITTLE_ENDIAN__
  11234. #define vld4q_s16(__p0) __extension__ ({ \
  11235. int16x8x4_t __ret; \
  11236. __builtin_neon_vld4q_v(&__ret, __p0, 33); \
  11237. __ret; \
  11238. })
  11239. #else
  11240. #define vld4q_s16(__p0) __extension__ ({ \
  11241. int16x8x4_t __ret; \
  11242. __builtin_neon_vld4q_v(&__ret, __p0, 33); \
  11243. \
  11244. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  11245. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  11246. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  11247. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  11248. __ret; \
  11249. })
  11250. #endif
  11251. #ifdef __LITTLE_ENDIAN__
  11252. #define vld4_u8(__p0) __extension__ ({ \
  11253. uint8x8x4_t __ret; \
  11254. __builtin_neon_vld4_v(&__ret, __p0, 16); \
  11255. __ret; \
  11256. })
  11257. #else
  11258. #define vld4_u8(__p0) __extension__ ({ \
  11259. uint8x8x4_t __ret; \
  11260. __builtin_neon_vld4_v(&__ret, __p0, 16); \
  11261. \
  11262. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  11263. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  11264. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  11265. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  11266. __ret; \
  11267. })
  11268. #endif
  11269. #ifdef __LITTLE_ENDIAN__
  11270. #define vld4_u32(__p0) __extension__ ({ \
  11271. uint32x2x4_t __ret; \
  11272. __builtin_neon_vld4_v(&__ret, __p0, 18); \
  11273. __ret; \
  11274. })
  11275. #else
  11276. #define vld4_u32(__p0) __extension__ ({ \
  11277. uint32x2x4_t __ret; \
  11278. __builtin_neon_vld4_v(&__ret, __p0, 18); \
  11279. \
  11280. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  11281. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  11282. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  11283. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 1, 0); \
  11284. __ret; \
  11285. })
  11286. #endif
  11287. #ifdef __LITTLE_ENDIAN__
  11288. #define vld4_u64(__p0) __extension__ ({ \
  11289. uint64x1x4_t __ret; \
  11290. __builtin_neon_vld4_v(&__ret, __p0, 19); \
  11291. __ret; \
  11292. })
  11293. #else
  11294. #define vld4_u64(__p0) __extension__ ({ \
  11295. uint64x1x4_t __ret; \
  11296. __builtin_neon_vld4_v(&__ret, __p0, 19); \
  11297. __ret; \
  11298. })
  11299. #endif
  11300. #ifdef __LITTLE_ENDIAN__
  11301. #define vld4_u16(__p0) __extension__ ({ \
  11302. uint16x4x4_t __ret; \
  11303. __builtin_neon_vld4_v(&__ret, __p0, 17); \
  11304. __ret; \
  11305. })
  11306. #else
  11307. #define vld4_u16(__p0) __extension__ ({ \
  11308. uint16x4x4_t __ret; \
  11309. __builtin_neon_vld4_v(&__ret, __p0, 17); \
  11310. \
  11311. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  11312. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  11313. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  11314. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 3, 2, 1, 0); \
  11315. __ret; \
  11316. })
  11317. #endif
  11318. #ifdef __LITTLE_ENDIAN__
  11319. #define vld4_s8(__p0) __extension__ ({ \
  11320. int8x8x4_t __ret; \
  11321. __builtin_neon_vld4_v(&__ret, __p0, 0); \
  11322. __ret; \
  11323. })
  11324. #else
  11325. #define vld4_s8(__p0) __extension__ ({ \
  11326. int8x8x4_t __ret; \
  11327. __builtin_neon_vld4_v(&__ret, __p0, 0); \
  11328. \
  11329. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  11330. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  11331. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  11332. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  11333. __ret; \
  11334. })
  11335. #endif
  11336. #ifdef __LITTLE_ENDIAN__
  11337. #define vld4_f32(__p0) __extension__ ({ \
  11338. float32x2x4_t __ret; \
  11339. __builtin_neon_vld4_v(&__ret, __p0, 9); \
  11340. __ret; \
  11341. })
  11342. #else
  11343. #define vld4_f32(__p0) __extension__ ({ \
  11344. float32x2x4_t __ret; \
  11345. __builtin_neon_vld4_v(&__ret, __p0, 9); \
  11346. \
  11347. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  11348. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  11349. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  11350. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 1, 0); \
  11351. __ret; \
  11352. })
  11353. #endif
  11354. #ifdef __LITTLE_ENDIAN__
  11355. #define vld4_s32(__p0) __extension__ ({ \
  11356. int32x2x4_t __ret; \
  11357. __builtin_neon_vld4_v(&__ret, __p0, 2); \
  11358. __ret; \
  11359. })
  11360. #else
  11361. #define vld4_s32(__p0) __extension__ ({ \
  11362. int32x2x4_t __ret; \
  11363. __builtin_neon_vld4_v(&__ret, __p0, 2); \
  11364. \
  11365. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  11366. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  11367. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  11368. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 1, 0); \
  11369. __ret; \
  11370. })
  11371. #endif
  11372. #ifdef __LITTLE_ENDIAN__
  11373. #define vld4_s64(__p0) __extension__ ({ \
  11374. int64x1x4_t __ret; \
  11375. __builtin_neon_vld4_v(&__ret, __p0, 3); \
  11376. __ret; \
  11377. })
  11378. #else
  11379. #define vld4_s64(__p0) __extension__ ({ \
  11380. int64x1x4_t __ret; \
  11381. __builtin_neon_vld4_v(&__ret, __p0, 3); \
  11382. __ret; \
  11383. })
  11384. #endif
  11385. #ifdef __LITTLE_ENDIAN__
  11386. #define vld4_s16(__p0) __extension__ ({ \
  11387. int16x4x4_t __ret; \
  11388. __builtin_neon_vld4_v(&__ret, __p0, 1); \
  11389. __ret; \
  11390. })
  11391. #else
  11392. #define vld4_s16(__p0) __extension__ ({ \
  11393. int16x4x4_t __ret; \
  11394. __builtin_neon_vld4_v(&__ret, __p0, 1); \
  11395. \
  11396. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  11397. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  11398. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  11399. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 3, 2, 1, 0); \
  11400. __ret; \
  11401. })
  11402. #endif
  11403. #ifdef __LITTLE_ENDIAN__
  11404. #define vld4_dup_p8(__p0) __extension__ ({ \
  11405. poly8x8x4_t __ret; \
  11406. __builtin_neon_vld4_dup_v(&__ret, __p0, 4); \
  11407. __ret; \
  11408. })
  11409. #else
  11410. #define vld4_dup_p8(__p0) __extension__ ({ \
  11411. poly8x8x4_t __ret; \
  11412. __builtin_neon_vld4_dup_v(&__ret, __p0, 4); \
  11413. \
  11414. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  11415. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  11416. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  11417. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  11418. __ret; \
  11419. })
  11420. #endif
  11421. #ifdef __LITTLE_ENDIAN__
  11422. #define vld4_dup_p16(__p0) __extension__ ({ \
  11423. poly16x4x4_t __ret; \
  11424. __builtin_neon_vld4_dup_v(&__ret, __p0, 5); \
  11425. __ret; \
  11426. })
  11427. #else
  11428. #define vld4_dup_p16(__p0) __extension__ ({ \
  11429. poly16x4x4_t __ret; \
  11430. __builtin_neon_vld4_dup_v(&__ret, __p0, 5); \
  11431. \
  11432. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  11433. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  11434. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  11435. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 3, 2, 1, 0); \
  11436. __ret; \
  11437. })
  11438. #endif
  11439. #ifdef __LITTLE_ENDIAN__
  11440. #define vld4q_dup_p8(__p0) __extension__ ({ \
  11441. poly8x16x4_t __ret; \
  11442. __builtin_neon_vld4q_dup_v(&__ret, __p0, 36); \
  11443. __ret; \
  11444. })
  11445. #else
  11446. #define vld4q_dup_p8(__p0) __extension__ ({ \
  11447. poly8x16x4_t __ret; \
  11448. __builtin_neon_vld4q_dup_v(&__ret, __p0, 36); \
  11449. \
  11450. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  11451. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  11452. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  11453. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  11454. __ret; \
  11455. })
  11456. #endif
  11457. #ifdef __LITTLE_ENDIAN__
  11458. #define vld4q_dup_p16(__p0) __extension__ ({ \
  11459. poly16x8x4_t __ret; \
  11460. __builtin_neon_vld4q_dup_v(&__ret, __p0, 37); \
  11461. __ret; \
  11462. })
  11463. #else
  11464. #define vld4q_dup_p16(__p0) __extension__ ({ \
  11465. poly16x8x4_t __ret; \
  11466. __builtin_neon_vld4q_dup_v(&__ret, __p0, 37); \
  11467. \
  11468. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  11469. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  11470. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  11471. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  11472. __ret; \
  11473. })
  11474. #endif
  11475. #ifdef __LITTLE_ENDIAN__
  11476. #define vld4q_dup_u8(__p0) __extension__ ({ \
  11477. uint8x16x4_t __ret; \
  11478. __builtin_neon_vld4q_dup_v(&__ret, __p0, 48); \
  11479. __ret; \
  11480. })
  11481. #else
  11482. #define vld4q_dup_u8(__p0) __extension__ ({ \
  11483. uint8x16x4_t __ret; \
  11484. __builtin_neon_vld4q_dup_v(&__ret, __p0, 48); \
  11485. \
  11486. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  11487. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  11488. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  11489. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  11490. __ret; \
  11491. })
  11492. #endif
  11493. #ifdef __LITTLE_ENDIAN__
  11494. #define vld4q_dup_u32(__p0) __extension__ ({ \
  11495. uint32x4x4_t __ret; \
  11496. __builtin_neon_vld4q_dup_v(&__ret, __p0, 50); \
  11497. __ret; \
  11498. })
  11499. #else
  11500. #define vld4q_dup_u32(__p0) __extension__ ({ \
  11501. uint32x4x4_t __ret; \
  11502. __builtin_neon_vld4q_dup_v(&__ret, __p0, 50); \
  11503. \
  11504. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  11505. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  11506. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  11507. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 3, 2, 1, 0); \
  11508. __ret; \
  11509. })
  11510. #endif
  11511. #ifdef __LITTLE_ENDIAN__
  11512. #define vld4q_dup_u64(__p0) __extension__ ({ \
  11513. uint64x2x4_t __ret; \
  11514. __builtin_neon_vld4q_dup_v(&__ret, __p0, 51); \
  11515. __ret; \
  11516. })
  11517. #else
  11518. #define vld4q_dup_u64(__p0) __extension__ ({ \
  11519. uint64x2x4_t __ret; \
  11520. __builtin_neon_vld4q_dup_v(&__ret, __p0, 51); \
  11521. \
  11522. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  11523. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  11524. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  11525. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 1, 0); \
  11526. __ret; \
  11527. })
  11528. #endif
  11529. #ifdef __LITTLE_ENDIAN__
  11530. #define vld4q_dup_u16(__p0) __extension__ ({ \
  11531. uint16x8x4_t __ret; \
  11532. __builtin_neon_vld4q_dup_v(&__ret, __p0, 49); \
  11533. __ret; \
  11534. })
  11535. #else
  11536. #define vld4q_dup_u16(__p0) __extension__ ({ \
  11537. uint16x8x4_t __ret; \
  11538. __builtin_neon_vld4q_dup_v(&__ret, __p0, 49); \
  11539. \
  11540. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  11541. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  11542. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  11543. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  11544. __ret; \
  11545. })
  11546. #endif
  11547. #ifdef __LITTLE_ENDIAN__
  11548. #define vld4q_dup_s8(__p0) __extension__ ({ \
  11549. int8x16x4_t __ret; \
  11550. __builtin_neon_vld4q_dup_v(&__ret, __p0, 32); \
  11551. __ret; \
  11552. })
  11553. #else
  11554. #define vld4q_dup_s8(__p0) __extension__ ({ \
  11555. int8x16x4_t __ret; \
  11556. __builtin_neon_vld4q_dup_v(&__ret, __p0, 32); \
  11557. \
  11558. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  11559. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  11560. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  11561. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  11562. __ret; \
  11563. })
  11564. #endif
  11565. #ifdef __LITTLE_ENDIAN__
  11566. #define vld4q_dup_f32(__p0) __extension__ ({ \
  11567. float32x4x4_t __ret; \
  11568. __builtin_neon_vld4q_dup_v(&__ret, __p0, 41); \
  11569. __ret; \
  11570. })
  11571. #else
  11572. #define vld4q_dup_f32(__p0) __extension__ ({ \
  11573. float32x4x4_t __ret; \
  11574. __builtin_neon_vld4q_dup_v(&__ret, __p0, 41); \
  11575. \
  11576. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  11577. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  11578. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  11579. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 3, 2, 1, 0); \
  11580. __ret; \
  11581. })
  11582. #endif
  11583. #ifdef __LITTLE_ENDIAN__
  11584. #define vld4q_dup_s32(__p0) __extension__ ({ \
  11585. int32x4x4_t __ret; \
  11586. __builtin_neon_vld4q_dup_v(&__ret, __p0, 34); \
  11587. __ret; \
  11588. })
  11589. #else
  11590. #define vld4q_dup_s32(__p0) __extension__ ({ \
  11591. int32x4x4_t __ret; \
  11592. __builtin_neon_vld4q_dup_v(&__ret, __p0, 34); \
  11593. \
  11594. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  11595. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  11596. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  11597. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 3, 2, 1, 0); \
  11598. __ret; \
  11599. })
  11600. #endif
  11601. #ifdef __LITTLE_ENDIAN__
  11602. #define vld4q_dup_s64(__p0) __extension__ ({ \
  11603. int64x2x4_t __ret; \
  11604. __builtin_neon_vld4q_dup_v(&__ret, __p0, 35); \
  11605. __ret; \
  11606. })
  11607. #else
  11608. #define vld4q_dup_s64(__p0) __extension__ ({ \
  11609. int64x2x4_t __ret; \
  11610. __builtin_neon_vld4q_dup_v(&__ret, __p0, 35); \
  11611. \
  11612. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  11613. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  11614. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  11615. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 1, 0); \
  11616. __ret; \
  11617. })
  11618. #endif
  11619. #ifdef __LITTLE_ENDIAN__
  11620. #define vld4q_dup_s16(__p0) __extension__ ({ \
  11621. int16x8x4_t __ret; \
  11622. __builtin_neon_vld4q_dup_v(&__ret, __p0, 33); \
  11623. __ret; \
  11624. })
  11625. #else
  11626. #define vld4q_dup_s16(__p0) __extension__ ({ \
  11627. int16x8x4_t __ret; \
  11628. __builtin_neon_vld4q_dup_v(&__ret, __p0, 33); \
  11629. \
  11630. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  11631. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  11632. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  11633. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  11634. __ret; \
  11635. })
  11636. #endif
  11637. #ifdef __LITTLE_ENDIAN__
  11638. #define vld4_dup_u8(__p0) __extension__ ({ \
  11639. uint8x8x4_t __ret; \
  11640. __builtin_neon_vld4_dup_v(&__ret, __p0, 16); \
  11641. __ret; \
  11642. })
  11643. #else
  11644. #define vld4_dup_u8(__p0) __extension__ ({ \
  11645. uint8x8x4_t __ret; \
  11646. __builtin_neon_vld4_dup_v(&__ret, __p0, 16); \
  11647. \
  11648. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  11649. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  11650. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  11651. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  11652. __ret; \
  11653. })
  11654. #endif
  11655. #ifdef __LITTLE_ENDIAN__
  11656. #define vld4_dup_u32(__p0) __extension__ ({ \
  11657. uint32x2x4_t __ret; \
  11658. __builtin_neon_vld4_dup_v(&__ret, __p0, 18); \
  11659. __ret; \
  11660. })
  11661. #else
  11662. #define vld4_dup_u32(__p0) __extension__ ({ \
  11663. uint32x2x4_t __ret; \
  11664. __builtin_neon_vld4_dup_v(&__ret, __p0, 18); \
  11665. \
  11666. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  11667. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  11668. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  11669. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 1, 0); \
  11670. __ret; \
  11671. })
  11672. #endif
  11673. #ifdef __LITTLE_ENDIAN__
  11674. #define vld4_dup_u64(__p0) __extension__ ({ \
  11675. uint64x1x4_t __ret; \
  11676. __builtin_neon_vld4_dup_v(&__ret, __p0, 19); \
  11677. __ret; \
  11678. })
  11679. #else
  11680. #define vld4_dup_u64(__p0) __extension__ ({ \
  11681. uint64x1x4_t __ret; \
  11682. __builtin_neon_vld4_dup_v(&__ret, __p0, 19); \
  11683. __ret; \
  11684. })
  11685. #endif
  11686. #ifdef __LITTLE_ENDIAN__
  11687. #define vld4_dup_u16(__p0) __extension__ ({ \
  11688. uint16x4x4_t __ret; \
  11689. __builtin_neon_vld4_dup_v(&__ret, __p0, 17); \
  11690. __ret; \
  11691. })
  11692. #else
  11693. #define vld4_dup_u16(__p0) __extension__ ({ \
  11694. uint16x4x4_t __ret; \
  11695. __builtin_neon_vld4_dup_v(&__ret, __p0, 17); \
  11696. \
  11697. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  11698. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  11699. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  11700. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 3, 2, 1, 0); \
  11701. __ret; \
  11702. })
  11703. #endif
  11704. #ifdef __LITTLE_ENDIAN__
  11705. #define vld4_dup_s8(__p0) __extension__ ({ \
  11706. int8x8x4_t __ret; \
  11707. __builtin_neon_vld4_dup_v(&__ret, __p0, 0); \
  11708. __ret; \
  11709. })
  11710. #else
  11711. #define vld4_dup_s8(__p0) __extension__ ({ \
  11712. int8x8x4_t __ret; \
  11713. __builtin_neon_vld4_dup_v(&__ret, __p0, 0); \
  11714. \
  11715. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  11716. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  11717. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  11718. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  11719. __ret; \
  11720. })
  11721. #endif
  11722. #ifdef __LITTLE_ENDIAN__
  11723. #define vld4_dup_f32(__p0) __extension__ ({ \
  11724. float32x2x4_t __ret; \
  11725. __builtin_neon_vld4_dup_v(&__ret, __p0, 9); \
  11726. __ret; \
  11727. })
  11728. #else
  11729. #define vld4_dup_f32(__p0) __extension__ ({ \
  11730. float32x2x4_t __ret; \
  11731. __builtin_neon_vld4_dup_v(&__ret, __p0, 9); \
  11732. \
  11733. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  11734. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  11735. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  11736. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 1, 0); \
  11737. __ret; \
  11738. })
  11739. #endif
  11740. #ifdef __LITTLE_ENDIAN__
  11741. #define vld4_dup_s32(__p0) __extension__ ({ \
  11742. int32x2x4_t __ret; \
  11743. __builtin_neon_vld4_dup_v(&__ret, __p0, 2); \
  11744. __ret; \
  11745. })
  11746. #else
  11747. #define vld4_dup_s32(__p0) __extension__ ({ \
  11748. int32x2x4_t __ret; \
  11749. __builtin_neon_vld4_dup_v(&__ret, __p0, 2); \
  11750. \
  11751. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  11752. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  11753. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  11754. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 1, 0); \
  11755. __ret; \
  11756. })
  11757. #endif
  11758. #ifdef __LITTLE_ENDIAN__
  11759. #define vld4_dup_s64(__p0) __extension__ ({ \
  11760. int64x1x4_t __ret; \
  11761. __builtin_neon_vld4_dup_v(&__ret, __p0, 3); \
  11762. __ret; \
  11763. })
  11764. #else
  11765. #define vld4_dup_s64(__p0) __extension__ ({ \
  11766. int64x1x4_t __ret; \
  11767. __builtin_neon_vld4_dup_v(&__ret, __p0, 3); \
  11768. __ret; \
  11769. })
  11770. #endif
  11771. #ifdef __LITTLE_ENDIAN__
  11772. #define vld4_dup_s16(__p0) __extension__ ({ \
  11773. int16x4x4_t __ret; \
  11774. __builtin_neon_vld4_dup_v(&__ret, __p0, 1); \
  11775. __ret; \
  11776. })
  11777. #else
  11778. #define vld4_dup_s16(__p0) __extension__ ({ \
  11779. int16x4x4_t __ret; \
  11780. __builtin_neon_vld4_dup_v(&__ret, __p0, 1); \
  11781. \
  11782. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  11783. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  11784. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  11785. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 3, 2, 1, 0); \
  11786. __ret; \
  11787. })
  11788. #endif
  11789. #ifdef __LITTLE_ENDIAN__
  11790. #define vld4_lane_p8(__p0, __p1, __p2) __extension__ ({ \
  11791. poly8x8x4_t __s1 = __p1; \
  11792. poly8x8x4_t __ret; \
  11793. __builtin_neon_vld4_lane_v(&__ret, __p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], (int8x8_t)__s1.val[3], __p2, 4); \
  11794. __ret; \
  11795. })
  11796. #else
  11797. #define vld4_lane_p8(__p0, __p1, __p2) __extension__ ({ \
  11798. poly8x8x4_t __s1 = __p1; \
  11799. poly8x8x4_t __rev1; \
  11800. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  11801. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  11802. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  11803. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  11804. poly8x8x4_t __ret; \
  11805. __builtin_neon_vld4_lane_v(&__ret, __p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], (int8x8_t)__rev1.val[3], __p2, 4); \
  11806. \
  11807. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  11808. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  11809. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  11810. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  11811. __ret; \
  11812. })
  11813. #endif
  11814. #ifdef __LITTLE_ENDIAN__
  11815. #define vld4_lane_p16(__p0, __p1, __p2) __extension__ ({ \
  11816. poly16x4x4_t __s1 = __p1; \
  11817. poly16x4x4_t __ret; \
  11818. __builtin_neon_vld4_lane_v(&__ret, __p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], (int8x8_t)__s1.val[3], __p2, 5); \
  11819. __ret; \
  11820. })
  11821. #else
  11822. #define vld4_lane_p16(__p0, __p1, __p2) __extension__ ({ \
  11823. poly16x4x4_t __s1 = __p1; \
  11824. poly16x4x4_t __rev1; \
  11825. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  11826. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  11827. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  11828. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 3, 2, 1, 0); \
  11829. poly16x4x4_t __ret; \
  11830. __builtin_neon_vld4_lane_v(&__ret, __p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], (int8x8_t)__rev1.val[3], __p2, 5); \
  11831. \
  11832. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  11833. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  11834. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  11835. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 3, 2, 1, 0); \
  11836. __ret; \
  11837. })
  11838. #endif
  11839. #ifdef __LITTLE_ENDIAN__
  11840. #define vld4q_lane_p16(__p0, __p1, __p2) __extension__ ({ \
  11841. poly16x8x4_t __s1 = __p1; \
  11842. poly16x8x4_t __ret; \
  11843. __builtin_neon_vld4q_lane_v(&__ret, __p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], (int8x16_t)__s1.val[3], __p2, 37); \
  11844. __ret; \
  11845. })
  11846. #else
  11847. #define vld4q_lane_p16(__p0, __p1, __p2) __extension__ ({ \
  11848. poly16x8x4_t __s1 = __p1; \
  11849. poly16x8x4_t __rev1; \
  11850. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  11851. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  11852. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  11853. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  11854. poly16x8x4_t __ret; \
  11855. __builtin_neon_vld4q_lane_v(&__ret, __p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], (int8x16_t)__rev1.val[3], __p2, 37); \
  11856. \
  11857. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  11858. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  11859. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  11860. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  11861. __ret; \
  11862. })
  11863. #endif
  11864. #ifdef __LITTLE_ENDIAN__
  11865. #define vld4q_lane_u32(__p0, __p1, __p2) __extension__ ({ \
  11866. uint32x4x4_t __s1 = __p1; \
  11867. uint32x4x4_t __ret; \
  11868. __builtin_neon_vld4q_lane_v(&__ret, __p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], (int8x16_t)__s1.val[3], __p2, 50); \
  11869. __ret; \
  11870. })
  11871. #else
  11872. #define vld4q_lane_u32(__p0, __p1, __p2) __extension__ ({ \
  11873. uint32x4x4_t __s1 = __p1; \
  11874. uint32x4x4_t __rev1; \
  11875. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  11876. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  11877. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  11878. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 3, 2, 1, 0); \
  11879. uint32x4x4_t __ret; \
  11880. __builtin_neon_vld4q_lane_v(&__ret, __p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], (int8x16_t)__rev1.val[3], __p2, 50); \
  11881. \
  11882. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  11883. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  11884. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  11885. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 3, 2, 1, 0); \
  11886. __ret; \
  11887. })
  11888. #endif
  11889. #ifdef __LITTLE_ENDIAN__
  11890. #define vld4q_lane_u16(__p0, __p1, __p2) __extension__ ({ \
  11891. uint16x8x4_t __s1 = __p1; \
  11892. uint16x8x4_t __ret; \
  11893. __builtin_neon_vld4q_lane_v(&__ret, __p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], (int8x16_t)__s1.val[3], __p2, 49); \
  11894. __ret; \
  11895. })
  11896. #else
  11897. #define vld4q_lane_u16(__p0, __p1, __p2) __extension__ ({ \
  11898. uint16x8x4_t __s1 = __p1; \
  11899. uint16x8x4_t __rev1; \
  11900. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  11901. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  11902. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  11903. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  11904. uint16x8x4_t __ret; \
  11905. __builtin_neon_vld4q_lane_v(&__ret, __p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], (int8x16_t)__rev1.val[3], __p2, 49); \
  11906. \
  11907. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  11908. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  11909. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  11910. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  11911. __ret; \
  11912. })
  11913. #endif
  11914. #ifdef __LITTLE_ENDIAN__
  11915. #define vld4q_lane_f32(__p0, __p1, __p2) __extension__ ({ \
  11916. float32x4x4_t __s1 = __p1; \
  11917. float32x4x4_t __ret; \
  11918. __builtin_neon_vld4q_lane_v(&__ret, __p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], __p2, 41); \
  11919. __ret; \
  11920. })
  11921. #else
  11922. #define vld4q_lane_f32(__p0, __p1, __p2) __extension__ ({ \
  11923. float32x4x4_t __s1 = __p1; \
  11924. float32x4x4_t __rev1; \
  11925. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  11926. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  11927. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  11928. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 3, 2, 1, 0); \
  11929. float32x4x4_t __ret; \
  11930. __builtin_neon_vld4q_lane_v(&__ret, __p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __rev1.val[3], __p2, 41); \
  11931. \
  11932. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  11933. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  11934. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  11935. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 3, 2, 1, 0); \
  11936. __ret; \
  11937. })
  11938. #endif
  11939. #ifdef __LITTLE_ENDIAN__
  11940. #define vld4q_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  11941. int32x4x4_t __s1 = __p1; \
  11942. int32x4x4_t __ret; \
  11943. __builtin_neon_vld4q_lane_v(&__ret, __p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], __p2, 34); \
  11944. __ret; \
  11945. })
  11946. #else
  11947. #define vld4q_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  11948. int32x4x4_t __s1 = __p1; \
  11949. int32x4x4_t __rev1; \
  11950. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  11951. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  11952. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  11953. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 3, 2, 1, 0); \
  11954. int32x4x4_t __ret; \
  11955. __builtin_neon_vld4q_lane_v(&__ret, __p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __rev1.val[3], __p2, 34); \
  11956. \
  11957. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  11958. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  11959. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  11960. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 3, 2, 1, 0); \
  11961. __ret; \
  11962. })
  11963. #endif
  11964. #ifdef __LITTLE_ENDIAN__
  11965. #define vld4q_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  11966. int16x8x4_t __s1 = __p1; \
  11967. int16x8x4_t __ret; \
  11968. __builtin_neon_vld4q_lane_v(&__ret, __p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], __p2, 33); \
  11969. __ret; \
  11970. })
  11971. #else
  11972. #define vld4q_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  11973. int16x8x4_t __s1 = __p1; \
  11974. int16x8x4_t __rev1; \
  11975. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  11976. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  11977. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  11978. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  11979. int16x8x4_t __ret; \
  11980. __builtin_neon_vld4q_lane_v(&__ret, __p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __rev1.val[3], __p2, 33); \
  11981. \
  11982. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  11983. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  11984. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  11985. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  11986. __ret; \
  11987. })
  11988. #endif
  11989. #ifdef __LITTLE_ENDIAN__
  11990. #define vld4_lane_u8(__p0, __p1, __p2) __extension__ ({ \
  11991. uint8x8x4_t __s1 = __p1; \
  11992. uint8x8x4_t __ret; \
  11993. __builtin_neon_vld4_lane_v(&__ret, __p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], (int8x8_t)__s1.val[3], __p2, 16); \
  11994. __ret; \
  11995. })
  11996. #else
  11997. #define vld4_lane_u8(__p0, __p1, __p2) __extension__ ({ \
  11998. uint8x8x4_t __s1 = __p1; \
  11999. uint8x8x4_t __rev1; \
  12000. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  12001. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  12002. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  12003. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  12004. uint8x8x4_t __ret; \
  12005. __builtin_neon_vld4_lane_v(&__ret, __p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], (int8x8_t)__rev1.val[3], __p2, 16); \
  12006. \
  12007. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  12008. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  12009. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  12010. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  12011. __ret; \
  12012. })
  12013. #endif
  12014. #ifdef __LITTLE_ENDIAN__
  12015. #define vld4_lane_u32(__p0, __p1, __p2) __extension__ ({ \
  12016. uint32x2x4_t __s1 = __p1; \
  12017. uint32x2x4_t __ret; \
  12018. __builtin_neon_vld4_lane_v(&__ret, __p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], (int8x8_t)__s1.val[3], __p2, 18); \
  12019. __ret; \
  12020. })
  12021. #else
  12022. #define vld4_lane_u32(__p0, __p1, __p2) __extension__ ({ \
  12023. uint32x2x4_t __s1 = __p1; \
  12024. uint32x2x4_t __rev1; \
  12025. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  12026. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  12027. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  12028. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 1, 0); \
  12029. uint32x2x4_t __ret; \
  12030. __builtin_neon_vld4_lane_v(&__ret, __p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], (int8x8_t)__rev1.val[3], __p2, 18); \
  12031. \
  12032. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  12033. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  12034. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  12035. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 1, 0); \
  12036. __ret; \
  12037. })
  12038. #endif
  12039. #ifdef __LITTLE_ENDIAN__
  12040. #define vld4_lane_u16(__p0, __p1, __p2) __extension__ ({ \
  12041. uint16x4x4_t __s1 = __p1; \
  12042. uint16x4x4_t __ret; \
  12043. __builtin_neon_vld4_lane_v(&__ret, __p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], (int8x8_t)__s1.val[3], __p2, 17); \
  12044. __ret; \
  12045. })
  12046. #else
  12047. #define vld4_lane_u16(__p0, __p1, __p2) __extension__ ({ \
  12048. uint16x4x4_t __s1 = __p1; \
  12049. uint16x4x4_t __rev1; \
  12050. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  12051. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  12052. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  12053. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 3, 2, 1, 0); \
  12054. uint16x4x4_t __ret; \
  12055. __builtin_neon_vld4_lane_v(&__ret, __p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], (int8x8_t)__rev1.val[3], __p2, 17); \
  12056. \
  12057. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  12058. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  12059. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  12060. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 3, 2, 1, 0); \
  12061. __ret; \
  12062. })
  12063. #endif
  12064. #ifdef __LITTLE_ENDIAN__
  12065. #define vld4_lane_s8(__p0, __p1, __p2) __extension__ ({ \
  12066. int8x8x4_t __s1 = __p1; \
  12067. int8x8x4_t __ret; \
  12068. __builtin_neon_vld4_lane_v(&__ret, __p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], (int8x8_t)__s1.val[3], __p2, 0); \
  12069. __ret; \
  12070. })
  12071. #else
  12072. #define vld4_lane_s8(__p0, __p1, __p2) __extension__ ({ \
  12073. int8x8x4_t __s1 = __p1; \
  12074. int8x8x4_t __rev1; \
  12075. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  12076. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  12077. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  12078. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  12079. int8x8x4_t __ret; \
  12080. __builtin_neon_vld4_lane_v(&__ret, __p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], (int8x8_t)__rev1.val[3], __p2, 0); \
  12081. \
  12082. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  12083. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  12084. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  12085. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  12086. __ret; \
  12087. })
  12088. #endif
  12089. #ifdef __LITTLE_ENDIAN__
  12090. #define vld4_lane_f32(__p0, __p1, __p2) __extension__ ({ \
  12091. float32x2x4_t __s1 = __p1; \
  12092. float32x2x4_t __ret; \
  12093. __builtin_neon_vld4_lane_v(&__ret, __p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], __p2, 9); \
  12094. __ret; \
  12095. })
  12096. #else
  12097. #define vld4_lane_f32(__p0, __p1, __p2) __extension__ ({ \
  12098. float32x2x4_t __s1 = __p1; \
  12099. float32x2x4_t __rev1; \
  12100. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  12101. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  12102. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  12103. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 1, 0); \
  12104. float32x2x4_t __ret; \
  12105. __builtin_neon_vld4_lane_v(&__ret, __p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __rev1.val[3], __p2, 9); \
  12106. \
  12107. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  12108. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  12109. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  12110. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 1, 0); \
  12111. __ret; \
  12112. })
  12113. #endif
  12114. #ifdef __LITTLE_ENDIAN__
  12115. #define vld4_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  12116. int32x2x4_t __s1 = __p1; \
  12117. int32x2x4_t __ret; \
  12118. __builtin_neon_vld4_lane_v(&__ret, __p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], __p2, 2); \
  12119. __ret; \
  12120. })
  12121. #else
  12122. #define vld4_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  12123. int32x2x4_t __s1 = __p1; \
  12124. int32x2x4_t __rev1; \
  12125. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  12126. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  12127. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  12128. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 1, 0); \
  12129. int32x2x4_t __ret; \
  12130. __builtin_neon_vld4_lane_v(&__ret, __p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __rev1.val[3], __p2, 2); \
  12131. \
  12132. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  12133. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  12134. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  12135. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 1, 0); \
  12136. __ret; \
  12137. })
  12138. #endif
  12139. #ifdef __LITTLE_ENDIAN__
  12140. #define vld4_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  12141. int16x4x4_t __s1 = __p1; \
  12142. int16x4x4_t __ret; \
  12143. __builtin_neon_vld4_lane_v(&__ret, __p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], __p2, 1); \
  12144. __ret; \
  12145. })
  12146. #else
  12147. #define vld4_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  12148. int16x4x4_t __s1 = __p1; \
  12149. int16x4x4_t __rev1; \
  12150. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  12151. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  12152. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  12153. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 3, 2, 1, 0); \
  12154. int16x4x4_t __ret; \
  12155. __builtin_neon_vld4_lane_v(&__ret, __p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __rev1.val[3], __p2, 1); \
  12156. \
  12157. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  12158. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  12159. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  12160. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 3, 2, 1, 0); \
  12161. __ret; \
  12162. })
  12163. #endif
  12164. #ifdef __LITTLE_ENDIAN__
  12165. __ai uint8x16_t vmaxq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  12166. uint8x16_t __ret;
  12167. __ret = (uint8x16_t) __builtin_neon_vmaxq_v((int8x16_t)__p0, (int8x16_t)__p1, 48);
  12168. return __ret;
  12169. }
  12170. #else
  12171. __ai uint8x16_t vmaxq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  12172. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  12173. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  12174. uint8x16_t __ret;
  12175. __ret = (uint8x16_t) __builtin_neon_vmaxq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 48);
  12176. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  12177. return __ret;
  12178. }
  12179. #endif
  12180. #ifdef __LITTLE_ENDIAN__
  12181. __ai uint32x4_t vmaxq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  12182. uint32x4_t __ret;
  12183. __ret = (uint32x4_t) __builtin_neon_vmaxq_v((int8x16_t)__p0, (int8x16_t)__p1, 50);
  12184. return __ret;
  12185. }
  12186. #else
  12187. __ai uint32x4_t vmaxq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  12188. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  12189. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  12190. uint32x4_t __ret;
  12191. __ret = (uint32x4_t) __builtin_neon_vmaxq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 50);
  12192. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  12193. return __ret;
  12194. }
  12195. #endif
  12196. #ifdef __LITTLE_ENDIAN__
  12197. __ai uint16x8_t vmaxq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  12198. uint16x8_t __ret;
  12199. __ret = (uint16x8_t) __builtin_neon_vmaxq_v((int8x16_t)__p0, (int8x16_t)__p1, 49);
  12200. return __ret;
  12201. }
  12202. #else
  12203. __ai uint16x8_t vmaxq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  12204. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  12205. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  12206. uint16x8_t __ret;
  12207. __ret = (uint16x8_t) __builtin_neon_vmaxq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 49);
  12208. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  12209. return __ret;
  12210. }
  12211. #endif
  12212. #ifdef __LITTLE_ENDIAN__
  12213. __ai int8x16_t vmaxq_s8(int8x16_t __p0, int8x16_t __p1) {
  12214. int8x16_t __ret;
  12215. __ret = (int8x16_t) __builtin_neon_vmaxq_v((int8x16_t)__p0, (int8x16_t)__p1, 32);
  12216. return __ret;
  12217. }
  12218. #else
  12219. __ai int8x16_t vmaxq_s8(int8x16_t __p0, int8x16_t __p1) {
  12220. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  12221. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  12222. int8x16_t __ret;
  12223. __ret = (int8x16_t) __builtin_neon_vmaxq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 32);
  12224. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  12225. return __ret;
  12226. }
  12227. #endif
  12228. #ifdef __LITTLE_ENDIAN__
  12229. __ai float32x4_t vmaxq_f32(float32x4_t __p0, float32x4_t __p1) {
  12230. float32x4_t __ret;
  12231. __ret = (float32x4_t) __builtin_neon_vmaxq_v((int8x16_t)__p0, (int8x16_t)__p1, 41);
  12232. return __ret;
  12233. }
  12234. #else
  12235. __ai float32x4_t vmaxq_f32(float32x4_t __p0, float32x4_t __p1) {
  12236. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  12237. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  12238. float32x4_t __ret;
  12239. __ret = (float32x4_t) __builtin_neon_vmaxq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 41);
  12240. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  12241. return __ret;
  12242. }
  12243. #endif
  12244. #ifdef __LITTLE_ENDIAN__
  12245. __ai int32x4_t vmaxq_s32(int32x4_t __p0, int32x4_t __p1) {
  12246. int32x4_t __ret;
  12247. __ret = (int32x4_t) __builtin_neon_vmaxq_v((int8x16_t)__p0, (int8x16_t)__p1, 34);
  12248. return __ret;
  12249. }
  12250. #else
  12251. __ai int32x4_t vmaxq_s32(int32x4_t __p0, int32x4_t __p1) {
  12252. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  12253. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  12254. int32x4_t __ret;
  12255. __ret = (int32x4_t) __builtin_neon_vmaxq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 34);
  12256. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  12257. return __ret;
  12258. }
  12259. #endif
  12260. #ifdef __LITTLE_ENDIAN__
  12261. __ai int16x8_t vmaxq_s16(int16x8_t __p0, int16x8_t __p1) {
  12262. int16x8_t __ret;
  12263. __ret = (int16x8_t) __builtin_neon_vmaxq_v((int8x16_t)__p0, (int8x16_t)__p1, 33);
  12264. return __ret;
  12265. }
  12266. #else
  12267. __ai int16x8_t vmaxq_s16(int16x8_t __p0, int16x8_t __p1) {
  12268. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  12269. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  12270. int16x8_t __ret;
  12271. __ret = (int16x8_t) __builtin_neon_vmaxq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 33);
  12272. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  12273. return __ret;
  12274. }
  12275. #endif
  12276. #ifdef __LITTLE_ENDIAN__
  12277. __ai uint8x8_t vmax_u8(uint8x8_t __p0, uint8x8_t __p1) {
  12278. uint8x8_t __ret;
  12279. __ret = (uint8x8_t) __builtin_neon_vmax_v((int8x8_t)__p0, (int8x8_t)__p1, 16);
  12280. return __ret;
  12281. }
  12282. #else
  12283. __ai uint8x8_t vmax_u8(uint8x8_t __p0, uint8x8_t __p1) {
  12284. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  12285. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  12286. uint8x8_t __ret;
  12287. __ret = (uint8x8_t) __builtin_neon_vmax_v((int8x8_t)__rev0, (int8x8_t)__rev1, 16);
  12288. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  12289. return __ret;
  12290. }
  12291. #endif
  12292. #ifdef __LITTLE_ENDIAN__
  12293. __ai uint32x2_t vmax_u32(uint32x2_t __p0, uint32x2_t __p1) {
  12294. uint32x2_t __ret;
  12295. __ret = (uint32x2_t) __builtin_neon_vmax_v((int8x8_t)__p0, (int8x8_t)__p1, 18);
  12296. return __ret;
  12297. }
  12298. #else
  12299. __ai uint32x2_t vmax_u32(uint32x2_t __p0, uint32x2_t __p1) {
  12300. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  12301. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  12302. uint32x2_t __ret;
  12303. __ret = (uint32x2_t) __builtin_neon_vmax_v((int8x8_t)__rev0, (int8x8_t)__rev1, 18);
  12304. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  12305. return __ret;
  12306. }
  12307. #endif
  12308. #ifdef __LITTLE_ENDIAN__
  12309. __ai uint16x4_t vmax_u16(uint16x4_t __p0, uint16x4_t __p1) {
  12310. uint16x4_t __ret;
  12311. __ret = (uint16x4_t) __builtin_neon_vmax_v((int8x8_t)__p0, (int8x8_t)__p1, 17);
  12312. return __ret;
  12313. }
  12314. #else
  12315. __ai uint16x4_t vmax_u16(uint16x4_t __p0, uint16x4_t __p1) {
  12316. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  12317. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  12318. uint16x4_t __ret;
  12319. __ret = (uint16x4_t) __builtin_neon_vmax_v((int8x8_t)__rev0, (int8x8_t)__rev1, 17);
  12320. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  12321. return __ret;
  12322. }
  12323. #endif
  12324. #ifdef __LITTLE_ENDIAN__
  12325. __ai int8x8_t vmax_s8(int8x8_t __p0, int8x8_t __p1) {
  12326. int8x8_t __ret;
  12327. __ret = (int8x8_t) __builtin_neon_vmax_v((int8x8_t)__p0, (int8x8_t)__p1, 0);
  12328. return __ret;
  12329. }
  12330. #else
  12331. __ai int8x8_t vmax_s8(int8x8_t __p0, int8x8_t __p1) {
  12332. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  12333. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  12334. int8x8_t __ret;
  12335. __ret = (int8x8_t) __builtin_neon_vmax_v((int8x8_t)__rev0, (int8x8_t)__rev1, 0);
  12336. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  12337. return __ret;
  12338. }
  12339. #endif
  12340. #ifdef __LITTLE_ENDIAN__
  12341. __ai float32x2_t vmax_f32(float32x2_t __p0, float32x2_t __p1) {
  12342. float32x2_t __ret;
  12343. __ret = (float32x2_t) __builtin_neon_vmax_v((int8x8_t)__p0, (int8x8_t)__p1, 9);
  12344. return __ret;
  12345. }
  12346. #else
  12347. __ai float32x2_t vmax_f32(float32x2_t __p0, float32x2_t __p1) {
  12348. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  12349. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  12350. float32x2_t __ret;
  12351. __ret = (float32x2_t) __builtin_neon_vmax_v((int8x8_t)__rev0, (int8x8_t)__rev1, 9);
  12352. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  12353. return __ret;
  12354. }
  12355. #endif
  12356. #ifdef __LITTLE_ENDIAN__
  12357. __ai int32x2_t vmax_s32(int32x2_t __p0, int32x2_t __p1) {
  12358. int32x2_t __ret;
  12359. __ret = (int32x2_t) __builtin_neon_vmax_v((int8x8_t)__p0, (int8x8_t)__p1, 2);
  12360. return __ret;
  12361. }
  12362. #else
  12363. __ai int32x2_t vmax_s32(int32x2_t __p0, int32x2_t __p1) {
  12364. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  12365. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  12366. int32x2_t __ret;
  12367. __ret = (int32x2_t) __builtin_neon_vmax_v((int8x8_t)__rev0, (int8x8_t)__rev1, 2);
  12368. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  12369. return __ret;
  12370. }
  12371. #endif
  12372. #ifdef __LITTLE_ENDIAN__
  12373. __ai int16x4_t vmax_s16(int16x4_t __p0, int16x4_t __p1) {
  12374. int16x4_t __ret;
  12375. __ret = (int16x4_t) __builtin_neon_vmax_v((int8x8_t)__p0, (int8x8_t)__p1, 1);
  12376. return __ret;
  12377. }
  12378. #else
  12379. __ai int16x4_t vmax_s16(int16x4_t __p0, int16x4_t __p1) {
  12380. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  12381. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  12382. int16x4_t __ret;
  12383. __ret = (int16x4_t) __builtin_neon_vmax_v((int8x8_t)__rev0, (int8x8_t)__rev1, 1);
  12384. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  12385. return __ret;
  12386. }
  12387. #endif
  12388. #ifdef __LITTLE_ENDIAN__
  12389. __ai uint8x16_t vminq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  12390. uint8x16_t __ret;
  12391. __ret = (uint8x16_t) __builtin_neon_vminq_v((int8x16_t)__p0, (int8x16_t)__p1, 48);
  12392. return __ret;
  12393. }
  12394. #else
  12395. __ai uint8x16_t vminq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  12396. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  12397. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  12398. uint8x16_t __ret;
  12399. __ret = (uint8x16_t) __builtin_neon_vminq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 48);
  12400. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  12401. return __ret;
  12402. }
  12403. #endif
  12404. #ifdef __LITTLE_ENDIAN__
  12405. __ai uint32x4_t vminq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  12406. uint32x4_t __ret;
  12407. __ret = (uint32x4_t) __builtin_neon_vminq_v((int8x16_t)__p0, (int8x16_t)__p1, 50);
  12408. return __ret;
  12409. }
  12410. #else
  12411. __ai uint32x4_t vminq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  12412. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  12413. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  12414. uint32x4_t __ret;
  12415. __ret = (uint32x4_t) __builtin_neon_vminq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 50);
  12416. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  12417. return __ret;
  12418. }
  12419. #endif
  12420. #ifdef __LITTLE_ENDIAN__
  12421. __ai uint16x8_t vminq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  12422. uint16x8_t __ret;
  12423. __ret = (uint16x8_t) __builtin_neon_vminq_v((int8x16_t)__p0, (int8x16_t)__p1, 49);
  12424. return __ret;
  12425. }
  12426. #else
  12427. __ai uint16x8_t vminq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  12428. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  12429. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  12430. uint16x8_t __ret;
  12431. __ret = (uint16x8_t) __builtin_neon_vminq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 49);
  12432. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  12433. return __ret;
  12434. }
  12435. #endif
  12436. #ifdef __LITTLE_ENDIAN__
  12437. __ai int8x16_t vminq_s8(int8x16_t __p0, int8x16_t __p1) {
  12438. int8x16_t __ret;
  12439. __ret = (int8x16_t) __builtin_neon_vminq_v((int8x16_t)__p0, (int8x16_t)__p1, 32);
  12440. return __ret;
  12441. }
  12442. #else
  12443. __ai int8x16_t vminq_s8(int8x16_t __p0, int8x16_t __p1) {
  12444. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  12445. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  12446. int8x16_t __ret;
  12447. __ret = (int8x16_t) __builtin_neon_vminq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 32);
  12448. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  12449. return __ret;
  12450. }
  12451. #endif
  12452. #ifdef __LITTLE_ENDIAN__
  12453. __ai float32x4_t vminq_f32(float32x4_t __p0, float32x4_t __p1) {
  12454. float32x4_t __ret;
  12455. __ret = (float32x4_t) __builtin_neon_vminq_v((int8x16_t)__p0, (int8x16_t)__p1, 41);
  12456. return __ret;
  12457. }
  12458. #else
  12459. __ai float32x4_t vminq_f32(float32x4_t __p0, float32x4_t __p1) {
  12460. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  12461. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  12462. float32x4_t __ret;
  12463. __ret = (float32x4_t) __builtin_neon_vminq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 41);
  12464. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  12465. return __ret;
  12466. }
  12467. #endif
  12468. #ifdef __LITTLE_ENDIAN__
  12469. __ai int32x4_t vminq_s32(int32x4_t __p0, int32x4_t __p1) {
  12470. int32x4_t __ret;
  12471. __ret = (int32x4_t) __builtin_neon_vminq_v((int8x16_t)__p0, (int8x16_t)__p1, 34);
  12472. return __ret;
  12473. }
  12474. #else
  12475. __ai int32x4_t vminq_s32(int32x4_t __p0, int32x4_t __p1) {
  12476. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  12477. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  12478. int32x4_t __ret;
  12479. __ret = (int32x4_t) __builtin_neon_vminq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 34);
  12480. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  12481. return __ret;
  12482. }
  12483. #endif
  12484. #ifdef __LITTLE_ENDIAN__
  12485. __ai int16x8_t vminq_s16(int16x8_t __p0, int16x8_t __p1) {
  12486. int16x8_t __ret;
  12487. __ret = (int16x8_t) __builtin_neon_vminq_v((int8x16_t)__p0, (int8x16_t)__p1, 33);
  12488. return __ret;
  12489. }
  12490. #else
  12491. __ai int16x8_t vminq_s16(int16x8_t __p0, int16x8_t __p1) {
  12492. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  12493. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  12494. int16x8_t __ret;
  12495. __ret = (int16x8_t) __builtin_neon_vminq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 33);
  12496. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  12497. return __ret;
  12498. }
  12499. #endif
  12500. #ifdef __LITTLE_ENDIAN__
  12501. __ai uint8x8_t vmin_u8(uint8x8_t __p0, uint8x8_t __p1) {
  12502. uint8x8_t __ret;
  12503. __ret = (uint8x8_t) __builtin_neon_vmin_v((int8x8_t)__p0, (int8x8_t)__p1, 16);
  12504. return __ret;
  12505. }
  12506. #else
  12507. __ai uint8x8_t vmin_u8(uint8x8_t __p0, uint8x8_t __p1) {
  12508. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  12509. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  12510. uint8x8_t __ret;
  12511. __ret = (uint8x8_t) __builtin_neon_vmin_v((int8x8_t)__rev0, (int8x8_t)__rev1, 16);
  12512. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  12513. return __ret;
  12514. }
  12515. #endif
  12516. #ifdef __LITTLE_ENDIAN__
  12517. __ai uint32x2_t vmin_u32(uint32x2_t __p0, uint32x2_t __p1) {
  12518. uint32x2_t __ret;
  12519. __ret = (uint32x2_t) __builtin_neon_vmin_v((int8x8_t)__p0, (int8x8_t)__p1, 18);
  12520. return __ret;
  12521. }
  12522. #else
  12523. __ai uint32x2_t vmin_u32(uint32x2_t __p0, uint32x2_t __p1) {
  12524. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  12525. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  12526. uint32x2_t __ret;
  12527. __ret = (uint32x2_t) __builtin_neon_vmin_v((int8x8_t)__rev0, (int8x8_t)__rev1, 18);
  12528. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  12529. return __ret;
  12530. }
  12531. #endif
  12532. #ifdef __LITTLE_ENDIAN__
  12533. __ai uint16x4_t vmin_u16(uint16x4_t __p0, uint16x4_t __p1) {
  12534. uint16x4_t __ret;
  12535. __ret = (uint16x4_t) __builtin_neon_vmin_v((int8x8_t)__p0, (int8x8_t)__p1, 17);
  12536. return __ret;
  12537. }
  12538. #else
  12539. __ai uint16x4_t vmin_u16(uint16x4_t __p0, uint16x4_t __p1) {
  12540. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  12541. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  12542. uint16x4_t __ret;
  12543. __ret = (uint16x4_t) __builtin_neon_vmin_v((int8x8_t)__rev0, (int8x8_t)__rev1, 17);
  12544. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  12545. return __ret;
  12546. }
  12547. #endif
  12548. #ifdef __LITTLE_ENDIAN__
  12549. __ai int8x8_t vmin_s8(int8x8_t __p0, int8x8_t __p1) {
  12550. int8x8_t __ret;
  12551. __ret = (int8x8_t) __builtin_neon_vmin_v((int8x8_t)__p0, (int8x8_t)__p1, 0);
  12552. return __ret;
  12553. }
  12554. #else
  12555. __ai int8x8_t vmin_s8(int8x8_t __p0, int8x8_t __p1) {
  12556. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  12557. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  12558. int8x8_t __ret;
  12559. __ret = (int8x8_t) __builtin_neon_vmin_v((int8x8_t)__rev0, (int8x8_t)__rev1, 0);
  12560. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  12561. return __ret;
  12562. }
  12563. #endif
  12564. #ifdef __LITTLE_ENDIAN__
  12565. __ai float32x2_t vmin_f32(float32x2_t __p0, float32x2_t __p1) {
  12566. float32x2_t __ret;
  12567. __ret = (float32x2_t) __builtin_neon_vmin_v((int8x8_t)__p0, (int8x8_t)__p1, 9);
  12568. return __ret;
  12569. }
  12570. #else
  12571. __ai float32x2_t vmin_f32(float32x2_t __p0, float32x2_t __p1) {
  12572. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  12573. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  12574. float32x2_t __ret;
  12575. __ret = (float32x2_t) __builtin_neon_vmin_v((int8x8_t)__rev0, (int8x8_t)__rev1, 9);
  12576. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  12577. return __ret;
  12578. }
  12579. #endif
  12580. #ifdef __LITTLE_ENDIAN__
  12581. __ai int32x2_t vmin_s32(int32x2_t __p0, int32x2_t __p1) {
  12582. int32x2_t __ret;
  12583. __ret = (int32x2_t) __builtin_neon_vmin_v((int8x8_t)__p0, (int8x8_t)__p1, 2);
  12584. return __ret;
  12585. }
  12586. #else
  12587. __ai int32x2_t vmin_s32(int32x2_t __p0, int32x2_t __p1) {
  12588. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  12589. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  12590. int32x2_t __ret;
  12591. __ret = (int32x2_t) __builtin_neon_vmin_v((int8x8_t)__rev0, (int8x8_t)__rev1, 2);
  12592. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  12593. return __ret;
  12594. }
  12595. #endif
  12596. #ifdef __LITTLE_ENDIAN__
  12597. __ai int16x4_t vmin_s16(int16x4_t __p0, int16x4_t __p1) {
  12598. int16x4_t __ret;
  12599. __ret = (int16x4_t) __builtin_neon_vmin_v((int8x8_t)__p0, (int8x8_t)__p1, 1);
  12600. return __ret;
  12601. }
  12602. #else
  12603. __ai int16x4_t vmin_s16(int16x4_t __p0, int16x4_t __p1) {
  12604. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  12605. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  12606. int16x4_t __ret;
  12607. __ret = (int16x4_t) __builtin_neon_vmin_v((int8x8_t)__rev0, (int8x8_t)__rev1, 1);
  12608. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  12609. return __ret;
  12610. }
  12611. #endif
  12612. #ifdef __LITTLE_ENDIAN__
  12613. __ai uint8x16_t vmlaq_u8(uint8x16_t __p0, uint8x16_t __p1, uint8x16_t __p2) {
  12614. uint8x16_t __ret;
  12615. __ret = __p0 + __p1 * __p2;
  12616. return __ret;
  12617. }
  12618. #else
  12619. __ai uint8x16_t vmlaq_u8(uint8x16_t __p0, uint8x16_t __p1, uint8x16_t __p2) {
  12620. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  12621. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  12622. uint8x16_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  12623. uint8x16_t __ret;
  12624. __ret = __rev0 + __rev1 * __rev2;
  12625. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  12626. return __ret;
  12627. }
  12628. #endif
  12629. #ifdef __LITTLE_ENDIAN__
  12630. __ai uint32x4_t vmlaq_u32(uint32x4_t __p0, uint32x4_t __p1, uint32x4_t __p2) {
  12631. uint32x4_t __ret;
  12632. __ret = __p0 + __p1 * __p2;
  12633. return __ret;
  12634. }
  12635. #else
  12636. __ai uint32x4_t vmlaq_u32(uint32x4_t __p0, uint32x4_t __p1, uint32x4_t __p2) {
  12637. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  12638. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  12639. uint32x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  12640. uint32x4_t __ret;
  12641. __ret = __rev0 + __rev1 * __rev2;
  12642. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  12643. return __ret;
  12644. }
  12645. #endif
  12646. #ifdef __LITTLE_ENDIAN__
  12647. __ai uint16x8_t vmlaq_u16(uint16x8_t __p0, uint16x8_t __p1, uint16x8_t __p2) {
  12648. uint16x8_t __ret;
  12649. __ret = __p0 + __p1 * __p2;
  12650. return __ret;
  12651. }
  12652. #else
  12653. __ai uint16x8_t vmlaq_u16(uint16x8_t __p0, uint16x8_t __p1, uint16x8_t __p2) {
  12654. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  12655. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  12656. uint16x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  12657. uint16x8_t __ret;
  12658. __ret = __rev0 + __rev1 * __rev2;
  12659. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  12660. return __ret;
  12661. }
  12662. #endif
  12663. #ifdef __LITTLE_ENDIAN__
  12664. __ai int8x16_t vmlaq_s8(int8x16_t __p0, int8x16_t __p1, int8x16_t __p2) {
  12665. int8x16_t __ret;
  12666. __ret = __p0 + __p1 * __p2;
  12667. return __ret;
  12668. }
  12669. #else
  12670. __ai int8x16_t vmlaq_s8(int8x16_t __p0, int8x16_t __p1, int8x16_t __p2) {
  12671. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  12672. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  12673. int8x16_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  12674. int8x16_t __ret;
  12675. __ret = __rev0 + __rev1 * __rev2;
  12676. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  12677. return __ret;
  12678. }
  12679. #endif
  12680. #ifdef __LITTLE_ENDIAN__
  12681. __ai float32x4_t vmlaq_f32(float32x4_t __p0, float32x4_t __p1, float32x4_t __p2) {
  12682. float32x4_t __ret;
  12683. __ret = __p0 + __p1 * __p2;
  12684. return __ret;
  12685. }
  12686. #else
  12687. __ai float32x4_t vmlaq_f32(float32x4_t __p0, float32x4_t __p1, float32x4_t __p2) {
  12688. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  12689. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  12690. float32x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  12691. float32x4_t __ret;
  12692. __ret = __rev0 + __rev1 * __rev2;
  12693. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  12694. return __ret;
  12695. }
  12696. #endif
  12697. #ifdef __LITTLE_ENDIAN__
  12698. __ai int32x4_t vmlaq_s32(int32x4_t __p0, int32x4_t __p1, int32x4_t __p2) {
  12699. int32x4_t __ret;
  12700. __ret = __p0 + __p1 * __p2;
  12701. return __ret;
  12702. }
  12703. #else
  12704. __ai int32x4_t vmlaq_s32(int32x4_t __p0, int32x4_t __p1, int32x4_t __p2) {
  12705. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  12706. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  12707. int32x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  12708. int32x4_t __ret;
  12709. __ret = __rev0 + __rev1 * __rev2;
  12710. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  12711. return __ret;
  12712. }
  12713. #endif
  12714. #ifdef __LITTLE_ENDIAN__
  12715. __ai int16x8_t vmlaq_s16(int16x8_t __p0, int16x8_t __p1, int16x8_t __p2) {
  12716. int16x8_t __ret;
  12717. __ret = __p0 + __p1 * __p2;
  12718. return __ret;
  12719. }
  12720. #else
  12721. __ai int16x8_t vmlaq_s16(int16x8_t __p0, int16x8_t __p1, int16x8_t __p2) {
  12722. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  12723. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  12724. int16x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  12725. int16x8_t __ret;
  12726. __ret = __rev0 + __rev1 * __rev2;
  12727. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  12728. return __ret;
  12729. }
  12730. #endif
  12731. #ifdef __LITTLE_ENDIAN__
  12732. __ai uint8x8_t vmla_u8(uint8x8_t __p0, uint8x8_t __p1, uint8x8_t __p2) {
  12733. uint8x8_t __ret;
  12734. __ret = __p0 + __p1 * __p2;
  12735. return __ret;
  12736. }
  12737. #else
  12738. __ai uint8x8_t vmla_u8(uint8x8_t __p0, uint8x8_t __p1, uint8x8_t __p2) {
  12739. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  12740. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  12741. uint8x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  12742. uint8x8_t __ret;
  12743. __ret = __rev0 + __rev1 * __rev2;
  12744. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  12745. return __ret;
  12746. }
  12747. #endif
  12748. #ifdef __LITTLE_ENDIAN__
  12749. __ai uint32x2_t vmla_u32(uint32x2_t __p0, uint32x2_t __p1, uint32x2_t __p2) {
  12750. uint32x2_t __ret;
  12751. __ret = __p0 + __p1 * __p2;
  12752. return __ret;
  12753. }
  12754. #else
  12755. __ai uint32x2_t vmla_u32(uint32x2_t __p0, uint32x2_t __p1, uint32x2_t __p2) {
  12756. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  12757. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  12758. uint32x2_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 1, 0);
  12759. uint32x2_t __ret;
  12760. __ret = __rev0 + __rev1 * __rev2;
  12761. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  12762. return __ret;
  12763. }
  12764. #endif
  12765. #ifdef __LITTLE_ENDIAN__
  12766. __ai uint16x4_t vmla_u16(uint16x4_t __p0, uint16x4_t __p1, uint16x4_t __p2) {
  12767. uint16x4_t __ret;
  12768. __ret = __p0 + __p1 * __p2;
  12769. return __ret;
  12770. }
  12771. #else
  12772. __ai uint16x4_t vmla_u16(uint16x4_t __p0, uint16x4_t __p1, uint16x4_t __p2) {
  12773. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  12774. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  12775. uint16x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  12776. uint16x4_t __ret;
  12777. __ret = __rev0 + __rev1 * __rev2;
  12778. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  12779. return __ret;
  12780. }
  12781. #endif
  12782. #ifdef __LITTLE_ENDIAN__
  12783. __ai int8x8_t vmla_s8(int8x8_t __p0, int8x8_t __p1, int8x8_t __p2) {
  12784. int8x8_t __ret;
  12785. __ret = __p0 + __p1 * __p2;
  12786. return __ret;
  12787. }
  12788. #else
  12789. __ai int8x8_t vmla_s8(int8x8_t __p0, int8x8_t __p1, int8x8_t __p2) {
  12790. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  12791. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  12792. int8x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  12793. int8x8_t __ret;
  12794. __ret = __rev0 + __rev1 * __rev2;
  12795. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  12796. return __ret;
  12797. }
  12798. #endif
  12799. #ifdef __LITTLE_ENDIAN__
  12800. __ai float32x2_t vmla_f32(float32x2_t __p0, float32x2_t __p1, float32x2_t __p2) {
  12801. float32x2_t __ret;
  12802. __ret = __p0 + __p1 * __p2;
  12803. return __ret;
  12804. }
  12805. #else
  12806. __ai float32x2_t vmla_f32(float32x2_t __p0, float32x2_t __p1, float32x2_t __p2) {
  12807. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  12808. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  12809. float32x2_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 1, 0);
  12810. float32x2_t __ret;
  12811. __ret = __rev0 + __rev1 * __rev2;
  12812. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  12813. return __ret;
  12814. }
  12815. #endif
  12816. #ifdef __LITTLE_ENDIAN__
  12817. __ai int32x2_t vmla_s32(int32x2_t __p0, int32x2_t __p1, int32x2_t __p2) {
  12818. int32x2_t __ret;
  12819. __ret = __p0 + __p1 * __p2;
  12820. return __ret;
  12821. }
  12822. #else
  12823. __ai int32x2_t vmla_s32(int32x2_t __p0, int32x2_t __p1, int32x2_t __p2) {
  12824. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  12825. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  12826. int32x2_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 1, 0);
  12827. int32x2_t __ret;
  12828. __ret = __rev0 + __rev1 * __rev2;
  12829. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  12830. return __ret;
  12831. }
  12832. #endif
  12833. #ifdef __LITTLE_ENDIAN__
  12834. __ai int16x4_t vmla_s16(int16x4_t __p0, int16x4_t __p1, int16x4_t __p2) {
  12835. int16x4_t __ret;
  12836. __ret = __p0 + __p1 * __p2;
  12837. return __ret;
  12838. }
  12839. #else
  12840. __ai int16x4_t vmla_s16(int16x4_t __p0, int16x4_t __p1, int16x4_t __p2) {
  12841. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  12842. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  12843. int16x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  12844. int16x4_t __ret;
  12845. __ret = __rev0 + __rev1 * __rev2;
  12846. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  12847. return __ret;
  12848. }
  12849. #endif
  12850. #ifdef __LITTLE_ENDIAN__
  12851. #define vmlaq_lane_u32(__p0, __p1, __p2, __p3) __extension__ ({ \
  12852. uint32x4_t __s0 = __p0; \
  12853. uint32x4_t __s1 = __p1; \
  12854. uint32x2_t __s2 = __p2; \
  12855. uint32x4_t __ret; \
  12856. __ret = __s0 + __s1 * __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3); \
  12857. __ret; \
  12858. })
  12859. #else
  12860. #define vmlaq_lane_u32(__p0, __p1, __p2, __p3) __extension__ ({ \
  12861. uint32x4_t __s0 = __p0; \
  12862. uint32x4_t __s1 = __p1; \
  12863. uint32x2_t __s2 = __p2; \
  12864. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  12865. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  12866. uint32x2_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 1, 0); \
  12867. uint32x4_t __ret; \
  12868. __ret = __rev0 + __rev1 * __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3); \
  12869. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  12870. __ret; \
  12871. })
  12872. #endif
  12873. #ifdef __LITTLE_ENDIAN__
  12874. #define vmlaq_lane_u16(__p0, __p1, __p2, __p3) __extension__ ({ \
  12875. uint16x8_t __s0 = __p0; \
  12876. uint16x8_t __s1 = __p1; \
  12877. uint16x4_t __s2 = __p2; \
  12878. uint16x8_t __ret; \
  12879. __ret = __s0 + __s1 * __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3, __p3, __p3, __p3, __p3); \
  12880. __ret; \
  12881. })
  12882. #else
  12883. #define vmlaq_lane_u16(__p0, __p1, __p2, __p3) __extension__ ({ \
  12884. uint16x8_t __s0 = __p0; \
  12885. uint16x8_t __s1 = __p1; \
  12886. uint16x4_t __s2 = __p2; \
  12887. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  12888. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  12889. uint16x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  12890. uint16x8_t __ret; \
  12891. __ret = __rev0 + __rev1 * __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3, __p3, __p3, __p3, __p3); \
  12892. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  12893. __ret; \
  12894. })
  12895. #endif
  12896. #ifdef __LITTLE_ENDIAN__
  12897. #define vmlaq_lane_f32(__p0, __p1, __p2, __p3) __extension__ ({ \
  12898. float32x4_t __s0 = __p0; \
  12899. float32x4_t __s1 = __p1; \
  12900. float32x2_t __s2 = __p2; \
  12901. float32x4_t __ret; \
  12902. __ret = __s0 + __s1 * __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3); \
  12903. __ret; \
  12904. })
  12905. #else
  12906. #define vmlaq_lane_f32(__p0, __p1, __p2, __p3) __extension__ ({ \
  12907. float32x4_t __s0 = __p0; \
  12908. float32x4_t __s1 = __p1; \
  12909. float32x2_t __s2 = __p2; \
  12910. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  12911. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  12912. float32x2_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 1, 0); \
  12913. float32x4_t __ret; \
  12914. __ret = __rev0 + __rev1 * __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3); \
  12915. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  12916. __ret; \
  12917. })
  12918. #endif
  12919. #ifdef __LITTLE_ENDIAN__
  12920. #define vmlaq_lane_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  12921. int32x4_t __s0 = __p0; \
  12922. int32x4_t __s1 = __p1; \
  12923. int32x2_t __s2 = __p2; \
  12924. int32x4_t __ret; \
  12925. __ret = __s0 + __s1 * __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3); \
  12926. __ret; \
  12927. })
  12928. #else
  12929. #define vmlaq_lane_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  12930. int32x4_t __s0 = __p0; \
  12931. int32x4_t __s1 = __p1; \
  12932. int32x2_t __s2 = __p2; \
  12933. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  12934. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  12935. int32x2_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 1, 0); \
  12936. int32x4_t __ret; \
  12937. __ret = __rev0 + __rev1 * __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3); \
  12938. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  12939. __ret; \
  12940. })
  12941. #endif
  12942. #ifdef __LITTLE_ENDIAN__
  12943. #define vmlaq_lane_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  12944. int16x8_t __s0 = __p0; \
  12945. int16x8_t __s1 = __p1; \
  12946. int16x4_t __s2 = __p2; \
  12947. int16x8_t __ret; \
  12948. __ret = __s0 + __s1 * __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3, __p3, __p3, __p3, __p3); \
  12949. __ret; \
  12950. })
  12951. #else
  12952. #define vmlaq_lane_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  12953. int16x8_t __s0 = __p0; \
  12954. int16x8_t __s1 = __p1; \
  12955. int16x4_t __s2 = __p2; \
  12956. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  12957. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  12958. int16x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  12959. int16x8_t __ret; \
  12960. __ret = __rev0 + __rev1 * __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3, __p3, __p3, __p3, __p3); \
  12961. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  12962. __ret; \
  12963. })
  12964. #endif
  12965. #ifdef __LITTLE_ENDIAN__
  12966. #define vmla_lane_u32(__p0, __p1, __p2, __p3) __extension__ ({ \
  12967. uint32x2_t __s0 = __p0; \
  12968. uint32x2_t __s1 = __p1; \
  12969. uint32x2_t __s2 = __p2; \
  12970. uint32x2_t __ret; \
  12971. __ret = __s0 + __s1 * __builtin_shufflevector(__s2, __s2, __p3, __p3); \
  12972. __ret; \
  12973. })
  12974. #else
  12975. #define vmla_lane_u32(__p0, __p1, __p2, __p3) __extension__ ({ \
  12976. uint32x2_t __s0 = __p0; \
  12977. uint32x2_t __s1 = __p1; \
  12978. uint32x2_t __s2 = __p2; \
  12979. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  12980. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  12981. uint32x2_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 1, 0); \
  12982. uint32x2_t __ret; \
  12983. __ret = __rev0 + __rev1 * __builtin_shufflevector(__rev2, __rev2, __p3, __p3); \
  12984. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  12985. __ret; \
  12986. })
  12987. #endif
  12988. #ifdef __LITTLE_ENDIAN__
  12989. #define vmla_lane_u16(__p0, __p1, __p2, __p3) __extension__ ({ \
  12990. uint16x4_t __s0 = __p0; \
  12991. uint16x4_t __s1 = __p1; \
  12992. uint16x4_t __s2 = __p2; \
  12993. uint16x4_t __ret; \
  12994. __ret = __s0 + __s1 * __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3); \
  12995. __ret; \
  12996. })
  12997. #else
  12998. #define vmla_lane_u16(__p0, __p1, __p2, __p3) __extension__ ({ \
  12999. uint16x4_t __s0 = __p0; \
  13000. uint16x4_t __s1 = __p1; \
  13001. uint16x4_t __s2 = __p2; \
  13002. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  13003. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  13004. uint16x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  13005. uint16x4_t __ret; \
  13006. __ret = __rev0 + __rev1 * __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3); \
  13007. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  13008. __ret; \
  13009. })
  13010. #endif
  13011. #ifdef __LITTLE_ENDIAN__
  13012. #define vmla_lane_f32(__p0, __p1, __p2, __p3) __extension__ ({ \
  13013. float32x2_t __s0 = __p0; \
  13014. float32x2_t __s1 = __p1; \
  13015. float32x2_t __s2 = __p2; \
  13016. float32x2_t __ret; \
  13017. __ret = __s0 + __s1 * __builtin_shufflevector(__s2, __s2, __p3, __p3); \
  13018. __ret; \
  13019. })
  13020. #else
  13021. #define vmla_lane_f32(__p0, __p1, __p2, __p3) __extension__ ({ \
  13022. float32x2_t __s0 = __p0; \
  13023. float32x2_t __s1 = __p1; \
  13024. float32x2_t __s2 = __p2; \
  13025. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  13026. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  13027. float32x2_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 1, 0); \
  13028. float32x2_t __ret; \
  13029. __ret = __rev0 + __rev1 * __builtin_shufflevector(__rev2, __rev2, __p3, __p3); \
  13030. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  13031. __ret; \
  13032. })
  13033. #endif
  13034. #ifdef __LITTLE_ENDIAN__
  13035. #define vmla_lane_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  13036. int32x2_t __s0 = __p0; \
  13037. int32x2_t __s1 = __p1; \
  13038. int32x2_t __s2 = __p2; \
  13039. int32x2_t __ret; \
  13040. __ret = __s0 + __s1 * __builtin_shufflevector(__s2, __s2, __p3, __p3); \
  13041. __ret; \
  13042. })
  13043. #else
  13044. #define vmla_lane_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  13045. int32x2_t __s0 = __p0; \
  13046. int32x2_t __s1 = __p1; \
  13047. int32x2_t __s2 = __p2; \
  13048. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  13049. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  13050. int32x2_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 1, 0); \
  13051. int32x2_t __ret; \
  13052. __ret = __rev0 + __rev1 * __builtin_shufflevector(__rev2, __rev2, __p3, __p3); \
  13053. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  13054. __ret; \
  13055. })
  13056. #endif
  13057. #ifdef __LITTLE_ENDIAN__
  13058. #define vmla_lane_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  13059. int16x4_t __s0 = __p0; \
  13060. int16x4_t __s1 = __p1; \
  13061. int16x4_t __s2 = __p2; \
  13062. int16x4_t __ret; \
  13063. __ret = __s0 + __s1 * __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3); \
  13064. __ret; \
  13065. })
  13066. #else
  13067. #define vmla_lane_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  13068. int16x4_t __s0 = __p0; \
  13069. int16x4_t __s1 = __p1; \
  13070. int16x4_t __s2 = __p2; \
  13071. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  13072. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  13073. int16x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  13074. int16x4_t __ret; \
  13075. __ret = __rev0 + __rev1 * __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3); \
  13076. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  13077. __ret; \
  13078. })
  13079. #endif
  13080. #ifdef __LITTLE_ENDIAN__
  13081. __ai uint32x4_t vmlaq_n_u32(uint32x4_t __p0, uint32x4_t __p1, uint32_t __p2) {
  13082. uint32x4_t __ret;
  13083. __ret = __p0 + __p1 * (uint32x4_t) {__p2, __p2, __p2, __p2};
  13084. return __ret;
  13085. }
  13086. #else
  13087. __ai uint32x4_t vmlaq_n_u32(uint32x4_t __p0, uint32x4_t __p1, uint32_t __p2) {
  13088. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  13089. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  13090. uint32x4_t __ret;
  13091. __ret = __rev0 + __rev1 * (uint32x4_t) {__p2, __p2, __p2, __p2};
  13092. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  13093. return __ret;
  13094. }
  13095. #endif
  13096. #ifdef __LITTLE_ENDIAN__
  13097. __ai uint16x8_t vmlaq_n_u16(uint16x8_t __p0, uint16x8_t __p1, uint16_t __p2) {
  13098. uint16x8_t __ret;
  13099. __ret = __p0 + __p1 * (uint16x8_t) {__p2, __p2, __p2, __p2, __p2, __p2, __p2, __p2};
  13100. return __ret;
  13101. }
  13102. #else
  13103. __ai uint16x8_t vmlaq_n_u16(uint16x8_t __p0, uint16x8_t __p1, uint16_t __p2) {
  13104. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  13105. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  13106. uint16x8_t __ret;
  13107. __ret = __rev0 + __rev1 * (uint16x8_t) {__p2, __p2, __p2, __p2, __p2, __p2, __p2, __p2};
  13108. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  13109. return __ret;
  13110. }
  13111. #endif
  13112. #ifdef __LITTLE_ENDIAN__
  13113. __ai float32x4_t vmlaq_n_f32(float32x4_t __p0, float32x4_t __p1, float32_t __p2) {
  13114. float32x4_t __ret;
  13115. __ret = __p0 + __p1 * (float32x4_t) {__p2, __p2, __p2, __p2};
  13116. return __ret;
  13117. }
  13118. #else
  13119. __ai float32x4_t vmlaq_n_f32(float32x4_t __p0, float32x4_t __p1, float32_t __p2) {
  13120. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  13121. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  13122. float32x4_t __ret;
  13123. __ret = __rev0 + __rev1 * (float32x4_t) {__p2, __p2, __p2, __p2};
  13124. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  13125. return __ret;
  13126. }
  13127. #endif
  13128. #ifdef __LITTLE_ENDIAN__
  13129. __ai int32x4_t vmlaq_n_s32(int32x4_t __p0, int32x4_t __p1, int32_t __p2) {
  13130. int32x4_t __ret;
  13131. __ret = __p0 + __p1 * (int32x4_t) {__p2, __p2, __p2, __p2};
  13132. return __ret;
  13133. }
  13134. #else
  13135. __ai int32x4_t vmlaq_n_s32(int32x4_t __p0, int32x4_t __p1, int32_t __p2) {
  13136. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  13137. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  13138. int32x4_t __ret;
  13139. __ret = __rev0 + __rev1 * (int32x4_t) {__p2, __p2, __p2, __p2};
  13140. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  13141. return __ret;
  13142. }
  13143. #endif
  13144. #ifdef __LITTLE_ENDIAN__
  13145. __ai int16x8_t vmlaq_n_s16(int16x8_t __p0, int16x8_t __p1, int16_t __p2) {
  13146. int16x8_t __ret;
  13147. __ret = __p0 + __p1 * (int16x8_t) {__p2, __p2, __p2, __p2, __p2, __p2, __p2, __p2};
  13148. return __ret;
  13149. }
  13150. #else
  13151. __ai int16x8_t vmlaq_n_s16(int16x8_t __p0, int16x8_t __p1, int16_t __p2) {
  13152. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  13153. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  13154. int16x8_t __ret;
  13155. __ret = __rev0 + __rev1 * (int16x8_t) {__p2, __p2, __p2, __p2, __p2, __p2, __p2, __p2};
  13156. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  13157. return __ret;
  13158. }
  13159. #endif
  13160. #ifdef __LITTLE_ENDIAN__
  13161. __ai uint32x2_t vmla_n_u32(uint32x2_t __p0, uint32x2_t __p1, uint32_t __p2) {
  13162. uint32x2_t __ret;
  13163. __ret = __p0 + __p1 * (uint32x2_t) {__p2, __p2};
  13164. return __ret;
  13165. }
  13166. #else
  13167. __ai uint32x2_t vmla_n_u32(uint32x2_t __p0, uint32x2_t __p1, uint32_t __p2) {
  13168. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  13169. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  13170. uint32x2_t __ret;
  13171. __ret = __rev0 + __rev1 * (uint32x2_t) {__p2, __p2};
  13172. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  13173. return __ret;
  13174. }
  13175. #endif
  13176. #ifdef __LITTLE_ENDIAN__
  13177. __ai uint16x4_t vmla_n_u16(uint16x4_t __p0, uint16x4_t __p1, uint16_t __p2) {
  13178. uint16x4_t __ret;
  13179. __ret = __p0 + __p1 * (uint16x4_t) {__p2, __p2, __p2, __p2};
  13180. return __ret;
  13181. }
  13182. #else
  13183. __ai uint16x4_t vmla_n_u16(uint16x4_t __p0, uint16x4_t __p1, uint16_t __p2) {
  13184. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  13185. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  13186. uint16x4_t __ret;
  13187. __ret = __rev0 + __rev1 * (uint16x4_t) {__p2, __p2, __p2, __p2};
  13188. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  13189. return __ret;
  13190. }
  13191. #endif
  13192. #ifdef __LITTLE_ENDIAN__
  13193. __ai float32x2_t vmla_n_f32(float32x2_t __p0, float32x2_t __p1, float32_t __p2) {
  13194. float32x2_t __ret;
  13195. __ret = __p0 + __p1 * (float32x2_t) {__p2, __p2};
  13196. return __ret;
  13197. }
  13198. #else
  13199. __ai float32x2_t vmla_n_f32(float32x2_t __p0, float32x2_t __p1, float32_t __p2) {
  13200. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  13201. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  13202. float32x2_t __ret;
  13203. __ret = __rev0 + __rev1 * (float32x2_t) {__p2, __p2};
  13204. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  13205. return __ret;
  13206. }
  13207. #endif
  13208. #ifdef __LITTLE_ENDIAN__
  13209. __ai int32x2_t vmla_n_s32(int32x2_t __p0, int32x2_t __p1, int32_t __p2) {
  13210. int32x2_t __ret;
  13211. __ret = __p0 + __p1 * (int32x2_t) {__p2, __p2};
  13212. return __ret;
  13213. }
  13214. #else
  13215. __ai int32x2_t vmla_n_s32(int32x2_t __p0, int32x2_t __p1, int32_t __p2) {
  13216. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  13217. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  13218. int32x2_t __ret;
  13219. __ret = __rev0 + __rev1 * (int32x2_t) {__p2, __p2};
  13220. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  13221. return __ret;
  13222. }
  13223. #endif
  13224. #ifdef __LITTLE_ENDIAN__
  13225. __ai int16x4_t vmla_n_s16(int16x4_t __p0, int16x4_t __p1, int16_t __p2) {
  13226. int16x4_t __ret;
  13227. __ret = __p0 + __p1 * (int16x4_t) {__p2, __p2, __p2, __p2};
  13228. return __ret;
  13229. }
  13230. #else
  13231. __ai int16x4_t vmla_n_s16(int16x4_t __p0, int16x4_t __p1, int16_t __p2) {
  13232. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  13233. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  13234. int16x4_t __ret;
  13235. __ret = __rev0 + __rev1 * (int16x4_t) {__p2, __p2, __p2, __p2};
  13236. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  13237. return __ret;
  13238. }
  13239. #endif
  13240. #ifdef __LITTLE_ENDIAN__
  13241. __ai uint8x16_t vmlsq_u8(uint8x16_t __p0, uint8x16_t __p1, uint8x16_t __p2) {
  13242. uint8x16_t __ret;
  13243. __ret = __p0 - __p1 * __p2;
  13244. return __ret;
  13245. }
  13246. #else
  13247. __ai uint8x16_t vmlsq_u8(uint8x16_t __p0, uint8x16_t __p1, uint8x16_t __p2) {
  13248. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  13249. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  13250. uint8x16_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  13251. uint8x16_t __ret;
  13252. __ret = __rev0 - __rev1 * __rev2;
  13253. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  13254. return __ret;
  13255. }
  13256. #endif
  13257. #ifdef __LITTLE_ENDIAN__
  13258. __ai uint32x4_t vmlsq_u32(uint32x4_t __p0, uint32x4_t __p1, uint32x4_t __p2) {
  13259. uint32x4_t __ret;
  13260. __ret = __p0 - __p1 * __p2;
  13261. return __ret;
  13262. }
  13263. #else
  13264. __ai uint32x4_t vmlsq_u32(uint32x4_t __p0, uint32x4_t __p1, uint32x4_t __p2) {
  13265. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  13266. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  13267. uint32x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  13268. uint32x4_t __ret;
  13269. __ret = __rev0 - __rev1 * __rev2;
  13270. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  13271. return __ret;
  13272. }
  13273. #endif
  13274. #ifdef __LITTLE_ENDIAN__
  13275. __ai uint16x8_t vmlsq_u16(uint16x8_t __p0, uint16x8_t __p1, uint16x8_t __p2) {
  13276. uint16x8_t __ret;
  13277. __ret = __p0 - __p1 * __p2;
  13278. return __ret;
  13279. }
  13280. #else
  13281. __ai uint16x8_t vmlsq_u16(uint16x8_t __p0, uint16x8_t __p1, uint16x8_t __p2) {
  13282. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  13283. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  13284. uint16x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  13285. uint16x8_t __ret;
  13286. __ret = __rev0 - __rev1 * __rev2;
  13287. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  13288. return __ret;
  13289. }
  13290. #endif
  13291. #ifdef __LITTLE_ENDIAN__
  13292. __ai int8x16_t vmlsq_s8(int8x16_t __p0, int8x16_t __p1, int8x16_t __p2) {
  13293. int8x16_t __ret;
  13294. __ret = __p0 - __p1 * __p2;
  13295. return __ret;
  13296. }
  13297. #else
  13298. __ai int8x16_t vmlsq_s8(int8x16_t __p0, int8x16_t __p1, int8x16_t __p2) {
  13299. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  13300. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  13301. int8x16_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  13302. int8x16_t __ret;
  13303. __ret = __rev0 - __rev1 * __rev2;
  13304. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  13305. return __ret;
  13306. }
  13307. #endif
  13308. #ifdef __LITTLE_ENDIAN__
  13309. __ai float32x4_t vmlsq_f32(float32x4_t __p0, float32x4_t __p1, float32x4_t __p2) {
  13310. float32x4_t __ret;
  13311. __ret = __p0 - __p1 * __p2;
  13312. return __ret;
  13313. }
  13314. #else
  13315. __ai float32x4_t vmlsq_f32(float32x4_t __p0, float32x4_t __p1, float32x4_t __p2) {
  13316. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  13317. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  13318. float32x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  13319. float32x4_t __ret;
  13320. __ret = __rev0 - __rev1 * __rev2;
  13321. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  13322. return __ret;
  13323. }
  13324. #endif
  13325. #ifdef __LITTLE_ENDIAN__
  13326. __ai int32x4_t vmlsq_s32(int32x4_t __p0, int32x4_t __p1, int32x4_t __p2) {
  13327. int32x4_t __ret;
  13328. __ret = __p0 - __p1 * __p2;
  13329. return __ret;
  13330. }
  13331. #else
  13332. __ai int32x4_t vmlsq_s32(int32x4_t __p0, int32x4_t __p1, int32x4_t __p2) {
  13333. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  13334. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  13335. int32x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  13336. int32x4_t __ret;
  13337. __ret = __rev0 - __rev1 * __rev2;
  13338. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  13339. return __ret;
  13340. }
  13341. #endif
  13342. #ifdef __LITTLE_ENDIAN__
  13343. __ai int16x8_t vmlsq_s16(int16x8_t __p0, int16x8_t __p1, int16x8_t __p2) {
  13344. int16x8_t __ret;
  13345. __ret = __p0 - __p1 * __p2;
  13346. return __ret;
  13347. }
  13348. #else
  13349. __ai int16x8_t vmlsq_s16(int16x8_t __p0, int16x8_t __p1, int16x8_t __p2) {
  13350. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  13351. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  13352. int16x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  13353. int16x8_t __ret;
  13354. __ret = __rev0 - __rev1 * __rev2;
  13355. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  13356. return __ret;
  13357. }
  13358. #endif
  13359. #ifdef __LITTLE_ENDIAN__
  13360. __ai uint8x8_t vmls_u8(uint8x8_t __p0, uint8x8_t __p1, uint8x8_t __p2) {
  13361. uint8x8_t __ret;
  13362. __ret = __p0 - __p1 * __p2;
  13363. return __ret;
  13364. }
  13365. #else
  13366. __ai uint8x8_t vmls_u8(uint8x8_t __p0, uint8x8_t __p1, uint8x8_t __p2) {
  13367. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  13368. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  13369. uint8x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  13370. uint8x8_t __ret;
  13371. __ret = __rev0 - __rev1 * __rev2;
  13372. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  13373. return __ret;
  13374. }
  13375. #endif
  13376. #ifdef __LITTLE_ENDIAN__
  13377. __ai uint32x2_t vmls_u32(uint32x2_t __p0, uint32x2_t __p1, uint32x2_t __p2) {
  13378. uint32x2_t __ret;
  13379. __ret = __p0 - __p1 * __p2;
  13380. return __ret;
  13381. }
  13382. #else
  13383. __ai uint32x2_t vmls_u32(uint32x2_t __p0, uint32x2_t __p1, uint32x2_t __p2) {
  13384. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  13385. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  13386. uint32x2_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 1, 0);
  13387. uint32x2_t __ret;
  13388. __ret = __rev0 - __rev1 * __rev2;
  13389. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  13390. return __ret;
  13391. }
  13392. #endif
  13393. #ifdef __LITTLE_ENDIAN__
  13394. __ai uint16x4_t vmls_u16(uint16x4_t __p0, uint16x4_t __p1, uint16x4_t __p2) {
  13395. uint16x4_t __ret;
  13396. __ret = __p0 - __p1 * __p2;
  13397. return __ret;
  13398. }
  13399. #else
  13400. __ai uint16x4_t vmls_u16(uint16x4_t __p0, uint16x4_t __p1, uint16x4_t __p2) {
  13401. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  13402. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  13403. uint16x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  13404. uint16x4_t __ret;
  13405. __ret = __rev0 - __rev1 * __rev2;
  13406. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  13407. return __ret;
  13408. }
  13409. #endif
  13410. #ifdef __LITTLE_ENDIAN__
  13411. __ai int8x8_t vmls_s8(int8x8_t __p0, int8x8_t __p1, int8x8_t __p2) {
  13412. int8x8_t __ret;
  13413. __ret = __p0 - __p1 * __p2;
  13414. return __ret;
  13415. }
  13416. #else
  13417. __ai int8x8_t vmls_s8(int8x8_t __p0, int8x8_t __p1, int8x8_t __p2) {
  13418. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  13419. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  13420. int8x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  13421. int8x8_t __ret;
  13422. __ret = __rev0 - __rev1 * __rev2;
  13423. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  13424. return __ret;
  13425. }
  13426. #endif
  13427. #ifdef __LITTLE_ENDIAN__
  13428. __ai float32x2_t vmls_f32(float32x2_t __p0, float32x2_t __p1, float32x2_t __p2) {
  13429. float32x2_t __ret;
  13430. __ret = __p0 - __p1 * __p2;
  13431. return __ret;
  13432. }
  13433. #else
  13434. __ai float32x2_t vmls_f32(float32x2_t __p0, float32x2_t __p1, float32x2_t __p2) {
  13435. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  13436. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  13437. float32x2_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 1, 0);
  13438. float32x2_t __ret;
  13439. __ret = __rev0 - __rev1 * __rev2;
  13440. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  13441. return __ret;
  13442. }
  13443. #endif
  13444. #ifdef __LITTLE_ENDIAN__
  13445. __ai int32x2_t vmls_s32(int32x2_t __p0, int32x2_t __p1, int32x2_t __p2) {
  13446. int32x2_t __ret;
  13447. __ret = __p0 - __p1 * __p2;
  13448. return __ret;
  13449. }
  13450. #else
  13451. __ai int32x2_t vmls_s32(int32x2_t __p0, int32x2_t __p1, int32x2_t __p2) {
  13452. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  13453. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  13454. int32x2_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 1, 0);
  13455. int32x2_t __ret;
  13456. __ret = __rev0 - __rev1 * __rev2;
  13457. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  13458. return __ret;
  13459. }
  13460. #endif
  13461. #ifdef __LITTLE_ENDIAN__
  13462. __ai int16x4_t vmls_s16(int16x4_t __p0, int16x4_t __p1, int16x4_t __p2) {
  13463. int16x4_t __ret;
  13464. __ret = __p0 - __p1 * __p2;
  13465. return __ret;
  13466. }
  13467. #else
  13468. __ai int16x4_t vmls_s16(int16x4_t __p0, int16x4_t __p1, int16x4_t __p2) {
  13469. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  13470. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  13471. int16x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  13472. int16x4_t __ret;
  13473. __ret = __rev0 - __rev1 * __rev2;
  13474. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  13475. return __ret;
  13476. }
  13477. #endif
  13478. #ifdef __LITTLE_ENDIAN__
  13479. #define vmlsq_lane_u32(__p0, __p1, __p2, __p3) __extension__ ({ \
  13480. uint32x4_t __s0 = __p0; \
  13481. uint32x4_t __s1 = __p1; \
  13482. uint32x2_t __s2 = __p2; \
  13483. uint32x4_t __ret; \
  13484. __ret = __s0 - __s1 * __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3); \
  13485. __ret; \
  13486. })
  13487. #else
  13488. #define vmlsq_lane_u32(__p0, __p1, __p2, __p3) __extension__ ({ \
  13489. uint32x4_t __s0 = __p0; \
  13490. uint32x4_t __s1 = __p1; \
  13491. uint32x2_t __s2 = __p2; \
  13492. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  13493. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  13494. uint32x2_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 1, 0); \
  13495. uint32x4_t __ret; \
  13496. __ret = __rev0 - __rev1 * __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3); \
  13497. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  13498. __ret; \
  13499. })
  13500. #endif
  13501. #ifdef __LITTLE_ENDIAN__
  13502. #define vmlsq_lane_u16(__p0, __p1, __p2, __p3) __extension__ ({ \
  13503. uint16x8_t __s0 = __p0; \
  13504. uint16x8_t __s1 = __p1; \
  13505. uint16x4_t __s2 = __p2; \
  13506. uint16x8_t __ret; \
  13507. __ret = __s0 - __s1 * __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3, __p3, __p3, __p3, __p3); \
  13508. __ret; \
  13509. })
  13510. #else
  13511. #define vmlsq_lane_u16(__p0, __p1, __p2, __p3) __extension__ ({ \
  13512. uint16x8_t __s0 = __p0; \
  13513. uint16x8_t __s1 = __p1; \
  13514. uint16x4_t __s2 = __p2; \
  13515. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  13516. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  13517. uint16x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  13518. uint16x8_t __ret; \
  13519. __ret = __rev0 - __rev1 * __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3, __p3, __p3, __p3, __p3); \
  13520. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  13521. __ret; \
  13522. })
  13523. #endif
  13524. #ifdef __LITTLE_ENDIAN__
  13525. #define vmlsq_lane_f32(__p0, __p1, __p2, __p3) __extension__ ({ \
  13526. float32x4_t __s0 = __p0; \
  13527. float32x4_t __s1 = __p1; \
  13528. float32x2_t __s2 = __p2; \
  13529. float32x4_t __ret; \
  13530. __ret = __s0 - __s1 * __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3); \
  13531. __ret; \
  13532. })
  13533. #else
  13534. #define vmlsq_lane_f32(__p0, __p1, __p2, __p3) __extension__ ({ \
  13535. float32x4_t __s0 = __p0; \
  13536. float32x4_t __s1 = __p1; \
  13537. float32x2_t __s2 = __p2; \
  13538. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  13539. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  13540. float32x2_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 1, 0); \
  13541. float32x4_t __ret; \
  13542. __ret = __rev0 - __rev1 * __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3); \
  13543. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  13544. __ret; \
  13545. })
  13546. #endif
  13547. #ifdef __LITTLE_ENDIAN__
  13548. #define vmlsq_lane_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  13549. int32x4_t __s0 = __p0; \
  13550. int32x4_t __s1 = __p1; \
  13551. int32x2_t __s2 = __p2; \
  13552. int32x4_t __ret; \
  13553. __ret = __s0 - __s1 * __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3); \
  13554. __ret; \
  13555. })
  13556. #else
  13557. #define vmlsq_lane_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  13558. int32x4_t __s0 = __p0; \
  13559. int32x4_t __s1 = __p1; \
  13560. int32x2_t __s2 = __p2; \
  13561. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  13562. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  13563. int32x2_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 1, 0); \
  13564. int32x4_t __ret; \
  13565. __ret = __rev0 - __rev1 * __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3); \
  13566. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  13567. __ret; \
  13568. })
  13569. #endif
  13570. #ifdef __LITTLE_ENDIAN__
  13571. #define vmlsq_lane_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  13572. int16x8_t __s0 = __p0; \
  13573. int16x8_t __s1 = __p1; \
  13574. int16x4_t __s2 = __p2; \
  13575. int16x8_t __ret; \
  13576. __ret = __s0 - __s1 * __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3, __p3, __p3, __p3, __p3); \
  13577. __ret; \
  13578. })
  13579. #else
  13580. #define vmlsq_lane_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  13581. int16x8_t __s0 = __p0; \
  13582. int16x8_t __s1 = __p1; \
  13583. int16x4_t __s2 = __p2; \
  13584. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  13585. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  13586. int16x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  13587. int16x8_t __ret; \
  13588. __ret = __rev0 - __rev1 * __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3, __p3, __p3, __p3, __p3); \
  13589. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  13590. __ret; \
  13591. })
  13592. #endif
  13593. #ifdef __LITTLE_ENDIAN__
  13594. #define vmls_lane_u32(__p0, __p1, __p2, __p3) __extension__ ({ \
  13595. uint32x2_t __s0 = __p0; \
  13596. uint32x2_t __s1 = __p1; \
  13597. uint32x2_t __s2 = __p2; \
  13598. uint32x2_t __ret; \
  13599. __ret = __s0 - __s1 * __builtin_shufflevector(__s2, __s2, __p3, __p3); \
  13600. __ret; \
  13601. })
  13602. #else
  13603. #define vmls_lane_u32(__p0, __p1, __p2, __p3) __extension__ ({ \
  13604. uint32x2_t __s0 = __p0; \
  13605. uint32x2_t __s1 = __p1; \
  13606. uint32x2_t __s2 = __p2; \
  13607. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  13608. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  13609. uint32x2_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 1, 0); \
  13610. uint32x2_t __ret; \
  13611. __ret = __rev0 - __rev1 * __builtin_shufflevector(__rev2, __rev2, __p3, __p3); \
  13612. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  13613. __ret; \
  13614. })
  13615. #endif
  13616. #ifdef __LITTLE_ENDIAN__
  13617. #define vmls_lane_u16(__p0, __p1, __p2, __p3) __extension__ ({ \
  13618. uint16x4_t __s0 = __p0; \
  13619. uint16x4_t __s1 = __p1; \
  13620. uint16x4_t __s2 = __p2; \
  13621. uint16x4_t __ret; \
  13622. __ret = __s0 - __s1 * __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3); \
  13623. __ret; \
  13624. })
  13625. #else
  13626. #define vmls_lane_u16(__p0, __p1, __p2, __p3) __extension__ ({ \
  13627. uint16x4_t __s0 = __p0; \
  13628. uint16x4_t __s1 = __p1; \
  13629. uint16x4_t __s2 = __p2; \
  13630. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  13631. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  13632. uint16x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  13633. uint16x4_t __ret; \
  13634. __ret = __rev0 - __rev1 * __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3); \
  13635. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  13636. __ret; \
  13637. })
  13638. #endif
  13639. #ifdef __LITTLE_ENDIAN__
  13640. #define vmls_lane_f32(__p0, __p1, __p2, __p3) __extension__ ({ \
  13641. float32x2_t __s0 = __p0; \
  13642. float32x2_t __s1 = __p1; \
  13643. float32x2_t __s2 = __p2; \
  13644. float32x2_t __ret; \
  13645. __ret = __s0 - __s1 * __builtin_shufflevector(__s2, __s2, __p3, __p3); \
  13646. __ret; \
  13647. })
  13648. #else
  13649. #define vmls_lane_f32(__p0, __p1, __p2, __p3) __extension__ ({ \
  13650. float32x2_t __s0 = __p0; \
  13651. float32x2_t __s1 = __p1; \
  13652. float32x2_t __s2 = __p2; \
  13653. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  13654. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  13655. float32x2_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 1, 0); \
  13656. float32x2_t __ret; \
  13657. __ret = __rev0 - __rev1 * __builtin_shufflevector(__rev2, __rev2, __p3, __p3); \
  13658. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  13659. __ret; \
  13660. })
  13661. #endif
  13662. #ifdef __LITTLE_ENDIAN__
  13663. #define vmls_lane_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  13664. int32x2_t __s0 = __p0; \
  13665. int32x2_t __s1 = __p1; \
  13666. int32x2_t __s2 = __p2; \
  13667. int32x2_t __ret; \
  13668. __ret = __s0 - __s1 * __builtin_shufflevector(__s2, __s2, __p3, __p3); \
  13669. __ret; \
  13670. })
  13671. #else
  13672. #define vmls_lane_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  13673. int32x2_t __s0 = __p0; \
  13674. int32x2_t __s1 = __p1; \
  13675. int32x2_t __s2 = __p2; \
  13676. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  13677. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  13678. int32x2_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 1, 0); \
  13679. int32x2_t __ret; \
  13680. __ret = __rev0 - __rev1 * __builtin_shufflevector(__rev2, __rev2, __p3, __p3); \
  13681. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  13682. __ret; \
  13683. })
  13684. #endif
  13685. #ifdef __LITTLE_ENDIAN__
  13686. #define vmls_lane_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  13687. int16x4_t __s0 = __p0; \
  13688. int16x4_t __s1 = __p1; \
  13689. int16x4_t __s2 = __p2; \
  13690. int16x4_t __ret; \
  13691. __ret = __s0 - __s1 * __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3); \
  13692. __ret; \
  13693. })
  13694. #else
  13695. #define vmls_lane_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  13696. int16x4_t __s0 = __p0; \
  13697. int16x4_t __s1 = __p1; \
  13698. int16x4_t __s2 = __p2; \
  13699. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  13700. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  13701. int16x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  13702. int16x4_t __ret; \
  13703. __ret = __rev0 - __rev1 * __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3); \
  13704. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  13705. __ret; \
  13706. })
  13707. #endif
  13708. #ifdef __LITTLE_ENDIAN__
  13709. __ai uint32x4_t vmlsq_n_u32(uint32x4_t __p0, uint32x4_t __p1, uint32_t __p2) {
  13710. uint32x4_t __ret;
  13711. __ret = __p0 - __p1 * (uint32x4_t) {__p2, __p2, __p2, __p2};
  13712. return __ret;
  13713. }
  13714. #else
  13715. __ai uint32x4_t vmlsq_n_u32(uint32x4_t __p0, uint32x4_t __p1, uint32_t __p2) {
  13716. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  13717. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  13718. uint32x4_t __ret;
  13719. __ret = __rev0 - __rev1 * (uint32x4_t) {__p2, __p2, __p2, __p2};
  13720. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  13721. return __ret;
  13722. }
  13723. #endif
  13724. #ifdef __LITTLE_ENDIAN__
  13725. __ai uint16x8_t vmlsq_n_u16(uint16x8_t __p0, uint16x8_t __p1, uint16_t __p2) {
  13726. uint16x8_t __ret;
  13727. __ret = __p0 - __p1 * (uint16x8_t) {__p2, __p2, __p2, __p2, __p2, __p2, __p2, __p2};
  13728. return __ret;
  13729. }
  13730. #else
  13731. __ai uint16x8_t vmlsq_n_u16(uint16x8_t __p0, uint16x8_t __p1, uint16_t __p2) {
  13732. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  13733. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  13734. uint16x8_t __ret;
  13735. __ret = __rev0 - __rev1 * (uint16x8_t) {__p2, __p2, __p2, __p2, __p2, __p2, __p2, __p2};
  13736. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  13737. return __ret;
  13738. }
  13739. #endif
  13740. #ifdef __LITTLE_ENDIAN__
  13741. __ai float32x4_t vmlsq_n_f32(float32x4_t __p0, float32x4_t __p1, float32_t __p2) {
  13742. float32x4_t __ret;
  13743. __ret = __p0 - __p1 * (float32x4_t) {__p2, __p2, __p2, __p2};
  13744. return __ret;
  13745. }
  13746. #else
  13747. __ai float32x4_t vmlsq_n_f32(float32x4_t __p0, float32x4_t __p1, float32_t __p2) {
  13748. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  13749. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  13750. float32x4_t __ret;
  13751. __ret = __rev0 - __rev1 * (float32x4_t) {__p2, __p2, __p2, __p2};
  13752. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  13753. return __ret;
  13754. }
  13755. #endif
  13756. #ifdef __LITTLE_ENDIAN__
  13757. __ai int32x4_t vmlsq_n_s32(int32x4_t __p0, int32x4_t __p1, int32_t __p2) {
  13758. int32x4_t __ret;
  13759. __ret = __p0 - __p1 * (int32x4_t) {__p2, __p2, __p2, __p2};
  13760. return __ret;
  13761. }
  13762. #else
  13763. __ai int32x4_t vmlsq_n_s32(int32x4_t __p0, int32x4_t __p1, int32_t __p2) {
  13764. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  13765. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  13766. int32x4_t __ret;
  13767. __ret = __rev0 - __rev1 * (int32x4_t) {__p2, __p2, __p2, __p2};
  13768. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  13769. return __ret;
  13770. }
  13771. #endif
  13772. #ifdef __LITTLE_ENDIAN__
  13773. __ai int16x8_t vmlsq_n_s16(int16x8_t __p0, int16x8_t __p1, int16_t __p2) {
  13774. int16x8_t __ret;
  13775. __ret = __p0 - __p1 * (int16x8_t) {__p2, __p2, __p2, __p2, __p2, __p2, __p2, __p2};
  13776. return __ret;
  13777. }
  13778. #else
  13779. __ai int16x8_t vmlsq_n_s16(int16x8_t __p0, int16x8_t __p1, int16_t __p2) {
  13780. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  13781. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  13782. int16x8_t __ret;
  13783. __ret = __rev0 - __rev1 * (int16x8_t) {__p2, __p2, __p2, __p2, __p2, __p2, __p2, __p2};
  13784. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  13785. return __ret;
  13786. }
  13787. #endif
  13788. #ifdef __LITTLE_ENDIAN__
  13789. __ai uint32x2_t vmls_n_u32(uint32x2_t __p0, uint32x2_t __p1, uint32_t __p2) {
  13790. uint32x2_t __ret;
  13791. __ret = __p0 - __p1 * (uint32x2_t) {__p2, __p2};
  13792. return __ret;
  13793. }
  13794. #else
  13795. __ai uint32x2_t vmls_n_u32(uint32x2_t __p0, uint32x2_t __p1, uint32_t __p2) {
  13796. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  13797. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  13798. uint32x2_t __ret;
  13799. __ret = __rev0 - __rev1 * (uint32x2_t) {__p2, __p2};
  13800. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  13801. return __ret;
  13802. }
  13803. #endif
  13804. #ifdef __LITTLE_ENDIAN__
  13805. __ai uint16x4_t vmls_n_u16(uint16x4_t __p0, uint16x4_t __p1, uint16_t __p2) {
  13806. uint16x4_t __ret;
  13807. __ret = __p0 - __p1 * (uint16x4_t) {__p2, __p2, __p2, __p2};
  13808. return __ret;
  13809. }
  13810. #else
  13811. __ai uint16x4_t vmls_n_u16(uint16x4_t __p0, uint16x4_t __p1, uint16_t __p2) {
  13812. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  13813. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  13814. uint16x4_t __ret;
  13815. __ret = __rev0 - __rev1 * (uint16x4_t) {__p2, __p2, __p2, __p2};
  13816. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  13817. return __ret;
  13818. }
  13819. #endif
  13820. #ifdef __LITTLE_ENDIAN__
  13821. __ai float32x2_t vmls_n_f32(float32x2_t __p0, float32x2_t __p1, float32_t __p2) {
  13822. float32x2_t __ret;
  13823. __ret = __p0 - __p1 * (float32x2_t) {__p2, __p2};
  13824. return __ret;
  13825. }
  13826. #else
  13827. __ai float32x2_t vmls_n_f32(float32x2_t __p0, float32x2_t __p1, float32_t __p2) {
  13828. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  13829. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  13830. float32x2_t __ret;
  13831. __ret = __rev0 - __rev1 * (float32x2_t) {__p2, __p2};
  13832. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  13833. return __ret;
  13834. }
  13835. #endif
  13836. #ifdef __LITTLE_ENDIAN__
  13837. __ai int32x2_t vmls_n_s32(int32x2_t __p0, int32x2_t __p1, int32_t __p2) {
  13838. int32x2_t __ret;
  13839. __ret = __p0 - __p1 * (int32x2_t) {__p2, __p2};
  13840. return __ret;
  13841. }
  13842. #else
  13843. __ai int32x2_t vmls_n_s32(int32x2_t __p0, int32x2_t __p1, int32_t __p2) {
  13844. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  13845. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  13846. int32x2_t __ret;
  13847. __ret = __rev0 - __rev1 * (int32x2_t) {__p2, __p2};
  13848. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  13849. return __ret;
  13850. }
  13851. #endif
  13852. #ifdef __LITTLE_ENDIAN__
  13853. __ai int16x4_t vmls_n_s16(int16x4_t __p0, int16x4_t __p1, int16_t __p2) {
  13854. int16x4_t __ret;
  13855. __ret = __p0 - __p1 * (int16x4_t) {__p2, __p2, __p2, __p2};
  13856. return __ret;
  13857. }
  13858. #else
  13859. __ai int16x4_t vmls_n_s16(int16x4_t __p0, int16x4_t __p1, int16_t __p2) {
  13860. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  13861. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  13862. int16x4_t __ret;
  13863. __ret = __rev0 - __rev1 * (int16x4_t) {__p2, __p2, __p2, __p2};
  13864. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  13865. return __ret;
  13866. }
  13867. #endif
  13868. #ifdef __LITTLE_ENDIAN__
  13869. __ai poly8x8_t vmov_n_p8(poly8_t __p0) {
  13870. poly8x8_t __ret;
  13871. __ret = (poly8x8_t) {__p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0};
  13872. return __ret;
  13873. }
  13874. #else
  13875. __ai poly8x8_t vmov_n_p8(poly8_t __p0) {
  13876. poly8x8_t __ret;
  13877. __ret = (poly8x8_t) {__p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0};
  13878. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  13879. return __ret;
  13880. }
  13881. #endif
  13882. #ifdef __LITTLE_ENDIAN__
  13883. __ai poly16x4_t vmov_n_p16(poly16_t __p0) {
  13884. poly16x4_t __ret;
  13885. __ret = (poly16x4_t) {__p0, __p0, __p0, __p0};
  13886. return __ret;
  13887. }
  13888. #else
  13889. __ai poly16x4_t vmov_n_p16(poly16_t __p0) {
  13890. poly16x4_t __ret;
  13891. __ret = (poly16x4_t) {__p0, __p0, __p0, __p0};
  13892. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  13893. return __ret;
  13894. }
  13895. #endif
  13896. #ifdef __LITTLE_ENDIAN__
  13897. __ai poly8x16_t vmovq_n_p8(poly8_t __p0) {
  13898. poly8x16_t __ret;
  13899. __ret = (poly8x16_t) {__p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0};
  13900. return __ret;
  13901. }
  13902. #else
  13903. __ai poly8x16_t vmovq_n_p8(poly8_t __p0) {
  13904. poly8x16_t __ret;
  13905. __ret = (poly8x16_t) {__p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0};
  13906. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  13907. return __ret;
  13908. }
  13909. #endif
  13910. #ifdef __LITTLE_ENDIAN__
  13911. __ai poly16x8_t vmovq_n_p16(poly16_t __p0) {
  13912. poly16x8_t __ret;
  13913. __ret = (poly16x8_t) {__p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0};
  13914. return __ret;
  13915. }
  13916. #else
  13917. __ai poly16x8_t vmovq_n_p16(poly16_t __p0) {
  13918. poly16x8_t __ret;
  13919. __ret = (poly16x8_t) {__p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0};
  13920. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  13921. return __ret;
  13922. }
  13923. #endif
  13924. #ifdef __LITTLE_ENDIAN__
  13925. __ai uint8x16_t vmovq_n_u8(uint8_t __p0) {
  13926. uint8x16_t __ret;
  13927. __ret = (uint8x16_t) {__p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0};
  13928. return __ret;
  13929. }
  13930. #else
  13931. __ai uint8x16_t vmovq_n_u8(uint8_t __p0) {
  13932. uint8x16_t __ret;
  13933. __ret = (uint8x16_t) {__p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0};
  13934. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  13935. return __ret;
  13936. }
  13937. #endif
  13938. #ifdef __LITTLE_ENDIAN__
  13939. __ai uint32x4_t vmovq_n_u32(uint32_t __p0) {
  13940. uint32x4_t __ret;
  13941. __ret = (uint32x4_t) {__p0, __p0, __p0, __p0};
  13942. return __ret;
  13943. }
  13944. #else
  13945. __ai uint32x4_t vmovq_n_u32(uint32_t __p0) {
  13946. uint32x4_t __ret;
  13947. __ret = (uint32x4_t) {__p0, __p0, __p0, __p0};
  13948. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  13949. return __ret;
  13950. }
  13951. #endif
  13952. #ifdef __LITTLE_ENDIAN__
  13953. __ai uint64x2_t vmovq_n_u64(uint64_t __p0) {
  13954. uint64x2_t __ret;
  13955. __ret = (uint64x2_t) {__p0, __p0};
  13956. return __ret;
  13957. }
  13958. #else
  13959. __ai uint64x2_t vmovq_n_u64(uint64_t __p0) {
  13960. uint64x2_t __ret;
  13961. __ret = (uint64x2_t) {__p0, __p0};
  13962. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  13963. return __ret;
  13964. }
  13965. #endif
  13966. #ifdef __LITTLE_ENDIAN__
  13967. __ai uint16x8_t vmovq_n_u16(uint16_t __p0) {
  13968. uint16x8_t __ret;
  13969. __ret = (uint16x8_t) {__p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0};
  13970. return __ret;
  13971. }
  13972. #else
  13973. __ai uint16x8_t vmovq_n_u16(uint16_t __p0) {
  13974. uint16x8_t __ret;
  13975. __ret = (uint16x8_t) {__p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0};
  13976. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  13977. return __ret;
  13978. }
  13979. #endif
  13980. #ifdef __LITTLE_ENDIAN__
  13981. __ai int8x16_t vmovq_n_s8(int8_t __p0) {
  13982. int8x16_t __ret;
  13983. __ret = (int8x16_t) {__p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0};
  13984. return __ret;
  13985. }
  13986. #else
  13987. __ai int8x16_t vmovq_n_s8(int8_t __p0) {
  13988. int8x16_t __ret;
  13989. __ret = (int8x16_t) {__p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0};
  13990. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  13991. return __ret;
  13992. }
  13993. #endif
  13994. #ifdef __LITTLE_ENDIAN__
  13995. __ai float32x4_t vmovq_n_f32(float32_t __p0) {
  13996. float32x4_t __ret;
  13997. __ret = (float32x4_t) {__p0, __p0, __p0, __p0};
  13998. return __ret;
  13999. }
  14000. #else
  14001. __ai float32x4_t vmovq_n_f32(float32_t __p0) {
  14002. float32x4_t __ret;
  14003. __ret = (float32x4_t) {__p0, __p0, __p0, __p0};
  14004. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  14005. return __ret;
  14006. }
  14007. #endif
  14008. #ifdef __LITTLE_ENDIAN__
  14009. #define vmovq_n_f16(__p0) __extension__ ({ \
  14010. float16_t __s0 = __p0; \
  14011. float16x8_t __ret; \
  14012. __ret = (float16x8_t) {__s0, __s0, __s0, __s0, __s0, __s0, __s0, __s0}; \
  14013. __ret; \
  14014. })
  14015. #else
  14016. #define vmovq_n_f16(__p0) __extension__ ({ \
  14017. float16_t __s0 = __p0; \
  14018. float16x8_t __ret; \
  14019. __ret = (float16x8_t) {__s0, __s0, __s0, __s0, __s0, __s0, __s0, __s0}; \
  14020. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  14021. __ret; \
  14022. })
  14023. #endif
  14024. #ifdef __LITTLE_ENDIAN__
  14025. __ai int32x4_t vmovq_n_s32(int32_t __p0) {
  14026. int32x4_t __ret;
  14027. __ret = (int32x4_t) {__p0, __p0, __p0, __p0};
  14028. return __ret;
  14029. }
  14030. #else
  14031. __ai int32x4_t vmovq_n_s32(int32_t __p0) {
  14032. int32x4_t __ret;
  14033. __ret = (int32x4_t) {__p0, __p0, __p0, __p0};
  14034. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  14035. return __ret;
  14036. }
  14037. #endif
  14038. #ifdef __LITTLE_ENDIAN__
  14039. __ai int64x2_t vmovq_n_s64(int64_t __p0) {
  14040. int64x2_t __ret;
  14041. __ret = (int64x2_t) {__p0, __p0};
  14042. return __ret;
  14043. }
  14044. #else
  14045. __ai int64x2_t vmovq_n_s64(int64_t __p0) {
  14046. int64x2_t __ret;
  14047. __ret = (int64x2_t) {__p0, __p0};
  14048. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  14049. return __ret;
  14050. }
  14051. #endif
  14052. #ifdef __LITTLE_ENDIAN__
  14053. __ai int16x8_t vmovq_n_s16(int16_t __p0) {
  14054. int16x8_t __ret;
  14055. __ret = (int16x8_t) {__p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0};
  14056. return __ret;
  14057. }
  14058. #else
  14059. __ai int16x8_t vmovq_n_s16(int16_t __p0) {
  14060. int16x8_t __ret;
  14061. __ret = (int16x8_t) {__p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0};
  14062. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  14063. return __ret;
  14064. }
  14065. #endif
  14066. #ifdef __LITTLE_ENDIAN__
  14067. __ai uint8x8_t vmov_n_u8(uint8_t __p0) {
  14068. uint8x8_t __ret;
  14069. __ret = (uint8x8_t) {__p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0};
  14070. return __ret;
  14071. }
  14072. #else
  14073. __ai uint8x8_t vmov_n_u8(uint8_t __p0) {
  14074. uint8x8_t __ret;
  14075. __ret = (uint8x8_t) {__p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0};
  14076. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  14077. return __ret;
  14078. }
  14079. #endif
  14080. #ifdef __LITTLE_ENDIAN__
  14081. __ai uint32x2_t vmov_n_u32(uint32_t __p0) {
  14082. uint32x2_t __ret;
  14083. __ret = (uint32x2_t) {__p0, __p0};
  14084. return __ret;
  14085. }
  14086. #else
  14087. __ai uint32x2_t vmov_n_u32(uint32_t __p0) {
  14088. uint32x2_t __ret;
  14089. __ret = (uint32x2_t) {__p0, __p0};
  14090. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  14091. return __ret;
  14092. }
  14093. #endif
  14094. #ifdef __LITTLE_ENDIAN__
  14095. __ai uint64x1_t vmov_n_u64(uint64_t __p0) {
  14096. uint64x1_t __ret;
  14097. __ret = (uint64x1_t) {__p0};
  14098. return __ret;
  14099. }
  14100. #else
  14101. __ai uint64x1_t vmov_n_u64(uint64_t __p0) {
  14102. uint64x1_t __ret;
  14103. __ret = (uint64x1_t) {__p0};
  14104. return __ret;
  14105. }
  14106. #endif
  14107. #ifdef __LITTLE_ENDIAN__
  14108. __ai uint16x4_t vmov_n_u16(uint16_t __p0) {
  14109. uint16x4_t __ret;
  14110. __ret = (uint16x4_t) {__p0, __p0, __p0, __p0};
  14111. return __ret;
  14112. }
  14113. #else
  14114. __ai uint16x4_t vmov_n_u16(uint16_t __p0) {
  14115. uint16x4_t __ret;
  14116. __ret = (uint16x4_t) {__p0, __p0, __p0, __p0};
  14117. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  14118. return __ret;
  14119. }
  14120. #endif
  14121. #ifdef __LITTLE_ENDIAN__
  14122. __ai int8x8_t vmov_n_s8(int8_t __p0) {
  14123. int8x8_t __ret;
  14124. __ret = (int8x8_t) {__p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0};
  14125. return __ret;
  14126. }
  14127. #else
  14128. __ai int8x8_t vmov_n_s8(int8_t __p0) {
  14129. int8x8_t __ret;
  14130. __ret = (int8x8_t) {__p0, __p0, __p0, __p0, __p0, __p0, __p0, __p0};
  14131. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  14132. return __ret;
  14133. }
  14134. #endif
  14135. #ifdef __LITTLE_ENDIAN__
  14136. __ai float32x2_t vmov_n_f32(float32_t __p0) {
  14137. float32x2_t __ret;
  14138. __ret = (float32x2_t) {__p0, __p0};
  14139. return __ret;
  14140. }
  14141. #else
  14142. __ai float32x2_t vmov_n_f32(float32_t __p0) {
  14143. float32x2_t __ret;
  14144. __ret = (float32x2_t) {__p0, __p0};
  14145. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  14146. return __ret;
  14147. }
  14148. #endif
  14149. #ifdef __LITTLE_ENDIAN__
  14150. #define vmov_n_f16(__p0) __extension__ ({ \
  14151. float16_t __s0 = __p0; \
  14152. float16x4_t __ret; \
  14153. __ret = (float16x4_t) {__s0, __s0, __s0, __s0}; \
  14154. __ret; \
  14155. })
  14156. #else
  14157. #define vmov_n_f16(__p0) __extension__ ({ \
  14158. float16_t __s0 = __p0; \
  14159. float16x4_t __ret; \
  14160. __ret = (float16x4_t) {__s0, __s0, __s0, __s0}; \
  14161. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  14162. __ret; \
  14163. })
  14164. #endif
  14165. #ifdef __LITTLE_ENDIAN__
  14166. __ai int32x2_t vmov_n_s32(int32_t __p0) {
  14167. int32x2_t __ret;
  14168. __ret = (int32x2_t) {__p0, __p0};
  14169. return __ret;
  14170. }
  14171. #else
  14172. __ai int32x2_t vmov_n_s32(int32_t __p0) {
  14173. int32x2_t __ret;
  14174. __ret = (int32x2_t) {__p0, __p0};
  14175. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  14176. return __ret;
  14177. }
  14178. #endif
  14179. #ifdef __LITTLE_ENDIAN__
  14180. __ai int64x1_t vmov_n_s64(int64_t __p0) {
  14181. int64x1_t __ret;
  14182. __ret = (int64x1_t) {__p0};
  14183. return __ret;
  14184. }
  14185. #else
  14186. __ai int64x1_t vmov_n_s64(int64_t __p0) {
  14187. int64x1_t __ret;
  14188. __ret = (int64x1_t) {__p0};
  14189. return __ret;
  14190. }
  14191. #endif
  14192. #ifdef __LITTLE_ENDIAN__
  14193. __ai int16x4_t vmov_n_s16(int16_t __p0) {
  14194. int16x4_t __ret;
  14195. __ret = (int16x4_t) {__p0, __p0, __p0, __p0};
  14196. return __ret;
  14197. }
  14198. #else
  14199. __ai int16x4_t vmov_n_s16(int16_t __p0) {
  14200. int16x4_t __ret;
  14201. __ret = (int16x4_t) {__p0, __p0, __p0, __p0};
  14202. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  14203. return __ret;
  14204. }
  14205. #endif
  14206. #ifdef __LITTLE_ENDIAN__
  14207. __ai uint16x8_t vmovl_u8(uint8x8_t __p0) {
  14208. uint16x8_t __ret;
  14209. __ret = (uint16x8_t) __builtin_neon_vmovl_v((int8x8_t)__p0, 49);
  14210. return __ret;
  14211. }
  14212. #else
  14213. __ai uint16x8_t vmovl_u8(uint8x8_t __p0) {
  14214. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  14215. uint16x8_t __ret;
  14216. __ret = (uint16x8_t) __builtin_neon_vmovl_v((int8x8_t)__rev0, 49);
  14217. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  14218. return __ret;
  14219. }
  14220. __ai uint16x8_t __noswap_vmovl_u8(uint8x8_t __p0) {
  14221. uint16x8_t __ret;
  14222. __ret = (uint16x8_t) __builtin_neon_vmovl_v((int8x8_t)__p0, 49);
  14223. return __ret;
  14224. }
  14225. #endif
  14226. #ifdef __LITTLE_ENDIAN__
  14227. __ai uint64x2_t vmovl_u32(uint32x2_t __p0) {
  14228. uint64x2_t __ret;
  14229. __ret = (uint64x2_t) __builtin_neon_vmovl_v((int8x8_t)__p0, 51);
  14230. return __ret;
  14231. }
  14232. #else
  14233. __ai uint64x2_t vmovl_u32(uint32x2_t __p0) {
  14234. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  14235. uint64x2_t __ret;
  14236. __ret = (uint64x2_t) __builtin_neon_vmovl_v((int8x8_t)__rev0, 51);
  14237. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  14238. return __ret;
  14239. }
  14240. __ai uint64x2_t __noswap_vmovl_u32(uint32x2_t __p0) {
  14241. uint64x2_t __ret;
  14242. __ret = (uint64x2_t) __builtin_neon_vmovl_v((int8x8_t)__p0, 51);
  14243. return __ret;
  14244. }
  14245. #endif
  14246. #ifdef __LITTLE_ENDIAN__
  14247. __ai uint32x4_t vmovl_u16(uint16x4_t __p0) {
  14248. uint32x4_t __ret;
  14249. __ret = (uint32x4_t) __builtin_neon_vmovl_v((int8x8_t)__p0, 50);
  14250. return __ret;
  14251. }
  14252. #else
  14253. __ai uint32x4_t vmovl_u16(uint16x4_t __p0) {
  14254. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  14255. uint32x4_t __ret;
  14256. __ret = (uint32x4_t) __builtin_neon_vmovl_v((int8x8_t)__rev0, 50);
  14257. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  14258. return __ret;
  14259. }
  14260. __ai uint32x4_t __noswap_vmovl_u16(uint16x4_t __p0) {
  14261. uint32x4_t __ret;
  14262. __ret = (uint32x4_t) __builtin_neon_vmovl_v((int8x8_t)__p0, 50);
  14263. return __ret;
  14264. }
  14265. #endif
  14266. #ifdef __LITTLE_ENDIAN__
  14267. __ai int16x8_t vmovl_s8(int8x8_t __p0) {
  14268. int16x8_t __ret;
  14269. __ret = (int16x8_t) __builtin_neon_vmovl_v((int8x8_t)__p0, 33);
  14270. return __ret;
  14271. }
  14272. #else
  14273. __ai int16x8_t vmovl_s8(int8x8_t __p0) {
  14274. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  14275. int16x8_t __ret;
  14276. __ret = (int16x8_t) __builtin_neon_vmovl_v((int8x8_t)__rev0, 33);
  14277. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  14278. return __ret;
  14279. }
  14280. __ai int16x8_t __noswap_vmovl_s8(int8x8_t __p0) {
  14281. int16x8_t __ret;
  14282. __ret = (int16x8_t) __builtin_neon_vmovl_v((int8x8_t)__p0, 33);
  14283. return __ret;
  14284. }
  14285. #endif
  14286. #ifdef __LITTLE_ENDIAN__
  14287. __ai int64x2_t vmovl_s32(int32x2_t __p0) {
  14288. int64x2_t __ret;
  14289. __ret = (int64x2_t) __builtin_neon_vmovl_v((int8x8_t)__p0, 35);
  14290. return __ret;
  14291. }
  14292. #else
  14293. __ai int64x2_t vmovl_s32(int32x2_t __p0) {
  14294. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  14295. int64x2_t __ret;
  14296. __ret = (int64x2_t) __builtin_neon_vmovl_v((int8x8_t)__rev0, 35);
  14297. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  14298. return __ret;
  14299. }
  14300. __ai int64x2_t __noswap_vmovl_s32(int32x2_t __p0) {
  14301. int64x2_t __ret;
  14302. __ret = (int64x2_t) __builtin_neon_vmovl_v((int8x8_t)__p0, 35);
  14303. return __ret;
  14304. }
  14305. #endif
  14306. #ifdef __LITTLE_ENDIAN__
  14307. __ai int32x4_t vmovl_s16(int16x4_t __p0) {
  14308. int32x4_t __ret;
  14309. __ret = (int32x4_t) __builtin_neon_vmovl_v((int8x8_t)__p0, 34);
  14310. return __ret;
  14311. }
  14312. #else
  14313. __ai int32x4_t vmovl_s16(int16x4_t __p0) {
  14314. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  14315. int32x4_t __ret;
  14316. __ret = (int32x4_t) __builtin_neon_vmovl_v((int8x8_t)__rev0, 34);
  14317. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  14318. return __ret;
  14319. }
  14320. __ai int32x4_t __noswap_vmovl_s16(int16x4_t __p0) {
  14321. int32x4_t __ret;
  14322. __ret = (int32x4_t) __builtin_neon_vmovl_v((int8x8_t)__p0, 34);
  14323. return __ret;
  14324. }
  14325. #endif
  14326. #ifdef __LITTLE_ENDIAN__
  14327. __ai uint16x4_t vmovn_u32(uint32x4_t __p0) {
  14328. uint16x4_t __ret;
  14329. __ret = (uint16x4_t) __builtin_neon_vmovn_v((int8x16_t)__p0, 17);
  14330. return __ret;
  14331. }
  14332. #else
  14333. __ai uint16x4_t vmovn_u32(uint32x4_t __p0) {
  14334. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  14335. uint16x4_t __ret;
  14336. __ret = (uint16x4_t) __builtin_neon_vmovn_v((int8x16_t)__rev0, 17);
  14337. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  14338. return __ret;
  14339. }
  14340. __ai uint16x4_t __noswap_vmovn_u32(uint32x4_t __p0) {
  14341. uint16x4_t __ret;
  14342. __ret = (uint16x4_t) __builtin_neon_vmovn_v((int8x16_t)__p0, 17);
  14343. return __ret;
  14344. }
  14345. #endif
  14346. #ifdef __LITTLE_ENDIAN__
  14347. __ai uint32x2_t vmovn_u64(uint64x2_t __p0) {
  14348. uint32x2_t __ret;
  14349. __ret = (uint32x2_t) __builtin_neon_vmovn_v((int8x16_t)__p0, 18);
  14350. return __ret;
  14351. }
  14352. #else
  14353. __ai uint32x2_t vmovn_u64(uint64x2_t __p0) {
  14354. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  14355. uint32x2_t __ret;
  14356. __ret = (uint32x2_t) __builtin_neon_vmovn_v((int8x16_t)__rev0, 18);
  14357. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  14358. return __ret;
  14359. }
  14360. __ai uint32x2_t __noswap_vmovn_u64(uint64x2_t __p0) {
  14361. uint32x2_t __ret;
  14362. __ret = (uint32x2_t) __builtin_neon_vmovn_v((int8x16_t)__p0, 18);
  14363. return __ret;
  14364. }
  14365. #endif
  14366. #ifdef __LITTLE_ENDIAN__
  14367. __ai uint8x8_t vmovn_u16(uint16x8_t __p0) {
  14368. uint8x8_t __ret;
  14369. __ret = (uint8x8_t) __builtin_neon_vmovn_v((int8x16_t)__p0, 16);
  14370. return __ret;
  14371. }
  14372. #else
  14373. __ai uint8x8_t vmovn_u16(uint16x8_t __p0) {
  14374. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  14375. uint8x8_t __ret;
  14376. __ret = (uint8x8_t) __builtin_neon_vmovn_v((int8x16_t)__rev0, 16);
  14377. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  14378. return __ret;
  14379. }
  14380. __ai uint8x8_t __noswap_vmovn_u16(uint16x8_t __p0) {
  14381. uint8x8_t __ret;
  14382. __ret = (uint8x8_t) __builtin_neon_vmovn_v((int8x16_t)__p0, 16);
  14383. return __ret;
  14384. }
  14385. #endif
  14386. #ifdef __LITTLE_ENDIAN__
  14387. __ai int16x4_t vmovn_s32(int32x4_t __p0) {
  14388. int16x4_t __ret;
  14389. __ret = (int16x4_t) __builtin_neon_vmovn_v((int8x16_t)__p0, 1);
  14390. return __ret;
  14391. }
  14392. #else
  14393. __ai int16x4_t vmovn_s32(int32x4_t __p0) {
  14394. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  14395. int16x4_t __ret;
  14396. __ret = (int16x4_t) __builtin_neon_vmovn_v((int8x16_t)__rev0, 1);
  14397. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  14398. return __ret;
  14399. }
  14400. __ai int16x4_t __noswap_vmovn_s32(int32x4_t __p0) {
  14401. int16x4_t __ret;
  14402. __ret = (int16x4_t) __builtin_neon_vmovn_v((int8x16_t)__p0, 1);
  14403. return __ret;
  14404. }
  14405. #endif
  14406. #ifdef __LITTLE_ENDIAN__
  14407. __ai int32x2_t vmovn_s64(int64x2_t __p0) {
  14408. int32x2_t __ret;
  14409. __ret = (int32x2_t) __builtin_neon_vmovn_v((int8x16_t)__p0, 2);
  14410. return __ret;
  14411. }
  14412. #else
  14413. __ai int32x2_t vmovn_s64(int64x2_t __p0) {
  14414. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  14415. int32x2_t __ret;
  14416. __ret = (int32x2_t) __builtin_neon_vmovn_v((int8x16_t)__rev0, 2);
  14417. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  14418. return __ret;
  14419. }
  14420. __ai int32x2_t __noswap_vmovn_s64(int64x2_t __p0) {
  14421. int32x2_t __ret;
  14422. __ret = (int32x2_t) __builtin_neon_vmovn_v((int8x16_t)__p0, 2);
  14423. return __ret;
  14424. }
  14425. #endif
  14426. #ifdef __LITTLE_ENDIAN__
  14427. __ai int8x8_t vmovn_s16(int16x8_t __p0) {
  14428. int8x8_t __ret;
  14429. __ret = (int8x8_t) __builtin_neon_vmovn_v((int8x16_t)__p0, 0);
  14430. return __ret;
  14431. }
  14432. #else
  14433. __ai int8x8_t vmovn_s16(int16x8_t __p0) {
  14434. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  14435. int8x8_t __ret;
  14436. __ret = (int8x8_t) __builtin_neon_vmovn_v((int8x16_t)__rev0, 0);
  14437. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  14438. return __ret;
  14439. }
  14440. __ai int8x8_t __noswap_vmovn_s16(int16x8_t __p0) {
  14441. int8x8_t __ret;
  14442. __ret = (int8x8_t) __builtin_neon_vmovn_v((int8x16_t)__p0, 0);
  14443. return __ret;
  14444. }
  14445. #endif
  14446. #ifdef __LITTLE_ENDIAN__
  14447. __ai uint8x16_t vmulq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  14448. uint8x16_t __ret;
  14449. __ret = __p0 * __p1;
  14450. return __ret;
  14451. }
  14452. #else
  14453. __ai uint8x16_t vmulq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  14454. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  14455. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  14456. uint8x16_t __ret;
  14457. __ret = __rev0 * __rev1;
  14458. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  14459. return __ret;
  14460. }
  14461. #endif
  14462. #ifdef __LITTLE_ENDIAN__
  14463. __ai uint32x4_t vmulq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  14464. uint32x4_t __ret;
  14465. __ret = __p0 * __p1;
  14466. return __ret;
  14467. }
  14468. #else
  14469. __ai uint32x4_t vmulq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  14470. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  14471. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  14472. uint32x4_t __ret;
  14473. __ret = __rev0 * __rev1;
  14474. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  14475. return __ret;
  14476. }
  14477. #endif
  14478. #ifdef __LITTLE_ENDIAN__
  14479. __ai uint16x8_t vmulq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  14480. uint16x8_t __ret;
  14481. __ret = __p0 * __p1;
  14482. return __ret;
  14483. }
  14484. #else
  14485. __ai uint16x8_t vmulq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  14486. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  14487. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  14488. uint16x8_t __ret;
  14489. __ret = __rev0 * __rev1;
  14490. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  14491. return __ret;
  14492. }
  14493. #endif
  14494. #ifdef __LITTLE_ENDIAN__
  14495. __ai int8x16_t vmulq_s8(int8x16_t __p0, int8x16_t __p1) {
  14496. int8x16_t __ret;
  14497. __ret = __p0 * __p1;
  14498. return __ret;
  14499. }
  14500. #else
  14501. __ai int8x16_t vmulq_s8(int8x16_t __p0, int8x16_t __p1) {
  14502. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  14503. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  14504. int8x16_t __ret;
  14505. __ret = __rev0 * __rev1;
  14506. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  14507. return __ret;
  14508. }
  14509. #endif
  14510. #ifdef __LITTLE_ENDIAN__
  14511. __ai float32x4_t vmulq_f32(float32x4_t __p0, float32x4_t __p1) {
  14512. float32x4_t __ret;
  14513. __ret = __p0 * __p1;
  14514. return __ret;
  14515. }
  14516. #else
  14517. __ai float32x4_t vmulq_f32(float32x4_t __p0, float32x4_t __p1) {
  14518. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  14519. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  14520. float32x4_t __ret;
  14521. __ret = __rev0 * __rev1;
  14522. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  14523. return __ret;
  14524. }
  14525. #endif
  14526. #ifdef __LITTLE_ENDIAN__
  14527. __ai int32x4_t vmulq_s32(int32x4_t __p0, int32x4_t __p1) {
  14528. int32x4_t __ret;
  14529. __ret = __p0 * __p1;
  14530. return __ret;
  14531. }
  14532. #else
  14533. __ai int32x4_t vmulq_s32(int32x4_t __p0, int32x4_t __p1) {
  14534. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  14535. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  14536. int32x4_t __ret;
  14537. __ret = __rev0 * __rev1;
  14538. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  14539. return __ret;
  14540. }
  14541. #endif
  14542. #ifdef __LITTLE_ENDIAN__
  14543. __ai int16x8_t vmulq_s16(int16x8_t __p0, int16x8_t __p1) {
  14544. int16x8_t __ret;
  14545. __ret = __p0 * __p1;
  14546. return __ret;
  14547. }
  14548. #else
  14549. __ai int16x8_t vmulq_s16(int16x8_t __p0, int16x8_t __p1) {
  14550. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  14551. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  14552. int16x8_t __ret;
  14553. __ret = __rev0 * __rev1;
  14554. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  14555. return __ret;
  14556. }
  14557. #endif
  14558. #ifdef __LITTLE_ENDIAN__
  14559. __ai uint8x8_t vmul_u8(uint8x8_t __p0, uint8x8_t __p1) {
  14560. uint8x8_t __ret;
  14561. __ret = __p0 * __p1;
  14562. return __ret;
  14563. }
  14564. #else
  14565. __ai uint8x8_t vmul_u8(uint8x8_t __p0, uint8x8_t __p1) {
  14566. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  14567. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  14568. uint8x8_t __ret;
  14569. __ret = __rev0 * __rev1;
  14570. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  14571. return __ret;
  14572. }
  14573. #endif
  14574. #ifdef __LITTLE_ENDIAN__
  14575. __ai uint32x2_t vmul_u32(uint32x2_t __p0, uint32x2_t __p1) {
  14576. uint32x2_t __ret;
  14577. __ret = __p0 * __p1;
  14578. return __ret;
  14579. }
  14580. #else
  14581. __ai uint32x2_t vmul_u32(uint32x2_t __p0, uint32x2_t __p1) {
  14582. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  14583. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  14584. uint32x2_t __ret;
  14585. __ret = __rev0 * __rev1;
  14586. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  14587. return __ret;
  14588. }
  14589. #endif
  14590. #ifdef __LITTLE_ENDIAN__
  14591. __ai uint16x4_t vmul_u16(uint16x4_t __p0, uint16x4_t __p1) {
  14592. uint16x4_t __ret;
  14593. __ret = __p0 * __p1;
  14594. return __ret;
  14595. }
  14596. #else
  14597. __ai uint16x4_t vmul_u16(uint16x4_t __p0, uint16x4_t __p1) {
  14598. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  14599. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  14600. uint16x4_t __ret;
  14601. __ret = __rev0 * __rev1;
  14602. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  14603. return __ret;
  14604. }
  14605. #endif
  14606. #ifdef __LITTLE_ENDIAN__
  14607. __ai int8x8_t vmul_s8(int8x8_t __p0, int8x8_t __p1) {
  14608. int8x8_t __ret;
  14609. __ret = __p0 * __p1;
  14610. return __ret;
  14611. }
  14612. #else
  14613. __ai int8x8_t vmul_s8(int8x8_t __p0, int8x8_t __p1) {
  14614. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  14615. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  14616. int8x8_t __ret;
  14617. __ret = __rev0 * __rev1;
  14618. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  14619. return __ret;
  14620. }
  14621. #endif
  14622. #ifdef __LITTLE_ENDIAN__
  14623. __ai float32x2_t vmul_f32(float32x2_t __p0, float32x2_t __p1) {
  14624. float32x2_t __ret;
  14625. __ret = __p0 * __p1;
  14626. return __ret;
  14627. }
  14628. #else
  14629. __ai float32x2_t vmul_f32(float32x2_t __p0, float32x2_t __p1) {
  14630. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  14631. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  14632. float32x2_t __ret;
  14633. __ret = __rev0 * __rev1;
  14634. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  14635. return __ret;
  14636. }
  14637. #endif
  14638. #ifdef __LITTLE_ENDIAN__
  14639. __ai int32x2_t vmul_s32(int32x2_t __p0, int32x2_t __p1) {
  14640. int32x2_t __ret;
  14641. __ret = __p0 * __p1;
  14642. return __ret;
  14643. }
  14644. #else
  14645. __ai int32x2_t vmul_s32(int32x2_t __p0, int32x2_t __p1) {
  14646. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  14647. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  14648. int32x2_t __ret;
  14649. __ret = __rev0 * __rev1;
  14650. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  14651. return __ret;
  14652. }
  14653. #endif
  14654. #ifdef __LITTLE_ENDIAN__
  14655. __ai int16x4_t vmul_s16(int16x4_t __p0, int16x4_t __p1) {
  14656. int16x4_t __ret;
  14657. __ret = __p0 * __p1;
  14658. return __ret;
  14659. }
  14660. #else
  14661. __ai int16x4_t vmul_s16(int16x4_t __p0, int16x4_t __p1) {
  14662. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  14663. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  14664. int16x4_t __ret;
  14665. __ret = __rev0 * __rev1;
  14666. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  14667. return __ret;
  14668. }
  14669. #endif
  14670. #ifdef __LITTLE_ENDIAN__
  14671. __ai poly8x8_t vmul_p8(poly8x8_t __p0, poly8x8_t __p1) {
  14672. poly8x8_t __ret;
  14673. __ret = (poly8x8_t) __builtin_neon_vmul_v((int8x8_t)__p0, (int8x8_t)__p1, 4);
  14674. return __ret;
  14675. }
  14676. #else
  14677. __ai poly8x8_t vmul_p8(poly8x8_t __p0, poly8x8_t __p1) {
  14678. poly8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  14679. poly8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  14680. poly8x8_t __ret;
  14681. __ret = (poly8x8_t) __builtin_neon_vmul_v((int8x8_t)__rev0, (int8x8_t)__rev1, 4);
  14682. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  14683. return __ret;
  14684. }
  14685. #endif
  14686. #ifdef __LITTLE_ENDIAN__
  14687. __ai poly8x16_t vmulq_p8(poly8x16_t __p0, poly8x16_t __p1) {
  14688. poly8x16_t __ret;
  14689. __ret = (poly8x16_t) __builtin_neon_vmulq_v((int8x16_t)__p0, (int8x16_t)__p1, 36);
  14690. return __ret;
  14691. }
  14692. #else
  14693. __ai poly8x16_t vmulq_p8(poly8x16_t __p0, poly8x16_t __p1) {
  14694. poly8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  14695. poly8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  14696. poly8x16_t __ret;
  14697. __ret = (poly8x16_t) __builtin_neon_vmulq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 36);
  14698. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  14699. return __ret;
  14700. }
  14701. #endif
  14702. #ifdef __LITTLE_ENDIAN__
  14703. #define vmulq_lane_u32(__p0, __p1, __p2) __extension__ ({ \
  14704. uint32x4_t __s0 = __p0; \
  14705. uint32x2_t __s1 = __p1; \
  14706. uint32x4_t __ret; \
  14707. __ret = __s0 * __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2); \
  14708. __ret; \
  14709. })
  14710. #else
  14711. #define vmulq_lane_u32(__p0, __p1, __p2) __extension__ ({ \
  14712. uint32x4_t __s0 = __p0; \
  14713. uint32x2_t __s1 = __p1; \
  14714. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  14715. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  14716. uint32x4_t __ret; \
  14717. __ret = __rev0 * __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2); \
  14718. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  14719. __ret; \
  14720. })
  14721. #endif
  14722. #ifdef __LITTLE_ENDIAN__
  14723. #define vmulq_lane_u16(__p0, __p1, __p2) __extension__ ({ \
  14724. uint16x8_t __s0 = __p0; \
  14725. uint16x4_t __s1 = __p1; \
  14726. uint16x8_t __ret; \
  14727. __ret = __s0 * __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2, __p2, __p2, __p2, __p2); \
  14728. __ret; \
  14729. })
  14730. #else
  14731. #define vmulq_lane_u16(__p0, __p1, __p2) __extension__ ({ \
  14732. uint16x8_t __s0 = __p0; \
  14733. uint16x4_t __s1 = __p1; \
  14734. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  14735. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  14736. uint16x8_t __ret; \
  14737. __ret = __rev0 * __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2, __p2, __p2, __p2, __p2); \
  14738. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  14739. __ret; \
  14740. })
  14741. #endif
  14742. #ifdef __LITTLE_ENDIAN__
  14743. #define vmulq_lane_f32(__p0, __p1, __p2) __extension__ ({ \
  14744. float32x4_t __s0 = __p0; \
  14745. float32x2_t __s1 = __p1; \
  14746. float32x4_t __ret; \
  14747. __ret = __s0 * __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2); \
  14748. __ret; \
  14749. })
  14750. #else
  14751. #define vmulq_lane_f32(__p0, __p1, __p2) __extension__ ({ \
  14752. float32x4_t __s0 = __p0; \
  14753. float32x2_t __s1 = __p1; \
  14754. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  14755. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  14756. float32x4_t __ret; \
  14757. __ret = __rev0 * __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2); \
  14758. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  14759. __ret; \
  14760. })
  14761. #endif
  14762. #ifdef __LITTLE_ENDIAN__
  14763. #define vmulq_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  14764. int32x4_t __s0 = __p0; \
  14765. int32x2_t __s1 = __p1; \
  14766. int32x4_t __ret; \
  14767. __ret = __s0 * __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2); \
  14768. __ret; \
  14769. })
  14770. #else
  14771. #define vmulq_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  14772. int32x4_t __s0 = __p0; \
  14773. int32x2_t __s1 = __p1; \
  14774. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  14775. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  14776. int32x4_t __ret; \
  14777. __ret = __rev0 * __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2); \
  14778. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  14779. __ret; \
  14780. })
  14781. #endif
  14782. #ifdef __LITTLE_ENDIAN__
  14783. #define vmulq_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  14784. int16x8_t __s0 = __p0; \
  14785. int16x4_t __s1 = __p1; \
  14786. int16x8_t __ret; \
  14787. __ret = __s0 * __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2, __p2, __p2, __p2, __p2); \
  14788. __ret; \
  14789. })
  14790. #else
  14791. #define vmulq_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  14792. int16x8_t __s0 = __p0; \
  14793. int16x4_t __s1 = __p1; \
  14794. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  14795. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  14796. int16x8_t __ret; \
  14797. __ret = __rev0 * __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2, __p2, __p2, __p2, __p2); \
  14798. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  14799. __ret; \
  14800. })
  14801. #endif
  14802. #ifdef __LITTLE_ENDIAN__
  14803. #define vmul_lane_u32(__p0, __p1, __p2) __extension__ ({ \
  14804. uint32x2_t __s0 = __p0; \
  14805. uint32x2_t __s1 = __p1; \
  14806. uint32x2_t __ret; \
  14807. __ret = __s0 * __builtin_shufflevector(__s1, __s1, __p2, __p2); \
  14808. __ret; \
  14809. })
  14810. #else
  14811. #define vmul_lane_u32(__p0, __p1, __p2) __extension__ ({ \
  14812. uint32x2_t __s0 = __p0; \
  14813. uint32x2_t __s1 = __p1; \
  14814. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  14815. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  14816. uint32x2_t __ret; \
  14817. __ret = __rev0 * __builtin_shufflevector(__rev1, __rev1, __p2, __p2); \
  14818. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  14819. __ret; \
  14820. })
  14821. #endif
  14822. #ifdef __LITTLE_ENDIAN__
  14823. #define vmul_lane_u16(__p0, __p1, __p2) __extension__ ({ \
  14824. uint16x4_t __s0 = __p0; \
  14825. uint16x4_t __s1 = __p1; \
  14826. uint16x4_t __ret; \
  14827. __ret = __s0 * __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2); \
  14828. __ret; \
  14829. })
  14830. #else
  14831. #define vmul_lane_u16(__p0, __p1, __p2) __extension__ ({ \
  14832. uint16x4_t __s0 = __p0; \
  14833. uint16x4_t __s1 = __p1; \
  14834. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  14835. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  14836. uint16x4_t __ret; \
  14837. __ret = __rev0 * __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2); \
  14838. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  14839. __ret; \
  14840. })
  14841. #endif
  14842. #ifdef __LITTLE_ENDIAN__
  14843. #define vmul_lane_f32(__p0, __p1, __p2) __extension__ ({ \
  14844. float32x2_t __s0 = __p0; \
  14845. float32x2_t __s1 = __p1; \
  14846. float32x2_t __ret; \
  14847. __ret = __s0 * __builtin_shufflevector(__s1, __s1, __p2, __p2); \
  14848. __ret; \
  14849. })
  14850. #else
  14851. #define vmul_lane_f32(__p0, __p1, __p2) __extension__ ({ \
  14852. float32x2_t __s0 = __p0; \
  14853. float32x2_t __s1 = __p1; \
  14854. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  14855. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  14856. float32x2_t __ret; \
  14857. __ret = __rev0 * __builtin_shufflevector(__rev1, __rev1, __p2, __p2); \
  14858. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  14859. __ret; \
  14860. })
  14861. #endif
  14862. #ifdef __LITTLE_ENDIAN__
  14863. #define vmul_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  14864. int32x2_t __s0 = __p0; \
  14865. int32x2_t __s1 = __p1; \
  14866. int32x2_t __ret; \
  14867. __ret = __s0 * __builtin_shufflevector(__s1, __s1, __p2, __p2); \
  14868. __ret; \
  14869. })
  14870. #else
  14871. #define vmul_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  14872. int32x2_t __s0 = __p0; \
  14873. int32x2_t __s1 = __p1; \
  14874. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  14875. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  14876. int32x2_t __ret; \
  14877. __ret = __rev0 * __builtin_shufflevector(__rev1, __rev1, __p2, __p2); \
  14878. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  14879. __ret; \
  14880. })
  14881. #endif
  14882. #ifdef __LITTLE_ENDIAN__
  14883. #define vmul_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  14884. int16x4_t __s0 = __p0; \
  14885. int16x4_t __s1 = __p1; \
  14886. int16x4_t __ret; \
  14887. __ret = __s0 * __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2); \
  14888. __ret; \
  14889. })
  14890. #else
  14891. #define vmul_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  14892. int16x4_t __s0 = __p0; \
  14893. int16x4_t __s1 = __p1; \
  14894. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  14895. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  14896. int16x4_t __ret; \
  14897. __ret = __rev0 * __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2); \
  14898. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  14899. __ret; \
  14900. })
  14901. #endif
  14902. #ifdef __LITTLE_ENDIAN__
  14903. __ai uint32x4_t vmulq_n_u32(uint32x4_t __p0, uint32_t __p1) {
  14904. uint32x4_t __ret;
  14905. __ret = __p0 * (uint32x4_t) {__p1, __p1, __p1, __p1};
  14906. return __ret;
  14907. }
  14908. #else
  14909. __ai uint32x4_t vmulq_n_u32(uint32x4_t __p0, uint32_t __p1) {
  14910. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  14911. uint32x4_t __ret;
  14912. __ret = __rev0 * (uint32x4_t) {__p1, __p1, __p1, __p1};
  14913. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  14914. return __ret;
  14915. }
  14916. #endif
  14917. #ifdef __LITTLE_ENDIAN__
  14918. __ai uint16x8_t vmulq_n_u16(uint16x8_t __p0, uint16_t __p1) {
  14919. uint16x8_t __ret;
  14920. __ret = __p0 * (uint16x8_t) {__p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1};
  14921. return __ret;
  14922. }
  14923. #else
  14924. __ai uint16x8_t vmulq_n_u16(uint16x8_t __p0, uint16_t __p1) {
  14925. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  14926. uint16x8_t __ret;
  14927. __ret = __rev0 * (uint16x8_t) {__p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1};
  14928. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  14929. return __ret;
  14930. }
  14931. #endif
  14932. #ifdef __LITTLE_ENDIAN__
  14933. __ai float32x4_t vmulq_n_f32(float32x4_t __p0, float32_t __p1) {
  14934. float32x4_t __ret;
  14935. __ret = __p0 * (float32x4_t) {__p1, __p1, __p1, __p1};
  14936. return __ret;
  14937. }
  14938. #else
  14939. __ai float32x4_t vmulq_n_f32(float32x4_t __p0, float32_t __p1) {
  14940. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  14941. float32x4_t __ret;
  14942. __ret = __rev0 * (float32x4_t) {__p1, __p1, __p1, __p1};
  14943. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  14944. return __ret;
  14945. }
  14946. #endif
  14947. #ifdef __LITTLE_ENDIAN__
  14948. __ai int32x4_t vmulq_n_s32(int32x4_t __p0, int32_t __p1) {
  14949. int32x4_t __ret;
  14950. __ret = __p0 * (int32x4_t) {__p1, __p1, __p1, __p1};
  14951. return __ret;
  14952. }
  14953. #else
  14954. __ai int32x4_t vmulq_n_s32(int32x4_t __p0, int32_t __p1) {
  14955. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  14956. int32x4_t __ret;
  14957. __ret = __rev0 * (int32x4_t) {__p1, __p1, __p1, __p1};
  14958. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  14959. return __ret;
  14960. }
  14961. #endif
  14962. #ifdef __LITTLE_ENDIAN__
  14963. __ai int16x8_t vmulq_n_s16(int16x8_t __p0, int16_t __p1) {
  14964. int16x8_t __ret;
  14965. __ret = __p0 * (int16x8_t) {__p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1};
  14966. return __ret;
  14967. }
  14968. #else
  14969. __ai int16x8_t vmulq_n_s16(int16x8_t __p0, int16_t __p1) {
  14970. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  14971. int16x8_t __ret;
  14972. __ret = __rev0 * (int16x8_t) {__p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1};
  14973. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  14974. return __ret;
  14975. }
  14976. #endif
  14977. #ifdef __LITTLE_ENDIAN__
  14978. __ai uint32x2_t vmul_n_u32(uint32x2_t __p0, uint32_t __p1) {
  14979. uint32x2_t __ret;
  14980. __ret = __p0 * (uint32x2_t) {__p1, __p1};
  14981. return __ret;
  14982. }
  14983. #else
  14984. __ai uint32x2_t vmul_n_u32(uint32x2_t __p0, uint32_t __p1) {
  14985. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  14986. uint32x2_t __ret;
  14987. __ret = __rev0 * (uint32x2_t) {__p1, __p1};
  14988. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  14989. return __ret;
  14990. }
  14991. #endif
  14992. #ifdef __LITTLE_ENDIAN__
  14993. __ai uint16x4_t vmul_n_u16(uint16x4_t __p0, uint16_t __p1) {
  14994. uint16x4_t __ret;
  14995. __ret = __p0 * (uint16x4_t) {__p1, __p1, __p1, __p1};
  14996. return __ret;
  14997. }
  14998. #else
  14999. __ai uint16x4_t vmul_n_u16(uint16x4_t __p0, uint16_t __p1) {
  15000. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  15001. uint16x4_t __ret;
  15002. __ret = __rev0 * (uint16x4_t) {__p1, __p1, __p1, __p1};
  15003. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  15004. return __ret;
  15005. }
  15006. #endif
  15007. #ifdef __LITTLE_ENDIAN__
  15008. __ai float32x2_t vmul_n_f32(float32x2_t __p0, float32_t __p1) {
  15009. float32x2_t __ret;
  15010. __ret = __p0 * (float32x2_t) {__p1, __p1};
  15011. return __ret;
  15012. }
  15013. #else
  15014. __ai float32x2_t vmul_n_f32(float32x2_t __p0, float32_t __p1) {
  15015. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  15016. float32x2_t __ret;
  15017. __ret = __rev0 * (float32x2_t) {__p1, __p1};
  15018. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  15019. return __ret;
  15020. }
  15021. #endif
  15022. #ifdef __LITTLE_ENDIAN__
  15023. __ai int32x2_t vmul_n_s32(int32x2_t __p0, int32_t __p1) {
  15024. int32x2_t __ret;
  15025. __ret = __p0 * (int32x2_t) {__p1, __p1};
  15026. return __ret;
  15027. }
  15028. #else
  15029. __ai int32x2_t vmul_n_s32(int32x2_t __p0, int32_t __p1) {
  15030. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  15031. int32x2_t __ret;
  15032. __ret = __rev0 * (int32x2_t) {__p1, __p1};
  15033. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  15034. return __ret;
  15035. }
  15036. #endif
  15037. #ifdef __LITTLE_ENDIAN__
  15038. __ai int16x4_t vmul_n_s16(int16x4_t __p0, int16_t __p1) {
  15039. int16x4_t __ret;
  15040. __ret = __p0 * (int16x4_t) {__p1, __p1, __p1, __p1};
  15041. return __ret;
  15042. }
  15043. #else
  15044. __ai int16x4_t vmul_n_s16(int16x4_t __p0, int16_t __p1) {
  15045. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  15046. int16x4_t __ret;
  15047. __ret = __rev0 * (int16x4_t) {__p1, __p1, __p1, __p1};
  15048. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  15049. return __ret;
  15050. }
  15051. #endif
  15052. #ifdef __LITTLE_ENDIAN__
  15053. __ai poly16x8_t vmull_p8(poly8x8_t __p0, poly8x8_t __p1) {
  15054. poly16x8_t __ret;
  15055. __ret = (poly16x8_t) __builtin_neon_vmull_v((int8x8_t)__p0, (int8x8_t)__p1, 37);
  15056. return __ret;
  15057. }
  15058. #else
  15059. __ai poly16x8_t vmull_p8(poly8x8_t __p0, poly8x8_t __p1) {
  15060. poly8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  15061. poly8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  15062. poly16x8_t __ret;
  15063. __ret = (poly16x8_t) __builtin_neon_vmull_v((int8x8_t)__rev0, (int8x8_t)__rev1, 37);
  15064. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  15065. return __ret;
  15066. }
  15067. __ai poly16x8_t __noswap_vmull_p8(poly8x8_t __p0, poly8x8_t __p1) {
  15068. poly16x8_t __ret;
  15069. __ret = (poly16x8_t) __builtin_neon_vmull_v((int8x8_t)__p0, (int8x8_t)__p1, 37);
  15070. return __ret;
  15071. }
  15072. #endif
  15073. #ifdef __LITTLE_ENDIAN__
  15074. __ai uint16x8_t vmull_u8(uint8x8_t __p0, uint8x8_t __p1) {
  15075. uint16x8_t __ret;
  15076. __ret = (uint16x8_t) __builtin_neon_vmull_v((int8x8_t)__p0, (int8x8_t)__p1, 49);
  15077. return __ret;
  15078. }
  15079. #else
  15080. __ai uint16x8_t vmull_u8(uint8x8_t __p0, uint8x8_t __p1) {
  15081. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  15082. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  15083. uint16x8_t __ret;
  15084. __ret = (uint16x8_t) __builtin_neon_vmull_v((int8x8_t)__rev0, (int8x8_t)__rev1, 49);
  15085. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  15086. return __ret;
  15087. }
  15088. __ai uint16x8_t __noswap_vmull_u8(uint8x8_t __p0, uint8x8_t __p1) {
  15089. uint16x8_t __ret;
  15090. __ret = (uint16x8_t) __builtin_neon_vmull_v((int8x8_t)__p0, (int8x8_t)__p1, 49);
  15091. return __ret;
  15092. }
  15093. #endif
  15094. #ifdef __LITTLE_ENDIAN__
  15095. __ai uint64x2_t vmull_u32(uint32x2_t __p0, uint32x2_t __p1) {
  15096. uint64x2_t __ret;
  15097. __ret = (uint64x2_t) __builtin_neon_vmull_v((int8x8_t)__p0, (int8x8_t)__p1, 51);
  15098. return __ret;
  15099. }
  15100. #else
  15101. __ai uint64x2_t vmull_u32(uint32x2_t __p0, uint32x2_t __p1) {
  15102. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  15103. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  15104. uint64x2_t __ret;
  15105. __ret = (uint64x2_t) __builtin_neon_vmull_v((int8x8_t)__rev0, (int8x8_t)__rev1, 51);
  15106. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  15107. return __ret;
  15108. }
  15109. __ai uint64x2_t __noswap_vmull_u32(uint32x2_t __p0, uint32x2_t __p1) {
  15110. uint64x2_t __ret;
  15111. __ret = (uint64x2_t) __builtin_neon_vmull_v((int8x8_t)__p0, (int8x8_t)__p1, 51);
  15112. return __ret;
  15113. }
  15114. #endif
  15115. #ifdef __LITTLE_ENDIAN__
  15116. __ai uint32x4_t vmull_u16(uint16x4_t __p0, uint16x4_t __p1) {
  15117. uint32x4_t __ret;
  15118. __ret = (uint32x4_t) __builtin_neon_vmull_v((int8x8_t)__p0, (int8x8_t)__p1, 50);
  15119. return __ret;
  15120. }
  15121. #else
  15122. __ai uint32x4_t vmull_u16(uint16x4_t __p0, uint16x4_t __p1) {
  15123. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  15124. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  15125. uint32x4_t __ret;
  15126. __ret = (uint32x4_t) __builtin_neon_vmull_v((int8x8_t)__rev0, (int8x8_t)__rev1, 50);
  15127. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  15128. return __ret;
  15129. }
  15130. __ai uint32x4_t __noswap_vmull_u16(uint16x4_t __p0, uint16x4_t __p1) {
  15131. uint32x4_t __ret;
  15132. __ret = (uint32x4_t) __builtin_neon_vmull_v((int8x8_t)__p0, (int8x8_t)__p1, 50);
  15133. return __ret;
  15134. }
  15135. #endif
  15136. #ifdef __LITTLE_ENDIAN__
  15137. __ai int16x8_t vmull_s8(int8x8_t __p0, int8x8_t __p1) {
  15138. int16x8_t __ret;
  15139. __ret = (int16x8_t) __builtin_neon_vmull_v((int8x8_t)__p0, (int8x8_t)__p1, 33);
  15140. return __ret;
  15141. }
  15142. #else
  15143. __ai int16x8_t vmull_s8(int8x8_t __p0, int8x8_t __p1) {
  15144. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  15145. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  15146. int16x8_t __ret;
  15147. __ret = (int16x8_t) __builtin_neon_vmull_v((int8x8_t)__rev0, (int8x8_t)__rev1, 33);
  15148. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  15149. return __ret;
  15150. }
  15151. __ai int16x8_t __noswap_vmull_s8(int8x8_t __p0, int8x8_t __p1) {
  15152. int16x8_t __ret;
  15153. __ret = (int16x8_t) __builtin_neon_vmull_v((int8x8_t)__p0, (int8x8_t)__p1, 33);
  15154. return __ret;
  15155. }
  15156. #endif
  15157. #ifdef __LITTLE_ENDIAN__
  15158. __ai int64x2_t vmull_s32(int32x2_t __p0, int32x2_t __p1) {
  15159. int64x2_t __ret;
  15160. __ret = (int64x2_t) __builtin_neon_vmull_v((int8x8_t)__p0, (int8x8_t)__p1, 35);
  15161. return __ret;
  15162. }
  15163. #else
  15164. __ai int64x2_t vmull_s32(int32x2_t __p0, int32x2_t __p1) {
  15165. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  15166. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  15167. int64x2_t __ret;
  15168. __ret = (int64x2_t) __builtin_neon_vmull_v((int8x8_t)__rev0, (int8x8_t)__rev1, 35);
  15169. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  15170. return __ret;
  15171. }
  15172. __ai int64x2_t __noswap_vmull_s32(int32x2_t __p0, int32x2_t __p1) {
  15173. int64x2_t __ret;
  15174. __ret = (int64x2_t) __builtin_neon_vmull_v((int8x8_t)__p0, (int8x8_t)__p1, 35);
  15175. return __ret;
  15176. }
  15177. #endif
  15178. #ifdef __LITTLE_ENDIAN__
  15179. __ai int32x4_t vmull_s16(int16x4_t __p0, int16x4_t __p1) {
  15180. int32x4_t __ret;
  15181. __ret = (int32x4_t) __builtin_neon_vmull_v((int8x8_t)__p0, (int8x8_t)__p1, 34);
  15182. return __ret;
  15183. }
  15184. #else
  15185. __ai int32x4_t vmull_s16(int16x4_t __p0, int16x4_t __p1) {
  15186. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  15187. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  15188. int32x4_t __ret;
  15189. __ret = (int32x4_t) __builtin_neon_vmull_v((int8x8_t)__rev0, (int8x8_t)__rev1, 34);
  15190. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  15191. return __ret;
  15192. }
  15193. __ai int32x4_t __noswap_vmull_s16(int16x4_t __p0, int16x4_t __p1) {
  15194. int32x4_t __ret;
  15195. __ret = (int32x4_t) __builtin_neon_vmull_v((int8x8_t)__p0, (int8x8_t)__p1, 34);
  15196. return __ret;
  15197. }
  15198. #endif
  15199. #ifdef __LITTLE_ENDIAN__
  15200. #define vmull_lane_u32(__p0, __p1, __p2) __extension__ ({ \
  15201. uint32x2_t __s0 = __p0; \
  15202. uint32x2_t __s1 = __p1; \
  15203. uint64x2_t __ret; \
  15204. __ret = vmull_u32(__s0, __builtin_shufflevector(__s1, __s1, __p2, __p2)); \
  15205. __ret; \
  15206. })
  15207. #else
  15208. #define vmull_lane_u32(__p0, __p1, __p2) __extension__ ({ \
  15209. uint32x2_t __s0 = __p0; \
  15210. uint32x2_t __s1 = __p1; \
  15211. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  15212. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  15213. uint64x2_t __ret; \
  15214. __ret = __noswap_vmull_u32(__rev0, __builtin_shufflevector(__rev1, __rev1, __p2, __p2)); \
  15215. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  15216. __ret; \
  15217. })
  15218. #endif
  15219. #ifdef __LITTLE_ENDIAN__
  15220. #define vmull_lane_u16(__p0, __p1, __p2) __extension__ ({ \
  15221. uint16x4_t __s0 = __p0; \
  15222. uint16x4_t __s1 = __p1; \
  15223. uint32x4_t __ret; \
  15224. __ret = vmull_u16(__s0, __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2)); \
  15225. __ret; \
  15226. })
  15227. #else
  15228. #define vmull_lane_u16(__p0, __p1, __p2) __extension__ ({ \
  15229. uint16x4_t __s0 = __p0; \
  15230. uint16x4_t __s1 = __p1; \
  15231. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  15232. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  15233. uint32x4_t __ret; \
  15234. __ret = __noswap_vmull_u16(__rev0, __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2)); \
  15235. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  15236. __ret; \
  15237. })
  15238. #endif
  15239. #ifdef __LITTLE_ENDIAN__
  15240. #define vmull_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  15241. int32x2_t __s0 = __p0; \
  15242. int32x2_t __s1 = __p1; \
  15243. int64x2_t __ret; \
  15244. __ret = vmull_s32(__s0, __builtin_shufflevector(__s1, __s1, __p2, __p2)); \
  15245. __ret; \
  15246. })
  15247. #else
  15248. #define vmull_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  15249. int32x2_t __s0 = __p0; \
  15250. int32x2_t __s1 = __p1; \
  15251. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  15252. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  15253. int64x2_t __ret; \
  15254. __ret = __noswap_vmull_s32(__rev0, __builtin_shufflevector(__rev1, __rev1, __p2, __p2)); \
  15255. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  15256. __ret; \
  15257. })
  15258. #endif
  15259. #ifdef __LITTLE_ENDIAN__
  15260. #define vmull_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  15261. int16x4_t __s0 = __p0; \
  15262. int16x4_t __s1 = __p1; \
  15263. int32x4_t __ret; \
  15264. __ret = vmull_s16(__s0, __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2)); \
  15265. __ret; \
  15266. })
  15267. #else
  15268. #define vmull_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  15269. int16x4_t __s0 = __p0; \
  15270. int16x4_t __s1 = __p1; \
  15271. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  15272. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  15273. int32x4_t __ret; \
  15274. __ret = __noswap_vmull_s16(__rev0, __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2)); \
  15275. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  15276. __ret; \
  15277. })
  15278. #endif
  15279. #ifdef __LITTLE_ENDIAN__
  15280. __ai uint64x2_t vmull_n_u32(uint32x2_t __p0, uint32_t __p1) {
  15281. uint64x2_t __ret;
  15282. __ret = (uint64x2_t) __builtin_neon_vmull_v((int8x8_t)__p0, (int8x8_t)(uint32x2_t) {__p1, __p1}, 51);
  15283. return __ret;
  15284. }
  15285. #else
  15286. __ai uint64x2_t vmull_n_u32(uint32x2_t __p0, uint32_t __p1) {
  15287. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  15288. uint64x2_t __ret;
  15289. __ret = (uint64x2_t) __builtin_neon_vmull_v((int8x8_t)__rev0, (int8x8_t)(uint32x2_t) {__p1, __p1}, 51);
  15290. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  15291. return __ret;
  15292. }
  15293. __ai uint64x2_t __noswap_vmull_n_u32(uint32x2_t __p0, uint32_t __p1) {
  15294. uint64x2_t __ret;
  15295. __ret = (uint64x2_t) __builtin_neon_vmull_v((int8x8_t)__p0, (int8x8_t)(uint32x2_t) {__p1, __p1}, 51);
  15296. return __ret;
  15297. }
  15298. #endif
  15299. #ifdef __LITTLE_ENDIAN__
  15300. __ai uint32x4_t vmull_n_u16(uint16x4_t __p0, uint16_t __p1) {
  15301. uint32x4_t __ret;
  15302. __ret = (uint32x4_t) __builtin_neon_vmull_v((int8x8_t)__p0, (int8x8_t)(uint16x4_t) {__p1, __p1, __p1, __p1}, 50);
  15303. return __ret;
  15304. }
  15305. #else
  15306. __ai uint32x4_t vmull_n_u16(uint16x4_t __p0, uint16_t __p1) {
  15307. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  15308. uint32x4_t __ret;
  15309. __ret = (uint32x4_t) __builtin_neon_vmull_v((int8x8_t)__rev0, (int8x8_t)(uint16x4_t) {__p1, __p1, __p1, __p1}, 50);
  15310. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  15311. return __ret;
  15312. }
  15313. __ai uint32x4_t __noswap_vmull_n_u16(uint16x4_t __p0, uint16_t __p1) {
  15314. uint32x4_t __ret;
  15315. __ret = (uint32x4_t) __builtin_neon_vmull_v((int8x8_t)__p0, (int8x8_t)(uint16x4_t) {__p1, __p1, __p1, __p1}, 50);
  15316. return __ret;
  15317. }
  15318. #endif
  15319. #ifdef __LITTLE_ENDIAN__
  15320. __ai int64x2_t vmull_n_s32(int32x2_t __p0, int32_t __p1) {
  15321. int64x2_t __ret;
  15322. __ret = (int64x2_t) __builtin_neon_vmull_v((int8x8_t)__p0, (int8x8_t)(int32x2_t) {__p1, __p1}, 35);
  15323. return __ret;
  15324. }
  15325. #else
  15326. __ai int64x2_t vmull_n_s32(int32x2_t __p0, int32_t __p1) {
  15327. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  15328. int64x2_t __ret;
  15329. __ret = (int64x2_t) __builtin_neon_vmull_v((int8x8_t)__rev0, (int8x8_t)(int32x2_t) {__p1, __p1}, 35);
  15330. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  15331. return __ret;
  15332. }
  15333. __ai int64x2_t __noswap_vmull_n_s32(int32x2_t __p0, int32_t __p1) {
  15334. int64x2_t __ret;
  15335. __ret = (int64x2_t) __builtin_neon_vmull_v((int8x8_t)__p0, (int8x8_t)(int32x2_t) {__p1, __p1}, 35);
  15336. return __ret;
  15337. }
  15338. #endif
  15339. #ifdef __LITTLE_ENDIAN__
  15340. __ai int32x4_t vmull_n_s16(int16x4_t __p0, int16_t __p1) {
  15341. int32x4_t __ret;
  15342. __ret = (int32x4_t) __builtin_neon_vmull_v((int8x8_t)__p0, (int8x8_t)(int16x4_t) {__p1, __p1, __p1, __p1}, 34);
  15343. return __ret;
  15344. }
  15345. #else
  15346. __ai int32x4_t vmull_n_s16(int16x4_t __p0, int16_t __p1) {
  15347. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  15348. int32x4_t __ret;
  15349. __ret = (int32x4_t) __builtin_neon_vmull_v((int8x8_t)__rev0, (int8x8_t)(int16x4_t) {__p1, __p1, __p1, __p1}, 34);
  15350. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  15351. return __ret;
  15352. }
  15353. __ai int32x4_t __noswap_vmull_n_s16(int16x4_t __p0, int16_t __p1) {
  15354. int32x4_t __ret;
  15355. __ret = (int32x4_t) __builtin_neon_vmull_v((int8x8_t)__p0, (int8x8_t)(int16x4_t) {__p1, __p1, __p1, __p1}, 34);
  15356. return __ret;
  15357. }
  15358. #endif
  15359. #ifdef __LITTLE_ENDIAN__
  15360. __ai poly8x8_t vmvn_p8(poly8x8_t __p0) {
  15361. poly8x8_t __ret;
  15362. __ret = ~__p0;
  15363. return __ret;
  15364. }
  15365. #else
  15366. __ai poly8x8_t vmvn_p8(poly8x8_t __p0) {
  15367. poly8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  15368. poly8x8_t __ret;
  15369. __ret = ~__rev0;
  15370. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  15371. return __ret;
  15372. }
  15373. #endif
  15374. #ifdef __LITTLE_ENDIAN__
  15375. __ai poly8x16_t vmvnq_p8(poly8x16_t __p0) {
  15376. poly8x16_t __ret;
  15377. __ret = ~__p0;
  15378. return __ret;
  15379. }
  15380. #else
  15381. __ai poly8x16_t vmvnq_p8(poly8x16_t __p0) {
  15382. poly8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  15383. poly8x16_t __ret;
  15384. __ret = ~__rev0;
  15385. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  15386. return __ret;
  15387. }
  15388. #endif
  15389. #ifdef __LITTLE_ENDIAN__
  15390. __ai uint8x16_t vmvnq_u8(uint8x16_t __p0) {
  15391. uint8x16_t __ret;
  15392. __ret = ~__p0;
  15393. return __ret;
  15394. }
  15395. #else
  15396. __ai uint8x16_t vmvnq_u8(uint8x16_t __p0) {
  15397. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  15398. uint8x16_t __ret;
  15399. __ret = ~__rev0;
  15400. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  15401. return __ret;
  15402. }
  15403. #endif
  15404. #ifdef __LITTLE_ENDIAN__
  15405. __ai uint32x4_t vmvnq_u32(uint32x4_t __p0) {
  15406. uint32x4_t __ret;
  15407. __ret = ~__p0;
  15408. return __ret;
  15409. }
  15410. #else
  15411. __ai uint32x4_t vmvnq_u32(uint32x4_t __p0) {
  15412. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  15413. uint32x4_t __ret;
  15414. __ret = ~__rev0;
  15415. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  15416. return __ret;
  15417. }
  15418. #endif
  15419. #ifdef __LITTLE_ENDIAN__
  15420. __ai uint16x8_t vmvnq_u16(uint16x8_t __p0) {
  15421. uint16x8_t __ret;
  15422. __ret = ~__p0;
  15423. return __ret;
  15424. }
  15425. #else
  15426. __ai uint16x8_t vmvnq_u16(uint16x8_t __p0) {
  15427. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  15428. uint16x8_t __ret;
  15429. __ret = ~__rev0;
  15430. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  15431. return __ret;
  15432. }
  15433. #endif
  15434. #ifdef __LITTLE_ENDIAN__
  15435. __ai int8x16_t vmvnq_s8(int8x16_t __p0) {
  15436. int8x16_t __ret;
  15437. __ret = ~__p0;
  15438. return __ret;
  15439. }
  15440. #else
  15441. __ai int8x16_t vmvnq_s8(int8x16_t __p0) {
  15442. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  15443. int8x16_t __ret;
  15444. __ret = ~__rev0;
  15445. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  15446. return __ret;
  15447. }
  15448. #endif
  15449. #ifdef __LITTLE_ENDIAN__
  15450. __ai int32x4_t vmvnq_s32(int32x4_t __p0) {
  15451. int32x4_t __ret;
  15452. __ret = ~__p0;
  15453. return __ret;
  15454. }
  15455. #else
  15456. __ai int32x4_t vmvnq_s32(int32x4_t __p0) {
  15457. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  15458. int32x4_t __ret;
  15459. __ret = ~__rev0;
  15460. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  15461. return __ret;
  15462. }
  15463. #endif
  15464. #ifdef __LITTLE_ENDIAN__
  15465. __ai int16x8_t vmvnq_s16(int16x8_t __p0) {
  15466. int16x8_t __ret;
  15467. __ret = ~__p0;
  15468. return __ret;
  15469. }
  15470. #else
  15471. __ai int16x8_t vmvnq_s16(int16x8_t __p0) {
  15472. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  15473. int16x8_t __ret;
  15474. __ret = ~__rev0;
  15475. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  15476. return __ret;
  15477. }
  15478. #endif
  15479. #ifdef __LITTLE_ENDIAN__
  15480. __ai uint8x8_t vmvn_u8(uint8x8_t __p0) {
  15481. uint8x8_t __ret;
  15482. __ret = ~__p0;
  15483. return __ret;
  15484. }
  15485. #else
  15486. __ai uint8x8_t vmvn_u8(uint8x8_t __p0) {
  15487. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  15488. uint8x8_t __ret;
  15489. __ret = ~__rev0;
  15490. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  15491. return __ret;
  15492. }
  15493. #endif
  15494. #ifdef __LITTLE_ENDIAN__
  15495. __ai uint32x2_t vmvn_u32(uint32x2_t __p0) {
  15496. uint32x2_t __ret;
  15497. __ret = ~__p0;
  15498. return __ret;
  15499. }
  15500. #else
  15501. __ai uint32x2_t vmvn_u32(uint32x2_t __p0) {
  15502. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  15503. uint32x2_t __ret;
  15504. __ret = ~__rev0;
  15505. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  15506. return __ret;
  15507. }
  15508. #endif
  15509. #ifdef __LITTLE_ENDIAN__
  15510. __ai uint16x4_t vmvn_u16(uint16x4_t __p0) {
  15511. uint16x4_t __ret;
  15512. __ret = ~__p0;
  15513. return __ret;
  15514. }
  15515. #else
  15516. __ai uint16x4_t vmvn_u16(uint16x4_t __p0) {
  15517. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  15518. uint16x4_t __ret;
  15519. __ret = ~__rev0;
  15520. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  15521. return __ret;
  15522. }
  15523. #endif
  15524. #ifdef __LITTLE_ENDIAN__
  15525. __ai int8x8_t vmvn_s8(int8x8_t __p0) {
  15526. int8x8_t __ret;
  15527. __ret = ~__p0;
  15528. return __ret;
  15529. }
  15530. #else
  15531. __ai int8x8_t vmvn_s8(int8x8_t __p0) {
  15532. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  15533. int8x8_t __ret;
  15534. __ret = ~__rev0;
  15535. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  15536. return __ret;
  15537. }
  15538. #endif
  15539. #ifdef __LITTLE_ENDIAN__
  15540. __ai int32x2_t vmvn_s32(int32x2_t __p0) {
  15541. int32x2_t __ret;
  15542. __ret = ~__p0;
  15543. return __ret;
  15544. }
  15545. #else
  15546. __ai int32x2_t vmvn_s32(int32x2_t __p0) {
  15547. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  15548. int32x2_t __ret;
  15549. __ret = ~__rev0;
  15550. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  15551. return __ret;
  15552. }
  15553. #endif
  15554. #ifdef __LITTLE_ENDIAN__
  15555. __ai int16x4_t vmvn_s16(int16x4_t __p0) {
  15556. int16x4_t __ret;
  15557. __ret = ~__p0;
  15558. return __ret;
  15559. }
  15560. #else
  15561. __ai int16x4_t vmvn_s16(int16x4_t __p0) {
  15562. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  15563. int16x4_t __ret;
  15564. __ret = ~__rev0;
  15565. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  15566. return __ret;
  15567. }
  15568. #endif
  15569. #ifdef __LITTLE_ENDIAN__
  15570. __ai int8x16_t vnegq_s8(int8x16_t __p0) {
  15571. int8x16_t __ret;
  15572. __ret = -__p0;
  15573. return __ret;
  15574. }
  15575. #else
  15576. __ai int8x16_t vnegq_s8(int8x16_t __p0) {
  15577. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  15578. int8x16_t __ret;
  15579. __ret = -__rev0;
  15580. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  15581. return __ret;
  15582. }
  15583. #endif
  15584. #ifdef __LITTLE_ENDIAN__
  15585. __ai float32x4_t vnegq_f32(float32x4_t __p0) {
  15586. float32x4_t __ret;
  15587. __ret = -__p0;
  15588. return __ret;
  15589. }
  15590. #else
  15591. __ai float32x4_t vnegq_f32(float32x4_t __p0) {
  15592. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  15593. float32x4_t __ret;
  15594. __ret = -__rev0;
  15595. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  15596. return __ret;
  15597. }
  15598. #endif
  15599. #ifdef __LITTLE_ENDIAN__
  15600. __ai int32x4_t vnegq_s32(int32x4_t __p0) {
  15601. int32x4_t __ret;
  15602. __ret = -__p0;
  15603. return __ret;
  15604. }
  15605. #else
  15606. __ai int32x4_t vnegq_s32(int32x4_t __p0) {
  15607. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  15608. int32x4_t __ret;
  15609. __ret = -__rev0;
  15610. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  15611. return __ret;
  15612. }
  15613. #endif
  15614. #ifdef __LITTLE_ENDIAN__
  15615. __ai int16x8_t vnegq_s16(int16x8_t __p0) {
  15616. int16x8_t __ret;
  15617. __ret = -__p0;
  15618. return __ret;
  15619. }
  15620. #else
  15621. __ai int16x8_t vnegq_s16(int16x8_t __p0) {
  15622. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  15623. int16x8_t __ret;
  15624. __ret = -__rev0;
  15625. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  15626. return __ret;
  15627. }
  15628. #endif
  15629. #ifdef __LITTLE_ENDIAN__
  15630. __ai int8x8_t vneg_s8(int8x8_t __p0) {
  15631. int8x8_t __ret;
  15632. __ret = -__p0;
  15633. return __ret;
  15634. }
  15635. #else
  15636. __ai int8x8_t vneg_s8(int8x8_t __p0) {
  15637. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  15638. int8x8_t __ret;
  15639. __ret = -__rev0;
  15640. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  15641. return __ret;
  15642. }
  15643. #endif
  15644. #ifdef __LITTLE_ENDIAN__
  15645. __ai float32x2_t vneg_f32(float32x2_t __p0) {
  15646. float32x2_t __ret;
  15647. __ret = -__p0;
  15648. return __ret;
  15649. }
  15650. #else
  15651. __ai float32x2_t vneg_f32(float32x2_t __p0) {
  15652. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  15653. float32x2_t __ret;
  15654. __ret = -__rev0;
  15655. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  15656. return __ret;
  15657. }
  15658. #endif
  15659. #ifdef __LITTLE_ENDIAN__
  15660. __ai int32x2_t vneg_s32(int32x2_t __p0) {
  15661. int32x2_t __ret;
  15662. __ret = -__p0;
  15663. return __ret;
  15664. }
  15665. #else
  15666. __ai int32x2_t vneg_s32(int32x2_t __p0) {
  15667. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  15668. int32x2_t __ret;
  15669. __ret = -__rev0;
  15670. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  15671. return __ret;
  15672. }
  15673. #endif
  15674. #ifdef __LITTLE_ENDIAN__
  15675. __ai int16x4_t vneg_s16(int16x4_t __p0) {
  15676. int16x4_t __ret;
  15677. __ret = -__p0;
  15678. return __ret;
  15679. }
  15680. #else
  15681. __ai int16x4_t vneg_s16(int16x4_t __p0) {
  15682. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  15683. int16x4_t __ret;
  15684. __ret = -__rev0;
  15685. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  15686. return __ret;
  15687. }
  15688. #endif
  15689. #ifdef __LITTLE_ENDIAN__
  15690. __ai uint8x16_t vornq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  15691. uint8x16_t __ret;
  15692. __ret = __p0 | ~__p1;
  15693. return __ret;
  15694. }
  15695. #else
  15696. __ai uint8x16_t vornq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  15697. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  15698. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  15699. uint8x16_t __ret;
  15700. __ret = __rev0 | ~__rev1;
  15701. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  15702. return __ret;
  15703. }
  15704. #endif
  15705. #ifdef __LITTLE_ENDIAN__
  15706. __ai uint32x4_t vornq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  15707. uint32x4_t __ret;
  15708. __ret = __p0 | ~__p1;
  15709. return __ret;
  15710. }
  15711. #else
  15712. __ai uint32x4_t vornq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  15713. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  15714. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  15715. uint32x4_t __ret;
  15716. __ret = __rev0 | ~__rev1;
  15717. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  15718. return __ret;
  15719. }
  15720. #endif
  15721. #ifdef __LITTLE_ENDIAN__
  15722. __ai uint64x2_t vornq_u64(uint64x2_t __p0, uint64x2_t __p1) {
  15723. uint64x2_t __ret;
  15724. __ret = __p0 | ~__p1;
  15725. return __ret;
  15726. }
  15727. #else
  15728. __ai uint64x2_t vornq_u64(uint64x2_t __p0, uint64x2_t __p1) {
  15729. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  15730. uint64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  15731. uint64x2_t __ret;
  15732. __ret = __rev0 | ~__rev1;
  15733. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  15734. return __ret;
  15735. }
  15736. #endif
  15737. #ifdef __LITTLE_ENDIAN__
  15738. __ai uint16x8_t vornq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  15739. uint16x8_t __ret;
  15740. __ret = __p0 | ~__p1;
  15741. return __ret;
  15742. }
  15743. #else
  15744. __ai uint16x8_t vornq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  15745. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  15746. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  15747. uint16x8_t __ret;
  15748. __ret = __rev0 | ~__rev1;
  15749. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  15750. return __ret;
  15751. }
  15752. #endif
  15753. #ifdef __LITTLE_ENDIAN__
  15754. __ai int8x16_t vornq_s8(int8x16_t __p0, int8x16_t __p1) {
  15755. int8x16_t __ret;
  15756. __ret = __p0 | ~__p1;
  15757. return __ret;
  15758. }
  15759. #else
  15760. __ai int8x16_t vornq_s8(int8x16_t __p0, int8x16_t __p1) {
  15761. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  15762. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  15763. int8x16_t __ret;
  15764. __ret = __rev0 | ~__rev1;
  15765. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  15766. return __ret;
  15767. }
  15768. #endif
  15769. #ifdef __LITTLE_ENDIAN__
  15770. __ai int32x4_t vornq_s32(int32x4_t __p0, int32x4_t __p1) {
  15771. int32x4_t __ret;
  15772. __ret = __p0 | ~__p1;
  15773. return __ret;
  15774. }
  15775. #else
  15776. __ai int32x4_t vornq_s32(int32x4_t __p0, int32x4_t __p1) {
  15777. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  15778. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  15779. int32x4_t __ret;
  15780. __ret = __rev0 | ~__rev1;
  15781. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  15782. return __ret;
  15783. }
  15784. #endif
  15785. #ifdef __LITTLE_ENDIAN__
  15786. __ai int64x2_t vornq_s64(int64x2_t __p0, int64x2_t __p1) {
  15787. int64x2_t __ret;
  15788. __ret = __p0 | ~__p1;
  15789. return __ret;
  15790. }
  15791. #else
  15792. __ai int64x2_t vornq_s64(int64x2_t __p0, int64x2_t __p1) {
  15793. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  15794. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  15795. int64x2_t __ret;
  15796. __ret = __rev0 | ~__rev1;
  15797. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  15798. return __ret;
  15799. }
  15800. #endif
  15801. #ifdef __LITTLE_ENDIAN__
  15802. __ai int16x8_t vornq_s16(int16x8_t __p0, int16x8_t __p1) {
  15803. int16x8_t __ret;
  15804. __ret = __p0 | ~__p1;
  15805. return __ret;
  15806. }
  15807. #else
  15808. __ai int16x8_t vornq_s16(int16x8_t __p0, int16x8_t __p1) {
  15809. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  15810. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  15811. int16x8_t __ret;
  15812. __ret = __rev0 | ~__rev1;
  15813. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  15814. return __ret;
  15815. }
  15816. #endif
  15817. #ifdef __LITTLE_ENDIAN__
  15818. __ai uint8x8_t vorn_u8(uint8x8_t __p0, uint8x8_t __p1) {
  15819. uint8x8_t __ret;
  15820. __ret = __p0 | ~__p1;
  15821. return __ret;
  15822. }
  15823. #else
  15824. __ai uint8x8_t vorn_u8(uint8x8_t __p0, uint8x8_t __p1) {
  15825. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  15826. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  15827. uint8x8_t __ret;
  15828. __ret = __rev0 | ~__rev1;
  15829. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  15830. return __ret;
  15831. }
  15832. #endif
  15833. #ifdef __LITTLE_ENDIAN__
  15834. __ai uint32x2_t vorn_u32(uint32x2_t __p0, uint32x2_t __p1) {
  15835. uint32x2_t __ret;
  15836. __ret = __p0 | ~__p1;
  15837. return __ret;
  15838. }
  15839. #else
  15840. __ai uint32x2_t vorn_u32(uint32x2_t __p0, uint32x2_t __p1) {
  15841. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  15842. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  15843. uint32x2_t __ret;
  15844. __ret = __rev0 | ~__rev1;
  15845. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  15846. return __ret;
  15847. }
  15848. #endif
  15849. #ifdef __LITTLE_ENDIAN__
  15850. __ai uint64x1_t vorn_u64(uint64x1_t __p0, uint64x1_t __p1) {
  15851. uint64x1_t __ret;
  15852. __ret = __p0 | ~__p1;
  15853. return __ret;
  15854. }
  15855. #else
  15856. __ai uint64x1_t vorn_u64(uint64x1_t __p0, uint64x1_t __p1) {
  15857. uint64x1_t __ret;
  15858. __ret = __p0 | ~__p1;
  15859. return __ret;
  15860. }
  15861. #endif
  15862. #ifdef __LITTLE_ENDIAN__
  15863. __ai uint16x4_t vorn_u16(uint16x4_t __p0, uint16x4_t __p1) {
  15864. uint16x4_t __ret;
  15865. __ret = __p0 | ~__p1;
  15866. return __ret;
  15867. }
  15868. #else
  15869. __ai uint16x4_t vorn_u16(uint16x4_t __p0, uint16x4_t __p1) {
  15870. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  15871. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  15872. uint16x4_t __ret;
  15873. __ret = __rev0 | ~__rev1;
  15874. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  15875. return __ret;
  15876. }
  15877. #endif
  15878. #ifdef __LITTLE_ENDIAN__
  15879. __ai int8x8_t vorn_s8(int8x8_t __p0, int8x8_t __p1) {
  15880. int8x8_t __ret;
  15881. __ret = __p0 | ~__p1;
  15882. return __ret;
  15883. }
  15884. #else
  15885. __ai int8x8_t vorn_s8(int8x8_t __p0, int8x8_t __p1) {
  15886. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  15887. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  15888. int8x8_t __ret;
  15889. __ret = __rev0 | ~__rev1;
  15890. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  15891. return __ret;
  15892. }
  15893. #endif
  15894. #ifdef __LITTLE_ENDIAN__
  15895. __ai int32x2_t vorn_s32(int32x2_t __p0, int32x2_t __p1) {
  15896. int32x2_t __ret;
  15897. __ret = __p0 | ~__p1;
  15898. return __ret;
  15899. }
  15900. #else
  15901. __ai int32x2_t vorn_s32(int32x2_t __p0, int32x2_t __p1) {
  15902. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  15903. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  15904. int32x2_t __ret;
  15905. __ret = __rev0 | ~__rev1;
  15906. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  15907. return __ret;
  15908. }
  15909. #endif
  15910. #ifdef __LITTLE_ENDIAN__
  15911. __ai int64x1_t vorn_s64(int64x1_t __p0, int64x1_t __p1) {
  15912. int64x1_t __ret;
  15913. __ret = __p0 | ~__p1;
  15914. return __ret;
  15915. }
  15916. #else
  15917. __ai int64x1_t vorn_s64(int64x1_t __p0, int64x1_t __p1) {
  15918. int64x1_t __ret;
  15919. __ret = __p0 | ~__p1;
  15920. return __ret;
  15921. }
  15922. #endif
  15923. #ifdef __LITTLE_ENDIAN__
  15924. __ai int16x4_t vorn_s16(int16x4_t __p0, int16x4_t __p1) {
  15925. int16x4_t __ret;
  15926. __ret = __p0 | ~__p1;
  15927. return __ret;
  15928. }
  15929. #else
  15930. __ai int16x4_t vorn_s16(int16x4_t __p0, int16x4_t __p1) {
  15931. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  15932. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  15933. int16x4_t __ret;
  15934. __ret = __rev0 | ~__rev1;
  15935. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  15936. return __ret;
  15937. }
  15938. #endif
  15939. #ifdef __LITTLE_ENDIAN__
  15940. __ai uint8x16_t vorrq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  15941. uint8x16_t __ret;
  15942. __ret = __p0 | __p1;
  15943. return __ret;
  15944. }
  15945. #else
  15946. __ai uint8x16_t vorrq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  15947. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  15948. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  15949. uint8x16_t __ret;
  15950. __ret = __rev0 | __rev1;
  15951. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  15952. return __ret;
  15953. }
  15954. #endif
  15955. #ifdef __LITTLE_ENDIAN__
  15956. __ai uint32x4_t vorrq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  15957. uint32x4_t __ret;
  15958. __ret = __p0 | __p1;
  15959. return __ret;
  15960. }
  15961. #else
  15962. __ai uint32x4_t vorrq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  15963. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  15964. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  15965. uint32x4_t __ret;
  15966. __ret = __rev0 | __rev1;
  15967. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  15968. return __ret;
  15969. }
  15970. #endif
  15971. #ifdef __LITTLE_ENDIAN__
  15972. __ai uint64x2_t vorrq_u64(uint64x2_t __p0, uint64x2_t __p1) {
  15973. uint64x2_t __ret;
  15974. __ret = __p0 | __p1;
  15975. return __ret;
  15976. }
  15977. #else
  15978. __ai uint64x2_t vorrq_u64(uint64x2_t __p0, uint64x2_t __p1) {
  15979. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  15980. uint64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  15981. uint64x2_t __ret;
  15982. __ret = __rev0 | __rev1;
  15983. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  15984. return __ret;
  15985. }
  15986. #endif
  15987. #ifdef __LITTLE_ENDIAN__
  15988. __ai uint16x8_t vorrq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  15989. uint16x8_t __ret;
  15990. __ret = __p0 | __p1;
  15991. return __ret;
  15992. }
  15993. #else
  15994. __ai uint16x8_t vorrq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  15995. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  15996. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  15997. uint16x8_t __ret;
  15998. __ret = __rev0 | __rev1;
  15999. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  16000. return __ret;
  16001. }
  16002. #endif
  16003. #ifdef __LITTLE_ENDIAN__
  16004. __ai int8x16_t vorrq_s8(int8x16_t __p0, int8x16_t __p1) {
  16005. int8x16_t __ret;
  16006. __ret = __p0 | __p1;
  16007. return __ret;
  16008. }
  16009. #else
  16010. __ai int8x16_t vorrq_s8(int8x16_t __p0, int8x16_t __p1) {
  16011. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  16012. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  16013. int8x16_t __ret;
  16014. __ret = __rev0 | __rev1;
  16015. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  16016. return __ret;
  16017. }
  16018. #endif
  16019. #ifdef __LITTLE_ENDIAN__
  16020. __ai int32x4_t vorrq_s32(int32x4_t __p0, int32x4_t __p1) {
  16021. int32x4_t __ret;
  16022. __ret = __p0 | __p1;
  16023. return __ret;
  16024. }
  16025. #else
  16026. __ai int32x4_t vorrq_s32(int32x4_t __p0, int32x4_t __p1) {
  16027. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  16028. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  16029. int32x4_t __ret;
  16030. __ret = __rev0 | __rev1;
  16031. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  16032. return __ret;
  16033. }
  16034. #endif
  16035. #ifdef __LITTLE_ENDIAN__
  16036. __ai int64x2_t vorrq_s64(int64x2_t __p0, int64x2_t __p1) {
  16037. int64x2_t __ret;
  16038. __ret = __p0 | __p1;
  16039. return __ret;
  16040. }
  16041. #else
  16042. __ai int64x2_t vorrq_s64(int64x2_t __p0, int64x2_t __p1) {
  16043. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  16044. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  16045. int64x2_t __ret;
  16046. __ret = __rev0 | __rev1;
  16047. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  16048. return __ret;
  16049. }
  16050. #endif
  16051. #ifdef __LITTLE_ENDIAN__
  16052. __ai int16x8_t vorrq_s16(int16x8_t __p0, int16x8_t __p1) {
  16053. int16x8_t __ret;
  16054. __ret = __p0 | __p1;
  16055. return __ret;
  16056. }
  16057. #else
  16058. __ai int16x8_t vorrq_s16(int16x8_t __p0, int16x8_t __p1) {
  16059. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  16060. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  16061. int16x8_t __ret;
  16062. __ret = __rev0 | __rev1;
  16063. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  16064. return __ret;
  16065. }
  16066. #endif
  16067. #ifdef __LITTLE_ENDIAN__
  16068. __ai uint8x8_t vorr_u8(uint8x8_t __p0, uint8x8_t __p1) {
  16069. uint8x8_t __ret;
  16070. __ret = __p0 | __p1;
  16071. return __ret;
  16072. }
  16073. #else
  16074. __ai uint8x8_t vorr_u8(uint8x8_t __p0, uint8x8_t __p1) {
  16075. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  16076. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  16077. uint8x8_t __ret;
  16078. __ret = __rev0 | __rev1;
  16079. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  16080. return __ret;
  16081. }
  16082. #endif
  16083. #ifdef __LITTLE_ENDIAN__
  16084. __ai uint32x2_t vorr_u32(uint32x2_t __p0, uint32x2_t __p1) {
  16085. uint32x2_t __ret;
  16086. __ret = __p0 | __p1;
  16087. return __ret;
  16088. }
  16089. #else
  16090. __ai uint32x2_t vorr_u32(uint32x2_t __p0, uint32x2_t __p1) {
  16091. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  16092. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  16093. uint32x2_t __ret;
  16094. __ret = __rev0 | __rev1;
  16095. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  16096. return __ret;
  16097. }
  16098. #endif
  16099. #ifdef __LITTLE_ENDIAN__
  16100. __ai uint64x1_t vorr_u64(uint64x1_t __p0, uint64x1_t __p1) {
  16101. uint64x1_t __ret;
  16102. __ret = __p0 | __p1;
  16103. return __ret;
  16104. }
  16105. #else
  16106. __ai uint64x1_t vorr_u64(uint64x1_t __p0, uint64x1_t __p1) {
  16107. uint64x1_t __ret;
  16108. __ret = __p0 | __p1;
  16109. return __ret;
  16110. }
  16111. #endif
  16112. #ifdef __LITTLE_ENDIAN__
  16113. __ai uint16x4_t vorr_u16(uint16x4_t __p0, uint16x4_t __p1) {
  16114. uint16x4_t __ret;
  16115. __ret = __p0 | __p1;
  16116. return __ret;
  16117. }
  16118. #else
  16119. __ai uint16x4_t vorr_u16(uint16x4_t __p0, uint16x4_t __p1) {
  16120. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  16121. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  16122. uint16x4_t __ret;
  16123. __ret = __rev0 | __rev1;
  16124. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  16125. return __ret;
  16126. }
  16127. #endif
  16128. #ifdef __LITTLE_ENDIAN__
  16129. __ai int8x8_t vorr_s8(int8x8_t __p0, int8x8_t __p1) {
  16130. int8x8_t __ret;
  16131. __ret = __p0 | __p1;
  16132. return __ret;
  16133. }
  16134. #else
  16135. __ai int8x8_t vorr_s8(int8x8_t __p0, int8x8_t __p1) {
  16136. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  16137. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  16138. int8x8_t __ret;
  16139. __ret = __rev0 | __rev1;
  16140. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  16141. return __ret;
  16142. }
  16143. #endif
  16144. #ifdef __LITTLE_ENDIAN__
  16145. __ai int32x2_t vorr_s32(int32x2_t __p0, int32x2_t __p1) {
  16146. int32x2_t __ret;
  16147. __ret = __p0 | __p1;
  16148. return __ret;
  16149. }
  16150. #else
  16151. __ai int32x2_t vorr_s32(int32x2_t __p0, int32x2_t __p1) {
  16152. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  16153. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  16154. int32x2_t __ret;
  16155. __ret = __rev0 | __rev1;
  16156. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  16157. return __ret;
  16158. }
  16159. #endif
  16160. #ifdef __LITTLE_ENDIAN__
  16161. __ai int64x1_t vorr_s64(int64x1_t __p0, int64x1_t __p1) {
  16162. int64x1_t __ret;
  16163. __ret = __p0 | __p1;
  16164. return __ret;
  16165. }
  16166. #else
  16167. __ai int64x1_t vorr_s64(int64x1_t __p0, int64x1_t __p1) {
  16168. int64x1_t __ret;
  16169. __ret = __p0 | __p1;
  16170. return __ret;
  16171. }
  16172. #endif
  16173. #ifdef __LITTLE_ENDIAN__
  16174. __ai int16x4_t vorr_s16(int16x4_t __p0, int16x4_t __p1) {
  16175. int16x4_t __ret;
  16176. __ret = __p0 | __p1;
  16177. return __ret;
  16178. }
  16179. #else
  16180. __ai int16x4_t vorr_s16(int16x4_t __p0, int16x4_t __p1) {
  16181. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  16182. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  16183. int16x4_t __ret;
  16184. __ret = __rev0 | __rev1;
  16185. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  16186. return __ret;
  16187. }
  16188. #endif
  16189. #ifdef __LITTLE_ENDIAN__
  16190. __ai uint16x8_t vpadalq_u8(uint16x8_t __p0, uint8x16_t __p1) {
  16191. uint16x8_t __ret;
  16192. __ret = (uint16x8_t) __builtin_neon_vpadalq_v((int8x16_t)__p0, (int8x16_t)__p1, 49);
  16193. return __ret;
  16194. }
  16195. #else
  16196. __ai uint16x8_t vpadalq_u8(uint16x8_t __p0, uint8x16_t __p1) {
  16197. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  16198. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  16199. uint16x8_t __ret;
  16200. __ret = (uint16x8_t) __builtin_neon_vpadalq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 49);
  16201. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  16202. return __ret;
  16203. }
  16204. #endif
  16205. #ifdef __LITTLE_ENDIAN__
  16206. __ai uint64x2_t vpadalq_u32(uint64x2_t __p0, uint32x4_t __p1) {
  16207. uint64x2_t __ret;
  16208. __ret = (uint64x2_t) __builtin_neon_vpadalq_v((int8x16_t)__p0, (int8x16_t)__p1, 51);
  16209. return __ret;
  16210. }
  16211. #else
  16212. __ai uint64x2_t vpadalq_u32(uint64x2_t __p0, uint32x4_t __p1) {
  16213. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  16214. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  16215. uint64x2_t __ret;
  16216. __ret = (uint64x2_t) __builtin_neon_vpadalq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 51);
  16217. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  16218. return __ret;
  16219. }
  16220. #endif
  16221. #ifdef __LITTLE_ENDIAN__
  16222. __ai uint32x4_t vpadalq_u16(uint32x4_t __p0, uint16x8_t __p1) {
  16223. uint32x4_t __ret;
  16224. __ret = (uint32x4_t) __builtin_neon_vpadalq_v((int8x16_t)__p0, (int8x16_t)__p1, 50);
  16225. return __ret;
  16226. }
  16227. #else
  16228. __ai uint32x4_t vpadalq_u16(uint32x4_t __p0, uint16x8_t __p1) {
  16229. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  16230. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  16231. uint32x4_t __ret;
  16232. __ret = (uint32x4_t) __builtin_neon_vpadalq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 50);
  16233. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  16234. return __ret;
  16235. }
  16236. #endif
  16237. #ifdef __LITTLE_ENDIAN__
  16238. __ai int16x8_t vpadalq_s8(int16x8_t __p0, int8x16_t __p1) {
  16239. int16x8_t __ret;
  16240. __ret = (int16x8_t) __builtin_neon_vpadalq_v((int8x16_t)__p0, (int8x16_t)__p1, 33);
  16241. return __ret;
  16242. }
  16243. #else
  16244. __ai int16x8_t vpadalq_s8(int16x8_t __p0, int8x16_t __p1) {
  16245. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  16246. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  16247. int16x8_t __ret;
  16248. __ret = (int16x8_t) __builtin_neon_vpadalq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 33);
  16249. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  16250. return __ret;
  16251. }
  16252. #endif
  16253. #ifdef __LITTLE_ENDIAN__
  16254. __ai int64x2_t vpadalq_s32(int64x2_t __p0, int32x4_t __p1) {
  16255. int64x2_t __ret;
  16256. __ret = (int64x2_t) __builtin_neon_vpadalq_v((int8x16_t)__p0, (int8x16_t)__p1, 35);
  16257. return __ret;
  16258. }
  16259. #else
  16260. __ai int64x2_t vpadalq_s32(int64x2_t __p0, int32x4_t __p1) {
  16261. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  16262. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  16263. int64x2_t __ret;
  16264. __ret = (int64x2_t) __builtin_neon_vpadalq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 35);
  16265. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  16266. return __ret;
  16267. }
  16268. #endif
  16269. #ifdef __LITTLE_ENDIAN__
  16270. __ai int32x4_t vpadalq_s16(int32x4_t __p0, int16x8_t __p1) {
  16271. int32x4_t __ret;
  16272. __ret = (int32x4_t) __builtin_neon_vpadalq_v((int8x16_t)__p0, (int8x16_t)__p1, 34);
  16273. return __ret;
  16274. }
  16275. #else
  16276. __ai int32x4_t vpadalq_s16(int32x4_t __p0, int16x8_t __p1) {
  16277. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  16278. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  16279. int32x4_t __ret;
  16280. __ret = (int32x4_t) __builtin_neon_vpadalq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 34);
  16281. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  16282. return __ret;
  16283. }
  16284. #endif
  16285. #ifdef __LITTLE_ENDIAN__
  16286. __ai uint16x4_t vpadal_u8(uint16x4_t __p0, uint8x8_t __p1) {
  16287. uint16x4_t __ret;
  16288. __ret = (uint16x4_t) __builtin_neon_vpadal_v((int8x8_t)__p0, (int8x8_t)__p1, 17);
  16289. return __ret;
  16290. }
  16291. #else
  16292. __ai uint16x4_t vpadal_u8(uint16x4_t __p0, uint8x8_t __p1) {
  16293. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  16294. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  16295. uint16x4_t __ret;
  16296. __ret = (uint16x4_t) __builtin_neon_vpadal_v((int8x8_t)__rev0, (int8x8_t)__rev1, 17);
  16297. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  16298. return __ret;
  16299. }
  16300. #endif
  16301. #ifdef __LITTLE_ENDIAN__
  16302. __ai uint64x1_t vpadal_u32(uint64x1_t __p0, uint32x2_t __p1) {
  16303. uint64x1_t __ret;
  16304. __ret = (uint64x1_t) __builtin_neon_vpadal_v((int8x8_t)__p0, (int8x8_t)__p1, 19);
  16305. return __ret;
  16306. }
  16307. #else
  16308. __ai uint64x1_t vpadal_u32(uint64x1_t __p0, uint32x2_t __p1) {
  16309. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  16310. uint64x1_t __ret;
  16311. __ret = (uint64x1_t) __builtin_neon_vpadal_v((int8x8_t)__p0, (int8x8_t)__rev1, 19);
  16312. return __ret;
  16313. }
  16314. #endif
  16315. #ifdef __LITTLE_ENDIAN__
  16316. __ai uint32x2_t vpadal_u16(uint32x2_t __p0, uint16x4_t __p1) {
  16317. uint32x2_t __ret;
  16318. __ret = (uint32x2_t) __builtin_neon_vpadal_v((int8x8_t)__p0, (int8x8_t)__p1, 18);
  16319. return __ret;
  16320. }
  16321. #else
  16322. __ai uint32x2_t vpadal_u16(uint32x2_t __p0, uint16x4_t __p1) {
  16323. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  16324. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  16325. uint32x2_t __ret;
  16326. __ret = (uint32x2_t) __builtin_neon_vpadal_v((int8x8_t)__rev0, (int8x8_t)__rev1, 18);
  16327. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  16328. return __ret;
  16329. }
  16330. #endif
  16331. #ifdef __LITTLE_ENDIAN__
  16332. __ai int16x4_t vpadal_s8(int16x4_t __p0, int8x8_t __p1) {
  16333. int16x4_t __ret;
  16334. __ret = (int16x4_t) __builtin_neon_vpadal_v((int8x8_t)__p0, (int8x8_t)__p1, 1);
  16335. return __ret;
  16336. }
  16337. #else
  16338. __ai int16x4_t vpadal_s8(int16x4_t __p0, int8x8_t __p1) {
  16339. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  16340. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  16341. int16x4_t __ret;
  16342. __ret = (int16x4_t) __builtin_neon_vpadal_v((int8x8_t)__rev0, (int8x8_t)__rev1, 1);
  16343. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  16344. return __ret;
  16345. }
  16346. #endif
  16347. #ifdef __LITTLE_ENDIAN__
  16348. __ai int64x1_t vpadal_s32(int64x1_t __p0, int32x2_t __p1) {
  16349. int64x1_t __ret;
  16350. __ret = (int64x1_t) __builtin_neon_vpadal_v((int8x8_t)__p0, (int8x8_t)__p1, 3);
  16351. return __ret;
  16352. }
  16353. #else
  16354. __ai int64x1_t vpadal_s32(int64x1_t __p0, int32x2_t __p1) {
  16355. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  16356. int64x1_t __ret;
  16357. __ret = (int64x1_t) __builtin_neon_vpadal_v((int8x8_t)__p0, (int8x8_t)__rev1, 3);
  16358. return __ret;
  16359. }
  16360. #endif
  16361. #ifdef __LITTLE_ENDIAN__
  16362. __ai int32x2_t vpadal_s16(int32x2_t __p0, int16x4_t __p1) {
  16363. int32x2_t __ret;
  16364. __ret = (int32x2_t) __builtin_neon_vpadal_v((int8x8_t)__p0, (int8x8_t)__p1, 2);
  16365. return __ret;
  16366. }
  16367. #else
  16368. __ai int32x2_t vpadal_s16(int32x2_t __p0, int16x4_t __p1) {
  16369. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  16370. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  16371. int32x2_t __ret;
  16372. __ret = (int32x2_t) __builtin_neon_vpadal_v((int8x8_t)__rev0, (int8x8_t)__rev1, 2);
  16373. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  16374. return __ret;
  16375. }
  16376. #endif
  16377. #ifdef __LITTLE_ENDIAN__
  16378. __ai uint8x8_t vpadd_u8(uint8x8_t __p0, uint8x8_t __p1) {
  16379. uint8x8_t __ret;
  16380. __ret = (uint8x8_t) __builtin_neon_vpadd_v((int8x8_t)__p0, (int8x8_t)__p1, 16);
  16381. return __ret;
  16382. }
  16383. #else
  16384. __ai uint8x8_t vpadd_u8(uint8x8_t __p0, uint8x8_t __p1) {
  16385. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  16386. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  16387. uint8x8_t __ret;
  16388. __ret = (uint8x8_t) __builtin_neon_vpadd_v((int8x8_t)__rev0, (int8x8_t)__rev1, 16);
  16389. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  16390. return __ret;
  16391. }
  16392. #endif
  16393. #ifdef __LITTLE_ENDIAN__
  16394. __ai uint32x2_t vpadd_u32(uint32x2_t __p0, uint32x2_t __p1) {
  16395. uint32x2_t __ret;
  16396. __ret = (uint32x2_t) __builtin_neon_vpadd_v((int8x8_t)__p0, (int8x8_t)__p1, 18);
  16397. return __ret;
  16398. }
  16399. #else
  16400. __ai uint32x2_t vpadd_u32(uint32x2_t __p0, uint32x2_t __p1) {
  16401. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  16402. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  16403. uint32x2_t __ret;
  16404. __ret = (uint32x2_t) __builtin_neon_vpadd_v((int8x8_t)__rev0, (int8x8_t)__rev1, 18);
  16405. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  16406. return __ret;
  16407. }
  16408. #endif
  16409. #ifdef __LITTLE_ENDIAN__
  16410. __ai uint16x4_t vpadd_u16(uint16x4_t __p0, uint16x4_t __p1) {
  16411. uint16x4_t __ret;
  16412. __ret = (uint16x4_t) __builtin_neon_vpadd_v((int8x8_t)__p0, (int8x8_t)__p1, 17);
  16413. return __ret;
  16414. }
  16415. #else
  16416. __ai uint16x4_t vpadd_u16(uint16x4_t __p0, uint16x4_t __p1) {
  16417. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  16418. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  16419. uint16x4_t __ret;
  16420. __ret = (uint16x4_t) __builtin_neon_vpadd_v((int8x8_t)__rev0, (int8x8_t)__rev1, 17);
  16421. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  16422. return __ret;
  16423. }
  16424. #endif
  16425. #ifdef __LITTLE_ENDIAN__
  16426. __ai int8x8_t vpadd_s8(int8x8_t __p0, int8x8_t __p1) {
  16427. int8x8_t __ret;
  16428. __ret = (int8x8_t) __builtin_neon_vpadd_v((int8x8_t)__p0, (int8x8_t)__p1, 0);
  16429. return __ret;
  16430. }
  16431. #else
  16432. __ai int8x8_t vpadd_s8(int8x8_t __p0, int8x8_t __p1) {
  16433. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  16434. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  16435. int8x8_t __ret;
  16436. __ret = (int8x8_t) __builtin_neon_vpadd_v((int8x8_t)__rev0, (int8x8_t)__rev1, 0);
  16437. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  16438. return __ret;
  16439. }
  16440. #endif
  16441. #ifdef __LITTLE_ENDIAN__
  16442. __ai float32x2_t vpadd_f32(float32x2_t __p0, float32x2_t __p1) {
  16443. float32x2_t __ret;
  16444. __ret = (float32x2_t) __builtin_neon_vpadd_v((int8x8_t)__p0, (int8x8_t)__p1, 9);
  16445. return __ret;
  16446. }
  16447. #else
  16448. __ai float32x2_t vpadd_f32(float32x2_t __p0, float32x2_t __p1) {
  16449. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  16450. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  16451. float32x2_t __ret;
  16452. __ret = (float32x2_t) __builtin_neon_vpadd_v((int8x8_t)__rev0, (int8x8_t)__rev1, 9);
  16453. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  16454. return __ret;
  16455. }
  16456. #endif
  16457. #ifdef __LITTLE_ENDIAN__
  16458. __ai int32x2_t vpadd_s32(int32x2_t __p0, int32x2_t __p1) {
  16459. int32x2_t __ret;
  16460. __ret = (int32x2_t) __builtin_neon_vpadd_v((int8x8_t)__p0, (int8x8_t)__p1, 2);
  16461. return __ret;
  16462. }
  16463. #else
  16464. __ai int32x2_t vpadd_s32(int32x2_t __p0, int32x2_t __p1) {
  16465. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  16466. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  16467. int32x2_t __ret;
  16468. __ret = (int32x2_t) __builtin_neon_vpadd_v((int8x8_t)__rev0, (int8x8_t)__rev1, 2);
  16469. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  16470. return __ret;
  16471. }
  16472. #endif
  16473. #ifdef __LITTLE_ENDIAN__
  16474. __ai int16x4_t vpadd_s16(int16x4_t __p0, int16x4_t __p1) {
  16475. int16x4_t __ret;
  16476. __ret = (int16x4_t) __builtin_neon_vpadd_v((int8x8_t)__p0, (int8x8_t)__p1, 1);
  16477. return __ret;
  16478. }
  16479. #else
  16480. __ai int16x4_t vpadd_s16(int16x4_t __p0, int16x4_t __p1) {
  16481. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  16482. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  16483. int16x4_t __ret;
  16484. __ret = (int16x4_t) __builtin_neon_vpadd_v((int8x8_t)__rev0, (int8x8_t)__rev1, 1);
  16485. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  16486. return __ret;
  16487. }
  16488. #endif
  16489. #ifdef __LITTLE_ENDIAN__
  16490. __ai uint16x8_t vpaddlq_u8(uint8x16_t __p0) {
  16491. uint16x8_t __ret;
  16492. __ret = (uint16x8_t) __builtin_neon_vpaddlq_v((int8x16_t)__p0, 49);
  16493. return __ret;
  16494. }
  16495. #else
  16496. __ai uint16x8_t vpaddlq_u8(uint8x16_t __p0) {
  16497. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  16498. uint16x8_t __ret;
  16499. __ret = (uint16x8_t) __builtin_neon_vpaddlq_v((int8x16_t)__rev0, 49);
  16500. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  16501. return __ret;
  16502. }
  16503. #endif
  16504. #ifdef __LITTLE_ENDIAN__
  16505. __ai uint64x2_t vpaddlq_u32(uint32x4_t __p0) {
  16506. uint64x2_t __ret;
  16507. __ret = (uint64x2_t) __builtin_neon_vpaddlq_v((int8x16_t)__p0, 51);
  16508. return __ret;
  16509. }
  16510. #else
  16511. __ai uint64x2_t vpaddlq_u32(uint32x4_t __p0) {
  16512. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  16513. uint64x2_t __ret;
  16514. __ret = (uint64x2_t) __builtin_neon_vpaddlq_v((int8x16_t)__rev0, 51);
  16515. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  16516. return __ret;
  16517. }
  16518. #endif
  16519. #ifdef __LITTLE_ENDIAN__
  16520. __ai uint32x4_t vpaddlq_u16(uint16x8_t __p0) {
  16521. uint32x4_t __ret;
  16522. __ret = (uint32x4_t) __builtin_neon_vpaddlq_v((int8x16_t)__p0, 50);
  16523. return __ret;
  16524. }
  16525. #else
  16526. __ai uint32x4_t vpaddlq_u16(uint16x8_t __p0) {
  16527. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  16528. uint32x4_t __ret;
  16529. __ret = (uint32x4_t) __builtin_neon_vpaddlq_v((int8x16_t)__rev0, 50);
  16530. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  16531. return __ret;
  16532. }
  16533. #endif
  16534. #ifdef __LITTLE_ENDIAN__
  16535. __ai int16x8_t vpaddlq_s8(int8x16_t __p0) {
  16536. int16x8_t __ret;
  16537. __ret = (int16x8_t) __builtin_neon_vpaddlq_v((int8x16_t)__p0, 33);
  16538. return __ret;
  16539. }
  16540. #else
  16541. __ai int16x8_t vpaddlq_s8(int8x16_t __p0) {
  16542. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  16543. int16x8_t __ret;
  16544. __ret = (int16x8_t) __builtin_neon_vpaddlq_v((int8x16_t)__rev0, 33);
  16545. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  16546. return __ret;
  16547. }
  16548. #endif
  16549. #ifdef __LITTLE_ENDIAN__
  16550. __ai int64x2_t vpaddlq_s32(int32x4_t __p0) {
  16551. int64x2_t __ret;
  16552. __ret = (int64x2_t) __builtin_neon_vpaddlq_v((int8x16_t)__p0, 35);
  16553. return __ret;
  16554. }
  16555. #else
  16556. __ai int64x2_t vpaddlq_s32(int32x4_t __p0) {
  16557. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  16558. int64x2_t __ret;
  16559. __ret = (int64x2_t) __builtin_neon_vpaddlq_v((int8x16_t)__rev0, 35);
  16560. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  16561. return __ret;
  16562. }
  16563. #endif
  16564. #ifdef __LITTLE_ENDIAN__
  16565. __ai int32x4_t vpaddlq_s16(int16x8_t __p0) {
  16566. int32x4_t __ret;
  16567. __ret = (int32x4_t) __builtin_neon_vpaddlq_v((int8x16_t)__p0, 34);
  16568. return __ret;
  16569. }
  16570. #else
  16571. __ai int32x4_t vpaddlq_s16(int16x8_t __p0) {
  16572. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  16573. int32x4_t __ret;
  16574. __ret = (int32x4_t) __builtin_neon_vpaddlq_v((int8x16_t)__rev0, 34);
  16575. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  16576. return __ret;
  16577. }
  16578. #endif
  16579. #ifdef __LITTLE_ENDIAN__
  16580. __ai uint16x4_t vpaddl_u8(uint8x8_t __p0) {
  16581. uint16x4_t __ret;
  16582. __ret = (uint16x4_t) __builtin_neon_vpaddl_v((int8x8_t)__p0, 17);
  16583. return __ret;
  16584. }
  16585. #else
  16586. __ai uint16x4_t vpaddl_u8(uint8x8_t __p0) {
  16587. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  16588. uint16x4_t __ret;
  16589. __ret = (uint16x4_t) __builtin_neon_vpaddl_v((int8x8_t)__rev0, 17);
  16590. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  16591. return __ret;
  16592. }
  16593. #endif
  16594. #ifdef __LITTLE_ENDIAN__
  16595. __ai uint64x1_t vpaddl_u32(uint32x2_t __p0) {
  16596. uint64x1_t __ret;
  16597. __ret = (uint64x1_t) __builtin_neon_vpaddl_v((int8x8_t)__p0, 19);
  16598. return __ret;
  16599. }
  16600. #else
  16601. __ai uint64x1_t vpaddl_u32(uint32x2_t __p0) {
  16602. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  16603. uint64x1_t __ret;
  16604. __ret = (uint64x1_t) __builtin_neon_vpaddl_v((int8x8_t)__rev0, 19);
  16605. return __ret;
  16606. }
  16607. #endif
  16608. #ifdef __LITTLE_ENDIAN__
  16609. __ai uint32x2_t vpaddl_u16(uint16x4_t __p0) {
  16610. uint32x2_t __ret;
  16611. __ret = (uint32x2_t) __builtin_neon_vpaddl_v((int8x8_t)__p0, 18);
  16612. return __ret;
  16613. }
  16614. #else
  16615. __ai uint32x2_t vpaddl_u16(uint16x4_t __p0) {
  16616. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  16617. uint32x2_t __ret;
  16618. __ret = (uint32x2_t) __builtin_neon_vpaddl_v((int8x8_t)__rev0, 18);
  16619. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  16620. return __ret;
  16621. }
  16622. #endif
  16623. #ifdef __LITTLE_ENDIAN__
  16624. __ai int16x4_t vpaddl_s8(int8x8_t __p0) {
  16625. int16x4_t __ret;
  16626. __ret = (int16x4_t) __builtin_neon_vpaddl_v((int8x8_t)__p0, 1);
  16627. return __ret;
  16628. }
  16629. #else
  16630. __ai int16x4_t vpaddl_s8(int8x8_t __p0) {
  16631. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  16632. int16x4_t __ret;
  16633. __ret = (int16x4_t) __builtin_neon_vpaddl_v((int8x8_t)__rev0, 1);
  16634. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  16635. return __ret;
  16636. }
  16637. #endif
  16638. #ifdef __LITTLE_ENDIAN__
  16639. __ai int64x1_t vpaddl_s32(int32x2_t __p0) {
  16640. int64x1_t __ret;
  16641. __ret = (int64x1_t) __builtin_neon_vpaddl_v((int8x8_t)__p0, 3);
  16642. return __ret;
  16643. }
  16644. #else
  16645. __ai int64x1_t vpaddl_s32(int32x2_t __p0) {
  16646. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  16647. int64x1_t __ret;
  16648. __ret = (int64x1_t) __builtin_neon_vpaddl_v((int8x8_t)__rev0, 3);
  16649. return __ret;
  16650. }
  16651. #endif
  16652. #ifdef __LITTLE_ENDIAN__
  16653. __ai int32x2_t vpaddl_s16(int16x4_t __p0) {
  16654. int32x2_t __ret;
  16655. __ret = (int32x2_t) __builtin_neon_vpaddl_v((int8x8_t)__p0, 2);
  16656. return __ret;
  16657. }
  16658. #else
  16659. __ai int32x2_t vpaddl_s16(int16x4_t __p0) {
  16660. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  16661. int32x2_t __ret;
  16662. __ret = (int32x2_t) __builtin_neon_vpaddl_v((int8x8_t)__rev0, 2);
  16663. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  16664. return __ret;
  16665. }
  16666. #endif
  16667. #ifdef __LITTLE_ENDIAN__
  16668. __ai uint8x8_t vpmax_u8(uint8x8_t __p0, uint8x8_t __p1) {
  16669. uint8x8_t __ret;
  16670. __ret = (uint8x8_t) __builtin_neon_vpmax_v((int8x8_t)__p0, (int8x8_t)__p1, 16);
  16671. return __ret;
  16672. }
  16673. #else
  16674. __ai uint8x8_t vpmax_u8(uint8x8_t __p0, uint8x8_t __p1) {
  16675. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  16676. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  16677. uint8x8_t __ret;
  16678. __ret = (uint8x8_t) __builtin_neon_vpmax_v((int8x8_t)__rev0, (int8x8_t)__rev1, 16);
  16679. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  16680. return __ret;
  16681. }
  16682. #endif
  16683. #ifdef __LITTLE_ENDIAN__
  16684. __ai uint32x2_t vpmax_u32(uint32x2_t __p0, uint32x2_t __p1) {
  16685. uint32x2_t __ret;
  16686. __ret = (uint32x2_t) __builtin_neon_vpmax_v((int8x8_t)__p0, (int8x8_t)__p1, 18);
  16687. return __ret;
  16688. }
  16689. #else
  16690. __ai uint32x2_t vpmax_u32(uint32x2_t __p0, uint32x2_t __p1) {
  16691. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  16692. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  16693. uint32x2_t __ret;
  16694. __ret = (uint32x2_t) __builtin_neon_vpmax_v((int8x8_t)__rev0, (int8x8_t)__rev1, 18);
  16695. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  16696. return __ret;
  16697. }
  16698. #endif
  16699. #ifdef __LITTLE_ENDIAN__
  16700. __ai uint16x4_t vpmax_u16(uint16x4_t __p0, uint16x4_t __p1) {
  16701. uint16x4_t __ret;
  16702. __ret = (uint16x4_t) __builtin_neon_vpmax_v((int8x8_t)__p0, (int8x8_t)__p1, 17);
  16703. return __ret;
  16704. }
  16705. #else
  16706. __ai uint16x4_t vpmax_u16(uint16x4_t __p0, uint16x4_t __p1) {
  16707. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  16708. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  16709. uint16x4_t __ret;
  16710. __ret = (uint16x4_t) __builtin_neon_vpmax_v((int8x8_t)__rev0, (int8x8_t)__rev1, 17);
  16711. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  16712. return __ret;
  16713. }
  16714. #endif
  16715. #ifdef __LITTLE_ENDIAN__
  16716. __ai int8x8_t vpmax_s8(int8x8_t __p0, int8x8_t __p1) {
  16717. int8x8_t __ret;
  16718. __ret = (int8x8_t) __builtin_neon_vpmax_v((int8x8_t)__p0, (int8x8_t)__p1, 0);
  16719. return __ret;
  16720. }
  16721. #else
  16722. __ai int8x8_t vpmax_s8(int8x8_t __p0, int8x8_t __p1) {
  16723. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  16724. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  16725. int8x8_t __ret;
  16726. __ret = (int8x8_t) __builtin_neon_vpmax_v((int8x8_t)__rev0, (int8x8_t)__rev1, 0);
  16727. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  16728. return __ret;
  16729. }
  16730. #endif
  16731. #ifdef __LITTLE_ENDIAN__
  16732. __ai float32x2_t vpmax_f32(float32x2_t __p0, float32x2_t __p1) {
  16733. float32x2_t __ret;
  16734. __ret = (float32x2_t) __builtin_neon_vpmax_v((int8x8_t)__p0, (int8x8_t)__p1, 9);
  16735. return __ret;
  16736. }
  16737. #else
  16738. __ai float32x2_t vpmax_f32(float32x2_t __p0, float32x2_t __p1) {
  16739. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  16740. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  16741. float32x2_t __ret;
  16742. __ret = (float32x2_t) __builtin_neon_vpmax_v((int8x8_t)__rev0, (int8x8_t)__rev1, 9);
  16743. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  16744. return __ret;
  16745. }
  16746. #endif
  16747. #ifdef __LITTLE_ENDIAN__
  16748. __ai int32x2_t vpmax_s32(int32x2_t __p0, int32x2_t __p1) {
  16749. int32x2_t __ret;
  16750. __ret = (int32x2_t) __builtin_neon_vpmax_v((int8x8_t)__p0, (int8x8_t)__p1, 2);
  16751. return __ret;
  16752. }
  16753. #else
  16754. __ai int32x2_t vpmax_s32(int32x2_t __p0, int32x2_t __p1) {
  16755. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  16756. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  16757. int32x2_t __ret;
  16758. __ret = (int32x2_t) __builtin_neon_vpmax_v((int8x8_t)__rev0, (int8x8_t)__rev1, 2);
  16759. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  16760. return __ret;
  16761. }
  16762. #endif
  16763. #ifdef __LITTLE_ENDIAN__
  16764. __ai int16x4_t vpmax_s16(int16x4_t __p0, int16x4_t __p1) {
  16765. int16x4_t __ret;
  16766. __ret = (int16x4_t) __builtin_neon_vpmax_v((int8x8_t)__p0, (int8x8_t)__p1, 1);
  16767. return __ret;
  16768. }
  16769. #else
  16770. __ai int16x4_t vpmax_s16(int16x4_t __p0, int16x4_t __p1) {
  16771. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  16772. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  16773. int16x4_t __ret;
  16774. __ret = (int16x4_t) __builtin_neon_vpmax_v((int8x8_t)__rev0, (int8x8_t)__rev1, 1);
  16775. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  16776. return __ret;
  16777. }
  16778. #endif
  16779. #ifdef __LITTLE_ENDIAN__
  16780. __ai uint8x8_t vpmin_u8(uint8x8_t __p0, uint8x8_t __p1) {
  16781. uint8x8_t __ret;
  16782. __ret = (uint8x8_t) __builtin_neon_vpmin_v((int8x8_t)__p0, (int8x8_t)__p1, 16);
  16783. return __ret;
  16784. }
  16785. #else
  16786. __ai uint8x8_t vpmin_u8(uint8x8_t __p0, uint8x8_t __p1) {
  16787. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  16788. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  16789. uint8x8_t __ret;
  16790. __ret = (uint8x8_t) __builtin_neon_vpmin_v((int8x8_t)__rev0, (int8x8_t)__rev1, 16);
  16791. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  16792. return __ret;
  16793. }
  16794. #endif
  16795. #ifdef __LITTLE_ENDIAN__
  16796. __ai uint32x2_t vpmin_u32(uint32x2_t __p0, uint32x2_t __p1) {
  16797. uint32x2_t __ret;
  16798. __ret = (uint32x2_t) __builtin_neon_vpmin_v((int8x8_t)__p0, (int8x8_t)__p1, 18);
  16799. return __ret;
  16800. }
  16801. #else
  16802. __ai uint32x2_t vpmin_u32(uint32x2_t __p0, uint32x2_t __p1) {
  16803. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  16804. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  16805. uint32x2_t __ret;
  16806. __ret = (uint32x2_t) __builtin_neon_vpmin_v((int8x8_t)__rev0, (int8x8_t)__rev1, 18);
  16807. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  16808. return __ret;
  16809. }
  16810. #endif
  16811. #ifdef __LITTLE_ENDIAN__
  16812. __ai uint16x4_t vpmin_u16(uint16x4_t __p0, uint16x4_t __p1) {
  16813. uint16x4_t __ret;
  16814. __ret = (uint16x4_t) __builtin_neon_vpmin_v((int8x8_t)__p0, (int8x8_t)__p1, 17);
  16815. return __ret;
  16816. }
  16817. #else
  16818. __ai uint16x4_t vpmin_u16(uint16x4_t __p0, uint16x4_t __p1) {
  16819. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  16820. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  16821. uint16x4_t __ret;
  16822. __ret = (uint16x4_t) __builtin_neon_vpmin_v((int8x8_t)__rev0, (int8x8_t)__rev1, 17);
  16823. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  16824. return __ret;
  16825. }
  16826. #endif
  16827. #ifdef __LITTLE_ENDIAN__
  16828. __ai int8x8_t vpmin_s8(int8x8_t __p0, int8x8_t __p1) {
  16829. int8x8_t __ret;
  16830. __ret = (int8x8_t) __builtin_neon_vpmin_v((int8x8_t)__p0, (int8x8_t)__p1, 0);
  16831. return __ret;
  16832. }
  16833. #else
  16834. __ai int8x8_t vpmin_s8(int8x8_t __p0, int8x8_t __p1) {
  16835. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  16836. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  16837. int8x8_t __ret;
  16838. __ret = (int8x8_t) __builtin_neon_vpmin_v((int8x8_t)__rev0, (int8x8_t)__rev1, 0);
  16839. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  16840. return __ret;
  16841. }
  16842. #endif
  16843. #ifdef __LITTLE_ENDIAN__
  16844. __ai float32x2_t vpmin_f32(float32x2_t __p0, float32x2_t __p1) {
  16845. float32x2_t __ret;
  16846. __ret = (float32x2_t) __builtin_neon_vpmin_v((int8x8_t)__p0, (int8x8_t)__p1, 9);
  16847. return __ret;
  16848. }
  16849. #else
  16850. __ai float32x2_t vpmin_f32(float32x2_t __p0, float32x2_t __p1) {
  16851. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  16852. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  16853. float32x2_t __ret;
  16854. __ret = (float32x2_t) __builtin_neon_vpmin_v((int8x8_t)__rev0, (int8x8_t)__rev1, 9);
  16855. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  16856. return __ret;
  16857. }
  16858. #endif
  16859. #ifdef __LITTLE_ENDIAN__
  16860. __ai int32x2_t vpmin_s32(int32x2_t __p0, int32x2_t __p1) {
  16861. int32x2_t __ret;
  16862. __ret = (int32x2_t) __builtin_neon_vpmin_v((int8x8_t)__p0, (int8x8_t)__p1, 2);
  16863. return __ret;
  16864. }
  16865. #else
  16866. __ai int32x2_t vpmin_s32(int32x2_t __p0, int32x2_t __p1) {
  16867. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  16868. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  16869. int32x2_t __ret;
  16870. __ret = (int32x2_t) __builtin_neon_vpmin_v((int8x8_t)__rev0, (int8x8_t)__rev1, 2);
  16871. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  16872. return __ret;
  16873. }
  16874. #endif
  16875. #ifdef __LITTLE_ENDIAN__
  16876. __ai int16x4_t vpmin_s16(int16x4_t __p0, int16x4_t __p1) {
  16877. int16x4_t __ret;
  16878. __ret = (int16x4_t) __builtin_neon_vpmin_v((int8x8_t)__p0, (int8x8_t)__p1, 1);
  16879. return __ret;
  16880. }
  16881. #else
  16882. __ai int16x4_t vpmin_s16(int16x4_t __p0, int16x4_t __p1) {
  16883. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  16884. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  16885. int16x4_t __ret;
  16886. __ret = (int16x4_t) __builtin_neon_vpmin_v((int8x8_t)__rev0, (int8x8_t)__rev1, 1);
  16887. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  16888. return __ret;
  16889. }
  16890. #endif
  16891. #ifdef __LITTLE_ENDIAN__
  16892. __ai int8x16_t vqabsq_s8(int8x16_t __p0) {
  16893. int8x16_t __ret;
  16894. __ret = (int8x16_t) __builtin_neon_vqabsq_v((int8x16_t)__p0, 32);
  16895. return __ret;
  16896. }
  16897. #else
  16898. __ai int8x16_t vqabsq_s8(int8x16_t __p0) {
  16899. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  16900. int8x16_t __ret;
  16901. __ret = (int8x16_t) __builtin_neon_vqabsq_v((int8x16_t)__rev0, 32);
  16902. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  16903. return __ret;
  16904. }
  16905. #endif
  16906. #ifdef __LITTLE_ENDIAN__
  16907. __ai int32x4_t vqabsq_s32(int32x4_t __p0) {
  16908. int32x4_t __ret;
  16909. __ret = (int32x4_t) __builtin_neon_vqabsq_v((int8x16_t)__p0, 34);
  16910. return __ret;
  16911. }
  16912. #else
  16913. __ai int32x4_t vqabsq_s32(int32x4_t __p0) {
  16914. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  16915. int32x4_t __ret;
  16916. __ret = (int32x4_t) __builtin_neon_vqabsq_v((int8x16_t)__rev0, 34);
  16917. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  16918. return __ret;
  16919. }
  16920. #endif
  16921. #ifdef __LITTLE_ENDIAN__
  16922. __ai int16x8_t vqabsq_s16(int16x8_t __p0) {
  16923. int16x8_t __ret;
  16924. __ret = (int16x8_t) __builtin_neon_vqabsq_v((int8x16_t)__p0, 33);
  16925. return __ret;
  16926. }
  16927. #else
  16928. __ai int16x8_t vqabsq_s16(int16x8_t __p0) {
  16929. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  16930. int16x8_t __ret;
  16931. __ret = (int16x8_t) __builtin_neon_vqabsq_v((int8x16_t)__rev0, 33);
  16932. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  16933. return __ret;
  16934. }
  16935. #endif
  16936. #ifdef __LITTLE_ENDIAN__
  16937. __ai int8x8_t vqabs_s8(int8x8_t __p0) {
  16938. int8x8_t __ret;
  16939. __ret = (int8x8_t) __builtin_neon_vqabs_v((int8x8_t)__p0, 0);
  16940. return __ret;
  16941. }
  16942. #else
  16943. __ai int8x8_t vqabs_s8(int8x8_t __p0) {
  16944. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  16945. int8x8_t __ret;
  16946. __ret = (int8x8_t) __builtin_neon_vqabs_v((int8x8_t)__rev0, 0);
  16947. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  16948. return __ret;
  16949. }
  16950. #endif
  16951. #ifdef __LITTLE_ENDIAN__
  16952. __ai int32x2_t vqabs_s32(int32x2_t __p0) {
  16953. int32x2_t __ret;
  16954. __ret = (int32x2_t) __builtin_neon_vqabs_v((int8x8_t)__p0, 2);
  16955. return __ret;
  16956. }
  16957. #else
  16958. __ai int32x2_t vqabs_s32(int32x2_t __p0) {
  16959. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  16960. int32x2_t __ret;
  16961. __ret = (int32x2_t) __builtin_neon_vqabs_v((int8x8_t)__rev0, 2);
  16962. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  16963. return __ret;
  16964. }
  16965. #endif
  16966. #ifdef __LITTLE_ENDIAN__
  16967. __ai int16x4_t vqabs_s16(int16x4_t __p0) {
  16968. int16x4_t __ret;
  16969. __ret = (int16x4_t) __builtin_neon_vqabs_v((int8x8_t)__p0, 1);
  16970. return __ret;
  16971. }
  16972. #else
  16973. __ai int16x4_t vqabs_s16(int16x4_t __p0) {
  16974. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  16975. int16x4_t __ret;
  16976. __ret = (int16x4_t) __builtin_neon_vqabs_v((int8x8_t)__rev0, 1);
  16977. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  16978. return __ret;
  16979. }
  16980. #endif
  16981. #ifdef __LITTLE_ENDIAN__
  16982. __ai uint8x16_t vqaddq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  16983. uint8x16_t __ret;
  16984. __ret = (uint8x16_t) __builtin_neon_vqaddq_v((int8x16_t)__p0, (int8x16_t)__p1, 48);
  16985. return __ret;
  16986. }
  16987. #else
  16988. __ai uint8x16_t vqaddq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  16989. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  16990. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  16991. uint8x16_t __ret;
  16992. __ret = (uint8x16_t) __builtin_neon_vqaddq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 48);
  16993. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  16994. return __ret;
  16995. }
  16996. #endif
  16997. #ifdef __LITTLE_ENDIAN__
  16998. __ai uint32x4_t vqaddq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  16999. uint32x4_t __ret;
  17000. __ret = (uint32x4_t) __builtin_neon_vqaddq_v((int8x16_t)__p0, (int8x16_t)__p1, 50);
  17001. return __ret;
  17002. }
  17003. #else
  17004. __ai uint32x4_t vqaddq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  17005. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  17006. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  17007. uint32x4_t __ret;
  17008. __ret = (uint32x4_t) __builtin_neon_vqaddq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 50);
  17009. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  17010. return __ret;
  17011. }
  17012. #endif
  17013. #ifdef __LITTLE_ENDIAN__
  17014. __ai uint64x2_t vqaddq_u64(uint64x2_t __p0, uint64x2_t __p1) {
  17015. uint64x2_t __ret;
  17016. __ret = (uint64x2_t) __builtin_neon_vqaddq_v((int8x16_t)__p0, (int8x16_t)__p1, 51);
  17017. return __ret;
  17018. }
  17019. #else
  17020. __ai uint64x2_t vqaddq_u64(uint64x2_t __p0, uint64x2_t __p1) {
  17021. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  17022. uint64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  17023. uint64x2_t __ret;
  17024. __ret = (uint64x2_t) __builtin_neon_vqaddq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 51);
  17025. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  17026. return __ret;
  17027. }
  17028. #endif
  17029. #ifdef __LITTLE_ENDIAN__
  17030. __ai uint16x8_t vqaddq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  17031. uint16x8_t __ret;
  17032. __ret = (uint16x8_t) __builtin_neon_vqaddq_v((int8x16_t)__p0, (int8x16_t)__p1, 49);
  17033. return __ret;
  17034. }
  17035. #else
  17036. __ai uint16x8_t vqaddq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  17037. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  17038. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  17039. uint16x8_t __ret;
  17040. __ret = (uint16x8_t) __builtin_neon_vqaddq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 49);
  17041. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  17042. return __ret;
  17043. }
  17044. #endif
  17045. #ifdef __LITTLE_ENDIAN__
  17046. __ai int8x16_t vqaddq_s8(int8x16_t __p0, int8x16_t __p1) {
  17047. int8x16_t __ret;
  17048. __ret = (int8x16_t) __builtin_neon_vqaddq_v((int8x16_t)__p0, (int8x16_t)__p1, 32);
  17049. return __ret;
  17050. }
  17051. #else
  17052. __ai int8x16_t vqaddq_s8(int8x16_t __p0, int8x16_t __p1) {
  17053. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  17054. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  17055. int8x16_t __ret;
  17056. __ret = (int8x16_t) __builtin_neon_vqaddq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 32);
  17057. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  17058. return __ret;
  17059. }
  17060. #endif
  17061. #ifdef __LITTLE_ENDIAN__
  17062. __ai int32x4_t vqaddq_s32(int32x4_t __p0, int32x4_t __p1) {
  17063. int32x4_t __ret;
  17064. __ret = (int32x4_t) __builtin_neon_vqaddq_v((int8x16_t)__p0, (int8x16_t)__p1, 34);
  17065. return __ret;
  17066. }
  17067. #else
  17068. __ai int32x4_t vqaddq_s32(int32x4_t __p0, int32x4_t __p1) {
  17069. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  17070. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  17071. int32x4_t __ret;
  17072. __ret = (int32x4_t) __builtin_neon_vqaddq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 34);
  17073. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  17074. return __ret;
  17075. }
  17076. __ai int32x4_t __noswap_vqaddq_s32(int32x4_t __p0, int32x4_t __p1) {
  17077. int32x4_t __ret;
  17078. __ret = (int32x4_t) __builtin_neon_vqaddq_v((int8x16_t)__p0, (int8x16_t)__p1, 34);
  17079. return __ret;
  17080. }
  17081. #endif
  17082. #ifdef __LITTLE_ENDIAN__
  17083. __ai int64x2_t vqaddq_s64(int64x2_t __p0, int64x2_t __p1) {
  17084. int64x2_t __ret;
  17085. __ret = (int64x2_t) __builtin_neon_vqaddq_v((int8x16_t)__p0, (int8x16_t)__p1, 35);
  17086. return __ret;
  17087. }
  17088. #else
  17089. __ai int64x2_t vqaddq_s64(int64x2_t __p0, int64x2_t __p1) {
  17090. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  17091. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  17092. int64x2_t __ret;
  17093. __ret = (int64x2_t) __builtin_neon_vqaddq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 35);
  17094. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  17095. return __ret;
  17096. }
  17097. #endif
  17098. #ifdef __LITTLE_ENDIAN__
  17099. __ai int16x8_t vqaddq_s16(int16x8_t __p0, int16x8_t __p1) {
  17100. int16x8_t __ret;
  17101. __ret = (int16x8_t) __builtin_neon_vqaddq_v((int8x16_t)__p0, (int8x16_t)__p1, 33);
  17102. return __ret;
  17103. }
  17104. #else
  17105. __ai int16x8_t vqaddq_s16(int16x8_t __p0, int16x8_t __p1) {
  17106. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  17107. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  17108. int16x8_t __ret;
  17109. __ret = (int16x8_t) __builtin_neon_vqaddq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 33);
  17110. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  17111. return __ret;
  17112. }
  17113. __ai int16x8_t __noswap_vqaddq_s16(int16x8_t __p0, int16x8_t __p1) {
  17114. int16x8_t __ret;
  17115. __ret = (int16x8_t) __builtin_neon_vqaddq_v((int8x16_t)__p0, (int8x16_t)__p1, 33);
  17116. return __ret;
  17117. }
  17118. #endif
  17119. #ifdef __LITTLE_ENDIAN__
  17120. __ai uint8x8_t vqadd_u8(uint8x8_t __p0, uint8x8_t __p1) {
  17121. uint8x8_t __ret;
  17122. __ret = (uint8x8_t) __builtin_neon_vqadd_v((int8x8_t)__p0, (int8x8_t)__p1, 16);
  17123. return __ret;
  17124. }
  17125. #else
  17126. __ai uint8x8_t vqadd_u8(uint8x8_t __p0, uint8x8_t __p1) {
  17127. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  17128. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  17129. uint8x8_t __ret;
  17130. __ret = (uint8x8_t) __builtin_neon_vqadd_v((int8x8_t)__rev0, (int8x8_t)__rev1, 16);
  17131. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  17132. return __ret;
  17133. }
  17134. #endif
  17135. #ifdef __LITTLE_ENDIAN__
  17136. __ai uint32x2_t vqadd_u32(uint32x2_t __p0, uint32x2_t __p1) {
  17137. uint32x2_t __ret;
  17138. __ret = (uint32x2_t) __builtin_neon_vqadd_v((int8x8_t)__p0, (int8x8_t)__p1, 18);
  17139. return __ret;
  17140. }
  17141. #else
  17142. __ai uint32x2_t vqadd_u32(uint32x2_t __p0, uint32x2_t __p1) {
  17143. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  17144. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  17145. uint32x2_t __ret;
  17146. __ret = (uint32x2_t) __builtin_neon_vqadd_v((int8x8_t)__rev0, (int8x8_t)__rev1, 18);
  17147. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  17148. return __ret;
  17149. }
  17150. #endif
  17151. #ifdef __LITTLE_ENDIAN__
  17152. __ai uint64x1_t vqadd_u64(uint64x1_t __p0, uint64x1_t __p1) {
  17153. uint64x1_t __ret;
  17154. __ret = (uint64x1_t) __builtin_neon_vqadd_v((int8x8_t)__p0, (int8x8_t)__p1, 19);
  17155. return __ret;
  17156. }
  17157. #else
  17158. __ai uint64x1_t vqadd_u64(uint64x1_t __p0, uint64x1_t __p1) {
  17159. uint64x1_t __ret;
  17160. __ret = (uint64x1_t) __builtin_neon_vqadd_v((int8x8_t)__p0, (int8x8_t)__p1, 19);
  17161. return __ret;
  17162. }
  17163. #endif
  17164. #ifdef __LITTLE_ENDIAN__
  17165. __ai uint16x4_t vqadd_u16(uint16x4_t __p0, uint16x4_t __p1) {
  17166. uint16x4_t __ret;
  17167. __ret = (uint16x4_t) __builtin_neon_vqadd_v((int8x8_t)__p0, (int8x8_t)__p1, 17);
  17168. return __ret;
  17169. }
  17170. #else
  17171. __ai uint16x4_t vqadd_u16(uint16x4_t __p0, uint16x4_t __p1) {
  17172. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  17173. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  17174. uint16x4_t __ret;
  17175. __ret = (uint16x4_t) __builtin_neon_vqadd_v((int8x8_t)__rev0, (int8x8_t)__rev1, 17);
  17176. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  17177. return __ret;
  17178. }
  17179. #endif
  17180. #ifdef __LITTLE_ENDIAN__
  17181. __ai int8x8_t vqadd_s8(int8x8_t __p0, int8x8_t __p1) {
  17182. int8x8_t __ret;
  17183. __ret = (int8x8_t) __builtin_neon_vqadd_v((int8x8_t)__p0, (int8x8_t)__p1, 0);
  17184. return __ret;
  17185. }
  17186. #else
  17187. __ai int8x8_t vqadd_s8(int8x8_t __p0, int8x8_t __p1) {
  17188. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  17189. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  17190. int8x8_t __ret;
  17191. __ret = (int8x8_t) __builtin_neon_vqadd_v((int8x8_t)__rev0, (int8x8_t)__rev1, 0);
  17192. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  17193. return __ret;
  17194. }
  17195. #endif
  17196. #ifdef __LITTLE_ENDIAN__
  17197. __ai int32x2_t vqadd_s32(int32x2_t __p0, int32x2_t __p1) {
  17198. int32x2_t __ret;
  17199. __ret = (int32x2_t) __builtin_neon_vqadd_v((int8x8_t)__p0, (int8x8_t)__p1, 2);
  17200. return __ret;
  17201. }
  17202. #else
  17203. __ai int32x2_t vqadd_s32(int32x2_t __p0, int32x2_t __p1) {
  17204. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  17205. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  17206. int32x2_t __ret;
  17207. __ret = (int32x2_t) __builtin_neon_vqadd_v((int8x8_t)__rev0, (int8x8_t)__rev1, 2);
  17208. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  17209. return __ret;
  17210. }
  17211. __ai int32x2_t __noswap_vqadd_s32(int32x2_t __p0, int32x2_t __p1) {
  17212. int32x2_t __ret;
  17213. __ret = (int32x2_t) __builtin_neon_vqadd_v((int8x8_t)__p0, (int8x8_t)__p1, 2);
  17214. return __ret;
  17215. }
  17216. #endif
  17217. #ifdef __LITTLE_ENDIAN__
  17218. __ai int64x1_t vqadd_s64(int64x1_t __p0, int64x1_t __p1) {
  17219. int64x1_t __ret;
  17220. __ret = (int64x1_t) __builtin_neon_vqadd_v((int8x8_t)__p0, (int8x8_t)__p1, 3);
  17221. return __ret;
  17222. }
  17223. #else
  17224. __ai int64x1_t vqadd_s64(int64x1_t __p0, int64x1_t __p1) {
  17225. int64x1_t __ret;
  17226. __ret = (int64x1_t) __builtin_neon_vqadd_v((int8x8_t)__p0, (int8x8_t)__p1, 3);
  17227. return __ret;
  17228. }
  17229. #endif
  17230. #ifdef __LITTLE_ENDIAN__
  17231. __ai int16x4_t vqadd_s16(int16x4_t __p0, int16x4_t __p1) {
  17232. int16x4_t __ret;
  17233. __ret = (int16x4_t) __builtin_neon_vqadd_v((int8x8_t)__p0, (int8x8_t)__p1, 1);
  17234. return __ret;
  17235. }
  17236. #else
  17237. __ai int16x4_t vqadd_s16(int16x4_t __p0, int16x4_t __p1) {
  17238. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  17239. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  17240. int16x4_t __ret;
  17241. __ret = (int16x4_t) __builtin_neon_vqadd_v((int8x8_t)__rev0, (int8x8_t)__rev1, 1);
  17242. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  17243. return __ret;
  17244. }
  17245. __ai int16x4_t __noswap_vqadd_s16(int16x4_t __p0, int16x4_t __p1) {
  17246. int16x4_t __ret;
  17247. __ret = (int16x4_t) __builtin_neon_vqadd_v((int8x8_t)__p0, (int8x8_t)__p1, 1);
  17248. return __ret;
  17249. }
  17250. #endif
  17251. #ifdef __LITTLE_ENDIAN__
  17252. __ai int64x2_t vqdmlal_s32(int64x2_t __p0, int32x2_t __p1, int32x2_t __p2) {
  17253. int64x2_t __ret;
  17254. __ret = (int64x2_t) __builtin_neon_vqdmlal_v((int8x16_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 35);
  17255. return __ret;
  17256. }
  17257. #else
  17258. __ai int64x2_t vqdmlal_s32(int64x2_t __p0, int32x2_t __p1, int32x2_t __p2) {
  17259. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  17260. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  17261. int32x2_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 1, 0);
  17262. int64x2_t __ret;
  17263. __ret = (int64x2_t) __builtin_neon_vqdmlal_v((int8x16_t)__rev0, (int8x8_t)__rev1, (int8x8_t)__rev2, 35);
  17264. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  17265. return __ret;
  17266. }
  17267. __ai int64x2_t __noswap_vqdmlal_s32(int64x2_t __p0, int32x2_t __p1, int32x2_t __p2) {
  17268. int64x2_t __ret;
  17269. __ret = (int64x2_t) __builtin_neon_vqdmlal_v((int8x16_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 35);
  17270. return __ret;
  17271. }
  17272. #endif
  17273. #ifdef __LITTLE_ENDIAN__
  17274. __ai int32x4_t vqdmlal_s16(int32x4_t __p0, int16x4_t __p1, int16x4_t __p2) {
  17275. int32x4_t __ret;
  17276. __ret = (int32x4_t) __builtin_neon_vqdmlal_v((int8x16_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 34);
  17277. return __ret;
  17278. }
  17279. #else
  17280. __ai int32x4_t vqdmlal_s16(int32x4_t __p0, int16x4_t __p1, int16x4_t __p2) {
  17281. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  17282. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  17283. int16x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  17284. int32x4_t __ret;
  17285. __ret = (int32x4_t) __builtin_neon_vqdmlal_v((int8x16_t)__rev0, (int8x8_t)__rev1, (int8x8_t)__rev2, 34);
  17286. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  17287. return __ret;
  17288. }
  17289. __ai int32x4_t __noswap_vqdmlal_s16(int32x4_t __p0, int16x4_t __p1, int16x4_t __p2) {
  17290. int32x4_t __ret;
  17291. __ret = (int32x4_t) __builtin_neon_vqdmlal_v((int8x16_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 34);
  17292. return __ret;
  17293. }
  17294. #endif
  17295. #ifdef __LITTLE_ENDIAN__
  17296. #define vqdmlal_lane_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  17297. int64x2_t __s0 = __p0; \
  17298. int32x2_t __s1 = __p1; \
  17299. int32x2_t __s2 = __p2; \
  17300. int64x2_t __ret; \
  17301. __ret = vqdmlal_s32(__s0, __s1, __builtin_shufflevector(__s2, __s2, __p3, __p3)); \
  17302. __ret; \
  17303. })
  17304. #else
  17305. #define vqdmlal_lane_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  17306. int64x2_t __s0 = __p0; \
  17307. int32x2_t __s1 = __p1; \
  17308. int32x2_t __s2 = __p2; \
  17309. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  17310. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  17311. int32x2_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 1, 0); \
  17312. int64x2_t __ret; \
  17313. __ret = __noswap_vqdmlal_s32(__rev0, __rev1, __builtin_shufflevector(__rev2, __rev2, __p3, __p3)); \
  17314. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  17315. __ret; \
  17316. })
  17317. #endif
  17318. #ifdef __LITTLE_ENDIAN__
  17319. #define vqdmlal_lane_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  17320. int32x4_t __s0 = __p0; \
  17321. int16x4_t __s1 = __p1; \
  17322. int16x4_t __s2 = __p2; \
  17323. int32x4_t __ret; \
  17324. __ret = vqdmlal_s16(__s0, __s1, __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3)); \
  17325. __ret; \
  17326. })
  17327. #else
  17328. #define vqdmlal_lane_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  17329. int32x4_t __s0 = __p0; \
  17330. int16x4_t __s1 = __p1; \
  17331. int16x4_t __s2 = __p2; \
  17332. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  17333. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  17334. int16x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  17335. int32x4_t __ret; \
  17336. __ret = __noswap_vqdmlal_s16(__rev0, __rev1, __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3)); \
  17337. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  17338. __ret; \
  17339. })
  17340. #endif
  17341. #ifdef __LITTLE_ENDIAN__
  17342. __ai int64x2_t vqdmlal_n_s32(int64x2_t __p0, int32x2_t __p1, int32_t __p2) {
  17343. int64x2_t __ret;
  17344. __ret = (int64x2_t) __builtin_neon_vqdmlal_v((int8x16_t)__p0, (int8x8_t)__p1, (int8x8_t)(int32x2_t) {__p2, __p2}, 35);
  17345. return __ret;
  17346. }
  17347. #else
  17348. __ai int64x2_t vqdmlal_n_s32(int64x2_t __p0, int32x2_t __p1, int32_t __p2) {
  17349. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  17350. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  17351. int64x2_t __ret;
  17352. __ret = (int64x2_t) __builtin_neon_vqdmlal_v((int8x16_t)__rev0, (int8x8_t)__rev1, (int8x8_t)(int32x2_t) {__p2, __p2}, 35);
  17353. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  17354. return __ret;
  17355. }
  17356. __ai int64x2_t __noswap_vqdmlal_n_s32(int64x2_t __p0, int32x2_t __p1, int32_t __p2) {
  17357. int64x2_t __ret;
  17358. __ret = (int64x2_t) __builtin_neon_vqdmlal_v((int8x16_t)__p0, (int8x8_t)__p1, (int8x8_t)(int32x2_t) {__p2, __p2}, 35);
  17359. return __ret;
  17360. }
  17361. #endif
  17362. #ifdef __LITTLE_ENDIAN__
  17363. __ai int32x4_t vqdmlal_n_s16(int32x4_t __p0, int16x4_t __p1, int16_t __p2) {
  17364. int32x4_t __ret;
  17365. __ret = (int32x4_t) __builtin_neon_vqdmlal_v((int8x16_t)__p0, (int8x8_t)__p1, (int8x8_t)(int16x4_t) {__p2, __p2, __p2, __p2}, 34);
  17366. return __ret;
  17367. }
  17368. #else
  17369. __ai int32x4_t vqdmlal_n_s16(int32x4_t __p0, int16x4_t __p1, int16_t __p2) {
  17370. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  17371. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  17372. int32x4_t __ret;
  17373. __ret = (int32x4_t) __builtin_neon_vqdmlal_v((int8x16_t)__rev0, (int8x8_t)__rev1, (int8x8_t)(int16x4_t) {__p2, __p2, __p2, __p2}, 34);
  17374. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  17375. return __ret;
  17376. }
  17377. __ai int32x4_t __noswap_vqdmlal_n_s16(int32x4_t __p0, int16x4_t __p1, int16_t __p2) {
  17378. int32x4_t __ret;
  17379. __ret = (int32x4_t) __builtin_neon_vqdmlal_v((int8x16_t)__p0, (int8x8_t)__p1, (int8x8_t)(int16x4_t) {__p2, __p2, __p2, __p2}, 34);
  17380. return __ret;
  17381. }
  17382. #endif
  17383. #ifdef __LITTLE_ENDIAN__
  17384. __ai int64x2_t vqdmlsl_s32(int64x2_t __p0, int32x2_t __p1, int32x2_t __p2) {
  17385. int64x2_t __ret;
  17386. __ret = (int64x2_t) __builtin_neon_vqdmlsl_v((int8x16_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 35);
  17387. return __ret;
  17388. }
  17389. #else
  17390. __ai int64x2_t vqdmlsl_s32(int64x2_t __p0, int32x2_t __p1, int32x2_t __p2) {
  17391. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  17392. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  17393. int32x2_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 1, 0);
  17394. int64x2_t __ret;
  17395. __ret = (int64x2_t) __builtin_neon_vqdmlsl_v((int8x16_t)__rev0, (int8x8_t)__rev1, (int8x8_t)__rev2, 35);
  17396. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  17397. return __ret;
  17398. }
  17399. __ai int64x2_t __noswap_vqdmlsl_s32(int64x2_t __p0, int32x2_t __p1, int32x2_t __p2) {
  17400. int64x2_t __ret;
  17401. __ret = (int64x2_t) __builtin_neon_vqdmlsl_v((int8x16_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 35);
  17402. return __ret;
  17403. }
  17404. #endif
  17405. #ifdef __LITTLE_ENDIAN__
  17406. __ai int32x4_t vqdmlsl_s16(int32x4_t __p0, int16x4_t __p1, int16x4_t __p2) {
  17407. int32x4_t __ret;
  17408. __ret = (int32x4_t) __builtin_neon_vqdmlsl_v((int8x16_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 34);
  17409. return __ret;
  17410. }
  17411. #else
  17412. __ai int32x4_t vqdmlsl_s16(int32x4_t __p0, int16x4_t __p1, int16x4_t __p2) {
  17413. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  17414. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  17415. int16x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  17416. int32x4_t __ret;
  17417. __ret = (int32x4_t) __builtin_neon_vqdmlsl_v((int8x16_t)__rev0, (int8x8_t)__rev1, (int8x8_t)__rev2, 34);
  17418. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  17419. return __ret;
  17420. }
  17421. __ai int32x4_t __noswap_vqdmlsl_s16(int32x4_t __p0, int16x4_t __p1, int16x4_t __p2) {
  17422. int32x4_t __ret;
  17423. __ret = (int32x4_t) __builtin_neon_vqdmlsl_v((int8x16_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 34);
  17424. return __ret;
  17425. }
  17426. #endif
  17427. #ifdef __LITTLE_ENDIAN__
  17428. #define vqdmlsl_lane_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  17429. int64x2_t __s0 = __p0; \
  17430. int32x2_t __s1 = __p1; \
  17431. int32x2_t __s2 = __p2; \
  17432. int64x2_t __ret; \
  17433. __ret = vqdmlsl_s32(__s0, __s1, __builtin_shufflevector(__s2, __s2, __p3, __p3)); \
  17434. __ret; \
  17435. })
  17436. #else
  17437. #define vqdmlsl_lane_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  17438. int64x2_t __s0 = __p0; \
  17439. int32x2_t __s1 = __p1; \
  17440. int32x2_t __s2 = __p2; \
  17441. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  17442. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  17443. int32x2_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 1, 0); \
  17444. int64x2_t __ret; \
  17445. __ret = __noswap_vqdmlsl_s32(__rev0, __rev1, __builtin_shufflevector(__rev2, __rev2, __p3, __p3)); \
  17446. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  17447. __ret; \
  17448. })
  17449. #endif
  17450. #ifdef __LITTLE_ENDIAN__
  17451. #define vqdmlsl_lane_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  17452. int32x4_t __s0 = __p0; \
  17453. int16x4_t __s1 = __p1; \
  17454. int16x4_t __s2 = __p2; \
  17455. int32x4_t __ret; \
  17456. __ret = vqdmlsl_s16(__s0, __s1, __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3)); \
  17457. __ret; \
  17458. })
  17459. #else
  17460. #define vqdmlsl_lane_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  17461. int32x4_t __s0 = __p0; \
  17462. int16x4_t __s1 = __p1; \
  17463. int16x4_t __s2 = __p2; \
  17464. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  17465. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  17466. int16x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  17467. int32x4_t __ret; \
  17468. __ret = __noswap_vqdmlsl_s16(__rev0, __rev1, __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3)); \
  17469. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  17470. __ret; \
  17471. })
  17472. #endif
  17473. #ifdef __LITTLE_ENDIAN__
  17474. __ai int64x2_t vqdmlsl_n_s32(int64x2_t __p0, int32x2_t __p1, int32_t __p2) {
  17475. int64x2_t __ret;
  17476. __ret = (int64x2_t) __builtin_neon_vqdmlsl_v((int8x16_t)__p0, (int8x8_t)__p1, (int8x8_t)(int32x2_t) {__p2, __p2}, 35);
  17477. return __ret;
  17478. }
  17479. #else
  17480. __ai int64x2_t vqdmlsl_n_s32(int64x2_t __p0, int32x2_t __p1, int32_t __p2) {
  17481. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  17482. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  17483. int64x2_t __ret;
  17484. __ret = (int64x2_t) __builtin_neon_vqdmlsl_v((int8x16_t)__rev0, (int8x8_t)__rev1, (int8x8_t)(int32x2_t) {__p2, __p2}, 35);
  17485. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  17486. return __ret;
  17487. }
  17488. __ai int64x2_t __noswap_vqdmlsl_n_s32(int64x2_t __p0, int32x2_t __p1, int32_t __p2) {
  17489. int64x2_t __ret;
  17490. __ret = (int64x2_t) __builtin_neon_vqdmlsl_v((int8x16_t)__p0, (int8x8_t)__p1, (int8x8_t)(int32x2_t) {__p2, __p2}, 35);
  17491. return __ret;
  17492. }
  17493. #endif
  17494. #ifdef __LITTLE_ENDIAN__
  17495. __ai int32x4_t vqdmlsl_n_s16(int32x4_t __p0, int16x4_t __p1, int16_t __p2) {
  17496. int32x4_t __ret;
  17497. __ret = (int32x4_t) __builtin_neon_vqdmlsl_v((int8x16_t)__p0, (int8x8_t)__p1, (int8x8_t)(int16x4_t) {__p2, __p2, __p2, __p2}, 34);
  17498. return __ret;
  17499. }
  17500. #else
  17501. __ai int32x4_t vqdmlsl_n_s16(int32x4_t __p0, int16x4_t __p1, int16_t __p2) {
  17502. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  17503. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  17504. int32x4_t __ret;
  17505. __ret = (int32x4_t) __builtin_neon_vqdmlsl_v((int8x16_t)__rev0, (int8x8_t)__rev1, (int8x8_t)(int16x4_t) {__p2, __p2, __p2, __p2}, 34);
  17506. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  17507. return __ret;
  17508. }
  17509. __ai int32x4_t __noswap_vqdmlsl_n_s16(int32x4_t __p0, int16x4_t __p1, int16_t __p2) {
  17510. int32x4_t __ret;
  17511. __ret = (int32x4_t) __builtin_neon_vqdmlsl_v((int8x16_t)__p0, (int8x8_t)__p1, (int8x8_t)(int16x4_t) {__p2, __p2, __p2, __p2}, 34);
  17512. return __ret;
  17513. }
  17514. #endif
  17515. #ifdef __LITTLE_ENDIAN__
  17516. __ai int32x4_t vqdmulhq_s32(int32x4_t __p0, int32x4_t __p1) {
  17517. int32x4_t __ret;
  17518. __ret = (int32x4_t) __builtin_neon_vqdmulhq_v((int8x16_t)__p0, (int8x16_t)__p1, 34);
  17519. return __ret;
  17520. }
  17521. #else
  17522. __ai int32x4_t vqdmulhq_s32(int32x4_t __p0, int32x4_t __p1) {
  17523. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  17524. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  17525. int32x4_t __ret;
  17526. __ret = (int32x4_t) __builtin_neon_vqdmulhq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 34);
  17527. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  17528. return __ret;
  17529. }
  17530. __ai int32x4_t __noswap_vqdmulhq_s32(int32x4_t __p0, int32x4_t __p1) {
  17531. int32x4_t __ret;
  17532. __ret = (int32x4_t) __builtin_neon_vqdmulhq_v((int8x16_t)__p0, (int8x16_t)__p1, 34);
  17533. return __ret;
  17534. }
  17535. #endif
  17536. #ifdef __LITTLE_ENDIAN__
  17537. __ai int16x8_t vqdmulhq_s16(int16x8_t __p0, int16x8_t __p1) {
  17538. int16x8_t __ret;
  17539. __ret = (int16x8_t) __builtin_neon_vqdmulhq_v((int8x16_t)__p0, (int8x16_t)__p1, 33);
  17540. return __ret;
  17541. }
  17542. #else
  17543. __ai int16x8_t vqdmulhq_s16(int16x8_t __p0, int16x8_t __p1) {
  17544. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  17545. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  17546. int16x8_t __ret;
  17547. __ret = (int16x8_t) __builtin_neon_vqdmulhq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 33);
  17548. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  17549. return __ret;
  17550. }
  17551. __ai int16x8_t __noswap_vqdmulhq_s16(int16x8_t __p0, int16x8_t __p1) {
  17552. int16x8_t __ret;
  17553. __ret = (int16x8_t) __builtin_neon_vqdmulhq_v((int8x16_t)__p0, (int8x16_t)__p1, 33);
  17554. return __ret;
  17555. }
  17556. #endif
  17557. #ifdef __LITTLE_ENDIAN__
  17558. __ai int32x2_t vqdmulh_s32(int32x2_t __p0, int32x2_t __p1) {
  17559. int32x2_t __ret;
  17560. __ret = (int32x2_t) __builtin_neon_vqdmulh_v((int8x8_t)__p0, (int8x8_t)__p1, 2);
  17561. return __ret;
  17562. }
  17563. #else
  17564. __ai int32x2_t vqdmulh_s32(int32x2_t __p0, int32x2_t __p1) {
  17565. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  17566. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  17567. int32x2_t __ret;
  17568. __ret = (int32x2_t) __builtin_neon_vqdmulh_v((int8x8_t)__rev0, (int8x8_t)__rev1, 2);
  17569. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  17570. return __ret;
  17571. }
  17572. __ai int32x2_t __noswap_vqdmulh_s32(int32x2_t __p0, int32x2_t __p1) {
  17573. int32x2_t __ret;
  17574. __ret = (int32x2_t) __builtin_neon_vqdmulh_v((int8x8_t)__p0, (int8x8_t)__p1, 2);
  17575. return __ret;
  17576. }
  17577. #endif
  17578. #ifdef __LITTLE_ENDIAN__
  17579. __ai int16x4_t vqdmulh_s16(int16x4_t __p0, int16x4_t __p1) {
  17580. int16x4_t __ret;
  17581. __ret = (int16x4_t) __builtin_neon_vqdmulh_v((int8x8_t)__p0, (int8x8_t)__p1, 1);
  17582. return __ret;
  17583. }
  17584. #else
  17585. __ai int16x4_t vqdmulh_s16(int16x4_t __p0, int16x4_t __p1) {
  17586. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  17587. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  17588. int16x4_t __ret;
  17589. __ret = (int16x4_t) __builtin_neon_vqdmulh_v((int8x8_t)__rev0, (int8x8_t)__rev1, 1);
  17590. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  17591. return __ret;
  17592. }
  17593. __ai int16x4_t __noswap_vqdmulh_s16(int16x4_t __p0, int16x4_t __p1) {
  17594. int16x4_t __ret;
  17595. __ret = (int16x4_t) __builtin_neon_vqdmulh_v((int8x8_t)__p0, (int8x8_t)__p1, 1);
  17596. return __ret;
  17597. }
  17598. #endif
  17599. #ifdef __LITTLE_ENDIAN__
  17600. #define vqdmulhq_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  17601. int32x4_t __s0 = __p0; \
  17602. int32x2_t __s1 = __p1; \
  17603. int32x4_t __ret; \
  17604. __ret = vqdmulhq_s32(__s0, __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2)); \
  17605. __ret; \
  17606. })
  17607. #else
  17608. #define vqdmulhq_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  17609. int32x4_t __s0 = __p0; \
  17610. int32x2_t __s1 = __p1; \
  17611. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  17612. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  17613. int32x4_t __ret; \
  17614. __ret = __noswap_vqdmulhq_s32(__rev0, __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2)); \
  17615. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  17616. __ret; \
  17617. })
  17618. #endif
  17619. #ifdef __LITTLE_ENDIAN__
  17620. #define vqdmulhq_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  17621. int16x8_t __s0 = __p0; \
  17622. int16x4_t __s1 = __p1; \
  17623. int16x8_t __ret; \
  17624. __ret = vqdmulhq_s16(__s0, __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2, __p2, __p2, __p2, __p2)); \
  17625. __ret; \
  17626. })
  17627. #else
  17628. #define vqdmulhq_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  17629. int16x8_t __s0 = __p0; \
  17630. int16x4_t __s1 = __p1; \
  17631. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  17632. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  17633. int16x8_t __ret; \
  17634. __ret = __noswap_vqdmulhq_s16(__rev0, __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2, __p2, __p2, __p2, __p2)); \
  17635. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  17636. __ret; \
  17637. })
  17638. #endif
  17639. #ifdef __LITTLE_ENDIAN__
  17640. #define vqdmulh_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  17641. int32x2_t __s0 = __p0; \
  17642. int32x2_t __s1 = __p1; \
  17643. int32x2_t __ret; \
  17644. __ret = vqdmulh_s32(__s0, __builtin_shufflevector(__s1, __s1, __p2, __p2)); \
  17645. __ret; \
  17646. })
  17647. #else
  17648. #define vqdmulh_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  17649. int32x2_t __s0 = __p0; \
  17650. int32x2_t __s1 = __p1; \
  17651. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  17652. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  17653. int32x2_t __ret; \
  17654. __ret = __noswap_vqdmulh_s32(__rev0, __builtin_shufflevector(__rev1, __rev1, __p2, __p2)); \
  17655. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  17656. __ret; \
  17657. })
  17658. #endif
  17659. #ifdef __LITTLE_ENDIAN__
  17660. #define vqdmulh_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  17661. int16x4_t __s0 = __p0; \
  17662. int16x4_t __s1 = __p1; \
  17663. int16x4_t __ret; \
  17664. __ret = vqdmulh_s16(__s0, __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2)); \
  17665. __ret; \
  17666. })
  17667. #else
  17668. #define vqdmulh_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  17669. int16x4_t __s0 = __p0; \
  17670. int16x4_t __s1 = __p1; \
  17671. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  17672. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  17673. int16x4_t __ret; \
  17674. __ret = __noswap_vqdmulh_s16(__rev0, __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2)); \
  17675. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  17676. __ret; \
  17677. })
  17678. #endif
  17679. #ifdef __LITTLE_ENDIAN__
  17680. __ai int32x4_t vqdmulhq_n_s32(int32x4_t __p0, int32_t __p1) {
  17681. int32x4_t __ret;
  17682. __ret = (int32x4_t) __builtin_neon_vqdmulhq_v((int8x16_t)__p0, (int8x16_t)(int32x4_t) {__p1, __p1, __p1, __p1}, 34);
  17683. return __ret;
  17684. }
  17685. #else
  17686. __ai int32x4_t vqdmulhq_n_s32(int32x4_t __p0, int32_t __p1) {
  17687. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  17688. int32x4_t __ret;
  17689. __ret = (int32x4_t) __builtin_neon_vqdmulhq_v((int8x16_t)__rev0, (int8x16_t)(int32x4_t) {__p1, __p1, __p1, __p1}, 34);
  17690. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  17691. return __ret;
  17692. }
  17693. #endif
  17694. #ifdef __LITTLE_ENDIAN__
  17695. __ai int16x8_t vqdmulhq_n_s16(int16x8_t __p0, int16_t __p1) {
  17696. int16x8_t __ret;
  17697. __ret = (int16x8_t) __builtin_neon_vqdmulhq_v((int8x16_t)__p0, (int8x16_t)(int16x8_t) {__p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1}, 33);
  17698. return __ret;
  17699. }
  17700. #else
  17701. __ai int16x8_t vqdmulhq_n_s16(int16x8_t __p0, int16_t __p1) {
  17702. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  17703. int16x8_t __ret;
  17704. __ret = (int16x8_t) __builtin_neon_vqdmulhq_v((int8x16_t)__rev0, (int8x16_t)(int16x8_t) {__p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1}, 33);
  17705. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  17706. return __ret;
  17707. }
  17708. #endif
  17709. #ifdef __LITTLE_ENDIAN__
  17710. __ai int32x2_t vqdmulh_n_s32(int32x2_t __p0, int32_t __p1) {
  17711. int32x2_t __ret;
  17712. __ret = (int32x2_t) __builtin_neon_vqdmulh_v((int8x8_t)__p0, (int8x8_t)(int32x2_t) {__p1, __p1}, 2);
  17713. return __ret;
  17714. }
  17715. #else
  17716. __ai int32x2_t vqdmulh_n_s32(int32x2_t __p0, int32_t __p1) {
  17717. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  17718. int32x2_t __ret;
  17719. __ret = (int32x2_t) __builtin_neon_vqdmulh_v((int8x8_t)__rev0, (int8x8_t)(int32x2_t) {__p1, __p1}, 2);
  17720. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  17721. return __ret;
  17722. }
  17723. #endif
  17724. #ifdef __LITTLE_ENDIAN__
  17725. __ai int16x4_t vqdmulh_n_s16(int16x4_t __p0, int16_t __p1) {
  17726. int16x4_t __ret;
  17727. __ret = (int16x4_t) __builtin_neon_vqdmulh_v((int8x8_t)__p0, (int8x8_t)(int16x4_t) {__p1, __p1, __p1, __p1}, 1);
  17728. return __ret;
  17729. }
  17730. #else
  17731. __ai int16x4_t vqdmulh_n_s16(int16x4_t __p0, int16_t __p1) {
  17732. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  17733. int16x4_t __ret;
  17734. __ret = (int16x4_t) __builtin_neon_vqdmulh_v((int8x8_t)__rev0, (int8x8_t)(int16x4_t) {__p1, __p1, __p1, __p1}, 1);
  17735. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  17736. return __ret;
  17737. }
  17738. #endif
  17739. #ifdef __LITTLE_ENDIAN__
  17740. __ai int64x2_t vqdmull_s32(int32x2_t __p0, int32x2_t __p1) {
  17741. int64x2_t __ret;
  17742. __ret = (int64x2_t) __builtin_neon_vqdmull_v((int8x8_t)__p0, (int8x8_t)__p1, 35);
  17743. return __ret;
  17744. }
  17745. #else
  17746. __ai int64x2_t vqdmull_s32(int32x2_t __p0, int32x2_t __p1) {
  17747. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  17748. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  17749. int64x2_t __ret;
  17750. __ret = (int64x2_t) __builtin_neon_vqdmull_v((int8x8_t)__rev0, (int8x8_t)__rev1, 35);
  17751. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  17752. return __ret;
  17753. }
  17754. __ai int64x2_t __noswap_vqdmull_s32(int32x2_t __p0, int32x2_t __p1) {
  17755. int64x2_t __ret;
  17756. __ret = (int64x2_t) __builtin_neon_vqdmull_v((int8x8_t)__p0, (int8x8_t)__p1, 35);
  17757. return __ret;
  17758. }
  17759. #endif
  17760. #ifdef __LITTLE_ENDIAN__
  17761. __ai int32x4_t vqdmull_s16(int16x4_t __p0, int16x4_t __p1) {
  17762. int32x4_t __ret;
  17763. __ret = (int32x4_t) __builtin_neon_vqdmull_v((int8x8_t)__p0, (int8x8_t)__p1, 34);
  17764. return __ret;
  17765. }
  17766. #else
  17767. __ai int32x4_t vqdmull_s16(int16x4_t __p0, int16x4_t __p1) {
  17768. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  17769. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  17770. int32x4_t __ret;
  17771. __ret = (int32x4_t) __builtin_neon_vqdmull_v((int8x8_t)__rev0, (int8x8_t)__rev1, 34);
  17772. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  17773. return __ret;
  17774. }
  17775. __ai int32x4_t __noswap_vqdmull_s16(int16x4_t __p0, int16x4_t __p1) {
  17776. int32x4_t __ret;
  17777. __ret = (int32x4_t) __builtin_neon_vqdmull_v((int8x8_t)__p0, (int8x8_t)__p1, 34);
  17778. return __ret;
  17779. }
  17780. #endif
  17781. #ifdef __LITTLE_ENDIAN__
  17782. #define vqdmull_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  17783. int32x2_t __s0 = __p0; \
  17784. int32x2_t __s1 = __p1; \
  17785. int64x2_t __ret; \
  17786. __ret = vqdmull_s32(__s0, __builtin_shufflevector(__s1, __s1, __p2, __p2)); \
  17787. __ret; \
  17788. })
  17789. #else
  17790. #define vqdmull_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  17791. int32x2_t __s0 = __p0; \
  17792. int32x2_t __s1 = __p1; \
  17793. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  17794. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  17795. int64x2_t __ret; \
  17796. __ret = __noswap_vqdmull_s32(__rev0, __builtin_shufflevector(__rev1, __rev1, __p2, __p2)); \
  17797. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  17798. __ret; \
  17799. })
  17800. #endif
  17801. #ifdef __LITTLE_ENDIAN__
  17802. #define vqdmull_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  17803. int16x4_t __s0 = __p0; \
  17804. int16x4_t __s1 = __p1; \
  17805. int32x4_t __ret; \
  17806. __ret = vqdmull_s16(__s0, __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2)); \
  17807. __ret; \
  17808. })
  17809. #else
  17810. #define vqdmull_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  17811. int16x4_t __s0 = __p0; \
  17812. int16x4_t __s1 = __p1; \
  17813. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  17814. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  17815. int32x4_t __ret; \
  17816. __ret = __noswap_vqdmull_s16(__rev0, __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2)); \
  17817. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  17818. __ret; \
  17819. })
  17820. #endif
  17821. #ifdef __LITTLE_ENDIAN__
  17822. __ai int64x2_t vqdmull_n_s32(int32x2_t __p0, int32_t __p1) {
  17823. int64x2_t __ret;
  17824. __ret = (int64x2_t) __builtin_neon_vqdmull_v((int8x8_t)__p0, (int8x8_t)(int32x2_t) {__p1, __p1}, 35);
  17825. return __ret;
  17826. }
  17827. #else
  17828. __ai int64x2_t vqdmull_n_s32(int32x2_t __p0, int32_t __p1) {
  17829. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  17830. int64x2_t __ret;
  17831. __ret = (int64x2_t) __builtin_neon_vqdmull_v((int8x8_t)__rev0, (int8x8_t)(int32x2_t) {__p1, __p1}, 35);
  17832. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  17833. return __ret;
  17834. }
  17835. __ai int64x2_t __noswap_vqdmull_n_s32(int32x2_t __p0, int32_t __p1) {
  17836. int64x2_t __ret;
  17837. __ret = (int64x2_t) __builtin_neon_vqdmull_v((int8x8_t)__p0, (int8x8_t)(int32x2_t) {__p1, __p1}, 35);
  17838. return __ret;
  17839. }
  17840. #endif
  17841. #ifdef __LITTLE_ENDIAN__
  17842. __ai int32x4_t vqdmull_n_s16(int16x4_t __p0, int16_t __p1) {
  17843. int32x4_t __ret;
  17844. __ret = (int32x4_t) __builtin_neon_vqdmull_v((int8x8_t)__p0, (int8x8_t)(int16x4_t) {__p1, __p1, __p1, __p1}, 34);
  17845. return __ret;
  17846. }
  17847. #else
  17848. __ai int32x4_t vqdmull_n_s16(int16x4_t __p0, int16_t __p1) {
  17849. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  17850. int32x4_t __ret;
  17851. __ret = (int32x4_t) __builtin_neon_vqdmull_v((int8x8_t)__rev0, (int8x8_t)(int16x4_t) {__p1, __p1, __p1, __p1}, 34);
  17852. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  17853. return __ret;
  17854. }
  17855. __ai int32x4_t __noswap_vqdmull_n_s16(int16x4_t __p0, int16_t __p1) {
  17856. int32x4_t __ret;
  17857. __ret = (int32x4_t) __builtin_neon_vqdmull_v((int8x8_t)__p0, (int8x8_t)(int16x4_t) {__p1, __p1, __p1, __p1}, 34);
  17858. return __ret;
  17859. }
  17860. #endif
  17861. #ifdef __LITTLE_ENDIAN__
  17862. __ai uint16x4_t vqmovn_u32(uint32x4_t __p0) {
  17863. uint16x4_t __ret;
  17864. __ret = (uint16x4_t) __builtin_neon_vqmovn_v((int8x16_t)__p0, 17);
  17865. return __ret;
  17866. }
  17867. #else
  17868. __ai uint16x4_t vqmovn_u32(uint32x4_t __p0) {
  17869. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  17870. uint16x4_t __ret;
  17871. __ret = (uint16x4_t) __builtin_neon_vqmovn_v((int8x16_t)__rev0, 17);
  17872. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  17873. return __ret;
  17874. }
  17875. __ai uint16x4_t __noswap_vqmovn_u32(uint32x4_t __p0) {
  17876. uint16x4_t __ret;
  17877. __ret = (uint16x4_t) __builtin_neon_vqmovn_v((int8x16_t)__p0, 17);
  17878. return __ret;
  17879. }
  17880. #endif
  17881. #ifdef __LITTLE_ENDIAN__
  17882. __ai uint32x2_t vqmovn_u64(uint64x2_t __p0) {
  17883. uint32x2_t __ret;
  17884. __ret = (uint32x2_t) __builtin_neon_vqmovn_v((int8x16_t)__p0, 18);
  17885. return __ret;
  17886. }
  17887. #else
  17888. __ai uint32x2_t vqmovn_u64(uint64x2_t __p0) {
  17889. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  17890. uint32x2_t __ret;
  17891. __ret = (uint32x2_t) __builtin_neon_vqmovn_v((int8x16_t)__rev0, 18);
  17892. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  17893. return __ret;
  17894. }
  17895. __ai uint32x2_t __noswap_vqmovn_u64(uint64x2_t __p0) {
  17896. uint32x2_t __ret;
  17897. __ret = (uint32x2_t) __builtin_neon_vqmovn_v((int8x16_t)__p0, 18);
  17898. return __ret;
  17899. }
  17900. #endif
  17901. #ifdef __LITTLE_ENDIAN__
  17902. __ai uint8x8_t vqmovn_u16(uint16x8_t __p0) {
  17903. uint8x8_t __ret;
  17904. __ret = (uint8x8_t) __builtin_neon_vqmovn_v((int8x16_t)__p0, 16);
  17905. return __ret;
  17906. }
  17907. #else
  17908. __ai uint8x8_t vqmovn_u16(uint16x8_t __p0) {
  17909. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  17910. uint8x8_t __ret;
  17911. __ret = (uint8x8_t) __builtin_neon_vqmovn_v((int8x16_t)__rev0, 16);
  17912. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  17913. return __ret;
  17914. }
  17915. __ai uint8x8_t __noswap_vqmovn_u16(uint16x8_t __p0) {
  17916. uint8x8_t __ret;
  17917. __ret = (uint8x8_t) __builtin_neon_vqmovn_v((int8x16_t)__p0, 16);
  17918. return __ret;
  17919. }
  17920. #endif
  17921. #ifdef __LITTLE_ENDIAN__
  17922. __ai int16x4_t vqmovn_s32(int32x4_t __p0) {
  17923. int16x4_t __ret;
  17924. __ret = (int16x4_t) __builtin_neon_vqmovn_v((int8x16_t)__p0, 1);
  17925. return __ret;
  17926. }
  17927. #else
  17928. __ai int16x4_t vqmovn_s32(int32x4_t __p0) {
  17929. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  17930. int16x4_t __ret;
  17931. __ret = (int16x4_t) __builtin_neon_vqmovn_v((int8x16_t)__rev0, 1);
  17932. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  17933. return __ret;
  17934. }
  17935. __ai int16x4_t __noswap_vqmovn_s32(int32x4_t __p0) {
  17936. int16x4_t __ret;
  17937. __ret = (int16x4_t) __builtin_neon_vqmovn_v((int8x16_t)__p0, 1);
  17938. return __ret;
  17939. }
  17940. #endif
  17941. #ifdef __LITTLE_ENDIAN__
  17942. __ai int32x2_t vqmovn_s64(int64x2_t __p0) {
  17943. int32x2_t __ret;
  17944. __ret = (int32x2_t) __builtin_neon_vqmovn_v((int8x16_t)__p0, 2);
  17945. return __ret;
  17946. }
  17947. #else
  17948. __ai int32x2_t vqmovn_s64(int64x2_t __p0) {
  17949. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  17950. int32x2_t __ret;
  17951. __ret = (int32x2_t) __builtin_neon_vqmovn_v((int8x16_t)__rev0, 2);
  17952. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  17953. return __ret;
  17954. }
  17955. __ai int32x2_t __noswap_vqmovn_s64(int64x2_t __p0) {
  17956. int32x2_t __ret;
  17957. __ret = (int32x2_t) __builtin_neon_vqmovn_v((int8x16_t)__p0, 2);
  17958. return __ret;
  17959. }
  17960. #endif
  17961. #ifdef __LITTLE_ENDIAN__
  17962. __ai int8x8_t vqmovn_s16(int16x8_t __p0) {
  17963. int8x8_t __ret;
  17964. __ret = (int8x8_t) __builtin_neon_vqmovn_v((int8x16_t)__p0, 0);
  17965. return __ret;
  17966. }
  17967. #else
  17968. __ai int8x8_t vqmovn_s16(int16x8_t __p0) {
  17969. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  17970. int8x8_t __ret;
  17971. __ret = (int8x8_t) __builtin_neon_vqmovn_v((int8x16_t)__rev0, 0);
  17972. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  17973. return __ret;
  17974. }
  17975. __ai int8x8_t __noswap_vqmovn_s16(int16x8_t __p0) {
  17976. int8x8_t __ret;
  17977. __ret = (int8x8_t) __builtin_neon_vqmovn_v((int8x16_t)__p0, 0);
  17978. return __ret;
  17979. }
  17980. #endif
  17981. #ifdef __LITTLE_ENDIAN__
  17982. __ai uint16x4_t vqmovun_s32(int32x4_t __p0) {
  17983. uint16x4_t __ret;
  17984. __ret = (uint16x4_t) __builtin_neon_vqmovun_v((int8x16_t)__p0, 17);
  17985. return __ret;
  17986. }
  17987. #else
  17988. __ai uint16x4_t vqmovun_s32(int32x4_t __p0) {
  17989. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  17990. uint16x4_t __ret;
  17991. __ret = (uint16x4_t) __builtin_neon_vqmovun_v((int8x16_t)__rev0, 17);
  17992. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  17993. return __ret;
  17994. }
  17995. __ai uint16x4_t __noswap_vqmovun_s32(int32x4_t __p0) {
  17996. uint16x4_t __ret;
  17997. __ret = (uint16x4_t) __builtin_neon_vqmovun_v((int8x16_t)__p0, 17);
  17998. return __ret;
  17999. }
  18000. #endif
  18001. #ifdef __LITTLE_ENDIAN__
  18002. __ai uint32x2_t vqmovun_s64(int64x2_t __p0) {
  18003. uint32x2_t __ret;
  18004. __ret = (uint32x2_t) __builtin_neon_vqmovun_v((int8x16_t)__p0, 18);
  18005. return __ret;
  18006. }
  18007. #else
  18008. __ai uint32x2_t vqmovun_s64(int64x2_t __p0) {
  18009. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  18010. uint32x2_t __ret;
  18011. __ret = (uint32x2_t) __builtin_neon_vqmovun_v((int8x16_t)__rev0, 18);
  18012. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  18013. return __ret;
  18014. }
  18015. __ai uint32x2_t __noswap_vqmovun_s64(int64x2_t __p0) {
  18016. uint32x2_t __ret;
  18017. __ret = (uint32x2_t) __builtin_neon_vqmovun_v((int8x16_t)__p0, 18);
  18018. return __ret;
  18019. }
  18020. #endif
  18021. #ifdef __LITTLE_ENDIAN__
  18022. __ai uint8x8_t vqmovun_s16(int16x8_t __p0) {
  18023. uint8x8_t __ret;
  18024. __ret = (uint8x8_t) __builtin_neon_vqmovun_v((int8x16_t)__p0, 16);
  18025. return __ret;
  18026. }
  18027. #else
  18028. __ai uint8x8_t vqmovun_s16(int16x8_t __p0) {
  18029. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  18030. uint8x8_t __ret;
  18031. __ret = (uint8x8_t) __builtin_neon_vqmovun_v((int8x16_t)__rev0, 16);
  18032. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  18033. return __ret;
  18034. }
  18035. __ai uint8x8_t __noswap_vqmovun_s16(int16x8_t __p0) {
  18036. uint8x8_t __ret;
  18037. __ret = (uint8x8_t) __builtin_neon_vqmovun_v((int8x16_t)__p0, 16);
  18038. return __ret;
  18039. }
  18040. #endif
  18041. #ifdef __LITTLE_ENDIAN__
  18042. __ai int8x16_t vqnegq_s8(int8x16_t __p0) {
  18043. int8x16_t __ret;
  18044. __ret = (int8x16_t) __builtin_neon_vqnegq_v((int8x16_t)__p0, 32);
  18045. return __ret;
  18046. }
  18047. #else
  18048. __ai int8x16_t vqnegq_s8(int8x16_t __p0) {
  18049. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  18050. int8x16_t __ret;
  18051. __ret = (int8x16_t) __builtin_neon_vqnegq_v((int8x16_t)__rev0, 32);
  18052. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  18053. return __ret;
  18054. }
  18055. #endif
  18056. #ifdef __LITTLE_ENDIAN__
  18057. __ai int32x4_t vqnegq_s32(int32x4_t __p0) {
  18058. int32x4_t __ret;
  18059. __ret = (int32x4_t) __builtin_neon_vqnegq_v((int8x16_t)__p0, 34);
  18060. return __ret;
  18061. }
  18062. #else
  18063. __ai int32x4_t vqnegq_s32(int32x4_t __p0) {
  18064. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  18065. int32x4_t __ret;
  18066. __ret = (int32x4_t) __builtin_neon_vqnegq_v((int8x16_t)__rev0, 34);
  18067. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  18068. return __ret;
  18069. }
  18070. #endif
  18071. #ifdef __LITTLE_ENDIAN__
  18072. __ai int16x8_t vqnegq_s16(int16x8_t __p0) {
  18073. int16x8_t __ret;
  18074. __ret = (int16x8_t) __builtin_neon_vqnegq_v((int8x16_t)__p0, 33);
  18075. return __ret;
  18076. }
  18077. #else
  18078. __ai int16x8_t vqnegq_s16(int16x8_t __p0) {
  18079. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  18080. int16x8_t __ret;
  18081. __ret = (int16x8_t) __builtin_neon_vqnegq_v((int8x16_t)__rev0, 33);
  18082. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  18083. return __ret;
  18084. }
  18085. #endif
  18086. #ifdef __LITTLE_ENDIAN__
  18087. __ai int8x8_t vqneg_s8(int8x8_t __p0) {
  18088. int8x8_t __ret;
  18089. __ret = (int8x8_t) __builtin_neon_vqneg_v((int8x8_t)__p0, 0);
  18090. return __ret;
  18091. }
  18092. #else
  18093. __ai int8x8_t vqneg_s8(int8x8_t __p0) {
  18094. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  18095. int8x8_t __ret;
  18096. __ret = (int8x8_t) __builtin_neon_vqneg_v((int8x8_t)__rev0, 0);
  18097. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  18098. return __ret;
  18099. }
  18100. #endif
  18101. #ifdef __LITTLE_ENDIAN__
  18102. __ai int32x2_t vqneg_s32(int32x2_t __p0) {
  18103. int32x2_t __ret;
  18104. __ret = (int32x2_t) __builtin_neon_vqneg_v((int8x8_t)__p0, 2);
  18105. return __ret;
  18106. }
  18107. #else
  18108. __ai int32x2_t vqneg_s32(int32x2_t __p0) {
  18109. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  18110. int32x2_t __ret;
  18111. __ret = (int32x2_t) __builtin_neon_vqneg_v((int8x8_t)__rev0, 2);
  18112. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  18113. return __ret;
  18114. }
  18115. #endif
  18116. #ifdef __LITTLE_ENDIAN__
  18117. __ai int16x4_t vqneg_s16(int16x4_t __p0) {
  18118. int16x4_t __ret;
  18119. __ret = (int16x4_t) __builtin_neon_vqneg_v((int8x8_t)__p0, 1);
  18120. return __ret;
  18121. }
  18122. #else
  18123. __ai int16x4_t vqneg_s16(int16x4_t __p0) {
  18124. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  18125. int16x4_t __ret;
  18126. __ret = (int16x4_t) __builtin_neon_vqneg_v((int8x8_t)__rev0, 1);
  18127. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  18128. return __ret;
  18129. }
  18130. #endif
  18131. #ifdef __LITTLE_ENDIAN__
  18132. __ai int32x4_t vqrdmulhq_s32(int32x4_t __p0, int32x4_t __p1) {
  18133. int32x4_t __ret;
  18134. __ret = (int32x4_t) __builtin_neon_vqrdmulhq_v((int8x16_t)__p0, (int8x16_t)__p1, 34);
  18135. return __ret;
  18136. }
  18137. #else
  18138. __ai int32x4_t vqrdmulhq_s32(int32x4_t __p0, int32x4_t __p1) {
  18139. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  18140. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  18141. int32x4_t __ret;
  18142. __ret = (int32x4_t) __builtin_neon_vqrdmulhq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 34);
  18143. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  18144. return __ret;
  18145. }
  18146. __ai int32x4_t __noswap_vqrdmulhq_s32(int32x4_t __p0, int32x4_t __p1) {
  18147. int32x4_t __ret;
  18148. __ret = (int32x4_t) __builtin_neon_vqrdmulhq_v((int8x16_t)__p0, (int8x16_t)__p1, 34);
  18149. return __ret;
  18150. }
  18151. #endif
  18152. #ifdef __LITTLE_ENDIAN__
  18153. __ai int16x8_t vqrdmulhq_s16(int16x8_t __p0, int16x8_t __p1) {
  18154. int16x8_t __ret;
  18155. __ret = (int16x8_t) __builtin_neon_vqrdmulhq_v((int8x16_t)__p0, (int8x16_t)__p1, 33);
  18156. return __ret;
  18157. }
  18158. #else
  18159. __ai int16x8_t vqrdmulhq_s16(int16x8_t __p0, int16x8_t __p1) {
  18160. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  18161. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  18162. int16x8_t __ret;
  18163. __ret = (int16x8_t) __builtin_neon_vqrdmulhq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 33);
  18164. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  18165. return __ret;
  18166. }
  18167. __ai int16x8_t __noswap_vqrdmulhq_s16(int16x8_t __p0, int16x8_t __p1) {
  18168. int16x8_t __ret;
  18169. __ret = (int16x8_t) __builtin_neon_vqrdmulhq_v((int8x16_t)__p0, (int8x16_t)__p1, 33);
  18170. return __ret;
  18171. }
  18172. #endif
  18173. #ifdef __LITTLE_ENDIAN__
  18174. __ai int32x2_t vqrdmulh_s32(int32x2_t __p0, int32x2_t __p1) {
  18175. int32x2_t __ret;
  18176. __ret = (int32x2_t) __builtin_neon_vqrdmulh_v((int8x8_t)__p0, (int8x8_t)__p1, 2);
  18177. return __ret;
  18178. }
  18179. #else
  18180. __ai int32x2_t vqrdmulh_s32(int32x2_t __p0, int32x2_t __p1) {
  18181. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  18182. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  18183. int32x2_t __ret;
  18184. __ret = (int32x2_t) __builtin_neon_vqrdmulh_v((int8x8_t)__rev0, (int8x8_t)__rev1, 2);
  18185. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  18186. return __ret;
  18187. }
  18188. __ai int32x2_t __noswap_vqrdmulh_s32(int32x2_t __p0, int32x2_t __p1) {
  18189. int32x2_t __ret;
  18190. __ret = (int32x2_t) __builtin_neon_vqrdmulh_v((int8x8_t)__p0, (int8x8_t)__p1, 2);
  18191. return __ret;
  18192. }
  18193. #endif
  18194. #ifdef __LITTLE_ENDIAN__
  18195. __ai int16x4_t vqrdmulh_s16(int16x4_t __p0, int16x4_t __p1) {
  18196. int16x4_t __ret;
  18197. __ret = (int16x4_t) __builtin_neon_vqrdmulh_v((int8x8_t)__p0, (int8x8_t)__p1, 1);
  18198. return __ret;
  18199. }
  18200. #else
  18201. __ai int16x4_t vqrdmulh_s16(int16x4_t __p0, int16x4_t __p1) {
  18202. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  18203. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  18204. int16x4_t __ret;
  18205. __ret = (int16x4_t) __builtin_neon_vqrdmulh_v((int8x8_t)__rev0, (int8x8_t)__rev1, 1);
  18206. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  18207. return __ret;
  18208. }
  18209. __ai int16x4_t __noswap_vqrdmulh_s16(int16x4_t __p0, int16x4_t __p1) {
  18210. int16x4_t __ret;
  18211. __ret = (int16x4_t) __builtin_neon_vqrdmulh_v((int8x8_t)__p0, (int8x8_t)__p1, 1);
  18212. return __ret;
  18213. }
  18214. #endif
  18215. #ifdef __LITTLE_ENDIAN__
  18216. #define vqrdmulhq_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  18217. int32x4_t __s0 = __p0; \
  18218. int32x2_t __s1 = __p1; \
  18219. int32x4_t __ret; \
  18220. __ret = vqrdmulhq_s32(__s0, __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2)); \
  18221. __ret; \
  18222. })
  18223. #else
  18224. #define vqrdmulhq_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  18225. int32x4_t __s0 = __p0; \
  18226. int32x2_t __s1 = __p1; \
  18227. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  18228. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  18229. int32x4_t __ret; \
  18230. __ret = __noswap_vqrdmulhq_s32(__rev0, __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2)); \
  18231. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  18232. __ret; \
  18233. })
  18234. #endif
  18235. #ifdef __LITTLE_ENDIAN__
  18236. #define vqrdmulhq_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  18237. int16x8_t __s0 = __p0; \
  18238. int16x4_t __s1 = __p1; \
  18239. int16x8_t __ret; \
  18240. __ret = vqrdmulhq_s16(__s0, __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2, __p2, __p2, __p2, __p2)); \
  18241. __ret; \
  18242. })
  18243. #else
  18244. #define vqrdmulhq_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  18245. int16x8_t __s0 = __p0; \
  18246. int16x4_t __s1 = __p1; \
  18247. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  18248. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  18249. int16x8_t __ret; \
  18250. __ret = __noswap_vqrdmulhq_s16(__rev0, __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2, __p2, __p2, __p2, __p2)); \
  18251. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  18252. __ret; \
  18253. })
  18254. #endif
  18255. #ifdef __LITTLE_ENDIAN__
  18256. #define vqrdmulh_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  18257. int32x2_t __s0 = __p0; \
  18258. int32x2_t __s1 = __p1; \
  18259. int32x2_t __ret; \
  18260. __ret = vqrdmulh_s32(__s0, __builtin_shufflevector(__s1, __s1, __p2, __p2)); \
  18261. __ret; \
  18262. })
  18263. #else
  18264. #define vqrdmulh_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  18265. int32x2_t __s0 = __p0; \
  18266. int32x2_t __s1 = __p1; \
  18267. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  18268. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  18269. int32x2_t __ret; \
  18270. __ret = __noswap_vqrdmulh_s32(__rev0, __builtin_shufflevector(__rev1, __rev1, __p2, __p2)); \
  18271. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  18272. __ret; \
  18273. })
  18274. #endif
  18275. #ifdef __LITTLE_ENDIAN__
  18276. #define vqrdmulh_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  18277. int16x4_t __s0 = __p0; \
  18278. int16x4_t __s1 = __p1; \
  18279. int16x4_t __ret; \
  18280. __ret = vqrdmulh_s16(__s0, __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2)); \
  18281. __ret; \
  18282. })
  18283. #else
  18284. #define vqrdmulh_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  18285. int16x4_t __s0 = __p0; \
  18286. int16x4_t __s1 = __p1; \
  18287. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  18288. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  18289. int16x4_t __ret; \
  18290. __ret = __noswap_vqrdmulh_s16(__rev0, __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2)); \
  18291. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  18292. __ret; \
  18293. })
  18294. #endif
  18295. #ifdef __LITTLE_ENDIAN__
  18296. __ai int32x4_t vqrdmulhq_n_s32(int32x4_t __p0, int32_t __p1) {
  18297. int32x4_t __ret;
  18298. __ret = (int32x4_t) __builtin_neon_vqrdmulhq_v((int8x16_t)__p0, (int8x16_t)(int32x4_t) {__p1, __p1, __p1, __p1}, 34);
  18299. return __ret;
  18300. }
  18301. #else
  18302. __ai int32x4_t vqrdmulhq_n_s32(int32x4_t __p0, int32_t __p1) {
  18303. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  18304. int32x4_t __ret;
  18305. __ret = (int32x4_t) __builtin_neon_vqrdmulhq_v((int8x16_t)__rev0, (int8x16_t)(int32x4_t) {__p1, __p1, __p1, __p1}, 34);
  18306. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  18307. return __ret;
  18308. }
  18309. #endif
  18310. #ifdef __LITTLE_ENDIAN__
  18311. __ai int16x8_t vqrdmulhq_n_s16(int16x8_t __p0, int16_t __p1) {
  18312. int16x8_t __ret;
  18313. __ret = (int16x8_t) __builtin_neon_vqrdmulhq_v((int8x16_t)__p0, (int8x16_t)(int16x8_t) {__p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1}, 33);
  18314. return __ret;
  18315. }
  18316. #else
  18317. __ai int16x8_t vqrdmulhq_n_s16(int16x8_t __p0, int16_t __p1) {
  18318. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  18319. int16x8_t __ret;
  18320. __ret = (int16x8_t) __builtin_neon_vqrdmulhq_v((int8x16_t)__rev0, (int8x16_t)(int16x8_t) {__p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1}, 33);
  18321. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  18322. return __ret;
  18323. }
  18324. #endif
  18325. #ifdef __LITTLE_ENDIAN__
  18326. __ai int32x2_t vqrdmulh_n_s32(int32x2_t __p0, int32_t __p1) {
  18327. int32x2_t __ret;
  18328. __ret = (int32x2_t) __builtin_neon_vqrdmulh_v((int8x8_t)__p0, (int8x8_t)(int32x2_t) {__p1, __p1}, 2);
  18329. return __ret;
  18330. }
  18331. #else
  18332. __ai int32x2_t vqrdmulh_n_s32(int32x2_t __p0, int32_t __p1) {
  18333. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  18334. int32x2_t __ret;
  18335. __ret = (int32x2_t) __builtin_neon_vqrdmulh_v((int8x8_t)__rev0, (int8x8_t)(int32x2_t) {__p1, __p1}, 2);
  18336. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  18337. return __ret;
  18338. }
  18339. #endif
  18340. #ifdef __LITTLE_ENDIAN__
  18341. __ai int16x4_t vqrdmulh_n_s16(int16x4_t __p0, int16_t __p1) {
  18342. int16x4_t __ret;
  18343. __ret = (int16x4_t) __builtin_neon_vqrdmulh_v((int8x8_t)__p0, (int8x8_t)(int16x4_t) {__p1, __p1, __p1, __p1}, 1);
  18344. return __ret;
  18345. }
  18346. #else
  18347. __ai int16x4_t vqrdmulh_n_s16(int16x4_t __p0, int16_t __p1) {
  18348. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  18349. int16x4_t __ret;
  18350. __ret = (int16x4_t) __builtin_neon_vqrdmulh_v((int8x8_t)__rev0, (int8x8_t)(int16x4_t) {__p1, __p1, __p1, __p1}, 1);
  18351. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  18352. return __ret;
  18353. }
  18354. #endif
  18355. #ifdef __LITTLE_ENDIAN__
  18356. __ai uint8x16_t vqrshlq_u8(uint8x16_t __p0, int8x16_t __p1) {
  18357. uint8x16_t __ret;
  18358. __ret = (uint8x16_t) __builtin_neon_vqrshlq_v((int8x16_t)__p0, (int8x16_t)__p1, 48);
  18359. return __ret;
  18360. }
  18361. #else
  18362. __ai uint8x16_t vqrshlq_u8(uint8x16_t __p0, int8x16_t __p1) {
  18363. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  18364. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  18365. uint8x16_t __ret;
  18366. __ret = (uint8x16_t) __builtin_neon_vqrshlq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 48);
  18367. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  18368. return __ret;
  18369. }
  18370. #endif
  18371. #ifdef __LITTLE_ENDIAN__
  18372. __ai uint32x4_t vqrshlq_u32(uint32x4_t __p0, int32x4_t __p1) {
  18373. uint32x4_t __ret;
  18374. __ret = (uint32x4_t) __builtin_neon_vqrshlq_v((int8x16_t)__p0, (int8x16_t)__p1, 50);
  18375. return __ret;
  18376. }
  18377. #else
  18378. __ai uint32x4_t vqrshlq_u32(uint32x4_t __p0, int32x4_t __p1) {
  18379. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  18380. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  18381. uint32x4_t __ret;
  18382. __ret = (uint32x4_t) __builtin_neon_vqrshlq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 50);
  18383. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  18384. return __ret;
  18385. }
  18386. #endif
  18387. #ifdef __LITTLE_ENDIAN__
  18388. __ai uint64x2_t vqrshlq_u64(uint64x2_t __p0, int64x2_t __p1) {
  18389. uint64x2_t __ret;
  18390. __ret = (uint64x2_t) __builtin_neon_vqrshlq_v((int8x16_t)__p0, (int8x16_t)__p1, 51);
  18391. return __ret;
  18392. }
  18393. #else
  18394. __ai uint64x2_t vqrshlq_u64(uint64x2_t __p0, int64x2_t __p1) {
  18395. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  18396. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  18397. uint64x2_t __ret;
  18398. __ret = (uint64x2_t) __builtin_neon_vqrshlq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 51);
  18399. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  18400. return __ret;
  18401. }
  18402. #endif
  18403. #ifdef __LITTLE_ENDIAN__
  18404. __ai uint16x8_t vqrshlq_u16(uint16x8_t __p0, int16x8_t __p1) {
  18405. uint16x8_t __ret;
  18406. __ret = (uint16x8_t) __builtin_neon_vqrshlq_v((int8x16_t)__p0, (int8x16_t)__p1, 49);
  18407. return __ret;
  18408. }
  18409. #else
  18410. __ai uint16x8_t vqrshlq_u16(uint16x8_t __p0, int16x8_t __p1) {
  18411. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  18412. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  18413. uint16x8_t __ret;
  18414. __ret = (uint16x8_t) __builtin_neon_vqrshlq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 49);
  18415. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  18416. return __ret;
  18417. }
  18418. #endif
  18419. #ifdef __LITTLE_ENDIAN__
  18420. __ai int8x16_t vqrshlq_s8(int8x16_t __p0, int8x16_t __p1) {
  18421. int8x16_t __ret;
  18422. __ret = (int8x16_t) __builtin_neon_vqrshlq_v((int8x16_t)__p0, (int8x16_t)__p1, 32);
  18423. return __ret;
  18424. }
  18425. #else
  18426. __ai int8x16_t vqrshlq_s8(int8x16_t __p0, int8x16_t __p1) {
  18427. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  18428. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  18429. int8x16_t __ret;
  18430. __ret = (int8x16_t) __builtin_neon_vqrshlq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 32);
  18431. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  18432. return __ret;
  18433. }
  18434. #endif
  18435. #ifdef __LITTLE_ENDIAN__
  18436. __ai int32x4_t vqrshlq_s32(int32x4_t __p0, int32x4_t __p1) {
  18437. int32x4_t __ret;
  18438. __ret = (int32x4_t) __builtin_neon_vqrshlq_v((int8x16_t)__p0, (int8x16_t)__p1, 34);
  18439. return __ret;
  18440. }
  18441. #else
  18442. __ai int32x4_t vqrshlq_s32(int32x4_t __p0, int32x4_t __p1) {
  18443. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  18444. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  18445. int32x4_t __ret;
  18446. __ret = (int32x4_t) __builtin_neon_vqrshlq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 34);
  18447. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  18448. return __ret;
  18449. }
  18450. #endif
  18451. #ifdef __LITTLE_ENDIAN__
  18452. __ai int64x2_t vqrshlq_s64(int64x2_t __p0, int64x2_t __p1) {
  18453. int64x2_t __ret;
  18454. __ret = (int64x2_t) __builtin_neon_vqrshlq_v((int8x16_t)__p0, (int8x16_t)__p1, 35);
  18455. return __ret;
  18456. }
  18457. #else
  18458. __ai int64x2_t vqrshlq_s64(int64x2_t __p0, int64x2_t __p1) {
  18459. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  18460. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  18461. int64x2_t __ret;
  18462. __ret = (int64x2_t) __builtin_neon_vqrshlq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 35);
  18463. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  18464. return __ret;
  18465. }
  18466. #endif
  18467. #ifdef __LITTLE_ENDIAN__
  18468. __ai int16x8_t vqrshlq_s16(int16x8_t __p0, int16x8_t __p1) {
  18469. int16x8_t __ret;
  18470. __ret = (int16x8_t) __builtin_neon_vqrshlq_v((int8x16_t)__p0, (int8x16_t)__p1, 33);
  18471. return __ret;
  18472. }
  18473. #else
  18474. __ai int16x8_t vqrshlq_s16(int16x8_t __p0, int16x8_t __p1) {
  18475. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  18476. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  18477. int16x8_t __ret;
  18478. __ret = (int16x8_t) __builtin_neon_vqrshlq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 33);
  18479. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  18480. return __ret;
  18481. }
  18482. #endif
  18483. #ifdef __LITTLE_ENDIAN__
  18484. __ai uint8x8_t vqrshl_u8(uint8x8_t __p0, int8x8_t __p1) {
  18485. uint8x8_t __ret;
  18486. __ret = (uint8x8_t) __builtin_neon_vqrshl_v((int8x8_t)__p0, (int8x8_t)__p1, 16);
  18487. return __ret;
  18488. }
  18489. #else
  18490. __ai uint8x8_t vqrshl_u8(uint8x8_t __p0, int8x8_t __p1) {
  18491. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  18492. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  18493. uint8x8_t __ret;
  18494. __ret = (uint8x8_t) __builtin_neon_vqrshl_v((int8x8_t)__rev0, (int8x8_t)__rev1, 16);
  18495. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  18496. return __ret;
  18497. }
  18498. #endif
  18499. #ifdef __LITTLE_ENDIAN__
  18500. __ai uint32x2_t vqrshl_u32(uint32x2_t __p0, int32x2_t __p1) {
  18501. uint32x2_t __ret;
  18502. __ret = (uint32x2_t) __builtin_neon_vqrshl_v((int8x8_t)__p0, (int8x8_t)__p1, 18);
  18503. return __ret;
  18504. }
  18505. #else
  18506. __ai uint32x2_t vqrshl_u32(uint32x2_t __p0, int32x2_t __p1) {
  18507. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  18508. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  18509. uint32x2_t __ret;
  18510. __ret = (uint32x2_t) __builtin_neon_vqrshl_v((int8x8_t)__rev0, (int8x8_t)__rev1, 18);
  18511. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  18512. return __ret;
  18513. }
  18514. #endif
  18515. #ifdef __LITTLE_ENDIAN__
  18516. __ai uint64x1_t vqrshl_u64(uint64x1_t __p0, int64x1_t __p1) {
  18517. uint64x1_t __ret;
  18518. __ret = (uint64x1_t) __builtin_neon_vqrshl_v((int8x8_t)__p0, (int8x8_t)__p1, 19);
  18519. return __ret;
  18520. }
  18521. #else
  18522. __ai uint64x1_t vqrshl_u64(uint64x1_t __p0, int64x1_t __p1) {
  18523. uint64x1_t __ret;
  18524. __ret = (uint64x1_t) __builtin_neon_vqrshl_v((int8x8_t)__p0, (int8x8_t)__p1, 19);
  18525. return __ret;
  18526. }
  18527. #endif
  18528. #ifdef __LITTLE_ENDIAN__
  18529. __ai uint16x4_t vqrshl_u16(uint16x4_t __p0, int16x4_t __p1) {
  18530. uint16x4_t __ret;
  18531. __ret = (uint16x4_t) __builtin_neon_vqrshl_v((int8x8_t)__p0, (int8x8_t)__p1, 17);
  18532. return __ret;
  18533. }
  18534. #else
  18535. __ai uint16x4_t vqrshl_u16(uint16x4_t __p0, int16x4_t __p1) {
  18536. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  18537. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  18538. uint16x4_t __ret;
  18539. __ret = (uint16x4_t) __builtin_neon_vqrshl_v((int8x8_t)__rev0, (int8x8_t)__rev1, 17);
  18540. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  18541. return __ret;
  18542. }
  18543. #endif
  18544. #ifdef __LITTLE_ENDIAN__
  18545. __ai int8x8_t vqrshl_s8(int8x8_t __p0, int8x8_t __p1) {
  18546. int8x8_t __ret;
  18547. __ret = (int8x8_t) __builtin_neon_vqrshl_v((int8x8_t)__p0, (int8x8_t)__p1, 0);
  18548. return __ret;
  18549. }
  18550. #else
  18551. __ai int8x8_t vqrshl_s8(int8x8_t __p0, int8x8_t __p1) {
  18552. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  18553. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  18554. int8x8_t __ret;
  18555. __ret = (int8x8_t) __builtin_neon_vqrshl_v((int8x8_t)__rev0, (int8x8_t)__rev1, 0);
  18556. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  18557. return __ret;
  18558. }
  18559. #endif
  18560. #ifdef __LITTLE_ENDIAN__
  18561. __ai int32x2_t vqrshl_s32(int32x2_t __p0, int32x2_t __p1) {
  18562. int32x2_t __ret;
  18563. __ret = (int32x2_t) __builtin_neon_vqrshl_v((int8x8_t)__p0, (int8x8_t)__p1, 2);
  18564. return __ret;
  18565. }
  18566. #else
  18567. __ai int32x2_t vqrshl_s32(int32x2_t __p0, int32x2_t __p1) {
  18568. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  18569. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  18570. int32x2_t __ret;
  18571. __ret = (int32x2_t) __builtin_neon_vqrshl_v((int8x8_t)__rev0, (int8x8_t)__rev1, 2);
  18572. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  18573. return __ret;
  18574. }
  18575. #endif
  18576. #ifdef __LITTLE_ENDIAN__
  18577. __ai int64x1_t vqrshl_s64(int64x1_t __p0, int64x1_t __p1) {
  18578. int64x1_t __ret;
  18579. __ret = (int64x1_t) __builtin_neon_vqrshl_v((int8x8_t)__p0, (int8x8_t)__p1, 3);
  18580. return __ret;
  18581. }
  18582. #else
  18583. __ai int64x1_t vqrshl_s64(int64x1_t __p0, int64x1_t __p1) {
  18584. int64x1_t __ret;
  18585. __ret = (int64x1_t) __builtin_neon_vqrshl_v((int8x8_t)__p0, (int8x8_t)__p1, 3);
  18586. return __ret;
  18587. }
  18588. #endif
  18589. #ifdef __LITTLE_ENDIAN__
  18590. __ai int16x4_t vqrshl_s16(int16x4_t __p0, int16x4_t __p1) {
  18591. int16x4_t __ret;
  18592. __ret = (int16x4_t) __builtin_neon_vqrshl_v((int8x8_t)__p0, (int8x8_t)__p1, 1);
  18593. return __ret;
  18594. }
  18595. #else
  18596. __ai int16x4_t vqrshl_s16(int16x4_t __p0, int16x4_t __p1) {
  18597. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  18598. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  18599. int16x4_t __ret;
  18600. __ret = (int16x4_t) __builtin_neon_vqrshl_v((int8x8_t)__rev0, (int8x8_t)__rev1, 1);
  18601. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  18602. return __ret;
  18603. }
  18604. #endif
  18605. #ifdef __LITTLE_ENDIAN__
  18606. #define vqrshrn_n_u32(__p0, __p1) __extension__ ({ \
  18607. uint32x4_t __s0 = __p0; \
  18608. uint16x4_t __ret; \
  18609. __ret = (uint16x4_t) __builtin_neon_vqrshrn_n_v((int8x16_t)__s0, __p1, 17); \
  18610. __ret; \
  18611. })
  18612. #else
  18613. #define vqrshrn_n_u32(__p0, __p1) __extension__ ({ \
  18614. uint32x4_t __s0 = __p0; \
  18615. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  18616. uint16x4_t __ret; \
  18617. __ret = (uint16x4_t) __builtin_neon_vqrshrn_n_v((int8x16_t)__rev0, __p1, 17); \
  18618. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  18619. __ret; \
  18620. })
  18621. #define __noswap_vqrshrn_n_u32(__p0, __p1) __extension__ ({ \
  18622. uint32x4_t __s0 = __p0; \
  18623. uint16x4_t __ret; \
  18624. __ret = (uint16x4_t) __builtin_neon_vqrshrn_n_v((int8x16_t)__s0, __p1, 17); \
  18625. __ret; \
  18626. })
  18627. #endif
  18628. #ifdef __LITTLE_ENDIAN__
  18629. #define vqrshrn_n_u64(__p0, __p1) __extension__ ({ \
  18630. uint64x2_t __s0 = __p0; \
  18631. uint32x2_t __ret; \
  18632. __ret = (uint32x2_t) __builtin_neon_vqrshrn_n_v((int8x16_t)__s0, __p1, 18); \
  18633. __ret; \
  18634. })
  18635. #else
  18636. #define vqrshrn_n_u64(__p0, __p1) __extension__ ({ \
  18637. uint64x2_t __s0 = __p0; \
  18638. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  18639. uint32x2_t __ret; \
  18640. __ret = (uint32x2_t) __builtin_neon_vqrshrn_n_v((int8x16_t)__rev0, __p1, 18); \
  18641. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  18642. __ret; \
  18643. })
  18644. #define __noswap_vqrshrn_n_u64(__p0, __p1) __extension__ ({ \
  18645. uint64x2_t __s0 = __p0; \
  18646. uint32x2_t __ret; \
  18647. __ret = (uint32x2_t) __builtin_neon_vqrshrn_n_v((int8x16_t)__s0, __p1, 18); \
  18648. __ret; \
  18649. })
  18650. #endif
  18651. #ifdef __LITTLE_ENDIAN__
  18652. #define vqrshrn_n_u16(__p0, __p1) __extension__ ({ \
  18653. uint16x8_t __s0 = __p0; \
  18654. uint8x8_t __ret; \
  18655. __ret = (uint8x8_t) __builtin_neon_vqrshrn_n_v((int8x16_t)__s0, __p1, 16); \
  18656. __ret; \
  18657. })
  18658. #else
  18659. #define vqrshrn_n_u16(__p0, __p1) __extension__ ({ \
  18660. uint16x8_t __s0 = __p0; \
  18661. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  18662. uint8x8_t __ret; \
  18663. __ret = (uint8x8_t) __builtin_neon_vqrshrn_n_v((int8x16_t)__rev0, __p1, 16); \
  18664. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  18665. __ret; \
  18666. })
  18667. #define __noswap_vqrshrn_n_u16(__p0, __p1) __extension__ ({ \
  18668. uint16x8_t __s0 = __p0; \
  18669. uint8x8_t __ret; \
  18670. __ret = (uint8x8_t) __builtin_neon_vqrshrn_n_v((int8x16_t)__s0, __p1, 16); \
  18671. __ret; \
  18672. })
  18673. #endif
  18674. #ifdef __LITTLE_ENDIAN__
  18675. #define vqrshrn_n_s32(__p0, __p1) __extension__ ({ \
  18676. int32x4_t __s0 = __p0; \
  18677. int16x4_t __ret; \
  18678. __ret = (int16x4_t) __builtin_neon_vqrshrn_n_v((int8x16_t)__s0, __p1, 1); \
  18679. __ret; \
  18680. })
  18681. #else
  18682. #define vqrshrn_n_s32(__p0, __p1) __extension__ ({ \
  18683. int32x4_t __s0 = __p0; \
  18684. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  18685. int16x4_t __ret; \
  18686. __ret = (int16x4_t) __builtin_neon_vqrshrn_n_v((int8x16_t)__rev0, __p1, 1); \
  18687. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  18688. __ret; \
  18689. })
  18690. #define __noswap_vqrshrn_n_s32(__p0, __p1) __extension__ ({ \
  18691. int32x4_t __s0 = __p0; \
  18692. int16x4_t __ret; \
  18693. __ret = (int16x4_t) __builtin_neon_vqrshrn_n_v((int8x16_t)__s0, __p1, 1); \
  18694. __ret; \
  18695. })
  18696. #endif
  18697. #ifdef __LITTLE_ENDIAN__
  18698. #define vqrshrn_n_s64(__p0, __p1) __extension__ ({ \
  18699. int64x2_t __s0 = __p0; \
  18700. int32x2_t __ret; \
  18701. __ret = (int32x2_t) __builtin_neon_vqrshrn_n_v((int8x16_t)__s0, __p1, 2); \
  18702. __ret; \
  18703. })
  18704. #else
  18705. #define vqrshrn_n_s64(__p0, __p1) __extension__ ({ \
  18706. int64x2_t __s0 = __p0; \
  18707. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  18708. int32x2_t __ret; \
  18709. __ret = (int32x2_t) __builtin_neon_vqrshrn_n_v((int8x16_t)__rev0, __p1, 2); \
  18710. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  18711. __ret; \
  18712. })
  18713. #define __noswap_vqrshrn_n_s64(__p0, __p1) __extension__ ({ \
  18714. int64x2_t __s0 = __p0; \
  18715. int32x2_t __ret; \
  18716. __ret = (int32x2_t) __builtin_neon_vqrshrn_n_v((int8x16_t)__s0, __p1, 2); \
  18717. __ret; \
  18718. })
  18719. #endif
  18720. #ifdef __LITTLE_ENDIAN__
  18721. #define vqrshrn_n_s16(__p0, __p1) __extension__ ({ \
  18722. int16x8_t __s0 = __p0; \
  18723. int8x8_t __ret; \
  18724. __ret = (int8x8_t) __builtin_neon_vqrshrn_n_v((int8x16_t)__s0, __p1, 0); \
  18725. __ret; \
  18726. })
  18727. #else
  18728. #define vqrshrn_n_s16(__p0, __p1) __extension__ ({ \
  18729. int16x8_t __s0 = __p0; \
  18730. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  18731. int8x8_t __ret; \
  18732. __ret = (int8x8_t) __builtin_neon_vqrshrn_n_v((int8x16_t)__rev0, __p1, 0); \
  18733. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  18734. __ret; \
  18735. })
  18736. #define __noswap_vqrshrn_n_s16(__p0, __p1) __extension__ ({ \
  18737. int16x8_t __s0 = __p0; \
  18738. int8x8_t __ret; \
  18739. __ret = (int8x8_t) __builtin_neon_vqrshrn_n_v((int8x16_t)__s0, __p1, 0); \
  18740. __ret; \
  18741. })
  18742. #endif
  18743. #ifdef __LITTLE_ENDIAN__
  18744. #define vqrshrun_n_s32(__p0, __p1) __extension__ ({ \
  18745. int32x4_t __s0 = __p0; \
  18746. uint16x4_t __ret; \
  18747. __ret = (uint16x4_t) __builtin_neon_vqrshrun_n_v((int8x16_t)__s0, __p1, 17); \
  18748. __ret; \
  18749. })
  18750. #else
  18751. #define vqrshrun_n_s32(__p0, __p1) __extension__ ({ \
  18752. int32x4_t __s0 = __p0; \
  18753. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  18754. uint16x4_t __ret; \
  18755. __ret = (uint16x4_t) __builtin_neon_vqrshrun_n_v((int8x16_t)__rev0, __p1, 17); \
  18756. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  18757. __ret; \
  18758. })
  18759. #define __noswap_vqrshrun_n_s32(__p0, __p1) __extension__ ({ \
  18760. int32x4_t __s0 = __p0; \
  18761. uint16x4_t __ret; \
  18762. __ret = (uint16x4_t) __builtin_neon_vqrshrun_n_v((int8x16_t)__s0, __p1, 17); \
  18763. __ret; \
  18764. })
  18765. #endif
  18766. #ifdef __LITTLE_ENDIAN__
  18767. #define vqrshrun_n_s64(__p0, __p1) __extension__ ({ \
  18768. int64x2_t __s0 = __p0; \
  18769. uint32x2_t __ret; \
  18770. __ret = (uint32x2_t) __builtin_neon_vqrshrun_n_v((int8x16_t)__s0, __p1, 18); \
  18771. __ret; \
  18772. })
  18773. #else
  18774. #define vqrshrun_n_s64(__p0, __p1) __extension__ ({ \
  18775. int64x2_t __s0 = __p0; \
  18776. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  18777. uint32x2_t __ret; \
  18778. __ret = (uint32x2_t) __builtin_neon_vqrshrun_n_v((int8x16_t)__rev0, __p1, 18); \
  18779. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  18780. __ret; \
  18781. })
  18782. #define __noswap_vqrshrun_n_s64(__p0, __p1) __extension__ ({ \
  18783. int64x2_t __s0 = __p0; \
  18784. uint32x2_t __ret; \
  18785. __ret = (uint32x2_t) __builtin_neon_vqrshrun_n_v((int8x16_t)__s0, __p1, 18); \
  18786. __ret; \
  18787. })
  18788. #endif
  18789. #ifdef __LITTLE_ENDIAN__
  18790. #define vqrshrun_n_s16(__p0, __p1) __extension__ ({ \
  18791. int16x8_t __s0 = __p0; \
  18792. uint8x8_t __ret; \
  18793. __ret = (uint8x8_t) __builtin_neon_vqrshrun_n_v((int8x16_t)__s0, __p1, 16); \
  18794. __ret; \
  18795. })
  18796. #else
  18797. #define vqrshrun_n_s16(__p0, __p1) __extension__ ({ \
  18798. int16x8_t __s0 = __p0; \
  18799. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  18800. uint8x8_t __ret; \
  18801. __ret = (uint8x8_t) __builtin_neon_vqrshrun_n_v((int8x16_t)__rev0, __p1, 16); \
  18802. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  18803. __ret; \
  18804. })
  18805. #define __noswap_vqrshrun_n_s16(__p0, __p1) __extension__ ({ \
  18806. int16x8_t __s0 = __p0; \
  18807. uint8x8_t __ret; \
  18808. __ret = (uint8x8_t) __builtin_neon_vqrshrun_n_v((int8x16_t)__s0, __p1, 16); \
  18809. __ret; \
  18810. })
  18811. #endif
  18812. #ifdef __LITTLE_ENDIAN__
  18813. __ai uint8x16_t vqshlq_u8(uint8x16_t __p0, int8x16_t __p1) {
  18814. uint8x16_t __ret;
  18815. __ret = (uint8x16_t) __builtin_neon_vqshlq_v((int8x16_t)__p0, (int8x16_t)__p1, 48);
  18816. return __ret;
  18817. }
  18818. #else
  18819. __ai uint8x16_t vqshlq_u8(uint8x16_t __p0, int8x16_t __p1) {
  18820. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  18821. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  18822. uint8x16_t __ret;
  18823. __ret = (uint8x16_t) __builtin_neon_vqshlq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 48);
  18824. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  18825. return __ret;
  18826. }
  18827. #endif
  18828. #ifdef __LITTLE_ENDIAN__
  18829. __ai uint32x4_t vqshlq_u32(uint32x4_t __p0, int32x4_t __p1) {
  18830. uint32x4_t __ret;
  18831. __ret = (uint32x4_t) __builtin_neon_vqshlq_v((int8x16_t)__p0, (int8x16_t)__p1, 50);
  18832. return __ret;
  18833. }
  18834. #else
  18835. __ai uint32x4_t vqshlq_u32(uint32x4_t __p0, int32x4_t __p1) {
  18836. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  18837. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  18838. uint32x4_t __ret;
  18839. __ret = (uint32x4_t) __builtin_neon_vqshlq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 50);
  18840. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  18841. return __ret;
  18842. }
  18843. #endif
  18844. #ifdef __LITTLE_ENDIAN__
  18845. __ai uint64x2_t vqshlq_u64(uint64x2_t __p0, int64x2_t __p1) {
  18846. uint64x2_t __ret;
  18847. __ret = (uint64x2_t) __builtin_neon_vqshlq_v((int8x16_t)__p0, (int8x16_t)__p1, 51);
  18848. return __ret;
  18849. }
  18850. #else
  18851. __ai uint64x2_t vqshlq_u64(uint64x2_t __p0, int64x2_t __p1) {
  18852. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  18853. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  18854. uint64x2_t __ret;
  18855. __ret = (uint64x2_t) __builtin_neon_vqshlq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 51);
  18856. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  18857. return __ret;
  18858. }
  18859. #endif
  18860. #ifdef __LITTLE_ENDIAN__
  18861. __ai uint16x8_t vqshlq_u16(uint16x8_t __p0, int16x8_t __p1) {
  18862. uint16x8_t __ret;
  18863. __ret = (uint16x8_t) __builtin_neon_vqshlq_v((int8x16_t)__p0, (int8x16_t)__p1, 49);
  18864. return __ret;
  18865. }
  18866. #else
  18867. __ai uint16x8_t vqshlq_u16(uint16x8_t __p0, int16x8_t __p1) {
  18868. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  18869. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  18870. uint16x8_t __ret;
  18871. __ret = (uint16x8_t) __builtin_neon_vqshlq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 49);
  18872. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  18873. return __ret;
  18874. }
  18875. #endif
  18876. #ifdef __LITTLE_ENDIAN__
  18877. __ai int8x16_t vqshlq_s8(int8x16_t __p0, int8x16_t __p1) {
  18878. int8x16_t __ret;
  18879. __ret = (int8x16_t) __builtin_neon_vqshlq_v((int8x16_t)__p0, (int8x16_t)__p1, 32);
  18880. return __ret;
  18881. }
  18882. #else
  18883. __ai int8x16_t vqshlq_s8(int8x16_t __p0, int8x16_t __p1) {
  18884. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  18885. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  18886. int8x16_t __ret;
  18887. __ret = (int8x16_t) __builtin_neon_vqshlq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 32);
  18888. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  18889. return __ret;
  18890. }
  18891. #endif
  18892. #ifdef __LITTLE_ENDIAN__
  18893. __ai int32x4_t vqshlq_s32(int32x4_t __p0, int32x4_t __p1) {
  18894. int32x4_t __ret;
  18895. __ret = (int32x4_t) __builtin_neon_vqshlq_v((int8x16_t)__p0, (int8x16_t)__p1, 34);
  18896. return __ret;
  18897. }
  18898. #else
  18899. __ai int32x4_t vqshlq_s32(int32x4_t __p0, int32x4_t __p1) {
  18900. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  18901. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  18902. int32x4_t __ret;
  18903. __ret = (int32x4_t) __builtin_neon_vqshlq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 34);
  18904. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  18905. return __ret;
  18906. }
  18907. #endif
  18908. #ifdef __LITTLE_ENDIAN__
  18909. __ai int64x2_t vqshlq_s64(int64x2_t __p0, int64x2_t __p1) {
  18910. int64x2_t __ret;
  18911. __ret = (int64x2_t) __builtin_neon_vqshlq_v((int8x16_t)__p0, (int8x16_t)__p1, 35);
  18912. return __ret;
  18913. }
  18914. #else
  18915. __ai int64x2_t vqshlq_s64(int64x2_t __p0, int64x2_t __p1) {
  18916. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  18917. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  18918. int64x2_t __ret;
  18919. __ret = (int64x2_t) __builtin_neon_vqshlq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 35);
  18920. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  18921. return __ret;
  18922. }
  18923. #endif
  18924. #ifdef __LITTLE_ENDIAN__
  18925. __ai int16x8_t vqshlq_s16(int16x8_t __p0, int16x8_t __p1) {
  18926. int16x8_t __ret;
  18927. __ret = (int16x8_t) __builtin_neon_vqshlq_v((int8x16_t)__p0, (int8x16_t)__p1, 33);
  18928. return __ret;
  18929. }
  18930. #else
  18931. __ai int16x8_t vqshlq_s16(int16x8_t __p0, int16x8_t __p1) {
  18932. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  18933. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  18934. int16x8_t __ret;
  18935. __ret = (int16x8_t) __builtin_neon_vqshlq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 33);
  18936. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  18937. return __ret;
  18938. }
  18939. #endif
  18940. #ifdef __LITTLE_ENDIAN__
  18941. __ai uint8x8_t vqshl_u8(uint8x8_t __p0, int8x8_t __p1) {
  18942. uint8x8_t __ret;
  18943. __ret = (uint8x8_t) __builtin_neon_vqshl_v((int8x8_t)__p0, (int8x8_t)__p1, 16);
  18944. return __ret;
  18945. }
  18946. #else
  18947. __ai uint8x8_t vqshl_u8(uint8x8_t __p0, int8x8_t __p1) {
  18948. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  18949. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  18950. uint8x8_t __ret;
  18951. __ret = (uint8x8_t) __builtin_neon_vqshl_v((int8x8_t)__rev0, (int8x8_t)__rev1, 16);
  18952. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  18953. return __ret;
  18954. }
  18955. #endif
  18956. #ifdef __LITTLE_ENDIAN__
  18957. __ai uint32x2_t vqshl_u32(uint32x2_t __p0, int32x2_t __p1) {
  18958. uint32x2_t __ret;
  18959. __ret = (uint32x2_t) __builtin_neon_vqshl_v((int8x8_t)__p0, (int8x8_t)__p1, 18);
  18960. return __ret;
  18961. }
  18962. #else
  18963. __ai uint32x2_t vqshl_u32(uint32x2_t __p0, int32x2_t __p1) {
  18964. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  18965. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  18966. uint32x2_t __ret;
  18967. __ret = (uint32x2_t) __builtin_neon_vqshl_v((int8x8_t)__rev0, (int8x8_t)__rev1, 18);
  18968. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  18969. return __ret;
  18970. }
  18971. #endif
  18972. #ifdef __LITTLE_ENDIAN__
  18973. __ai uint64x1_t vqshl_u64(uint64x1_t __p0, int64x1_t __p1) {
  18974. uint64x1_t __ret;
  18975. __ret = (uint64x1_t) __builtin_neon_vqshl_v((int8x8_t)__p0, (int8x8_t)__p1, 19);
  18976. return __ret;
  18977. }
  18978. #else
  18979. __ai uint64x1_t vqshl_u64(uint64x1_t __p0, int64x1_t __p1) {
  18980. uint64x1_t __ret;
  18981. __ret = (uint64x1_t) __builtin_neon_vqshl_v((int8x8_t)__p0, (int8x8_t)__p1, 19);
  18982. return __ret;
  18983. }
  18984. #endif
  18985. #ifdef __LITTLE_ENDIAN__
  18986. __ai uint16x4_t vqshl_u16(uint16x4_t __p0, int16x4_t __p1) {
  18987. uint16x4_t __ret;
  18988. __ret = (uint16x4_t) __builtin_neon_vqshl_v((int8x8_t)__p0, (int8x8_t)__p1, 17);
  18989. return __ret;
  18990. }
  18991. #else
  18992. __ai uint16x4_t vqshl_u16(uint16x4_t __p0, int16x4_t __p1) {
  18993. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  18994. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  18995. uint16x4_t __ret;
  18996. __ret = (uint16x4_t) __builtin_neon_vqshl_v((int8x8_t)__rev0, (int8x8_t)__rev1, 17);
  18997. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  18998. return __ret;
  18999. }
  19000. #endif
  19001. #ifdef __LITTLE_ENDIAN__
  19002. __ai int8x8_t vqshl_s8(int8x8_t __p0, int8x8_t __p1) {
  19003. int8x8_t __ret;
  19004. __ret = (int8x8_t) __builtin_neon_vqshl_v((int8x8_t)__p0, (int8x8_t)__p1, 0);
  19005. return __ret;
  19006. }
  19007. #else
  19008. __ai int8x8_t vqshl_s8(int8x8_t __p0, int8x8_t __p1) {
  19009. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  19010. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  19011. int8x8_t __ret;
  19012. __ret = (int8x8_t) __builtin_neon_vqshl_v((int8x8_t)__rev0, (int8x8_t)__rev1, 0);
  19013. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  19014. return __ret;
  19015. }
  19016. #endif
  19017. #ifdef __LITTLE_ENDIAN__
  19018. __ai int32x2_t vqshl_s32(int32x2_t __p0, int32x2_t __p1) {
  19019. int32x2_t __ret;
  19020. __ret = (int32x2_t) __builtin_neon_vqshl_v((int8x8_t)__p0, (int8x8_t)__p1, 2);
  19021. return __ret;
  19022. }
  19023. #else
  19024. __ai int32x2_t vqshl_s32(int32x2_t __p0, int32x2_t __p1) {
  19025. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  19026. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  19027. int32x2_t __ret;
  19028. __ret = (int32x2_t) __builtin_neon_vqshl_v((int8x8_t)__rev0, (int8x8_t)__rev1, 2);
  19029. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  19030. return __ret;
  19031. }
  19032. #endif
  19033. #ifdef __LITTLE_ENDIAN__
  19034. __ai int64x1_t vqshl_s64(int64x1_t __p0, int64x1_t __p1) {
  19035. int64x1_t __ret;
  19036. __ret = (int64x1_t) __builtin_neon_vqshl_v((int8x8_t)__p0, (int8x8_t)__p1, 3);
  19037. return __ret;
  19038. }
  19039. #else
  19040. __ai int64x1_t vqshl_s64(int64x1_t __p0, int64x1_t __p1) {
  19041. int64x1_t __ret;
  19042. __ret = (int64x1_t) __builtin_neon_vqshl_v((int8x8_t)__p0, (int8x8_t)__p1, 3);
  19043. return __ret;
  19044. }
  19045. #endif
  19046. #ifdef __LITTLE_ENDIAN__
  19047. __ai int16x4_t vqshl_s16(int16x4_t __p0, int16x4_t __p1) {
  19048. int16x4_t __ret;
  19049. __ret = (int16x4_t) __builtin_neon_vqshl_v((int8x8_t)__p0, (int8x8_t)__p1, 1);
  19050. return __ret;
  19051. }
  19052. #else
  19053. __ai int16x4_t vqshl_s16(int16x4_t __p0, int16x4_t __p1) {
  19054. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  19055. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  19056. int16x4_t __ret;
  19057. __ret = (int16x4_t) __builtin_neon_vqshl_v((int8x8_t)__rev0, (int8x8_t)__rev1, 1);
  19058. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  19059. return __ret;
  19060. }
  19061. #endif
  19062. #ifdef __LITTLE_ENDIAN__
  19063. #define vqshlq_n_u8(__p0, __p1) __extension__ ({ \
  19064. uint8x16_t __s0 = __p0; \
  19065. uint8x16_t __ret; \
  19066. __ret = (uint8x16_t) __builtin_neon_vqshlq_n_v((int8x16_t)__s0, __p1, 48); \
  19067. __ret; \
  19068. })
  19069. #else
  19070. #define vqshlq_n_u8(__p0, __p1) __extension__ ({ \
  19071. uint8x16_t __s0 = __p0; \
  19072. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  19073. uint8x16_t __ret; \
  19074. __ret = (uint8x16_t) __builtin_neon_vqshlq_n_v((int8x16_t)__rev0, __p1, 48); \
  19075. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  19076. __ret; \
  19077. })
  19078. #endif
  19079. #ifdef __LITTLE_ENDIAN__
  19080. #define vqshlq_n_u32(__p0, __p1) __extension__ ({ \
  19081. uint32x4_t __s0 = __p0; \
  19082. uint32x4_t __ret; \
  19083. __ret = (uint32x4_t) __builtin_neon_vqshlq_n_v((int8x16_t)__s0, __p1, 50); \
  19084. __ret; \
  19085. })
  19086. #else
  19087. #define vqshlq_n_u32(__p0, __p1) __extension__ ({ \
  19088. uint32x4_t __s0 = __p0; \
  19089. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  19090. uint32x4_t __ret; \
  19091. __ret = (uint32x4_t) __builtin_neon_vqshlq_n_v((int8x16_t)__rev0, __p1, 50); \
  19092. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  19093. __ret; \
  19094. })
  19095. #endif
  19096. #ifdef __LITTLE_ENDIAN__
  19097. #define vqshlq_n_u64(__p0, __p1) __extension__ ({ \
  19098. uint64x2_t __s0 = __p0; \
  19099. uint64x2_t __ret; \
  19100. __ret = (uint64x2_t) __builtin_neon_vqshlq_n_v((int8x16_t)__s0, __p1, 51); \
  19101. __ret; \
  19102. })
  19103. #else
  19104. #define vqshlq_n_u64(__p0, __p1) __extension__ ({ \
  19105. uint64x2_t __s0 = __p0; \
  19106. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  19107. uint64x2_t __ret; \
  19108. __ret = (uint64x2_t) __builtin_neon_vqshlq_n_v((int8x16_t)__rev0, __p1, 51); \
  19109. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  19110. __ret; \
  19111. })
  19112. #endif
  19113. #ifdef __LITTLE_ENDIAN__
  19114. #define vqshlq_n_u16(__p0, __p1) __extension__ ({ \
  19115. uint16x8_t __s0 = __p0; \
  19116. uint16x8_t __ret; \
  19117. __ret = (uint16x8_t) __builtin_neon_vqshlq_n_v((int8x16_t)__s0, __p1, 49); \
  19118. __ret; \
  19119. })
  19120. #else
  19121. #define vqshlq_n_u16(__p0, __p1) __extension__ ({ \
  19122. uint16x8_t __s0 = __p0; \
  19123. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  19124. uint16x8_t __ret; \
  19125. __ret = (uint16x8_t) __builtin_neon_vqshlq_n_v((int8x16_t)__rev0, __p1, 49); \
  19126. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  19127. __ret; \
  19128. })
  19129. #endif
  19130. #ifdef __LITTLE_ENDIAN__
  19131. #define vqshlq_n_s8(__p0, __p1) __extension__ ({ \
  19132. int8x16_t __s0 = __p0; \
  19133. int8x16_t __ret; \
  19134. __ret = (int8x16_t) __builtin_neon_vqshlq_n_v((int8x16_t)__s0, __p1, 32); \
  19135. __ret; \
  19136. })
  19137. #else
  19138. #define vqshlq_n_s8(__p0, __p1) __extension__ ({ \
  19139. int8x16_t __s0 = __p0; \
  19140. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  19141. int8x16_t __ret; \
  19142. __ret = (int8x16_t) __builtin_neon_vqshlq_n_v((int8x16_t)__rev0, __p1, 32); \
  19143. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  19144. __ret; \
  19145. })
  19146. #endif
  19147. #ifdef __LITTLE_ENDIAN__
  19148. #define vqshlq_n_s32(__p0, __p1) __extension__ ({ \
  19149. int32x4_t __s0 = __p0; \
  19150. int32x4_t __ret; \
  19151. __ret = (int32x4_t) __builtin_neon_vqshlq_n_v((int8x16_t)__s0, __p1, 34); \
  19152. __ret; \
  19153. })
  19154. #else
  19155. #define vqshlq_n_s32(__p0, __p1) __extension__ ({ \
  19156. int32x4_t __s0 = __p0; \
  19157. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  19158. int32x4_t __ret; \
  19159. __ret = (int32x4_t) __builtin_neon_vqshlq_n_v((int8x16_t)__rev0, __p1, 34); \
  19160. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  19161. __ret; \
  19162. })
  19163. #endif
  19164. #ifdef __LITTLE_ENDIAN__
  19165. #define vqshlq_n_s64(__p0, __p1) __extension__ ({ \
  19166. int64x2_t __s0 = __p0; \
  19167. int64x2_t __ret; \
  19168. __ret = (int64x2_t) __builtin_neon_vqshlq_n_v((int8x16_t)__s0, __p1, 35); \
  19169. __ret; \
  19170. })
  19171. #else
  19172. #define vqshlq_n_s64(__p0, __p1) __extension__ ({ \
  19173. int64x2_t __s0 = __p0; \
  19174. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  19175. int64x2_t __ret; \
  19176. __ret = (int64x2_t) __builtin_neon_vqshlq_n_v((int8x16_t)__rev0, __p1, 35); \
  19177. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  19178. __ret; \
  19179. })
  19180. #endif
  19181. #ifdef __LITTLE_ENDIAN__
  19182. #define vqshlq_n_s16(__p0, __p1) __extension__ ({ \
  19183. int16x8_t __s0 = __p0; \
  19184. int16x8_t __ret; \
  19185. __ret = (int16x8_t) __builtin_neon_vqshlq_n_v((int8x16_t)__s0, __p1, 33); \
  19186. __ret; \
  19187. })
  19188. #else
  19189. #define vqshlq_n_s16(__p0, __p1) __extension__ ({ \
  19190. int16x8_t __s0 = __p0; \
  19191. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  19192. int16x8_t __ret; \
  19193. __ret = (int16x8_t) __builtin_neon_vqshlq_n_v((int8x16_t)__rev0, __p1, 33); \
  19194. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  19195. __ret; \
  19196. })
  19197. #endif
  19198. #ifdef __LITTLE_ENDIAN__
  19199. #define vqshl_n_u8(__p0, __p1) __extension__ ({ \
  19200. uint8x8_t __s0 = __p0; \
  19201. uint8x8_t __ret; \
  19202. __ret = (uint8x8_t) __builtin_neon_vqshl_n_v((int8x8_t)__s0, __p1, 16); \
  19203. __ret; \
  19204. })
  19205. #else
  19206. #define vqshl_n_u8(__p0, __p1) __extension__ ({ \
  19207. uint8x8_t __s0 = __p0; \
  19208. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  19209. uint8x8_t __ret; \
  19210. __ret = (uint8x8_t) __builtin_neon_vqshl_n_v((int8x8_t)__rev0, __p1, 16); \
  19211. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  19212. __ret; \
  19213. })
  19214. #endif
  19215. #ifdef __LITTLE_ENDIAN__
  19216. #define vqshl_n_u32(__p0, __p1) __extension__ ({ \
  19217. uint32x2_t __s0 = __p0; \
  19218. uint32x2_t __ret; \
  19219. __ret = (uint32x2_t) __builtin_neon_vqshl_n_v((int8x8_t)__s0, __p1, 18); \
  19220. __ret; \
  19221. })
  19222. #else
  19223. #define vqshl_n_u32(__p0, __p1) __extension__ ({ \
  19224. uint32x2_t __s0 = __p0; \
  19225. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  19226. uint32x2_t __ret; \
  19227. __ret = (uint32x2_t) __builtin_neon_vqshl_n_v((int8x8_t)__rev0, __p1, 18); \
  19228. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  19229. __ret; \
  19230. })
  19231. #endif
  19232. #ifdef __LITTLE_ENDIAN__
  19233. #define vqshl_n_u64(__p0, __p1) __extension__ ({ \
  19234. uint64x1_t __s0 = __p0; \
  19235. uint64x1_t __ret; \
  19236. __ret = (uint64x1_t) __builtin_neon_vqshl_n_v((int8x8_t)__s0, __p1, 19); \
  19237. __ret; \
  19238. })
  19239. #else
  19240. #define vqshl_n_u64(__p0, __p1) __extension__ ({ \
  19241. uint64x1_t __s0 = __p0; \
  19242. uint64x1_t __ret; \
  19243. __ret = (uint64x1_t) __builtin_neon_vqshl_n_v((int8x8_t)__s0, __p1, 19); \
  19244. __ret; \
  19245. })
  19246. #endif
  19247. #ifdef __LITTLE_ENDIAN__
  19248. #define vqshl_n_u16(__p0, __p1) __extension__ ({ \
  19249. uint16x4_t __s0 = __p0; \
  19250. uint16x4_t __ret; \
  19251. __ret = (uint16x4_t) __builtin_neon_vqshl_n_v((int8x8_t)__s0, __p1, 17); \
  19252. __ret; \
  19253. })
  19254. #else
  19255. #define vqshl_n_u16(__p0, __p1) __extension__ ({ \
  19256. uint16x4_t __s0 = __p0; \
  19257. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  19258. uint16x4_t __ret; \
  19259. __ret = (uint16x4_t) __builtin_neon_vqshl_n_v((int8x8_t)__rev0, __p1, 17); \
  19260. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  19261. __ret; \
  19262. })
  19263. #endif
  19264. #ifdef __LITTLE_ENDIAN__
  19265. #define vqshl_n_s8(__p0, __p1) __extension__ ({ \
  19266. int8x8_t __s0 = __p0; \
  19267. int8x8_t __ret; \
  19268. __ret = (int8x8_t) __builtin_neon_vqshl_n_v((int8x8_t)__s0, __p1, 0); \
  19269. __ret; \
  19270. })
  19271. #else
  19272. #define vqshl_n_s8(__p0, __p1) __extension__ ({ \
  19273. int8x8_t __s0 = __p0; \
  19274. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  19275. int8x8_t __ret; \
  19276. __ret = (int8x8_t) __builtin_neon_vqshl_n_v((int8x8_t)__rev0, __p1, 0); \
  19277. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  19278. __ret; \
  19279. })
  19280. #endif
  19281. #ifdef __LITTLE_ENDIAN__
  19282. #define vqshl_n_s32(__p0, __p1) __extension__ ({ \
  19283. int32x2_t __s0 = __p0; \
  19284. int32x2_t __ret; \
  19285. __ret = (int32x2_t) __builtin_neon_vqshl_n_v((int8x8_t)__s0, __p1, 2); \
  19286. __ret; \
  19287. })
  19288. #else
  19289. #define vqshl_n_s32(__p0, __p1) __extension__ ({ \
  19290. int32x2_t __s0 = __p0; \
  19291. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  19292. int32x2_t __ret; \
  19293. __ret = (int32x2_t) __builtin_neon_vqshl_n_v((int8x8_t)__rev0, __p1, 2); \
  19294. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  19295. __ret; \
  19296. })
  19297. #endif
  19298. #ifdef __LITTLE_ENDIAN__
  19299. #define vqshl_n_s64(__p0, __p1) __extension__ ({ \
  19300. int64x1_t __s0 = __p0; \
  19301. int64x1_t __ret; \
  19302. __ret = (int64x1_t) __builtin_neon_vqshl_n_v((int8x8_t)__s0, __p1, 3); \
  19303. __ret; \
  19304. })
  19305. #else
  19306. #define vqshl_n_s64(__p0, __p1) __extension__ ({ \
  19307. int64x1_t __s0 = __p0; \
  19308. int64x1_t __ret; \
  19309. __ret = (int64x1_t) __builtin_neon_vqshl_n_v((int8x8_t)__s0, __p1, 3); \
  19310. __ret; \
  19311. })
  19312. #endif
  19313. #ifdef __LITTLE_ENDIAN__
  19314. #define vqshl_n_s16(__p0, __p1) __extension__ ({ \
  19315. int16x4_t __s0 = __p0; \
  19316. int16x4_t __ret; \
  19317. __ret = (int16x4_t) __builtin_neon_vqshl_n_v((int8x8_t)__s0, __p1, 1); \
  19318. __ret; \
  19319. })
  19320. #else
  19321. #define vqshl_n_s16(__p0, __p1) __extension__ ({ \
  19322. int16x4_t __s0 = __p0; \
  19323. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  19324. int16x4_t __ret; \
  19325. __ret = (int16x4_t) __builtin_neon_vqshl_n_v((int8x8_t)__rev0, __p1, 1); \
  19326. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  19327. __ret; \
  19328. })
  19329. #endif
  19330. #ifdef __LITTLE_ENDIAN__
  19331. #define vqshluq_n_s8(__p0, __p1) __extension__ ({ \
  19332. int8x16_t __s0 = __p0; \
  19333. uint8x16_t __ret; \
  19334. __ret = (uint8x16_t) __builtin_neon_vqshluq_n_v((int8x16_t)__s0, __p1, 48); \
  19335. __ret; \
  19336. })
  19337. #else
  19338. #define vqshluq_n_s8(__p0, __p1) __extension__ ({ \
  19339. int8x16_t __s0 = __p0; \
  19340. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  19341. uint8x16_t __ret; \
  19342. __ret = (uint8x16_t) __builtin_neon_vqshluq_n_v((int8x16_t)__rev0, __p1, 48); \
  19343. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  19344. __ret; \
  19345. })
  19346. #endif
  19347. #ifdef __LITTLE_ENDIAN__
  19348. #define vqshluq_n_s32(__p0, __p1) __extension__ ({ \
  19349. int32x4_t __s0 = __p0; \
  19350. uint32x4_t __ret; \
  19351. __ret = (uint32x4_t) __builtin_neon_vqshluq_n_v((int8x16_t)__s0, __p1, 50); \
  19352. __ret; \
  19353. })
  19354. #else
  19355. #define vqshluq_n_s32(__p0, __p1) __extension__ ({ \
  19356. int32x4_t __s0 = __p0; \
  19357. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  19358. uint32x4_t __ret; \
  19359. __ret = (uint32x4_t) __builtin_neon_vqshluq_n_v((int8x16_t)__rev0, __p1, 50); \
  19360. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  19361. __ret; \
  19362. })
  19363. #endif
  19364. #ifdef __LITTLE_ENDIAN__
  19365. #define vqshluq_n_s64(__p0, __p1) __extension__ ({ \
  19366. int64x2_t __s0 = __p0; \
  19367. uint64x2_t __ret; \
  19368. __ret = (uint64x2_t) __builtin_neon_vqshluq_n_v((int8x16_t)__s0, __p1, 51); \
  19369. __ret; \
  19370. })
  19371. #else
  19372. #define vqshluq_n_s64(__p0, __p1) __extension__ ({ \
  19373. int64x2_t __s0 = __p0; \
  19374. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  19375. uint64x2_t __ret; \
  19376. __ret = (uint64x2_t) __builtin_neon_vqshluq_n_v((int8x16_t)__rev0, __p1, 51); \
  19377. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  19378. __ret; \
  19379. })
  19380. #endif
  19381. #ifdef __LITTLE_ENDIAN__
  19382. #define vqshluq_n_s16(__p0, __p1) __extension__ ({ \
  19383. int16x8_t __s0 = __p0; \
  19384. uint16x8_t __ret; \
  19385. __ret = (uint16x8_t) __builtin_neon_vqshluq_n_v((int8x16_t)__s0, __p1, 49); \
  19386. __ret; \
  19387. })
  19388. #else
  19389. #define vqshluq_n_s16(__p0, __p1) __extension__ ({ \
  19390. int16x8_t __s0 = __p0; \
  19391. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  19392. uint16x8_t __ret; \
  19393. __ret = (uint16x8_t) __builtin_neon_vqshluq_n_v((int8x16_t)__rev0, __p1, 49); \
  19394. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  19395. __ret; \
  19396. })
  19397. #endif
  19398. #ifdef __LITTLE_ENDIAN__
  19399. #define vqshlu_n_s8(__p0, __p1) __extension__ ({ \
  19400. int8x8_t __s0 = __p0; \
  19401. uint8x8_t __ret; \
  19402. __ret = (uint8x8_t) __builtin_neon_vqshlu_n_v((int8x8_t)__s0, __p1, 16); \
  19403. __ret; \
  19404. })
  19405. #else
  19406. #define vqshlu_n_s8(__p0, __p1) __extension__ ({ \
  19407. int8x8_t __s0 = __p0; \
  19408. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  19409. uint8x8_t __ret; \
  19410. __ret = (uint8x8_t) __builtin_neon_vqshlu_n_v((int8x8_t)__rev0, __p1, 16); \
  19411. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  19412. __ret; \
  19413. })
  19414. #endif
  19415. #ifdef __LITTLE_ENDIAN__
  19416. #define vqshlu_n_s32(__p0, __p1) __extension__ ({ \
  19417. int32x2_t __s0 = __p0; \
  19418. uint32x2_t __ret; \
  19419. __ret = (uint32x2_t) __builtin_neon_vqshlu_n_v((int8x8_t)__s0, __p1, 18); \
  19420. __ret; \
  19421. })
  19422. #else
  19423. #define vqshlu_n_s32(__p0, __p1) __extension__ ({ \
  19424. int32x2_t __s0 = __p0; \
  19425. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  19426. uint32x2_t __ret; \
  19427. __ret = (uint32x2_t) __builtin_neon_vqshlu_n_v((int8x8_t)__rev0, __p1, 18); \
  19428. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  19429. __ret; \
  19430. })
  19431. #endif
  19432. #ifdef __LITTLE_ENDIAN__
  19433. #define vqshlu_n_s64(__p0, __p1) __extension__ ({ \
  19434. int64x1_t __s0 = __p0; \
  19435. uint64x1_t __ret; \
  19436. __ret = (uint64x1_t) __builtin_neon_vqshlu_n_v((int8x8_t)__s0, __p1, 19); \
  19437. __ret; \
  19438. })
  19439. #else
  19440. #define vqshlu_n_s64(__p0, __p1) __extension__ ({ \
  19441. int64x1_t __s0 = __p0; \
  19442. uint64x1_t __ret; \
  19443. __ret = (uint64x1_t) __builtin_neon_vqshlu_n_v((int8x8_t)__s0, __p1, 19); \
  19444. __ret; \
  19445. })
  19446. #endif
  19447. #ifdef __LITTLE_ENDIAN__
  19448. #define vqshlu_n_s16(__p0, __p1) __extension__ ({ \
  19449. int16x4_t __s0 = __p0; \
  19450. uint16x4_t __ret; \
  19451. __ret = (uint16x4_t) __builtin_neon_vqshlu_n_v((int8x8_t)__s0, __p1, 17); \
  19452. __ret; \
  19453. })
  19454. #else
  19455. #define vqshlu_n_s16(__p0, __p1) __extension__ ({ \
  19456. int16x4_t __s0 = __p0; \
  19457. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  19458. uint16x4_t __ret; \
  19459. __ret = (uint16x4_t) __builtin_neon_vqshlu_n_v((int8x8_t)__rev0, __p1, 17); \
  19460. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  19461. __ret; \
  19462. })
  19463. #endif
  19464. #ifdef __LITTLE_ENDIAN__
  19465. #define vqshrn_n_u32(__p0, __p1) __extension__ ({ \
  19466. uint32x4_t __s0 = __p0; \
  19467. uint16x4_t __ret; \
  19468. __ret = (uint16x4_t) __builtin_neon_vqshrn_n_v((int8x16_t)__s0, __p1, 17); \
  19469. __ret; \
  19470. })
  19471. #else
  19472. #define vqshrn_n_u32(__p0, __p1) __extension__ ({ \
  19473. uint32x4_t __s0 = __p0; \
  19474. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  19475. uint16x4_t __ret; \
  19476. __ret = (uint16x4_t) __builtin_neon_vqshrn_n_v((int8x16_t)__rev0, __p1, 17); \
  19477. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  19478. __ret; \
  19479. })
  19480. #define __noswap_vqshrn_n_u32(__p0, __p1) __extension__ ({ \
  19481. uint32x4_t __s0 = __p0; \
  19482. uint16x4_t __ret; \
  19483. __ret = (uint16x4_t) __builtin_neon_vqshrn_n_v((int8x16_t)__s0, __p1, 17); \
  19484. __ret; \
  19485. })
  19486. #endif
  19487. #ifdef __LITTLE_ENDIAN__
  19488. #define vqshrn_n_u64(__p0, __p1) __extension__ ({ \
  19489. uint64x2_t __s0 = __p0; \
  19490. uint32x2_t __ret; \
  19491. __ret = (uint32x2_t) __builtin_neon_vqshrn_n_v((int8x16_t)__s0, __p1, 18); \
  19492. __ret; \
  19493. })
  19494. #else
  19495. #define vqshrn_n_u64(__p0, __p1) __extension__ ({ \
  19496. uint64x2_t __s0 = __p0; \
  19497. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  19498. uint32x2_t __ret; \
  19499. __ret = (uint32x2_t) __builtin_neon_vqshrn_n_v((int8x16_t)__rev0, __p1, 18); \
  19500. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  19501. __ret; \
  19502. })
  19503. #define __noswap_vqshrn_n_u64(__p0, __p1) __extension__ ({ \
  19504. uint64x2_t __s0 = __p0; \
  19505. uint32x2_t __ret; \
  19506. __ret = (uint32x2_t) __builtin_neon_vqshrn_n_v((int8x16_t)__s0, __p1, 18); \
  19507. __ret; \
  19508. })
  19509. #endif
  19510. #ifdef __LITTLE_ENDIAN__
  19511. #define vqshrn_n_u16(__p0, __p1) __extension__ ({ \
  19512. uint16x8_t __s0 = __p0; \
  19513. uint8x8_t __ret; \
  19514. __ret = (uint8x8_t) __builtin_neon_vqshrn_n_v((int8x16_t)__s0, __p1, 16); \
  19515. __ret; \
  19516. })
  19517. #else
  19518. #define vqshrn_n_u16(__p0, __p1) __extension__ ({ \
  19519. uint16x8_t __s0 = __p0; \
  19520. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  19521. uint8x8_t __ret; \
  19522. __ret = (uint8x8_t) __builtin_neon_vqshrn_n_v((int8x16_t)__rev0, __p1, 16); \
  19523. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  19524. __ret; \
  19525. })
  19526. #define __noswap_vqshrn_n_u16(__p0, __p1) __extension__ ({ \
  19527. uint16x8_t __s0 = __p0; \
  19528. uint8x8_t __ret; \
  19529. __ret = (uint8x8_t) __builtin_neon_vqshrn_n_v((int8x16_t)__s0, __p1, 16); \
  19530. __ret; \
  19531. })
  19532. #endif
  19533. #ifdef __LITTLE_ENDIAN__
  19534. #define vqshrn_n_s32(__p0, __p1) __extension__ ({ \
  19535. int32x4_t __s0 = __p0; \
  19536. int16x4_t __ret; \
  19537. __ret = (int16x4_t) __builtin_neon_vqshrn_n_v((int8x16_t)__s0, __p1, 1); \
  19538. __ret; \
  19539. })
  19540. #else
  19541. #define vqshrn_n_s32(__p0, __p1) __extension__ ({ \
  19542. int32x4_t __s0 = __p0; \
  19543. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  19544. int16x4_t __ret; \
  19545. __ret = (int16x4_t) __builtin_neon_vqshrn_n_v((int8x16_t)__rev0, __p1, 1); \
  19546. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  19547. __ret; \
  19548. })
  19549. #define __noswap_vqshrn_n_s32(__p0, __p1) __extension__ ({ \
  19550. int32x4_t __s0 = __p0; \
  19551. int16x4_t __ret; \
  19552. __ret = (int16x4_t) __builtin_neon_vqshrn_n_v((int8x16_t)__s0, __p1, 1); \
  19553. __ret; \
  19554. })
  19555. #endif
  19556. #ifdef __LITTLE_ENDIAN__
  19557. #define vqshrn_n_s64(__p0, __p1) __extension__ ({ \
  19558. int64x2_t __s0 = __p0; \
  19559. int32x2_t __ret; \
  19560. __ret = (int32x2_t) __builtin_neon_vqshrn_n_v((int8x16_t)__s0, __p1, 2); \
  19561. __ret; \
  19562. })
  19563. #else
  19564. #define vqshrn_n_s64(__p0, __p1) __extension__ ({ \
  19565. int64x2_t __s0 = __p0; \
  19566. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  19567. int32x2_t __ret; \
  19568. __ret = (int32x2_t) __builtin_neon_vqshrn_n_v((int8x16_t)__rev0, __p1, 2); \
  19569. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  19570. __ret; \
  19571. })
  19572. #define __noswap_vqshrn_n_s64(__p0, __p1) __extension__ ({ \
  19573. int64x2_t __s0 = __p0; \
  19574. int32x2_t __ret; \
  19575. __ret = (int32x2_t) __builtin_neon_vqshrn_n_v((int8x16_t)__s0, __p1, 2); \
  19576. __ret; \
  19577. })
  19578. #endif
  19579. #ifdef __LITTLE_ENDIAN__
  19580. #define vqshrn_n_s16(__p0, __p1) __extension__ ({ \
  19581. int16x8_t __s0 = __p0; \
  19582. int8x8_t __ret; \
  19583. __ret = (int8x8_t) __builtin_neon_vqshrn_n_v((int8x16_t)__s0, __p1, 0); \
  19584. __ret; \
  19585. })
  19586. #else
  19587. #define vqshrn_n_s16(__p0, __p1) __extension__ ({ \
  19588. int16x8_t __s0 = __p0; \
  19589. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  19590. int8x8_t __ret; \
  19591. __ret = (int8x8_t) __builtin_neon_vqshrn_n_v((int8x16_t)__rev0, __p1, 0); \
  19592. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  19593. __ret; \
  19594. })
  19595. #define __noswap_vqshrn_n_s16(__p0, __p1) __extension__ ({ \
  19596. int16x8_t __s0 = __p0; \
  19597. int8x8_t __ret; \
  19598. __ret = (int8x8_t) __builtin_neon_vqshrn_n_v((int8x16_t)__s0, __p1, 0); \
  19599. __ret; \
  19600. })
  19601. #endif
  19602. #ifdef __LITTLE_ENDIAN__
  19603. #define vqshrun_n_s32(__p0, __p1) __extension__ ({ \
  19604. int32x4_t __s0 = __p0; \
  19605. uint16x4_t __ret; \
  19606. __ret = (uint16x4_t) __builtin_neon_vqshrun_n_v((int8x16_t)__s0, __p1, 17); \
  19607. __ret; \
  19608. })
  19609. #else
  19610. #define vqshrun_n_s32(__p0, __p1) __extension__ ({ \
  19611. int32x4_t __s0 = __p0; \
  19612. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  19613. uint16x4_t __ret; \
  19614. __ret = (uint16x4_t) __builtin_neon_vqshrun_n_v((int8x16_t)__rev0, __p1, 17); \
  19615. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  19616. __ret; \
  19617. })
  19618. #define __noswap_vqshrun_n_s32(__p0, __p1) __extension__ ({ \
  19619. int32x4_t __s0 = __p0; \
  19620. uint16x4_t __ret; \
  19621. __ret = (uint16x4_t) __builtin_neon_vqshrun_n_v((int8x16_t)__s0, __p1, 17); \
  19622. __ret; \
  19623. })
  19624. #endif
  19625. #ifdef __LITTLE_ENDIAN__
  19626. #define vqshrun_n_s64(__p0, __p1) __extension__ ({ \
  19627. int64x2_t __s0 = __p0; \
  19628. uint32x2_t __ret; \
  19629. __ret = (uint32x2_t) __builtin_neon_vqshrun_n_v((int8x16_t)__s0, __p1, 18); \
  19630. __ret; \
  19631. })
  19632. #else
  19633. #define vqshrun_n_s64(__p0, __p1) __extension__ ({ \
  19634. int64x2_t __s0 = __p0; \
  19635. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  19636. uint32x2_t __ret; \
  19637. __ret = (uint32x2_t) __builtin_neon_vqshrun_n_v((int8x16_t)__rev0, __p1, 18); \
  19638. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  19639. __ret; \
  19640. })
  19641. #define __noswap_vqshrun_n_s64(__p0, __p1) __extension__ ({ \
  19642. int64x2_t __s0 = __p0; \
  19643. uint32x2_t __ret; \
  19644. __ret = (uint32x2_t) __builtin_neon_vqshrun_n_v((int8x16_t)__s0, __p1, 18); \
  19645. __ret; \
  19646. })
  19647. #endif
  19648. #ifdef __LITTLE_ENDIAN__
  19649. #define vqshrun_n_s16(__p0, __p1) __extension__ ({ \
  19650. int16x8_t __s0 = __p0; \
  19651. uint8x8_t __ret; \
  19652. __ret = (uint8x8_t) __builtin_neon_vqshrun_n_v((int8x16_t)__s0, __p1, 16); \
  19653. __ret; \
  19654. })
  19655. #else
  19656. #define vqshrun_n_s16(__p0, __p1) __extension__ ({ \
  19657. int16x8_t __s0 = __p0; \
  19658. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  19659. uint8x8_t __ret; \
  19660. __ret = (uint8x8_t) __builtin_neon_vqshrun_n_v((int8x16_t)__rev0, __p1, 16); \
  19661. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  19662. __ret; \
  19663. })
  19664. #define __noswap_vqshrun_n_s16(__p0, __p1) __extension__ ({ \
  19665. int16x8_t __s0 = __p0; \
  19666. uint8x8_t __ret; \
  19667. __ret = (uint8x8_t) __builtin_neon_vqshrun_n_v((int8x16_t)__s0, __p1, 16); \
  19668. __ret; \
  19669. })
  19670. #endif
  19671. #ifdef __LITTLE_ENDIAN__
  19672. __ai uint8x16_t vqsubq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  19673. uint8x16_t __ret;
  19674. __ret = (uint8x16_t) __builtin_neon_vqsubq_v((int8x16_t)__p0, (int8x16_t)__p1, 48);
  19675. return __ret;
  19676. }
  19677. #else
  19678. __ai uint8x16_t vqsubq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  19679. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  19680. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  19681. uint8x16_t __ret;
  19682. __ret = (uint8x16_t) __builtin_neon_vqsubq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 48);
  19683. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  19684. return __ret;
  19685. }
  19686. #endif
  19687. #ifdef __LITTLE_ENDIAN__
  19688. __ai uint32x4_t vqsubq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  19689. uint32x4_t __ret;
  19690. __ret = (uint32x4_t) __builtin_neon_vqsubq_v((int8x16_t)__p0, (int8x16_t)__p1, 50);
  19691. return __ret;
  19692. }
  19693. #else
  19694. __ai uint32x4_t vqsubq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  19695. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  19696. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  19697. uint32x4_t __ret;
  19698. __ret = (uint32x4_t) __builtin_neon_vqsubq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 50);
  19699. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  19700. return __ret;
  19701. }
  19702. #endif
  19703. #ifdef __LITTLE_ENDIAN__
  19704. __ai uint64x2_t vqsubq_u64(uint64x2_t __p0, uint64x2_t __p1) {
  19705. uint64x2_t __ret;
  19706. __ret = (uint64x2_t) __builtin_neon_vqsubq_v((int8x16_t)__p0, (int8x16_t)__p1, 51);
  19707. return __ret;
  19708. }
  19709. #else
  19710. __ai uint64x2_t vqsubq_u64(uint64x2_t __p0, uint64x2_t __p1) {
  19711. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  19712. uint64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  19713. uint64x2_t __ret;
  19714. __ret = (uint64x2_t) __builtin_neon_vqsubq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 51);
  19715. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  19716. return __ret;
  19717. }
  19718. #endif
  19719. #ifdef __LITTLE_ENDIAN__
  19720. __ai uint16x8_t vqsubq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  19721. uint16x8_t __ret;
  19722. __ret = (uint16x8_t) __builtin_neon_vqsubq_v((int8x16_t)__p0, (int8x16_t)__p1, 49);
  19723. return __ret;
  19724. }
  19725. #else
  19726. __ai uint16x8_t vqsubq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  19727. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  19728. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  19729. uint16x8_t __ret;
  19730. __ret = (uint16x8_t) __builtin_neon_vqsubq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 49);
  19731. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  19732. return __ret;
  19733. }
  19734. #endif
  19735. #ifdef __LITTLE_ENDIAN__
  19736. __ai int8x16_t vqsubq_s8(int8x16_t __p0, int8x16_t __p1) {
  19737. int8x16_t __ret;
  19738. __ret = (int8x16_t) __builtin_neon_vqsubq_v((int8x16_t)__p0, (int8x16_t)__p1, 32);
  19739. return __ret;
  19740. }
  19741. #else
  19742. __ai int8x16_t vqsubq_s8(int8x16_t __p0, int8x16_t __p1) {
  19743. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  19744. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  19745. int8x16_t __ret;
  19746. __ret = (int8x16_t) __builtin_neon_vqsubq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 32);
  19747. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  19748. return __ret;
  19749. }
  19750. #endif
  19751. #ifdef __LITTLE_ENDIAN__
  19752. __ai int32x4_t vqsubq_s32(int32x4_t __p0, int32x4_t __p1) {
  19753. int32x4_t __ret;
  19754. __ret = (int32x4_t) __builtin_neon_vqsubq_v((int8x16_t)__p0, (int8x16_t)__p1, 34);
  19755. return __ret;
  19756. }
  19757. #else
  19758. __ai int32x4_t vqsubq_s32(int32x4_t __p0, int32x4_t __p1) {
  19759. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  19760. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  19761. int32x4_t __ret;
  19762. __ret = (int32x4_t) __builtin_neon_vqsubq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 34);
  19763. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  19764. return __ret;
  19765. }
  19766. __ai int32x4_t __noswap_vqsubq_s32(int32x4_t __p0, int32x4_t __p1) {
  19767. int32x4_t __ret;
  19768. __ret = (int32x4_t) __builtin_neon_vqsubq_v((int8x16_t)__p0, (int8x16_t)__p1, 34);
  19769. return __ret;
  19770. }
  19771. #endif
  19772. #ifdef __LITTLE_ENDIAN__
  19773. __ai int64x2_t vqsubq_s64(int64x2_t __p0, int64x2_t __p1) {
  19774. int64x2_t __ret;
  19775. __ret = (int64x2_t) __builtin_neon_vqsubq_v((int8x16_t)__p0, (int8x16_t)__p1, 35);
  19776. return __ret;
  19777. }
  19778. #else
  19779. __ai int64x2_t vqsubq_s64(int64x2_t __p0, int64x2_t __p1) {
  19780. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  19781. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  19782. int64x2_t __ret;
  19783. __ret = (int64x2_t) __builtin_neon_vqsubq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 35);
  19784. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  19785. return __ret;
  19786. }
  19787. #endif
  19788. #ifdef __LITTLE_ENDIAN__
  19789. __ai int16x8_t vqsubq_s16(int16x8_t __p0, int16x8_t __p1) {
  19790. int16x8_t __ret;
  19791. __ret = (int16x8_t) __builtin_neon_vqsubq_v((int8x16_t)__p0, (int8x16_t)__p1, 33);
  19792. return __ret;
  19793. }
  19794. #else
  19795. __ai int16x8_t vqsubq_s16(int16x8_t __p0, int16x8_t __p1) {
  19796. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  19797. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  19798. int16x8_t __ret;
  19799. __ret = (int16x8_t) __builtin_neon_vqsubq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 33);
  19800. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  19801. return __ret;
  19802. }
  19803. __ai int16x8_t __noswap_vqsubq_s16(int16x8_t __p0, int16x8_t __p1) {
  19804. int16x8_t __ret;
  19805. __ret = (int16x8_t) __builtin_neon_vqsubq_v((int8x16_t)__p0, (int8x16_t)__p1, 33);
  19806. return __ret;
  19807. }
  19808. #endif
  19809. #ifdef __LITTLE_ENDIAN__
  19810. __ai uint8x8_t vqsub_u8(uint8x8_t __p0, uint8x8_t __p1) {
  19811. uint8x8_t __ret;
  19812. __ret = (uint8x8_t) __builtin_neon_vqsub_v((int8x8_t)__p0, (int8x8_t)__p1, 16);
  19813. return __ret;
  19814. }
  19815. #else
  19816. __ai uint8x8_t vqsub_u8(uint8x8_t __p0, uint8x8_t __p1) {
  19817. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  19818. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  19819. uint8x8_t __ret;
  19820. __ret = (uint8x8_t) __builtin_neon_vqsub_v((int8x8_t)__rev0, (int8x8_t)__rev1, 16);
  19821. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  19822. return __ret;
  19823. }
  19824. #endif
  19825. #ifdef __LITTLE_ENDIAN__
  19826. __ai uint32x2_t vqsub_u32(uint32x2_t __p0, uint32x2_t __p1) {
  19827. uint32x2_t __ret;
  19828. __ret = (uint32x2_t) __builtin_neon_vqsub_v((int8x8_t)__p0, (int8x8_t)__p1, 18);
  19829. return __ret;
  19830. }
  19831. #else
  19832. __ai uint32x2_t vqsub_u32(uint32x2_t __p0, uint32x2_t __p1) {
  19833. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  19834. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  19835. uint32x2_t __ret;
  19836. __ret = (uint32x2_t) __builtin_neon_vqsub_v((int8x8_t)__rev0, (int8x8_t)__rev1, 18);
  19837. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  19838. return __ret;
  19839. }
  19840. #endif
  19841. #ifdef __LITTLE_ENDIAN__
  19842. __ai uint64x1_t vqsub_u64(uint64x1_t __p0, uint64x1_t __p1) {
  19843. uint64x1_t __ret;
  19844. __ret = (uint64x1_t) __builtin_neon_vqsub_v((int8x8_t)__p0, (int8x8_t)__p1, 19);
  19845. return __ret;
  19846. }
  19847. #else
  19848. __ai uint64x1_t vqsub_u64(uint64x1_t __p0, uint64x1_t __p1) {
  19849. uint64x1_t __ret;
  19850. __ret = (uint64x1_t) __builtin_neon_vqsub_v((int8x8_t)__p0, (int8x8_t)__p1, 19);
  19851. return __ret;
  19852. }
  19853. #endif
  19854. #ifdef __LITTLE_ENDIAN__
  19855. __ai uint16x4_t vqsub_u16(uint16x4_t __p0, uint16x4_t __p1) {
  19856. uint16x4_t __ret;
  19857. __ret = (uint16x4_t) __builtin_neon_vqsub_v((int8x8_t)__p0, (int8x8_t)__p1, 17);
  19858. return __ret;
  19859. }
  19860. #else
  19861. __ai uint16x4_t vqsub_u16(uint16x4_t __p0, uint16x4_t __p1) {
  19862. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  19863. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  19864. uint16x4_t __ret;
  19865. __ret = (uint16x4_t) __builtin_neon_vqsub_v((int8x8_t)__rev0, (int8x8_t)__rev1, 17);
  19866. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  19867. return __ret;
  19868. }
  19869. #endif
  19870. #ifdef __LITTLE_ENDIAN__
  19871. __ai int8x8_t vqsub_s8(int8x8_t __p0, int8x8_t __p1) {
  19872. int8x8_t __ret;
  19873. __ret = (int8x8_t) __builtin_neon_vqsub_v((int8x8_t)__p0, (int8x8_t)__p1, 0);
  19874. return __ret;
  19875. }
  19876. #else
  19877. __ai int8x8_t vqsub_s8(int8x8_t __p0, int8x8_t __p1) {
  19878. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  19879. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  19880. int8x8_t __ret;
  19881. __ret = (int8x8_t) __builtin_neon_vqsub_v((int8x8_t)__rev0, (int8x8_t)__rev1, 0);
  19882. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  19883. return __ret;
  19884. }
  19885. #endif
  19886. #ifdef __LITTLE_ENDIAN__
  19887. __ai int32x2_t vqsub_s32(int32x2_t __p0, int32x2_t __p1) {
  19888. int32x2_t __ret;
  19889. __ret = (int32x2_t) __builtin_neon_vqsub_v((int8x8_t)__p0, (int8x8_t)__p1, 2);
  19890. return __ret;
  19891. }
  19892. #else
  19893. __ai int32x2_t vqsub_s32(int32x2_t __p0, int32x2_t __p1) {
  19894. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  19895. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  19896. int32x2_t __ret;
  19897. __ret = (int32x2_t) __builtin_neon_vqsub_v((int8x8_t)__rev0, (int8x8_t)__rev1, 2);
  19898. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  19899. return __ret;
  19900. }
  19901. __ai int32x2_t __noswap_vqsub_s32(int32x2_t __p0, int32x2_t __p1) {
  19902. int32x2_t __ret;
  19903. __ret = (int32x2_t) __builtin_neon_vqsub_v((int8x8_t)__p0, (int8x8_t)__p1, 2);
  19904. return __ret;
  19905. }
  19906. #endif
  19907. #ifdef __LITTLE_ENDIAN__
  19908. __ai int64x1_t vqsub_s64(int64x1_t __p0, int64x1_t __p1) {
  19909. int64x1_t __ret;
  19910. __ret = (int64x1_t) __builtin_neon_vqsub_v((int8x8_t)__p0, (int8x8_t)__p1, 3);
  19911. return __ret;
  19912. }
  19913. #else
  19914. __ai int64x1_t vqsub_s64(int64x1_t __p0, int64x1_t __p1) {
  19915. int64x1_t __ret;
  19916. __ret = (int64x1_t) __builtin_neon_vqsub_v((int8x8_t)__p0, (int8x8_t)__p1, 3);
  19917. return __ret;
  19918. }
  19919. #endif
  19920. #ifdef __LITTLE_ENDIAN__
  19921. __ai int16x4_t vqsub_s16(int16x4_t __p0, int16x4_t __p1) {
  19922. int16x4_t __ret;
  19923. __ret = (int16x4_t) __builtin_neon_vqsub_v((int8x8_t)__p0, (int8x8_t)__p1, 1);
  19924. return __ret;
  19925. }
  19926. #else
  19927. __ai int16x4_t vqsub_s16(int16x4_t __p0, int16x4_t __p1) {
  19928. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  19929. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  19930. int16x4_t __ret;
  19931. __ret = (int16x4_t) __builtin_neon_vqsub_v((int8x8_t)__rev0, (int8x8_t)__rev1, 1);
  19932. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  19933. return __ret;
  19934. }
  19935. __ai int16x4_t __noswap_vqsub_s16(int16x4_t __p0, int16x4_t __p1) {
  19936. int16x4_t __ret;
  19937. __ret = (int16x4_t) __builtin_neon_vqsub_v((int8x8_t)__p0, (int8x8_t)__p1, 1);
  19938. return __ret;
  19939. }
  19940. #endif
  19941. #ifdef __LITTLE_ENDIAN__
  19942. __ai uint16x4_t vraddhn_u32(uint32x4_t __p0, uint32x4_t __p1) {
  19943. uint16x4_t __ret;
  19944. __ret = (uint16x4_t) __builtin_neon_vraddhn_v((int8x16_t)__p0, (int8x16_t)__p1, 17);
  19945. return __ret;
  19946. }
  19947. #else
  19948. __ai uint16x4_t vraddhn_u32(uint32x4_t __p0, uint32x4_t __p1) {
  19949. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  19950. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  19951. uint16x4_t __ret;
  19952. __ret = (uint16x4_t) __builtin_neon_vraddhn_v((int8x16_t)__rev0, (int8x16_t)__rev1, 17);
  19953. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  19954. return __ret;
  19955. }
  19956. __ai uint16x4_t __noswap_vraddhn_u32(uint32x4_t __p0, uint32x4_t __p1) {
  19957. uint16x4_t __ret;
  19958. __ret = (uint16x4_t) __builtin_neon_vraddhn_v((int8x16_t)__p0, (int8x16_t)__p1, 17);
  19959. return __ret;
  19960. }
  19961. #endif
  19962. #ifdef __LITTLE_ENDIAN__
  19963. __ai uint32x2_t vraddhn_u64(uint64x2_t __p0, uint64x2_t __p1) {
  19964. uint32x2_t __ret;
  19965. __ret = (uint32x2_t) __builtin_neon_vraddhn_v((int8x16_t)__p0, (int8x16_t)__p1, 18);
  19966. return __ret;
  19967. }
  19968. #else
  19969. __ai uint32x2_t vraddhn_u64(uint64x2_t __p0, uint64x2_t __p1) {
  19970. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  19971. uint64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  19972. uint32x2_t __ret;
  19973. __ret = (uint32x2_t) __builtin_neon_vraddhn_v((int8x16_t)__rev0, (int8x16_t)__rev1, 18);
  19974. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  19975. return __ret;
  19976. }
  19977. __ai uint32x2_t __noswap_vraddhn_u64(uint64x2_t __p0, uint64x2_t __p1) {
  19978. uint32x2_t __ret;
  19979. __ret = (uint32x2_t) __builtin_neon_vraddhn_v((int8x16_t)__p0, (int8x16_t)__p1, 18);
  19980. return __ret;
  19981. }
  19982. #endif
  19983. #ifdef __LITTLE_ENDIAN__
  19984. __ai uint8x8_t vraddhn_u16(uint16x8_t __p0, uint16x8_t __p1) {
  19985. uint8x8_t __ret;
  19986. __ret = (uint8x8_t) __builtin_neon_vraddhn_v((int8x16_t)__p0, (int8x16_t)__p1, 16);
  19987. return __ret;
  19988. }
  19989. #else
  19990. __ai uint8x8_t vraddhn_u16(uint16x8_t __p0, uint16x8_t __p1) {
  19991. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  19992. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  19993. uint8x8_t __ret;
  19994. __ret = (uint8x8_t) __builtin_neon_vraddhn_v((int8x16_t)__rev0, (int8x16_t)__rev1, 16);
  19995. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  19996. return __ret;
  19997. }
  19998. __ai uint8x8_t __noswap_vraddhn_u16(uint16x8_t __p0, uint16x8_t __p1) {
  19999. uint8x8_t __ret;
  20000. __ret = (uint8x8_t) __builtin_neon_vraddhn_v((int8x16_t)__p0, (int8x16_t)__p1, 16);
  20001. return __ret;
  20002. }
  20003. #endif
  20004. #ifdef __LITTLE_ENDIAN__
  20005. __ai int16x4_t vraddhn_s32(int32x4_t __p0, int32x4_t __p1) {
  20006. int16x4_t __ret;
  20007. __ret = (int16x4_t) __builtin_neon_vraddhn_v((int8x16_t)__p0, (int8x16_t)__p1, 1);
  20008. return __ret;
  20009. }
  20010. #else
  20011. __ai int16x4_t vraddhn_s32(int32x4_t __p0, int32x4_t __p1) {
  20012. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  20013. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  20014. int16x4_t __ret;
  20015. __ret = (int16x4_t) __builtin_neon_vraddhn_v((int8x16_t)__rev0, (int8x16_t)__rev1, 1);
  20016. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  20017. return __ret;
  20018. }
  20019. __ai int16x4_t __noswap_vraddhn_s32(int32x4_t __p0, int32x4_t __p1) {
  20020. int16x4_t __ret;
  20021. __ret = (int16x4_t) __builtin_neon_vraddhn_v((int8x16_t)__p0, (int8x16_t)__p1, 1);
  20022. return __ret;
  20023. }
  20024. #endif
  20025. #ifdef __LITTLE_ENDIAN__
  20026. __ai int32x2_t vraddhn_s64(int64x2_t __p0, int64x2_t __p1) {
  20027. int32x2_t __ret;
  20028. __ret = (int32x2_t) __builtin_neon_vraddhn_v((int8x16_t)__p0, (int8x16_t)__p1, 2);
  20029. return __ret;
  20030. }
  20031. #else
  20032. __ai int32x2_t vraddhn_s64(int64x2_t __p0, int64x2_t __p1) {
  20033. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  20034. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  20035. int32x2_t __ret;
  20036. __ret = (int32x2_t) __builtin_neon_vraddhn_v((int8x16_t)__rev0, (int8x16_t)__rev1, 2);
  20037. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  20038. return __ret;
  20039. }
  20040. __ai int32x2_t __noswap_vraddhn_s64(int64x2_t __p0, int64x2_t __p1) {
  20041. int32x2_t __ret;
  20042. __ret = (int32x2_t) __builtin_neon_vraddhn_v((int8x16_t)__p0, (int8x16_t)__p1, 2);
  20043. return __ret;
  20044. }
  20045. #endif
  20046. #ifdef __LITTLE_ENDIAN__
  20047. __ai int8x8_t vraddhn_s16(int16x8_t __p0, int16x8_t __p1) {
  20048. int8x8_t __ret;
  20049. __ret = (int8x8_t) __builtin_neon_vraddhn_v((int8x16_t)__p0, (int8x16_t)__p1, 0);
  20050. return __ret;
  20051. }
  20052. #else
  20053. __ai int8x8_t vraddhn_s16(int16x8_t __p0, int16x8_t __p1) {
  20054. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  20055. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  20056. int8x8_t __ret;
  20057. __ret = (int8x8_t) __builtin_neon_vraddhn_v((int8x16_t)__rev0, (int8x16_t)__rev1, 0);
  20058. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  20059. return __ret;
  20060. }
  20061. __ai int8x8_t __noswap_vraddhn_s16(int16x8_t __p0, int16x8_t __p1) {
  20062. int8x8_t __ret;
  20063. __ret = (int8x8_t) __builtin_neon_vraddhn_v((int8x16_t)__p0, (int8x16_t)__p1, 0);
  20064. return __ret;
  20065. }
  20066. #endif
  20067. #ifdef __LITTLE_ENDIAN__
  20068. __ai uint32x4_t vrecpeq_u32(uint32x4_t __p0) {
  20069. uint32x4_t __ret;
  20070. __ret = (uint32x4_t) __builtin_neon_vrecpeq_v((int8x16_t)__p0, 50);
  20071. return __ret;
  20072. }
  20073. #else
  20074. __ai uint32x4_t vrecpeq_u32(uint32x4_t __p0) {
  20075. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  20076. uint32x4_t __ret;
  20077. __ret = (uint32x4_t) __builtin_neon_vrecpeq_v((int8x16_t)__rev0, 50);
  20078. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  20079. return __ret;
  20080. }
  20081. #endif
  20082. #ifdef __LITTLE_ENDIAN__
  20083. __ai float32x4_t vrecpeq_f32(float32x4_t __p0) {
  20084. float32x4_t __ret;
  20085. __ret = (float32x4_t) __builtin_neon_vrecpeq_v((int8x16_t)__p0, 41);
  20086. return __ret;
  20087. }
  20088. #else
  20089. __ai float32x4_t vrecpeq_f32(float32x4_t __p0) {
  20090. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  20091. float32x4_t __ret;
  20092. __ret = (float32x4_t) __builtin_neon_vrecpeq_v((int8x16_t)__rev0, 41);
  20093. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  20094. return __ret;
  20095. }
  20096. #endif
  20097. #ifdef __LITTLE_ENDIAN__
  20098. __ai uint32x2_t vrecpe_u32(uint32x2_t __p0) {
  20099. uint32x2_t __ret;
  20100. __ret = (uint32x2_t) __builtin_neon_vrecpe_v((int8x8_t)__p0, 18);
  20101. return __ret;
  20102. }
  20103. #else
  20104. __ai uint32x2_t vrecpe_u32(uint32x2_t __p0) {
  20105. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  20106. uint32x2_t __ret;
  20107. __ret = (uint32x2_t) __builtin_neon_vrecpe_v((int8x8_t)__rev0, 18);
  20108. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  20109. return __ret;
  20110. }
  20111. #endif
  20112. #ifdef __LITTLE_ENDIAN__
  20113. __ai float32x2_t vrecpe_f32(float32x2_t __p0) {
  20114. float32x2_t __ret;
  20115. __ret = (float32x2_t) __builtin_neon_vrecpe_v((int8x8_t)__p0, 9);
  20116. return __ret;
  20117. }
  20118. #else
  20119. __ai float32x2_t vrecpe_f32(float32x2_t __p0) {
  20120. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  20121. float32x2_t __ret;
  20122. __ret = (float32x2_t) __builtin_neon_vrecpe_v((int8x8_t)__rev0, 9);
  20123. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  20124. return __ret;
  20125. }
  20126. #endif
  20127. #ifdef __LITTLE_ENDIAN__
  20128. __ai float32x4_t vrecpsq_f32(float32x4_t __p0, float32x4_t __p1) {
  20129. float32x4_t __ret;
  20130. __ret = (float32x4_t) __builtin_neon_vrecpsq_v((int8x16_t)__p0, (int8x16_t)__p1, 41);
  20131. return __ret;
  20132. }
  20133. #else
  20134. __ai float32x4_t vrecpsq_f32(float32x4_t __p0, float32x4_t __p1) {
  20135. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  20136. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  20137. float32x4_t __ret;
  20138. __ret = (float32x4_t) __builtin_neon_vrecpsq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 41);
  20139. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  20140. return __ret;
  20141. }
  20142. #endif
  20143. #ifdef __LITTLE_ENDIAN__
  20144. __ai float32x2_t vrecps_f32(float32x2_t __p0, float32x2_t __p1) {
  20145. float32x2_t __ret;
  20146. __ret = (float32x2_t) __builtin_neon_vrecps_v((int8x8_t)__p0, (int8x8_t)__p1, 9);
  20147. return __ret;
  20148. }
  20149. #else
  20150. __ai float32x2_t vrecps_f32(float32x2_t __p0, float32x2_t __p1) {
  20151. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  20152. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  20153. float32x2_t __ret;
  20154. __ret = (float32x2_t) __builtin_neon_vrecps_v((int8x8_t)__rev0, (int8x8_t)__rev1, 9);
  20155. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  20156. return __ret;
  20157. }
  20158. #endif
  20159. #ifdef __LITTLE_ENDIAN__
  20160. __ai poly8x8_t vrev16_p8(poly8x8_t __p0) {
  20161. poly8x8_t __ret;
  20162. __ret = __builtin_shufflevector(__p0, __p0, 1, 0, 3, 2, 5, 4, 7, 6);
  20163. return __ret;
  20164. }
  20165. #else
  20166. __ai poly8x8_t vrev16_p8(poly8x8_t __p0) {
  20167. poly8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  20168. poly8x8_t __ret;
  20169. __ret = __builtin_shufflevector(__rev0, __rev0, 1, 0, 3, 2, 5, 4, 7, 6);
  20170. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  20171. return __ret;
  20172. }
  20173. #endif
  20174. #ifdef __LITTLE_ENDIAN__
  20175. __ai poly8x16_t vrev16q_p8(poly8x16_t __p0) {
  20176. poly8x16_t __ret;
  20177. __ret = __builtin_shufflevector(__p0, __p0, 1, 0, 3, 2, 5, 4, 7, 6, 9, 8, 11, 10, 13, 12, 15, 14);
  20178. return __ret;
  20179. }
  20180. #else
  20181. __ai poly8x16_t vrev16q_p8(poly8x16_t __p0) {
  20182. poly8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  20183. poly8x16_t __ret;
  20184. __ret = __builtin_shufflevector(__rev0, __rev0, 1, 0, 3, 2, 5, 4, 7, 6, 9, 8, 11, 10, 13, 12, 15, 14);
  20185. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  20186. return __ret;
  20187. }
  20188. #endif
  20189. #ifdef __LITTLE_ENDIAN__
  20190. __ai uint8x16_t vrev16q_u8(uint8x16_t __p0) {
  20191. uint8x16_t __ret;
  20192. __ret = __builtin_shufflevector(__p0, __p0, 1, 0, 3, 2, 5, 4, 7, 6, 9, 8, 11, 10, 13, 12, 15, 14);
  20193. return __ret;
  20194. }
  20195. #else
  20196. __ai uint8x16_t vrev16q_u8(uint8x16_t __p0) {
  20197. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  20198. uint8x16_t __ret;
  20199. __ret = __builtin_shufflevector(__rev0, __rev0, 1, 0, 3, 2, 5, 4, 7, 6, 9, 8, 11, 10, 13, 12, 15, 14);
  20200. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  20201. return __ret;
  20202. }
  20203. #endif
  20204. #ifdef __LITTLE_ENDIAN__
  20205. __ai int8x16_t vrev16q_s8(int8x16_t __p0) {
  20206. int8x16_t __ret;
  20207. __ret = __builtin_shufflevector(__p0, __p0, 1, 0, 3, 2, 5, 4, 7, 6, 9, 8, 11, 10, 13, 12, 15, 14);
  20208. return __ret;
  20209. }
  20210. #else
  20211. __ai int8x16_t vrev16q_s8(int8x16_t __p0) {
  20212. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  20213. int8x16_t __ret;
  20214. __ret = __builtin_shufflevector(__rev0, __rev0, 1, 0, 3, 2, 5, 4, 7, 6, 9, 8, 11, 10, 13, 12, 15, 14);
  20215. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  20216. return __ret;
  20217. }
  20218. #endif
  20219. #ifdef __LITTLE_ENDIAN__
  20220. __ai uint8x8_t vrev16_u8(uint8x8_t __p0) {
  20221. uint8x8_t __ret;
  20222. __ret = __builtin_shufflevector(__p0, __p0, 1, 0, 3, 2, 5, 4, 7, 6);
  20223. return __ret;
  20224. }
  20225. #else
  20226. __ai uint8x8_t vrev16_u8(uint8x8_t __p0) {
  20227. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  20228. uint8x8_t __ret;
  20229. __ret = __builtin_shufflevector(__rev0, __rev0, 1, 0, 3, 2, 5, 4, 7, 6);
  20230. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  20231. return __ret;
  20232. }
  20233. #endif
  20234. #ifdef __LITTLE_ENDIAN__
  20235. __ai int8x8_t vrev16_s8(int8x8_t __p0) {
  20236. int8x8_t __ret;
  20237. __ret = __builtin_shufflevector(__p0, __p0, 1, 0, 3, 2, 5, 4, 7, 6);
  20238. return __ret;
  20239. }
  20240. #else
  20241. __ai int8x8_t vrev16_s8(int8x8_t __p0) {
  20242. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  20243. int8x8_t __ret;
  20244. __ret = __builtin_shufflevector(__rev0, __rev0, 1, 0, 3, 2, 5, 4, 7, 6);
  20245. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  20246. return __ret;
  20247. }
  20248. #endif
  20249. #ifdef __LITTLE_ENDIAN__
  20250. __ai poly8x8_t vrev32_p8(poly8x8_t __p0) {
  20251. poly8x8_t __ret;
  20252. __ret = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0, 7, 6, 5, 4);
  20253. return __ret;
  20254. }
  20255. #else
  20256. __ai poly8x8_t vrev32_p8(poly8x8_t __p0) {
  20257. poly8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  20258. poly8x8_t __ret;
  20259. __ret = __builtin_shufflevector(__rev0, __rev0, 3, 2, 1, 0, 7, 6, 5, 4);
  20260. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  20261. return __ret;
  20262. }
  20263. #endif
  20264. #ifdef __LITTLE_ENDIAN__
  20265. __ai poly16x4_t vrev32_p16(poly16x4_t __p0) {
  20266. poly16x4_t __ret;
  20267. __ret = __builtin_shufflevector(__p0, __p0, 1, 0, 3, 2);
  20268. return __ret;
  20269. }
  20270. #else
  20271. __ai poly16x4_t vrev32_p16(poly16x4_t __p0) {
  20272. poly16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  20273. poly16x4_t __ret;
  20274. __ret = __builtin_shufflevector(__rev0, __rev0, 1, 0, 3, 2);
  20275. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  20276. return __ret;
  20277. }
  20278. #endif
  20279. #ifdef __LITTLE_ENDIAN__
  20280. __ai poly8x16_t vrev32q_p8(poly8x16_t __p0) {
  20281. poly8x16_t __ret;
  20282. __ret = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0, 7, 6, 5, 4, 11, 10, 9, 8, 15, 14, 13, 12);
  20283. return __ret;
  20284. }
  20285. #else
  20286. __ai poly8x16_t vrev32q_p8(poly8x16_t __p0) {
  20287. poly8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  20288. poly8x16_t __ret;
  20289. __ret = __builtin_shufflevector(__rev0, __rev0, 3, 2, 1, 0, 7, 6, 5, 4, 11, 10, 9, 8, 15, 14, 13, 12);
  20290. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  20291. return __ret;
  20292. }
  20293. #endif
  20294. #ifdef __LITTLE_ENDIAN__
  20295. __ai poly16x8_t vrev32q_p16(poly16x8_t __p0) {
  20296. poly16x8_t __ret;
  20297. __ret = __builtin_shufflevector(__p0, __p0, 1, 0, 3, 2, 5, 4, 7, 6);
  20298. return __ret;
  20299. }
  20300. #else
  20301. __ai poly16x8_t vrev32q_p16(poly16x8_t __p0) {
  20302. poly16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  20303. poly16x8_t __ret;
  20304. __ret = __builtin_shufflevector(__rev0, __rev0, 1, 0, 3, 2, 5, 4, 7, 6);
  20305. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  20306. return __ret;
  20307. }
  20308. #endif
  20309. #ifdef __LITTLE_ENDIAN__
  20310. __ai uint8x16_t vrev32q_u8(uint8x16_t __p0) {
  20311. uint8x16_t __ret;
  20312. __ret = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0, 7, 6, 5, 4, 11, 10, 9, 8, 15, 14, 13, 12);
  20313. return __ret;
  20314. }
  20315. #else
  20316. __ai uint8x16_t vrev32q_u8(uint8x16_t __p0) {
  20317. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  20318. uint8x16_t __ret;
  20319. __ret = __builtin_shufflevector(__rev0, __rev0, 3, 2, 1, 0, 7, 6, 5, 4, 11, 10, 9, 8, 15, 14, 13, 12);
  20320. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  20321. return __ret;
  20322. }
  20323. #endif
  20324. #ifdef __LITTLE_ENDIAN__
  20325. __ai uint16x8_t vrev32q_u16(uint16x8_t __p0) {
  20326. uint16x8_t __ret;
  20327. __ret = __builtin_shufflevector(__p0, __p0, 1, 0, 3, 2, 5, 4, 7, 6);
  20328. return __ret;
  20329. }
  20330. #else
  20331. __ai uint16x8_t vrev32q_u16(uint16x8_t __p0) {
  20332. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  20333. uint16x8_t __ret;
  20334. __ret = __builtin_shufflevector(__rev0, __rev0, 1, 0, 3, 2, 5, 4, 7, 6);
  20335. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  20336. return __ret;
  20337. }
  20338. #endif
  20339. #ifdef __LITTLE_ENDIAN__
  20340. __ai int8x16_t vrev32q_s8(int8x16_t __p0) {
  20341. int8x16_t __ret;
  20342. __ret = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0, 7, 6, 5, 4, 11, 10, 9, 8, 15, 14, 13, 12);
  20343. return __ret;
  20344. }
  20345. #else
  20346. __ai int8x16_t vrev32q_s8(int8x16_t __p0) {
  20347. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  20348. int8x16_t __ret;
  20349. __ret = __builtin_shufflevector(__rev0, __rev0, 3, 2, 1, 0, 7, 6, 5, 4, 11, 10, 9, 8, 15, 14, 13, 12);
  20350. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  20351. return __ret;
  20352. }
  20353. #endif
  20354. #ifdef __LITTLE_ENDIAN__
  20355. __ai int16x8_t vrev32q_s16(int16x8_t __p0) {
  20356. int16x8_t __ret;
  20357. __ret = __builtin_shufflevector(__p0, __p0, 1, 0, 3, 2, 5, 4, 7, 6);
  20358. return __ret;
  20359. }
  20360. #else
  20361. __ai int16x8_t vrev32q_s16(int16x8_t __p0) {
  20362. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  20363. int16x8_t __ret;
  20364. __ret = __builtin_shufflevector(__rev0, __rev0, 1, 0, 3, 2, 5, 4, 7, 6);
  20365. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  20366. return __ret;
  20367. }
  20368. #endif
  20369. #ifdef __LITTLE_ENDIAN__
  20370. __ai uint8x8_t vrev32_u8(uint8x8_t __p0) {
  20371. uint8x8_t __ret;
  20372. __ret = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0, 7, 6, 5, 4);
  20373. return __ret;
  20374. }
  20375. #else
  20376. __ai uint8x8_t vrev32_u8(uint8x8_t __p0) {
  20377. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  20378. uint8x8_t __ret;
  20379. __ret = __builtin_shufflevector(__rev0, __rev0, 3, 2, 1, 0, 7, 6, 5, 4);
  20380. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  20381. return __ret;
  20382. }
  20383. #endif
  20384. #ifdef __LITTLE_ENDIAN__
  20385. __ai uint16x4_t vrev32_u16(uint16x4_t __p0) {
  20386. uint16x4_t __ret;
  20387. __ret = __builtin_shufflevector(__p0, __p0, 1, 0, 3, 2);
  20388. return __ret;
  20389. }
  20390. #else
  20391. __ai uint16x4_t vrev32_u16(uint16x4_t __p0) {
  20392. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  20393. uint16x4_t __ret;
  20394. __ret = __builtin_shufflevector(__rev0, __rev0, 1, 0, 3, 2);
  20395. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  20396. return __ret;
  20397. }
  20398. #endif
  20399. #ifdef __LITTLE_ENDIAN__
  20400. __ai int8x8_t vrev32_s8(int8x8_t __p0) {
  20401. int8x8_t __ret;
  20402. __ret = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0, 7, 6, 5, 4);
  20403. return __ret;
  20404. }
  20405. #else
  20406. __ai int8x8_t vrev32_s8(int8x8_t __p0) {
  20407. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  20408. int8x8_t __ret;
  20409. __ret = __builtin_shufflevector(__rev0, __rev0, 3, 2, 1, 0, 7, 6, 5, 4);
  20410. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  20411. return __ret;
  20412. }
  20413. #endif
  20414. #ifdef __LITTLE_ENDIAN__
  20415. __ai int16x4_t vrev32_s16(int16x4_t __p0) {
  20416. int16x4_t __ret;
  20417. __ret = __builtin_shufflevector(__p0, __p0, 1, 0, 3, 2);
  20418. return __ret;
  20419. }
  20420. #else
  20421. __ai int16x4_t vrev32_s16(int16x4_t __p0) {
  20422. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  20423. int16x4_t __ret;
  20424. __ret = __builtin_shufflevector(__rev0, __rev0, 1, 0, 3, 2);
  20425. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  20426. return __ret;
  20427. }
  20428. #endif
  20429. #ifdef __LITTLE_ENDIAN__
  20430. __ai poly8x8_t vrev64_p8(poly8x8_t __p0) {
  20431. poly8x8_t __ret;
  20432. __ret = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  20433. return __ret;
  20434. }
  20435. #else
  20436. __ai poly8x8_t vrev64_p8(poly8x8_t __p0) {
  20437. poly8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  20438. poly8x8_t __ret;
  20439. __ret = __builtin_shufflevector(__rev0, __rev0, 7, 6, 5, 4, 3, 2, 1, 0);
  20440. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  20441. return __ret;
  20442. }
  20443. #endif
  20444. #ifdef __LITTLE_ENDIAN__
  20445. __ai poly16x4_t vrev64_p16(poly16x4_t __p0) {
  20446. poly16x4_t __ret;
  20447. __ret = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  20448. return __ret;
  20449. }
  20450. #else
  20451. __ai poly16x4_t vrev64_p16(poly16x4_t __p0) {
  20452. poly16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  20453. poly16x4_t __ret;
  20454. __ret = __builtin_shufflevector(__rev0, __rev0, 3, 2, 1, 0);
  20455. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  20456. return __ret;
  20457. }
  20458. #endif
  20459. #ifdef __LITTLE_ENDIAN__
  20460. __ai poly8x16_t vrev64q_p8(poly8x16_t __p0) {
  20461. poly8x16_t __ret;
  20462. __ret = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0, 15, 14, 13, 12, 11, 10, 9, 8);
  20463. return __ret;
  20464. }
  20465. #else
  20466. __ai poly8x16_t vrev64q_p8(poly8x16_t __p0) {
  20467. poly8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  20468. poly8x16_t __ret;
  20469. __ret = __builtin_shufflevector(__rev0, __rev0, 7, 6, 5, 4, 3, 2, 1, 0, 15, 14, 13, 12, 11, 10, 9, 8);
  20470. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  20471. return __ret;
  20472. }
  20473. #endif
  20474. #ifdef __LITTLE_ENDIAN__
  20475. __ai poly16x8_t vrev64q_p16(poly16x8_t __p0) {
  20476. poly16x8_t __ret;
  20477. __ret = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0, 7, 6, 5, 4);
  20478. return __ret;
  20479. }
  20480. #else
  20481. __ai poly16x8_t vrev64q_p16(poly16x8_t __p0) {
  20482. poly16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  20483. poly16x8_t __ret;
  20484. __ret = __builtin_shufflevector(__rev0, __rev0, 3, 2, 1, 0, 7, 6, 5, 4);
  20485. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  20486. return __ret;
  20487. }
  20488. #endif
  20489. #ifdef __LITTLE_ENDIAN__
  20490. __ai uint8x16_t vrev64q_u8(uint8x16_t __p0) {
  20491. uint8x16_t __ret;
  20492. __ret = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0, 15, 14, 13, 12, 11, 10, 9, 8);
  20493. return __ret;
  20494. }
  20495. #else
  20496. __ai uint8x16_t vrev64q_u8(uint8x16_t __p0) {
  20497. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  20498. uint8x16_t __ret;
  20499. __ret = __builtin_shufflevector(__rev0, __rev0, 7, 6, 5, 4, 3, 2, 1, 0, 15, 14, 13, 12, 11, 10, 9, 8);
  20500. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  20501. return __ret;
  20502. }
  20503. #endif
  20504. #ifdef __LITTLE_ENDIAN__
  20505. __ai uint32x4_t vrev64q_u32(uint32x4_t __p0) {
  20506. uint32x4_t __ret;
  20507. __ret = __builtin_shufflevector(__p0, __p0, 1, 0, 3, 2);
  20508. return __ret;
  20509. }
  20510. #else
  20511. __ai uint32x4_t vrev64q_u32(uint32x4_t __p0) {
  20512. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  20513. uint32x4_t __ret;
  20514. __ret = __builtin_shufflevector(__rev0, __rev0, 1, 0, 3, 2);
  20515. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  20516. return __ret;
  20517. }
  20518. #endif
  20519. #ifdef __LITTLE_ENDIAN__
  20520. __ai uint16x8_t vrev64q_u16(uint16x8_t __p0) {
  20521. uint16x8_t __ret;
  20522. __ret = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0, 7, 6, 5, 4);
  20523. return __ret;
  20524. }
  20525. #else
  20526. __ai uint16x8_t vrev64q_u16(uint16x8_t __p0) {
  20527. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  20528. uint16x8_t __ret;
  20529. __ret = __builtin_shufflevector(__rev0, __rev0, 3, 2, 1, 0, 7, 6, 5, 4);
  20530. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  20531. return __ret;
  20532. }
  20533. #endif
  20534. #ifdef __LITTLE_ENDIAN__
  20535. __ai int8x16_t vrev64q_s8(int8x16_t __p0) {
  20536. int8x16_t __ret;
  20537. __ret = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0, 15, 14, 13, 12, 11, 10, 9, 8);
  20538. return __ret;
  20539. }
  20540. #else
  20541. __ai int8x16_t vrev64q_s8(int8x16_t __p0) {
  20542. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  20543. int8x16_t __ret;
  20544. __ret = __builtin_shufflevector(__rev0, __rev0, 7, 6, 5, 4, 3, 2, 1, 0, 15, 14, 13, 12, 11, 10, 9, 8);
  20545. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  20546. return __ret;
  20547. }
  20548. #endif
  20549. #ifdef __LITTLE_ENDIAN__
  20550. __ai float32x4_t vrev64q_f32(float32x4_t __p0) {
  20551. float32x4_t __ret;
  20552. __ret = __builtin_shufflevector(__p0, __p0, 1, 0, 3, 2);
  20553. return __ret;
  20554. }
  20555. #else
  20556. __ai float32x4_t vrev64q_f32(float32x4_t __p0) {
  20557. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  20558. float32x4_t __ret;
  20559. __ret = __builtin_shufflevector(__rev0, __rev0, 1, 0, 3, 2);
  20560. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  20561. return __ret;
  20562. }
  20563. #endif
  20564. #ifdef __LITTLE_ENDIAN__
  20565. __ai int32x4_t vrev64q_s32(int32x4_t __p0) {
  20566. int32x4_t __ret;
  20567. __ret = __builtin_shufflevector(__p0, __p0, 1, 0, 3, 2);
  20568. return __ret;
  20569. }
  20570. #else
  20571. __ai int32x4_t vrev64q_s32(int32x4_t __p0) {
  20572. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  20573. int32x4_t __ret;
  20574. __ret = __builtin_shufflevector(__rev0, __rev0, 1, 0, 3, 2);
  20575. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  20576. return __ret;
  20577. }
  20578. #endif
  20579. #ifdef __LITTLE_ENDIAN__
  20580. __ai int16x8_t vrev64q_s16(int16x8_t __p0) {
  20581. int16x8_t __ret;
  20582. __ret = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0, 7, 6, 5, 4);
  20583. return __ret;
  20584. }
  20585. #else
  20586. __ai int16x8_t vrev64q_s16(int16x8_t __p0) {
  20587. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  20588. int16x8_t __ret;
  20589. __ret = __builtin_shufflevector(__rev0, __rev0, 3, 2, 1, 0, 7, 6, 5, 4);
  20590. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  20591. return __ret;
  20592. }
  20593. #endif
  20594. #ifdef __LITTLE_ENDIAN__
  20595. __ai uint8x8_t vrev64_u8(uint8x8_t __p0) {
  20596. uint8x8_t __ret;
  20597. __ret = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  20598. return __ret;
  20599. }
  20600. #else
  20601. __ai uint8x8_t vrev64_u8(uint8x8_t __p0) {
  20602. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  20603. uint8x8_t __ret;
  20604. __ret = __builtin_shufflevector(__rev0, __rev0, 7, 6, 5, 4, 3, 2, 1, 0);
  20605. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  20606. return __ret;
  20607. }
  20608. #endif
  20609. #ifdef __LITTLE_ENDIAN__
  20610. __ai uint32x2_t vrev64_u32(uint32x2_t __p0) {
  20611. uint32x2_t __ret;
  20612. __ret = __builtin_shufflevector(__p0, __p0, 1, 0);
  20613. return __ret;
  20614. }
  20615. #else
  20616. __ai uint32x2_t vrev64_u32(uint32x2_t __p0) {
  20617. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  20618. uint32x2_t __ret;
  20619. __ret = __builtin_shufflevector(__rev0, __rev0, 1, 0);
  20620. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  20621. return __ret;
  20622. }
  20623. #endif
  20624. #ifdef __LITTLE_ENDIAN__
  20625. __ai uint16x4_t vrev64_u16(uint16x4_t __p0) {
  20626. uint16x4_t __ret;
  20627. __ret = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  20628. return __ret;
  20629. }
  20630. #else
  20631. __ai uint16x4_t vrev64_u16(uint16x4_t __p0) {
  20632. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  20633. uint16x4_t __ret;
  20634. __ret = __builtin_shufflevector(__rev0, __rev0, 3, 2, 1, 0);
  20635. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  20636. return __ret;
  20637. }
  20638. #endif
  20639. #ifdef __LITTLE_ENDIAN__
  20640. __ai int8x8_t vrev64_s8(int8x8_t __p0) {
  20641. int8x8_t __ret;
  20642. __ret = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  20643. return __ret;
  20644. }
  20645. #else
  20646. __ai int8x8_t vrev64_s8(int8x8_t __p0) {
  20647. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  20648. int8x8_t __ret;
  20649. __ret = __builtin_shufflevector(__rev0, __rev0, 7, 6, 5, 4, 3, 2, 1, 0);
  20650. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  20651. return __ret;
  20652. }
  20653. #endif
  20654. #ifdef __LITTLE_ENDIAN__
  20655. __ai float32x2_t vrev64_f32(float32x2_t __p0) {
  20656. float32x2_t __ret;
  20657. __ret = __builtin_shufflevector(__p0, __p0, 1, 0);
  20658. return __ret;
  20659. }
  20660. #else
  20661. __ai float32x2_t vrev64_f32(float32x2_t __p0) {
  20662. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  20663. float32x2_t __ret;
  20664. __ret = __builtin_shufflevector(__rev0, __rev0, 1, 0);
  20665. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  20666. return __ret;
  20667. }
  20668. #endif
  20669. #ifdef __LITTLE_ENDIAN__
  20670. __ai int32x2_t vrev64_s32(int32x2_t __p0) {
  20671. int32x2_t __ret;
  20672. __ret = __builtin_shufflevector(__p0, __p0, 1, 0);
  20673. return __ret;
  20674. }
  20675. #else
  20676. __ai int32x2_t vrev64_s32(int32x2_t __p0) {
  20677. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  20678. int32x2_t __ret;
  20679. __ret = __builtin_shufflevector(__rev0, __rev0, 1, 0);
  20680. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  20681. return __ret;
  20682. }
  20683. #endif
  20684. #ifdef __LITTLE_ENDIAN__
  20685. __ai int16x4_t vrev64_s16(int16x4_t __p0) {
  20686. int16x4_t __ret;
  20687. __ret = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  20688. return __ret;
  20689. }
  20690. #else
  20691. __ai int16x4_t vrev64_s16(int16x4_t __p0) {
  20692. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  20693. int16x4_t __ret;
  20694. __ret = __builtin_shufflevector(__rev0, __rev0, 3, 2, 1, 0);
  20695. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  20696. return __ret;
  20697. }
  20698. #endif
  20699. #ifdef __LITTLE_ENDIAN__
  20700. __ai uint8x16_t vrhaddq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  20701. uint8x16_t __ret;
  20702. __ret = (uint8x16_t) __builtin_neon_vrhaddq_v((int8x16_t)__p0, (int8x16_t)__p1, 48);
  20703. return __ret;
  20704. }
  20705. #else
  20706. __ai uint8x16_t vrhaddq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  20707. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  20708. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  20709. uint8x16_t __ret;
  20710. __ret = (uint8x16_t) __builtin_neon_vrhaddq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 48);
  20711. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  20712. return __ret;
  20713. }
  20714. #endif
  20715. #ifdef __LITTLE_ENDIAN__
  20716. __ai uint32x4_t vrhaddq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  20717. uint32x4_t __ret;
  20718. __ret = (uint32x4_t) __builtin_neon_vrhaddq_v((int8x16_t)__p0, (int8x16_t)__p1, 50);
  20719. return __ret;
  20720. }
  20721. #else
  20722. __ai uint32x4_t vrhaddq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  20723. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  20724. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  20725. uint32x4_t __ret;
  20726. __ret = (uint32x4_t) __builtin_neon_vrhaddq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 50);
  20727. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  20728. return __ret;
  20729. }
  20730. #endif
  20731. #ifdef __LITTLE_ENDIAN__
  20732. __ai uint16x8_t vrhaddq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  20733. uint16x8_t __ret;
  20734. __ret = (uint16x8_t) __builtin_neon_vrhaddq_v((int8x16_t)__p0, (int8x16_t)__p1, 49);
  20735. return __ret;
  20736. }
  20737. #else
  20738. __ai uint16x8_t vrhaddq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  20739. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  20740. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  20741. uint16x8_t __ret;
  20742. __ret = (uint16x8_t) __builtin_neon_vrhaddq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 49);
  20743. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  20744. return __ret;
  20745. }
  20746. #endif
  20747. #ifdef __LITTLE_ENDIAN__
  20748. __ai int8x16_t vrhaddq_s8(int8x16_t __p0, int8x16_t __p1) {
  20749. int8x16_t __ret;
  20750. __ret = (int8x16_t) __builtin_neon_vrhaddq_v((int8x16_t)__p0, (int8x16_t)__p1, 32);
  20751. return __ret;
  20752. }
  20753. #else
  20754. __ai int8x16_t vrhaddq_s8(int8x16_t __p0, int8x16_t __p1) {
  20755. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  20756. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  20757. int8x16_t __ret;
  20758. __ret = (int8x16_t) __builtin_neon_vrhaddq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 32);
  20759. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  20760. return __ret;
  20761. }
  20762. #endif
  20763. #ifdef __LITTLE_ENDIAN__
  20764. __ai int32x4_t vrhaddq_s32(int32x4_t __p0, int32x4_t __p1) {
  20765. int32x4_t __ret;
  20766. __ret = (int32x4_t) __builtin_neon_vrhaddq_v((int8x16_t)__p0, (int8x16_t)__p1, 34);
  20767. return __ret;
  20768. }
  20769. #else
  20770. __ai int32x4_t vrhaddq_s32(int32x4_t __p0, int32x4_t __p1) {
  20771. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  20772. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  20773. int32x4_t __ret;
  20774. __ret = (int32x4_t) __builtin_neon_vrhaddq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 34);
  20775. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  20776. return __ret;
  20777. }
  20778. #endif
  20779. #ifdef __LITTLE_ENDIAN__
  20780. __ai int16x8_t vrhaddq_s16(int16x8_t __p0, int16x8_t __p1) {
  20781. int16x8_t __ret;
  20782. __ret = (int16x8_t) __builtin_neon_vrhaddq_v((int8x16_t)__p0, (int8x16_t)__p1, 33);
  20783. return __ret;
  20784. }
  20785. #else
  20786. __ai int16x8_t vrhaddq_s16(int16x8_t __p0, int16x8_t __p1) {
  20787. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  20788. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  20789. int16x8_t __ret;
  20790. __ret = (int16x8_t) __builtin_neon_vrhaddq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 33);
  20791. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  20792. return __ret;
  20793. }
  20794. #endif
  20795. #ifdef __LITTLE_ENDIAN__
  20796. __ai uint8x8_t vrhadd_u8(uint8x8_t __p0, uint8x8_t __p1) {
  20797. uint8x8_t __ret;
  20798. __ret = (uint8x8_t) __builtin_neon_vrhadd_v((int8x8_t)__p0, (int8x8_t)__p1, 16);
  20799. return __ret;
  20800. }
  20801. #else
  20802. __ai uint8x8_t vrhadd_u8(uint8x8_t __p0, uint8x8_t __p1) {
  20803. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  20804. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  20805. uint8x8_t __ret;
  20806. __ret = (uint8x8_t) __builtin_neon_vrhadd_v((int8x8_t)__rev0, (int8x8_t)__rev1, 16);
  20807. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  20808. return __ret;
  20809. }
  20810. #endif
  20811. #ifdef __LITTLE_ENDIAN__
  20812. __ai uint32x2_t vrhadd_u32(uint32x2_t __p0, uint32x2_t __p1) {
  20813. uint32x2_t __ret;
  20814. __ret = (uint32x2_t) __builtin_neon_vrhadd_v((int8x8_t)__p0, (int8x8_t)__p1, 18);
  20815. return __ret;
  20816. }
  20817. #else
  20818. __ai uint32x2_t vrhadd_u32(uint32x2_t __p0, uint32x2_t __p1) {
  20819. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  20820. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  20821. uint32x2_t __ret;
  20822. __ret = (uint32x2_t) __builtin_neon_vrhadd_v((int8x8_t)__rev0, (int8x8_t)__rev1, 18);
  20823. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  20824. return __ret;
  20825. }
  20826. #endif
  20827. #ifdef __LITTLE_ENDIAN__
  20828. __ai uint16x4_t vrhadd_u16(uint16x4_t __p0, uint16x4_t __p1) {
  20829. uint16x4_t __ret;
  20830. __ret = (uint16x4_t) __builtin_neon_vrhadd_v((int8x8_t)__p0, (int8x8_t)__p1, 17);
  20831. return __ret;
  20832. }
  20833. #else
  20834. __ai uint16x4_t vrhadd_u16(uint16x4_t __p0, uint16x4_t __p1) {
  20835. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  20836. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  20837. uint16x4_t __ret;
  20838. __ret = (uint16x4_t) __builtin_neon_vrhadd_v((int8x8_t)__rev0, (int8x8_t)__rev1, 17);
  20839. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  20840. return __ret;
  20841. }
  20842. #endif
  20843. #ifdef __LITTLE_ENDIAN__
  20844. __ai int8x8_t vrhadd_s8(int8x8_t __p0, int8x8_t __p1) {
  20845. int8x8_t __ret;
  20846. __ret = (int8x8_t) __builtin_neon_vrhadd_v((int8x8_t)__p0, (int8x8_t)__p1, 0);
  20847. return __ret;
  20848. }
  20849. #else
  20850. __ai int8x8_t vrhadd_s8(int8x8_t __p0, int8x8_t __p1) {
  20851. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  20852. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  20853. int8x8_t __ret;
  20854. __ret = (int8x8_t) __builtin_neon_vrhadd_v((int8x8_t)__rev0, (int8x8_t)__rev1, 0);
  20855. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  20856. return __ret;
  20857. }
  20858. #endif
  20859. #ifdef __LITTLE_ENDIAN__
  20860. __ai int32x2_t vrhadd_s32(int32x2_t __p0, int32x2_t __p1) {
  20861. int32x2_t __ret;
  20862. __ret = (int32x2_t) __builtin_neon_vrhadd_v((int8x8_t)__p0, (int8x8_t)__p1, 2);
  20863. return __ret;
  20864. }
  20865. #else
  20866. __ai int32x2_t vrhadd_s32(int32x2_t __p0, int32x2_t __p1) {
  20867. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  20868. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  20869. int32x2_t __ret;
  20870. __ret = (int32x2_t) __builtin_neon_vrhadd_v((int8x8_t)__rev0, (int8x8_t)__rev1, 2);
  20871. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  20872. return __ret;
  20873. }
  20874. #endif
  20875. #ifdef __LITTLE_ENDIAN__
  20876. __ai int16x4_t vrhadd_s16(int16x4_t __p0, int16x4_t __p1) {
  20877. int16x4_t __ret;
  20878. __ret = (int16x4_t) __builtin_neon_vrhadd_v((int8x8_t)__p0, (int8x8_t)__p1, 1);
  20879. return __ret;
  20880. }
  20881. #else
  20882. __ai int16x4_t vrhadd_s16(int16x4_t __p0, int16x4_t __p1) {
  20883. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  20884. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  20885. int16x4_t __ret;
  20886. __ret = (int16x4_t) __builtin_neon_vrhadd_v((int8x8_t)__rev0, (int8x8_t)__rev1, 1);
  20887. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  20888. return __ret;
  20889. }
  20890. #endif
  20891. #ifdef __LITTLE_ENDIAN__
  20892. __ai uint8x16_t vrshlq_u8(uint8x16_t __p0, int8x16_t __p1) {
  20893. uint8x16_t __ret;
  20894. __ret = (uint8x16_t) __builtin_neon_vrshlq_v((int8x16_t)__p0, (int8x16_t)__p1, 48);
  20895. return __ret;
  20896. }
  20897. #else
  20898. __ai uint8x16_t vrshlq_u8(uint8x16_t __p0, int8x16_t __p1) {
  20899. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  20900. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  20901. uint8x16_t __ret;
  20902. __ret = (uint8x16_t) __builtin_neon_vrshlq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 48);
  20903. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  20904. return __ret;
  20905. }
  20906. #endif
  20907. #ifdef __LITTLE_ENDIAN__
  20908. __ai uint32x4_t vrshlq_u32(uint32x4_t __p0, int32x4_t __p1) {
  20909. uint32x4_t __ret;
  20910. __ret = (uint32x4_t) __builtin_neon_vrshlq_v((int8x16_t)__p0, (int8x16_t)__p1, 50);
  20911. return __ret;
  20912. }
  20913. #else
  20914. __ai uint32x4_t vrshlq_u32(uint32x4_t __p0, int32x4_t __p1) {
  20915. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  20916. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  20917. uint32x4_t __ret;
  20918. __ret = (uint32x4_t) __builtin_neon_vrshlq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 50);
  20919. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  20920. return __ret;
  20921. }
  20922. #endif
  20923. #ifdef __LITTLE_ENDIAN__
  20924. __ai uint64x2_t vrshlq_u64(uint64x2_t __p0, int64x2_t __p1) {
  20925. uint64x2_t __ret;
  20926. __ret = (uint64x2_t) __builtin_neon_vrshlq_v((int8x16_t)__p0, (int8x16_t)__p1, 51);
  20927. return __ret;
  20928. }
  20929. #else
  20930. __ai uint64x2_t vrshlq_u64(uint64x2_t __p0, int64x2_t __p1) {
  20931. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  20932. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  20933. uint64x2_t __ret;
  20934. __ret = (uint64x2_t) __builtin_neon_vrshlq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 51);
  20935. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  20936. return __ret;
  20937. }
  20938. #endif
  20939. #ifdef __LITTLE_ENDIAN__
  20940. __ai uint16x8_t vrshlq_u16(uint16x8_t __p0, int16x8_t __p1) {
  20941. uint16x8_t __ret;
  20942. __ret = (uint16x8_t) __builtin_neon_vrshlq_v((int8x16_t)__p0, (int8x16_t)__p1, 49);
  20943. return __ret;
  20944. }
  20945. #else
  20946. __ai uint16x8_t vrshlq_u16(uint16x8_t __p0, int16x8_t __p1) {
  20947. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  20948. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  20949. uint16x8_t __ret;
  20950. __ret = (uint16x8_t) __builtin_neon_vrshlq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 49);
  20951. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  20952. return __ret;
  20953. }
  20954. #endif
  20955. #ifdef __LITTLE_ENDIAN__
  20956. __ai int8x16_t vrshlq_s8(int8x16_t __p0, int8x16_t __p1) {
  20957. int8x16_t __ret;
  20958. __ret = (int8x16_t) __builtin_neon_vrshlq_v((int8x16_t)__p0, (int8x16_t)__p1, 32);
  20959. return __ret;
  20960. }
  20961. #else
  20962. __ai int8x16_t vrshlq_s8(int8x16_t __p0, int8x16_t __p1) {
  20963. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  20964. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  20965. int8x16_t __ret;
  20966. __ret = (int8x16_t) __builtin_neon_vrshlq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 32);
  20967. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  20968. return __ret;
  20969. }
  20970. #endif
  20971. #ifdef __LITTLE_ENDIAN__
  20972. __ai int32x4_t vrshlq_s32(int32x4_t __p0, int32x4_t __p1) {
  20973. int32x4_t __ret;
  20974. __ret = (int32x4_t) __builtin_neon_vrshlq_v((int8x16_t)__p0, (int8x16_t)__p1, 34);
  20975. return __ret;
  20976. }
  20977. #else
  20978. __ai int32x4_t vrshlq_s32(int32x4_t __p0, int32x4_t __p1) {
  20979. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  20980. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  20981. int32x4_t __ret;
  20982. __ret = (int32x4_t) __builtin_neon_vrshlq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 34);
  20983. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  20984. return __ret;
  20985. }
  20986. #endif
  20987. #ifdef __LITTLE_ENDIAN__
  20988. __ai int64x2_t vrshlq_s64(int64x2_t __p0, int64x2_t __p1) {
  20989. int64x2_t __ret;
  20990. __ret = (int64x2_t) __builtin_neon_vrshlq_v((int8x16_t)__p0, (int8x16_t)__p1, 35);
  20991. return __ret;
  20992. }
  20993. #else
  20994. __ai int64x2_t vrshlq_s64(int64x2_t __p0, int64x2_t __p1) {
  20995. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  20996. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  20997. int64x2_t __ret;
  20998. __ret = (int64x2_t) __builtin_neon_vrshlq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 35);
  20999. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  21000. return __ret;
  21001. }
  21002. #endif
  21003. #ifdef __LITTLE_ENDIAN__
  21004. __ai int16x8_t vrshlq_s16(int16x8_t __p0, int16x8_t __p1) {
  21005. int16x8_t __ret;
  21006. __ret = (int16x8_t) __builtin_neon_vrshlq_v((int8x16_t)__p0, (int8x16_t)__p1, 33);
  21007. return __ret;
  21008. }
  21009. #else
  21010. __ai int16x8_t vrshlq_s16(int16x8_t __p0, int16x8_t __p1) {
  21011. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  21012. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  21013. int16x8_t __ret;
  21014. __ret = (int16x8_t) __builtin_neon_vrshlq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 33);
  21015. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  21016. return __ret;
  21017. }
  21018. #endif
  21019. #ifdef __LITTLE_ENDIAN__
  21020. __ai uint8x8_t vrshl_u8(uint8x8_t __p0, int8x8_t __p1) {
  21021. uint8x8_t __ret;
  21022. __ret = (uint8x8_t) __builtin_neon_vrshl_v((int8x8_t)__p0, (int8x8_t)__p1, 16);
  21023. return __ret;
  21024. }
  21025. #else
  21026. __ai uint8x8_t vrshl_u8(uint8x8_t __p0, int8x8_t __p1) {
  21027. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  21028. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  21029. uint8x8_t __ret;
  21030. __ret = (uint8x8_t) __builtin_neon_vrshl_v((int8x8_t)__rev0, (int8x8_t)__rev1, 16);
  21031. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  21032. return __ret;
  21033. }
  21034. #endif
  21035. #ifdef __LITTLE_ENDIAN__
  21036. __ai uint32x2_t vrshl_u32(uint32x2_t __p0, int32x2_t __p1) {
  21037. uint32x2_t __ret;
  21038. __ret = (uint32x2_t) __builtin_neon_vrshl_v((int8x8_t)__p0, (int8x8_t)__p1, 18);
  21039. return __ret;
  21040. }
  21041. #else
  21042. __ai uint32x2_t vrshl_u32(uint32x2_t __p0, int32x2_t __p1) {
  21043. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  21044. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  21045. uint32x2_t __ret;
  21046. __ret = (uint32x2_t) __builtin_neon_vrshl_v((int8x8_t)__rev0, (int8x8_t)__rev1, 18);
  21047. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  21048. return __ret;
  21049. }
  21050. #endif
  21051. #ifdef __LITTLE_ENDIAN__
  21052. __ai uint64x1_t vrshl_u64(uint64x1_t __p0, int64x1_t __p1) {
  21053. uint64x1_t __ret;
  21054. __ret = (uint64x1_t) __builtin_neon_vrshl_v((int8x8_t)__p0, (int8x8_t)__p1, 19);
  21055. return __ret;
  21056. }
  21057. #else
  21058. __ai uint64x1_t vrshl_u64(uint64x1_t __p0, int64x1_t __p1) {
  21059. uint64x1_t __ret;
  21060. __ret = (uint64x1_t) __builtin_neon_vrshl_v((int8x8_t)__p0, (int8x8_t)__p1, 19);
  21061. return __ret;
  21062. }
  21063. #endif
  21064. #ifdef __LITTLE_ENDIAN__
  21065. __ai uint16x4_t vrshl_u16(uint16x4_t __p0, int16x4_t __p1) {
  21066. uint16x4_t __ret;
  21067. __ret = (uint16x4_t) __builtin_neon_vrshl_v((int8x8_t)__p0, (int8x8_t)__p1, 17);
  21068. return __ret;
  21069. }
  21070. #else
  21071. __ai uint16x4_t vrshl_u16(uint16x4_t __p0, int16x4_t __p1) {
  21072. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  21073. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  21074. uint16x4_t __ret;
  21075. __ret = (uint16x4_t) __builtin_neon_vrshl_v((int8x8_t)__rev0, (int8x8_t)__rev1, 17);
  21076. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  21077. return __ret;
  21078. }
  21079. #endif
  21080. #ifdef __LITTLE_ENDIAN__
  21081. __ai int8x8_t vrshl_s8(int8x8_t __p0, int8x8_t __p1) {
  21082. int8x8_t __ret;
  21083. __ret = (int8x8_t) __builtin_neon_vrshl_v((int8x8_t)__p0, (int8x8_t)__p1, 0);
  21084. return __ret;
  21085. }
  21086. #else
  21087. __ai int8x8_t vrshl_s8(int8x8_t __p0, int8x8_t __p1) {
  21088. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  21089. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  21090. int8x8_t __ret;
  21091. __ret = (int8x8_t) __builtin_neon_vrshl_v((int8x8_t)__rev0, (int8x8_t)__rev1, 0);
  21092. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  21093. return __ret;
  21094. }
  21095. #endif
  21096. #ifdef __LITTLE_ENDIAN__
  21097. __ai int32x2_t vrshl_s32(int32x2_t __p0, int32x2_t __p1) {
  21098. int32x2_t __ret;
  21099. __ret = (int32x2_t) __builtin_neon_vrshl_v((int8x8_t)__p0, (int8x8_t)__p1, 2);
  21100. return __ret;
  21101. }
  21102. #else
  21103. __ai int32x2_t vrshl_s32(int32x2_t __p0, int32x2_t __p1) {
  21104. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  21105. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  21106. int32x2_t __ret;
  21107. __ret = (int32x2_t) __builtin_neon_vrshl_v((int8x8_t)__rev0, (int8x8_t)__rev1, 2);
  21108. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  21109. return __ret;
  21110. }
  21111. #endif
  21112. #ifdef __LITTLE_ENDIAN__
  21113. __ai int64x1_t vrshl_s64(int64x1_t __p0, int64x1_t __p1) {
  21114. int64x1_t __ret;
  21115. __ret = (int64x1_t) __builtin_neon_vrshl_v((int8x8_t)__p0, (int8x8_t)__p1, 3);
  21116. return __ret;
  21117. }
  21118. #else
  21119. __ai int64x1_t vrshl_s64(int64x1_t __p0, int64x1_t __p1) {
  21120. int64x1_t __ret;
  21121. __ret = (int64x1_t) __builtin_neon_vrshl_v((int8x8_t)__p0, (int8x8_t)__p1, 3);
  21122. return __ret;
  21123. }
  21124. #endif
  21125. #ifdef __LITTLE_ENDIAN__
  21126. __ai int16x4_t vrshl_s16(int16x4_t __p0, int16x4_t __p1) {
  21127. int16x4_t __ret;
  21128. __ret = (int16x4_t) __builtin_neon_vrshl_v((int8x8_t)__p0, (int8x8_t)__p1, 1);
  21129. return __ret;
  21130. }
  21131. #else
  21132. __ai int16x4_t vrshl_s16(int16x4_t __p0, int16x4_t __p1) {
  21133. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  21134. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  21135. int16x4_t __ret;
  21136. __ret = (int16x4_t) __builtin_neon_vrshl_v((int8x8_t)__rev0, (int8x8_t)__rev1, 1);
  21137. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  21138. return __ret;
  21139. }
  21140. #endif
  21141. #ifdef __LITTLE_ENDIAN__
  21142. #define vrshrq_n_u8(__p0, __p1) __extension__ ({ \
  21143. uint8x16_t __s0 = __p0; \
  21144. uint8x16_t __ret; \
  21145. __ret = (uint8x16_t) __builtin_neon_vrshrq_n_v((int8x16_t)__s0, __p1, 48); \
  21146. __ret; \
  21147. })
  21148. #else
  21149. #define vrshrq_n_u8(__p0, __p1) __extension__ ({ \
  21150. uint8x16_t __s0 = __p0; \
  21151. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  21152. uint8x16_t __ret; \
  21153. __ret = (uint8x16_t) __builtin_neon_vrshrq_n_v((int8x16_t)__rev0, __p1, 48); \
  21154. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  21155. __ret; \
  21156. })
  21157. #endif
  21158. #ifdef __LITTLE_ENDIAN__
  21159. #define vrshrq_n_u32(__p0, __p1) __extension__ ({ \
  21160. uint32x4_t __s0 = __p0; \
  21161. uint32x4_t __ret; \
  21162. __ret = (uint32x4_t) __builtin_neon_vrshrq_n_v((int8x16_t)__s0, __p1, 50); \
  21163. __ret; \
  21164. })
  21165. #else
  21166. #define vrshrq_n_u32(__p0, __p1) __extension__ ({ \
  21167. uint32x4_t __s0 = __p0; \
  21168. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  21169. uint32x4_t __ret; \
  21170. __ret = (uint32x4_t) __builtin_neon_vrshrq_n_v((int8x16_t)__rev0, __p1, 50); \
  21171. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  21172. __ret; \
  21173. })
  21174. #endif
  21175. #ifdef __LITTLE_ENDIAN__
  21176. #define vrshrq_n_u64(__p0, __p1) __extension__ ({ \
  21177. uint64x2_t __s0 = __p0; \
  21178. uint64x2_t __ret; \
  21179. __ret = (uint64x2_t) __builtin_neon_vrshrq_n_v((int8x16_t)__s0, __p1, 51); \
  21180. __ret; \
  21181. })
  21182. #else
  21183. #define vrshrq_n_u64(__p0, __p1) __extension__ ({ \
  21184. uint64x2_t __s0 = __p0; \
  21185. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  21186. uint64x2_t __ret; \
  21187. __ret = (uint64x2_t) __builtin_neon_vrshrq_n_v((int8x16_t)__rev0, __p1, 51); \
  21188. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  21189. __ret; \
  21190. })
  21191. #endif
  21192. #ifdef __LITTLE_ENDIAN__
  21193. #define vrshrq_n_u16(__p0, __p1) __extension__ ({ \
  21194. uint16x8_t __s0 = __p0; \
  21195. uint16x8_t __ret; \
  21196. __ret = (uint16x8_t) __builtin_neon_vrshrq_n_v((int8x16_t)__s0, __p1, 49); \
  21197. __ret; \
  21198. })
  21199. #else
  21200. #define vrshrq_n_u16(__p0, __p1) __extension__ ({ \
  21201. uint16x8_t __s0 = __p0; \
  21202. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  21203. uint16x8_t __ret; \
  21204. __ret = (uint16x8_t) __builtin_neon_vrshrq_n_v((int8x16_t)__rev0, __p1, 49); \
  21205. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  21206. __ret; \
  21207. })
  21208. #endif
  21209. #ifdef __LITTLE_ENDIAN__
  21210. #define vrshrq_n_s8(__p0, __p1) __extension__ ({ \
  21211. int8x16_t __s0 = __p0; \
  21212. int8x16_t __ret; \
  21213. __ret = (int8x16_t) __builtin_neon_vrshrq_n_v((int8x16_t)__s0, __p1, 32); \
  21214. __ret; \
  21215. })
  21216. #else
  21217. #define vrshrq_n_s8(__p0, __p1) __extension__ ({ \
  21218. int8x16_t __s0 = __p0; \
  21219. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  21220. int8x16_t __ret; \
  21221. __ret = (int8x16_t) __builtin_neon_vrshrq_n_v((int8x16_t)__rev0, __p1, 32); \
  21222. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  21223. __ret; \
  21224. })
  21225. #endif
  21226. #ifdef __LITTLE_ENDIAN__
  21227. #define vrshrq_n_s32(__p0, __p1) __extension__ ({ \
  21228. int32x4_t __s0 = __p0; \
  21229. int32x4_t __ret; \
  21230. __ret = (int32x4_t) __builtin_neon_vrshrq_n_v((int8x16_t)__s0, __p1, 34); \
  21231. __ret; \
  21232. })
  21233. #else
  21234. #define vrshrq_n_s32(__p0, __p1) __extension__ ({ \
  21235. int32x4_t __s0 = __p0; \
  21236. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  21237. int32x4_t __ret; \
  21238. __ret = (int32x4_t) __builtin_neon_vrshrq_n_v((int8x16_t)__rev0, __p1, 34); \
  21239. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  21240. __ret; \
  21241. })
  21242. #endif
  21243. #ifdef __LITTLE_ENDIAN__
  21244. #define vrshrq_n_s64(__p0, __p1) __extension__ ({ \
  21245. int64x2_t __s0 = __p0; \
  21246. int64x2_t __ret; \
  21247. __ret = (int64x2_t) __builtin_neon_vrshrq_n_v((int8x16_t)__s0, __p1, 35); \
  21248. __ret; \
  21249. })
  21250. #else
  21251. #define vrshrq_n_s64(__p0, __p1) __extension__ ({ \
  21252. int64x2_t __s0 = __p0; \
  21253. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  21254. int64x2_t __ret; \
  21255. __ret = (int64x2_t) __builtin_neon_vrshrq_n_v((int8x16_t)__rev0, __p1, 35); \
  21256. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  21257. __ret; \
  21258. })
  21259. #endif
  21260. #ifdef __LITTLE_ENDIAN__
  21261. #define vrshrq_n_s16(__p0, __p1) __extension__ ({ \
  21262. int16x8_t __s0 = __p0; \
  21263. int16x8_t __ret; \
  21264. __ret = (int16x8_t) __builtin_neon_vrshrq_n_v((int8x16_t)__s0, __p1, 33); \
  21265. __ret; \
  21266. })
  21267. #else
  21268. #define vrshrq_n_s16(__p0, __p1) __extension__ ({ \
  21269. int16x8_t __s0 = __p0; \
  21270. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  21271. int16x8_t __ret; \
  21272. __ret = (int16x8_t) __builtin_neon_vrshrq_n_v((int8x16_t)__rev0, __p1, 33); \
  21273. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  21274. __ret; \
  21275. })
  21276. #endif
  21277. #ifdef __LITTLE_ENDIAN__
  21278. #define vrshr_n_u8(__p0, __p1) __extension__ ({ \
  21279. uint8x8_t __s0 = __p0; \
  21280. uint8x8_t __ret; \
  21281. __ret = (uint8x8_t) __builtin_neon_vrshr_n_v((int8x8_t)__s0, __p1, 16); \
  21282. __ret; \
  21283. })
  21284. #else
  21285. #define vrshr_n_u8(__p0, __p1) __extension__ ({ \
  21286. uint8x8_t __s0 = __p0; \
  21287. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  21288. uint8x8_t __ret; \
  21289. __ret = (uint8x8_t) __builtin_neon_vrshr_n_v((int8x8_t)__rev0, __p1, 16); \
  21290. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  21291. __ret; \
  21292. })
  21293. #endif
  21294. #ifdef __LITTLE_ENDIAN__
  21295. #define vrshr_n_u32(__p0, __p1) __extension__ ({ \
  21296. uint32x2_t __s0 = __p0; \
  21297. uint32x2_t __ret; \
  21298. __ret = (uint32x2_t) __builtin_neon_vrshr_n_v((int8x8_t)__s0, __p1, 18); \
  21299. __ret; \
  21300. })
  21301. #else
  21302. #define vrshr_n_u32(__p0, __p1) __extension__ ({ \
  21303. uint32x2_t __s0 = __p0; \
  21304. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  21305. uint32x2_t __ret; \
  21306. __ret = (uint32x2_t) __builtin_neon_vrshr_n_v((int8x8_t)__rev0, __p1, 18); \
  21307. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  21308. __ret; \
  21309. })
  21310. #endif
  21311. #ifdef __LITTLE_ENDIAN__
  21312. #define vrshr_n_u64(__p0, __p1) __extension__ ({ \
  21313. uint64x1_t __s0 = __p0; \
  21314. uint64x1_t __ret; \
  21315. __ret = (uint64x1_t) __builtin_neon_vrshr_n_v((int8x8_t)__s0, __p1, 19); \
  21316. __ret; \
  21317. })
  21318. #else
  21319. #define vrshr_n_u64(__p0, __p1) __extension__ ({ \
  21320. uint64x1_t __s0 = __p0; \
  21321. uint64x1_t __ret; \
  21322. __ret = (uint64x1_t) __builtin_neon_vrshr_n_v((int8x8_t)__s0, __p1, 19); \
  21323. __ret; \
  21324. })
  21325. #endif
  21326. #ifdef __LITTLE_ENDIAN__
  21327. #define vrshr_n_u16(__p0, __p1) __extension__ ({ \
  21328. uint16x4_t __s0 = __p0; \
  21329. uint16x4_t __ret; \
  21330. __ret = (uint16x4_t) __builtin_neon_vrshr_n_v((int8x8_t)__s0, __p1, 17); \
  21331. __ret; \
  21332. })
  21333. #else
  21334. #define vrshr_n_u16(__p0, __p1) __extension__ ({ \
  21335. uint16x4_t __s0 = __p0; \
  21336. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  21337. uint16x4_t __ret; \
  21338. __ret = (uint16x4_t) __builtin_neon_vrshr_n_v((int8x8_t)__rev0, __p1, 17); \
  21339. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  21340. __ret; \
  21341. })
  21342. #endif
  21343. #ifdef __LITTLE_ENDIAN__
  21344. #define vrshr_n_s8(__p0, __p1) __extension__ ({ \
  21345. int8x8_t __s0 = __p0; \
  21346. int8x8_t __ret; \
  21347. __ret = (int8x8_t) __builtin_neon_vrshr_n_v((int8x8_t)__s0, __p1, 0); \
  21348. __ret; \
  21349. })
  21350. #else
  21351. #define vrshr_n_s8(__p0, __p1) __extension__ ({ \
  21352. int8x8_t __s0 = __p0; \
  21353. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  21354. int8x8_t __ret; \
  21355. __ret = (int8x8_t) __builtin_neon_vrshr_n_v((int8x8_t)__rev0, __p1, 0); \
  21356. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  21357. __ret; \
  21358. })
  21359. #endif
  21360. #ifdef __LITTLE_ENDIAN__
  21361. #define vrshr_n_s32(__p0, __p1) __extension__ ({ \
  21362. int32x2_t __s0 = __p0; \
  21363. int32x2_t __ret; \
  21364. __ret = (int32x2_t) __builtin_neon_vrshr_n_v((int8x8_t)__s0, __p1, 2); \
  21365. __ret; \
  21366. })
  21367. #else
  21368. #define vrshr_n_s32(__p0, __p1) __extension__ ({ \
  21369. int32x2_t __s0 = __p0; \
  21370. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  21371. int32x2_t __ret; \
  21372. __ret = (int32x2_t) __builtin_neon_vrshr_n_v((int8x8_t)__rev0, __p1, 2); \
  21373. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  21374. __ret; \
  21375. })
  21376. #endif
  21377. #ifdef __LITTLE_ENDIAN__
  21378. #define vrshr_n_s64(__p0, __p1) __extension__ ({ \
  21379. int64x1_t __s0 = __p0; \
  21380. int64x1_t __ret; \
  21381. __ret = (int64x1_t) __builtin_neon_vrshr_n_v((int8x8_t)__s0, __p1, 3); \
  21382. __ret; \
  21383. })
  21384. #else
  21385. #define vrshr_n_s64(__p0, __p1) __extension__ ({ \
  21386. int64x1_t __s0 = __p0; \
  21387. int64x1_t __ret; \
  21388. __ret = (int64x1_t) __builtin_neon_vrshr_n_v((int8x8_t)__s0, __p1, 3); \
  21389. __ret; \
  21390. })
  21391. #endif
  21392. #ifdef __LITTLE_ENDIAN__
  21393. #define vrshr_n_s16(__p0, __p1) __extension__ ({ \
  21394. int16x4_t __s0 = __p0; \
  21395. int16x4_t __ret; \
  21396. __ret = (int16x4_t) __builtin_neon_vrshr_n_v((int8x8_t)__s0, __p1, 1); \
  21397. __ret; \
  21398. })
  21399. #else
  21400. #define vrshr_n_s16(__p0, __p1) __extension__ ({ \
  21401. int16x4_t __s0 = __p0; \
  21402. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  21403. int16x4_t __ret; \
  21404. __ret = (int16x4_t) __builtin_neon_vrshr_n_v((int8x8_t)__rev0, __p1, 1); \
  21405. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  21406. __ret; \
  21407. })
  21408. #endif
  21409. #ifdef __LITTLE_ENDIAN__
  21410. #define vrshrn_n_u32(__p0, __p1) __extension__ ({ \
  21411. uint32x4_t __s0 = __p0; \
  21412. uint16x4_t __ret; \
  21413. __ret = (uint16x4_t) __builtin_neon_vrshrn_n_v((int8x16_t)__s0, __p1, 17); \
  21414. __ret; \
  21415. })
  21416. #else
  21417. #define vrshrn_n_u32(__p0, __p1) __extension__ ({ \
  21418. uint32x4_t __s0 = __p0; \
  21419. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  21420. uint16x4_t __ret; \
  21421. __ret = (uint16x4_t) __builtin_neon_vrshrn_n_v((int8x16_t)__rev0, __p1, 17); \
  21422. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  21423. __ret; \
  21424. })
  21425. #define __noswap_vrshrn_n_u32(__p0, __p1) __extension__ ({ \
  21426. uint32x4_t __s0 = __p0; \
  21427. uint16x4_t __ret; \
  21428. __ret = (uint16x4_t) __builtin_neon_vrshrn_n_v((int8x16_t)__s0, __p1, 17); \
  21429. __ret; \
  21430. })
  21431. #endif
  21432. #ifdef __LITTLE_ENDIAN__
  21433. #define vrshrn_n_u64(__p0, __p1) __extension__ ({ \
  21434. uint64x2_t __s0 = __p0; \
  21435. uint32x2_t __ret; \
  21436. __ret = (uint32x2_t) __builtin_neon_vrshrn_n_v((int8x16_t)__s0, __p1, 18); \
  21437. __ret; \
  21438. })
  21439. #else
  21440. #define vrshrn_n_u64(__p0, __p1) __extension__ ({ \
  21441. uint64x2_t __s0 = __p0; \
  21442. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  21443. uint32x2_t __ret; \
  21444. __ret = (uint32x2_t) __builtin_neon_vrshrn_n_v((int8x16_t)__rev0, __p1, 18); \
  21445. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  21446. __ret; \
  21447. })
  21448. #define __noswap_vrshrn_n_u64(__p0, __p1) __extension__ ({ \
  21449. uint64x2_t __s0 = __p0; \
  21450. uint32x2_t __ret; \
  21451. __ret = (uint32x2_t) __builtin_neon_vrshrn_n_v((int8x16_t)__s0, __p1, 18); \
  21452. __ret; \
  21453. })
  21454. #endif
  21455. #ifdef __LITTLE_ENDIAN__
  21456. #define vrshrn_n_u16(__p0, __p1) __extension__ ({ \
  21457. uint16x8_t __s0 = __p0; \
  21458. uint8x8_t __ret; \
  21459. __ret = (uint8x8_t) __builtin_neon_vrshrn_n_v((int8x16_t)__s0, __p1, 16); \
  21460. __ret; \
  21461. })
  21462. #else
  21463. #define vrshrn_n_u16(__p0, __p1) __extension__ ({ \
  21464. uint16x8_t __s0 = __p0; \
  21465. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  21466. uint8x8_t __ret; \
  21467. __ret = (uint8x8_t) __builtin_neon_vrshrn_n_v((int8x16_t)__rev0, __p1, 16); \
  21468. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  21469. __ret; \
  21470. })
  21471. #define __noswap_vrshrn_n_u16(__p0, __p1) __extension__ ({ \
  21472. uint16x8_t __s0 = __p0; \
  21473. uint8x8_t __ret; \
  21474. __ret = (uint8x8_t) __builtin_neon_vrshrn_n_v((int8x16_t)__s0, __p1, 16); \
  21475. __ret; \
  21476. })
  21477. #endif
  21478. #ifdef __LITTLE_ENDIAN__
  21479. #define vrshrn_n_s32(__p0, __p1) __extension__ ({ \
  21480. int32x4_t __s0 = __p0; \
  21481. int16x4_t __ret; \
  21482. __ret = (int16x4_t) __builtin_neon_vrshrn_n_v((int8x16_t)__s0, __p1, 1); \
  21483. __ret; \
  21484. })
  21485. #else
  21486. #define vrshrn_n_s32(__p0, __p1) __extension__ ({ \
  21487. int32x4_t __s0 = __p0; \
  21488. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  21489. int16x4_t __ret; \
  21490. __ret = (int16x4_t) __builtin_neon_vrshrn_n_v((int8x16_t)__rev0, __p1, 1); \
  21491. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  21492. __ret; \
  21493. })
  21494. #define __noswap_vrshrn_n_s32(__p0, __p1) __extension__ ({ \
  21495. int32x4_t __s0 = __p0; \
  21496. int16x4_t __ret; \
  21497. __ret = (int16x4_t) __builtin_neon_vrshrn_n_v((int8x16_t)__s0, __p1, 1); \
  21498. __ret; \
  21499. })
  21500. #endif
  21501. #ifdef __LITTLE_ENDIAN__
  21502. #define vrshrn_n_s64(__p0, __p1) __extension__ ({ \
  21503. int64x2_t __s0 = __p0; \
  21504. int32x2_t __ret; \
  21505. __ret = (int32x2_t) __builtin_neon_vrshrn_n_v((int8x16_t)__s0, __p1, 2); \
  21506. __ret; \
  21507. })
  21508. #else
  21509. #define vrshrn_n_s64(__p0, __p1) __extension__ ({ \
  21510. int64x2_t __s0 = __p0; \
  21511. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  21512. int32x2_t __ret; \
  21513. __ret = (int32x2_t) __builtin_neon_vrshrn_n_v((int8x16_t)__rev0, __p1, 2); \
  21514. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  21515. __ret; \
  21516. })
  21517. #define __noswap_vrshrn_n_s64(__p0, __p1) __extension__ ({ \
  21518. int64x2_t __s0 = __p0; \
  21519. int32x2_t __ret; \
  21520. __ret = (int32x2_t) __builtin_neon_vrshrn_n_v((int8x16_t)__s0, __p1, 2); \
  21521. __ret; \
  21522. })
  21523. #endif
  21524. #ifdef __LITTLE_ENDIAN__
  21525. #define vrshrn_n_s16(__p0, __p1) __extension__ ({ \
  21526. int16x8_t __s0 = __p0; \
  21527. int8x8_t __ret; \
  21528. __ret = (int8x8_t) __builtin_neon_vrshrn_n_v((int8x16_t)__s0, __p1, 0); \
  21529. __ret; \
  21530. })
  21531. #else
  21532. #define vrshrn_n_s16(__p0, __p1) __extension__ ({ \
  21533. int16x8_t __s0 = __p0; \
  21534. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  21535. int8x8_t __ret; \
  21536. __ret = (int8x8_t) __builtin_neon_vrshrn_n_v((int8x16_t)__rev0, __p1, 0); \
  21537. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  21538. __ret; \
  21539. })
  21540. #define __noswap_vrshrn_n_s16(__p0, __p1) __extension__ ({ \
  21541. int16x8_t __s0 = __p0; \
  21542. int8x8_t __ret; \
  21543. __ret = (int8x8_t) __builtin_neon_vrshrn_n_v((int8x16_t)__s0, __p1, 0); \
  21544. __ret; \
  21545. })
  21546. #endif
  21547. #ifdef __LITTLE_ENDIAN__
  21548. __ai uint32x4_t vrsqrteq_u32(uint32x4_t __p0) {
  21549. uint32x4_t __ret;
  21550. __ret = (uint32x4_t) __builtin_neon_vrsqrteq_v((int8x16_t)__p0, 50);
  21551. return __ret;
  21552. }
  21553. #else
  21554. __ai uint32x4_t vrsqrteq_u32(uint32x4_t __p0) {
  21555. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  21556. uint32x4_t __ret;
  21557. __ret = (uint32x4_t) __builtin_neon_vrsqrteq_v((int8x16_t)__rev0, 50);
  21558. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  21559. return __ret;
  21560. }
  21561. #endif
  21562. #ifdef __LITTLE_ENDIAN__
  21563. __ai float32x4_t vrsqrteq_f32(float32x4_t __p0) {
  21564. float32x4_t __ret;
  21565. __ret = (float32x4_t) __builtin_neon_vrsqrteq_v((int8x16_t)__p0, 41);
  21566. return __ret;
  21567. }
  21568. #else
  21569. __ai float32x4_t vrsqrteq_f32(float32x4_t __p0) {
  21570. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  21571. float32x4_t __ret;
  21572. __ret = (float32x4_t) __builtin_neon_vrsqrteq_v((int8x16_t)__rev0, 41);
  21573. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  21574. return __ret;
  21575. }
  21576. #endif
  21577. #ifdef __LITTLE_ENDIAN__
  21578. __ai uint32x2_t vrsqrte_u32(uint32x2_t __p0) {
  21579. uint32x2_t __ret;
  21580. __ret = (uint32x2_t) __builtin_neon_vrsqrte_v((int8x8_t)__p0, 18);
  21581. return __ret;
  21582. }
  21583. #else
  21584. __ai uint32x2_t vrsqrte_u32(uint32x2_t __p0) {
  21585. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  21586. uint32x2_t __ret;
  21587. __ret = (uint32x2_t) __builtin_neon_vrsqrte_v((int8x8_t)__rev0, 18);
  21588. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  21589. return __ret;
  21590. }
  21591. #endif
  21592. #ifdef __LITTLE_ENDIAN__
  21593. __ai float32x2_t vrsqrte_f32(float32x2_t __p0) {
  21594. float32x2_t __ret;
  21595. __ret = (float32x2_t) __builtin_neon_vrsqrte_v((int8x8_t)__p0, 9);
  21596. return __ret;
  21597. }
  21598. #else
  21599. __ai float32x2_t vrsqrte_f32(float32x2_t __p0) {
  21600. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  21601. float32x2_t __ret;
  21602. __ret = (float32x2_t) __builtin_neon_vrsqrte_v((int8x8_t)__rev0, 9);
  21603. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  21604. return __ret;
  21605. }
  21606. #endif
  21607. #ifdef __LITTLE_ENDIAN__
  21608. __ai float32x4_t vrsqrtsq_f32(float32x4_t __p0, float32x4_t __p1) {
  21609. float32x4_t __ret;
  21610. __ret = (float32x4_t) __builtin_neon_vrsqrtsq_v((int8x16_t)__p0, (int8x16_t)__p1, 41);
  21611. return __ret;
  21612. }
  21613. #else
  21614. __ai float32x4_t vrsqrtsq_f32(float32x4_t __p0, float32x4_t __p1) {
  21615. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  21616. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  21617. float32x4_t __ret;
  21618. __ret = (float32x4_t) __builtin_neon_vrsqrtsq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 41);
  21619. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  21620. return __ret;
  21621. }
  21622. #endif
  21623. #ifdef __LITTLE_ENDIAN__
  21624. __ai float32x2_t vrsqrts_f32(float32x2_t __p0, float32x2_t __p1) {
  21625. float32x2_t __ret;
  21626. __ret = (float32x2_t) __builtin_neon_vrsqrts_v((int8x8_t)__p0, (int8x8_t)__p1, 9);
  21627. return __ret;
  21628. }
  21629. #else
  21630. __ai float32x2_t vrsqrts_f32(float32x2_t __p0, float32x2_t __p1) {
  21631. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  21632. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  21633. float32x2_t __ret;
  21634. __ret = (float32x2_t) __builtin_neon_vrsqrts_v((int8x8_t)__rev0, (int8x8_t)__rev1, 9);
  21635. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  21636. return __ret;
  21637. }
  21638. #endif
  21639. #ifdef __LITTLE_ENDIAN__
  21640. #define vrsraq_n_u8(__p0, __p1, __p2) __extension__ ({ \
  21641. uint8x16_t __s0 = __p0; \
  21642. uint8x16_t __s1 = __p1; \
  21643. uint8x16_t __ret; \
  21644. __ret = (uint8x16_t) __builtin_neon_vrsraq_n_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 48); \
  21645. __ret; \
  21646. })
  21647. #else
  21648. #define vrsraq_n_u8(__p0, __p1, __p2) __extension__ ({ \
  21649. uint8x16_t __s0 = __p0; \
  21650. uint8x16_t __s1 = __p1; \
  21651. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  21652. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  21653. uint8x16_t __ret; \
  21654. __ret = (uint8x16_t) __builtin_neon_vrsraq_n_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 48); \
  21655. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  21656. __ret; \
  21657. })
  21658. #endif
  21659. #ifdef __LITTLE_ENDIAN__
  21660. #define vrsraq_n_u32(__p0, __p1, __p2) __extension__ ({ \
  21661. uint32x4_t __s0 = __p0; \
  21662. uint32x4_t __s1 = __p1; \
  21663. uint32x4_t __ret; \
  21664. __ret = (uint32x4_t) __builtin_neon_vrsraq_n_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 50); \
  21665. __ret; \
  21666. })
  21667. #else
  21668. #define vrsraq_n_u32(__p0, __p1, __p2) __extension__ ({ \
  21669. uint32x4_t __s0 = __p0; \
  21670. uint32x4_t __s1 = __p1; \
  21671. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  21672. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  21673. uint32x4_t __ret; \
  21674. __ret = (uint32x4_t) __builtin_neon_vrsraq_n_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 50); \
  21675. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  21676. __ret; \
  21677. })
  21678. #endif
  21679. #ifdef __LITTLE_ENDIAN__
  21680. #define vrsraq_n_u64(__p0, __p1, __p2) __extension__ ({ \
  21681. uint64x2_t __s0 = __p0; \
  21682. uint64x2_t __s1 = __p1; \
  21683. uint64x2_t __ret; \
  21684. __ret = (uint64x2_t) __builtin_neon_vrsraq_n_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 51); \
  21685. __ret; \
  21686. })
  21687. #else
  21688. #define vrsraq_n_u64(__p0, __p1, __p2) __extension__ ({ \
  21689. uint64x2_t __s0 = __p0; \
  21690. uint64x2_t __s1 = __p1; \
  21691. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  21692. uint64x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  21693. uint64x2_t __ret; \
  21694. __ret = (uint64x2_t) __builtin_neon_vrsraq_n_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 51); \
  21695. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  21696. __ret; \
  21697. })
  21698. #endif
  21699. #ifdef __LITTLE_ENDIAN__
  21700. #define vrsraq_n_u16(__p0, __p1, __p2) __extension__ ({ \
  21701. uint16x8_t __s0 = __p0; \
  21702. uint16x8_t __s1 = __p1; \
  21703. uint16x8_t __ret; \
  21704. __ret = (uint16x8_t) __builtin_neon_vrsraq_n_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 49); \
  21705. __ret; \
  21706. })
  21707. #else
  21708. #define vrsraq_n_u16(__p0, __p1, __p2) __extension__ ({ \
  21709. uint16x8_t __s0 = __p0; \
  21710. uint16x8_t __s1 = __p1; \
  21711. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  21712. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  21713. uint16x8_t __ret; \
  21714. __ret = (uint16x8_t) __builtin_neon_vrsraq_n_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 49); \
  21715. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  21716. __ret; \
  21717. })
  21718. #endif
  21719. #ifdef __LITTLE_ENDIAN__
  21720. #define vrsraq_n_s8(__p0, __p1, __p2) __extension__ ({ \
  21721. int8x16_t __s0 = __p0; \
  21722. int8x16_t __s1 = __p1; \
  21723. int8x16_t __ret; \
  21724. __ret = (int8x16_t) __builtin_neon_vrsraq_n_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 32); \
  21725. __ret; \
  21726. })
  21727. #else
  21728. #define vrsraq_n_s8(__p0, __p1, __p2) __extension__ ({ \
  21729. int8x16_t __s0 = __p0; \
  21730. int8x16_t __s1 = __p1; \
  21731. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  21732. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  21733. int8x16_t __ret; \
  21734. __ret = (int8x16_t) __builtin_neon_vrsraq_n_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 32); \
  21735. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  21736. __ret; \
  21737. })
  21738. #endif
  21739. #ifdef __LITTLE_ENDIAN__
  21740. #define vrsraq_n_s32(__p0, __p1, __p2) __extension__ ({ \
  21741. int32x4_t __s0 = __p0; \
  21742. int32x4_t __s1 = __p1; \
  21743. int32x4_t __ret; \
  21744. __ret = (int32x4_t) __builtin_neon_vrsraq_n_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 34); \
  21745. __ret; \
  21746. })
  21747. #else
  21748. #define vrsraq_n_s32(__p0, __p1, __p2) __extension__ ({ \
  21749. int32x4_t __s0 = __p0; \
  21750. int32x4_t __s1 = __p1; \
  21751. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  21752. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  21753. int32x4_t __ret; \
  21754. __ret = (int32x4_t) __builtin_neon_vrsraq_n_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 34); \
  21755. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  21756. __ret; \
  21757. })
  21758. #endif
  21759. #ifdef __LITTLE_ENDIAN__
  21760. #define vrsraq_n_s64(__p0, __p1, __p2) __extension__ ({ \
  21761. int64x2_t __s0 = __p0; \
  21762. int64x2_t __s1 = __p1; \
  21763. int64x2_t __ret; \
  21764. __ret = (int64x2_t) __builtin_neon_vrsraq_n_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 35); \
  21765. __ret; \
  21766. })
  21767. #else
  21768. #define vrsraq_n_s64(__p0, __p1, __p2) __extension__ ({ \
  21769. int64x2_t __s0 = __p0; \
  21770. int64x2_t __s1 = __p1; \
  21771. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  21772. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  21773. int64x2_t __ret; \
  21774. __ret = (int64x2_t) __builtin_neon_vrsraq_n_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 35); \
  21775. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  21776. __ret; \
  21777. })
  21778. #endif
  21779. #ifdef __LITTLE_ENDIAN__
  21780. #define vrsraq_n_s16(__p0, __p1, __p2) __extension__ ({ \
  21781. int16x8_t __s0 = __p0; \
  21782. int16x8_t __s1 = __p1; \
  21783. int16x8_t __ret; \
  21784. __ret = (int16x8_t) __builtin_neon_vrsraq_n_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 33); \
  21785. __ret; \
  21786. })
  21787. #else
  21788. #define vrsraq_n_s16(__p0, __p1, __p2) __extension__ ({ \
  21789. int16x8_t __s0 = __p0; \
  21790. int16x8_t __s1 = __p1; \
  21791. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  21792. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  21793. int16x8_t __ret; \
  21794. __ret = (int16x8_t) __builtin_neon_vrsraq_n_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 33); \
  21795. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  21796. __ret; \
  21797. })
  21798. #endif
  21799. #ifdef __LITTLE_ENDIAN__
  21800. #define vrsra_n_u8(__p0, __p1, __p2) __extension__ ({ \
  21801. uint8x8_t __s0 = __p0; \
  21802. uint8x8_t __s1 = __p1; \
  21803. uint8x8_t __ret; \
  21804. __ret = (uint8x8_t) __builtin_neon_vrsra_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 16); \
  21805. __ret; \
  21806. })
  21807. #else
  21808. #define vrsra_n_u8(__p0, __p1, __p2) __extension__ ({ \
  21809. uint8x8_t __s0 = __p0; \
  21810. uint8x8_t __s1 = __p1; \
  21811. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  21812. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  21813. uint8x8_t __ret; \
  21814. __ret = (uint8x8_t) __builtin_neon_vrsra_n_v((int8x8_t)__rev0, (int8x8_t)__rev1, __p2, 16); \
  21815. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  21816. __ret; \
  21817. })
  21818. #endif
  21819. #ifdef __LITTLE_ENDIAN__
  21820. #define vrsra_n_u32(__p0, __p1, __p2) __extension__ ({ \
  21821. uint32x2_t __s0 = __p0; \
  21822. uint32x2_t __s1 = __p1; \
  21823. uint32x2_t __ret; \
  21824. __ret = (uint32x2_t) __builtin_neon_vrsra_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 18); \
  21825. __ret; \
  21826. })
  21827. #else
  21828. #define vrsra_n_u32(__p0, __p1, __p2) __extension__ ({ \
  21829. uint32x2_t __s0 = __p0; \
  21830. uint32x2_t __s1 = __p1; \
  21831. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  21832. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  21833. uint32x2_t __ret; \
  21834. __ret = (uint32x2_t) __builtin_neon_vrsra_n_v((int8x8_t)__rev0, (int8x8_t)__rev1, __p2, 18); \
  21835. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  21836. __ret; \
  21837. })
  21838. #endif
  21839. #ifdef __LITTLE_ENDIAN__
  21840. #define vrsra_n_u64(__p0, __p1, __p2) __extension__ ({ \
  21841. uint64x1_t __s0 = __p0; \
  21842. uint64x1_t __s1 = __p1; \
  21843. uint64x1_t __ret; \
  21844. __ret = (uint64x1_t) __builtin_neon_vrsra_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 19); \
  21845. __ret; \
  21846. })
  21847. #else
  21848. #define vrsra_n_u64(__p0, __p1, __p2) __extension__ ({ \
  21849. uint64x1_t __s0 = __p0; \
  21850. uint64x1_t __s1 = __p1; \
  21851. uint64x1_t __ret; \
  21852. __ret = (uint64x1_t) __builtin_neon_vrsra_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 19); \
  21853. __ret; \
  21854. })
  21855. #endif
  21856. #ifdef __LITTLE_ENDIAN__
  21857. #define vrsra_n_u16(__p0, __p1, __p2) __extension__ ({ \
  21858. uint16x4_t __s0 = __p0; \
  21859. uint16x4_t __s1 = __p1; \
  21860. uint16x4_t __ret; \
  21861. __ret = (uint16x4_t) __builtin_neon_vrsra_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 17); \
  21862. __ret; \
  21863. })
  21864. #else
  21865. #define vrsra_n_u16(__p0, __p1, __p2) __extension__ ({ \
  21866. uint16x4_t __s0 = __p0; \
  21867. uint16x4_t __s1 = __p1; \
  21868. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  21869. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  21870. uint16x4_t __ret; \
  21871. __ret = (uint16x4_t) __builtin_neon_vrsra_n_v((int8x8_t)__rev0, (int8x8_t)__rev1, __p2, 17); \
  21872. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  21873. __ret; \
  21874. })
  21875. #endif
  21876. #ifdef __LITTLE_ENDIAN__
  21877. #define vrsra_n_s8(__p0, __p1, __p2) __extension__ ({ \
  21878. int8x8_t __s0 = __p0; \
  21879. int8x8_t __s1 = __p1; \
  21880. int8x8_t __ret; \
  21881. __ret = (int8x8_t) __builtin_neon_vrsra_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 0); \
  21882. __ret; \
  21883. })
  21884. #else
  21885. #define vrsra_n_s8(__p0, __p1, __p2) __extension__ ({ \
  21886. int8x8_t __s0 = __p0; \
  21887. int8x8_t __s1 = __p1; \
  21888. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  21889. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  21890. int8x8_t __ret; \
  21891. __ret = (int8x8_t) __builtin_neon_vrsra_n_v((int8x8_t)__rev0, (int8x8_t)__rev1, __p2, 0); \
  21892. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  21893. __ret; \
  21894. })
  21895. #endif
  21896. #ifdef __LITTLE_ENDIAN__
  21897. #define vrsra_n_s32(__p0, __p1, __p2) __extension__ ({ \
  21898. int32x2_t __s0 = __p0; \
  21899. int32x2_t __s1 = __p1; \
  21900. int32x2_t __ret; \
  21901. __ret = (int32x2_t) __builtin_neon_vrsra_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 2); \
  21902. __ret; \
  21903. })
  21904. #else
  21905. #define vrsra_n_s32(__p0, __p1, __p2) __extension__ ({ \
  21906. int32x2_t __s0 = __p0; \
  21907. int32x2_t __s1 = __p1; \
  21908. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  21909. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  21910. int32x2_t __ret; \
  21911. __ret = (int32x2_t) __builtin_neon_vrsra_n_v((int8x8_t)__rev0, (int8x8_t)__rev1, __p2, 2); \
  21912. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  21913. __ret; \
  21914. })
  21915. #endif
  21916. #ifdef __LITTLE_ENDIAN__
  21917. #define vrsra_n_s64(__p0, __p1, __p2) __extension__ ({ \
  21918. int64x1_t __s0 = __p0; \
  21919. int64x1_t __s1 = __p1; \
  21920. int64x1_t __ret; \
  21921. __ret = (int64x1_t) __builtin_neon_vrsra_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 3); \
  21922. __ret; \
  21923. })
  21924. #else
  21925. #define vrsra_n_s64(__p0, __p1, __p2) __extension__ ({ \
  21926. int64x1_t __s0 = __p0; \
  21927. int64x1_t __s1 = __p1; \
  21928. int64x1_t __ret; \
  21929. __ret = (int64x1_t) __builtin_neon_vrsra_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 3); \
  21930. __ret; \
  21931. })
  21932. #endif
  21933. #ifdef __LITTLE_ENDIAN__
  21934. #define vrsra_n_s16(__p0, __p1, __p2) __extension__ ({ \
  21935. int16x4_t __s0 = __p0; \
  21936. int16x4_t __s1 = __p1; \
  21937. int16x4_t __ret; \
  21938. __ret = (int16x4_t) __builtin_neon_vrsra_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 1); \
  21939. __ret; \
  21940. })
  21941. #else
  21942. #define vrsra_n_s16(__p0, __p1, __p2) __extension__ ({ \
  21943. int16x4_t __s0 = __p0; \
  21944. int16x4_t __s1 = __p1; \
  21945. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  21946. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  21947. int16x4_t __ret; \
  21948. __ret = (int16x4_t) __builtin_neon_vrsra_n_v((int8x8_t)__rev0, (int8x8_t)__rev1, __p2, 1); \
  21949. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  21950. __ret; \
  21951. })
  21952. #endif
  21953. #ifdef __LITTLE_ENDIAN__
  21954. __ai uint16x4_t vrsubhn_u32(uint32x4_t __p0, uint32x4_t __p1) {
  21955. uint16x4_t __ret;
  21956. __ret = (uint16x4_t) __builtin_neon_vrsubhn_v((int8x16_t)__p0, (int8x16_t)__p1, 17);
  21957. return __ret;
  21958. }
  21959. #else
  21960. __ai uint16x4_t vrsubhn_u32(uint32x4_t __p0, uint32x4_t __p1) {
  21961. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  21962. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  21963. uint16x4_t __ret;
  21964. __ret = (uint16x4_t) __builtin_neon_vrsubhn_v((int8x16_t)__rev0, (int8x16_t)__rev1, 17);
  21965. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  21966. return __ret;
  21967. }
  21968. __ai uint16x4_t __noswap_vrsubhn_u32(uint32x4_t __p0, uint32x4_t __p1) {
  21969. uint16x4_t __ret;
  21970. __ret = (uint16x4_t) __builtin_neon_vrsubhn_v((int8x16_t)__p0, (int8x16_t)__p1, 17);
  21971. return __ret;
  21972. }
  21973. #endif
  21974. #ifdef __LITTLE_ENDIAN__
  21975. __ai uint32x2_t vrsubhn_u64(uint64x2_t __p0, uint64x2_t __p1) {
  21976. uint32x2_t __ret;
  21977. __ret = (uint32x2_t) __builtin_neon_vrsubhn_v((int8x16_t)__p0, (int8x16_t)__p1, 18);
  21978. return __ret;
  21979. }
  21980. #else
  21981. __ai uint32x2_t vrsubhn_u64(uint64x2_t __p0, uint64x2_t __p1) {
  21982. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  21983. uint64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  21984. uint32x2_t __ret;
  21985. __ret = (uint32x2_t) __builtin_neon_vrsubhn_v((int8x16_t)__rev0, (int8x16_t)__rev1, 18);
  21986. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  21987. return __ret;
  21988. }
  21989. __ai uint32x2_t __noswap_vrsubhn_u64(uint64x2_t __p0, uint64x2_t __p1) {
  21990. uint32x2_t __ret;
  21991. __ret = (uint32x2_t) __builtin_neon_vrsubhn_v((int8x16_t)__p0, (int8x16_t)__p1, 18);
  21992. return __ret;
  21993. }
  21994. #endif
  21995. #ifdef __LITTLE_ENDIAN__
  21996. __ai uint8x8_t vrsubhn_u16(uint16x8_t __p0, uint16x8_t __p1) {
  21997. uint8x8_t __ret;
  21998. __ret = (uint8x8_t) __builtin_neon_vrsubhn_v((int8x16_t)__p0, (int8x16_t)__p1, 16);
  21999. return __ret;
  22000. }
  22001. #else
  22002. __ai uint8x8_t vrsubhn_u16(uint16x8_t __p0, uint16x8_t __p1) {
  22003. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  22004. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  22005. uint8x8_t __ret;
  22006. __ret = (uint8x8_t) __builtin_neon_vrsubhn_v((int8x16_t)__rev0, (int8x16_t)__rev1, 16);
  22007. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  22008. return __ret;
  22009. }
  22010. __ai uint8x8_t __noswap_vrsubhn_u16(uint16x8_t __p0, uint16x8_t __p1) {
  22011. uint8x8_t __ret;
  22012. __ret = (uint8x8_t) __builtin_neon_vrsubhn_v((int8x16_t)__p0, (int8x16_t)__p1, 16);
  22013. return __ret;
  22014. }
  22015. #endif
  22016. #ifdef __LITTLE_ENDIAN__
  22017. __ai int16x4_t vrsubhn_s32(int32x4_t __p0, int32x4_t __p1) {
  22018. int16x4_t __ret;
  22019. __ret = (int16x4_t) __builtin_neon_vrsubhn_v((int8x16_t)__p0, (int8x16_t)__p1, 1);
  22020. return __ret;
  22021. }
  22022. #else
  22023. __ai int16x4_t vrsubhn_s32(int32x4_t __p0, int32x4_t __p1) {
  22024. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  22025. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  22026. int16x4_t __ret;
  22027. __ret = (int16x4_t) __builtin_neon_vrsubhn_v((int8x16_t)__rev0, (int8x16_t)__rev1, 1);
  22028. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  22029. return __ret;
  22030. }
  22031. __ai int16x4_t __noswap_vrsubhn_s32(int32x4_t __p0, int32x4_t __p1) {
  22032. int16x4_t __ret;
  22033. __ret = (int16x4_t) __builtin_neon_vrsubhn_v((int8x16_t)__p0, (int8x16_t)__p1, 1);
  22034. return __ret;
  22035. }
  22036. #endif
  22037. #ifdef __LITTLE_ENDIAN__
  22038. __ai int32x2_t vrsubhn_s64(int64x2_t __p0, int64x2_t __p1) {
  22039. int32x2_t __ret;
  22040. __ret = (int32x2_t) __builtin_neon_vrsubhn_v((int8x16_t)__p0, (int8x16_t)__p1, 2);
  22041. return __ret;
  22042. }
  22043. #else
  22044. __ai int32x2_t vrsubhn_s64(int64x2_t __p0, int64x2_t __p1) {
  22045. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  22046. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  22047. int32x2_t __ret;
  22048. __ret = (int32x2_t) __builtin_neon_vrsubhn_v((int8x16_t)__rev0, (int8x16_t)__rev1, 2);
  22049. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  22050. return __ret;
  22051. }
  22052. __ai int32x2_t __noswap_vrsubhn_s64(int64x2_t __p0, int64x2_t __p1) {
  22053. int32x2_t __ret;
  22054. __ret = (int32x2_t) __builtin_neon_vrsubhn_v((int8x16_t)__p0, (int8x16_t)__p1, 2);
  22055. return __ret;
  22056. }
  22057. #endif
  22058. #ifdef __LITTLE_ENDIAN__
  22059. __ai int8x8_t vrsubhn_s16(int16x8_t __p0, int16x8_t __p1) {
  22060. int8x8_t __ret;
  22061. __ret = (int8x8_t) __builtin_neon_vrsubhn_v((int8x16_t)__p0, (int8x16_t)__p1, 0);
  22062. return __ret;
  22063. }
  22064. #else
  22065. __ai int8x8_t vrsubhn_s16(int16x8_t __p0, int16x8_t __p1) {
  22066. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  22067. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  22068. int8x8_t __ret;
  22069. __ret = (int8x8_t) __builtin_neon_vrsubhn_v((int8x16_t)__rev0, (int8x16_t)__rev1, 0);
  22070. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  22071. return __ret;
  22072. }
  22073. __ai int8x8_t __noswap_vrsubhn_s16(int16x8_t __p0, int16x8_t __p1) {
  22074. int8x8_t __ret;
  22075. __ret = (int8x8_t) __builtin_neon_vrsubhn_v((int8x16_t)__p0, (int8x16_t)__p1, 0);
  22076. return __ret;
  22077. }
  22078. #endif
  22079. #ifdef __LITTLE_ENDIAN__
  22080. #define vset_lane_p8(__p0, __p1, __p2) __extension__ ({ \
  22081. poly8_t __s0 = __p0; \
  22082. poly8x8_t __s1 = __p1; \
  22083. poly8x8_t __ret; \
  22084. __ret = (poly8x8_t) __builtin_neon_vset_lane_i8(__s0, (int8x8_t)__s1, __p2); \
  22085. __ret; \
  22086. })
  22087. #else
  22088. #define vset_lane_p8(__p0, __p1, __p2) __extension__ ({ \
  22089. poly8_t __s0 = __p0; \
  22090. poly8x8_t __s1 = __p1; \
  22091. poly8x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  22092. poly8x8_t __ret; \
  22093. __ret = (poly8x8_t) __builtin_neon_vset_lane_i8(__s0, (int8x8_t)__rev1, __p2); \
  22094. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  22095. __ret; \
  22096. })
  22097. #define __noswap_vset_lane_p8(__p0, __p1, __p2) __extension__ ({ \
  22098. poly8_t __s0 = __p0; \
  22099. poly8x8_t __s1 = __p1; \
  22100. poly8x8_t __ret; \
  22101. __ret = (poly8x8_t) __builtin_neon_vset_lane_i8(__s0, (int8x8_t)__s1, __p2); \
  22102. __ret; \
  22103. })
  22104. #endif
  22105. #ifdef __LITTLE_ENDIAN__
  22106. #define vset_lane_p16(__p0, __p1, __p2) __extension__ ({ \
  22107. poly16_t __s0 = __p0; \
  22108. poly16x4_t __s1 = __p1; \
  22109. poly16x4_t __ret; \
  22110. __ret = (poly16x4_t) __builtin_neon_vset_lane_i16(__s0, (int8x8_t)__s1, __p2); \
  22111. __ret; \
  22112. })
  22113. #else
  22114. #define vset_lane_p16(__p0, __p1, __p2) __extension__ ({ \
  22115. poly16_t __s0 = __p0; \
  22116. poly16x4_t __s1 = __p1; \
  22117. poly16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  22118. poly16x4_t __ret; \
  22119. __ret = (poly16x4_t) __builtin_neon_vset_lane_i16(__s0, (int8x8_t)__rev1, __p2); \
  22120. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  22121. __ret; \
  22122. })
  22123. #define __noswap_vset_lane_p16(__p0, __p1, __p2) __extension__ ({ \
  22124. poly16_t __s0 = __p0; \
  22125. poly16x4_t __s1 = __p1; \
  22126. poly16x4_t __ret; \
  22127. __ret = (poly16x4_t) __builtin_neon_vset_lane_i16(__s0, (int8x8_t)__s1, __p2); \
  22128. __ret; \
  22129. })
  22130. #endif
  22131. #ifdef __LITTLE_ENDIAN__
  22132. #define vsetq_lane_p8(__p0, __p1, __p2) __extension__ ({ \
  22133. poly8_t __s0 = __p0; \
  22134. poly8x16_t __s1 = __p1; \
  22135. poly8x16_t __ret; \
  22136. __ret = (poly8x16_t) __builtin_neon_vsetq_lane_i8(__s0, (int8x16_t)__s1, __p2); \
  22137. __ret; \
  22138. })
  22139. #else
  22140. #define vsetq_lane_p8(__p0, __p1, __p2) __extension__ ({ \
  22141. poly8_t __s0 = __p0; \
  22142. poly8x16_t __s1 = __p1; \
  22143. poly8x16_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  22144. poly8x16_t __ret; \
  22145. __ret = (poly8x16_t) __builtin_neon_vsetq_lane_i8(__s0, (int8x16_t)__rev1, __p2); \
  22146. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  22147. __ret; \
  22148. })
  22149. #define __noswap_vsetq_lane_p8(__p0, __p1, __p2) __extension__ ({ \
  22150. poly8_t __s0 = __p0; \
  22151. poly8x16_t __s1 = __p1; \
  22152. poly8x16_t __ret; \
  22153. __ret = (poly8x16_t) __builtin_neon_vsetq_lane_i8(__s0, (int8x16_t)__s1, __p2); \
  22154. __ret; \
  22155. })
  22156. #endif
  22157. #ifdef __LITTLE_ENDIAN__
  22158. #define vsetq_lane_p16(__p0, __p1, __p2) __extension__ ({ \
  22159. poly16_t __s0 = __p0; \
  22160. poly16x8_t __s1 = __p1; \
  22161. poly16x8_t __ret; \
  22162. __ret = (poly16x8_t) __builtin_neon_vsetq_lane_i16(__s0, (int8x16_t)__s1, __p2); \
  22163. __ret; \
  22164. })
  22165. #else
  22166. #define vsetq_lane_p16(__p0, __p1, __p2) __extension__ ({ \
  22167. poly16_t __s0 = __p0; \
  22168. poly16x8_t __s1 = __p1; \
  22169. poly16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  22170. poly16x8_t __ret; \
  22171. __ret = (poly16x8_t) __builtin_neon_vsetq_lane_i16(__s0, (int8x16_t)__rev1, __p2); \
  22172. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  22173. __ret; \
  22174. })
  22175. #define __noswap_vsetq_lane_p16(__p0, __p1, __p2) __extension__ ({ \
  22176. poly16_t __s0 = __p0; \
  22177. poly16x8_t __s1 = __p1; \
  22178. poly16x8_t __ret; \
  22179. __ret = (poly16x8_t) __builtin_neon_vsetq_lane_i16(__s0, (int8x16_t)__s1, __p2); \
  22180. __ret; \
  22181. })
  22182. #endif
  22183. #ifdef __LITTLE_ENDIAN__
  22184. #define vsetq_lane_u8(__p0, __p1, __p2) __extension__ ({ \
  22185. uint8_t __s0 = __p0; \
  22186. uint8x16_t __s1 = __p1; \
  22187. uint8x16_t __ret; \
  22188. __ret = (uint8x16_t) __builtin_neon_vsetq_lane_i8(__s0, (int8x16_t)__s1, __p2); \
  22189. __ret; \
  22190. })
  22191. #else
  22192. #define vsetq_lane_u8(__p0, __p1, __p2) __extension__ ({ \
  22193. uint8_t __s0 = __p0; \
  22194. uint8x16_t __s1 = __p1; \
  22195. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  22196. uint8x16_t __ret; \
  22197. __ret = (uint8x16_t) __builtin_neon_vsetq_lane_i8(__s0, (int8x16_t)__rev1, __p2); \
  22198. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  22199. __ret; \
  22200. })
  22201. #define __noswap_vsetq_lane_u8(__p0, __p1, __p2) __extension__ ({ \
  22202. uint8_t __s0 = __p0; \
  22203. uint8x16_t __s1 = __p1; \
  22204. uint8x16_t __ret; \
  22205. __ret = (uint8x16_t) __builtin_neon_vsetq_lane_i8(__s0, (int8x16_t)__s1, __p2); \
  22206. __ret; \
  22207. })
  22208. #endif
  22209. #ifdef __LITTLE_ENDIAN__
  22210. #define vsetq_lane_u32(__p0, __p1, __p2) __extension__ ({ \
  22211. uint32_t __s0 = __p0; \
  22212. uint32x4_t __s1 = __p1; \
  22213. uint32x4_t __ret; \
  22214. __ret = (uint32x4_t) __builtin_neon_vsetq_lane_i32(__s0, (int8x16_t)__s1, __p2); \
  22215. __ret; \
  22216. })
  22217. #else
  22218. #define vsetq_lane_u32(__p0, __p1, __p2) __extension__ ({ \
  22219. uint32_t __s0 = __p0; \
  22220. uint32x4_t __s1 = __p1; \
  22221. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  22222. uint32x4_t __ret; \
  22223. __ret = (uint32x4_t) __builtin_neon_vsetq_lane_i32(__s0, (int8x16_t)__rev1, __p2); \
  22224. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  22225. __ret; \
  22226. })
  22227. #define __noswap_vsetq_lane_u32(__p0, __p1, __p2) __extension__ ({ \
  22228. uint32_t __s0 = __p0; \
  22229. uint32x4_t __s1 = __p1; \
  22230. uint32x4_t __ret; \
  22231. __ret = (uint32x4_t) __builtin_neon_vsetq_lane_i32(__s0, (int8x16_t)__s1, __p2); \
  22232. __ret; \
  22233. })
  22234. #endif
  22235. #ifdef __LITTLE_ENDIAN__
  22236. #define vsetq_lane_u64(__p0, __p1, __p2) __extension__ ({ \
  22237. uint64_t __s0 = __p0; \
  22238. uint64x2_t __s1 = __p1; \
  22239. uint64x2_t __ret; \
  22240. __ret = (uint64x2_t) __builtin_neon_vsetq_lane_i64(__s0, (int8x16_t)__s1, __p2); \
  22241. __ret; \
  22242. })
  22243. #else
  22244. #define vsetq_lane_u64(__p0, __p1, __p2) __extension__ ({ \
  22245. uint64_t __s0 = __p0; \
  22246. uint64x2_t __s1 = __p1; \
  22247. uint64x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  22248. uint64x2_t __ret; \
  22249. __ret = (uint64x2_t) __builtin_neon_vsetq_lane_i64(__s0, (int8x16_t)__rev1, __p2); \
  22250. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  22251. __ret; \
  22252. })
  22253. #define __noswap_vsetq_lane_u64(__p0, __p1, __p2) __extension__ ({ \
  22254. uint64_t __s0 = __p0; \
  22255. uint64x2_t __s1 = __p1; \
  22256. uint64x2_t __ret; \
  22257. __ret = (uint64x2_t) __builtin_neon_vsetq_lane_i64(__s0, (int8x16_t)__s1, __p2); \
  22258. __ret; \
  22259. })
  22260. #endif
  22261. #ifdef __LITTLE_ENDIAN__
  22262. #define vsetq_lane_u16(__p0, __p1, __p2) __extension__ ({ \
  22263. uint16_t __s0 = __p0; \
  22264. uint16x8_t __s1 = __p1; \
  22265. uint16x8_t __ret; \
  22266. __ret = (uint16x8_t) __builtin_neon_vsetq_lane_i16(__s0, (int8x16_t)__s1, __p2); \
  22267. __ret; \
  22268. })
  22269. #else
  22270. #define vsetq_lane_u16(__p0, __p1, __p2) __extension__ ({ \
  22271. uint16_t __s0 = __p0; \
  22272. uint16x8_t __s1 = __p1; \
  22273. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  22274. uint16x8_t __ret; \
  22275. __ret = (uint16x8_t) __builtin_neon_vsetq_lane_i16(__s0, (int8x16_t)__rev1, __p2); \
  22276. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  22277. __ret; \
  22278. })
  22279. #define __noswap_vsetq_lane_u16(__p0, __p1, __p2) __extension__ ({ \
  22280. uint16_t __s0 = __p0; \
  22281. uint16x8_t __s1 = __p1; \
  22282. uint16x8_t __ret; \
  22283. __ret = (uint16x8_t) __builtin_neon_vsetq_lane_i16(__s0, (int8x16_t)__s1, __p2); \
  22284. __ret; \
  22285. })
  22286. #endif
  22287. #ifdef __LITTLE_ENDIAN__
  22288. #define vsetq_lane_s8(__p0, __p1, __p2) __extension__ ({ \
  22289. int8_t __s0 = __p0; \
  22290. int8x16_t __s1 = __p1; \
  22291. int8x16_t __ret; \
  22292. __ret = (int8x16_t) __builtin_neon_vsetq_lane_i8(__s0, (int8x16_t)__s1, __p2); \
  22293. __ret; \
  22294. })
  22295. #else
  22296. #define vsetq_lane_s8(__p0, __p1, __p2) __extension__ ({ \
  22297. int8_t __s0 = __p0; \
  22298. int8x16_t __s1 = __p1; \
  22299. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  22300. int8x16_t __ret; \
  22301. __ret = (int8x16_t) __builtin_neon_vsetq_lane_i8(__s0, (int8x16_t)__rev1, __p2); \
  22302. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  22303. __ret; \
  22304. })
  22305. #define __noswap_vsetq_lane_s8(__p0, __p1, __p2) __extension__ ({ \
  22306. int8_t __s0 = __p0; \
  22307. int8x16_t __s1 = __p1; \
  22308. int8x16_t __ret; \
  22309. __ret = (int8x16_t) __builtin_neon_vsetq_lane_i8(__s0, (int8x16_t)__s1, __p2); \
  22310. __ret; \
  22311. })
  22312. #endif
  22313. #ifdef __LITTLE_ENDIAN__
  22314. #define vsetq_lane_f32(__p0, __p1, __p2) __extension__ ({ \
  22315. float32_t __s0 = __p0; \
  22316. float32x4_t __s1 = __p1; \
  22317. float32x4_t __ret; \
  22318. __ret = (float32x4_t) __builtin_neon_vsetq_lane_f32(__s0, (int8x16_t)__s1, __p2); \
  22319. __ret; \
  22320. })
  22321. #else
  22322. #define vsetq_lane_f32(__p0, __p1, __p2) __extension__ ({ \
  22323. float32_t __s0 = __p0; \
  22324. float32x4_t __s1 = __p1; \
  22325. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  22326. float32x4_t __ret; \
  22327. __ret = (float32x4_t) __builtin_neon_vsetq_lane_f32(__s0, (int8x16_t)__rev1, __p2); \
  22328. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  22329. __ret; \
  22330. })
  22331. #define __noswap_vsetq_lane_f32(__p0, __p1, __p2) __extension__ ({ \
  22332. float32_t __s0 = __p0; \
  22333. float32x4_t __s1 = __p1; \
  22334. float32x4_t __ret; \
  22335. __ret = (float32x4_t) __builtin_neon_vsetq_lane_f32(__s0, (int8x16_t)__s1, __p2); \
  22336. __ret; \
  22337. })
  22338. #endif
  22339. #ifdef __LITTLE_ENDIAN__
  22340. #define vsetq_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  22341. int32_t __s0 = __p0; \
  22342. int32x4_t __s1 = __p1; \
  22343. int32x4_t __ret; \
  22344. __ret = (int32x4_t) __builtin_neon_vsetq_lane_i32(__s0, (int8x16_t)__s1, __p2); \
  22345. __ret; \
  22346. })
  22347. #else
  22348. #define vsetq_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  22349. int32_t __s0 = __p0; \
  22350. int32x4_t __s1 = __p1; \
  22351. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  22352. int32x4_t __ret; \
  22353. __ret = (int32x4_t) __builtin_neon_vsetq_lane_i32(__s0, (int8x16_t)__rev1, __p2); \
  22354. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  22355. __ret; \
  22356. })
  22357. #define __noswap_vsetq_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  22358. int32_t __s0 = __p0; \
  22359. int32x4_t __s1 = __p1; \
  22360. int32x4_t __ret; \
  22361. __ret = (int32x4_t) __builtin_neon_vsetq_lane_i32(__s0, (int8x16_t)__s1, __p2); \
  22362. __ret; \
  22363. })
  22364. #endif
  22365. #ifdef __LITTLE_ENDIAN__
  22366. #define vsetq_lane_s64(__p0, __p1, __p2) __extension__ ({ \
  22367. int64_t __s0 = __p0; \
  22368. int64x2_t __s1 = __p1; \
  22369. int64x2_t __ret; \
  22370. __ret = (int64x2_t) __builtin_neon_vsetq_lane_i64(__s0, (int8x16_t)__s1, __p2); \
  22371. __ret; \
  22372. })
  22373. #else
  22374. #define vsetq_lane_s64(__p0, __p1, __p2) __extension__ ({ \
  22375. int64_t __s0 = __p0; \
  22376. int64x2_t __s1 = __p1; \
  22377. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  22378. int64x2_t __ret; \
  22379. __ret = (int64x2_t) __builtin_neon_vsetq_lane_i64(__s0, (int8x16_t)__rev1, __p2); \
  22380. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  22381. __ret; \
  22382. })
  22383. #define __noswap_vsetq_lane_s64(__p0, __p1, __p2) __extension__ ({ \
  22384. int64_t __s0 = __p0; \
  22385. int64x2_t __s1 = __p1; \
  22386. int64x2_t __ret; \
  22387. __ret = (int64x2_t) __builtin_neon_vsetq_lane_i64(__s0, (int8x16_t)__s1, __p2); \
  22388. __ret; \
  22389. })
  22390. #endif
  22391. #ifdef __LITTLE_ENDIAN__
  22392. #define vsetq_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  22393. int16_t __s0 = __p0; \
  22394. int16x8_t __s1 = __p1; \
  22395. int16x8_t __ret; \
  22396. __ret = (int16x8_t) __builtin_neon_vsetq_lane_i16(__s0, (int8x16_t)__s1, __p2); \
  22397. __ret; \
  22398. })
  22399. #else
  22400. #define vsetq_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  22401. int16_t __s0 = __p0; \
  22402. int16x8_t __s1 = __p1; \
  22403. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  22404. int16x8_t __ret; \
  22405. __ret = (int16x8_t) __builtin_neon_vsetq_lane_i16(__s0, (int8x16_t)__rev1, __p2); \
  22406. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  22407. __ret; \
  22408. })
  22409. #define __noswap_vsetq_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  22410. int16_t __s0 = __p0; \
  22411. int16x8_t __s1 = __p1; \
  22412. int16x8_t __ret; \
  22413. __ret = (int16x8_t) __builtin_neon_vsetq_lane_i16(__s0, (int8x16_t)__s1, __p2); \
  22414. __ret; \
  22415. })
  22416. #endif
  22417. #ifdef __LITTLE_ENDIAN__
  22418. #define vset_lane_u8(__p0, __p1, __p2) __extension__ ({ \
  22419. uint8_t __s0 = __p0; \
  22420. uint8x8_t __s1 = __p1; \
  22421. uint8x8_t __ret; \
  22422. __ret = (uint8x8_t) __builtin_neon_vset_lane_i8(__s0, (int8x8_t)__s1, __p2); \
  22423. __ret; \
  22424. })
  22425. #else
  22426. #define vset_lane_u8(__p0, __p1, __p2) __extension__ ({ \
  22427. uint8_t __s0 = __p0; \
  22428. uint8x8_t __s1 = __p1; \
  22429. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  22430. uint8x8_t __ret; \
  22431. __ret = (uint8x8_t) __builtin_neon_vset_lane_i8(__s0, (int8x8_t)__rev1, __p2); \
  22432. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  22433. __ret; \
  22434. })
  22435. #define __noswap_vset_lane_u8(__p0, __p1, __p2) __extension__ ({ \
  22436. uint8_t __s0 = __p0; \
  22437. uint8x8_t __s1 = __p1; \
  22438. uint8x8_t __ret; \
  22439. __ret = (uint8x8_t) __builtin_neon_vset_lane_i8(__s0, (int8x8_t)__s1, __p2); \
  22440. __ret; \
  22441. })
  22442. #endif
  22443. #ifdef __LITTLE_ENDIAN__
  22444. #define vset_lane_u32(__p0, __p1, __p2) __extension__ ({ \
  22445. uint32_t __s0 = __p0; \
  22446. uint32x2_t __s1 = __p1; \
  22447. uint32x2_t __ret; \
  22448. __ret = (uint32x2_t) __builtin_neon_vset_lane_i32(__s0, (int8x8_t)__s1, __p2); \
  22449. __ret; \
  22450. })
  22451. #else
  22452. #define vset_lane_u32(__p0, __p1, __p2) __extension__ ({ \
  22453. uint32_t __s0 = __p0; \
  22454. uint32x2_t __s1 = __p1; \
  22455. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  22456. uint32x2_t __ret; \
  22457. __ret = (uint32x2_t) __builtin_neon_vset_lane_i32(__s0, (int8x8_t)__rev1, __p2); \
  22458. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  22459. __ret; \
  22460. })
  22461. #define __noswap_vset_lane_u32(__p0, __p1, __p2) __extension__ ({ \
  22462. uint32_t __s0 = __p0; \
  22463. uint32x2_t __s1 = __p1; \
  22464. uint32x2_t __ret; \
  22465. __ret = (uint32x2_t) __builtin_neon_vset_lane_i32(__s0, (int8x8_t)__s1, __p2); \
  22466. __ret; \
  22467. })
  22468. #endif
  22469. #ifdef __LITTLE_ENDIAN__
  22470. #define vset_lane_u64(__p0, __p1, __p2) __extension__ ({ \
  22471. uint64_t __s0 = __p0; \
  22472. uint64x1_t __s1 = __p1; \
  22473. uint64x1_t __ret; \
  22474. __ret = (uint64x1_t) __builtin_neon_vset_lane_i64(__s0, (int8x8_t)__s1, __p2); \
  22475. __ret; \
  22476. })
  22477. #else
  22478. #define vset_lane_u64(__p0, __p1, __p2) __extension__ ({ \
  22479. uint64_t __s0 = __p0; \
  22480. uint64x1_t __s1 = __p1; \
  22481. uint64x1_t __ret; \
  22482. __ret = (uint64x1_t) __builtin_neon_vset_lane_i64(__s0, (int8x8_t)__s1, __p2); \
  22483. __ret; \
  22484. })
  22485. #define __noswap_vset_lane_u64(__p0, __p1, __p2) __extension__ ({ \
  22486. uint64_t __s0 = __p0; \
  22487. uint64x1_t __s1 = __p1; \
  22488. uint64x1_t __ret; \
  22489. __ret = (uint64x1_t) __builtin_neon_vset_lane_i64(__s0, (int8x8_t)__s1, __p2); \
  22490. __ret; \
  22491. })
  22492. #endif
  22493. #ifdef __LITTLE_ENDIAN__
  22494. #define vset_lane_u16(__p0, __p1, __p2) __extension__ ({ \
  22495. uint16_t __s0 = __p0; \
  22496. uint16x4_t __s1 = __p1; \
  22497. uint16x4_t __ret; \
  22498. __ret = (uint16x4_t) __builtin_neon_vset_lane_i16(__s0, (int8x8_t)__s1, __p2); \
  22499. __ret; \
  22500. })
  22501. #else
  22502. #define vset_lane_u16(__p0, __p1, __p2) __extension__ ({ \
  22503. uint16_t __s0 = __p0; \
  22504. uint16x4_t __s1 = __p1; \
  22505. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  22506. uint16x4_t __ret; \
  22507. __ret = (uint16x4_t) __builtin_neon_vset_lane_i16(__s0, (int8x8_t)__rev1, __p2); \
  22508. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  22509. __ret; \
  22510. })
  22511. #define __noswap_vset_lane_u16(__p0, __p1, __p2) __extension__ ({ \
  22512. uint16_t __s0 = __p0; \
  22513. uint16x4_t __s1 = __p1; \
  22514. uint16x4_t __ret; \
  22515. __ret = (uint16x4_t) __builtin_neon_vset_lane_i16(__s0, (int8x8_t)__s1, __p2); \
  22516. __ret; \
  22517. })
  22518. #endif
  22519. #ifdef __LITTLE_ENDIAN__
  22520. #define vset_lane_s8(__p0, __p1, __p2) __extension__ ({ \
  22521. int8_t __s0 = __p0; \
  22522. int8x8_t __s1 = __p1; \
  22523. int8x8_t __ret; \
  22524. __ret = (int8x8_t) __builtin_neon_vset_lane_i8(__s0, (int8x8_t)__s1, __p2); \
  22525. __ret; \
  22526. })
  22527. #else
  22528. #define vset_lane_s8(__p0, __p1, __p2) __extension__ ({ \
  22529. int8_t __s0 = __p0; \
  22530. int8x8_t __s1 = __p1; \
  22531. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  22532. int8x8_t __ret; \
  22533. __ret = (int8x8_t) __builtin_neon_vset_lane_i8(__s0, (int8x8_t)__rev1, __p2); \
  22534. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  22535. __ret; \
  22536. })
  22537. #define __noswap_vset_lane_s8(__p0, __p1, __p2) __extension__ ({ \
  22538. int8_t __s0 = __p0; \
  22539. int8x8_t __s1 = __p1; \
  22540. int8x8_t __ret; \
  22541. __ret = (int8x8_t) __builtin_neon_vset_lane_i8(__s0, (int8x8_t)__s1, __p2); \
  22542. __ret; \
  22543. })
  22544. #endif
  22545. #ifdef __LITTLE_ENDIAN__
  22546. #define vset_lane_f32(__p0, __p1, __p2) __extension__ ({ \
  22547. float32_t __s0 = __p0; \
  22548. float32x2_t __s1 = __p1; \
  22549. float32x2_t __ret; \
  22550. __ret = (float32x2_t) __builtin_neon_vset_lane_f32(__s0, (int8x8_t)__s1, __p2); \
  22551. __ret; \
  22552. })
  22553. #else
  22554. #define vset_lane_f32(__p0, __p1, __p2) __extension__ ({ \
  22555. float32_t __s0 = __p0; \
  22556. float32x2_t __s1 = __p1; \
  22557. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  22558. float32x2_t __ret; \
  22559. __ret = (float32x2_t) __builtin_neon_vset_lane_f32(__s0, (int8x8_t)__rev1, __p2); \
  22560. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  22561. __ret; \
  22562. })
  22563. #define __noswap_vset_lane_f32(__p0, __p1, __p2) __extension__ ({ \
  22564. float32_t __s0 = __p0; \
  22565. float32x2_t __s1 = __p1; \
  22566. float32x2_t __ret; \
  22567. __ret = (float32x2_t) __builtin_neon_vset_lane_f32(__s0, (int8x8_t)__s1, __p2); \
  22568. __ret; \
  22569. })
  22570. #endif
  22571. #ifdef __LITTLE_ENDIAN__
  22572. #define vset_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  22573. int32_t __s0 = __p0; \
  22574. int32x2_t __s1 = __p1; \
  22575. int32x2_t __ret; \
  22576. __ret = (int32x2_t) __builtin_neon_vset_lane_i32(__s0, (int8x8_t)__s1, __p2); \
  22577. __ret; \
  22578. })
  22579. #else
  22580. #define vset_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  22581. int32_t __s0 = __p0; \
  22582. int32x2_t __s1 = __p1; \
  22583. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  22584. int32x2_t __ret; \
  22585. __ret = (int32x2_t) __builtin_neon_vset_lane_i32(__s0, (int8x8_t)__rev1, __p2); \
  22586. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  22587. __ret; \
  22588. })
  22589. #define __noswap_vset_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  22590. int32_t __s0 = __p0; \
  22591. int32x2_t __s1 = __p1; \
  22592. int32x2_t __ret; \
  22593. __ret = (int32x2_t) __builtin_neon_vset_lane_i32(__s0, (int8x8_t)__s1, __p2); \
  22594. __ret; \
  22595. })
  22596. #endif
  22597. #ifdef __LITTLE_ENDIAN__
  22598. #define vset_lane_s64(__p0, __p1, __p2) __extension__ ({ \
  22599. int64_t __s0 = __p0; \
  22600. int64x1_t __s1 = __p1; \
  22601. int64x1_t __ret; \
  22602. __ret = (int64x1_t) __builtin_neon_vset_lane_i64(__s0, (int8x8_t)__s1, __p2); \
  22603. __ret; \
  22604. })
  22605. #else
  22606. #define vset_lane_s64(__p0, __p1, __p2) __extension__ ({ \
  22607. int64_t __s0 = __p0; \
  22608. int64x1_t __s1 = __p1; \
  22609. int64x1_t __ret; \
  22610. __ret = (int64x1_t) __builtin_neon_vset_lane_i64(__s0, (int8x8_t)__s1, __p2); \
  22611. __ret; \
  22612. })
  22613. #define __noswap_vset_lane_s64(__p0, __p1, __p2) __extension__ ({ \
  22614. int64_t __s0 = __p0; \
  22615. int64x1_t __s1 = __p1; \
  22616. int64x1_t __ret; \
  22617. __ret = (int64x1_t) __builtin_neon_vset_lane_i64(__s0, (int8x8_t)__s1, __p2); \
  22618. __ret; \
  22619. })
  22620. #endif
  22621. #ifdef __LITTLE_ENDIAN__
  22622. #define vset_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  22623. int16_t __s0 = __p0; \
  22624. int16x4_t __s1 = __p1; \
  22625. int16x4_t __ret; \
  22626. __ret = (int16x4_t) __builtin_neon_vset_lane_i16(__s0, (int8x8_t)__s1, __p2); \
  22627. __ret; \
  22628. })
  22629. #else
  22630. #define vset_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  22631. int16_t __s0 = __p0; \
  22632. int16x4_t __s1 = __p1; \
  22633. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  22634. int16x4_t __ret; \
  22635. __ret = (int16x4_t) __builtin_neon_vset_lane_i16(__s0, (int8x8_t)__rev1, __p2); \
  22636. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  22637. __ret; \
  22638. })
  22639. #define __noswap_vset_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  22640. int16_t __s0 = __p0; \
  22641. int16x4_t __s1 = __p1; \
  22642. int16x4_t __ret; \
  22643. __ret = (int16x4_t) __builtin_neon_vset_lane_i16(__s0, (int8x8_t)__s1, __p2); \
  22644. __ret; \
  22645. })
  22646. #endif
  22647. #ifdef __LITTLE_ENDIAN__
  22648. __ai uint8x16_t vshlq_u8(uint8x16_t __p0, int8x16_t __p1) {
  22649. uint8x16_t __ret;
  22650. __ret = (uint8x16_t) __builtin_neon_vshlq_v((int8x16_t)__p0, (int8x16_t)__p1, 48);
  22651. return __ret;
  22652. }
  22653. #else
  22654. __ai uint8x16_t vshlq_u8(uint8x16_t __p0, int8x16_t __p1) {
  22655. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  22656. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  22657. uint8x16_t __ret;
  22658. __ret = (uint8x16_t) __builtin_neon_vshlq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 48);
  22659. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  22660. return __ret;
  22661. }
  22662. #endif
  22663. #ifdef __LITTLE_ENDIAN__
  22664. __ai uint32x4_t vshlq_u32(uint32x4_t __p0, int32x4_t __p1) {
  22665. uint32x4_t __ret;
  22666. __ret = (uint32x4_t) __builtin_neon_vshlq_v((int8x16_t)__p0, (int8x16_t)__p1, 50);
  22667. return __ret;
  22668. }
  22669. #else
  22670. __ai uint32x4_t vshlq_u32(uint32x4_t __p0, int32x4_t __p1) {
  22671. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  22672. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  22673. uint32x4_t __ret;
  22674. __ret = (uint32x4_t) __builtin_neon_vshlq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 50);
  22675. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  22676. return __ret;
  22677. }
  22678. #endif
  22679. #ifdef __LITTLE_ENDIAN__
  22680. __ai uint64x2_t vshlq_u64(uint64x2_t __p0, int64x2_t __p1) {
  22681. uint64x2_t __ret;
  22682. __ret = (uint64x2_t) __builtin_neon_vshlq_v((int8x16_t)__p0, (int8x16_t)__p1, 51);
  22683. return __ret;
  22684. }
  22685. #else
  22686. __ai uint64x2_t vshlq_u64(uint64x2_t __p0, int64x2_t __p1) {
  22687. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  22688. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  22689. uint64x2_t __ret;
  22690. __ret = (uint64x2_t) __builtin_neon_vshlq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 51);
  22691. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  22692. return __ret;
  22693. }
  22694. #endif
  22695. #ifdef __LITTLE_ENDIAN__
  22696. __ai uint16x8_t vshlq_u16(uint16x8_t __p0, int16x8_t __p1) {
  22697. uint16x8_t __ret;
  22698. __ret = (uint16x8_t) __builtin_neon_vshlq_v((int8x16_t)__p0, (int8x16_t)__p1, 49);
  22699. return __ret;
  22700. }
  22701. #else
  22702. __ai uint16x8_t vshlq_u16(uint16x8_t __p0, int16x8_t __p1) {
  22703. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  22704. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  22705. uint16x8_t __ret;
  22706. __ret = (uint16x8_t) __builtin_neon_vshlq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 49);
  22707. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  22708. return __ret;
  22709. }
  22710. #endif
  22711. #ifdef __LITTLE_ENDIAN__
  22712. __ai int8x16_t vshlq_s8(int8x16_t __p0, int8x16_t __p1) {
  22713. int8x16_t __ret;
  22714. __ret = (int8x16_t) __builtin_neon_vshlq_v((int8x16_t)__p0, (int8x16_t)__p1, 32);
  22715. return __ret;
  22716. }
  22717. #else
  22718. __ai int8x16_t vshlq_s8(int8x16_t __p0, int8x16_t __p1) {
  22719. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  22720. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  22721. int8x16_t __ret;
  22722. __ret = (int8x16_t) __builtin_neon_vshlq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 32);
  22723. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  22724. return __ret;
  22725. }
  22726. #endif
  22727. #ifdef __LITTLE_ENDIAN__
  22728. __ai int32x4_t vshlq_s32(int32x4_t __p0, int32x4_t __p1) {
  22729. int32x4_t __ret;
  22730. __ret = (int32x4_t) __builtin_neon_vshlq_v((int8x16_t)__p0, (int8x16_t)__p1, 34);
  22731. return __ret;
  22732. }
  22733. #else
  22734. __ai int32x4_t vshlq_s32(int32x4_t __p0, int32x4_t __p1) {
  22735. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  22736. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  22737. int32x4_t __ret;
  22738. __ret = (int32x4_t) __builtin_neon_vshlq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 34);
  22739. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  22740. return __ret;
  22741. }
  22742. #endif
  22743. #ifdef __LITTLE_ENDIAN__
  22744. __ai int64x2_t vshlq_s64(int64x2_t __p0, int64x2_t __p1) {
  22745. int64x2_t __ret;
  22746. __ret = (int64x2_t) __builtin_neon_vshlq_v((int8x16_t)__p0, (int8x16_t)__p1, 35);
  22747. return __ret;
  22748. }
  22749. #else
  22750. __ai int64x2_t vshlq_s64(int64x2_t __p0, int64x2_t __p1) {
  22751. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  22752. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  22753. int64x2_t __ret;
  22754. __ret = (int64x2_t) __builtin_neon_vshlq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 35);
  22755. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  22756. return __ret;
  22757. }
  22758. #endif
  22759. #ifdef __LITTLE_ENDIAN__
  22760. __ai int16x8_t vshlq_s16(int16x8_t __p0, int16x8_t __p1) {
  22761. int16x8_t __ret;
  22762. __ret = (int16x8_t) __builtin_neon_vshlq_v((int8x16_t)__p0, (int8x16_t)__p1, 33);
  22763. return __ret;
  22764. }
  22765. #else
  22766. __ai int16x8_t vshlq_s16(int16x8_t __p0, int16x8_t __p1) {
  22767. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  22768. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  22769. int16x8_t __ret;
  22770. __ret = (int16x8_t) __builtin_neon_vshlq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 33);
  22771. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  22772. return __ret;
  22773. }
  22774. #endif
  22775. #ifdef __LITTLE_ENDIAN__
  22776. __ai uint8x8_t vshl_u8(uint8x8_t __p0, int8x8_t __p1) {
  22777. uint8x8_t __ret;
  22778. __ret = (uint8x8_t) __builtin_neon_vshl_v((int8x8_t)__p0, (int8x8_t)__p1, 16);
  22779. return __ret;
  22780. }
  22781. #else
  22782. __ai uint8x8_t vshl_u8(uint8x8_t __p0, int8x8_t __p1) {
  22783. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  22784. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  22785. uint8x8_t __ret;
  22786. __ret = (uint8x8_t) __builtin_neon_vshl_v((int8x8_t)__rev0, (int8x8_t)__rev1, 16);
  22787. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  22788. return __ret;
  22789. }
  22790. #endif
  22791. #ifdef __LITTLE_ENDIAN__
  22792. __ai uint32x2_t vshl_u32(uint32x2_t __p0, int32x2_t __p1) {
  22793. uint32x2_t __ret;
  22794. __ret = (uint32x2_t) __builtin_neon_vshl_v((int8x8_t)__p0, (int8x8_t)__p1, 18);
  22795. return __ret;
  22796. }
  22797. #else
  22798. __ai uint32x2_t vshl_u32(uint32x2_t __p0, int32x2_t __p1) {
  22799. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  22800. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  22801. uint32x2_t __ret;
  22802. __ret = (uint32x2_t) __builtin_neon_vshl_v((int8x8_t)__rev0, (int8x8_t)__rev1, 18);
  22803. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  22804. return __ret;
  22805. }
  22806. #endif
  22807. #ifdef __LITTLE_ENDIAN__
  22808. __ai uint64x1_t vshl_u64(uint64x1_t __p0, int64x1_t __p1) {
  22809. uint64x1_t __ret;
  22810. __ret = (uint64x1_t) __builtin_neon_vshl_v((int8x8_t)__p0, (int8x8_t)__p1, 19);
  22811. return __ret;
  22812. }
  22813. #else
  22814. __ai uint64x1_t vshl_u64(uint64x1_t __p0, int64x1_t __p1) {
  22815. uint64x1_t __ret;
  22816. __ret = (uint64x1_t) __builtin_neon_vshl_v((int8x8_t)__p0, (int8x8_t)__p1, 19);
  22817. return __ret;
  22818. }
  22819. #endif
  22820. #ifdef __LITTLE_ENDIAN__
  22821. __ai uint16x4_t vshl_u16(uint16x4_t __p0, int16x4_t __p1) {
  22822. uint16x4_t __ret;
  22823. __ret = (uint16x4_t) __builtin_neon_vshl_v((int8x8_t)__p0, (int8x8_t)__p1, 17);
  22824. return __ret;
  22825. }
  22826. #else
  22827. __ai uint16x4_t vshl_u16(uint16x4_t __p0, int16x4_t __p1) {
  22828. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  22829. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  22830. uint16x4_t __ret;
  22831. __ret = (uint16x4_t) __builtin_neon_vshl_v((int8x8_t)__rev0, (int8x8_t)__rev1, 17);
  22832. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  22833. return __ret;
  22834. }
  22835. #endif
  22836. #ifdef __LITTLE_ENDIAN__
  22837. __ai int8x8_t vshl_s8(int8x8_t __p0, int8x8_t __p1) {
  22838. int8x8_t __ret;
  22839. __ret = (int8x8_t) __builtin_neon_vshl_v((int8x8_t)__p0, (int8x8_t)__p1, 0);
  22840. return __ret;
  22841. }
  22842. #else
  22843. __ai int8x8_t vshl_s8(int8x8_t __p0, int8x8_t __p1) {
  22844. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  22845. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  22846. int8x8_t __ret;
  22847. __ret = (int8x8_t) __builtin_neon_vshl_v((int8x8_t)__rev0, (int8x8_t)__rev1, 0);
  22848. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  22849. return __ret;
  22850. }
  22851. #endif
  22852. #ifdef __LITTLE_ENDIAN__
  22853. __ai int32x2_t vshl_s32(int32x2_t __p0, int32x2_t __p1) {
  22854. int32x2_t __ret;
  22855. __ret = (int32x2_t) __builtin_neon_vshl_v((int8x8_t)__p0, (int8x8_t)__p1, 2);
  22856. return __ret;
  22857. }
  22858. #else
  22859. __ai int32x2_t vshl_s32(int32x2_t __p0, int32x2_t __p1) {
  22860. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  22861. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  22862. int32x2_t __ret;
  22863. __ret = (int32x2_t) __builtin_neon_vshl_v((int8x8_t)__rev0, (int8x8_t)__rev1, 2);
  22864. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  22865. return __ret;
  22866. }
  22867. #endif
  22868. #ifdef __LITTLE_ENDIAN__
  22869. __ai int64x1_t vshl_s64(int64x1_t __p0, int64x1_t __p1) {
  22870. int64x1_t __ret;
  22871. __ret = (int64x1_t) __builtin_neon_vshl_v((int8x8_t)__p0, (int8x8_t)__p1, 3);
  22872. return __ret;
  22873. }
  22874. #else
  22875. __ai int64x1_t vshl_s64(int64x1_t __p0, int64x1_t __p1) {
  22876. int64x1_t __ret;
  22877. __ret = (int64x1_t) __builtin_neon_vshl_v((int8x8_t)__p0, (int8x8_t)__p1, 3);
  22878. return __ret;
  22879. }
  22880. #endif
  22881. #ifdef __LITTLE_ENDIAN__
  22882. __ai int16x4_t vshl_s16(int16x4_t __p0, int16x4_t __p1) {
  22883. int16x4_t __ret;
  22884. __ret = (int16x4_t) __builtin_neon_vshl_v((int8x8_t)__p0, (int8x8_t)__p1, 1);
  22885. return __ret;
  22886. }
  22887. #else
  22888. __ai int16x4_t vshl_s16(int16x4_t __p0, int16x4_t __p1) {
  22889. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  22890. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  22891. int16x4_t __ret;
  22892. __ret = (int16x4_t) __builtin_neon_vshl_v((int8x8_t)__rev0, (int8x8_t)__rev1, 1);
  22893. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  22894. return __ret;
  22895. }
  22896. #endif
  22897. #ifdef __LITTLE_ENDIAN__
  22898. #define vshlq_n_u8(__p0, __p1) __extension__ ({ \
  22899. uint8x16_t __s0 = __p0; \
  22900. uint8x16_t __ret; \
  22901. __ret = (uint8x16_t) __builtin_neon_vshlq_n_v((int8x16_t)__s0, __p1, 48); \
  22902. __ret; \
  22903. })
  22904. #else
  22905. #define vshlq_n_u8(__p0, __p1) __extension__ ({ \
  22906. uint8x16_t __s0 = __p0; \
  22907. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  22908. uint8x16_t __ret; \
  22909. __ret = (uint8x16_t) __builtin_neon_vshlq_n_v((int8x16_t)__rev0, __p1, 48); \
  22910. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  22911. __ret; \
  22912. })
  22913. #endif
  22914. #ifdef __LITTLE_ENDIAN__
  22915. #define vshlq_n_u32(__p0, __p1) __extension__ ({ \
  22916. uint32x4_t __s0 = __p0; \
  22917. uint32x4_t __ret; \
  22918. __ret = (uint32x4_t) __builtin_neon_vshlq_n_v((int8x16_t)__s0, __p1, 50); \
  22919. __ret; \
  22920. })
  22921. #else
  22922. #define vshlq_n_u32(__p0, __p1) __extension__ ({ \
  22923. uint32x4_t __s0 = __p0; \
  22924. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  22925. uint32x4_t __ret; \
  22926. __ret = (uint32x4_t) __builtin_neon_vshlq_n_v((int8x16_t)__rev0, __p1, 50); \
  22927. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  22928. __ret; \
  22929. })
  22930. #endif
  22931. #ifdef __LITTLE_ENDIAN__
  22932. #define vshlq_n_u64(__p0, __p1) __extension__ ({ \
  22933. uint64x2_t __s0 = __p0; \
  22934. uint64x2_t __ret; \
  22935. __ret = (uint64x2_t) __builtin_neon_vshlq_n_v((int8x16_t)__s0, __p1, 51); \
  22936. __ret; \
  22937. })
  22938. #else
  22939. #define vshlq_n_u64(__p0, __p1) __extension__ ({ \
  22940. uint64x2_t __s0 = __p0; \
  22941. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  22942. uint64x2_t __ret; \
  22943. __ret = (uint64x2_t) __builtin_neon_vshlq_n_v((int8x16_t)__rev0, __p1, 51); \
  22944. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  22945. __ret; \
  22946. })
  22947. #endif
  22948. #ifdef __LITTLE_ENDIAN__
  22949. #define vshlq_n_u16(__p0, __p1) __extension__ ({ \
  22950. uint16x8_t __s0 = __p0; \
  22951. uint16x8_t __ret; \
  22952. __ret = (uint16x8_t) __builtin_neon_vshlq_n_v((int8x16_t)__s0, __p1, 49); \
  22953. __ret; \
  22954. })
  22955. #else
  22956. #define vshlq_n_u16(__p0, __p1) __extension__ ({ \
  22957. uint16x8_t __s0 = __p0; \
  22958. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  22959. uint16x8_t __ret; \
  22960. __ret = (uint16x8_t) __builtin_neon_vshlq_n_v((int8x16_t)__rev0, __p1, 49); \
  22961. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  22962. __ret; \
  22963. })
  22964. #endif
  22965. #ifdef __LITTLE_ENDIAN__
  22966. #define vshlq_n_s8(__p0, __p1) __extension__ ({ \
  22967. int8x16_t __s0 = __p0; \
  22968. int8x16_t __ret; \
  22969. __ret = (int8x16_t) __builtin_neon_vshlq_n_v((int8x16_t)__s0, __p1, 32); \
  22970. __ret; \
  22971. })
  22972. #else
  22973. #define vshlq_n_s8(__p0, __p1) __extension__ ({ \
  22974. int8x16_t __s0 = __p0; \
  22975. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  22976. int8x16_t __ret; \
  22977. __ret = (int8x16_t) __builtin_neon_vshlq_n_v((int8x16_t)__rev0, __p1, 32); \
  22978. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  22979. __ret; \
  22980. })
  22981. #endif
  22982. #ifdef __LITTLE_ENDIAN__
  22983. #define vshlq_n_s32(__p0, __p1) __extension__ ({ \
  22984. int32x4_t __s0 = __p0; \
  22985. int32x4_t __ret; \
  22986. __ret = (int32x4_t) __builtin_neon_vshlq_n_v((int8x16_t)__s0, __p1, 34); \
  22987. __ret; \
  22988. })
  22989. #else
  22990. #define vshlq_n_s32(__p0, __p1) __extension__ ({ \
  22991. int32x4_t __s0 = __p0; \
  22992. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  22993. int32x4_t __ret; \
  22994. __ret = (int32x4_t) __builtin_neon_vshlq_n_v((int8x16_t)__rev0, __p1, 34); \
  22995. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  22996. __ret; \
  22997. })
  22998. #endif
  22999. #ifdef __LITTLE_ENDIAN__
  23000. #define vshlq_n_s64(__p0, __p1) __extension__ ({ \
  23001. int64x2_t __s0 = __p0; \
  23002. int64x2_t __ret; \
  23003. __ret = (int64x2_t) __builtin_neon_vshlq_n_v((int8x16_t)__s0, __p1, 35); \
  23004. __ret; \
  23005. })
  23006. #else
  23007. #define vshlq_n_s64(__p0, __p1) __extension__ ({ \
  23008. int64x2_t __s0 = __p0; \
  23009. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  23010. int64x2_t __ret; \
  23011. __ret = (int64x2_t) __builtin_neon_vshlq_n_v((int8x16_t)__rev0, __p1, 35); \
  23012. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  23013. __ret; \
  23014. })
  23015. #endif
  23016. #ifdef __LITTLE_ENDIAN__
  23017. #define vshlq_n_s16(__p0, __p1) __extension__ ({ \
  23018. int16x8_t __s0 = __p0; \
  23019. int16x8_t __ret; \
  23020. __ret = (int16x8_t) __builtin_neon_vshlq_n_v((int8x16_t)__s0, __p1, 33); \
  23021. __ret; \
  23022. })
  23023. #else
  23024. #define vshlq_n_s16(__p0, __p1) __extension__ ({ \
  23025. int16x8_t __s0 = __p0; \
  23026. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  23027. int16x8_t __ret; \
  23028. __ret = (int16x8_t) __builtin_neon_vshlq_n_v((int8x16_t)__rev0, __p1, 33); \
  23029. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  23030. __ret; \
  23031. })
  23032. #endif
  23033. #ifdef __LITTLE_ENDIAN__
  23034. #define vshl_n_u8(__p0, __p1) __extension__ ({ \
  23035. uint8x8_t __s0 = __p0; \
  23036. uint8x8_t __ret; \
  23037. __ret = (uint8x8_t) __builtin_neon_vshl_n_v((int8x8_t)__s0, __p1, 16); \
  23038. __ret; \
  23039. })
  23040. #else
  23041. #define vshl_n_u8(__p0, __p1) __extension__ ({ \
  23042. uint8x8_t __s0 = __p0; \
  23043. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  23044. uint8x8_t __ret; \
  23045. __ret = (uint8x8_t) __builtin_neon_vshl_n_v((int8x8_t)__rev0, __p1, 16); \
  23046. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  23047. __ret; \
  23048. })
  23049. #endif
  23050. #ifdef __LITTLE_ENDIAN__
  23051. #define vshl_n_u32(__p0, __p1) __extension__ ({ \
  23052. uint32x2_t __s0 = __p0; \
  23053. uint32x2_t __ret; \
  23054. __ret = (uint32x2_t) __builtin_neon_vshl_n_v((int8x8_t)__s0, __p1, 18); \
  23055. __ret; \
  23056. })
  23057. #else
  23058. #define vshl_n_u32(__p0, __p1) __extension__ ({ \
  23059. uint32x2_t __s0 = __p0; \
  23060. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  23061. uint32x2_t __ret; \
  23062. __ret = (uint32x2_t) __builtin_neon_vshl_n_v((int8x8_t)__rev0, __p1, 18); \
  23063. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  23064. __ret; \
  23065. })
  23066. #endif
  23067. #ifdef __LITTLE_ENDIAN__
  23068. #define vshl_n_u64(__p0, __p1) __extension__ ({ \
  23069. uint64x1_t __s0 = __p0; \
  23070. uint64x1_t __ret; \
  23071. __ret = (uint64x1_t) __builtin_neon_vshl_n_v((int8x8_t)__s0, __p1, 19); \
  23072. __ret; \
  23073. })
  23074. #else
  23075. #define vshl_n_u64(__p0, __p1) __extension__ ({ \
  23076. uint64x1_t __s0 = __p0; \
  23077. uint64x1_t __ret; \
  23078. __ret = (uint64x1_t) __builtin_neon_vshl_n_v((int8x8_t)__s0, __p1, 19); \
  23079. __ret; \
  23080. })
  23081. #endif
  23082. #ifdef __LITTLE_ENDIAN__
  23083. #define vshl_n_u16(__p0, __p1) __extension__ ({ \
  23084. uint16x4_t __s0 = __p0; \
  23085. uint16x4_t __ret; \
  23086. __ret = (uint16x4_t) __builtin_neon_vshl_n_v((int8x8_t)__s0, __p1, 17); \
  23087. __ret; \
  23088. })
  23089. #else
  23090. #define vshl_n_u16(__p0, __p1) __extension__ ({ \
  23091. uint16x4_t __s0 = __p0; \
  23092. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  23093. uint16x4_t __ret; \
  23094. __ret = (uint16x4_t) __builtin_neon_vshl_n_v((int8x8_t)__rev0, __p1, 17); \
  23095. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  23096. __ret; \
  23097. })
  23098. #endif
  23099. #ifdef __LITTLE_ENDIAN__
  23100. #define vshl_n_s8(__p0, __p1) __extension__ ({ \
  23101. int8x8_t __s0 = __p0; \
  23102. int8x8_t __ret; \
  23103. __ret = (int8x8_t) __builtin_neon_vshl_n_v((int8x8_t)__s0, __p1, 0); \
  23104. __ret; \
  23105. })
  23106. #else
  23107. #define vshl_n_s8(__p0, __p1) __extension__ ({ \
  23108. int8x8_t __s0 = __p0; \
  23109. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  23110. int8x8_t __ret; \
  23111. __ret = (int8x8_t) __builtin_neon_vshl_n_v((int8x8_t)__rev0, __p1, 0); \
  23112. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  23113. __ret; \
  23114. })
  23115. #endif
  23116. #ifdef __LITTLE_ENDIAN__
  23117. #define vshl_n_s32(__p0, __p1) __extension__ ({ \
  23118. int32x2_t __s0 = __p0; \
  23119. int32x2_t __ret; \
  23120. __ret = (int32x2_t) __builtin_neon_vshl_n_v((int8x8_t)__s0, __p1, 2); \
  23121. __ret; \
  23122. })
  23123. #else
  23124. #define vshl_n_s32(__p0, __p1) __extension__ ({ \
  23125. int32x2_t __s0 = __p0; \
  23126. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  23127. int32x2_t __ret; \
  23128. __ret = (int32x2_t) __builtin_neon_vshl_n_v((int8x8_t)__rev0, __p1, 2); \
  23129. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  23130. __ret; \
  23131. })
  23132. #endif
  23133. #ifdef __LITTLE_ENDIAN__
  23134. #define vshl_n_s64(__p0, __p1) __extension__ ({ \
  23135. int64x1_t __s0 = __p0; \
  23136. int64x1_t __ret; \
  23137. __ret = (int64x1_t) __builtin_neon_vshl_n_v((int8x8_t)__s0, __p1, 3); \
  23138. __ret; \
  23139. })
  23140. #else
  23141. #define vshl_n_s64(__p0, __p1) __extension__ ({ \
  23142. int64x1_t __s0 = __p0; \
  23143. int64x1_t __ret; \
  23144. __ret = (int64x1_t) __builtin_neon_vshl_n_v((int8x8_t)__s0, __p1, 3); \
  23145. __ret; \
  23146. })
  23147. #endif
  23148. #ifdef __LITTLE_ENDIAN__
  23149. #define vshl_n_s16(__p0, __p1) __extension__ ({ \
  23150. int16x4_t __s0 = __p0; \
  23151. int16x4_t __ret; \
  23152. __ret = (int16x4_t) __builtin_neon_vshl_n_v((int8x8_t)__s0, __p1, 1); \
  23153. __ret; \
  23154. })
  23155. #else
  23156. #define vshl_n_s16(__p0, __p1) __extension__ ({ \
  23157. int16x4_t __s0 = __p0; \
  23158. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  23159. int16x4_t __ret; \
  23160. __ret = (int16x4_t) __builtin_neon_vshl_n_v((int8x8_t)__rev0, __p1, 1); \
  23161. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  23162. __ret; \
  23163. })
  23164. #endif
  23165. #ifdef __LITTLE_ENDIAN__
  23166. #define vshll_n_u8(__p0, __p1) __extension__ ({ \
  23167. uint8x8_t __s0 = __p0; \
  23168. uint16x8_t __ret; \
  23169. __ret = (uint16x8_t) __builtin_neon_vshll_n_v((int8x8_t)__s0, __p1, 49); \
  23170. __ret; \
  23171. })
  23172. #else
  23173. #define vshll_n_u8(__p0, __p1) __extension__ ({ \
  23174. uint8x8_t __s0 = __p0; \
  23175. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  23176. uint16x8_t __ret; \
  23177. __ret = (uint16x8_t) __builtin_neon_vshll_n_v((int8x8_t)__rev0, __p1, 49); \
  23178. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  23179. __ret; \
  23180. })
  23181. #define __noswap_vshll_n_u8(__p0, __p1) __extension__ ({ \
  23182. uint8x8_t __s0 = __p0; \
  23183. uint16x8_t __ret; \
  23184. __ret = (uint16x8_t) __builtin_neon_vshll_n_v((int8x8_t)__s0, __p1, 49); \
  23185. __ret; \
  23186. })
  23187. #endif
  23188. #ifdef __LITTLE_ENDIAN__
  23189. #define vshll_n_u32(__p0, __p1) __extension__ ({ \
  23190. uint32x2_t __s0 = __p0; \
  23191. uint64x2_t __ret; \
  23192. __ret = (uint64x2_t) __builtin_neon_vshll_n_v((int8x8_t)__s0, __p1, 51); \
  23193. __ret; \
  23194. })
  23195. #else
  23196. #define vshll_n_u32(__p0, __p1) __extension__ ({ \
  23197. uint32x2_t __s0 = __p0; \
  23198. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  23199. uint64x2_t __ret; \
  23200. __ret = (uint64x2_t) __builtin_neon_vshll_n_v((int8x8_t)__rev0, __p1, 51); \
  23201. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  23202. __ret; \
  23203. })
  23204. #define __noswap_vshll_n_u32(__p0, __p1) __extension__ ({ \
  23205. uint32x2_t __s0 = __p0; \
  23206. uint64x2_t __ret; \
  23207. __ret = (uint64x2_t) __builtin_neon_vshll_n_v((int8x8_t)__s0, __p1, 51); \
  23208. __ret; \
  23209. })
  23210. #endif
  23211. #ifdef __LITTLE_ENDIAN__
  23212. #define vshll_n_u16(__p0, __p1) __extension__ ({ \
  23213. uint16x4_t __s0 = __p0; \
  23214. uint32x4_t __ret; \
  23215. __ret = (uint32x4_t) __builtin_neon_vshll_n_v((int8x8_t)__s0, __p1, 50); \
  23216. __ret; \
  23217. })
  23218. #else
  23219. #define vshll_n_u16(__p0, __p1) __extension__ ({ \
  23220. uint16x4_t __s0 = __p0; \
  23221. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  23222. uint32x4_t __ret; \
  23223. __ret = (uint32x4_t) __builtin_neon_vshll_n_v((int8x8_t)__rev0, __p1, 50); \
  23224. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  23225. __ret; \
  23226. })
  23227. #define __noswap_vshll_n_u16(__p0, __p1) __extension__ ({ \
  23228. uint16x4_t __s0 = __p0; \
  23229. uint32x4_t __ret; \
  23230. __ret = (uint32x4_t) __builtin_neon_vshll_n_v((int8x8_t)__s0, __p1, 50); \
  23231. __ret; \
  23232. })
  23233. #endif
  23234. #ifdef __LITTLE_ENDIAN__
  23235. #define vshll_n_s8(__p0, __p1) __extension__ ({ \
  23236. int8x8_t __s0 = __p0; \
  23237. int16x8_t __ret; \
  23238. __ret = (int16x8_t) __builtin_neon_vshll_n_v((int8x8_t)__s0, __p1, 33); \
  23239. __ret; \
  23240. })
  23241. #else
  23242. #define vshll_n_s8(__p0, __p1) __extension__ ({ \
  23243. int8x8_t __s0 = __p0; \
  23244. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  23245. int16x8_t __ret; \
  23246. __ret = (int16x8_t) __builtin_neon_vshll_n_v((int8x8_t)__rev0, __p1, 33); \
  23247. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  23248. __ret; \
  23249. })
  23250. #define __noswap_vshll_n_s8(__p0, __p1) __extension__ ({ \
  23251. int8x8_t __s0 = __p0; \
  23252. int16x8_t __ret; \
  23253. __ret = (int16x8_t) __builtin_neon_vshll_n_v((int8x8_t)__s0, __p1, 33); \
  23254. __ret; \
  23255. })
  23256. #endif
  23257. #ifdef __LITTLE_ENDIAN__
  23258. #define vshll_n_s32(__p0, __p1) __extension__ ({ \
  23259. int32x2_t __s0 = __p0; \
  23260. int64x2_t __ret; \
  23261. __ret = (int64x2_t) __builtin_neon_vshll_n_v((int8x8_t)__s0, __p1, 35); \
  23262. __ret; \
  23263. })
  23264. #else
  23265. #define vshll_n_s32(__p0, __p1) __extension__ ({ \
  23266. int32x2_t __s0 = __p0; \
  23267. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  23268. int64x2_t __ret; \
  23269. __ret = (int64x2_t) __builtin_neon_vshll_n_v((int8x8_t)__rev0, __p1, 35); \
  23270. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  23271. __ret; \
  23272. })
  23273. #define __noswap_vshll_n_s32(__p0, __p1) __extension__ ({ \
  23274. int32x2_t __s0 = __p0; \
  23275. int64x2_t __ret; \
  23276. __ret = (int64x2_t) __builtin_neon_vshll_n_v((int8x8_t)__s0, __p1, 35); \
  23277. __ret; \
  23278. })
  23279. #endif
  23280. #ifdef __LITTLE_ENDIAN__
  23281. #define vshll_n_s16(__p0, __p1) __extension__ ({ \
  23282. int16x4_t __s0 = __p0; \
  23283. int32x4_t __ret; \
  23284. __ret = (int32x4_t) __builtin_neon_vshll_n_v((int8x8_t)__s0, __p1, 34); \
  23285. __ret; \
  23286. })
  23287. #else
  23288. #define vshll_n_s16(__p0, __p1) __extension__ ({ \
  23289. int16x4_t __s0 = __p0; \
  23290. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  23291. int32x4_t __ret; \
  23292. __ret = (int32x4_t) __builtin_neon_vshll_n_v((int8x8_t)__rev0, __p1, 34); \
  23293. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  23294. __ret; \
  23295. })
  23296. #define __noswap_vshll_n_s16(__p0, __p1) __extension__ ({ \
  23297. int16x4_t __s0 = __p0; \
  23298. int32x4_t __ret; \
  23299. __ret = (int32x4_t) __builtin_neon_vshll_n_v((int8x8_t)__s0, __p1, 34); \
  23300. __ret; \
  23301. })
  23302. #endif
  23303. #ifdef __LITTLE_ENDIAN__
  23304. #define vshrq_n_u8(__p0, __p1) __extension__ ({ \
  23305. uint8x16_t __s0 = __p0; \
  23306. uint8x16_t __ret; \
  23307. __ret = (uint8x16_t) __builtin_neon_vshrq_n_v((int8x16_t)__s0, __p1, 48); \
  23308. __ret; \
  23309. })
  23310. #else
  23311. #define vshrq_n_u8(__p0, __p1) __extension__ ({ \
  23312. uint8x16_t __s0 = __p0; \
  23313. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  23314. uint8x16_t __ret; \
  23315. __ret = (uint8x16_t) __builtin_neon_vshrq_n_v((int8x16_t)__rev0, __p1, 48); \
  23316. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  23317. __ret; \
  23318. })
  23319. #endif
  23320. #ifdef __LITTLE_ENDIAN__
  23321. #define vshrq_n_u32(__p0, __p1) __extension__ ({ \
  23322. uint32x4_t __s0 = __p0; \
  23323. uint32x4_t __ret; \
  23324. __ret = (uint32x4_t) __builtin_neon_vshrq_n_v((int8x16_t)__s0, __p1, 50); \
  23325. __ret; \
  23326. })
  23327. #else
  23328. #define vshrq_n_u32(__p0, __p1) __extension__ ({ \
  23329. uint32x4_t __s0 = __p0; \
  23330. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  23331. uint32x4_t __ret; \
  23332. __ret = (uint32x4_t) __builtin_neon_vshrq_n_v((int8x16_t)__rev0, __p1, 50); \
  23333. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  23334. __ret; \
  23335. })
  23336. #endif
  23337. #ifdef __LITTLE_ENDIAN__
  23338. #define vshrq_n_u64(__p0, __p1) __extension__ ({ \
  23339. uint64x2_t __s0 = __p0; \
  23340. uint64x2_t __ret; \
  23341. __ret = (uint64x2_t) __builtin_neon_vshrq_n_v((int8x16_t)__s0, __p1, 51); \
  23342. __ret; \
  23343. })
  23344. #else
  23345. #define vshrq_n_u64(__p0, __p1) __extension__ ({ \
  23346. uint64x2_t __s0 = __p0; \
  23347. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  23348. uint64x2_t __ret; \
  23349. __ret = (uint64x2_t) __builtin_neon_vshrq_n_v((int8x16_t)__rev0, __p1, 51); \
  23350. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  23351. __ret; \
  23352. })
  23353. #endif
  23354. #ifdef __LITTLE_ENDIAN__
  23355. #define vshrq_n_u16(__p0, __p1) __extension__ ({ \
  23356. uint16x8_t __s0 = __p0; \
  23357. uint16x8_t __ret; \
  23358. __ret = (uint16x8_t) __builtin_neon_vshrq_n_v((int8x16_t)__s0, __p1, 49); \
  23359. __ret; \
  23360. })
  23361. #else
  23362. #define vshrq_n_u16(__p0, __p1) __extension__ ({ \
  23363. uint16x8_t __s0 = __p0; \
  23364. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  23365. uint16x8_t __ret; \
  23366. __ret = (uint16x8_t) __builtin_neon_vshrq_n_v((int8x16_t)__rev0, __p1, 49); \
  23367. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  23368. __ret; \
  23369. })
  23370. #endif
  23371. #ifdef __LITTLE_ENDIAN__
  23372. #define vshrq_n_s8(__p0, __p1) __extension__ ({ \
  23373. int8x16_t __s0 = __p0; \
  23374. int8x16_t __ret; \
  23375. __ret = (int8x16_t) __builtin_neon_vshrq_n_v((int8x16_t)__s0, __p1, 32); \
  23376. __ret; \
  23377. })
  23378. #else
  23379. #define vshrq_n_s8(__p0, __p1) __extension__ ({ \
  23380. int8x16_t __s0 = __p0; \
  23381. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  23382. int8x16_t __ret; \
  23383. __ret = (int8x16_t) __builtin_neon_vshrq_n_v((int8x16_t)__rev0, __p1, 32); \
  23384. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  23385. __ret; \
  23386. })
  23387. #endif
  23388. #ifdef __LITTLE_ENDIAN__
  23389. #define vshrq_n_s32(__p0, __p1) __extension__ ({ \
  23390. int32x4_t __s0 = __p0; \
  23391. int32x4_t __ret; \
  23392. __ret = (int32x4_t) __builtin_neon_vshrq_n_v((int8x16_t)__s0, __p1, 34); \
  23393. __ret; \
  23394. })
  23395. #else
  23396. #define vshrq_n_s32(__p0, __p1) __extension__ ({ \
  23397. int32x4_t __s0 = __p0; \
  23398. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  23399. int32x4_t __ret; \
  23400. __ret = (int32x4_t) __builtin_neon_vshrq_n_v((int8x16_t)__rev0, __p1, 34); \
  23401. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  23402. __ret; \
  23403. })
  23404. #endif
  23405. #ifdef __LITTLE_ENDIAN__
  23406. #define vshrq_n_s64(__p0, __p1) __extension__ ({ \
  23407. int64x2_t __s0 = __p0; \
  23408. int64x2_t __ret; \
  23409. __ret = (int64x2_t) __builtin_neon_vshrq_n_v((int8x16_t)__s0, __p1, 35); \
  23410. __ret; \
  23411. })
  23412. #else
  23413. #define vshrq_n_s64(__p0, __p1) __extension__ ({ \
  23414. int64x2_t __s0 = __p0; \
  23415. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  23416. int64x2_t __ret; \
  23417. __ret = (int64x2_t) __builtin_neon_vshrq_n_v((int8x16_t)__rev0, __p1, 35); \
  23418. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  23419. __ret; \
  23420. })
  23421. #endif
  23422. #ifdef __LITTLE_ENDIAN__
  23423. #define vshrq_n_s16(__p0, __p1) __extension__ ({ \
  23424. int16x8_t __s0 = __p0; \
  23425. int16x8_t __ret; \
  23426. __ret = (int16x8_t) __builtin_neon_vshrq_n_v((int8x16_t)__s0, __p1, 33); \
  23427. __ret; \
  23428. })
  23429. #else
  23430. #define vshrq_n_s16(__p0, __p1) __extension__ ({ \
  23431. int16x8_t __s0 = __p0; \
  23432. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  23433. int16x8_t __ret; \
  23434. __ret = (int16x8_t) __builtin_neon_vshrq_n_v((int8x16_t)__rev0, __p1, 33); \
  23435. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  23436. __ret; \
  23437. })
  23438. #endif
  23439. #ifdef __LITTLE_ENDIAN__
  23440. #define vshr_n_u8(__p0, __p1) __extension__ ({ \
  23441. uint8x8_t __s0 = __p0; \
  23442. uint8x8_t __ret; \
  23443. __ret = (uint8x8_t) __builtin_neon_vshr_n_v((int8x8_t)__s0, __p1, 16); \
  23444. __ret; \
  23445. })
  23446. #else
  23447. #define vshr_n_u8(__p0, __p1) __extension__ ({ \
  23448. uint8x8_t __s0 = __p0; \
  23449. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  23450. uint8x8_t __ret; \
  23451. __ret = (uint8x8_t) __builtin_neon_vshr_n_v((int8x8_t)__rev0, __p1, 16); \
  23452. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  23453. __ret; \
  23454. })
  23455. #endif
  23456. #ifdef __LITTLE_ENDIAN__
  23457. #define vshr_n_u32(__p0, __p1) __extension__ ({ \
  23458. uint32x2_t __s0 = __p0; \
  23459. uint32x2_t __ret; \
  23460. __ret = (uint32x2_t) __builtin_neon_vshr_n_v((int8x8_t)__s0, __p1, 18); \
  23461. __ret; \
  23462. })
  23463. #else
  23464. #define vshr_n_u32(__p0, __p1) __extension__ ({ \
  23465. uint32x2_t __s0 = __p0; \
  23466. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  23467. uint32x2_t __ret; \
  23468. __ret = (uint32x2_t) __builtin_neon_vshr_n_v((int8x8_t)__rev0, __p1, 18); \
  23469. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  23470. __ret; \
  23471. })
  23472. #endif
  23473. #ifdef __LITTLE_ENDIAN__
  23474. #define vshr_n_u64(__p0, __p1) __extension__ ({ \
  23475. uint64x1_t __s0 = __p0; \
  23476. uint64x1_t __ret; \
  23477. __ret = (uint64x1_t) __builtin_neon_vshr_n_v((int8x8_t)__s0, __p1, 19); \
  23478. __ret; \
  23479. })
  23480. #else
  23481. #define vshr_n_u64(__p0, __p1) __extension__ ({ \
  23482. uint64x1_t __s0 = __p0; \
  23483. uint64x1_t __ret; \
  23484. __ret = (uint64x1_t) __builtin_neon_vshr_n_v((int8x8_t)__s0, __p1, 19); \
  23485. __ret; \
  23486. })
  23487. #endif
  23488. #ifdef __LITTLE_ENDIAN__
  23489. #define vshr_n_u16(__p0, __p1) __extension__ ({ \
  23490. uint16x4_t __s0 = __p0; \
  23491. uint16x4_t __ret; \
  23492. __ret = (uint16x4_t) __builtin_neon_vshr_n_v((int8x8_t)__s0, __p1, 17); \
  23493. __ret; \
  23494. })
  23495. #else
  23496. #define vshr_n_u16(__p0, __p1) __extension__ ({ \
  23497. uint16x4_t __s0 = __p0; \
  23498. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  23499. uint16x4_t __ret; \
  23500. __ret = (uint16x4_t) __builtin_neon_vshr_n_v((int8x8_t)__rev0, __p1, 17); \
  23501. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  23502. __ret; \
  23503. })
  23504. #endif
  23505. #ifdef __LITTLE_ENDIAN__
  23506. #define vshr_n_s8(__p0, __p1) __extension__ ({ \
  23507. int8x8_t __s0 = __p0; \
  23508. int8x8_t __ret; \
  23509. __ret = (int8x8_t) __builtin_neon_vshr_n_v((int8x8_t)__s0, __p1, 0); \
  23510. __ret; \
  23511. })
  23512. #else
  23513. #define vshr_n_s8(__p0, __p1) __extension__ ({ \
  23514. int8x8_t __s0 = __p0; \
  23515. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  23516. int8x8_t __ret; \
  23517. __ret = (int8x8_t) __builtin_neon_vshr_n_v((int8x8_t)__rev0, __p1, 0); \
  23518. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  23519. __ret; \
  23520. })
  23521. #endif
  23522. #ifdef __LITTLE_ENDIAN__
  23523. #define vshr_n_s32(__p0, __p1) __extension__ ({ \
  23524. int32x2_t __s0 = __p0; \
  23525. int32x2_t __ret; \
  23526. __ret = (int32x2_t) __builtin_neon_vshr_n_v((int8x8_t)__s0, __p1, 2); \
  23527. __ret; \
  23528. })
  23529. #else
  23530. #define vshr_n_s32(__p0, __p1) __extension__ ({ \
  23531. int32x2_t __s0 = __p0; \
  23532. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  23533. int32x2_t __ret; \
  23534. __ret = (int32x2_t) __builtin_neon_vshr_n_v((int8x8_t)__rev0, __p1, 2); \
  23535. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  23536. __ret; \
  23537. })
  23538. #endif
  23539. #ifdef __LITTLE_ENDIAN__
  23540. #define vshr_n_s64(__p0, __p1) __extension__ ({ \
  23541. int64x1_t __s0 = __p0; \
  23542. int64x1_t __ret; \
  23543. __ret = (int64x1_t) __builtin_neon_vshr_n_v((int8x8_t)__s0, __p1, 3); \
  23544. __ret; \
  23545. })
  23546. #else
  23547. #define vshr_n_s64(__p0, __p1) __extension__ ({ \
  23548. int64x1_t __s0 = __p0; \
  23549. int64x1_t __ret; \
  23550. __ret = (int64x1_t) __builtin_neon_vshr_n_v((int8x8_t)__s0, __p1, 3); \
  23551. __ret; \
  23552. })
  23553. #endif
  23554. #ifdef __LITTLE_ENDIAN__
  23555. #define vshr_n_s16(__p0, __p1) __extension__ ({ \
  23556. int16x4_t __s0 = __p0; \
  23557. int16x4_t __ret; \
  23558. __ret = (int16x4_t) __builtin_neon_vshr_n_v((int8x8_t)__s0, __p1, 1); \
  23559. __ret; \
  23560. })
  23561. #else
  23562. #define vshr_n_s16(__p0, __p1) __extension__ ({ \
  23563. int16x4_t __s0 = __p0; \
  23564. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  23565. int16x4_t __ret; \
  23566. __ret = (int16x4_t) __builtin_neon_vshr_n_v((int8x8_t)__rev0, __p1, 1); \
  23567. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  23568. __ret; \
  23569. })
  23570. #endif
  23571. #ifdef __LITTLE_ENDIAN__
  23572. #define vshrn_n_u32(__p0, __p1) __extension__ ({ \
  23573. uint32x4_t __s0 = __p0; \
  23574. uint16x4_t __ret; \
  23575. __ret = (uint16x4_t) __builtin_neon_vshrn_n_v((int8x16_t)__s0, __p1, 17); \
  23576. __ret; \
  23577. })
  23578. #else
  23579. #define vshrn_n_u32(__p0, __p1) __extension__ ({ \
  23580. uint32x4_t __s0 = __p0; \
  23581. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  23582. uint16x4_t __ret; \
  23583. __ret = (uint16x4_t) __builtin_neon_vshrn_n_v((int8x16_t)__rev0, __p1, 17); \
  23584. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  23585. __ret; \
  23586. })
  23587. #define __noswap_vshrn_n_u32(__p0, __p1) __extension__ ({ \
  23588. uint32x4_t __s0 = __p0; \
  23589. uint16x4_t __ret; \
  23590. __ret = (uint16x4_t) __builtin_neon_vshrn_n_v((int8x16_t)__s0, __p1, 17); \
  23591. __ret; \
  23592. })
  23593. #endif
  23594. #ifdef __LITTLE_ENDIAN__
  23595. #define vshrn_n_u64(__p0, __p1) __extension__ ({ \
  23596. uint64x2_t __s0 = __p0; \
  23597. uint32x2_t __ret; \
  23598. __ret = (uint32x2_t) __builtin_neon_vshrn_n_v((int8x16_t)__s0, __p1, 18); \
  23599. __ret; \
  23600. })
  23601. #else
  23602. #define vshrn_n_u64(__p0, __p1) __extension__ ({ \
  23603. uint64x2_t __s0 = __p0; \
  23604. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  23605. uint32x2_t __ret; \
  23606. __ret = (uint32x2_t) __builtin_neon_vshrn_n_v((int8x16_t)__rev0, __p1, 18); \
  23607. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  23608. __ret; \
  23609. })
  23610. #define __noswap_vshrn_n_u64(__p0, __p1) __extension__ ({ \
  23611. uint64x2_t __s0 = __p0; \
  23612. uint32x2_t __ret; \
  23613. __ret = (uint32x2_t) __builtin_neon_vshrn_n_v((int8x16_t)__s0, __p1, 18); \
  23614. __ret; \
  23615. })
  23616. #endif
  23617. #ifdef __LITTLE_ENDIAN__
  23618. #define vshrn_n_u16(__p0, __p1) __extension__ ({ \
  23619. uint16x8_t __s0 = __p0; \
  23620. uint8x8_t __ret; \
  23621. __ret = (uint8x8_t) __builtin_neon_vshrn_n_v((int8x16_t)__s0, __p1, 16); \
  23622. __ret; \
  23623. })
  23624. #else
  23625. #define vshrn_n_u16(__p0, __p1) __extension__ ({ \
  23626. uint16x8_t __s0 = __p0; \
  23627. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  23628. uint8x8_t __ret; \
  23629. __ret = (uint8x8_t) __builtin_neon_vshrn_n_v((int8x16_t)__rev0, __p1, 16); \
  23630. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  23631. __ret; \
  23632. })
  23633. #define __noswap_vshrn_n_u16(__p0, __p1) __extension__ ({ \
  23634. uint16x8_t __s0 = __p0; \
  23635. uint8x8_t __ret; \
  23636. __ret = (uint8x8_t) __builtin_neon_vshrn_n_v((int8x16_t)__s0, __p1, 16); \
  23637. __ret; \
  23638. })
  23639. #endif
  23640. #ifdef __LITTLE_ENDIAN__
  23641. #define vshrn_n_s32(__p0, __p1) __extension__ ({ \
  23642. int32x4_t __s0 = __p0; \
  23643. int16x4_t __ret; \
  23644. __ret = (int16x4_t) __builtin_neon_vshrn_n_v((int8x16_t)__s0, __p1, 1); \
  23645. __ret; \
  23646. })
  23647. #else
  23648. #define vshrn_n_s32(__p0, __p1) __extension__ ({ \
  23649. int32x4_t __s0 = __p0; \
  23650. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  23651. int16x4_t __ret; \
  23652. __ret = (int16x4_t) __builtin_neon_vshrn_n_v((int8x16_t)__rev0, __p1, 1); \
  23653. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  23654. __ret; \
  23655. })
  23656. #define __noswap_vshrn_n_s32(__p0, __p1) __extension__ ({ \
  23657. int32x4_t __s0 = __p0; \
  23658. int16x4_t __ret; \
  23659. __ret = (int16x4_t) __builtin_neon_vshrn_n_v((int8x16_t)__s0, __p1, 1); \
  23660. __ret; \
  23661. })
  23662. #endif
  23663. #ifdef __LITTLE_ENDIAN__
  23664. #define vshrn_n_s64(__p0, __p1) __extension__ ({ \
  23665. int64x2_t __s0 = __p0; \
  23666. int32x2_t __ret; \
  23667. __ret = (int32x2_t) __builtin_neon_vshrn_n_v((int8x16_t)__s0, __p1, 2); \
  23668. __ret; \
  23669. })
  23670. #else
  23671. #define vshrn_n_s64(__p0, __p1) __extension__ ({ \
  23672. int64x2_t __s0 = __p0; \
  23673. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  23674. int32x2_t __ret; \
  23675. __ret = (int32x2_t) __builtin_neon_vshrn_n_v((int8x16_t)__rev0, __p1, 2); \
  23676. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  23677. __ret; \
  23678. })
  23679. #define __noswap_vshrn_n_s64(__p0, __p1) __extension__ ({ \
  23680. int64x2_t __s0 = __p0; \
  23681. int32x2_t __ret; \
  23682. __ret = (int32x2_t) __builtin_neon_vshrn_n_v((int8x16_t)__s0, __p1, 2); \
  23683. __ret; \
  23684. })
  23685. #endif
  23686. #ifdef __LITTLE_ENDIAN__
  23687. #define vshrn_n_s16(__p0, __p1) __extension__ ({ \
  23688. int16x8_t __s0 = __p0; \
  23689. int8x8_t __ret; \
  23690. __ret = (int8x8_t) __builtin_neon_vshrn_n_v((int8x16_t)__s0, __p1, 0); \
  23691. __ret; \
  23692. })
  23693. #else
  23694. #define vshrn_n_s16(__p0, __p1) __extension__ ({ \
  23695. int16x8_t __s0 = __p0; \
  23696. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  23697. int8x8_t __ret; \
  23698. __ret = (int8x8_t) __builtin_neon_vshrn_n_v((int8x16_t)__rev0, __p1, 0); \
  23699. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  23700. __ret; \
  23701. })
  23702. #define __noswap_vshrn_n_s16(__p0, __p1) __extension__ ({ \
  23703. int16x8_t __s0 = __p0; \
  23704. int8x8_t __ret; \
  23705. __ret = (int8x8_t) __builtin_neon_vshrn_n_v((int8x16_t)__s0, __p1, 0); \
  23706. __ret; \
  23707. })
  23708. #endif
  23709. #ifdef __LITTLE_ENDIAN__
  23710. #define vsli_n_p8(__p0, __p1, __p2) __extension__ ({ \
  23711. poly8x8_t __s0 = __p0; \
  23712. poly8x8_t __s1 = __p1; \
  23713. poly8x8_t __ret; \
  23714. __ret = (poly8x8_t) __builtin_neon_vsli_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 4); \
  23715. __ret; \
  23716. })
  23717. #else
  23718. #define vsli_n_p8(__p0, __p1, __p2) __extension__ ({ \
  23719. poly8x8_t __s0 = __p0; \
  23720. poly8x8_t __s1 = __p1; \
  23721. poly8x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  23722. poly8x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  23723. poly8x8_t __ret; \
  23724. __ret = (poly8x8_t) __builtin_neon_vsli_n_v((int8x8_t)__rev0, (int8x8_t)__rev1, __p2, 4); \
  23725. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  23726. __ret; \
  23727. })
  23728. #endif
  23729. #ifdef __LITTLE_ENDIAN__
  23730. #define vsli_n_p16(__p0, __p1, __p2) __extension__ ({ \
  23731. poly16x4_t __s0 = __p0; \
  23732. poly16x4_t __s1 = __p1; \
  23733. poly16x4_t __ret; \
  23734. __ret = (poly16x4_t) __builtin_neon_vsli_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 5); \
  23735. __ret; \
  23736. })
  23737. #else
  23738. #define vsli_n_p16(__p0, __p1, __p2) __extension__ ({ \
  23739. poly16x4_t __s0 = __p0; \
  23740. poly16x4_t __s1 = __p1; \
  23741. poly16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  23742. poly16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  23743. poly16x4_t __ret; \
  23744. __ret = (poly16x4_t) __builtin_neon_vsli_n_v((int8x8_t)__rev0, (int8x8_t)__rev1, __p2, 5); \
  23745. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  23746. __ret; \
  23747. })
  23748. #endif
  23749. #ifdef __LITTLE_ENDIAN__
  23750. #define vsliq_n_p8(__p0, __p1, __p2) __extension__ ({ \
  23751. poly8x16_t __s0 = __p0; \
  23752. poly8x16_t __s1 = __p1; \
  23753. poly8x16_t __ret; \
  23754. __ret = (poly8x16_t) __builtin_neon_vsliq_n_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 36); \
  23755. __ret; \
  23756. })
  23757. #else
  23758. #define vsliq_n_p8(__p0, __p1, __p2) __extension__ ({ \
  23759. poly8x16_t __s0 = __p0; \
  23760. poly8x16_t __s1 = __p1; \
  23761. poly8x16_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  23762. poly8x16_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  23763. poly8x16_t __ret; \
  23764. __ret = (poly8x16_t) __builtin_neon_vsliq_n_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 36); \
  23765. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  23766. __ret; \
  23767. })
  23768. #endif
  23769. #ifdef __LITTLE_ENDIAN__
  23770. #define vsliq_n_p16(__p0, __p1, __p2) __extension__ ({ \
  23771. poly16x8_t __s0 = __p0; \
  23772. poly16x8_t __s1 = __p1; \
  23773. poly16x8_t __ret; \
  23774. __ret = (poly16x8_t) __builtin_neon_vsliq_n_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 37); \
  23775. __ret; \
  23776. })
  23777. #else
  23778. #define vsliq_n_p16(__p0, __p1, __p2) __extension__ ({ \
  23779. poly16x8_t __s0 = __p0; \
  23780. poly16x8_t __s1 = __p1; \
  23781. poly16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  23782. poly16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  23783. poly16x8_t __ret; \
  23784. __ret = (poly16x8_t) __builtin_neon_vsliq_n_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 37); \
  23785. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  23786. __ret; \
  23787. })
  23788. #endif
  23789. #ifdef __LITTLE_ENDIAN__
  23790. #define vsliq_n_u8(__p0, __p1, __p2) __extension__ ({ \
  23791. uint8x16_t __s0 = __p0; \
  23792. uint8x16_t __s1 = __p1; \
  23793. uint8x16_t __ret; \
  23794. __ret = (uint8x16_t) __builtin_neon_vsliq_n_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 48); \
  23795. __ret; \
  23796. })
  23797. #else
  23798. #define vsliq_n_u8(__p0, __p1, __p2) __extension__ ({ \
  23799. uint8x16_t __s0 = __p0; \
  23800. uint8x16_t __s1 = __p1; \
  23801. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  23802. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  23803. uint8x16_t __ret; \
  23804. __ret = (uint8x16_t) __builtin_neon_vsliq_n_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 48); \
  23805. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  23806. __ret; \
  23807. })
  23808. #endif
  23809. #ifdef __LITTLE_ENDIAN__
  23810. #define vsliq_n_u32(__p0, __p1, __p2) __extension__ ({ \
  23811. uint32x4_t __s0 = __p0; \
  23812. uint32x4_t __s1 = __p1; \
  23813. uint32x4_t __ret; \
  23814. __ret = (uint32x4_t) __builtin_neon_vsliq_n_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 50); \
  23815. __ret; \
  23816. })
  23817. #else
  23818. #define vsliq_n_u32(__p0, __p1, __p2) __extension__ ({ \
  23819. uint32x4_t __s0 = __p0; \
  23820. uint32x4_t __s1 = __p1; \
  23821. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  23822. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  23823. uint32x4_t __ret; \
  23824. __ret = (uint32x4_t) __builtin_neon_vsliq_n_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 50); \
  23825. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  23826. __ret; \
  23827. })
  23828. #endif
  23829. #ifdef __LITTLE_ENDIAN__
  23830. #define vsliq_n_u64(__p0, __p1, __p2) __extension__ ({ \
  23831. uint64x2_t __s0 = __p0; \
  23832. uint64x2_t __s1 = __p1; \
  23833. uint64x2_t __ret; \
  23834. __ret = (uint64x2_t) __builtin_neon_vsliq_n_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 51); \
  23835. __ret; \
  23836. })
  23837. #else
  23838. #define vsliq_n_u64(__p0, __p1, __p2) __extension__ ({ \
  23839. uint64x2_t __s0 = __p0; \
  23840. uint64x2_t __s1 = __p1; \
  23841. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  23842. uint64x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  23843. uint64x2_t __ret; \
  23844. __ret = (uint64x2_t) __builtin_neon_vsliq_n_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 51); \
  23845. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  23846. __ret; \
  23847. })
  23848. #endif
  23849. #ifdef __LITTLE_ENDIAN__
  23850. #define vsliq_n_u16(__p0, __p1, __p2) __extension__ ({ \
  23851. uint16x8_t __s0 = __p0; \
  23852. uint16x8_t __s1 = __p1; \
  23853. uint16x8_t __ret; \
  23854. __ret = (uint16x8_t) __builtin_neon_vsliq_n_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 49); \
  23855. __ret; \
  23856. })
  23857. #else
  23858. #define vsliq_n_u16(__p0, __p1, __p2) __extension__ ({ \
  23859. uint16x8_t __s0 = __p0; \
  23860. uint16x8_t __s1 = __p1; \
  23861. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  23862. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  23863. uint16x8_t __ret; \
  23864. __ret = (uint16x8_t) __builtin_neon_vsliq_n_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 49); \
  23865. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  23866. __ret; \
  23867. })
  23868. #endif
  23869. #ifdef __LITTLE_ENDIAN__
  23870. #define vsliq_n_s8(__p0, __p1, __p2) __extension__ ({ \
  23871. int8x16_t __s0 = __p0; \
  23872. int8x16_t __s1 = __p1; \
  23873. int8x16_t __ret; \
  23874. __ret = (int8x16_t) __builtin_neon_vsliq_n_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 32); \
  23875. __ret; \
  23876. })
  23877. #else
  23878. #define vsliq_n_s8(__p0, __p1, __p2) __extension__ ({ \
  23879. int8x16_t __s0 = __p0; \
  23880. int8x16_t __s1 = __p1; \
  23881. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  23882. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  23883. int8x16_t __ret; \
  23884. __ret = (int8x16_t) __builtin_neon_vsliq_n_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 32); \
  23885. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  23886. __ret; \
  23887. })
  23888. #endif
  23889. #ifdef __LITTLE_ENDIAN__
  23890. #define vsliq_n_s32(__p0, __p1, __p2) __extension__ ({ \
  23891. int32x4_t __s0 = __p0; \
  23892. int32x4_t __s1 = __p1; \
  23893. int32x4_t __ret; \
  23894. __ret = (int32x4_t) __builtin_neon_vsliq_n_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 34); \
  23895. __ret; \
  23896. })
  23897. #else
  23898. #define vsliq_n_s32(__p0, __p1, __p2) __extension__ ({ \
  23899. int32x4_t __s0 = __p0; \
  23900. int32x4_t __s1 = __p1; \
  23901. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  23902. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  23903. int32x4_t __ret; \
  23904. __ret = (int32x4_t) __builtin_neon_vsliq_n_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 34); \
  23905. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  23906. __ret; \
  23907. })
  23908. #endif
  23909. #ifdef __LITTLE_ENDIAN__
  23910. #define vsliq_n_s64(__p0, __p1, __p2) __extension__ ({ \
  23911. int64x2_t __s0 = __p0; \
  23912. int64x2_t __s1 = __p1; \
  23913. int64x2_t __ret; \
  23914. __ret = (int64x2_t) __builtin_neon_vsliq_n_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 35); \
  23915. __ret; \
  23916. })
  23917. #else
  23918. #define vsliq_n_s64(__p0, __p1, __p2) __extension__ ({ \
  23919. int64x2_t __s0 = __p0; \
  23920. int64x2_t __s1 = __p1; \
  23921. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  23922. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  23923. int64x2_t __ret; \
  23924. __ret = (int64x2_t) __builtin_neon_vsliq_n_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 35); \
  23925. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  23926. __ret; \
  23927. })
  23928. #endif
  23929. #ifdef __LITTLE_ENDIAN__
  23930. #define vsliq_n_s16(__p0, __p1, __p2) __extension__ ({ \
  23931. int16x8_t __s0 = __p0; \
  23932. int16x8_t __s1 = __p1; \
  23933. int16x8_t __ret; \
  23934. __ret = (int16x8_t) __builtin_neon_vsliq_n_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 33); \
  23935. __ret; \
  23936. })
  23937. #else
  23938. #define vsliq_n_s16(__p0, __p1, __p2) __extension__ ({ \
  23939. int16x8_t __s0 = __p0; \
  23940. int16x8_t __s1 = __p1; \
  23941. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  23942. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  23943. int16x8_t __ret; \
  23944. __ret = (int16x8_t) __builtin_neon_vsliq_n_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 33); \
  23945. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  23946. __ret; \
  23947. })
  23948. #endif
  23949. #ifdef __LITTLE_ENDIAN__
  23950. #define vsli_n_u8(__p0, __p1, __p2) __extension__ ({ \
  23951. uint8x8_t __s0 = __p0; \
  23952. uint8x8_t __s1 = __p1; \
  23953. uint8x8_t __ret; \
  23954. __ret = (uint8x8_t) __builtin_neon_vsli_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 16); \
  23955. __ret; \
  23956. })
  23957. #else
  23958. #define vsli_n_u8(__p0, __p1, __p2) __extension__ ({ \
  23959. uint8x8_t __s0 = __p0; \
  23960. uint8x8_t __s1 = __p1; \
  23961. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  23962. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  23963. uint8x8_t __ret; \
  23964. __ret = (uint8x8_t) __builtin_neon_vsli_n_v((int8x8_t)__rev0, (int8x8_t)__rev1, __p2, 16); \
  23965. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  23966. __ret; \
  23967. })
  23968. #endif
  23969. #ifdef __LITTLE_ENDIAN__
  23970. #define vsli_n_u32(__p0, __p1, __p2) __extension__ ({ \
  23971. uint32x2_t __s0 = __p0; \
  23972. uint32x2_t __s1 = __p1; \
  23973. uint32x2_t __ret; \
  23974. __ret = (uint32x2_t) __builtin_neon_vsli_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 18); \
  23975. __ret; \
  23976. })
  23977. #else
  23978. #define vsli_n_u32(__p0, __p1, __p2) __extension__ ({ \
  23979. uint32x2_t __s0 = __p0; \
  23980. uint32x2_t __s1 = __p1; \
  23981. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  23982. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  23983. uint32x2_t __ret; \
  23984. __ret = (uint32x2_t) __builtin_neon_vsli_n_v((int8x8_t)__rev0, (int8x8_t)__rev1, __p2, 18); \
  23985. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  23986. __ret; \
  23987. })
  23988. #endif
  23989. #ifdef __LITTLE_ENDIAN__
  23990. #define vsli_n_u64(__p0, __p1, __p2) __extension__ ({ \
  23991. uint64x1_t __s0 = __p0; \
  23992. uint64x1_t __s1 = __p1; \
  23993. uint64x1_t __ret; \
  23994. __ret = (uint64x1_t) __builtin_neon_vsli_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 19); \
  23995. __ret; \
  23996. })
  23997. #else
  23998. #define vsli_n_u64(__p0, __p1, __p2) __extension__ ({ \
  23999. uint64x1_t __s0 = __p0; \
  24000. uint64x1_t __s1 = __p1; \
  24001. uint64x1_t __ret; \
  24002. __ret = (uint64x1_t) __builtin_neon_vsli_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 19); \
  24003. __ret; \
  24004. })
  24005. #endif
  24006. #ifdef __LITTLE_ENDIAN__
  24007. #define vsli_n_u16(__p0, __p1, __p2) __extension__ ({ \
  24008. uint16x4_t __s0 = __p0; \
  24009. uint16x4_t __s1 = __p1; \
  24010. uint16x4_t __ret; \
  24011. __ret = (uint16x4_t) __builtin_neon_vsli_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 17); \
  24012. __ret; \
  24013. })
  24014. #else
  24015. #define vsli_n_u16(__p0, __p1, __p2) __extension__ ({ \
  24016. uint16x4_t __s0 = __p0; \
  24017. uint16x4_t __s1 = __p1; \
  24018. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  24019. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  24020. uint16x4_t __ret; \
  24021. __ret = (uint16x4_t) __builtin_neon_vsli_n_v((int8x8_t)__rev0, (int8x8_t)__rev1, __p2, 17); \
  24022. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  24023. __ret; \
  24024. })
  24025. #endif
  24026. #ifdef __LITTLE_ENDIAN__
  24027. #define vsli_n_s8(__p0, __p1, __p2) __extension__ ({ \
  24028. int8x8_t __s0 = __p0; \
  24029. int8x8_t __s1 = __p1; \
  24030. int8x8_t __ret; \
  24031. __ret = (int8x8_t) __builtin_neon_vsli_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 0); \
  24032. __ret; \
  24033. })
  24034. #else
  24035. #define vsli_n_s8(__p0, __p1, __p2) __extension__ ({ \
  24036. int8x8_t __s0 = __p0; \
  24037. int8x8_t __s1 = __p1; \
  24038. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  24039. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  24040. int8x8_t __ret; \
  24041. __ret = (int8x8_t) __builtin_neon_vsli_n_v((int8x8_t)__rev0, (int8x8_t)__rev1, __p2, 0); \
  24042. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  24043. __ret; \
  24044. })
  24045. #endif
  24046. #ifdef __LITTLE_ENDIAN__
  24047. #define vsli_n_s32(__p0, __p1, __p2) __extension__ ({ \
  24048. int32x2_t __s0 = __p0; \
  24049. int32x2_t __s1 = __p1; \
  24050. int32x2_t __ret; \
  24051. __ret = (int32x2_t) __builtin_neon_vsli_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 2); \
  24052. __ret; \
  24053. })
  24054. #else
  24055. #define vsli_n_s32(__p0, __p1, __p2) __extension__ ({ \
  24056. int32x2_t __s0 = __p0; \
  24057. int32x2_t __s1 = __p1; \
  24058. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  24059. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  24060. int32x2_t __ret; \
  24061. __ret = (int32x2_t) __builtin_neon_vsli_n_v((int8x8_t)__rev0, (int8x8_t)__rev1, __p2, 2); \
  24062. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  24063. __ret; \
  24064. })
  24065. #endif
  24066. #ifdef __LITTLE_ENDIAN__
  24067. #define vsli_n_s64(__p0, __p1, __p2) __extension__ ({ \
  24068. int64x1_t __s0 = __p0; \
  24069. int64x1_t __s1 = __p1; \
  24070. int64x1_t __ret; \
  24071. __ret = (int64x1_t) __builtin_neon_vsli_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 3); \
  24072. __ret; \
  24073. })
  24074. #else
  24075. #define vsli_n_s64(__p0, __p1, __p2) __extension__ ({ \
  24076. int64x1_t __s0 = __p0; \
  24077. int64x1_t __s1 = __p1; \
  24078. int64x1_t __ret; \
  24079. __ret = (int64x1_t) __builtin_neon_vsli_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 3); \
  24080. __ret; \
  24081. })
  24082. #endif
  24083. #ifdef __LITTLE_ENDIAN__
  24084. #define vsli_n_s16(__p0, __p1, __p2) __extension__ ({ \
  24085. int16x4_t __s0 = __p0; \
  24086. int16x4_t __s1 = __p1; \
  24087. int16x4_t __ret; \
  24088. __ret = (int16x4_t) __builtin_neon_vsli_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 1); \
  24089. __ret; \
  24090. })
  24091. #else
  24092. #define vsli_n_s16(__p0, __p1, __p2) __extension__ ({ \
  24093. int16x4_t __s0 = __p0; \
  24094. int16x4_t __s1 = __p1; \
  24095. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  24096. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  24097. int16x4_t __ret; \
  24098. __ret = (int16x4_t) __builtin_neon_vsli_n_v((int8x8_t)__rev0, (int8x8_t)__rev1, __p2, 1); \
  24099. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  24100. __ret; \
  24101. })
  24102. #endif
  24103. #ifdef __LITTLE_ENDIAN__
  24104. #define vsraq_n_u8(__p0, __p1, __p2) __extension__ ({ \
  24105. uint8x16_t __s0 = __p0; \
  24106. uint8x16_t __s1 = __p1; \
  24107. uint8x16_t __ret; \
  24108. __ret = (uint8x16_t) __builtin_neon_vsraq_n_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 48); \
  24109. __ret; \
  24110. })
  24111. #else
  24112. #define vsraq_n_u8(__p0, __p1, __p2) __extension__ ({ \
  24113. uint8x16_t __s0 = __p0; \
  24114. uint8x16_t __s1 = __p1; \
  24115. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  24116. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  24117. uint8x16_t __ret; \
  24118. __ret = (uint8x16_t) __builtin_neon_vsraq_n_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 48); \
  24119. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  24120. __ret; \
  24121. })
  24122. #endif
  24123. #ifdef __LITTLE_ENDIAN__
  24124. #define vsraq_n_u32(__p0, __p1, __p2) __extension__ ({ \
  24125. uint32x4_t __s0 = __p0; \
  24126. uint32x4_t __s1 = __p1; \
  24127. uint32x4_t __ret; \
  24128. __ret = (uint32x4_t) __builtin_neon_vsraq_n_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 50); \
  24129. __ret; \
  24130. })
  24131. #else
  24132. #define vsraq_n_u32(__p0, __p1, __p2) __extension__ ({ \
  24133. uint32x4_t __s0 = __p0; \
  24134. uint32x4_t __s1 = __p1; \
  24135. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  24136. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  24137. uint32x4_t __ret; \
  24138. __ret = (uint32x4_t) __builtin_neon_vsraq_n_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 50); \
  24139. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  24140. __ret; \
  24141. })
  24142. #endif
  24143. #ifdef __LITTLE_ENDIAN__
  24144. #define vsraq_n_u64(__p0, __p1, __p2) __extension__ ({ \
  24145. uint64x2_t __s0 = __p0; \
  24146. uint64x2_t __s1 = __p1; \
  24147. uint64x2_t __ret; \
  24148. __ret = (uint64x2_t) __builtin_neon_vsraq_n_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 51); \
  24149. __ret; \
  24150. })
  24151. #else
  24152. #define vsraq_n_u64(__p0, __p1, __p2) __extension__ ({ \
  24153. uint64x2_t __s0 = __p0; \
  24154. uint64x2_t __s1 = __p1; \
  24155. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  24156. uint64x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  24157. uint64x2_t __ret; \
  24158. __ret = (uint64x2_t) __builtin_neon_vsraq_n_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 51); \
  24159. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  24160. __ret; \
  24161. })
  24162. #endif
  24163. #ifdef __LITTLE_ENDIAN__
  24164. #define vsraq_n_u16(__p0, __p1, __p2) __extension__ ({ \
  24165. uint16x8_t __s0 = __p0; \
  24166. uint16x8_t __s1 = __p1; \
  24167. uint16x8_t __ret; \
  24168. __ret = (uint16x8_t) __builtin_neon_vsraq_n_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 49); \
  24169. __ret; \
  24170. })
  24171. #else
  24172. #define vsraq_n_u16(__p0, __p1, __p2) __extension__ ({ \
  24173. uint16x8_t __s0 = __p0; \
  24174. uint16x8_t __s1 = __p1; \
  24175. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  24176. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  24177. uint16x8_t __ret; \
  24178. __ret = (uint16x8_t) __builtin_neon_vsraq_n_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 49); \
  24179. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  24180. __ret; \
  24181. })
  24182. #endif
  24183. #ifdef __LITTLE_ENDIAN__
  24184. #define vsraq_n_s8(__p0, __p1, __p2) __extension__ ({ \
  24185. int8x16_t __s0 = __p0; \
  24186. int8x16_t __s1 = __p1; \
  24187. int8x16_t __ret; \
  24188. __ret = (int8x16_t) __builtin_neon_vsraq_n_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 32); \
  24189. __ret; \
  24190. })
  24191. #else
  24192. #define vsraq_n_s8(__p0, __p1, __p2) __extension__ ({ \
  24193. int8x16_t __s0 = __p0; \
  24194. int8x16_t __s1 = __p1; \
  24195. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  24196. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  24197. int8x16_t __ret; \
  24198. __ret = (int8x16_t) __builtin_neon_vsraq_n_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 32); \
  24199. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  24200. __ret; \
  24201. })
  24202. #endif
  24203. #ifdef __LITTLE_ENDIAN__
  24204. #define vsraq_n_s32(__p0, __p1, __p2) __extension__ ({ \
  24205. int32x4_t __s0 = __p0; \
  24206. int32x4_t __s1 = __p1; \
  24207. int32x4_t __ret; \
  24208. __ret = (int32x4_t) __builtin_neon_vsraq_n_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 34); \
  24209. __ret; \
  24210. })
  24211. #else
  24212. #define vsraq_n_s32(__p0, __p1, __p2) __extension__ ({ \
  24213. int32x4_t __s0 = __p0; \
  24214. int32x4_t __s1 = __p1; \
  24215. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  24216. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  24217. int32x4_t __ret; \
  24218. __ret = (int32x4_t) __builtin_neon_vsraq_n_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 34); \
  24219. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  24220. __ret; \
  24221. })
  24222. #endif
  24223. #ifdef __LITTLE_ENDIAN__
  24224. #define vsraq_n_s64(__p0, __p1, __p2) __extension__ ({ \
  24225. int64x2_t __s0 = __p0; \
  24226. int64x2_t __s1 = __p1; \
  24227. int64x2_t __ret; \
  24228. __ret = (int64x2_t) __builtin_neon_vsraq_n_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 35); \
  24229. __ret; \
  24230. })
  24231. #else
  24232. #define vsraq_n_s64(__p0, __p1, __p2) __extension__ ({ \
  24233. int64x2_t __s0 = __p0; \
  24234. int64x2_t __s1 = __p1; \
  24235. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  24236. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  24237. int64x2_t __ret; \
  24238. __ret = (int64x2_t) __builtin_neon_vsraq_n_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 35); \
  24239. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  24240. __ret; \
  24241. })
  24242. #endif
  24243. #ifdef __LITTLE_ENDIAN__
  24244. #define vsraq_n_s16(__p0, __p1, __p2) __extension__ ({ \
  24245. int16x8_t __s0 = __p0; \
  24246. int16x8_t __s1 = __p1; \
  24247. int16x8_t __ret; \
  24248. __ret = (int16x8_t) __builtin_neon_vsraq_n_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 33); \
  24249. __ret; \
  24250. })
  24251. #else
  24252. #define vsraq_n_s16(__p0, __p1, __p2) __extension__ ({ \
  24253. int16x8_t __s0 = __p0; \
  24254. int16x8_t __s1 = __p1; \
  24255. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  24256. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  24257. int16x8_t __ret; \
  24258. __ret = (int16x8_t) __builtin_neon_vsraq_n_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 33); \
  24259. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  24260. __ret; \
  24261. })
  24262. #endif
  24263. #ifdef __LITTLE_ENDIAN__
  24264. #define vsra_n_u8(__p0, __p1, __p2) __extension__ ({ \
  24265. uint8x8_t __s0 = __p0; \
  24266. uint8x8_t __s1 = __p1; \
  24267. uint8x8_t __ret; \
  24268. __ret = (uint8x8_t) __builtin_neon_vsra_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 16); \
  24269. __ret; \
  24270. })
  24271. #else
  24272. #define vsra_n_u8(__p0, __p1, __p2) __extension__ ({ \
  24273. uint8x8_t __s0 = __p0; \
  24274. uint8x8_t __s1 = __p1; \
  24275. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  24276. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  24277. uint8x8_t __ret; \
  24278. __ret = (uint8x8_t) __builtin_neon_vsra_n_v((int8x8_t)__rev0, (int8x8_t)__rev1, __p2, 16); \
  24279. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  24280. __ret; \
  24281. })
  24282. #endif
  24283. #ifdef __LITTLE_ENDIAN__
  24284. #define vsra_n_u32(__p0, __p1, __p2) __extension__ ({ \
  24285. uint32x2_t __s0 = __p0; \
  24286. uint32x2_t __s1 = __p1; \
  24287. uint32x2_t __ret; \
  24288. __ret = (uint32x2_t) __builtin_neon_vsra_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 18); \
  24289. __ret; \
  24290. })
  24291. #else
  24292. #define vsra_n_u32(__p0, __p1, __p2) __extension__ ({ \
  24293. uint32x2_t __s0 = __p0; \
  24294. uint32x2_t __s1 = __p1; \
  24295. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  24296. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  24297. uint32x2_t __ret; \
  24298. __ret = (uint32x2_t) __builtin_neon_vsra_n_v((int8x8_t)__rev0, (int8x8_t)__rev1, __p2, 18); \
  24299. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  24300. __ret; \
  24301. })
  24302. #endif
  24303. #ifdef __LITTLE_ENDIAN__
  24304. #define vsra_n_u64(__p0, __p1, __p2) __extension__ ({ \
  24305. uint64x1_t __s0 = __p0; \
  24306. uint64x1_t __s1 = __p1; \
  24307. uint64x1_t __ret; \
  24308. __ret = (uint64x1_t) __builtin_neon_vsra_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 19); \
  24309. __ret; \
  24310. })
  24311. #else
  24312. #define vsra_n_u64(__p0, __p1, __p2) __extension__ ({ \
  24313. uint64x1_t __s0 = __p0; \
  24314. uint64x1_t __s1 = __p1; \
  24315. uint64x1_t __ret; \
  24316. __ret = (uint64x1_t) __builtin_neon_vsra_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 19); \
  24317. __ret; \
  24318. })
  24319. #endif
  24320. #ifdef __LITTLE_ENDIAN__
  24321. #define vsra_n_u16(__p0, __p1, __p2) __extension__ ({ \
  24322. uint16x4_t __s0 = __p0; \
  24323. uint16x4_t __s1 = __p1; \
  24324. uint16x4_t __ret; \
  24325. __ret = (uint16x4_t) __builtin_neon_vsra_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 17); \
  24326. __ret; \
  24327. })
  24328. #else
  24329. #define vsra_n_u16(__p0, __p1, __p2) __extension__ ({ \
  24330. uint16x4_t __s0 = __p0; \
  24331. uint16x4_t __s1 = __p1; \
  24332. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  24333. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  24334. uint16x4_t __ret; \
  24335. __ret = (uint16x4_t) __builtin_neon_vsra_n_v((int8x8_t)__rev0, (int8x8_t)__rev1, __p2, 17); \
  24336. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  24337. __ret; \
  24338. })
  24339. #endif
  24340. #ifdef __LITTLE_ENDIAN__
  24341. #define vsra_n_s8(__p0, __p1, __p2) __extension__ ({ \
  24342. int8x8_t __s0 = __p0; \
  24343. int8x8_t __s1 = __p1; \
  24344. int8x8_t __ret; \
  24345. __ret = (int8x8_t) __builtin_neon_vsra_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 0); \
  24346. __ret; \
  24347. })
  24348. #else
  24349. #define vsra_n_s8(__p0, __p1, __p2) __extension__ ({ \
  24350. int8x8_t __s0 = __p0; \
  24351. int8x8_t __s1 = __p1; \
  24352. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  24353. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  24354. int8x8_t __ret; \
  24355. __ret = (int8x8_t) __builtin_neon_vsra_n_v((int8x8_t)__rev0, (int8x8_t)__rev1, __p2, 0); \
  24356. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  24357. __ret; \
  24358. })
  24359. #endif
  24360. #ifdef __LITTLE_ENDIAN__
  24361. #define vsra_n_s32(__p0, __p1, __p2) __extension__ ({ \
  24362. int32x2_t __s0 = __p0; \
  24363. int32x2_t __s1 = __p1; \
  24364. int32x2_t __ret; \
  24365. __ret = (int32x2_t) __builtin_neon_vsra_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 2); \
  24366. __ret; \
  24367. })
  24368. #else
  24369. #define vsra_n_s32(__p0, __p1, __p2) __extension__ ({ \
  24370. int32x2_t __s0 = __p0; \
  24371. int32x2_t __s1 = __p1; \
  24372. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  24373. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  24374. int32x2_t __ret; \
  24375. __ret = (int32x2_t) __builtin_neon_vsra_n_v((int8x8_t)__rev0, (int8x8_t)__rev1, __p2, 2); \
  24376. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  24377. __ret; \
  24378. })
  24379. #endif
  24380. #ifdef __LITTLE_ENDIAN__
  24381. #define vsra_n_s64(__p0, __p1, __p2) __extension__ ({ \
  24382. int64x1_t __s0 = __p0; \
  24383. int64x1_t __s1 = __p1; \
  24384. int64x1_t __ret; \
  24385. __ret = (int64x1_t) __builtin_neon_vsra_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 3); \
  24386. __ret; \
  24387. })
  24388. #else
  24389. #define vsra_n_s64(__p0, __p1, __p2) __extension__ ({ \
  24390. int64x1_t __s0 = __p0; \
  24391. int64x1_t __s1 = __p1; \
  24392. int64x1_t __ret; \
  24393. __ret = (int64x1_t) __builtin_neon_vsra_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 3); \
  24394. __ret; \
  24395. })
  24396. #endif
  24397. #ifdef __LITTLE_ENDIAN__
  24398. #define vsra_n_s16(__p0, __p1, __p2) __extension__ ({ \
  24399. int16x4_t __s0 = __p0; \
  24400. int16x4_t __s1 = __p1; \
  24401. int16x4_t __ret; \
  24402. __ret = (int16x4_t) __builtin_neon_vsra_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 1); \
  24403. __ret; \
  24404. })
  24405. #else
  24406. #define vsra_n_s16(__p0, __p1, __p2) __extension__ ({ \
  24407. int16x4_t __s0 = __p0; \
  24408. int16x4_t __s1 = __p1; \
  24409. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  24410. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  24411. int16x4_t __ret; \
  24412. __ret = (int16x4_t) __builtin_neon_vsra_n_v((int8x8_t)__rev0, (int8x8_t)__rev1, __p2, 1); \
  24413. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  24414. __ret; \
  24415. })
  24416. #endif
  24417. #ifdef __LITTLE_ENDIAN__
  24418. #define vsri_n_p8(__p0, __p1, __p2) __extension__ ({ \
  24419. poly8x8_t __s0 = __p0; \
  24420. poly8x8_t __s1 = __p1; \
  24421. poly8x8_t __ret; \
  24422. __ret = (poly8x8_t) __builtin_neon_vsri_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 4); \
  24423. __ret; \
  24424. })
  24425. #else
  24426. #define vsri_n_p8(__p0, __p1, __p2) __extension__ ({ \
  24427. poly8x8_t __s0 = __p0; \
  24428. poly8x8_t __s1 = __p1; \
  24429. poly8x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  24430. poly8x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  24431. poly8x8_t __ret; \
  24432. __ret = (poly8x8_t) __builtin_neon_vsri_n_v((int8x8_t)__rev0, (int8x8_t)__rev1, __p2, 4); \
  24433. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  24434. __ret; \
  24435. })
  24436. #endif
  24437. #ifdef __LITTLE_ENDIAN__
  24438. #define vsri_n_p16(__p0, __p1, __p2) __extension__ ({ \
  24439. poly16x4_t __s0 = __p0; \
  24440. poly16x4_t __s1 = __p1; \
  24441. poly16x4_t __ret; \
  24442. __ret = (poly16x4_t) __builtin_neon_vsri_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 5); \
  24443. __ret; \
  24444. })
  24445. #else
  24446. #define vsri_n_p16(__p0, __p1, __p2) __extension__ ({ \
  24447. poly16x4_t __s0 = __p0; \
  24448. poly16x4_t __s1 = __p1; \
  24449. poly16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  24450. poly16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  24451. poly16x4_t __ret; \
  24452. __ret = (poly16x4_t) __builtin_neon_vsri_n_v((int8x8_t)__rev0, (int8x8_t)__rev1, __p2, 5); \
  24453. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  24454. __ret; \
  24455. })
  24456. #endif
  24457. #ifdef __LITTLE_ENDIAN__
  24458. #define vsriq_n_p8(__p0, __p1, __p2) __extension__ ({ \
  24459. poly8x16_t __s0 = __p0; \
  24460. poly8x16_t __s1 = __p1; \
  24461. poly8x16_t __ret; \
  24462. __ret = (poly8x16_t) __builtin_neon_vsriq_n_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 36); \
  24463. __ret; \
  24464. })
  24465. #else
  24466. #define vsriq_n_p8(__p0, __p1, __p2) __extension__ ({ \
  24467. poly8x16_t __s0 = __p0; \
  24468. poly8x16_t __s1 = __p1; \
  24469. poly8x16_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  24470. poly8x16_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  24471. poly8x16_t __ret; \
  24472. __ret = (poly8x16_t) __builtin_neon_vsriq_n_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 36); \
  24473. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  24474. __ret; \
  24475. })
  24476. #endif
  24477. #ifdef __LITTLE_ENDIAN__
  24478. #define vsriq_n_p16(__p0, __p1, __p2) __extension__ ({ \
  24479. poly16x8_t __s0 = __p0; \
  24480. poly16x8_t __s1 = __p1; \
  24481. poly16x8_t __ret; \
  24482. __ret = (poly16x8_t) __builtin_neon_vsriq_n_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 37); \
  24483. __ret; \
  24484. })
  24485. #else
  24486. #define vsriq_n_p16(__p0, __p1, __p2) __extension__ ({ \
  24487. poly16x8_t __s0 = __p0; \
  24488. poly16x8_t __s1 = __p1; \
  24489. poly16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  24490. poly16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  24491. poly16x8_t __ret; \
  24492. __ret = (poly16x8_t) __builtin_neon_vsriq_n_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 37); \
  24493. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  24494. __ret; \
  24495. })
  24496. #endif
  24497. #ifdef __LITTLE_ENDIAN__
  24498. #define vsriq_n_u8(__p0, __p1, __p2) __extension__ ({ \
  24499. uint8x16_t __s0 = __p0; \
  24500. uint8x16_t __s1 = __p1; \
  24501. uint8x16_t __ret; \
  24502. __ret = (uint8x16_t) __builtin_neon_vsriq_n_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 48); \
  24503. __ret; \
  24504. })
  24505. #else
  24506. #define vsriq_n_u8(__p0, __p1, __p2) __extension__ ({ \
  24507. uint8x16_t __s0 = __p0; \
  24508. uint8x16_t __s1 = __p1; \
  24509. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  24510. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  24511. uint8x16_t __ret; \
  24512. __ret = (uint8x16_t) __builtin_neon_vsriq_n_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 48); \
  24513. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  24514. __ret; \
  24515. })
  24516. #endif
  24517. #ifdef __LITTLE_ENDIAN__
  24518. #define vsriq_n_u32(__p0, __p1, __p2) __extension__ ({ \
  24519. uint32x4_t __s0 = __p0; \
  24520. uint32x4_t __s1 = __p1; \
  24521. uint32x4_t __ret; \
  24522. __ret = (uint32x4_t) __builtin_neon_vsriq_n_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 50); \
  24523. __ret; \
  24524. })
  24525. #else
  24526. #define vsriq_n_u32(__p0, __p1, __p2) __extension__ ({ \
  24527. uint32x4_t __s0 = __p0; \
  24528. uint32x4_t __s1 = __p1; \
  24529. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  24530. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  24531. uint32x4_t __ret; \
  24532. __ret = (uint32x4_t) __builtin_neon_vsriq_n_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 50); \
  24533. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  24534. __ret; \
  24535. })
  24536. #endif
  24537. #ifdef __LITTLE_ENDIAN__
  24538. #define vsriq_n_u64(__p0, __p1, __p2) __extension__ ({ \
  24539. uint64x2_t __s0 = __p0; \
  24540. uint64x2_t __s1 = __p1; \
  24541. uint64x2_t __ret; \
  24542. __ret = (uint64x2_t) __builtin_neon_vsriq_n_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 51); \
  24543. __ret; \
  24544. })
  24545. #else
  24546. #define vsriq_n_u64(__p0, __p1, __p2) __extension__ ({ \
  24547. uint64x2_t __s0 = __p0; \
  24548. uint64x2_t __s1 = __p1; \
  24549. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  24550. uint64x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  24551. uint64x2_t __ret; \
  24552. __ret = (uint64x2_t) __builtin_neon_vsriq_n_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 51); \
  24553. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  24554. __ret; \
  24555. })
  24556. #endif
  24557. #ifdef __LITTLE_ENDIAN__
  24558. #define vsriq_n_u16(__p0, __p1, __p2) __extension__ ({ \
  24559. uint16x8_t __s0 = __p0; \
  24560. uint16x8_t __s1 = __p1; \
  24561. uint16x8_t __ret; \
  24562. __ret = (uint16x8_t) __builtin_neon_vsriq_n_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 49); \
  24563. __ret; \
  24564. })
  24565. #else
  24566. #define vsriq_n_u16(__p0, __p1, __p2) __extension__ ({ \
  24567. uint16x8_t __s0 = __p0; \
  24568. uint16x8_t __s1 = __p1; \
  24569. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  24570. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  24571. uint16x8_t __ret; \
  24572. __ret = (uint16x8_t) __builtin_neon_vsriq_n_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 49); \
  24573. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  24574. __ret; \
  24575. })
  24576. #endif
  24577. #ifdef __LITTLE_ENDIAN__
  24578. #define vsriq_n_s8(__p0, __p1, __p2) __extension__ ({ \
  24579. int8x16_t __s0 = __p0; \
  24580. int8x16_t __s1 = __p1; \
  24581. int8x16_t __ret; \
  24582. __ret = (int8x16_t) __builtin_neon_vsriq_n_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 32); \
  24583. __ret; \
  24584. })
  24585. #else
  24586. #define vsriq_n_s8(__p0, __p1, __p2) __extension__ ({ \
  24587. int8x16_t __s0 = __p0; \
  24588. int8x16_t __s1 = __p1; \
  24589. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  24590. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  24591. int8x16_t __ret; \
  24592. __ret = (int8x16_t) __builtin_neon_vsriq_n_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 32); \
  24593. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  24594. __ret; \
  24595. })
  24596. #endif
  24597. #ifdef __LITTLE_ENDIAN__
  24598. #define vsriq_n_s32(__p0, __p1, __p2) __extension__ ({ \
  24599. int32x4_t __s0 = __p0; \
  24600. int32x4_t __s1 = __p1; \
  24601. int32x4_t __ret; \
  24602. __ret = (int32x4_t) __builtin_neon_vsriq_n_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 34); \
  24603. __ret; \
  24604. })
  24605. #else
  24606. #define vsriq_n_s32(__p0, __p1, __p2) __extension__ ({ \
  24607. int32x4_t __s0 = __p0; \
  24608. int32x4_t __s1 = __p1; \
  24609. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  24610. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  24611. int32x4_t __ret; \
  24612. __ret = (int32x4_t) __builtin_neon_vsriq_n_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 34); \
  24613. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  24614. __ret; \
  24615. })
  24616. #endif
  24617. #ifdef __LITTLE_ENDIAN__
  24618. #define vsriq_n_s64(__p0, __p1, __p2) __extension__ ({ \
  24619. int64x2_t __s0 = __p0; \
  24620. int64x2_t __s1 = __p1; \
  24621. int64x2_t __ret; \
  24622. __ret = (int64x2_t) __builtin_neon_vsriq_n_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 35); \
  24623. __ret; \
  24624. })
  24625. #else
  24626. #define vsriq_n_s64(__p0, __p1, __p2) __extension__ ({ \
  24627. int64x2_t __s0 = __p0; \
  24628. int64x2_t __s1 = __p1; \
  24629. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  24630. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  24631. int64x2_t __ret; \
  24632. __ret = (int64x2_t) __builtin_neon_vsriq_n_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 35); \
  24633. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  24634. __ret; \
  24635. })
  24636. #endif
  24637. #ifdef __LITTLE_ENDIAN__
  24638. #define vsriq_n_s16(__p0, __p1, __p2) __extension__ ({ \
  24639. int16x8_t __s0 = __p0; \
  24640. int16x8_t __s1 = __p1; \
  24641. int16x8_t __ret; \
  24642. __ret = (int16x8_t) __builtin_neon_vsriq_n_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 33); \
  24643. __ret; \
  24644. })
  24645. #else
  24646. #define vsriq_n_s16(__p0, __p1, __p2) __extension__ ({ \
  24647. int16x8_t __s0 = __p0; \
  24648. int16x8_t __s1 = __p1; \
  24649. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  24650. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  24651. int16x8_t __ret; \
  24652. __ret = (int16x8_t) __builtin_neon_vsriq_n_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 33); \
  24653. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  24654. __ret; \
  24655. })
  24656. #endif
  24657. #ifdef __LITTLE_ENDIAN__
  24658. #define vsri_n_u8(__p0, __p1, __p2) __extension__ ({ \
  24659. uint8x8_t __s0 = __p0; \
  24660. uint8x8_t __s1 = __p1; \
  24661. uint8x8_t __ret; \
  24662. __ret = (uint8x8_t) __builtin_neon_vsri_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 16); \
  24663. __ret; \
  24664. })
  24665. #else
  24666. #define vsri_n_u8(__p0, __p1, __p2) __extension__ ({ \
  24667. uint8x8_t __s0 = __p0; \
  24668. uint8x8_t __s1 = __p1; \
  24669. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  24670. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  24671. uint8x8_t __ret; \
  24672. __ret = (uint8x8_t) __builtin_neon_vsri_n_v((int8x8_t)__rev0, (int8x8_t)__rev1, __p2, 16); \
  24673. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  24674. __ret; \
  24675. })
  24676. #endif
  24677. #ifdef __LITTLE_ENDIAN__
  24678. #define vsri_n_u32(__p0, __p1, __p2) __extension__ ({ \
  24679. uint32x2_t __s0 = __p0; \
  24680. uint32x2_t __s1 = __p1; \
  24681. uint32x2_t __ret; \
  24682. __ret = (uint32x2_t) __builtin_neon_vsri_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 18); \
  24683. __ret; \
  24684. })
  24685. #else
  24686. #define vsri_n_u32(__p0, __p1, __p2) __extension__ ({ \
  24687. uint32x2_t __s0 = __p0; \
  24688. uint32x2_t __s1 = __p1; \
  24689. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  24690. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  24691. uint32x2_t __ret; \
  24692. __ret = (uint32x2_t) __builtin_neon_vsri_n_v((int8x8_t)__rev0, (int8x8_t)__rev1, __p2, 18); \
  24693. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  24694. __ret; \
  24695. })
  24696. #endif
  24697. #ifdef __LITTLE_ENDIAN__
  24698. #define vsri_n_u64(__p0, __p1, __p2) __extension__ ({ \
  24699. uint64x1_t __s0 = __p0; \
  24700. uint64x1_t __s1 = __p1; \
  24701. uint64x1_t __ret; \
  24702. __ret = (uint64x1_t) __builtin_neon_vsri_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 19); \
  24703. __ret; \
  24704. })
  24705. #else
  24706. #define vsri_n_u64(__p0, __p1, __p2) __extension__ ({ \
  24707. uint64x1_t __s0 = __p0; \
  24708. uint64x1_t __s1 = __p1; \
  24709. uint64x1_t __ret; \
  24710. __ret = (uint64x1_t) __builtin_neon_vsri_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 19); \
  24711. __ret; \
  24712. })
  24713. #endif
  24714. #ifdef __LITTLE_ENDIAN__
  24715. #define vsri_n_u16(__p0, __p1, __p2) __extension__ ({ \
  24716. uint16x4_t __s0 = __p0; \
  24717. uint16x4_t __s1 = __p1; \
  24718. uint16x4_t __ret; \
  24719. __ret = (uint16x4_t) __builtin_neon_vsri_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 17); \
  24720. __ret; \
  24721. })
  24722. #else
  24723. #define vsri_n_u16(__p0, __p1, __p2) __extension__ ({ \
  24724. uint16x4_t __s0 = __p0; \
  24725. uint16x4_t __s1 = __p1; \
  24726. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  24727. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  24728. uint16x4_t __ret; \
  24729. __ret = (uint16x4_t) __builtin_neon_vsri_n_v((int8x8_t)__rev0, (int8x8_t)__rev1, __p2, 17); \
  24730. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  24731. __ret; \
  24732. })
  24733. #endif
  24734. #ifdef __LITTLE_ENDIAN__
  24735. #define vsri_n_s8(__p0, __p1, __p2) __extension__ ({ \
  24736. int8x8_t __s0 = __p0; \
  24737. int8x8_t __s1 = __p1; \
  24738. int8x8_t __ret; \
  24739. __ret = (int8x8_t) __builtin_neon_vsri_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 0); \
  24740. __ret; \
  24741. })
  24742. #else
  24743. #define vsri_n_s8(__p0, __p1, __p2) __extension__ ({ \
  24744. int8x8_t __s0 = __p0; \
  24745. int8x8_t __s1 = __p1; \
  24746. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  24747. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  24748. int8x8_t __ret; \
  24749. __ret = (int8x8_t) __builtin_neon_vsri_n_v((int8x8_t)__rev0, (int8x8_t)__rev1, __p2, 0); \
  24750. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  24751. __ret; \
  24752. })
  24753. #endif
  24754. #ifdef __LITTLE_ENDIAN__
  24755. #define vsri_n_s32(__p0, __p1, __p2) __extension__ ({ \
  24756. int32x2_t __s0 = __p0; \
  24757. int32x2_t __s1 = __p1; \
  24758. int32x2_t __ret; \
  24759. __ret = (int32x2_t) __builtin_neon_vsri_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 2); \
  24760. __ret; \
  24761. })
  24762. #else
  24763. #define vsri_n_s32(__p0, __p1, __p2) __extension__ ({ \
  24764. int32x2_t __s0 = __p0; \
  24765. int32x2_t __s1 = __p1; \
  24766. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  24767. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  24768. int32x2_t __ret; \
  24769. __ret = (int32x2_t) __builtin_neon_vsri_n_v((int8x8_t)__rev0, (int8x8_t)__rev1, __p2, 2); \
  24770. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  24771. __ret; \
  24772. })
  24773. #endif
  24774. #ifdef __LITTLE_ENDIAN__
  24775. #define vsri_n_s64(__p0, __p1, __p2) __extension__ ({ \
  24776. int64x1_t __s0 = __p0; \
  24777. int64x1_t __s1 = __p1; \
  24778. int64x1_t __ret; \
  24779. __ret = (int64x1_t) __builtin_neon_vsri_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 3); \
  24780. __ret; \
  24781. })
  24782. #else
  24783. #define vsri_n_s64(__p0, __p1, __p2) __extension__ ({ \
  24784. int64x1_t __s0 = __p0; \
  24785. int64x1_t __s1 = __p1; \
  24786. int64x1_t __ret; \
  24787. __ret = (int64x1_t) __builtin_neon_vsri_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 3); \
  24788. __ret; \
  24789. })
  24790. #endif
  24791. #ifdef __LITTLE_ENDIAN__
  24792. #define vsri_n_s16(__p0, __p1, __p2) __extension__ ({ \
  24793. int16x4_t __s0 = __p0; \
  24794. int16x4_t __s1 = __p1; \
  24795. int16x4_t __ret; \
  24796. __ret = (int16x4_t) __builtin_neon_vsri_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 1); \
  24797. __ret; \
  24798. })
  24799. #else
  24800. #define vsri_n_s16(__p0, __p1, __p2) __extension__ ({ \
  24801. int16x4_t __s0 = __p0; \
  24802. int16x4_t __s1 = __p1; \
  24803. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  24804. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  24805. int16x4_t __ret; \
  24806. __ret = (int16x4_t) __builtin_neon_vsri_n_v((int8x8_t)__rev0, (int8x8_t)__rev1, __p2, 1); \
  24807. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  24808. __ret; \
  24809. })
  24810. #endif
  24811. #ifdef __LITTLE_ENDIAN__
  24812. #define vst1_p8(__p0, __p1) __extension__ ({ \
  24813. poly8x8_t __s1 = __p1; \
  24814. __builtin_neon_vst1_v(__p0, (int8x8_t)__s1, 4); \
  24815. })
  24816. #else
  24817. #define vst1_p8(__p0, __p1) __extension__ ({ \
  24818. poly8x8_t __s1 = __p1; \
  24819. poly8x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  24820. __builtin_neon_vst1_v(__p0, (int8x8_t)__rev1, 4); \
  24821. })
  24822. #endif
  24823. #ifdef __LITTLE_ENDIAN__
  24824. #define vst1_p16(__p0, __p1) __extension__ ({ \
  24825. poly16x4_t __s1 = __p1; \
  24826. __builtin_neon_vst1_v(__p0, (int8x8_t)__s1, 5); \
  24827. })
  24828. #else
  24829. #define vst1_p16(__p0, __p1) __extension__ ({ \
  24830. poly16x4_t __s1 = __p1; \
  24831. poly16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  24832. __builtin_neon_vst1_v(__p0, (int8x8_t)__rev1, 5); \
  24833. })
  24834. #endif
  24835. #ifdef __LITTLE_ENDIAN__
  24836. #define vst1q_p8(__p0, __p1) __extension__ ({ \
  24837. poly8x16_t __s1 = __p1; \
  24838. __builtin_neon_vst1q_v(__p0, (int8x16_t)__s1, 36); \
  24839. })
  24840. #else
  24841. #define vst1q_p8(__p0, __p1) __extension__ ({ \
  24842. poly8x16_t __s1 = __p1; \
  24843. poly8x16_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  24844. __builtin_neon_vst1q_v(__p0, (int8x16_t)__rev1, 36); \
  24845. })
  24846. #endif
  24847. #ifdef __LITTLE_ENDIAN__
  24848. #define vst1q_p16(__p0, __p1) __extension__ ({ \
  24849. poly16x8_t __s1 = __p1; \
  24850. __builtin_neon_vst1q_v(__p0, (int8x16_t)__s1, 37); \
  24851. })
  24852. #else
  24853. #define vst1q_p16(__p0, __p1) __extension__ ({ \
  24854. poly16x8_t __s1 = __p1; \
  24855. poly16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  24856. __builtin_neon_vst1q_v(__p0, (int8x16_t)__rev1, 37); \
  24857. })
  24858. #endif
  24859. #ifdef __LITTLE_ENDIAN__
  24860. #define vst1q_u8(__p0, __p1) __extension__ ({ \
  24861. uint8x16_t __s1 = __p1; \
  24862. __builtin_neon_vst1q_v(__p0, (int8x16_t)__s1, 48); \
  24863. })
  24864. #else
  24865. #define vst1q_u8(__p0, __p1) __extension__ ({ \
  24866. uint8x16_t __s1 = __p1; \
  24867. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  24868. __builtin_neon_vst1q_v(__p0, (int8x16_t)__rev1, 48); \
  24869. })
  24870. #endif
  24871. #ifdef __LITTLE_ENDIAN__
  24872. #define vst1q_u32(__p0, __p1) __extension__ ({ \
  24873. uint32x4_t __s1 = __p1; \
  24874. __builtin_neon_vst1q_v(__p0, (int8x16_t)__s1, 50); \
  24875. })
  24876. #else
  24877. #define vst1q_u32(__p0, __p1) __extension__ ({ \
  24878. uint32x4_t __s1 = __p1; \
  24879. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  24880. __builtin_neon_vst1q_v(__p0, (int8x16_t)__rev1, 50); \
  24881. })
  24882. #endif
  24883. #ifdef __LITTLE_ENDIAN__
  24884. #define vst1q_u64(__p0, __p1) __extension__ ({ \
  24885. uint64x2_t __s1 = __p1; \
  24886. __builtin_neon_vst1q_v(__p0, (int8x16_t)__s1, 51); \
  24887. })
  24888. #else
  24889. #define vst1q_u64(__p0, __p1) __extension__ ({ \
  24890. uint64x2_t __s1 = __p1; \
  24891. uint64x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  24892. __builtin_neon_vst1q_v(__p0, (int8x16_t)__rev1, 51); \
  24893. })
  24894. #endif
  24895. #ifdef __LITTLE_ENDIAN__
  24896. #define vst1q_u16(__p0, __p1) __extension__ ({ \
  24897. uint16x8_t __s1 = __p1; \
  24898. __builtin_neon_vst1q_v(__p0, (int8x16_t)__s1, 49); \
  24899. })
  24900. #else
  24901. #define vst1q_u16(__p0, __p1) __extension__ ({ \
  24902. uint16x8_t __s1 = __p1; \
  24903. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  24904. __builtin_neon_vst1q_v(__p0, (int8x16_t)__rev1, 49); \
  24905. })
  24906. #endif
  24907. #ifdef __LITTLE_ENDIAN__
  24908. #define vst1q_s8(__p0, __p1) __extension__ ({ \
  24909. int8x16_t __s1 = __p1; \
  24910. __builtin_neon_vst1q_v(__p0, (int8x16_t)__s1, 32); \
  24911. })
  24912. #else
  24913. #define vst1q_s8(__p0, __p1) __extension__ ({ \
  24914. int8x16_t __s1 = __p1; \
  24915. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  24916. __builtin_neon_vst1q_v(__p0, (int8x16_t)__rev1, 32); \
  24917. })
  24918. #endif
  24919. #ifdef __LITTLE_ENDIAN__
  24920. #define vst1q_f32(__p0, __p1) __extension__ ({ \
  24921. float32x4_t __s1 = __p1; \
  24922. __builtin_neon_vst1q_v(__p0, (int8x16_t)__s1, 41); \
  24923. })
  24924. #else
  24925. #define vst1q_f32(__p0, __p1) __extension__ ({ \
  24926. float32x4_t __s1 = __p1; \
  24927. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  24928. __builtin_neon_vst1q_v(__p0, (int8x16_t)__rev1, 41); \
  24929. })
  24930. #endif
  24931. #ifdef __LITTLE_ENDIAN__
  24932. #define vst1q_s32(__p0, __p1) __extension__ ({ \
  24933. int32x4_t __s1 = __p1; \
  24934. __builtin_neon_vst1q_v(__p0, (int8x16_t)__s1, 34); \
  24935. })
  24936. #else
  24937. #define vst1q_s32(__p0, __p1) __extension__ ({ \
  24938. int32x4_t __s1 = __p1; \
  24939. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  24940. __builtin_neon_vst1q_v(__p0, (int8x16_t)__rev1, 34); \
  24941. })
  24942. #endif
  24943. #ifdef __LITTLE_ENDIAN__
  24944. #define vst1q_s64(__p0, __p1) __extension__ ({ \
  24945. int64x2_t __s1 = __p1; \
  24946. __builtin_neon_vst1q_v(__p0, (int8x16_t)__s1, 35); \
  24947. })
  24948. #else
  24949. #define vst1q_s64(__p0, __p1) __extension__ ({ \
  24950. int64x2_t __s1 = __p1; \
  24951. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  24952. __builtin_neon_vst1q_v(__p0, (int8x16_t)__rev1, 35); \
  24953. })
  24954. #endif
  24955. #ifdef __LITTLE_ENDIAN__
  24956. #define vst1q_s16(__p0, __p1) __extension__ ({ \
  24957. int16x8_t __s1 = __p1; \
  24958. __builtin_neon_vst1q_v(__p0, (int8x16_t)__s1, 33); \
  24959. })
  24960. #else
  24961. #define vst1q_s16(__p0, __p1) __extension__ ({ \
  24962. int16x8_t __s1 = __p1; \
  24963. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  24964. __builtin_neon_vst1q_v(__p0, (int8x16_t)__rev1, 33); \
  24965. })
  24966. #endif
  24967. #ifdef __LITTLE_ENDIAN__
  24968. #define vst1_u8(__p0, __p1) __extension__ ({ \
  24969. uint8x8_t __s1 = __p1; \
  24970. __builtin_neon_vst1_v(__p0, (int8x8_t)__s1, 16); \
  24971. })
  24972. #else
  24973. #define vst1_u8(__p0, __p1) __extension__ ({ \
  24974. uint8x8_t __s1 = __p1; \
  24975. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  24976. __builtin_neon_vst1_v(__p0, (int8x8_t)__rev1, 16); \
  24977. })
  24978. #endif
  24979. #ifdef __LITTLE_ENDIAN__
  24980. #define vst1_u32(__p0, __p1) __extension__ ({ \
  24981. uint32x2_t __s1 = __p1; \
  24982. __builtin_neon_vst1_v(__p0, (int8x8_t)__s1, 18); \
  24983. })
  24984. #else
  24985. #define vst1_u32(__p0, __p1) __extension__ ({ \
  24986. uint32x2_t __s1 = __p1; \
  24987. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  24988. __builtin_neon_vst1_v(__p0, (int8x8_t)__rev1, 18); \
  24989. })
  24990. #endif
  24991. #ifdef __LITTLE_ENDIAN__
  24992. #define vst1_u64(__p0, __p1) __extension__ ({ \
  24993. uint64x1_t __s1 = __p1; \
  24994. __builtin_neon_vst1_v(__p0, (int8x8_t)__s1, 19); \
  24995. })
  24996. #else
  24997. #define vst1_u64(__p0, __p1) __extension__ ({ \
  24998. uint64x1_t __s1 = __p1; \
  24999. __builtin_neon_vst1_v(__p0, (int8x8_t)__s1, 19); \
  25000. })
  25001. #endif
  25002. #ifdef __LITTLE_ENDIAN__
  25003. #define vst1_u16(__p0, __p1) __extension__ ({ \
  25004. uint16x4_t __s1 = __p1; \
  25005. __builtin_neon_vst1_v(__p0, (int8x8_t)__s1, 17); \
  25006. })
  25007. #else
  25008. #define vst1_u16(__p0, __p1) __extension__ ({ \
  25009. uint16x4_t __s1 = __p1; \
  25010. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  25011. __builtin_neon_vst1_v(__p0, (int8x8_t)__rev1, 17); \
  25012. })
  25013. #endif
  25014. #ifdef __LITTLE_ENDIAN__
  25015. #define vst1_s8(__p0, __p1) __extension__ ({ \
  25016. int8x8_t __s1 = __p1; \
  25017. __builtin_neon_vst1_v(__p0, (int8x8_t)__s1, 0); \
  25018. })
  25019. #else
  25020. #define vst1_s8(__p0, __p1) __extension__ ({ \
  25021. int8x8_t __s1 = __p1; \
  25022. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  25023. __builtin_neon_vst1_v(__p0, (int8x8_t)__rev1, 0); \
  25024. })
  25025. #endif
  25026. #ifdef __LITTLE_ENDIAN__
  25027. #define vst1_f32(__p0, __p1) __extension__ ({ \
  25028. float32x2_t __s1 = __p1; \
  25029. __builtin_neon_vst1_v(__p0, (int8x8_t)__s1, 9); \
  25030. })
  25031. #else
  25032. #define vst1_f32(__p0, __p1) __extension__ ({ \
  25033. float32x2_t __s1 = __p1; \
  25034. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  25035. __builtin_neon_vst1_v(__p0, (int8x8_t)__rev1, 9); \
  25036. })
  25037. #endif
  25038. #ifdef __LITTLE_ENDIAN__
  25039. #define vst1_s32(__p0, __p1) __extension__ ({ \
  25040. int32x2_t __s1 = __p1; \
  25041. __builtin_neon_vst1_v(__p0, (int8x8_t)__s1, 2); \
  25042. })
  25043. #else
  25044. #define vst1_s32(__p0, __p1) __extension__ ({ \
  25045. int32x2_t __s1 = __p1; \
  25046. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  25047. __builtin_neon_vst1_v(__p0, (int8x8_t)__rev1, 2); \
  25048. })
  25049. #endif
  25050. #ifdef __LITTLE_ENDIAN__
  25051. #define vst1_s64(__p0, __p1) __extension__ ({ \
  25052. int64x1_t __s1 = __p1; \
  25053. __builtin_neon_vst1_v(__p0, (int8x8_t)__s1, 3); \
  25054. })
  25055. #else
  25056. #define vst1_s64(__p0, __p1) __extension__ ({ \
  25057. int64x1_t __s1 = __p1; \
  25058. __builtin_neon_vst1_v(__p0, (int8x8_t)__s1, 3); \
  25059. })
  25060. #endif
  25061. #ifdef __LITTLE_ENDIAN__
  25062. #define vst1_s16(__p0, __p1) __extension__ ({ \
  25063. int16x4_t __s1 = __p1; \
  25064. __builtin_neon_vst1_v(__p0, (int8x8_t)__s1, 1); \
  25065. })
  25066. #else
  25067. #define vst1_s16(__p0, __p1) __extension__ ({ \
  25068. int16x4_t __s1 = __p1; \
  25069. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  25070. __builtin_neon_vst1_v(__p0, (int8x8_t)__rev1, 1); \
  25071. })
  25072. #endif
  25073. #ifdef __LITTLE_ENDIAN__
  25074. #define vst1_lane_p8(__p0, __p1, __p2) __extension__ ({ \
  25075. poly8x8_t __s1 = __p1; \
  25076. __builtin_neon_vst1_lane_v(__p0, (int8x8_t)__s1, __p2, 4); \
  25077. })
  25078. #else
  25079. #define vst1_lane_p8(__p0, __p1, __p2) __extension__ ({ \
  25080. poly8x8_t __s1 = __p1; \
  25081. poly8x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  25082. __builtin_neon_vst1_lane_v(__p0, (int8x8_t)__rev1, __p2, 4); \
  25083. })
  25084. #endif
  25085. #ifdef __LITTLE_ENDIAN__
  25086. #define vst1_lane_p16(__p0, __p1, __p2) __extension__ ({ \
  25087. poly16x4_t __s1 = __p1; \
  25088. __builtin_neon_vst1_lane_v(__p0, (int8x8_t)__s1, __p2, 5); \
  25089. })
  25090. #else
  25091. #define vst1_lane_p16(__p0, __p1, __p2) __extension__ ({ \
  25092. poly16x4_t __s1 = __p1; \
  25093. poly16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  25094. __builtin_neon_vst1_lane_v(__p0, (int8x8_t)__rev1, __p2, 5); \
  25095. })
  25096. #endif
  25097. #ifdef __LITTLE_ENDIAN__
  25098. #define vst1q_lane_p8(__p0, __p1, __p2) __extension__ ({ \
  25099. poly8x16_t __s1 = __p1; \
  25100. __builtin_neon_vst1q_lane_v(__p0, (int8x16_t)__s1, __p2, 36); \
  25101. })
  25102. #else
  25103. #define vst1q_lane_p8(__p0, __p1, __p2) __extension__ ({ \
  25104. poly8x16_t __s1 = __p1; \
  25105. poly8x16_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  25106. __builtin_neon_vst1q_lane_v(__p0, (int8x16_t)__rev1, __p2, 36); \
  25107. })
  25108. #endif
  25109. #ifdef __LITTLE_ENDIAN__
  25110. #define vst1q_lane_p16(__p0, __p1, __p2) __extension__ ({ \
  25111. poly16x8_t __s1 = __p1; \
  25112. __builtin_neon_vst1q_lane_v(__p0, (int8x16_t)__s1, __p2, 37); \
  25113. })
  25114. #else
  25115. #define vst1q_lane_p16(__p0, __p1, __p2) __extension__ ({ \
  25116. poly16x8_t __s1 = __p1; \
  25117. poly16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  25118. __builtin_neon_vst1q_lane_v(__p0, (int8x16_t)__rev1, __p2, 37); \
  25119. })
  25120. #endif
  25121. #ifdef __LITTLE_ENDIAN__
  25122. #define vst1q_lane_u8(__p0, __p1, __p2) __extension__ ({ \
  25123. uint8x16_t __s1 = __p1; \
  25124. __builtin_neon_vst1q_lane_v(__p0, (int8x16_t)__s1, __p2, 48); \
  25125. })
  25126. #else
  25127. #define vst1q_lane_u8(__p0, __p1, __p2) __extension__ ({ \
  25128. uint8x16_t __s1 = __p1; \
  25129. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  25130. __builtin_neon_vst1q_lane_v(__p0, (int8x16_t)__rev1, __p2, 48); \
  25131. })
  25132. #endif
  25133. #ifdef __LITTLE_ENDIAN__
  25134. #define vst1q_lane_u32(__p0, __p1, __p2) __extension__ ({ \
  25135. uint32x4_t __s1 = __p1; \
  25136. __builtin_neon_vst1q_lane_v(__p0, (int8x16_t)__s1, __p2, 50); \
  25137. })
  25138. #else
  25139. #define vst1q_lane_u32(__p0, __p1, __p2) __extension__ ({ \
  25140. uint32x4_t __s1 = __p1; \
  25141. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  25142. __builtin_neon_vst1q_lane_v(__p0, (int8x16_t)__rev1, __p2, 50); \
  25143. })
  25144. #endif
  25145. #ifdef __LITTLE_ENDIAN__
  25146. #define vst1q_lane_u64(__p0, __p1, __p2) __extension__ ({ \
  25147. uint64x2_t __s1 = __p1; \
  25148. __builtin_neon_vst1q_lane_v(__p0, (int8x16_t)__s1, __p2, 51); \
  25149. })
  25150. #else
  25151. #define vst1q_lane_u64(__p0, __p1, __p2) __extension__ ({ \
  25152. uint64x2_t __s1 = __p1; \
  25153. uint64x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  25154. __builtin_neon_vst1q_lane_v(__p0, (int8x16_t)__rev1, __p2, 51); \
  25155. })
  25156. #endif
  25157. #ifdef __LITTLE_ENDIAN__
  25158. #define vst1q_lane_u16(__p0, __p1, __p2) __extension__ ({ \
  25159. uint16x8_t __s1 = __p1; \
  25160. __builtin_neon_vst1q_lane_v(__p0, (int8x16_t)__s1, __p2, 49); \
  25161. })
  25162. #else
  25163. #define vst1q_lane_u16(__p0, __p1, __p2) __extension__ ({ \
  25164. uint16x8_t __s1 = __p1; \
  25165. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  25166. __builtin_neon_vst1q_lane_v(__p0, (int8x16_t)__rev1, __p2, 49); \
  25167. })
  25168. #endif
  25169. #ifdef __LITTLE_ENDIAN__
  25170. #define vst1q_lane_s8(__p0, __p1, __p2) __extension__ ({ \
  25171. int8x16_t __s1 = __p1; \
  25172. __builtin_neon_vst1q_lane_v(__p0, (int8x16_t)__s1, __p2, 32); \
  25173. })
  25174. #else
  25175. #define vst1q_lane_s8(__p0, __p1, __p2) __extension__ ({ \
  25176. int8x16_t __s1 = __p1; \
  25177. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  25178. __builtin_neon_vst1q_lane_v(__p0, (int8x16_t)__rev1, __p2, 32); \
  25179. })
  25180. #endif
  25181. #ifdef __LITTLE_ENDIAN__
  25182. #define vst1q_lane_f32(__p0, __p1, __p2) __extension__ ({ \
  25183. float32x4_t __s1 = __p1; \
  25184. __builtin_neon_vst1q_lane_v(__p0, (int8x16_t)__s1, __p2, 41); \
  25185. })
  25186. #else
  25187. #define vst1q_lane_f32(__p0, __p1, __p2) __extension__ ({ \
  25188. float32x4_t __s1 = __p1; \
  25189. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  25190. __builtin_neon_vst1q_lane_v(__p0, (int8x16_t)__rev1, __p2, 41); \
  25191. })
  25192. #endif
  25193. #ifdef __LITTLE_ENDIAN__
  25194. #define vst1q_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  25195. int32x4_t __s1 = __p1; \
  25196. __builtin_neon_vst1q_lane_v(__p0, (int8x16_t)__s1, __p2, 34); \
  25197. })
  25198. #else
  25199. #define vst1q_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  25200. int32x4_t __s1 = __p1; \
  25201. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  25202. __builtin_neon_vst1q_lane_v(__p0, (int8x16_t)__rev1, __p2, 34); \
  25203. })
  25204. #endif
  25205. #ifdef __LITTLE_ENDIAN__
  25206. #define vst1q_lane_s64(__p0, __p1, __p2) __extension__ ({ \
  25207. int64x2_t __s1 = __p1; \
  25208. __builtin_neon_vst1q_lane_v(__p0, (int8x16_t)__s1, __p2, 35); \
  25209. })
  25210. #else
  25211. #define vst1q_lane_s64(__p0, __p1, __p2) __extension__ ({ \
  25212. int64x2_t __s1 = __p1; \
  25213. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  25214. __builtin_neon_vst1q_lane_v(__p0, (int8x16_t)__rev1, __p2, 35); \
  25215. })
  25216. #endif
  25217. #ifdef __LITTLE_ENDIAN__
  25218. #define vst1q_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  25219. int16x8_t __s1 = __p1; \
  25220. __builtin_neon_vst1q_lane_v(__p0, (int8x16_t)__s1, __p2, 33); \
  25221. })
  25222. #else
  25223. #define vst1q_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  25224. int16x8_t __s1 = __p1; \
  25225. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  25226. __builtin_neon_vst1q_lane_v(__p0, (int8x16_t)__rev1, __p2, 33); \
  25227. })
  25228. #endif
  25229. #ifdef __LITTLE_ENDIAN__
  25230. #define vst1_lane_u8(__p0, __p1, __p2) __extension__ ({ \
  25231. uint8x8_t __s1 = __p1; \
  25232. __builtin_neon_vst1_lane_v(__p0, (int8x8_t)__s1, __p2, 16); \
  25233. })
  25234. #else
  25235. #define vst1_lane_u8(__p0, __p1, __p2) __extension__ ({ \
  25236. uint8x8_t __s1 = __p1; \
  25237. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  25238. __builtin_neon_vst1_lane_v(__p0, (int8x8_t)__rev1, __p2, 16); \
  25239. })
  25240. #endif
  25241. #ifdef __LITTLE_ENDIAN__
  25242. #define vst1_lane_u32(__p0, __p1, __p2) __extension__ ({ \
  25243. uint32x2_t __s1 = __p1; \
  25244. __builtin_neon_vst1_lane_v(__p0, (int8x8_t)__s1, __p2, 18); \
  25245. })
  25246. #else
  25247. #define vst1_lane_u32(__p0, __p1, __p2) __extension__ ({ \
  25248. uint32x2_t __s1 = __p1; \
  25249. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  25250. __builtin_neon_vst1_lane_v(__p0, (int8x8_t)__rev1, __p2, 18); \
  25251. })
  25252. #endif
  25253. #ifdef __LITTLE_ENDIAN__
  25254. #define vst1_lane_u64(__p0, __p1, __p2) __extension__ ({ \
  25255. uint64x1_t __s1 = __p1; \
  25256. __builtin_neon_vst1_lane_v(__p0, (int8x8_t)__s1, __p2, 19); \
  25257. })
  25258. #else
  25259. #define vst1_lane_u64(__p0, __p1, __p2) __extension__ ({ \
  25260. uint64x1_t __s1 = __p1; \
  25261. __builtin_neon_vst1_lane_v(__p0, (int8x8_t)__s1, __p2, 19); \
  25262. })
  25263. #endif
  25264. #ifdef __LITTLE_ENDIAN__
  25265. #define vst1_lane_u16(__p0, __p1, __p2) __extension__ ({ \
  25266. uint16x4_t __s1 = __p1; \
  25267. __builtin_neon_vst1_lane_v(__p0, (int8x8_t)__s1, __p2, 17); \
  25268. })
  25269. #else
  25270. #define vst1_lane_u16(__p0, __p1, __p2) __extension__ ({ \
  25271. uint16x4_t __s1 = __p1; \
  25272. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  25273. __builtin_neon_vst1_lane_v(__p0, (int8x8_t)__rev1, __p2, 17); \
  25274. })
  25275. #endif
  25276. #ifdef __LITTLE_ENDIAN__
  25277. #define vst1_lane_s8(__p0, __p1, __p2) __extension__ ({ \
  25278. int8x8_t __s1 = __p1; \
  25279. __builtin_neon_vst1_lane_v(__p0, (int8x8_t)__s1, __p2, 0); \
  25280. })
  25281. #else
  25282. #define vst1_lane_s8(__p0, __p1, __p2) __extension__ ({ \
  25283. int8x8_t __s1 = __p1; \
  25284. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  25285. __builtin_neon_vst1_lane_v(__p0, (int8x8_t)__rev1, __p2, 0); \
  25286. })
  25287. #endif
  25288. #ifdef __LITTLE_ENDIAN__
  25289. #define vst1_lane_f32(__p0, __p1, __p2) __extension__ ({ \
  25290. float32x2_t __s1 = __p1; \
  25291. __builtin_neon_vst1_lane_v(__p0, (int8x8_t)__s1, __p2, 9); \
  25292. })
  25293. #else
  25294. #define vst1_lane_f32(__p0, __p1, __p2) __extension__ ({ \
  25295. float32x2_t __s1 = __p1; \
  25296. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  25297. __builtin_neon_vst1_lane_v(__p0, (int8x8_t)__rev1, __p2, 9); \
  25298. })
  25299. #endif
  25300. #ifdef __LITTLE_ENDIAN__
  25301. #define vst1_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  25302. int32x2_t __s1 = __p1; \
  25303. __builtin_neon_vst1_lane_v(__p0, (int8x8_t)__s1, __p2, 2); \
  25304. })
  25305. #else
  25306. #define vst1_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  25307. int32x2_t __s1 = __p1; \
  25308. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  25309. __builtin_neon_vst1_lane_v(__p0, (int8x8_t)__rev1, __p2, 2); \
  25310. })
  25311. #endif
  25312. #ifdef __LITTLE_ENDIAN__
  25313. #define vst1_lane_s64(__p0, __p1, __p2) __extension__ ({ \
  25314. int64x1_t __s1 = __p1; \
  25315. __builtin_neon_vst1_lane_v(__p0, (int8x8_t)__s1, __p2, 3); \
  25316. })
  25317. #else
  25318. #define vst1_lane_s64(__p0, __p1, __p2) __extension__ ({ \
  25319. int64x1_t __s1 = __p1; \
  25320. __builtin_neon_vst1_lane_v(__p0, (int8x8_t)__s1, __p2, 3); \
  25321. })
  25322. #endif
  25323. #ifdef __LITTLE_ENDIAN__
  25324. #define vst1_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  25325. int16x4_t __s1 = __p1; \
  25326. __builtin_neon_vst1_lane_v(__p0, (int8x8_t)__s1, __p2, 1); \
  25327. })
  25328. #else
  25329. #define vst1_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  25330. int16x4_t __s1 = __p1; \
  25331. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  25332. __builtin_neon_vst1_lane_v(__p0, (int8x8_t)__rev1, __p2, 1); \
  25333. })
  25334. #endif
  25335. #ifdef __LITTLE_ENDIAN__
  25336. #define vst1_p8_x2(__p0, __p1) __extension__ ({ \
  25337. poly8x8x2_t __s1 = __p1; \
  25338. __builtin_neon_vst1_x2_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], 4); \
  25339. })
  25340. #else
  25341. #define vst1_p8_x2(__p0, __p1) __extension__ ({ \
  25342. poly8x8x2_t __s1 = __p1; \
  25343. poly8x8x2_t __rev1; \
  25344. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  25345. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  25346. __builtin_neon_vst1_x2_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], 4); \
  25347. })
  25348. #endif
  25349. #ifdef __LITTLE_ENDIAN__
  25350. #define vst1_p16_x2(__p0, __p1) __extension__ ({ \
  25351. poly16x4x2_t __s1 = __p1; \
  25352. __builtin_neon_vst1_x2_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], 5); \
  25353. })
  25354. #else
  25355. #define vst1_p16_x2(__p0, __p1) __extension__ ({ \
  25356. poly16x4x2_t __s1 = __p1; \
  25357. poly16x4x2_t __rev1; \
  25358. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  25359. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  25360. __builtin_neon_vst1_x2_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], 5); \
  25361. })
  25362. #endif
  25363. #ifdef __LITTLE_ENDIAN__
  25364. #define vst1q_p8_x2(__p0, __p1) __extension__ ({ \
  25365. poly8x16x2_t __s1 = __p1; \
  25366. __builtin_neon_vst1q_x2_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], 36); \
  25367. })
  25368. #else
  25369. #define vst1q_p8_x2(__p0, __p1) __extension__ ({ \
  25370. poly8x16x2_t __s1 = __p1; \
  25371. poly8x16x2_t __rev1; \
  25372. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  25373. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  25374. __builtin_neon_vst1q_x2_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], 36); \
  25375. })
  25376. #endif
  25377. #ifdef __LITTLE_ENDIAN__
  25378. #define vst1q_p16_x2(__p0, __p1) __extension__ ({ \
  25379. poly16x8x2_t __s1 = __p1; \
  25380. __builtin_neon_vst1q_x2_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], 37); \
  25381. })
  25382. #else
  25383. #define vst1q_p16_x2(__p0, __p1) __extension__ ({ \
  25384. poly16x8x2_t __s1 = __p1; \
  25385. poly16x8x2_t __rev1; \
  25386. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  25387. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  25388. __builtin_neon_vst1q_x2_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], 37); \
  25389. })
  25390. #endif
  25391. #ifdef __LITTLE_ENDIAN__
  25392. #define vst1q_u8_x2(__p0, __p1) __extension__ ({ \
  25393. uint8x16x2_t __s1 = __p1; \
  25394. __builtin_neon_vst1q_x2_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], 48); \
  25395. })
  25396. #else
  25397. #define vst1q_u8_x2(__p0, __p1) __extension__ ({ \
  25398. uint8x16x2_t __s1 = __p1; \
  25399. uint8x16x2_t __rev1; \
  25400. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  25401. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  25402. __builtin_neon_vst1q_x2_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], 48); \
  25403. })
  25404. #endif
  25405. #ifdef __LITTLE_ENDIAN__
  25406. #define vst1q_u32_x2(__p0, __p1) __extension__ ({ \
  25407. uint32x4x2_t __s1 = __p1; \
  25408. __builtin_neon_vst1q_x2_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], 50); \
  25409. })
  25410. #else
  25411. #define vst1q_u32_x2(__p0, __p1) __extension__ ({ \
  25412. uint32x4x2_t __s1 = __p1; \
  25413. uint32x4x2_t __rev1; \
  25414. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  25415. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  25416. __builtin_neon_vst1q_x2_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], 50); \
  25417. })
  25418. #endif
  25419. #ifdef __LITTLE_ENDIAN__
  25420. #define vst1q_u64_x2(__p0, __p1) __extension__ ({ \
  25421. uint64x2x2_t __s1 = __p1; \
  25422. __builtin_neon_vst1q_x2_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], 51); \
  25423. })
  25424. #else
  25425. #define vst1q_u64_x2(__p0, __p1) __extension__ ({ \
  25426. uint64x2x2_t __s1 = __p1; \
  25427. uint64x2x2_t __rev1; \
  25428. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  25429. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  25430. __builtin_neon_vst1q_x2_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], 51); \
  25431. })
  25432. #endif
  25433. #ifdef __LITTLE_ENDIAN__
  25434. #define vst1q_u16_x2(__p0, __p1) __extension__ ({ \
  25435. uint16x8x2_t __s1 = __p1; \
  25436. __builtin_neon_vst1q_x2_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], 49); \
  25437. })
  25438. #else
  25439. #define vst1q_u16_x2(__p0, __p1) __extension__ ({ \
  25440. uint16x8x2_t __s1 = __p1; \
  25441. uint16x8x2_t __rev1; \
  25442. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  25443. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  25444. __builtin_neon_vst1q_x2_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], 49); \
  25445. })
  25446. #endif
  25447. #ifdef __LITTLE_ENDIAN__
  25448. #define vst1q_s8_x2(__p0, __p1) __extension__ ({ \
  25449. int8x16x2_t __s1 = __p1; \
  25450. __builtin_neon_vst1q_x2_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], 32); \
  25451. })
  25452. #else
  25453. #define vst1q_s8_x2(__p0, __p1) __extension__ ({ \
  25454. int8x16x2_t __s1 = __p1; \
  25455. int8x16x2_t __rev1; \
  25456. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  25457. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  25458. __builtin_neon_vst1q_x2_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], 32); \
  25459. })
  25460. #endif
  25461. #ifdef __LITTLE_ENDIAN__
  25462. #define vst1q_f32_x2(__p0, __p1) __extension__ ({ \
  25463. float32x4x2_t __s1 = __p1; \
  25464. __builtin_neon_vst1q_x2_v(__p0, __s1.val[0], __s1.val[1], 41); \
  25465. })
  25466. #else
  25467. #define vst1q_f32_x2(__p0, __p1) __extension__ ({ \
  25468. float32x4x2_t __s1 = __p1; \
  25469. float32x4x2_t __rev1; \
  25470. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  25471. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  25472. __builtin_neon_vst1q_x2_v(__p0, __rev1.val[0], __rev1.val[1], 41); \
  25473. })
  25474. #endif
  25475. #ifdef __LITTLE_ENDIAN__
  25476. #define vst1q_s32_x2(__p0, __p1) __extension__ ({ \
  25477. int32x4x2_t __s1 = __p1; \
  25478. __builtin_neon_vst1q_x2_v(__p0, __s1.val[0], __s1.val[1], 34); \
  25479. })
  25480. #else
  25481. #define vst1q_s32_x2(__p0, __p1) __extension__ ({ \
  25482. int32x4x2_t __s1 = __p1; \
  25483. int32x4x2_t __rev1; \
  25484. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  25485. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  25486. __builtin_neon_vst1q_x2_v(__p0, __rev1.val[0], __rev1.val[1], 34); \
  25487. })
  25488. #endif
  25489. #ifdef __LITTLE_ENDIAN__
  25490. #define vst1q_s64_x2(__p0, __p1) __extension__ ({ \
  25491. int64x2x2_t __s1 = __p1; \
  25492. __builtin_neon_vst1q_x2_v(__p0, __s1.val[0], __s1.val[1], 35); \
  25493. })
  25494. #else
  25495. #define vst1q_s64_x2(__p0, __p1) __extension__ ({ \
  25496. int64x2x2_t __s1 = __p1; \
  25497. int64x2x2_t __rev1; \
  25498. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  25499. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  25500. __builtin_neon_vst1q_x2_v(__p0, __rev1.val[0], __rev1.val[1], 35); \
  25501. })
  25502. #endif
  25503. #ifdef __LITTLE_ENDIAN__
  25504. #define vst1q_s16_x2(__p0, __p1) __extension__ ({ \
  25505. int16x8x2_t __s1 = __p1; \
  25506. __builtin_neon_vst1q_x2_v(__p0, __s1.val[0], __s1.val[1], 33); \
  25507. })
  25508. #else
  25509. #define vst1q_s16_x2(__p0, __p1) __extension__ ({ \
  25510. int16x8x2_t __s1 = __p1; \
  25511. int16x8x2_t __rev1; \
  25512. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  25513. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  25514. __builtin_neon_vst1q_x2_v(__p0, __rev1.val[0], __rev1.val[1], 33); \
  25515. })
  25516. #endif
  25517. #ifdef __LITTLE_ENDIAN__
  25518. #define vst1_u8_x2(__p0, __p1) __extension__ ({ \
  25519. uint8x8x2_t __s1 = __p1; \
  25520. __builtin_neon_vst1_x2_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], 16); \
  25521. })
  25522. #else
  25523. #define vst1_u8_x2(__p0, __p1) __extension__ ({ \
  25524. uint8x8x2_t __s1 = __p1; \
  25525. uint8x8x2_t __rev1; \
  25526. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  25527. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  25528. __builtin_neon_vst1_x2_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], 16); \
  25529. })
  25530. #endif
  25531. #ifdef __LITTLE_ENDIAN__
  25532. #define vst1_u32_x2(__p0, __p1) __extension__ ({ \
  25533. uint32x2x2_t __s1 = __p1; \
  25534. __builtin_neon_vst1_x2_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], 18); \
  25535. })
  25536. #else
  25537. #define vst1_u32_x2(__p0, __p1) __extension__ ({ \
  25538. uint32x2x2_t __s1 = __p1; \
  25539. uint32x2x2_t __rev1; \
  25540. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  25541. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  25542. __builtin_neon_vst1_x2_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], 18); \
  25543. })
  25544. #endif
  25545. #ifdef __LITTLE_ENDIAN__
  25546. #define vst1_u64_x2(__p0, __p1) __extension__ ({ \
  25547. uint64x1x2_t __s1 = __p1; \
  25548. __builtin_neon_vst1_x2_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], 19); \
  25549. })
  25550. #else
  25551. #define vst1_u64_x2(__p0, __p1) __extension__ ({ \
  25552. uint64x1x2_t __s1 = __p1; \
  25553. __builtin_neon_vst1_x2_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], 19); \
  25554. })
  25555. #endif
  25556. #ifdef __LITTLE_ENDIAN__
  25557. #define vst1_u16_x2(__p0, __p1) __extension__ ({ \
  25558. uint16x4x2_t __s1 = __p1; \
  25559. __builtin_neon_vst1_x2_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], 17); \
  25560. })
  25561. #else
  25562. #define vst1_u16_x2(__p0, __p1) __extension__ ({ \
  25563. uint16x4x2_t __s1 = __p1; \
  25564. uint16x4x2_t __rev1; \
  25565. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  25566. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  25567. __builtin_neon_vst1_x2_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], 17); \
  25568. })
  25569. #endif
  25570. #ifdef __LITTLE_ENDIAN__
  25571. #define vst1_s8_x2(__p0, __p1) __extension__ ({ \
  25572. int8x8x2_t __s1 = __p1; \
  25573. __builtin_neon_vst1_x2_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], 0); \
  25574. })
  25575. #else
  25576. #define vst1_s8_x2(__p0, __p1) __extension__ ({ \
  25577. int8x8x2_t __s1 = __p1; \
  25578. int8x8x2_t __rev1; \
  25579. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  25580. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  25581. __builtin_neon_vst1_x2_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], 0); \
  25582. })
  25583. #endif
  25584. #ifdef __LITTLE_ENDIAN__
  25585. #define vst1_f32_x2(__p0, __p1) __extension__ ({ \
  25586. float32x2x2_t __s1 = __p1; \
  25587. __builtin_neon_vst1_x2_v(__p0, __s1.val[0], __s1.val[1], 9); \
  25588. })
  25589. #else
  25590. #define vst1_f32_x2(__p0, __p1) __extension__ ({ \
  25591. float32x2x2_t __s1 = __p1; \
  25592. float32x2x2_t __rev1; \
  25593. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  25594. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  25595. __builtin_neon_vst1_x2_v(__p0, __rev1.val[0], __rev1.val[1], 9); \
  25596. })
  25597. #endif
  25598. #ifdef __LITTLE_ENDIAN__
  25599. #define vst1_s32_x2(__p0, __p1) __extension__ ({ \
  25600. int32x2x2_t __s1 = __p1; \
  25601. __builtin_neon_vst1_x2_v(__p0, __s1.val[0], __s1.val[1], 2); \
  25602. })
  25603. #else
  25604. #define vst1_s32_x2(__p0, __p1) __extension__ ({ \
  25605. int32x2x2_t __s1 = __p1; \
  25606. int32x2x2_t __rev1; \
  25607. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  25608. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  25609. __builtin_neon_vst1_x2_v(__p0, __rev1.val[0], __rev1.val[1], 2); \
  25610. })
  25611. #endif
  25612. #ifdef __LITTLE_ENDIAN__
  25613. #define vst1_s64_x2(__p0, __p1) __extension__ ({ \
  25614. int64x1x2_t __s1 = __p1; \
  25615. __builtin_neon_vst1_x2_v(__p0, __s1.val[0], __s1.val[1], 3); \
  25616. })
  25617. #else
  25618. #define vst1_s64_x2(__p0, __p1) __extension__ ({ \
  25619. int64x1x2_t __s1 = __p1; \
  25620. __builtin_neon_vst1_x2_v(__p0, __s1.val[0], __s1.val[1], 3); \
  25621. })
  25622. #endif
  25623. #ifdef __LITTLE_ENDIAN__
  25624. #define vst1_s16_x2(__p0, __p1) __extension__ ({ \
  25625. int16x4x2_t __s1 = __p1; \
  25626. __builtin_neon_vst1_x2_v(__p0, __s1.val[0], __s1.val[1], 1); \
  25627. })
  25628. #else
  25629. #define vst1_s16_x2(__p0, __p1) __extension__ ({ \
  25630. int16x4x2_t __s1 = __p1; \
  25631. int16x4x2_t __rev1; \
  25632. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  25633. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  25634. __builtin_neon_vst1_x2_v(__p0, __rev1.val[0], __rev1.val[1], 1); \
  25635. })
  25636. #endif
  25637. #ifdef __LITTLE_ENDIAN__
  25638. #define vst1_p8_x3(__p0, __p1) __extension__ ({ \
  25639. poly8x8x3_t __s1 = __p1; \
  25640. __builtin_neon_vst1_x3_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], 4); \
  25641. })
  25642. #else
  25643. #define vst1_p8_x3(__p0, __p1) __extension__ ({ \
  25644. poly8x8x3_t __s1 = __p1; \
  25645. poly8x8x3_t __rev1; \
  25646. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  25647. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  25648. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  25649. __builtin_neon_vst1_x3_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], 4); \
  25650. })
  25651. #endif
  25652. #ifdef __LITTLE_ENDIAN__
  25653. #define vst1_p16_x3(__p0, __p1) __extension__ ({ \
  25654. poly16x4x3_t __s1 = __p1; \
  25655. __builtin_neon_vst1_x3_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], 5); \
  25656. })
  25657. #else
  25658. #define vst1_p16_x3(__p0, __p1) __extension__ ({ \
  25659. poly16x4x3_t __s1 = __p1; \
  25660. poly16x4x3_t __rev1; \
  25661. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  25662. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  25663. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  25664. __builtin_neon_vst1_x3_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], 5); \
  25665. })
  25666. #endif
  25667. #ifdef __LITTLE_ENDIAN__
  25668. #define vst1q_p8_x3(__p0, __p1) __extension__ ({ \
  25669. poly8x16x3_t __s1 = __p1; \
  25670. __builtin_neon_vst1q_x3_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], 36); \
  25671. })
  25672. #else
  25673. #define vst1q_p8_x3(__p0, __p1) __extension__ ({ \
  25674. poly8x16x3_t __s1 = __p1; \
  25675. poly8x16x3_t __rev1; \
  25676. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  25677. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  25678. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  25679. __builtin_neon_vst1q_x3_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], 36); \
  25680. })
  25681. #endif
  25682. #ifdef __LITTLE_ENDIAN__
  25683. #define vst1q_p16_x3(__p0, __p1) __extension__ ({ \
  25684. poly16x8x3_t __s1 = __p1; \
  25685. __builtin_neon_vst1q_x3_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], 37); \
  25686. })
  25687. #else
  25688. #define vst1q_p16_x3(__p0, __p1) __extension__ ({ \
  25689. poly16x8x3_t __s1 = __p1; \
  25690. poly16x8x3_t __rev1; \
  25691. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  25692. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  25693. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  25694. __builtin_neon_vst1q_x3_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], 37); \
  25695. })
  25696. #endif
  25697. #ifdef __LITTLE_ENDIAN__
  25698. #define vst1q_u8_x3(__p0, __p1) __extension__ ({ \
  25699. uint8x16x3_t __s1 = __p1; \
  25700. __builtin_neon_vst1q_x3_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], 48); \
  25701. })
  25702. #else
  25703. #define vst1q_u8_x3(__p0, __p1) __extension__ ({ \
  25704. uint8x16x3_t __s1 = __p1; \
  25705. uint8x16x3_t __rev1; \
  25706. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  25707. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  25708. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  25709. __builtin_neon_vst1q_x3_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], 48); \
  25710. })
  25711. #endif
  25712. #ifdef __LITTLE_ENDIAN__
  25713. #define vst1q_u32_x3(__p0, __p1) __extension__ ({ \
  25714. uint32x4x3_t __s1 = __p1; \
  25715. __builtin_neon_vst1q_x3_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], 50); \
  25716. })
  25717. #else
  25718. #define vst1q_u32_x3(__p0, __p1) __extension__ ({ \
  25719. uint32x4x3_t __s1 = __p1; \
  25720. uint32x4x3_t __rev1; \
  25721. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  25722. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  25723. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  25724. __builtin_neon_vst1q_x3_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], 50); \
  25725. })
  25726. #endif
  25727. #ifdef __LITTLE_ENDIAN__
  25728. #define vst1q_u64_x3(__p0, __p1) __extension__ ({ \
  25729. uint64x2x3_t __s1 = __p1; \
  25730. __builtin_neon_vst1q_x3_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], 51); \
  25731. })
  25732. #else
  25733. #define vst1q_u64_x3(__p0, __p1) __extension__ ({ \
  25734. uint64x2x3_t __s1 = __p1; \
  25735. uint64x2x3_t __rev1; \
  25736. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  25737. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  25738. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  25739. __builtin_neon_vst1q_x3_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], 51); \
  25740. })
  25741. #endif
  25742. #ifdef __LITTLE_ENDIAN__
  25743. #define vst1q_u16_x3(__p0, __p1) __extension__ ({ \
  25744. uint16x8x3_t __s1 = __p1; \
  25745. __builtin_neon_vst1q_x3_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], 49); \
  25746. })
  25747. #else
  25748. #define vst1q_u16_x3(__p0, __p1) __extension__ ({ \
  25749. uint16x8x3_t __s1 = __p1; \
  25750. uint16x8x3_t __rev1; \
  25751. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  25752. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  25753. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  25754. __builtin_neon_vst1q_x3_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], 49); \
  25755. })
  25756. #endif
  25757. #ifdef __LITTLE_ENDIAN__
  25758. #define vst1q_s8_x3(__p0, __p1) __extension__ ({ \
  25759. int8x16x3_t __s1 = __p1; \
  25760. __builtin_neon_vst1q_x3_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], 32); \
  25761. })
  25762. #else
  25763. #define vst1q_s8_x3(__p0, __p1) __extension__ ({ \
  25764. int8x16x3_t __s1 = __p1; \
  25765. int8x16x3_t __rev1; \
  25766. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  25767. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  25768. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  25769. __builtin_neon_vst1q_x3_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], 32); \
  25770. })
  25771. #endif
  25772. #ifdef __LITTLE_ENDIAN__
  25773. #define vst1q_f32_x3(__p0, __p1) __extension__ ({ \
  25774. float32x4x3_t __s1 = __p1; \
  25775. __builtin_neon_vst1q_x3_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], 41); \
  25776. })
  25777. #else
  25778. #define vst1q_f32_x3(__p0, __p1) __extension__ ({ \
  25779. float32x4x3_t __s1 = __p1; \
  25780. float32x4x3_t __rev1; \
  25781. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  25782. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  25783. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  25784. __builtin_neon_vst1q_x3_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], 41); \
  25785. })
  25786. #endif
  25787. #ifdef __LITTLE_ENDIAN__
  25788. #define vst1q_s32_x3(__p0, __p1) __extension__ ({ \
  25789. int32x4x3_t __s1 = __p1; \
  25790. __builtin_neon_vst1q_x3_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], 34); \
  25791. })
  25792. #else
  25793. #define vst1q_s32_x3(__p0, __p1) __extension__ ({ \
  25794. int32x4x3_t __s1 = __p1; \
  25795. int32x4x3_t __rev1; \
  25796. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  25797. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  25798. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  25799. __builtin_neon_vst1q_x3_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], 34); \
  25800. })
  25801. #endif
  25802. #ifdef __LITTLE_ENDIAN__
  25803. #define vst1q_s64_x3(__p0, __p1) __extension__ ({ \
  25804. int64x2x3_t __s1 = __p1; \
  25805. __builtin_neon_vst1q_x3_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], 35); \
  25806. })
  25807. #else
  25808. #define vst1q_s64_x3(__p0, __p1) __extension__ ({ \
  25809. int64x2x3_t __s1 = __p1; \
  25810. int64x2x3_t __rev1; \
  25811. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  25812. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  25813. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  25814. __builtin_neon_vst1q_x3_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], 35); \
  25815. })
  25816. #endif
  25817. #ifdef __LITTLE_ENDIAN__
  25818. #define vst1q_s16_x3(__p0, __p1) __extension__ ({ \
  25819. int16x8x3_t __s1 = __p1; \
  25820. __builtin_neon_vst1q_x3_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], 33); \
  25821. })
  25822. #else
  25823. #define vst1q_s16_x3(__p0, __p1) __extension__ ({ \
  25824. int16x8x3_t __s1 = __p1; \
  25825. int16x8x3_t __rev1; \
  25826. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  25827. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  25828. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  25829. __builtin_neon_vst1q_x3_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], 33); \
  25830. })
  25831. #endif
  25832. #ifdef __LITTLE_ENDIAN__
  25833. #define vst1_u8_x3(__p0, __p1) __extension__ ({ \
  25834. uint8x8x3_t __s1 = __p1; \
  25835. __builtin_neon_vst1_x3_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], 16); \
  25836. })
  25837. #else
  25838. #define vst1_u8_x3(__p0, __p1) __extension__ ({ \
  25839. uint8x8x3_t __s1 = __p1; \
  25840. uint8x8x3_t __rev1; \
  25841. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  25842. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  25843. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  25844. __builtin_neon_vst1_x3_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], 16); \
  25845. })
  25846. #endif
  25847. #ifdef __LITTLE_ENDIAN__
  25848. #define vst1_u32_x3(__p0, __p1) __extension__ ({ \
  25849. uint32x2x3_t __s1 = __p1; \
  25850. __builtin_neon_vst1_x3_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], 18); \
  25851. })
  25852. #else
  25853. #define vst1_u32_x3(__p0, __p1) __extension__ ({ \
  25854. uint32x2x3_t __s1 = __p1; \
  25855. uint32x2x3_t __rev1; \
  25856. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  25857. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  25858. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  25859. __builtin_neon_vst1_x3_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], 18); \
  25860. })
  25861. #endif
  25862. #ifdef __LITTLE_ENDIAN__
  25863. #define vst1_u64_x3(__p0, __p1) __extension__ ({ \
  25864. uint64x1x3_t __s1 = __p1; \
  25865. __builtin_neon_vst1_x3_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], 19); \
  25866. })
  25867. #else
  25868. #define vst1_u64_x3(__p0, __p1) __extension__ ({ \
  25869. uint64x1x3_t __s1 = __p1; \
  25870. __builtin_neon_vst1_x3_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], 19); \
  25871. })
  25872. #endif
  25873. #ifdef __LITTLE_ENDIAN__
  25874. #define vst1_u16_x3(__p0, __p1) __extension__ ({ \
  25875. uint16x4x3_t __s1 = __p1; \
  25876. __builtin_neon_vst1_x3_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], 17); \
  25877. })
  25878. #else
  25879. #define vst1_u16_x3(__p0, __p1) __extension__ ({ \
  25880. uint16x4x3_t __s1 = __p1; \
  25881. uint16x4x3_t __rev1; \
  25882. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  25883. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  25884. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  25885. __builtin_neon_vst1_x3_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], 17); \
  25886. })
  25887. #endif
  25888. #ifdef __LITTLE_ENDIAN__
  25889. #define vst1_s8_x3(__p0, __p1) __extension__ ({ \
  25890. int8x8x3_t __s1 = __p1; \
  25891. __builtin_neon_vst1_x3_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], 0); \
  25892. })
  25893. #else
  25894. #define vst1_s8_x3(__p0, __p1) __extension__ ({ \
  25895. int8x8x3_t __s1 = __p1; \
  25896. int8x8x3_t __rev1; \
  25897. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  25898. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  25899. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  25900. __builtin_neon_vst1_x3_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], 0); \
  25901. })
  25902. #endif
  25903. #ifdef __LITTLE_ENDIAN__
  25904. #define vst1_f32_x3(__p0, __p1) __extension__ ({ \
  25905. float32x2x3_t __s1 = __p1; \
  25906. __builtin_neon_vst1_x3_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], 9); \
  25907. })
  25908. #else
  25909. #define vst1_f32_x3(__p0, __p1) __extension__ ({ \
  25910. float32x2x3_t __s1 = __p1; \
  25911. float32x2x3_t __rev1; \
  25912. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  25913. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  25914. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  25915. __builtin_neon_vst1_x3_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], 9); \
  25916. })
  25917. #endif
  25918. #ifdef __LITTLE_ENDIAN__
  25919. #define vst1_s32_x3(__p0, __p1) __extension__ ({ \
  25920. int32x2x3_t __s1 = __p1; \
  25921. __builtin_neon_vst1_x3_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], 2); \
  25922. })
  25923. #else
  25924. #define vst1_s32_x3(__p0, __p1) __extension__ ({ \
  25925. int32x2x3_t __s1 = __p1; \
  25926. int32x2x3_t __rev1; \
  25927. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  25928. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  25929. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  25930. __builtin_neon_vst1_x3_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], 2); \
  25931. })
  25932. #endif
  25933. #ifdef __LITTLE_ENDIAN__
  25934. #define vst1_s64_x3(__p0, __p1) __extension__ ({ \
  25935. int64x1x3_t __s1 = __p1; \
  25936. __builtin_neon_vst1_x3_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], 3); \
  25937. })
  25938. #else
  25939. #define vst1_s64_x3(__p0, __p1) __extension__ ({ \
  25940. int64x1x3_t __s1 = __p1; \
  25941. __builtin_neon_vst1_x3_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], 3); \
  25942. })
  25943. #endif
  25944. #ifdef __LITTLE_ENDIAN__
  25945. #define vst1_s16_x3(__p0, __p1) __extension__ ({ \
  25946. int16x4x3_t __s1 = __p1; \
  25947. __builtin_neon_vst1_x3_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], 1); \
  25948. })
  25949. #else
  25950. #define vst1_s16_x3(__p0, __p1) __extension__ ({ \
  25951. int16x4x3_t __s1 = __p1; \
  25952. int16x4x3_t __rev1; \
  25953. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  25954. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  25955. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  25956. __builtin_neon_vst1_x3_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], 1); \
  25957. })
  25958. #endif
  25959. #ifdef __LITTLE_ENDIAN__
  25960. #define vst1_p8_x4(__p0, __p1) __extension__ ({ \
  25961. poly8x8x4_t __s1 = __p1; \
  25962. __builtin_neon_vst1_x4_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], (int8x8_t)__s1.val[3], 4); \
  25963. })
  25964. #else
  25965. #define vst1_p8_x4(__p0, __p1) __extension__ ({ \
  25966. poly8x8x4_t __s1 = __p1; \
  25967. poly8x8x4_t __rev1; \
  25968. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  25969. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  25970. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  25971. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  25972. __builtin_neon_vst1_x4_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], (int8x8_t)__rev1.val[3], 4); \
  25973. })
  25974. #endif
  25975. #ifdef __LITTLE_ENDIAN__
  25976. #define vst1_p16_x4(__p0, __p1) __extension__ ({ \
  25977. poly16x4x4_t __s1 = __p1; \
  25978. __builtin_neon_vst1_x4_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], (int8x8_t)__s1.val[3], 5); \
  25979. })
  25980. #else
  25981. #define vst1_p16_x4(__p0, __p1) __extension__ ({ \
  25982. poly16x4x4_t __s1 = __p1; \
  25983. poly16x4x4_t __rev1; \
  25984. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  25985. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  25986. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  25987. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 3, 2, 1, 0); \
  25988. __builtin_neon_vst1_x4_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], (int8x8_t)__rev1.val[3], 5); \
  25989. })
  25990. #endif
  25991. #ifdef __LITTLE_ENDIAN__
  25992. #define vst1q_p8_x4(__p0, __p1) __extension__ ({ \
  25993. poly8x16x4_t __s1 = __p1; \
  25994. __builtin_neon_vst1q_x4_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], (int8x16_t)__s1.val[3], 36); \
  25995. })
  25996. #else
  25997. #define vst1q_p8_x4(__p0, __p1) __extension__ ({ \
  25998. poly8x16x4_t __s1 = __p1; \
  25999. poly8x16x4_t __rev1; \
  26000. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  26001. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  26002. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  26003. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  26004. __builtin_neon_vst1q_x4_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], (int8x16_t)__rev1.val[3], 36); \
  26005. })
  26006. #endif
  26007. #ifdef __LITTLE_ENDIAN__
  26008. #define vst1q_p16_x4(__p0, __p1) __extension__ ({ \
  26009. poly16x8x4_t __s1 = __p1; \
  26010. __builtin_neon_vst1q_x4_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], (int8x16_t)__s1.val[3], 37); \
  26011. })
  26012. #else
  26013. #define vst1q_p16_x4(__p0, __p1) __extension__ ({ \
  26014. poly16x8x4_t __s1 = __p1; \
  26015. poly16x8x4_t __rev1; \
  26016. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  26017. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  26018. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  26019. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  26020. __builtin_neon_vst1q_x4_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], (int8x16_t)__rev1.val[3], 37); \
  26021. })
  26022. #endif
  26023. #ifdef __LITTLE_ENDIAN__
  26024. #define vst1q_u8_x4(__p0, __p1) __extension__ ({ \
  26025. uint8x16x4_t __s1 = __p1; \
  26026. __builtin_neon_vst1q_x4_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], (int8x16_t)__s1.val[3], 48); \
  26027. })
  26028. #else
  26029. #define vst1q_u8_x4(__p0, __p1) __extension__ ({ \
  26030. uint8x16x4_t __s1 = __p1; \
  26031. uint8x16x4_t __rev1; \
  26032. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  26033. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  26034. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  26035. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  26036. __builtin_neon_vst1q_x4_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], (int8x16_t)__rev1.val[3], 48); \
  26037. })
  26038. #endif
  26039. #ifdef __LITTLE_ENDIAN__
  26040. #define vst1q_u32_x4(__p0, __p1) __extension__ ({ \
  26041. uint32x4x4_t __s1 = __p1; \
  26042. __builtin_neon_vst1q_x4_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], (int8x16_t)__s1.val[3], 50); \
  26043. })
  26044. #else
  26045. #define vst1q_u32_x4(__p0, __p1) __extension__ ({ \
  26046. uint32x4x4_t __s1 = __p1; \
  26047. uint32x4x4_t __rev1; \
  26048. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  26049. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  26050. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  26051. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 3, 2, 1, 0); \
  26052. __builtin_neon_vst1q_x4_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], (int8x16_t)__rev1.val[3], 50); \
  26053. })
  26054. #endif
  26055. #ifdef __LITTLE_ENDIAN__
  26056. #define vst1q_u64_x4(__p0, __p1) __extension__ ({ \
  26057. uint64x2x4_t __s1 = __p1; \
  26058. __builtin_neon_vst1q_x4_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], (int8x16_t)__s1.val[3], 51); \
  26059. })
  26060. #else
  26061. #define vst1q_u64_x4(__p0, __p1) __extension__ ({ \
  26062. uint64x2x4_t __s1 = __p1; \
  26063. uint64x2x4_t __rev1; \
  26064. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  26065. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  26066. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  26067. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 1, 0); \
  26068. __builtin_neon_vst1q_x4_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], (int8x16_t)__rev1.val[3], 51); \
  26069. })
  26070. #endif
  26071. #ifdef __LITTLE_ENDIAN__
  26072. #define vst1q_u16_x4(__p0, __p1) __extension__ ({ \
  26073. uint16x8x4_t __s1 = __p1; \
  26074. __builtin_neon_vst1q_x4_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], (int8x16_t)__s1.val[3], 49); \
  26075. })
  26076. #else
  26077. #define vst1q_u16_x4(__p0, __p1) __extension__ ({ \
  26078. uint16x8x4_t __s1 = __p1; \
  26079. uint16x8x4_t __rev1; \
  26080. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  26081. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  26082. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  26083. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  26084. __builtin_neon_vst1q_x4_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], (int8x16_t)__rev1.val[3], 49); \
  26085. })
  26086. #endif
  26087. #ifdef __LITTLE_ENDIAN__
  26088. #define vst1q_s8_x4(__p0, __p1) __extension__ ({ \
  26089. int8x16x4_t __s1 = __p1; \
  26090. __builtin_neon_vst1q_x4_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], (int8x16_t)__s1.val[3], 32); \
  26091. })
  26092. #else
  26093. #define vst1q_s8_x4(__p0, __p1) __extension__ ({ \
  26094. int8x16x4_t __s1 = __p1; \
  26095. int8x16x4_t __rev1; \
  26096. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  26097. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  26098. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  26099. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  26100. __builtin_neon_vst1q_x4_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], (int8x16_t)__rev1.val[3], 32); \
  26101. })
  26102. #endif
  26103. #ifdef __LITTLE_ENDIAN__
  26104. #define vst1q_f32_x4(__p0, __p1) __extension__ ({ \
  26105. float32x4x4_t __s1 = __p1; \
  26106. __builtin_neon_vst1q_x4_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], 41); \
  26107. })
  26108. #else
  26109. #define vst1q_f32_x4(__p0, __p1) __extension__ ({ \
  26110. float32x4x4_t __s1 = __p1; \
  26111. float32x4x4_t __rev1; \
  26112. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  26113. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  26114. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  26115. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 3, 2, 1, 0); \
  26116. __builtin_neon_vst1q_x4_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __rev1.val[3], 41); \
  26117. })
  26118. #endif
  26119. #ifdef __LITTLE_ENDIAN__
  26120. #define vst1q_s32_x4(__p0, __p1) __extension__ ({ \
  26121. int32x4x4_t __s1 = __p1; \
  26122. __builtin_neon_vst1q_x4_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], 34); \
  26123. })
  26124. #else
  26125. #define vst1q_s32_x4(__p0, __p1) __extension__ ({ \
  26126. int32x4x4_t __s1 = __p1; \
  26127. int32x4x4_t __rev1; \
  26128. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  26129. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  26130. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  26131. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 3, 2, 1, 0); \
  26132. __builtin_neon_vst1q_x4_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __rev1.val[3], 34); \
  26133. })
  26134. #endif
  26135. #ifdef __LITTLE_ENDIAN__
  26136. #define vst1q_s64_x4(__p0, __p1) __extension__ ({ \
  26137. int64x2x4_t __s1 = __p1; \
  26138. __builtin_neon_vst1q_x4_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], 35); \
  26139. })
  26140. #else
  26141. #define vst1q_s64_x4(__p0, __p1) __extension__ ({ \
  26142. int64x2x4_t __s1 = __p1; \
  26143. int64x2x4_t __rev1; \
  26144. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  26145. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  26146. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  26147. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 1, 0); \
  26148. __builtin_neon_vst1q_x4_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __rev1.val[3], 35); \
  26149. })
  26150. #endif
  26151. #ifdef __LITTLE_ENDIAN__
  26152. #define vst1q_s16_x4(__p0, __p1) __extension__ ({ \
  26153. int16x8x4_t __s1 = __p1; \
  26154. __builtin_neon_vst1q_x4_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], 33); \
  26155. })
  26156. #else
  26157. #define vst1q_s16_x4(__p0, __p1) __extension__ ({ \
  26158. int16x8x4_t __s1 = __p1; \
  26159. int16x8x4_t __rev1; \
  26160. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  26161. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  26162. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  26163. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  26164. __builtin_neon_vst1q_x4_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __rev1.val[3], 33); \
  26165. })
  26166. #endif
  26167. #ifdef __LITTLE_ENDIAN__
  26168. #define vst1_u8_x4(__p0, __p1) __extension__ ({ \
  26169. uint8x8x4_t __s1 = __p1; \
  26170. __builtin_neon_vst1_x4_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], (int8x8_t)__s1.val[3], 16); \
  26171. })
  26172. #else
  26173. #define vst1_u8_x4(__p0, __p1) __extension__ ({ \
  26174. uint8x8x4_t __s1 = __p1; \
  26175. uint8x8x4_t __rev1; \
  26176. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  26177. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  26178. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  26179. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  26180. __builtin_neon_vst1_x4_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], (int8x8_t)__rev1.val[3], 16); \
  26181. })
  26182. #endif
  26183. #ifdef __LITTLE_ENDIAN__
  26184. #define vst1_u32_x4(__p0, __p1) __extension__ ({ \
  26185. uint32x2x4_t __s1 = __p1; \
  26186. __builtin_neon_vst1_x4_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], (int8x8_t)__s1.val[3], 18); \
  26187. })
  26188. #else
  26189. #define vst1_u32_x4(__p0, __p1) __extension__ ({ \
  26190. uint32x2x4_t __s1 = __p1; \
  26191. uint32x2x4_t __rev1; \
  26192. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  26193. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  26194. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  26195. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 1, 0); \
  26196. __builtin_neon_vst1_x4_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], (int8x8_t)__rev1.val[3], 18); \
  26197. })
  26198. #endif
  26199. #ifdef __LITTLE_ENDIAN__
  26200. #define vst1_u64_x4(__p0, __p1) __extension__ ({ \
  26201. uint64x1x4_t __s1 = __p1; \
  26202. __builtin_neon_vst1_x4_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], (int8x8_t)__s1.val[3], 19); \
  26203. })
  26204. #else
  26205. #define vst1_u64_x4(__p0, __p1) __extension__ ({ \
  26206. uint64x1x4_t __s1 = __p1; \
  26207. __builtin_neon_vst1_x4_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], (int8x8_t)__s1.val[3], 19); \
  26208. })
  26209. #endif
  26210. #ifdef __LITTLE_ENDIAN__
  26211. #define vst1_u16_x4(__p0, __p1) __extension__ ({ \
  26212. uint16x4x4_t __s1 = __p1; \
  26213. __builtin_neon_vst1_x4_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], (int8x8_t)__s1.val[3], 17); \
  26214. })
  26215. #else
  26216. #define vst1_u16_x4(__p0, __p1) __extension__ ({ \
  26217. uint16x4x4_t __s1 = __p1; \
  26218. uint16x4x4_t __rev1; \
  26219. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  26220. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  26221. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  26222. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 3, 2, 1, 0); \
  26223. __builtin_neon_vst1_x4_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], (int8x8_t)__rev1.val[3], 17); \
  26224. })
  26225. #endif
  26226. #ifdef __LITTLE_ENDIAN__
  26227. #define vst1_s8_x4(__p0, __p1) __extension__ ({ \
  26228. int8x8x4_t __s1 = __p1; \
  26229. __builtin_neon_vst1_x4_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], (int8x8_t)__s1.val[3], 0); \
  26230. })
  26231. #else
  26232. #define vst1_s8_x4(__p0, __p1) __extension__ ({ \
  26233. int8x8x4_t __s1 = __p1; \
  26234. int8x8x4_t __rev1; \
  26235. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  26236. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  26237. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  26238. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  26239. __builtin_neon_vst1_x4_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], (int8x8_t)__rev1.val[3], 0); \
  26240. })
  26241. #endif
  26242. #ifdef __LITTLE_ENDIAN__
  26243. #define vst1_f32_x4(__p0, __p1) __extension__ ({ \
  26244. float32x2x4_t __s1 = __p1; \
  26245. __builtin_neon_vst1_x4_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], 9); \
  26246. })
  26247. #else
  26248. #define vst1_f32_x4(__p0, __p1) __extension__ ({ \
  26249. float32x2x4_t __s1 = __p1; \
  26250. float32x2x4_t __rev1; \
  26251. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  26252. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  26253. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  26254. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 1, 0); \
  26255. __builtin_neon_vst1_x4_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __rev1.val[3], 9); \
  26256. })
  26257. #endif
  26258. #ifdef __LITTLE_ENDIAN__
  26259. #define vst1_s32_x4(__p0, __p1) __extension__ ({ \
  26260. int32x2x4_t __s1 = __p1; \
  26261. __builtin_neon_vst1_x4_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], 2); \
  26262. })
  26263. #else
  26264. #define vst1_s32_x4(__p0, __p1) __extension__ ({ \
  26265. int32x2x4_t __s1 = __p1; \
  26266. int32x2x4_t __rev1; \
  26267. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  26268. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  26269. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  26270. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 1, 0); \
  26271. __builtin_neon_vst1_x4_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __rev1.val[3], 2); \
  26272. })
  26273. #endif
  26274. #ifdef __LITTLE_ENDIAN__
  26275. #define vst1_s64_x4(__p0, __p1) __extension__ ({ \
  26276. int64x1x4_t __s1 = __p1; \
  26277. __builtin_neon_vst1_x4_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], 3); \
  26278. })
  26279. #else
  26280. #define vst1_s64_x4(__p0, __p1) __extension__ ({ \
  26281. int64x1x4_t __s1 = __p1; \
  26282. __builtin_neon_vst1_x4_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], 3); \
  26283. })
  26284. #endif
  26285. #ifdef __LITTLE_ENDIAN__
  26286. #define vst1_s16_x4(__p0, __p1) __extension__ ({ \
  26287. int16x4x4_t __s1 = __p1; \
  26288. __builtin_neon_vst1_x4_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], 1); \
  26289. })
  26290. #else
  26291. #define vst1_s16_x4(__p0, __p1) __extension__ ({ \
  26292. int16x4x4_t __s1 = __p1; \
  26293. int16x4x4_t __rev1; \
  26294. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  26295. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  26296. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  26297. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 3, 2, 1, 0); \
  26298. __builtin_neon_vst1_x4_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __rev1.val[3], 1); \
  26299. })
  26300. #endif
  26301. #ifdef __LITTLE_ENDIAN__
  26302. #define vst2_p8(__p0, __p1) __extension__ ({ \
  26303. poly8x8x2_t __s1 = __p1; \
  26304. __builtin_neon_vst2_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], 4); \
  26305. })
  26306. #else
  26307. #define vst2_p8(__p0, __p1) __extension__ ({ \
  26308. poly8x8x2_t __s1 = __p1; \
  26309. poly8x8x2_t __rev1; \
  26310. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  26311. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  26312. __builtin_neon_vst2_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], 4); \
  26313. })
  26314. #endif
  26315. #ifdef __LITTLE_ENDIAN__
  26316. #define vst2_p16(__p0, __p1) __extension__ ({ \
  26317. poly16x4x2_t __s1 = __p1; \
  26318. __builtin_neon_vst2_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], 5); \
  26319. })
  26320. #else
  26321. #define vst2_p16(__p0, __p1) __extension__ ({ \
  26322. poly16x4x2_t __s1 = __p1; \
  26323. poly16x4x2_t __rev1; \
  26324. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  26325. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  26326. __builtin_neon_vst2_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], 5); \
  26327. })
  26328. #endif
  26329. #ifdef __LITTLE_ENDIAN__
  26330. #define vst2q_p8(__p0, __p1) __extension__ ({ \
  26331. poly8x16x2_t __s1 = __p1; \
  26332. __builtin_neon_vst2q_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], 36); \
  26333. })
  26334. #else
  26335. #define vst2q_p8(__p0, __p1) __extension__ ({ \
  26336. poly8x16x2_t __s1 = __p1; \
  26337. poly8x16x2_t __rev1; \
  26338. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  26339. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  26340. __builtin_neon_vst2q_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], 36); \
  26341. })
  26342. #endif
  26343. #ifdef __LITTLE_ENDIAN__
  26344. #define vst2q_p16(__p0, __p1) __extension__ ({ \
  26345. poly16x8x2_t __s1 = __p1; \
  26346. __builtin_neon_vst2q_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], 37); \
  26347. })
  26348. #else
  26349. #define vst2q_p16(__p0, __p1) __extension__ ({ \
  26350. poly16x8x2_t __s1 = __p1; \
  26351. poly16x8x2_t __rev1; \
  26352. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  26353. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  26354. __builtin_neon_vst2q_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], 37); \
  26355. })
  26356. #endif
  26357. #ifdef __LITTLE_ENDIAN__
  26358. #define vst2q_u8(__p0, __p1) __extension__ ({ \
  26359. uint8x16x2_t __s1 = __p1; \
  26360. __builtin_neon_vst2q_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], 48); \
  26361. })
  26362. #else
  26363. #define vst2q_u8(__p0, __p1) __extension__ ({ \
  26364. uint8x16x2_t __s1 = __p1; \
  26365. uint8x16x2_t __rev1; \
  26366. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  26367. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  26368. __builtin_neon_vst2q_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], 48); \
  26369. })
  26370. #endif
  26371. #ifdef __LITTLE_ENDIAN__
  26372. #define vst2q_u32(__p0, __p1) __extension__ ({ \
  26373. uint32x4x2_t __s1 = __p1; \
  26374. __builtin_neon_vst2q_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], 50); \
  26375. })
  26376. #else
  26377. #define vst2q_u32(__p0, __p1) __extension__ ({ \
  26378. uint32x4x2_t __s1 = __p1; \
  26379. uint32x4x2_t __rev1; \
  26380. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  26381. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  26382. __builtin_neon_vst2q_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], 50); \
  26383. })
  26384. #endif
  26385. #ifdef __LITTLE_ENDIAN__
  26386. #define vst2q_u16(__p0, __p1) __extension__ ({ \
  26387. uint16x8x2_t __s1 = __p1; \
  26388. __builtin_neon_vst2q_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], 49); \
  26389. })
  26390. #else
  26391. #define vst2q_u16(__p0, __p1) __extension__ ({ \
  26392. uint16x8x2_t __s1 = __p1; \
  26393. uint16x8x2_t __rev1; \
  26394. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  26395. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  26396. __builtin_neon_vst2q_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], 49); \
  26397. })
  26398. #endif
  26399. #ifdef __LITTLE_ENDIAN__
  26400. #define vst2q_s8(__p0, __p1) __extension__ ({ \
  26401. int8x16x2_t __s1 = __p1; \
  26402. __builtin_neon_vst2q_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], 32); \
  26403. })
  26404. #else
  26405. #define vst2q_s8(__p0, __p1) __extension__ ({ \
  26406. int8x16x2_t __s1 = __p1; \
  26407. int8x16x2_t __rev1; \
  26408. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  26409. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  26410. __builtin_neon_vst2q_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], 32); \
  26411. })
  26412. #endif
  26413. #ifdef __LITTLE_ENDIAN__
  26414. #define vst2q_f32(__p0, __p1) __extension__ ({ \
  26415. float32x4x2_t __s1 = __p1; \
  26416. __builtin_neon_vst2q_v(__p0, __s1.val[0], __s1.val[1], 41); \
  26417. })
  26418. #else
  26419. #define vst2q_f32(__p0, __p1) __extension__ ({ \
  26420. float32x4x2_t __s1 = __p1; \
  26421. float32x4x2_t __rev1; \
  26422. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  26423. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  26424. __builtin_neon_vst2q_v(__p0, __rev1.val[0], __rev1.val[1], 41); \
  26425. })
  26426. #endif
  26427. #ifdef __LITTLE_ENDIAN__
  26428. #define vst2q_s32(__p0, __p1) __extension__ ({ \
  26429. int32x4x2_t __s1 = __p1; \
  26430. __builtin_neon_vst2q_v(__p0, __s1.val[0], __s1.val[1], 34); \
  26431. })
  26432. #else
  26433. #define vst2q_s32(__p0, __p1) __extension__ ({ \
  26434. int32x4x2_t __s1 = __p1; \
  26435. int32x4x2_t __rev1; \
  26436. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  26437. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  26438. __builtin_neon_vst2q_v(__p0, __rev1.val[0], __rev1.val[1], 34); \
  26439. })
  26440. #endif
  26441. #ifdef __LITTLE_ENDIAN__
  26442. #define vst2q_s16(__p0, __p1) __extension__ ({ \
  26443. int16x8x2_t __s1 = __p1; \
  26444. __builtin_neon_vst2q_v(__p0, __s1.val[0], __s1.val[1], 33); \
  26445. })
  26446. #else
  26447. #define vst2q_s16(__p0, __p1) __extension__ ({ \
  26448. int16x8x2_t __s1 = __p1; \
  26449. int16x8x2_t __rev1; \
  26450. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  26451. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  26452. __builtin_neon_vst2q_v(__p0, __rev1.val[0], __rev1.val[1], 33); \
  26453. })
  26454. #endif
  26455. #ifdef __LITTLE_ENDIAN__
  26456. #define vst2_u8(__p0, __p1) __extension__ ({ \
  26457. uint8x8x2_t __s1 = __p1; \
  26458. __builtin_neon_vst2_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], 16); \
  26459. })
  26460. #else
  26461. #define vst2_u8(__p0, __p1) __extension__ ({ \
  26462. uint8x8x2_t __s1 = __p1; \
  26463. uint8x8x2_t __rev1; \
  26464. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  26465. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  26466. __builtin_neon_vst2_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], 16); \
  26467. })
  26468. #endif
  26469. #ifdef __LITTLE_ENDIAN__
  26470. #define vst2_u32(__p0, __p1) __extension__ ({ \
  26471. uint32x2x2_t __s1 = __p1; \
  26472. __builtin_neon_vst2_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], 18); \
  26473. })
  26474. #else
  26475. #define vst2_u32(__p0, __p1) __extension__ ({ \
  26476. uint32x2x2_t __s1 = __p1; \
  26477. uint32x2x2_t __rev1; \
  26478. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  26479. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  26480. __builtin_neon_vst2_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], 18); \
  26481. })
  26482. #endif
  26483. #ifdef __LITTLE_ENDIAN__
  26484. #define vst2_u64(__p0, __p1) __extension__ ({ \
  26485. uint64x1x2_t __s1 = __p1; \
  26486. __builtin_neon_vst2_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], 19); \
  26487. })
  26488. #else
  26489. #define vst2_u64(__p0, __p1) __extension__ ({ \
  26490. uint64x1x2_t __s1 = __p1; \
  26491. __builtin_neon_vst2_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], 19); \
  26492. })
  26493. #endif
  26494. #ifdef __LITTLE_ENDIAN__
  26495. #define vst2_u16(__p0, __p1) __extension__ ({ \
  26496. uint16x4x2_t __s1 = __p1; \
  26497. __builtin_neon_vst2_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], 17); \
  26498. })
  26499. #else
  26500. #define vst2_u16(__p0, __p1) __extension__ ({ \
  26501. uint16x4x2_t __s1 = __p1; \
  26502. uint16x4x2_t __rev1; \
  26503. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  26504. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  26505. __builtin_neon_vst2_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], 17); \
  26506. })
  26507. #endif
  26508. #ifdef __LITTLE_ENDIAN__
  26509. #define vst2_s8(__p0, __p1) __extension__ ({ \
  26510. int8x8x2_t __s1 = __p1; \
  26511. __builtin_neon_vst2_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], 0); \
  26512. })
  26513. #else
  26514. #define vst2_s8(__p0, __p1) __extension__ ({ \
  26515. int8x8x2_t __s1 = __p1; \
  26516. int8x8x2_t __rev1; \
  26517. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  26518. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  26519. __builtin_neon_vst2_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], 0); \
  26520. })
  26521. #endif
  26522. #ifdef __LITTLE_ENDIAN__
  26523. #define vst2_f32(__p0, __p1) __extension__ ({ \
  26524. float32x2x2_t __s1 = __p1; \
  26525. __builtin_neon_vst2_v(__p0, __s1.val[0], __s1.val[1], 9); \
  26526. })
  26527. #else
  26528. #define vst2_f32(__p0, __p1) __extension__ ({ \
  26529. float32x2x2_t __s1 = __p1; \
  26530. float32x2x2_t __rev1; \
  26531. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  26532. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  26533. __builtin_neon_vst2_v(__p0, __rev1.val[0], __rev1.val[1], 9); \
  26534. })
  26535. #endif
  26536. #ifdef __LITTLE_ENDIAN__
  26537. #define vst2_s32(__p0, __p1) __extension__ ({ \
  26538. int32x2x2_t __s1 = __p1; \
  26539. __builtin_neon_vst2_v(__p0, __s1.val[0], __s1.val[1], 2); \
  26540. })
  26541. #else
  26542. #define vst2_s32(__p0, __p1) __extension__ ({ \
  26543. int32x2x2_t __s1 = __p1; \
  26544. int32x2x2_t __rev1; \
  26545. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  26546. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  26547. __builtin_neon_vst2_v(__p0, __rev1.val[0], __rev1.val[1], 2); \
  26548. })
  26549. #endif
  26550. #ifdef __LITTLE_ENDIAN__
  26551. #define vst2_s64(__p0, __p1) __extension__ ({ \
  26552. int64x1x2_t __s1 = __p1; \
  26553. __builtin_neon_vst2_v(__p0, __s1.val[0], __s1.val[1], 3); \
  26554. })
  26555. #else
  26556. #define vst2_s64(__p0, __p1) __extension__ ({ \
  26557. int64x1x2_t __s1 = __p1; \
  26558. __builtin_neon_vst2_v(__p0, __s1.val[0], __s1.val[1], 3); \
  26559. })
  26560. #endif
  26561. #ifdef __LITTLE_ENDIAN__
  26562. #define vst2_s16(__p0, __p1) __extension__ ({ \
  26563. int16x4x2_t __s1 = __p1; \
  26564. __builtin_neon_vst2_v(__p0, __s1.val[0], __s1.val[1], 1); \
  26565. })
  26566. #else
  26567. #define vst2_s16(__p0, __p1) __extension__ ({ \
  26568. int16x4x2_t __s1 = __p1; \
  26569. int16x4x2_t __rev1; \
  26570. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  26571. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  26572. __builtin_neon_vst2_v(__p0, __rev1.val[0], __rev1.val[1], 1); \
  26573. })
  26574. #endif
  26575. #ifdef __LITTLE_ENDIAN__
  26576. #define vst2_lane_p8(__p0, __p1, __p2) __extension__ ({ \
  26577. poly8x8x2_t __s1 = __p1; \
  26578. __builtin_neon_vst2_lane_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], __p2, 4); \
  26579. })
  26580. #else
  26581. #define vst2_lane_p8(__p0, __p1, __p2) __extension__ ({ \
  26582. poly8x8x2_t __s1 = __p1; \
  26583. poly8x8x2_t __rev1; \
  26584. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  26585. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  26586. __builtin_neon_vst2_lane_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], __p2, 4); \
  26587. })
  26588. #endif
  26589. #ifdef __LITTLE_ENDIAN__
  26590. #define vst2_lane_p16(__p0, __p1, __p2) __extension__ ({ \
  26591. poly16x4x2_t __s1 = __p1; \
  26592. __builtin_neon_vst2_lane_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], __p2, 5); \
  26593. })
  26594. #else
  26595. #define vst2_lane_p16(__p0, __p1, __p2) __extension__ ({ \
  26596. poly16x4x2_t __s1 = __p1; \
  26597. poly16x4x2_t __rev1; \
  26598. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  26599. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  26600. __builtin_neon_vst2_lane_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], __p2, 5); \
  26601. })
  26602. #endif
  26603. #ifdef __LITTLE_ENDIAN__
  26604. #define vst2q_lane_p16(__p0, __p1, __p2) __extension__ ({ \
  26605. poly16x8x2_t __s1 = __p1; \
  26606. __builtin_neon_vst2q_lane_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], __p2, 37); \
  26607. })
  26608. #else
  26609. #define vst2q_lane_p16(__p0, __p1, __p2) __extension__ ({ \
  26610. poly16x8x2_t __s1 = __p1; \
  26611. poly16x8x2_t __rev1; \
  26612. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  26613. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  26614. __builtin_neon_vst2q_lane_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], __p2, 37); \
  26615. })
  26616. #endif
  26617. #ifdef __LITTLE_ENDIAN__
  26618. #define vst2q_lane_u32(__p0, __p1, __p2) __extension__ ({ \
  26619. uint32x4x2_t __s1 = __p1; \
  26620. __builtin_neon_vst2q_lane_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], __p2, 50); \
  26621. })
  26622. #else
  26623. #define vst2q_lane_u32(__p0, __p1, __p2) __extension__ ({ \
  26624. uint32x4x2_t __s1 = __p1; \
  26625. uint32x4x2_t __rev1; \
  26626. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  26627. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  26628. __builtin_neon_vst2q_lane_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], __p2, 50); \
  26629. })
  26630. #endif
  26631. #ifdef __LITTLE_ENDIAN__
  26632. #define vst2q_lane_u16(__p0, __p1, __p2) __extension__ ({ \
  26633. uint16x8x2_t __s1 = __p1; \
  26634. __builtin_neon_vst2q_lane_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], __p2, 49); \
  26635. })
  26636. #else
  26637. #define vst2q_lane_u16(__p0, __p1, __p2) __extension__ ({ \
  26638. uint16x8x2_t __s1 = __p1; \
  26639. uint16x8x2_t __rev1; \
  26640. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  26641. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  26642. __builtin_neon_vst2q_lane_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], __p2, 49); \
  26643. })
  26644. #endif
  26645. #ifdef __LITTLE_ENDIAN__
  26646. #define vst2q_lane_f32(__p0, __p1, __p2) __extension__ ({ \
  26647. float32x4x2_t __s1 = __p1; \
  26648. __builtin_neon_vst2q_lane_v(__p0, __s1.val[0], __s1.val[1], __p2, 41); \
  26649. })
  26650. #else
  26651. #define vst2q_lane_f32(__p0, __p1, __p2) __extension__ ({ \
  26652. float32x4x2_t __s1 = __p1; \
  26653. float32x4x2_t __rev1; \
  26654. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  26655. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  26656. __builtin_neon_vst2q_lane_v(__p0, __rev1.val[0], __rev1.val[1], __p2, 41); \
  26657. })
  26658. #endif
  26659. #ifdef __LITTLE_ENDIAN__
  26660. #define vst2q_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  26661. int32x4x2_t __s1 = __p1; \
  26662. __builtin_neon_vst2q_lane_v(__p0, __s1.val[0], __s1.val[1], __p2, 34); \
  26663. })
  26664. #else
  26665. #define vst2q_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  26666. int32x4x2_t __s1 = __p1; \
  26667. int32x4x2_t __rev1; \
  26668. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  26669. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  26670. __builtin_neon_vst2q_lane_v(__p0, __rev1.val[0], __rev1.val[1], __p2, 34); \
  26671. })
  26672. #endif
  26673. #ifdef __LITTLE_ENDIAN__
  26674. #define vst2q_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  26675. int16x8x2_t __s1 = __p1; \
  26676. __builtin_neon_vst2q_lane_v(__p0, __s1.val[0], __s1.val[1], __p2, 33); \
  26677. })
  26678. #else
  26679. #define vst2q_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  26680. int16x8x2_t __s1 = __p1; \
  26681. int16x8x2_t __rev1; \
  26682. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  26683. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  26684. __builtin_neon_vst2q_lane_v(__p0, __rev1.val[0], __rev1.val[1], __p2, 33); \
  26685. })
  26686. #endif
  26687. #ifdef __LITTLE_ENDIAN__
  26688. #define vst2_lane_u8(__p0, __p1, __p2) __extension__ ({ \
  26689. uint8x8x2_t __s1 = __p1; \
  26690. __builtin_neon_vst2_lane_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], __p2, 16); \
  26691. })
  26692. #else
  26693. #define vst2_lane_u8(__p0, __p1, __p2) __extension__ ({ \
  26694. uint8x8x2_t __s1 = __p1; \
  26695. uint8x8x2_t __rev1; \
  26696. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  26697. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  26698. __builtin_neon_vst2_lane_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], __p2, 16); \
  26699. })
  26700. #endif
  26701. #ifdef __LITTLE_ENDIAN__
  26702. #define vst2_lane_u32(__p0, __p1, __p2) __extension__ ({ \
  26703. uint32x2x2_t __s1 = __p1; \
  26704. __builtin_neon_vst2_lane_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], __p2, 18); \
  26705. })
  26706. #else
  26707. #define vst2_lane_u32(__p0, __p1, __p2) __extension__ ({ \
  26708. uint32x2x2_t __s1 = __p1; \
  26709. uint32x2x2_t __rev1; \
  26710. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  26711. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  26712. __builtin_neon_vst2_lane_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], __p2, 18); \
  26713. })
  26714. #endif
  26715. #ifdef __LITTLE_ENDIAN__
  26716. #define vst2_lane_u16(__p0, __p1, __p2) __extension__ ({ \
  26717. uint16x4x2_t __s1 = __p1; \
  26718. __builtin_neon_vst2_lane_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], __p2, 17); \
  26719. })
  26720. #else
  26721. #define vst2_lane_u16(__p0, __p1, __p2) __extension__ ({ \
  26722. uint16x4x2_t __s1 = __p1; \
  26723. uint16x4x2_t __rev1; \
  26724. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  26725. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  26726. __builtin_neon_vst2_lane_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], __p2, 17); \
  26727. })
  26728. #endif
  26729. #ifdef __LITTLE_ENDIAN__
  26730. #define vst2_lane_s8(__p0, __p1, __p2) __extension__ ({ \
  26731. int8x8x2_t __s1 = __p1; \
  26732. __builtin_neon_vst2_lane_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], __p2, 0); \
  26733. })
  26734. #else
  26735. #define vst2_lane_s8(__p0, __p1, __p2) __extension__ ({ \
  26736. int8x8x2_t __s1 = __p1; \
  26737. int8x8x2_t __rev1; \
  26738. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  26739. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  26740. __builtin_neon_vst2_lane_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], __p2, 0); \
  26741. })
  26742. #endif
  26743. #ifdef __LITTLE_ENDIAN__
  26744. #define vst2_lane_f32(__p0, __p1, __p2) __extension__ ({ \
  26745. float32x2x2_t __s1 = __p1; \
  26746. __builtin_neon_vst2_lane_v(__p0, __s1.val[0], __s1.val[1], __p2, 9); \
  26747. })
  26748. #else
  26749. #define vst2_lane_f32(__p0, __p1, __p2) __extension__ ({ \
  26750. float32x2x2_t __s1 = __p1; \
  26751. float32x2x2_t __rev1; \
  26752. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  26753. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  26754. __builtin_neon_vst2_lane_v(__p0, __rev1.val[0], __rev1.val[1], __p2, 9); \
  26755. })
  26756. #endif
  26757. #ifdef __LITTLE_ENDIAN__
  26758. #define vst2_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  26759. int32x2x2_t __s1 = __p1; \
  26760. __builtin_neon_vst2_lane_v(__p0, __s1.val[0], __s1.val[1], __p2, 2); \
  26761. })
  26762. #else
  26763. #define vst2_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  26764. int32x2x2_t __s1 = __p1; \
  26765. int32x2x2_t __rev1; \
  26766. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  26767. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  26768. __builtin_neon_vst2_lane_v(__p0, __rev1.val[0], __rev1.val[1], __p2, 2); \
  26769. })
  26770. #endif
  26771. #ifdef __LITTLE_ENDIAN__
  26772. #define vst2_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  26773. int16x4x2_t __s1 = __p1; \
  26774. __builtin_neon_vst2_lane_v(__p0, __s1.val[0], __s1.val[1], __p2, 1); \
  26775. })
  26776. #else
  26777. #define vst2_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  26778. int16x4x2_t __s1 = __p1; \
  26779. int16x4x2_t __rev1; \
  26780. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  26781. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  26782. __builtin_neon_vst2_lane_v(__p0, __rev1.val[0], __rev1.val[1], __p2, 1); \
  26783. })
  26784. #endif
  26785. #ifdef __LITTLE_ENDIAN__
  26786. #define vst3_p8(__p0, __p1) __extension__ ({ \
  26787. poly8x8x3_t __s1 = __p1; \
  26788. __builtin_neon_vst3_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], 4); \
  26789. })
  26790. #else
  26791. #define vst3_p8(__p0, __p1) __extension__ ({ \
  26792. poly8x8x3_t __s1 = __p1; \
  26793. poly8x8x3_t __rev1; \
  26794. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  26795. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  26796. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  26797. __builtin_neon_vst3_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], 4); \
  26798. })
  26799. #endif
  26800. #ifdef __LITTLE_ENDIAN__
  26801. #define vst3_p16(__p0, __p1) __extension__ ({ \
  26802. poly16x4x3_t __s1 = __p1; \
  26803. __builtin_neon_vst3_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], 5); \
  26804. })
  26805. #else
  26806. #define vst3_p16(__p0, __p1) __extension__ ({ \
  26807. poly16x4x3_t __s1 = __p1; \
  26808. poly16x4x3_t __rev1; \
  26809. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  26810. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  26811. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  26812. __builtin_neon_vst3_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], 5); \
  26813. })
  26814. #endif
  26815. #ifdef __LITTLE_ENDIAN__
  26816. #define vst3q_p8(__p0, __p1) __extension__ ({ \
  26817. poly8x16x3_t __s1 = __p1; \
  26818. __builtin_neon_vst3q_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], 36); \
  26819. })
  26820. #else
  26821. #define vst3q_p8(__p0, __p1) __extension__ ({ \
  26822. poly8x16x3_t __s1 = __p1; \
  26823. poly8x16x3_t __rev1; \
  26824. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  26825. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  26826. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  26827. __builtin_neon_vst3q_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], 36); \
  26828. })
  26829. #endif
  26830. #ifdef __LITTLE_ENDIAN__
  26831. #define vst3q_p16(__p0, __p1) __extension__ ({ \
  26832. poly16x8x3_t __s1 = __p1; \
  26833. __builtin_neon_vst3q_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], 37); \
  26834. })
  26835. #else
  26836. #define vst3q_p16(__p0, __p1) __extension__ ({ \
  26837. poly16x8x3_t __s1 = __p1; \
  26838. poly16x8x3_t __rev1; \
  26839. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  26840. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  26841. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  26842. __builtin_neon_vst3q_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], 37); \
  26843. })
  26844. #endif
  26845. #ifdef __LITTLE_ENDIAN__
  26846. #define vst3q_u8(__p0, __p1) __extension__ ({ \
  26847. uint8x16x3_t __s1 = __p1; \
  26848. __builtin_neon_vst3q_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], 48); \
  26849. })
  26850. #else
  26851. #define vst3q_u8(__p0, __p1) __extension__ ({ \
  26852. uint8x16x3_t __s1 = __p1; \
  26853. uint8x16x3_t __rev1; \
  26854. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  26855. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  26856. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  26857. __builtin_neon_vst3q_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], 48); \
  26858. })
  26859. #endif
  26860. #ifdef __LITTLE_ENDIAN__
  26861. #define vst3q_u32(__p0, __p1) __extension__ ({ \
  26862. uint32x4x3_t __s1 = __p1; \
  26863. __builtin_neon_vst3q_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], 50); \
  26864. })
  26865. #else
  26866. #define vst3q_u32(__p0, __p1) __extension__ ({ \
  26867. uint32x4x3_t __s1 = __p1; \
  26868. uint32x4x3_t __rev1; \
  26869. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  26870. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  26871. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  26872. __builtin_neon_vst3q_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], 50); \
  26873. })
  26874. #endif
  26875. #ifdef __LITTLE_ENDIAN__
  26876. #define vst3q_u16(__p0, __p1) __extension__ ({ \
  26877. uint16x8x3_t __s1 = __p1; \
  26878. __builtin_neon_vst3q_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], 49); \
  26879. })
  26880. #else
  26881. #define vst3q_u16(__p0, __p1) __extension__ ({ \
  26882. uint16x8x3_t __s1 = __p1; \
  26883. uint16x8x3_t __rev1; \
  26884. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  26885. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  26886. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  26887. __builtin_neon_vst3q_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], 49); \
  26888. })
  26889. #endif
  26890. #ifdef __LITTLE_ENDIAN__
  26891. #define vst3q_s8(__p0, __p1) __extension__ ({ \
  26892. int8x16x3_t __s1 = __p1; \
  26893. __builtin_neon_vst3q_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], 32); \
  26894. })
  26895. #else
  26896. #define vst3q_s8(__p0, __p1) __extension__ ({ \
  26897. int8x16x3_t __s1 = __p1; \
  26898. int8x16x3_t __rev1; \
  26899. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  26900. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  26901. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  26902. __builtin_neon_vst3q_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], 32); \
  26903. })
  26904. #endif
  26905. #ifdef __LITTLE_ENDIAN__
  26906. #define vst3q_f32(__p0, __p1) __extension__ ({ \
  26907. float32x4x3_t __s1 = __p1; \
  26908. __builtin_neon_vst3q_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], 41); \
  26909. })
  26910. #else
  26911. #define vst3q_f32(__p0, __p1) __extension__ ({ \
  26912. float32x4x3_t __s1 = __p1; \
  26913. float32x4x3_t __rev1; \
  26914. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  26915. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  26916. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  26917. __builtin_neon_vst3q_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], 41); \
  26918. })
  26919. #endif
  26920. #ifdef __LITTLE_ENDIAN__
  26921. #define vst3q_s32(__p0, __p1) __extension__ ({ \
  26922. int32x4x3_t __s1 = __p1; \
  26923. __builtin_neon_vst3q_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], 34); \
  26924. })
  26925. #else
  26926. #define vst3q_s32(__p0, __p1) __extension__ ({ \
  26927. int32x4x3_t __s1 = __p1; \
  26928. int32x4x3_t __rev1; \
  26929. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  26930. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  26931. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  26932. __builtin_neon_vst3q_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], 34); \
  26933. })
  26934. #endif
  26935. #ifdef __LITTLE_ENDIAN__
  26936. #define vst3q_s16(__p0, __p1) __extension__ ({ \
  26937. int16x8x3_t __s1 = __p1; \
  26938. __builtin_neon_vst3q_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], 33); \
  26939. })
  26940. #else
  26941. #define vst3q_s16(__p0, __p1) __extension__ ({ \
  26942. int16x8x3_t __s1 = __p1; \
  26943. int16x8x3_t __rev1; \
  26944. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  26945. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  26946. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  26947. __builtin_neon_vst3q_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], 33); \
  26948. })
  26949. #endif
  26950. #ifdef __LITTLE_ENDIAN__
  26951. #define vst3_u8(__p0, __p1) __extension__ ({ \
  26952. uint8x8x3_t __s1 = __p1; \
  26953. __builtin_neon_vst3_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], 16); \
  26954. })
  26955. #else
  26956. #define vst3_u8(__p0, __p1) __extension__ ({ \
  26957. uint8x8x3_t __s1 = __p1; \
  26958. uint8x8x3_t __rev1; \
  26959. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  26960. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  26961. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  26962. __builtin_neon_vst3_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], 16); \
  26963. })
  26964. #endif
  26965. #ifdef __LITTLE_ENDIAN__
  26966. #define vst3_u32(__p0, __p1) __extension__ ({ \
  26967. uint32x2x3_t __s1 = __p1; \
  26968. __builtin_neon_vst3_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], 18); \
  26969. })
  26970. #else
  26971. #define vst3_u32(__p0, __p1) __extension__ ({ \
  26972. uint32x2x3_t __s1 = __p1; \
  26973. uint32x2x3_t __rev1; \
  26974. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  26975. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  26976. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  26977. __builtin_neon_vst3_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], 18); \
  26978. })
  26979. #endif
  26980. #ifdef __LITTLE_ENDIAN__
  26981. #define vst3_u64(__p0, __p1) __extension__ ({ \
  26982. uint64x1x3_t __s1 = __p1; \
  26983. __builtin_neon_vst3_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], 19); \
  26984. })
  26985. #else
  26986. #define vst3_u64(__p0, __p1) __extension__ ({ \
  26987. uint64x1x3_t __s1 = __p1; \
  26988. __builtin_neon_vst3_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], 19); \
  26989. })
  26990. #endif
  26991. #ifdef __LITTLE_ENDIAN__
  26992. #define vst3_u16(__p0, __p1) __extension__ ({ \
  26993. uint16x4x3_t __s1 = __p1; \
  26994. __builtin_neon_vst3_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], 17); \
  26995. })
  26996. #else
  26997. #define vst3_u16(__p0, __p1) __extension__ ({ \
  26998. uint16x4x3_t __s1 = __p1; \
  26999. uint16x4x3_t __rev1; \
  27000. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  27001. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  27002. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  27003. __builtin_neon_vst3_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], 17); \
  27004. })
  27005. #endif
  27006. #ifdef __LITTLE_ENDIAN__
  27007. #define vst3_s8(__p0, __p1) __extension__ ({ \
  27008. int8x8x3_t __s1 = __p1; \
  27009. __builtin_neon_vst3_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], 0); \
  27010. })
  27011. #else
  27012. #define vst3_s8(__p0, __p1) __extension__ ({ \
  27013. int8x8x3_t __s1 = __p1; \
  27014. int8x8x3_t __rev1; \
  27015. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  27016. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  27017. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  27018. __builtin_neon_vst3_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], 0); \
  27019. })
  27020. #endif
  27021. #ifdef __LITTLE_ENDIAN__
  27022. #define vst3_f32(__p0, __p1) __extension__ ({ \
  27023. float32x2x3_t __s1 = __p1; \
  27024. __builtin_neon_vst3_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], 9); \
  27025. })
  27026. #else
  27027. #define vst3_f32(__p0, __p1) __extension__ ({ \
  27028. float32x2x3_t __s1 = __p1; \
  27029. float32x2x3_t __rev1; \
  27030. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  27031. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  27032. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  27033. __builtin_neon_vst3_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], 9); \
  27034. })
  27035. #endif
  27036. #ifdef __LITTLE_ENDIAN__
  27037. #define vst3_s32(__p0, __p1) __extension__ ({ \
  27038. int32x2x3_t __s1 = __p1; \
  27039. __builtin_neon_vst3_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], 2); \
  27040. })
  27041. #else
  27042. #define vst3_s32(__p0, __p1) __extension__ ({ \
  27043. int32x2x3_t __s1 = __p1; \
  27044. int32x2x3_t __rev1; \
  27045. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  27046. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  27047. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  27048. __builtin_neon_vst3_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], 2); \
  27049. })
  27050. #endif
  27051. #ifdef __LITTLE_ENDIAN__
  27052. #define vst3_s64(__p0, __p1) __extension__ ({ \
  27053. int64x1x3_t __s1 = __p1; \
  27054. __builtin_neon_vst3_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], 3); \
  27055. })
  27056. #else
  27057. #define vst3_s64(__p0, __p1) __extension__ ({ \
  27058. int64x1x3_t __s1 = __p1; \
  27059. __builtin_neon_vst3_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], 3); \
  27060. })
  27061. #endif
  27062. #ifdef __LITTLE_ENDIAN__
  27063. #define vst3_s16(__p0, __p1) __extension__ ({ \
  27064. int16x4x3_t __s1 = __p1; \
  27065. __builtin_neon_vst3_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], 1); \
  27066. })
  27067. #else
  27068. #define vst3_s16(__p0, __p1) __extension__ ({ \
  27069. int16x4x3_t __s1 = __p1; \
  27070. int16x4x3_t __rev1; \
  27071. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  27072. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  27073. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  27074. __builtin_neon_vst3_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], 1); \
  27075. })
  27076. #endif
  27077. #ifdef __LITTLE_ENDIAN__
  27078. #define vst3_lane_p8(__p0, __p1, __p2) __extension__ ({ \
  27079. poly8x8x3_t __s1 = __p1; \
  27080. __builtin_neon_vst3_lane_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], __p2, 4); \
  27081. })
  27082. #else
  27083. #define vst3_lane_p8(__p0, __p1, __p2) __extension__ ({ \
  27084. poly8x8x3_t __s1 = __p1; \
  27085. poly8x8x3_t __rev1; \
  27086. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  27087. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  27088. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  27089. __builtin_neon_vst3_lane_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], __p2, 4); \
  27090. })
  27091. #endif
  27092. #ifdef __LITTLE_ENDIAN__
  27093. #define vst3_lane_p16(__p0, __p1, __p2) __extension__ ({ \
  27094. poly16x4x3_t __s1 = __p1; \
  27095. __builtin_neon_vst3_lane_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], __p2, 5); \
  27096. })
  27097. #else
  27098. #define vst3_lane_p16(__p0, __p1, __p2) __extension__ ({ \
  27099. poly16x4x3_t __s1 = __p1; \
  27100. poly16x4x3_t __rev1; \
  27101. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  27102. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  27103. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  27104. __builtin_neon_vst3_lane_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], __p2, 5); \
  27105. })
  27106. #endif
  27107. #ifdef __LITTLE_ENDIAN__
  27108. #define vst3q_lane_p16(__p0, __p1, __p2) __extension__ ({ \
  27109. poly16x8x3_t __s1 = __p1; \
  27110. __builtin_neon_vst3q_lane_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], __p2, 37); \
  27111. })
  27112. #else
  27113. #define vst3q_lane_p16(__p0, __p1, __p2) __extension__ ({ \
  27114. poly16x8x3_t __s1 = __p1; \
  27115. poly16x8x3_t __rev1; \
  27116. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  27117. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  27118. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  27119. __builtin_neon_vst3q_lane_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], __p2, 37); \
  27120. })
  27121. #endif
  27122. #ifdef __LITTLE_ENDIAN__
  27123. #define vst3q_lane_u32(__p0, __p1, __p2) __extension__ ({ \
  27124. uint32x4x3_t __s1 = __p1; \
  27125. __builtin_neon_vst3q_lane_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], __p2, 50); \
  27126. })
  27127. #else
  27128. #define vst3q_lane_u32(__p0, __p1, __p2) __extension__ ({ \
  27129. uint32x4x3_t __s1 = __p1; \
  27130. uint32x4x3_t __rev1; \
  27131. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  27132. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  27133. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  27134. __builtin_neon_vst3q_lane_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], __p2, 50); \
  27135. })
  27136. #endif
  27137. #ifdef __LITTLE_ENDIAN__
  27138. #define vst3q_lane_u16(__p0, __p1, __p2) __extension__ ({ \
  27139. uint16x8x3_t __s1 = __p1; \
  27140. __builtin_neon_vst3q_lane_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], __p2, 49); \
  27141. })
  27142. #else
  27143. #define vst3q_lane_u16(__p0, __p1, __p2) __extension__ ({ \
  27144. uint16x8x3_t __s1 = __p1; \
  27145. uint16x8x3_t __rev1; \
  27146. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  27147. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  27148. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  27149. __builtin_neon_vst3q_lane_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], __p2, 49); \
  27150. })
  27151. #endif
  27152. #ifdef __LITTLE_ENDIAN__
  27153. #define vst3q_lane_f32(__p0, __p1, __p2) __extension__ ({ \
  27154. float32x4x3_t __s1 = __p1; \
  27155. __builtin_neon_vst3q_lane_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __p2, 41); \
  27156. })
  27157. #else
  27158. #define vst3q_lane_f32(__p0, __p1, __p2) __extension__ ({ \
  27159. float32x4x3_t __s1 = __p1; \
  27160. float32x4x3_t __rev1; \
  27161. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  27162. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  27163. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  27164. __builtin_neon_vst3q_lane_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __p2, 41); \
  27165. })
  27166. #endif
  27167. #ifdef __LITTLE_ENDIAN__
  27168. #define vst3q_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  27169. int32x4x3_t __s1 = __p1; \
  27170. __builtin_neon_vst3q_lane_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __p2, 34); \
  27171. })
  27172. #else
  27173. #define vst3q_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  27174. int32x4x3_t __s1 = __p1; \
  27175. int32x4x3_t __rev1; \
  27176. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  27177. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  27178. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  27179. __builtin_neon_vst3q_lane_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __p2, 34); \
  27180. })
  27181. #endif
  27182. #ifdef __LITTLE_ENDIAN__
  27183. #define vst3q_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  27184. int16x8x3_t __s1 = __p1; \
  27185. __builtin_neon_vst3q_lane_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __p2, 33); \
  27186. })
  27187. #else
  27188. #define vst3q_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  27189. int16x8x3_t __s1 = __p1; \
  27190. int16x8x3_t __rev1; \
  27191. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  27192. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  27193. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  27194. __builtin_neon_vst3q_lane_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __p2, 33); \
  27195. })
  27196. #endif
  27197. #ifdef __LITTLE_ENDIAN__
  27198. #define vst3_lane_u8(__p0, __p1, __p2) __extension__ ({ \
  27199. uint8x8x3_t __s1 = __p1; \
  27200. __builtin_neon_vst3_lane_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], __p2, 16); \
  27201. })
  27202. #else
  27203. #define vst3_lane_u8(__p0, __p1, __p2) __extension__ ({ \
  27204. uint8x8x3_t __s1 = __p1; \
  27205. uint8x8x3_t __rev1; \
  27206. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  27207. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  27208. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  27209. __builtin_neon_vst3_lane_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], __p2, 16); \
  27210. })
  27211. #endif
  27212. #ifdef __LITTLE_ENDIAN__
  27213. #define vst3_lane_u32(__p0, __p1, __p2) __extension__ ({ \
  27214. uint32x2x3_t __s1 = __p1; \
  27215. __builtin_neon_vst3_lane_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], __p2, 18); \
  27216. })
  27217. #else
  27218. #define vst3_lane_u32(__p0, __p1, __p2) __extension__ ({ \
  27219. uint32x2x3_t __s1 = __p1; \
  27220. uint32x2x3_t __rev1; \
  27221. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  27222. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  27223. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  27224. __builtin_neon_vst3_lane_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], __p2, 18); \
  27225. })
  27226. #endif
  27227. #ifdef __LITTLE_ENDIAN__
  27228. #define vst3_lane_u16(__p0, __p1, __p2) __extension__ ({ \
  27229. uint16x4x3_t __s1 = __p1; \
  27230. __builtin_neon_vst3_lane_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], __p2, 17); \
  27231. })
  27232. #else
  27233. #define vst3_lane_u16(__p0, __p1, __p2) __extension__ ({ \
  27234. uint16x4x3_t __s1 = __p1; \
  27235. uint16x4x3_t __rev1; \
  27236. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  27237. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  27238. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  27239. __builtin_neon_vst3_lane_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], __p2, 17); \
  27240. })
  27241. #endif
  27242. #ifdef __LITTLE_ENDIAN__
  27243. #define vst3_lane_s8(__p0, __p1, __p2) __extension__ ({ \
  27244. int8x8x3_t __s1 = __p1; \
  27245. __builtin_neon_vst3_lane_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], __p2, 0); \
  27246. })
  27247. #else
  27248. #define vst3_lane_s8(__p0, __p1, __p2) __extension__ ({ \
  27249. int8x8x3_t __s1 = __p1; \
  27250. int8x8x3_t __rev1; \
  27251. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  27252. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  27253. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  27254. __builtin_neon_vst3_lane_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], __p2, 0); \
  27255. })
  27256. #endif
  27257. #ifdef __LITTLE_ENDIAN__
  27258. #define vst3_lane_f32(__p0, __p1, __p2) __extension__ ({ \
  27259. float32x2x3_t __s1 = __p1; \
  27260. __builtin_neon_vst3_lane_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __p2, 9); \
  27261. })
  27262. #else
  27263. #define vst3_lane_f32(__p0, __p1, __p2) __extension__ ({ \
  27264. float32x2x3_t __s1 = __p1; \
  27265. float32x2x3_t __rev1; \
  27266. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  27267. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  27268. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  27269. __builtin_neon_vst3_lane_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __p2, 9); \
  27270. })
  27271. #endif
  27272. #ifdef __LITTLE_ENDIAN__
  27273. #define vst3_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  27274. int32x2x3_t __s1 = __p1; \
  27275. __builtin_neon_vst3_lane_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __p2, 2); \
  27276. })
  27277. #else
  27278. #define vst3_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  27279. int32x2x3_t __s1 = __p1; \
  27280. int32x2x3_t __rev1; \
  27281. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  27282. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  27283. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  27284. __builtin_neon_vst3_lane_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __p2, 2); \
  27285. })
  27286. #endif
  27287. #ifdef __LITTLE_ENDIAN__
  27288. #define vst3_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  27289. int16x4x3_t __s1 = __p1; \
  27290. __builtin_neon_vst3_lane_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __p2, 1); \
  27291. })
  27292. #else
  27293. #define vst3_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  27294. int16x4x3_t __s1 = __p1; \
  27295. int16x4x3_t __rev1; \
  27296. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  27297. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  27298. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  27299. __builtin_neon_vst3_lane_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __p2, 1); \
  27300. })
  27301. #endif
  27302. #ifdef __LITTLE_ENDIAN__
  27303. #define vst4_p8(__p0, __p1) __extension__ ({ \
  27304. poly8x8x4_t __s1 = __p1; \
  27305. __builtin_neon_vst4_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], (int8x8_t)__s1.val[3], 4); \
  27306. })
  27307. #else
  27308. #define vst4_p8(__p0, __p1) __extension__ ({ \
  27309. poly8x8x4_t __s1 = __p1; \
  27310. poly8x8x4_t __rev1; \
  27311. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  27312. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  27313. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  27314. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  27315. __builtin_neon_vst4_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], (int8x8_t)__rev1.val[3], 4); \
  27316. })
  27317. #endif
  27318. #ifdef __LITTLE_ENDIAN__
  27319. #define vst4_p16(__p0, __p1) __extension__ ({ \
  27320. poly16x4x4_t __s1 = __p1; \
  27321. __builtin_neon_vst4_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], (int8x8_t)__s1.val[3], 5); \
  27322. })
  27323. #else
  27324. #define vst4_p16(__p0, __p1) __extension__ ({ \
  27325. poly16x4x4_t __s1 = __p1; \
  27326. poly16x4x4_t __rev1; \
  27327. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  27328. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  27329. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  27330. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 3, 2, 1, 0); \
  27331. __builtin_neon_vst4_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], (int8x8_t)__rev1.val[3], 5); \
  27332. })
  27333. #endif
  27334. #ifdef __LITTLE_ENDIAN__
  27335. #define vst4q_p8(__p0, __p1) __extension__ ({ \
  27336. poly8x16x4_t __s1 = __p1; \
  27337. __builtin_neon_vst4q_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], (int8x16_t)__s1.val[3], 36); \
  27338. })
  27339. #else
  27340. #define vst4q_p8(__p0, __p1) __extension__ ({ \
  27341. poly8x16x4_t __s1 = __p1; \
  27342. poly8x16x4_t __rev1; \
  27343. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  27344. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  27345. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  27346. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  27347. __builtin_neon_vst4q_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], (int8x16_t)__rev1.val[3], 36); \
  27348. })
  27349. #endif
  27350. #ifdef __LITTLE_ENDIAN__
  27351. #define vst4q_p16(__p0, __p1) __extension__ ({ \
  27352. poly16x8x4_t __s1 = __p1; \
  27353. __builtin_neon_vst4q_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], (int8x16_t)__s1.val[3], 37); \
  27354. })
  27355. #else
  27356. #define vst4q_p16(__p0, __p1) __extension__ ({ \
  27357. poly16x8x4_t __s1 = __p1; \
  27358. poly16x8x4_t __rev1; \
  27359. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  27360. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  27361. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  27362. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  27363. __builtin_neon_vst4q_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], (int8x16_t)__rev1.val[3], 37); \
  27364. })
  27365. #endif
  27366. #ifdef __LITTLE_ENDIAN__
  27367. #define vst4q_u8(__p0, __p1) __extension__ ({ \
  27368. uint8x16x4_t __s1 = __p1; \
  27369. __builtin_neon_vst4q_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], (int8x16_t)__s1.val[3], 48); \
  27370. })
  27371. #else
  27372. #define vst4q_u8(__p0, __p1) __extension__ ({ \
  27373. uint8x16x4_t __s1 = __p1; \
  27374. uint8x16x4_t __rev1; \
  27375. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  27376. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  27377. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  27378. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  27379. __builtin_neon_vst4q_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], (int8x16_t)__rev1.val[3], 48); \
  27380. })
  27381. #endif
  27382. #ifdef __LITTLE_ENDIAN__
  27383. #define vst4q_u32(__p0, __p1) __extension__ ({ \
  27384. uint32x4x4_t __s1 = __p1; \
  27385. __builtin_neon_vst4q_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], (int8x16_t)__s1.val[3], 50); \
  27386. })
  27387. #else
  27388. #define vst4q_u32(__p0, __p1) __extension__ ({ \
  27389. uint32x4x4_t __s1 = __p1; \
  27390. uint32x4x4_t __rev1; \
  27391. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  27392. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  27393. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  27394. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 3, 2, 1, 0); \
  27395. __builtin_neon_vst4q_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], (int8x16_t)__rev1.val[3], 50); \
  27396. })
  27397. #endif
  27398. #ifdef __LITTLE_ENDIAN__
  27399. #define vst4q_u16(__p0, __p1) __extension__ ({ \
  27400. uint16x8x4_t __s1 = __p1; \
  27401. __builtin_neon_vst4q_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], (int8x16_t)__s1.val[3], 49); \
  27402. })
  27403. #else
  27404. #define vst4q_u16(__p0, __p1) __extension__ ({ \
  27405. uint16x8x4_t __s1 = __p1; \
  27406. uint16x8x4_t __rev1; \
  27407. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  27408. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  27409. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  27410. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  27411. __builtin_neon_vst4q_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], (int8x16_t)__rev1.val[3], 49); \
  27412. })
  27413. #endif
  27414. #ifdef __LITTLE_ENDIAN__
  27415. #define vst4q_s8(__p0, __p1) __extension__ ({ \
  27416. int8x16x4_t __s1 = __p1; \
  27417. __builtin_neon_vst4q_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], (int8x16_t)__s1.val[3], 32); \
  27418. })
  27419. #else
  27420. #define vst4q_s8(__p0, __p1) __extension__ ({ \
  27421. int8x16x4_t __s1 = __p1; \
  27422. int8x16x4_t __rev1; \
  27423. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  27424. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  27425. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  27426. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  27427. __builtin_neon_vst4q_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], (int8x16_t)__rev1.val[3], 32); \
  27428. })
  27429. #endif
  27430. #ifdef __LITTLE_ENDIAN__
  27431. #define vst4q_f32(__p0, __p1) __extension__ ({ \
  27432. float32x4x4_t __s1 = __p1; \
  27433. __builtin_neon_vst4q_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], 41); \
  27434. })
  27435. #else
  27436. #define vst4q_f32(__p0, __p1) __extension__ ({ \
  27437. float32x4x4_t __s1 = __p1; \
  27438. float32x4x4_t __rev1; \
  27439. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  27440. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  27441. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  27442. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 3, 2, 1, 0); \
  27443. __builtin_neon_vst4q_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __rev1.val[3], 41); \
  27444. })
  27445. #endif
  27446. #ifdef __LITTLE_ENDIAN__
  27447. #define vst4q_s32(__p0, __p1) __extension__ ({ \
  27448. int32x4x4_t __s1 = __p1; \
  27449. __builtin_neon_vst4q_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], 34); \
  27450. })
  27451. #else
  27452. #define vst4q_s32(__p0, __p1) __extension__ ({ \
  27453. int32x4x4_t __s1 = __p1; \
  27454. int32x4x4_t __rev1; \
  27455. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  27456. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  27457. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  27458. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 3, 2, 1, 0); \
  27459. __builtin_neon_vst4q_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __rev1.val[3], 34); \
  27460. })
  27461. #endif
  27462. #ifdef __LITTLE_ENDIAN__
  27463. #define vst4q_s16(__p0, __p1) __extension__ ({ \
  27464. int16x8x4_t __s1 = __p1; \
  27465. __builtin_neon_vst4q_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], 33); \
  27466. })
  27467. #else
  27468. #define vst4q_s16(__p0, __p1) __extension__ ({ \
  27469. int16x8x4_t __s1 = __p1; \
  27470. int16x8x4_t __rev1; \
  27471. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  27472. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  27473. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  27474. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  27475. __builtin_neon_vst4q_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __rev1.val[3], 33); \
  27476. })
  27477. #endif
  27478. #ifdef __LITTLE_ENDIAN__
  27479. #define vst4_u8(__p0, __p1) __extension__ ({ \
  27480. uint8x8x4_t __s1 = __p1; \
  27481. __builtin_neon_vst4_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], (int8x8_t)__s1.val[3], 16); \
  27482. })
  27483. #else
  27484. #define vst4_u8(__p0, __p1) __extension__ ({ \
  27485. uint8x8x4_t __s1 = __p1; \
  27486. uint8x8x4_t __rev1; \
  27487. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  27488. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  27489. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  27490. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  27491. __builtin_neon_vst4_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], (int8x8_t)__rev1.val[3], 16); \
  27492. })
  27493. #endif
  27494. #ifdef __LITTLE_ENDIAN__
  27495. #define vst4_u32(__p0, __p1) __extension__ ({ \
  27496. uint32x2x4_t __s1 = __p1; \
  27497. __builtin_neon_vst4_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], (int8x8_t)__s1.val[3], 18); \
  27498. })
  27499. #else
  27500. #define vst4_u32(__p0, __p1) __extension__ ({ \
  27501. uint32x2x4_t __s1 = __p1; \
  27502. uint32x2x4_t __rev1; \
  27503. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  27504. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  27505. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  27506. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 1, 0); \
  27507. __builtin_neon_vst4_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], (int8x8_t)__rev1.val[3], 18); \
  27508. })
  27509. #endif
  27510. #ifdef __LITTLE_ENDIAN__
  27511. #define vst4_u64(__p0, __p1) __extension__ ({ \
  27512. uint64x1x4_t __s1 = __p1; \
  27513. __builtin_neon_vst4_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], (int8x8_t)__s1.val[3], 19); \
  27514. })
  27515. #else
  27516. #define vst4_u64(__p0, __p1) __extension__ ({ \
  27517. uint64x1x4_t __s1 = __p1; \
  27518. __builtin_neon_vst4_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], (int8x8_t)__s1.val[3], 19); \
  27519. })
  27520. #endif
  27521. #ifdef __LITTLE_ENDIAN__
  27522. #define vst4_u16(__p0, __p1) __extension__ ({ \
  27523. uint16x4x4_t __s1 = __p1; \
  27524. __builtin_neon_vst4_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], (int8x8_t)__s1.val[3], 17); \
  27525. })
  27526. #else
  27527. #define vst4_u16(__p0, __p1) __extension__ ({ \
  27528. uint16x4x4_t __s1 = __p1; \
  27529. uint16x4x4_t __rev1; \
  27530. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  27531. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  27532. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  27533. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 3, 2, 1, 0); \
  27534. __builtin_neon_vst4_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], (int8x8_t)__rev1.val[3], 17); \
  27535. })
  27536. #endif
  27537. #ifdef __LITTLE_ENDIAN__
  27538. #define vst4_s8(__p0, __p1) __extension__ ({ \
  27539. int8x8x4_t __s1 = __p1; \
  27540. __builtin_neon_vst4_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], (int8x8_t)__s1.val[3], 0); \
  27541. })
  27542. #else
  27543. #define vst4_s8(__p0, __p1) __extension__ ({ \
  27544. int8x8x4_t __s1 = __p1; \
  27545. int8x8x4_t __rev1; \
  27546. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  27547. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  27548. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  27549. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  27550. __builtin_neon_vst4_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], (int8x8_t)__rev1.val[3], 0); \
  27551. })
  27552. #endif
  27553. #ifdef __LITTLE_ENDIAN__
  27554. #define vst4_f32(__p0, __p1) __extension__ ({ \
  27555. float32x2x4_t __s1 = __p1; \
  27556. __builtin_neon_vst4_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], 9); \
  27557. })
  27558. #else
  27559. #define vst4_f32(__p0, __p1) __extension__ ({ \
  27560. float32x2x4_t __s1 = __p1; \
  27561. float32x2x4_t __rev1; \
  27562. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  27563. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  27564. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  27565. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 1, 0); \
  27566. __builtin_neon_vst4_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __rev1.val[3], 9); \
  27567. })
  27568. #endif
  27569. #ifdef __LITTLE_ENDIAN__
  27570. #define vst4_s32(__p0, __p1) __extension__ ({ \
  27571. int32x2x4_t __s1 = __p1; \
  27572. __builtin_neon_vst4_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], 2); \
  27573. })
  27574. #else
  27575. #define vst4_s32(__p0, __p1) __extension__ ({ \
  27576. int32x2x4_t __s1 = __p1; \
  27577. int32x2x4_t __rev1; \
  27578. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  27579. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  27580. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  27581. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 1, 0); \
  27582. __builtin_neon_vst4_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __rev1.val[3], 2); \
  27583. })
  27584. #endif
  27585. #ifdef __LITTLE_ENDIAN__
  27586. #define vst4_s64(__p0, __p1) __extension__ ({ \
  27587. int64x1x4_t __s1 = __p1; \
  27588. __builtin_neon_vst4_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], 3); \
  27589. })
  27590. #else
  27591. #define vst4_s64(__p0, __p1) __extension__ ({ \
  27592. int64x1x4_t __s1 = __p1; \
  27593. __builtin_neon_vst4_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], 3); \
  27594. })
  27595. #endif
  27596. #ifdef __LITTLE_ENDIAN__
  27597. #define vst4_s16(__p0, __p1) __extension__ ({ \
  27598. int16x4x4_t __s1 = __p1; \
  27599. __builtin_neon_vst4_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], 1); \
  27600. })
  27601. #else
  27602. #define vst4_s16(__p0, __p1) __extension__ ({ \
  27603. int16x4x4_t __s1 = __p1; \
  27604. int16x4x4_t __rev1; \
  27605. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  27606. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  27607. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  27608. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 3, 2, 1, 0); \
  27609. __builtin_neon_vst4_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __rev1.val[3], 1); \
  27610. })
  27611. #endif
  27612. #ifdef __LITTLE_ENDIAN__
  27613. #define vst4_lane_p8(__p0, __p1, __p2) __extension__ ({ \
  27614. poly8x8x4_t __s1 = __p1; \
  27615. __builtin_neon_vst4_lane_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], (int8x8_t)__s1.val[3], __p2, 4); \
  27616. })
  27617. #else
  27618. #define vst4_lane_p8(__p0, __p1, __p2) __extension__ ({ \
  27619. poly8x8x4_t __s1 = __p1; \
  27620. poly8x8x4_t __rev1; \
  27621. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  27622. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  27623. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  27624. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  27625. __builtin_neon_vst4_lane_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], (int8x8_t)__rev1.val[3], __p2, 4); \
  27626. })
  27627. #endif
  27628. #ifdef __LITTLE_ENDIAN__
  27629. #define vst4_lane_p16(__p0, __p1, __p2) __extension__ ({ \
  27630. poly16x4x4_t __s1 = __p1; \
  27631. __builtin_neon_vst4_lane_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], (int8x8_t)__s1.val[3], __p2, 5); \
  27632. })
  27633. #else
  27634. #define vst4_lane_p16(__p0, __p1, __p2) __extension__ ({ \
  27635. poly16x4x4_t __s1 = __p1; \
  27636. poly16x4x4_t __rev1; \
  27637. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  27638. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  27639. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  27640. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 3, 2, 1, 0); \
  27641. __builtin_neon_vst4_lane_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], (int8x8_t)__rev1.val[3], __p2, 5); \
  27642. })
  27643. #endif
  27644. #ifdef __LITTLE_ENDIAN__
  27645. #define vst4q_lane_p16(__p0, __p1, __p2) __extension__ ({ \
  27646. poly16x8x4_t __s1 = __p1; \
  27647. __builtin_neon_vst4q_lane_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], (int8x16_t)__s1.val[3], __p2, 37); \
  27648. })
  27649. #else
  27650. #define vst4q_lane_p16(__p0, __p1, __p2) __extension__ ({ \
  27651. poly16x8x4_t __s1 = __p1; \
  27652. poly16x8x4_t __rev1; \
  27653. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  27654. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  27655. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  27656. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  27657. __builtin_neon_vst4q_lane_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], (int8x16_t)__rev1.val[3], __p2, 37); \
  27658. })
  27659. #endif
  27660. #ifdef __LITTLE_ENDIAN__
  27661. #define vst4q_lane_u32(__p0, __p1, __p2) __extension__ ({ \
  27662. uint32x4x4_t __s1 = __p1; \
  27663. __builtin_neon_vst4q_lane_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], (int8x16_t)__s1.val[3], __p2, 50); \
  27664. })
  27665. #else
  27666. #define vst4q_lane_u32(__p0, __p1, __p2) __extension__ ({ \
  27667. uint32x4x4_t __s1 = __p1; \
  27668. uint32x4x4_t __rev1; \
  27669. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  27670. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  27671. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  27672. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 3, 2, 1, 0); \
  27673. __builtin_neon_vst4q_lane_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], (int8x16_t)__rev1.val[3], __p2, 50); \
  27674. })
  27675. #endif
  27676. #ifdef __LITTLE_ENDIAN__
  27677. #define vst4q_lane_u16(__p0, __p1, __p2) __extension__ ({ \
  27678. uint16x8x4_t __s1 = __p1; \
  27679. __builtin_neon_vst4q_lane_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], (int8x16_t)__s1.val[3], __p2, 49); \
  27680. })
  27681. #else
  27682. #define vst4q_lane_u16(__p0, __p1, __p2) __extension__ ({ \
  27683. uint16x8x4_t __s1 = __p1; \
  27684. uint16x8x4_t __rev1; \
  27685. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  27686. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  27687. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  27688. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  27689. __builtin_neon_vst4q_lane_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], (int8x16_t)__rev1.val[3], __p2, 49); \
  27690. })
  27691. #endif
  27692. #ifdef __LITTLE_ENDIAN__
  27693. #define vst4q_lane_f32(__p0, __p1, __p2) __extension__ ({ \
  27694. float32x4x4_t __s1 = __p1; \
  27695. __builtin_neon_vst4q_lane_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], __p2, 41); \
  27696. })
  27697. #else
  27698. #define vst4q_lane_f32(__p0, __p1, __p2) __extension__ ({ \
  27699. float32x4x4_t __s1 = __p1; \
  27700. float32x4x4_t __rev1; \
  27701. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  27702. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  27703. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  27704. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 3, 2, 1, 0); \
  27705. __builtin_neon_vst4q_lane_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __rev1.val[3], __p2, 41); \
  27706. })
  27707. #endif
  27708. #ifdef __LITTLE_ENDIAN__
  27709. #define vst4q_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  27710. int32x4x4_t __s1 = __p1; \
  27711. __builtin_neon_vst4q_lane_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], __p2, 34); \
  27712. })
  27713. #else
  27714. #define vst4q_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  27715. int32x4x4_t __s1 = __p1; \
  27716. int32x4x4_t __rev1; \
  27717. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  27718. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  27719. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  27720. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 3, 2, 1, 0); \
  27721. __builtin_neon_vst4q_lane_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __rev1.val[3], __p2, 34); \
  27722. })
  27723. #endif
  27724. #ifdef __LITTLE_ENDIAN__
  27725. #define vst4q_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  27726. int16x8x4_t __s1 = __p1; \
  27727. __builtin_neon_vst4q_lane_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], __p2, 33); \
  27728. })
  27729. #else
  27730. #define vst4q_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  27731. int16x8x4_t __s1 = __p1; \
  27732. int16x8x4_t __rev1; \
  27733. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  27734. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  27735. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  27736. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  27737. __builtin_neon_vst4q_lane_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __rev1.val[3], __p2, 33); \
  27738. })
  27739. #endif
  27740. #ifdef __LITTLE_ENDIAN__
  27741. #define vst4_lane_u8(__p0, __p1, __p2) __extension__ ({ \
  27742. uint8x8x4_t __s1 = __p1; \
  27743. __builtin_neon_vst4_lane_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], (int8x8_t)__s1.val[3], __p2, 16); \
  27744. })
  27745. #else
  27746. #define vst4_lane_u8(__p0, __p1, __p2) __extension__ ({ \
  27747. uint8x8x4_t __s1 = __p1; \
  27748. uint8x8x4_t __rev1; \
  27749. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  27750. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  27751. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  27752. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  27753. __builtin_neon_vst4_lane_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], (int8x8_t)__rev1.val[3], __p2, 16); \
  27754. })
  27755. #endif
  27756. #ifdef __LITTLE_ENDIAN__
  27757. #define vst4_lane_u32(__p0, __p1, __p2) __extension__ ({ \
  27758. uint32x2x4_t __s1 = __p1; \
  27759. __builtin_neon_vst4_lane_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], (int8x8_t)__s1.val[3], __p2, 18); \
  27760. })
  27761. #else
  27762. #define vst4_lane_u32(__p0, __p1, __p2) __extension__ ({ \
  27763. uint32x2x4_t __s1 = __p1; \
  27764. uint32x2x4_t __rev1; \
  27765. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  27766. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  27767. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  27768. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 1, 0); \
  27769. __builtin_neon_vst4_lane_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], (int8x8_t)__rev1.val[3], __p2, 18); \
  27770. })
  27771. #endif
  27772. #ifdef __LITTLE_ENDIAN__
  27773. #define vst4_lane_u16(__p0, __p1, __p2) __extension__ ({ \
  27774. uint16x4x4_t __s1 = __p1; \
  27775. __builtin_neon_vst4_lane_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], (int8x8_t)__s1.val[3], __p2, 17); \
  27776. })
  27777. #else
  27778. #define vst4_lane_u16(__p0, __p1, __p2) __extension__ ({ \
  27779. uint16x4x4_t __s1 = __p1; \
  27780. uint16x4x4_t __rev1; \
  27781. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  27782. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  27783. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  27784. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 3, 2, 1, 0); \
  27785. __builtin_neon_vst4_lane_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], (int8x8_t)__rev1.val[3], __p2, 17); \
  27786. })
  27787. #endif
  27788. #ifdef __LITTLE_ENDIAN__
  27789. #define vst4_lane_s8(__p0, __p1, __p2) __extension__ ({ \
  27790. int8x8x4_t __s1 = __p1; \
  27791. __builtin_neon_vst4_lane_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], (int8x8_t)__s1.val[3], __p2, 0); \
  27792. })
  27793. #else
  27794. #define vst4_lane_s8(__p0, __p1, __p2) __extension__ ({ \
  27795. int8x8x4_t __s1 = __p1; \
  27796. int8x8x4_t __rev1; \
  27797. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  27798. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  27799. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  27800. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  27801. __builtin_neon_vst4_lane_v(__p0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], (int8x8_t)__rev1.val[3], __p2, 0); \
  27802. })
  27803. #endif
  27804. #ifdef __LITTLE_ENDIAN__
  27805. #define vst4_lane_f32(__p0, __p1, __p2) __extension__ ({ \
  27806. float32x2x4_t __s1 = __p1; \
  27807. __builtin_neon_vst4_lane_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], __p2, 9); \
  27808. })
  27809. #else
  27810. #define vst4_lane_f32(__p0, __p1, __p2) __extension__ ({ \
  27811. float32x2x4_t __s1 = __p1; \
  27812. float32x2x4_t __rev1; \
  27813. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  27814. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  27815. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  27816. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 1, 0); \
  27817. __builtin_neon_vst4_lane_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __rev1.val[3], __p2, 9); \
  27818. })
  27819. #endif
  27820. #ifdef __LITTLE_ENDIAN__
  27821. #define vst4_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  27822. int32x2x4_t __s1 = __p1; \
  27823. __builtin_neon_vst4_lane_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], __p2, 2); \
  27824. })
  27825. #else
  27826. #define vst4_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  27827. int32x2x4_t __s1 = __p1; \
  27828. int32x2x4_t __rev1; \
  27829. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  27830. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  27831. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  27832. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 1, 0); \
  27833. __builtin_neon_vst4_lane_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __rev1.val[3], __p2, 2); \
  27834. })
  27835. #endif
  27836. #ifdef __LITTLE_ENDIAN__
  27837. #define vst4_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  27838. int16x4x4_t __s1 = __p1; \
  27839. __builtin_neon_vst4_lane_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], __p2, 1); \
  27840. })
  27841. #else
  27842. #define vst4_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  27843. int16x4x4_t __s1 = __p1; \
  27844. int16x4x4_t __rev1; \
  27845. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  27846. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  27847. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  27848. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 3, 2, 1, 0); \
  27849. __builtin_neon_vst4_lane_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __rev1.val[3], __p2, 1); \
  27850. })
  27851. #endif
  27852. #ifdef __LITTLE_ENDIAN__
  27853. __ai uint8x16_t vsubq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  27854. uint8x16_t __ret;
  27855. __ret = __p0 - __p1;
  27856. return __ret;
  27857. }
  27858. #else
  27859. __ai uint8x16_t vsubq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  27860. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  27861. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  27862. uint8x16_t __ret;
  27863. __ret = __rev0 - __rev1;
  27864. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  27865. return __ret;
  27866. }
  27867. #endif
  27868. #ifdef __LITTLE_ENDIAN__
  27869. __ai uint32x4_t vsubq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  27870. uint32x4_t __ret;
  27871. __ret = __p0 - __p1;
  27872. return __ret;
  27873. }
  27874. #else
  27875. __ai uint32x4_t vsubq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  27876. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  27877. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  27878. uint32x4_t __ret;
  27879. __ret = __rev0 - __rev1;
  27880. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  27881. return __ret;
  27882. }
  27883. #endif
  27884. #ifdef __LITTLE_ENDIAN__
  27885. __ai uint64x2_t vsubq_u64(uint64x2_t __p0, uint64x2_t __p1) {
  27886. uint64x2_t __ret;
  27887. __ret = __p0 - __p1;
  27888. return __ret;
  27889. }
  27890. #else
  27891. __ai uint64x2_t vsubq_u64(uint64x2_t __p0, uint64x2_t __p1) {
  27892. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  27893. uint64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  27894. uint64x2_t __ret;
  27895. __ret = __rev0 - __rev1;
  27896. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  27897. return __ret;
  27898. }
  27899. #endif
  27900. #ifdef __LITTLE_ENDIAN__
  27901. __ai uint16x8_t vsubq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  27902. uint16x8_t __ret;
  27903. __ret = __p0 - __p1;
  27904. return __ret;
  27905. }
  27906. #else
  27907. __ai uint16x8_t vsubq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  27908. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  27909. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  27910. uint16x8_t __ret;
  27911. __ret = __rev0 - __rev1;
  27912. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  27913. return __ret;
  27914. }
  27915. #endif
  27916. #ifdef __LITTLE_ENDIAN__
  27917. __ai int8x16_t vsubq_s8(int8x16_t __p0, int8x16_t __p1) {
  27918. int8x16_t __ret;
  27919. __ret = __p0 - __p1;
  27920. return __ret;
  27921. }
  27922. #else
  27923. __ai int8x16_t vsubq_s8(int8x16_t __p0, int8x16_t __p1) {
  27924. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  27925. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  27926. int8x16_t __ret;
  27927. __ret = __rev0 - __rev1;
  27928. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  27929. return __ret;
  27930. }
  27931. #endif
  27932. #ifdef __LITTLE_ENDIAN__
  27933. __ai float32x4_t vsubq_f32(float32x4_t __p0, float32x4_t __p1) {
  27934. float32x4_t __ret;
  27935. __ret = __p0 - __p1;
  27936. return __ret;
  27937. }
  27938. #else
  27939. __ai float32x4_t vsubq_f32(float32x4_t __p0, float32x4_t __p1) {
  27940. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  27941. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  27942. float32x4_t __ret;
  27943. __ret = __rev0 - __rev1;
  27944. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  27945. return __ret;
  27946. }
  27947. #endif
  27948. #ifdef __LITTLE_ENDIAN__
  27949. __ai int32x4_t vsubq_s32(int32x4_t __p0, int32x4_t __p1) {
  27950. int32x4_t __ret;
  27951. __ret = __p0 - __p1;
  27952. return __ret;
  27953. }
  27954. #else
  27955. __ai int32x4_t vsubq_s32(int32x4_t __p0, int32x4_t __p1) {
  27956. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  27957. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  27958. int32x4_t __ret;
  27959. __ret = __rev0 - __rev1;
  27960. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  27961. return __ret;
  27962. }
  27963. #endif
  27964. #ifdef __LITTLE_ENDIAN__
  27965. __ai int64x2_t vsubq_s64(int64x2_t __p0, int64x2_t __p1) {
  27966. int64x2_t __ret;
  27967. __ret = __p0 - __p1;
  27968. return __ret;
  27969. }
  27970. #else
  27971. __ai int64x2_t vsubq_s64(int64x2_t __p0, int64x2_t __p1) {
  27972. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  27973. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  27974. int64x2_t __ret;
  27975. __ret = __rev0 - __rev1;
  27976. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  27977. return __ret;
  27978. }
  27979. #endif
  27980. #ifdef __LITTLE_ENDIAN__
  27981. __ai int16x8_t vsubq_s16(int16x8_t __p0, int16x8_t __p1) {
  27982. int16x8_t __ret;
  27983. __ret = __p0 - __p1;
  27984. return __ret;
  27985. }
  27986. #else
  27987. __ai int16x8_t vsubq_s16(int16x8_t __p0, int16x8_t __p1) {
  27988. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  27989. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  27990. int16x8_t __ret;
  27991. __ret = __rev0 - __rev1;
  27992. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  27993. return __ret;
  27994. }
  27995. #endif
  27996. #ifdef __LITTLE_ENDIAN__
  27997. __ai uint8x8_t vsub_u8(uint8x8_t __p0, uint8x8_t __p1) {
  27998. uint8x8_t __ret;
  27999. __ret = __p0 - __p1;
  28000. return __ret;
  28001. }
  28002. #else
  28003. __ai uint8x8_t vsub_u8(uint8x8_t __p0, uint8x8_t __p1) {
  28004. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  28005. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  28006. uint8x8_t __ret;
  28007. __ret = __rev0 - __rev1;
  28008. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  28009. return __ret;
  28010. }
  28011. #endif
  28012. #ifdef __LITTLE_ENDIAN__
  28013. __ai uint32x2_t vsub_u32(uint32x2_t __p0, uint32x2_t __p1) {
  28014. uint32x2_t __ret;
  28015. __ret = __p0 - __p1;
  28016. return __ret;
  28017. }
  28018. #else
  28019. __ai uint32x2_t vsub_u32(uint32x2_t __p0, uint32x2_t __p1) {
  28020. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  28021. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  28022. uint32x2_t __ret;
  28023. __ret = __rev0 - __rev1;
  28024. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  28025. return __ret;
  28026. }
  28027. #endif
  28028. #ifdef __LITTLE_ENDIAN__
  28029. __ai uint64x1_t vsub_u64(uint64x1_t __p0, uint64x1_t __p1) {
  28030. uint64x1_t __ret;
  28031. __ret = __p0 - __p1;
  28032. return __ret;
  28033. }
  28034. #else
  28035. __ai uint64x1_t vsub_u64(uint64x1_t __p0, uint64x1_t __p1) {
  28036. uint64x1_t __ret;
  28037. __ret = __p0 - __p1;
  28038. return __ret;
  28039. }
  28040. #endif
  28041. #ifdef __LITTLE_ENDIAN__
  28042. __ai uint16x4_t vsub_u16(uint16x4_t __p0, uint16x4_t __p1) {
  28043. uint16x4_t __ret;
  28044. __ret = __p0 - __p1;
  28045. return __ret;
  28046. }
  28047. #else
  28048. __ai uint16x4_t vsub_u16(uint16x4_t __p0, uint16x4_t __p1) {
  28049. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  28050. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  28051. uint16x4_t __ret;
  28052. __ret = __rev0 - __rev1;
  28053. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  28054. return __ret;
  28055. }
  28056. #endif
  28057. #ifdef __LITTLE_ENDIAN__
  28058. __ai int8x8_t vsub_s8(int8x8_t __p0, int8x8_t __p1) {
  28059. int8x8_t __ret;
  28060. __ret = __p0 - __p1;
  28061. return __ret;
  28062. }
  28063. #else
  28064. __ai int8x8_t vsub_s8(int8x8_t __p0, int8x8_t __p1) {
  28065. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  28066. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  28067. int8x8_t __ret;
  28068. __ret = __rev0 - __rev1;
  28069. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  28070. return __ret;
  28071. }
  28072. #endif
  28073. #ifdef __LITTLE_ENDIAN__
  28074. __ai float32x2_t vsub_f32(float32x2_t __p0, float32x2_t __p1) {
  28075. float32x2_t __ret;
  28076. __ret = __p0 - __p1;
  28077. return __ret;
  28078. }
  28079. #else
  28080. __ai float32x2_t vsub_f32(float32x2_t __p0, float32x2_t __p1) {
  28081. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  28082. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  28083. float32x2_t __ret;
  28084. __ret = __rev0 - __rev1;
  28085. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  28086. return __ret;
  28087. }
  28088. #endif
  28089. #ifdef __LITTLE_ENDIAN__
  28090. __ai int32x2_t vsub_s32(int32x2_t __p0, int32x2_t __p1) {
  28091. int32x2_t __ret;
  28092. __ret = __p0 - __p1;
  28093. return __ret;
  28094. }
  28095. #else
  28096. __ai int32x2_t vsub_s32(int32x2_t __p0, int32x2_t __p1) {
  28097. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  28098. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  28099. int32x2_t __ret;
  28100. __ret = __rev0 - __rev1;
  28101. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  28102. return __ret;
  28103. }
  28104. #endif
  28105. #ifdef __LITTLE_ENDIAN__
  28106. __ai int64x1_t vsub_s64(int64x1_t __p0, int64x1_t __p1) {
  28107. int64x1_t __ret;
  28108. __ret = __p0 - __p1;
  28109. return __ret;
  28110. }
  28111. #else
  28112. __ai int64x1_t vsub_s64(int64x1_t __p0, int64x1_t __p1) {
  28113. int64x1_t __ret;
  28114. __ret = __p0 - __p1;
  28115. return __ret;
  28116. }
  28117. #endif
  28118. #ifdef __LITTLE_ENDIAN__
  28119. __ai int16x4_t vsub_s16(int16x4_t __p0, int16x4_t __p1) {
  28120. int16x4_t __ret;
  28121. __ret = __p0 - __p1;
  28122. return __ret;
  28123. }
  28124. #else
  28125. __ai int16x4_t vsub_s16(int16x4_t __p0, int16x4_t __p1) {
  28126. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  28127. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  28128. int16x4_t __ret;
  28129. __ret = __rev0 - __rev1;
  28130. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  28131. return __ret;
  28132. }
  28133. #endif
  28134. #ifdef __LITTLE_ENDIAN__
  28135. __ai uint16x4_t vsubhn_u32(uint32x4_t __p0, uint32x4_t __p1) {
  28136. uint16x4_t __ret;
  28137. __ret = (uint16x4_t) __builtin_neon_vsubhn_v((int8x16_t)__p0, (int8x16_t)__p1, 17);
  28138. return __ret;
  28139. }
  28140. #else
  28141. __ai uint16x4_t vsubhn_u32(uint32x4_t __p0, uint32x4_t __p1) {
  28142. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  28143. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  28144. uint16x4_t __ret;
  28145. __ret = (uint16x4_t) __builtin_neon_vsubhn_v((int8x16_t)__rev0, (int8x16_t)__rev1, 17);
  28146. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  28147. return __ret;
  28148. }
  28149. __ai uint16x4_t __noswap_vsubhn_u32(uint32x4_t __p0, uint32x4_t __p1) {
  28150. uint16x4_t __ret;
  28151. __ret = (uint16x4_t) __builtin_neon_vsubhn_v((int8x16_t)__p0, (int8x16_t)__p1, 17);
  28152. return __ret;
  28153. }
  28154. #endif
  28155. #ifdef __LITTLE_ENDIAN__
  28156. __ai uint32x2_t vsubhn_u64(uint64x2_t __p0, uint64x2_t __p1) {
  28157. uint32x2_t __ret;
  28158. __ret = (uint32x2_t) __builtin_neon_vsubhn_v((int8x16_t)__p0, (int8x16_t)__p1, 18);
  28159. return __ret;
  28160. }
  28161. #else
  28162. __ai uint32x2_t vsubhn_u64(uint64x2_t __p0, uint64x2_t __p1) {
  28163. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  28164. uint64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  28165. uint32x2_t __ret;
  28166. __ret = (uint32x2_t) __builtin_neon_vsubhn_v((int8x16_t)__rev0, (int8x16_t)__rev1, 18);
  28167. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  28168. return __ret;
  28169. }
  28170. __ai uint32x2_t __noswap_vsubhn_u64(uint64x2_t __p0, uint64x2_t __p1) {
  28171. uint32x2_t __ret;
  28172. __ret = (uint32x2_t) __builtin_neon_vsubhn_v((int8x16_t)__p0, (int8x16_t)__p1, 18);
  28173. return __ret;
  28174. }
  28175. #endif
  28176. #ifdef __LITTLE_ENDIAN__
  28177. __ai uint8x8_t vsubhn_u16(uint16x8_t __p0, uint16x8_t __p1) {
  28178. uint8x8_t __ret;
  28179. __ret = (uint8x8_t) __builtin_neon_vsubhn_v((int8x16_t)__p0, (int8x16_t)__p1, 16);
  28180. return __ret;
  28181. }
  28182. #else
  28183. __ai uint8x8_t vsubhn_u16(uint16x8_t __p0, uint16x8_t __p1) {
  28184. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  28185. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  28186. uint8x8_t __ret;
  28187. __ret = (uint8x8_t) __builtin_neon_vsubhn_v((int8x16_t)__rev0, (int8x16_t)__rev1, 16);
  28188. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  28189. return __ret;
  28190. }
  28191. __ai uint8x8_t __noswap_vsubhn_u16(uint16x8_t __p0, uint16x8_t __p1) {
  28192. uint8x8_t __ret;
  28193. __ret = (uint8x8_t) __builtin_neon_vsubhn_v((int8x16_t)__p0, (int8x16_t)__p1, 16);
  28194. return __ret;
  28195. }
  28196. #endif
  28197. #ifdef __LITTLE_ENDIAN__
  28198. __ai int16x4_t vsubhn_s32(int32x4_t __p0, int32x4_t __p1) {
  28199. int16x4_t __ret;
  28200. __ret = (int16x4_t) __builtin_neon_vsubhn_v((int8x16_t)__p0, (int8x16_t)__p1, 1);
  28201. return __ret;
  28202. }
  28203. #else
  28204. __ai int16x4_t vsubhn_s32(int32x4_t __p0, int32x4_t __p1) {
  28205. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  28206. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  28207. int16x4_t __ret;
  28208. __ret = (int16x4_t) __builtin_neon_vsubhn_v((int8x16_t)__rev0, (int8x16_t)__rev1, 1);
  28209. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  28210. return __ret;
  28211. }
  28212. __ai int16x4_t __noswap_vsubhn_s32(int32x4_t __p0, int32x4_t __p1) {
  28213. int16x4_t __ret;
  28214. __ret = (int16x4_t) __builtin_neon_vsubhn_v((int8x16_t)__p0, (int8x16_t)__p1, 1);
  28215. return __ret;
  28216. }
  28217. #endif
  28218. #ifdef __LITTLE_ENDIAN__
  28219. __ai int32x2_t vsubhn_s64(int64x2_t __p0, int64x2_t __p1) {
  28220. int32x2_t __ret;
  28221. __ret = (int32x2_t) __builtin_neon_vsubhn_v((int8x16_t)__p0, (int8x16_t)__p1, 2);
  28222. return __ret;
  28223. }
  28224. #else
  28225. __ai int32x2_t vsubhn_s64(int64x2_t __p0, int64x2_t __p1) {
  28226. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  28227. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  28228. int32x2_t __ret;
  28229. __ret = (int32x2_t) __builtin_neon_vsubhn_v((int8x16_t)__rev0, (int8x16_t)__rev1, 2);
  28230. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  28231. return __ret;
  28232. }
  28233. __ai int32x2_t __noswap_vsubhn_s64(int64x2_t __p0, int64x2_t __p1) {
  28234. int32x2_t __ret;
  28235. __ret = (int32x2_t) __builtin_neon_vsubhn_v((int8x16_t)__p0, (int8x16_t)__p1, 2);
  28236. return __ret;
  28237. }
  28238. #endif
  28239. #ifdef __LITTLE_ENDIAN__
  28240. __ai int8x8_t vsubhn_s16(int16x8_t __p0, int16x8_t __p1) {
  28241. int8x8_t __ret;
  28242. __ret = (int8x8_t) __builtin_neon_vsubhn_v((int8x16_t)__p0, (int8x16_t)__p1, 0);
  28243. return __ret;
  28244. }
  28245. #else
  28246. __ai int8x8_t vsubhn_s16(int16x8_t __p0, int16x8_t __p1) {
  28247. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  28248. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  28249. int8x8_t __ret;
  28250. __ret = (int8x8_t) __builtin_neon_vsubhn_v((int8x16_t)__rev0, (int8x16_t)__rev1, 0);
  28251. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  28252. return __ret;
  28253. }
  28254. __ai int8x8_t __noswap_vsubhn_s16(int16x8_t __p0, int16x8_t __p1) {
  28255. int8x8_t __ret;
  28256. __ret = (int8x8_t) __builtin_neon_vsubhn_v((int8x16_t)__p0, (int8x16_t)__p1, 0);
  28257. return __ret;
  28258. }
  28259. #endif
  28260. #ifdef __LITTLE_ENDIAN__
  28261. __ai uint16x8_t vsubl_u8(uint8x8_t __p0, uint8x8_t __p1) {
  28262. uint16x8_t __ret;
  28263. __ret = vmovl_u8(__p0) - vmovl_u8(__p1);
  28264. return __ret;
  28265. }
  28266. #else
  28267. __ai uint16x8_t vsubl_u8(uint8x8_t __p0, uint8x8_t __p1) {
  28268. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  28269. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  28270. uint16x8_t __ret;
  28271. __ret = __noswap_vmovl_u8(__rev0) - __noswap_vmovl_u8(__rev1);
  28272. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  28273. return __ret;
  28274. }
  28275. #endif
  28276. #ifdef __LITTLE_ENDIAN__
  28277. __ai uint64x2_t vsubl_u32(uint32x2_t __p0, uint32x2_t __p1) {
  28278. uint64x2_t __ret;
  28279. __ret = vmovl_u32(__p0) - vmovl_u32(__p1);
  28280. return __ret;
  28281. }
  28282. #else
  28283. __ai uint64x2_t vsubl_u32(uint32x2_t __p0, uint32x2_t __p1) {
  28284. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  28285. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  28286. uint64x2_t __ret;
  28287. __ret = __noswap_vmovl_u32(__rev0) - __noswap_vmovl_u32(__rev1);
  28288. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  28289. return __ret;
  28290. }
  28291. #endif
  28292. #ifdef __LITTLE_ENDIAN__
  28293. __ai uint32x4_t vsubl_u16(uint16x4_t __p0, uint16x4_t __p1) {
  28294. uint32x4_t __ret;
  28295. __ret = vmovl_u16(__p0) - vmovl_u16(__p1);
  28296. return __ret;
  28297. }
  28298. #else
  28299. __ai uint32x4_t vsubl_u16(uint16x4_t __p0, uint16x4_t __p1) {
  28300. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  28301. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  28302. uint32x4_t __ret;
  28303. __ret = __noswap_vmovl_u16(__rev0) - __noswap_vmovl_u16(__rev1);
  28304. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  28305. return __ret;
  28306. }
  28307. #endif
  28308. #ifdef __LITTLE_ENDIAN__
  28309. __ai int16x8_t vsubl_s8(int8x8_t __p0, int8x8_t __p1) {
  28310. int16x8_t __ret;
  28311. __ret = vmovl_s8(__p0) - vmovl_s8(__p1);
  28312. return __ret;
  28313. }
  28314. #else
  28315. __ai int16x8_t vsubl_s8(int8x8_t __p0, int8x8_t __p1) {
  28316. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  28317. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  28318. int16x8_t __ret;
  28319. __ret = __noswap_vmovl_s8(__rev0) - __noswap_vmovl_s8(__rev1);
  28320. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  28321. return __ret;
  28322. }
  28323. #endif
  28324. #ifdef __LITTLE_ENDIAN__
  28325. __ai int64x2_t vsubl_s32(int32x2_t __p0, int32x2_t __p1) {
  28326. int64x2_t __ret;
  28327. __ret = vmovl_s32(__p0) - vmovl_s32(__p1);
  28328. return __ret;
  28329. }
  28330. #else
  28331. __ai int64x2_t vsubl_s32(int32x2_t __p0, int32x2_t __p1) {
  28332. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  28333. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  28334. int64x2_t __ret;
  28335. __ret = __noswap_vmovl_s32(__rev0) - __noswap_vmovl_s32(__rev1);
  28336. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  28337. return __ret;
  28338. }
  28339. #endif
  28340. #ifdef __LITTLE_ENDIAN__
  28341. __ai int32x4_t vsubl_s16(int16x4_t __p0, int16x4_t __p1) {
  28342. int32x4_t __ret;
  28343. __ret = vmovl_s16(__p0) - vmovl_s16(__p1);
  28344. return __ret;
  28345. }
  28346. #else
  28347. __ai int32x4_t vsubl_s16(int16x4_t __p0, int16x4_t __p1) {
  28348. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  28349. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  28350. int32x4_t __ret;
  28351. __ret = __noswap_vmovl_s16(__rev0) - __noswap_vmovl_s16(__rev1);
  28352. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  28353. return __ret;
  28354. }
  28355. #endif
  28356. #ifdef __LITTLE_ENDIAN__
  28357. __ai uint16x8_t vsubw_u8(uint16x8_t __p0, uint8x8_t __p1) {
  28358. uint16x8_t __ret;
  28359. __ret = __p0 - vmovl_u8(__p1);
  28360. return __ret;
  28361. }
  28362. #else
  28363. __ai uint16x8_t vsubw_u8(uint16x8_t __p0, uint8x8_t __p1) {
  28364. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  28365. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  28366. uint16x8_t __ret;
  28367. __ret = __rev0 - __noswap_vmovl_u8(__rev1);
  28368. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  28369. return __ret;
  28370. }
  28371. #endif
  28372. #ifdef __LITTLE_ENDIAN__
  28373. __ai uint64x2_t vsubw_u32(uint64x2_t __p0, uint32x2_t __p1) {
  28374. uint64x2_t __ret;
  28375. __ret = __p0 - vmovl_u32(__p1);
  28376. return __ret;
  28377. }
  28378. #else
  28379. __ai uint64x2_t vsubw_u32(uint64x2_t __p0, uint32x2_t __p1) {
  28380. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  28381. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  28382. uint64x2_t __ret;
  28383. __ret = __rev0 - __noswap_vmovl_u32(__rev1);
  28384. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  28385. return __ret;
  28386. }
  28387. #endif
  28388. #ifdef __LITTLE_ENDIAN__
  28389. __ai uint32x4_t vsubw_u16(uint32x4_t __p0, uint16x4_t __p1) {
  28390. uint32x4_t __ret;
  28391. __ret = __p0 - vmovl_u16(__p1);
  28392. return __ret;
  28393. }
  28394. #else
  28395. __ai uint32x4_t vsubw_u16(uint32x4_t __p0, uint16x4_t __p1) {
  28396. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  28397. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  28398. uint32x4_t __ret;
  28399. __ret = __rev0 - __noswap_vmovl_u16(__rev1);
  28400. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  28401. return __ret;
  28402. }
  28403. #endif
  28404. #ifdef __LITTLE_ENDIAN__
  28405. __ai int16x8_t vsubw_s8(int16x8_t __p0, int8x8_t __p1) {
  28406. int16x8_t __ret;
  28407. __ret = __p0 - vmovl_s8(__p1);
  28408. return __ret;
  28409. }
  28410. #else
  28411. __ai int16x8_t vsubw_s8(int16x8_t __p0, int8x8_t __p1) {
  28412. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  28413. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  28414. int16x8_t __ret;
  28415. __ret = __rev0 - __noswap_vmovl_s8(__rev1);
  28416. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  28417. return __ret;
  28418. }
  28419. #endif
  28420. #ifdef __LITTLE_ENDIAN__
  28421. __ai int64x2_t vsubw_s32(int64x2_t __p0, int32x2_t __p1) {
  28422. int64x2_t __ret;
  28423. __ret = __p0 - vmovl_s32(__p1);
  28424. return __ret;
  28425. }
  28426. #else
  28427. __ai int64x2_t vsubw_s32(int64x2_t __p0, int32x2_t __p1) {
  28428. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  28429. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  28430. int64x2_t __ret;
  28431. __ret = __rev0 - __noswap_vmovl_s32(__rev1);
  28432. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  28433. return __ret;
  28434. }
  28435. #endif
  28436. #ifdef __LITTLE_ENDIAN__
  28437. __ai int32x4_t vsubw_s16(int32x4_t __p0, int16x4_t __p1) {
  28438. int32x4_t __ret;
  28439. __ret = __p0 - vmovl_s16(__p1);
  28440. return __ret;
  28441. }
  28442. #else
  28443. __ai int32x4_t vsubw_s16(int32x4_t __p0, int16x4_t __p1) {
  28444. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  28445. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  28446. int32x4_t __ret;
  28447. __ret = __rev0 - __noswap_vmovl_s16(__rev1);
  28448. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  28449. return __ret;
  28450. }
  28451. #endif
  28452. #ifdef __LITTLE_ENDIAN__
  28453. __ai poly8x8_t vtbl1_p8(poly8x8_t __p0, uint8x8_t __p1) {
  28454. poly8x8_t __ret;
  28455. __ret = (poly8x8_t) __builtin_neon_vtbl1_v((int8x8_t)__p0, (int8x8_t)__p1, 4);
  28456. return __ret;
  28457. }
  28458. #else
  28459. __ai poly8x8_t vtbl1_p8(poly8x8_t __p0, uint8x8_t __p1) {
  28460. poly8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  28461. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  28462. poly8x8_t __ret;
  28463. __ret = (poly8x8_t) __builtin_neon_vtbl1_v((int8x8_t)__rev0, (int8x8_t)__rev1, 4);
  28464. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  28465. return __ret;
  28466. }
  28467. #endif
  28468. #ifdef __LITTLE_ENDIAN__
  28469. __ai uint8x8_t vtbl1_u8(uint8x8_t __p0, uint8x8_t __p1) {
  28470. uint8x8_t __ret;
  28471. __ret = (uint8x8_t) __builtin_neon_vtbl1_v((int8x8_t)__p0, (int8x8_t)__p1, 16);
  28472. return __ret;
  28473. }
  28474. #else
  28475. __ai uint8x8_t vtbl1_u8(uint8x8_t __p0, uint8x8_t __p1) {
  28476. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  28477. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  28478. uint8x8_t __ret;
  28479. __ret = (uint8x8_t) __builtin_neon_vtbl1_v((int8x8_t)__rev0, (int8x8_t)__rev1, 16);
  28480. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  28481. return __ret;
  28482. }
  28483. #endif
  28484. #ifdef __LITTLE_ENDIAN__
  28485. __ai int8x8_t vtbl1_s8(int8x8_t __p0, int8x8_t __p1) {
  28486. int8x8_t __ret;
  28487. __ret = (int8x8_t) __builtin_neon_vtbl1_v((int8x8_t)__p0, (int8x8_t)__p1, 0);
  28488. return __ret;
  28489. }
  28490. #else
  28491. __ai int8x8_t vtbl1_s8(int8x8_t __p0, int8x8_t __p1) {
  28492. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  28493. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  28494. int8x8_t __ret;
  28495. __ret = (int8x8_t) __builtin_neon_vtbl1_v((int8x8_t)__rev0, (int8x8_t)__rev1, 0);
  28496. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  28497. return __ret;
  28498. }
  28499. #endif
  28500. #ifdef __LITTLE_ENDIAN__
  28501. __ai poly8x8_t vtbl2_p8(poly8x8x2_t __p0, uint8x8_t __p1) {
  28502. poly8x8_t __ret;
  28503. __ret = (poly8x8_t) __builtin_neon_vtbl2_v((int8x8_t)__p0.val[0], (int8x8_t)__p0.val[1], (int8x8_t)__p1, 4);
  28504. return __ret;
  28505. }
  28506. #else
  28507. __ai poly8x8_t vtbl2_p8(poly8x8x2_t __p0, uint8x8_t __p1) {
  28508. poly8x8x2_t __rev0;
  28509. __rev0.val[0] = __builtin_shufflevector(__p0.val[0], __p0.val[0], 7, 6, 5, 4, 3, 2, 1, 0);
  28510. __rev0.val[1] = __builtin_shufflevector(__p0.val[1], __p0.val[1], 7, 6, 5, 4, 3, 2, 1, 0);
  28511. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  28512. poly8x8_t __ret;
  28513. __ret = (poly8x8_t) __builtin_neon_vtbl2_v((int8x8_t)__rev0.val[0], (int8x8_t)__rev0.val[1], (int8x8_t)__rev1, 4);
  28514. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  28515. return __ret;
  28516. }
  28517. #endif
  28518. #ifdef __LITTLE_ENDIAN__
  28519. __ai uint8x8_t vtbl2_u8(uint8x8x2_t __p0, uint8x8_t __p1) {
  28520. uint8x8_t __ret;
  28521. __ret = (uint8x8_t) __builtin_neon_vtbl2_v((int8x8_t)__p0.val[0], (int8x8_t)__p0.val[1], (int8x8_t)__p1, 16);
  28522. return __ret;
  28523. }
  28524. #else
  28525. __ai uint8x8_t vtbl2_u8(uint8x8x2_t __p0, uint8x8_t __p1) {
  28526. uint8x8x2_t __rev0;
  28527. __rev0.val[0] = __builtin_shufflevector(__p0.val[0], __p0.val[0], 7, 6, 5, 4, 3, 2, 1, 0);
  28528. __rev0.val[1] = __builtin_shufflevector(__p0.val[1], __p0.val[1], 7, 6, 5, 4, 3, 2, 1, 0);
  28529. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  28530. uint8x8_t __ret;
  28531. __ret = (uint8x8_t) __builtin_neon_vtbl2_v((int8x8_t)__rev0.val[0], (int8x8_t)__rev0.val[1], (int8x8_t)__rev1, 16);
  28532. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  28533. return __ret;
  28534. }
  28535. #endif
  28536. #ifdef __LITTLE_ENDIAN__
  28537. __ai int8x8_t vtbl2_s8(int8x8x2_t __p0, int8x8_t __p1) {
  28538. int8x8_t __ret;
  28539. __ret = (int8x8_t) __builtin_neon_vtbl2_v((int8x8_t)__p0.val[0], (int8x8_t)__p0.val[1], (int8x8_t)__p1, 0);
  28540. return __ret;
  28541. }
  28542. #else
  28543. __ai int8x8_t vtbl2_s8(int8x8x2_t __p0, int8x8_t __p1) {
  28544. int8x8x2_t __rev0;
  28545. __rev0.val[0] = __builtin_shufflevector(__p0.val[0], __p0.val[0], 7, 6, 5, 4, 3, 2, 1, 0);
  28546. __rev0.val[1] = __builtin_shufflevector(__p0.val[1], __p0.val[1], 7, 6, 5, 4, 3, 2, 1, 0);
  28547. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  28548. int8x8_t __ret;
  28549. __ret = (int8x8_t) __builtin_neon_vtbl2_v((int8x8_t)__rev0.val[0], (int8x8_t)__rev0.val[1], (int8x8_t)__rev1, 0);
  28550. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  28551. return __ret;
  28552. }
  28553. #endif
  28554. #ifdef __LITTLE_ENDIAN__
  28555. __ai poly8x8_t vtbl3_p8(poly8x8x3_t __p0, uint8x8_t __p1) {
  28556. poly8x8_t __ret;
  28557. __ret = (poly8x8_t) __builtin_neon_vtbl3_v((int8x8_t)__p0.val[0], (int8x8_t)__p0.val[1], (int8x8_t)__p0.val[2], (int8x8_t)__p1, 4);
  28558. return __ret;
  28559. }
  28560. #else
  28561. __ai poly8x8_t vtbl3_p8(poly8x8x3_t __p0, uint8x8_t __p1) {
  28562. poly8x8x3_t __rev0;
  28563. __rev0.val[0] = __builtin_shufflevector(__p0.val[0], __p0.val[0], 7, 6, 5, 4, 3, 2, 1, 0);
  28564. __rev0.val[1] = __builtin_shufflevector(__p0.val[1], __p0.val[1], 7, 6, 5, 4, 3, 2, 1, 0);
  28565. __rev0.val[2] = __builtin_shufflevector(__p0.val[2], __p0.val[2], 7, 6, 5, 4, 3, 2, 1, 0);
  28566. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  28567. poly8x8_t __ret;
  28568. __ret = (poly8x8_t) __builtin_neon_vtbl3_v((int8x8_t)__rev0.val[0], (int8x8_t)__rev0.val[1], (int8x8_t)__rev0.val[2], (int8x8_t)__rev1, 4);
  28569. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  28570. return __ret;
  28571. }
  28572. #endif
  28573. #ifdef __LITTLE_ENDIAN__
  28574. __ai uint8x8_t vtbl3_u8(uint8x8x3_t __p0, uint8x8_t __p1) {
  28575. uint8x8_t __ret;
  28576. __ret = (uint8x8_t) __builtin_neon_vtbl3_v((int8x8_t)__p0.val[0], (int8x8_t)__p0.val[1], (int8x8_t)__p0.val[2], (int8x8_t)__p1, 16);
  28577. return __ret;
  28578. }
  28579. #else
  28580. __ai uint8x8_t vtbl3_u8(uint8x8x3_t __p0, uint8x8_t __p1) {
  28581. uint8x8x3_t __rev0;
  28582. __rev0.val[0] = __builtin_shufflevector(__p0.val[0], __p0.val[0], 7, 6, 5, 4, 3, 2, 1, 0);
  28583. __rev0.val[1] = __builtin_shufflevector(__p0.val[1], __p0.val[1], 7, 6, 5, 4, 3, 2, 1, 0);
  28584. __rev0.val[2] = __builtin_shufflevector(__p0.val[2], __p0.val[2], 7, 6, 5, 4, 3, 2, 1, 0);
  28585. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  28586. uint8x8_t __ret;
  28587. __ret = (uint8x8_t) __builtin_neon_vtbl3_v((int8x8_t)__rev0.val[0], (int8x8_t)__rev0.val[1], (int8x8_t)__rev0.val[2], (int8x8_t)__rev1, 16);
  28588. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  28589. return __ret;
  28590. }
  28591. #endif
  28592. #ifdef __LITTLE_ENDIAN__
  28593. __ai int8x8_t vtbl3_s8(int8x8x3_t __p0, int8x8_t __p1) {
  28594. int8x8_t __ret;
  28595. __ret = (int8x8_t) __builtin_neon_vtbl3_v((int8x8_t)__p0.val[0], (int8x8_t)__p0.val[1], (int8x8_t)__p0.val[2], (int8x8_t)__p1, 0);
  28596. return __ret;
  28597. }
  28598. #else
  28599. __ai int8x8_t vtbl3_s8(int8x8x3_t __p0, int8x8_t __p1) {
  28600. int8x8x3_t __rev0;
  28601. __rev0.val[0] = __builtin_shufflevector(__p0.val[0], __p0.val[0], 7, 6, 5, 4, 3, 2, 1, 0);
  28602. __rev0.val[1] = __builtin_shufflevector(__p0.val[1], __p0.val[1], 7, 6, 5, 4, 3, 2, 1, 0);
  28603. __rev0.val[2] = __builtin_shufflevector(__p0.val[2], __p0.val[2], 7, 6, 5, 4, 3, 2, 1, 0);
  28604. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  28605. int8x8_t __ret;
  28606. __ret = (int8x8_t) __builtin_neon_vtbl3_v((int8x8_t)__rev0.val[0], (int8x8_t)__rev0.val[1], (int8x8_t)__rev0.val[2], (int8x8_t)__rev1, 0);
  28607. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  28608. return __ret;
  28609. }
  28610. #endif
  28611. #ifdef __LITTLE_ENDIAN__
  28612. __ai poly8x8_t vtbl4_p8(poly8x8x4_t __p0, uint8x8_t __p1) {
  28613. poly8x8_t __ret;
  28614. __ret = (poly8x8_t) __builtin_neon_vtbl4_v((int8x8_t)__p0.val[0], (int8x8_t)__p0.val[1], (int8x8_t)__p0.val[2], (int8x8_t)__p0.val[3], (int8x8_t)__p1, 4);
  28615. return __ret;
  28616. }
  28617. #else
  28618. __ai poly8x8_t vtbl4_p8(poly8x8x4_t __p0, uint8x8_t __p1) {
  28619. poly8x8x4_t __rev0;
  28620. __rev0.val[0] = __builtin_shufflevector(__p0.val[0], __p0.val[0], 7, 6, 5, 4, 3, 2, 1, 0);
  28621. __rev0.val[1] = __builtin_shufflevector(__p0.val[1], __p0.val[1], 7, 6, 5, 4, 3, 2, 1, 0);
  28622. __rev0.val[2] = __builtin_shufflevector(__p0.val[2], __p0.val[2], 7, 6, 5, 4, 3, 2, 1, 0);
  28623. __rev0.val[3] = __builtin_shufflevector(__p0.val[3], __p0.val[3], 7, 6, 5, 4, 3, 2, 1, 0);
  28624. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  28625. poly8x8_t __ret;
  28626. __ret = (poly8x8_t) __builtin_neon_vtbl4_v((int8x8_t)__rev0.val[0], (int8x8_t)__rev0.val[1], (int8x8_t)__rev0.val[2], (int8x8_t)__rev0.val[3], (int8x8_t)__rev1, 4);
  28627. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  28628. return __ret;
  28629. }
  28630. #endif
  28631. #ifdef __LITTLE_ENDIAN__
  28632. __ai uint8x8_t vtbl4_u8(uint8x8x4_t __p0, uint8x8_t __p1) {
  28633. uint8x8_t __ret;
  28634. __ret = (uint8x8_t) __builtin_neon_vtbl4_v((int8x8_t)__p0.val[0], (int8x8_t)__p0.val[1], (int8x8_t)__p0.val[2], (int8x8_t)__p0.val[3], (int8x8_t)__p1, 16);
  28635. return __ret;
  28636. }
  28637. #else
  28638. __ai uint8x8_t vtbl4_u8(uint8x8x4_t __p0, uint8x8_t __p1) {
  28639. uint8x8x4_t __rev0;
  28640. __rev0.val[0] = __builtin_shufflevector(__p0.val[0], __p0.val[0], 7, 6, 5, 4, 3, 2, 1, 0);
  28641. __rev0.val[1] = __builtin_shufflevector(__p0.val[1], __p0.val[1], 7, 6, 5, 4, 3, 2, 1, 0);
  28642. __rev0.val[2] = __builtin_shufflevector(__p0.val[2], __p0.val[2], 7, 6, 5, 4, 3, 2, 1, 0);
  28643. __rev0.val[3] = __builtin_shufflevector(__p0.val[3], __p0.val[3], 7, 6, 5, 4, 3, 2, 1, 0);
  28644. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  28645. uint8x8_t __ret;
  28646. __ret = (uint8x8_t) __builtin_neon_vtbl4_v((int8x8_t)__rev0.val[0], (int8x8_t)__rev0.val[1], (int8x8_t)__rev0.val[2], (int8x8_t)__rev0.val[3], (int8x8_t)__rev1, 16);
  28647. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  28648. return __ret;
  28649. }
  28650. #endif
  28651. #ifdef __LITTLE_ENDIAN__
  28652. __ai int8x8_t vtbl4_s8(int8x8x4_t __p0, int8x8_t __p1) {
  28653. int8x8_t __ret;
  28654. __ret = (int8x8_t) __builtin_neon_vtbl4_v((int8x8_t)__p0.val[0], (int8x8_t)__p0.val[1], (int8x8_t)__p0.val[2], (int8x8_t)__p0.val[3], (int8x8_t)__p1, 0);
  28655. return __ret;
  28656. }
  28657. #else
  28658. __ai int8x8_t vtbl4_s8(int8x8x4_t __p0, int8x8_t __p1) {
  28659. int8x8x4_t __rev0;
  28660. __rev0.val[0] = __builtin_shufflevector(__p0.val[0], __p0.val[0], 7, 6, 5, 4, 3, 2, 1, 0);
  28661. __rev0.val[1] = __builtin_shufflevector(__p0.val[1], __p0.val[1], 7, 6, 5, 4, 3, 2, 1, 0);
  28662. __rev0.val[2] = __builtin_shufflevector(__p0.val[2], __p0.val[2], 7, 6, 5, 4, 3, 2, 1, 0);
  28663. __rev0.val[3] = __builtin_shufflevector(__p0.val[3], __p0.val[3], 7, 6, 5, 4, 3, 2, 1, 0);
  28664. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  28665. int8x8_t __ret;
  28666. __ret = (int8x8_t) __builtin_neon_vtbl4_v((int8x8_t)__rev0.val[0], (int8x8_t)__rev0.val[1], (int8x8_t)__rev0.val[2], (int8x8_t)__rev0.val[3], (int8x8_t)__rev1, 0);
  28667. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  28668. return __ret;
  28669. }
  28670. #endif
  28671. #ifdef __LITTLE_ENDIAN__
  28672. __ai poly8x8_t vtbx1_p8(poly8x8_t __p0, poly8x8_t __p1, uint8x8_t __p2) {
  28673. poly8x8_t __ret;
  28674. __ret = (poly8x8_t) __builtin_neon_vtbx1_v((int8x8_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 4);
  28675. return __ret;
  28676. }
  28677. #else
  28678. __ai poly8x8_t vtbx1_p8(poly8x8_t __p0, poly8x8_t __p1, uint8x8_t __p2) {
  28679. poly8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  28680. poly8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  28681. uint8x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  28682. poly8x8_t __ret;
  28683. __ret = (poly8x8_t) __builtin_neon_vtbx1_v((int8x8_t)__rev0, (int8x8_t)__rev1, (int8x8_t)__rev2, 4);
  28684. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  28685. return __ret;
  28686. }
  28687. #endif
  28688. #ifdef __LITTLE_ENDIAN__
  28689. __ai uint8x8_t vtbx1_u8(uint8x8_t __p0, uint8x8_t __p1, uint8x8_t __p2) {
  28690. uint8x8_t __ret;
  28691. __ret = (uint8x8_t) __builtin_neon_vtbx1_v((int8x8_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 16);
  28692. return __ret;
  28693. }
  28694. #else
  28695. __ai uint8x8_t vtbx1_u8(uint8x8_t __p0, uint8x8_t __p1, uint8x8_t __p2) {
  28696. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  28697. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  28698. uint8x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  28699. uint8x8_t __ret;
  28700. __ret = (uint8x8_t) __builtin_neon_vtbx1_v((int8x8_t)__rev0, (int8x8_t)__rev1, (int8x8_t)__rev2, 16);
  28701. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  28702. return __ret;
  28703. }
  28704. #endif
  28705. #ifdef __LITTLE_ENDIAN__
  28706. __ai int8x8_t vtbx1_s8(int8x8_t __p0, int8x8_t __p1, int8x8_t __p2) {
  28707. int8x8_t __ret;
  28708. __ret = (int8x8_t) __builtin_neon_vtbx1_v((int8x8_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 0);
  28709. return __ret;
  28710. }
  28711. #else
  28712. __ai int8x8_t vtbx1_s8(int8x8_t __p0, int8x8_t __p1, int8x8_t __p2) {
  28713. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  28714. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  28715. int8x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  28716. int8x8_t __ret;
  28717. __ret = (int8x8_t) __builtin_neon_vtbx1_v((int8x8_t)__rev0, (int8x8_t)__rev1, (int8x8_t)__rev2, 0);
  28718. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  28719. return __ret;
  28720. }
  28721. #endif
  28722. #ifdef __LITTLE_ENDIAN__
  28723. __ai poly8x8_t vtbx2_p8(poly8x8_t __p0, poly8x8x2_t __p1, uint8x8_t __p2) {
  28724. poly8x8_t __ret;
  28725. __ret = (poly8x8_t) __builtin_neon_vtbx2_v((int8x8_t)__p0, (int8x8_t)__p1.val[0], (int8x8_t)__p1.val[1], (int8x8_t)__p2, 4);
  28726. return __ret;
  28727. }
  28728. #else
  28729. __ai poly8x8_t vtbx2_p8(poly8x8_t __p0, poly8x8x2_t __p1, uint8x8_t __p2) {
  28730. poly8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  28731. poly8x8x2_t __rev1;
  28732. __rev1.val[0] = __builtin_shufflevector(__p1.val[0], __p1.val[0], 7, 6, 5, 4, 3, 2, 1, 0);
  28733. __rev1.val[1] = __builtin_shufflevector(__p1.val[1], __p1.val[1], 7, 6, 5, 4, 3, 2, 1, 0);
  28734. uint8x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  28735. poly8x8_t __ret;
  28736. __ret = (poly8x8_t) __builtin_neon_vtbx2_v((int8x8_t)__rev0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev2, 4);
  28737. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  28738. return __ret;
  28739. }
  28740. #endif
  28741. #ifdef __LITTLE_ENDIAN__
  28742. __ai uint8x8_t vtbx2_u8(uint8x8_t __p0, uint8x8x2_t __p1, uint8x8_t __p2) {
  28743. uint8x8_t __ret;
  28744. __ret = (uint8x8_t) __builtin_neon_vtbx2_v((int8x8_t)__p0, (int8x8_t)__p1.val[0], (int8x8_t)__p1.val[1], (int8x8_t)__p2, 16);
  28745. return __ret;
  28746. }
  28747. #else
  28748. __ai uint8x8_t vtbx2_u8(uint8x8_t __p0, uint8x8x2_t __p1, uint8x8_t __p2) {
  28749. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  28750. uint8x8x2_t __rev1;
  28751. __rev1.val[0] = __builtin_shufflevector(__p1.val[0], __p1.val[0], 7, 6, 5, 4, 3, 2, 1, 0);
  28752. __rev1.val[1] = __builtin_shufflevector(__p1.val[1], __p1.val[1], 7, 6, 5, 4, 3, 2, 1, 0);
  28753. uint8x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  28754. uint8x8_t __ret;
  28755. __ret = (uint8x8_t) __builtin_neon_vtbx2_v((int8x8_t)__rev0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev2, 16);
  28756. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  28757. return __ret;
  28758. }
  28759. #endif
  28760. #ifdef __LITTLE_ENDIAN__
  28761. __ai int8x8_t vtbx2_s8(int8x8_t __p0, int8x8x2_t __p1, int8x8_t __p2) {
  28762. int8x8_t __ret;
  28763. __ret = (int8x8_t) __builtin_neon_vtbx2_v((int8x8_t)__p0, (int8x8_t)__p1.val[0], (int8x8_t)__p1.val[1], (int8x8_t)__p2, 0);
  28764. return __ret;
  28765. }
  28766. #else
  28767. __ai int8x8_t vtbx2_s8(int8x8_t __p0, int8x8x2_t __p1, int8x8_t __p2) {
  28768. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  28769. int8x8x2_t __rev1;
  28770. __rev1.val[0] = __builtin_shufflevector(__p1.val[0], __p1.val[0], 7, 6, 5, 4, 3, 2, 1, 0);
  28771. __rev1.val[1] = __builtin_shufflevector(__p1.val[1], __p1.val[1], 7, 6, 5, 4, 3, 2, 1, 0);
  28772. int8x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  28773. int8x8_t __ret;
  28774. __ret = (int8x8_t) __builtin_neon_vtbx2_v((int8x8_t)__rev0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev2, 0);
  28775. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  28776. return __ret;
  28777. }
  28778. #endif
  28779. #ifdef __LITTLE_ENDIAN__
  28780. __ai poly8x8_t vtbx3_p8(poly8x8_t __p0, poly8x8x3_t __p1, uint8x8_t __p2) {
  28781. poly8x8_t __ret;
  28782. __ret = (poly8x8_t) __builtin_neon_vtbx3_v((int8x8_t)__p0, (int8x8_t)__p1.val[0], (int8x8_t)__p1.val[1], (int8x8_t)__p1.val[2], (int8x8_t)__p2, 4);
  28783. return __ret;
  28784. }
  28785. #else
  28786. __ai poly8x8_t vtbx3_p8(poly8x8_t __p0, poly8x8x3_t __p1, uint8x8_t __p2) {
  28787. poly8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  28788. poly8x8x3_t __rev1;
  28789. __rev1.val[0] = __builtin_shufflevector(__p1.val[0], __p1.val[0], 7, 6, 5, 4, 3, 2, 1, 0);
  28790. __rev1.val[1] = __builtin_shufflevector(__p1.val[1], __p1.val[1], 7, 6, 5, 4, 3, 2, 1, 0);
  28791. __rev1.val[2] = __builtin_shufflevector(__p1.val[2], __p1.val[2], 7, 6, 5, 4, 3, 2, 1, 0);
  28792. uint8x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  28793. poly8x8_t __ret;
  28794. __ret = (poly8x8_t) __builtin_neon_vtbx3_v((int8x8_t)__rev0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], (int8x8_t)__rev2, 4);
  28795. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  28796. return __ret;
  28797. }
  28798. #endif
  28799. #ifdef __LITTLE_ENDIAN__
  28800. __ai uint8x8_t vtbx3_u8(uint8x8_t __p0, uint8x8x3_t __p1, uint8x8_t __p2) {
  28801. uint8x8_t __ret;
  28802. __ret = (uint8x8_t) __builtin_neon_vtbx3_v((int8x8_t)__p0, (int8x8_t)__p1.val[0], (int8x8_t)__p1.val[1], (int8x8_t)__p1.val[2], (int8x8_t)__p2, 16);
  28803. return __ret;
  28804. }
  28805. #else
  28806. __ai uint8x8_t vtbx3_u8(uint8x8_t __p0, uint8x8x3_t __p1, uint8x8_t __p2) {
  28807. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  28808. uint8x8x3_t __rev1;
  28809. __rev1.val[0] = __builtin_shufflevector(__p1.val[0], __p1.val[0], 7, 6, 5, 4, 3, 2, 1, 0);
  28810. __rev1.val[1] = __builtin_shufflevector(__p1.val[1], __p1.val[1], 7, 6, 5, 4, 3, 2, 1, 0);
  28811. __rev1.val[2] = __builtin_shufflevector(__p1.val[2], __p1.val[2], 7, 6, 5, 4, 3, 2, 1, 0);
  28812. uint8x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  28813. uint8x8_t __ret;
  28814. __ret = (uint8x8_t) __builtin_neon_vtbx3_v((int8x8_t)__rev0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], (int8x8_t)__rev2, 16);
  28815. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  28816. return __ret;
  28817. }
  28818. #endif
  28819. #ifdef __LITTLE_ENDIAN__
  28820. __ai int8x8_t vtbx3_s8(int8x8_t __p0, int8x8x3_t __p1, int8x8_t __p2) {
  28821. int8x8_t __ret;
  28822. __ret = (int8x8_t) __builtin_neon_vtbx3_v((int8x8_t)__p0, (int8x8_t)__p1.val[0], (int8x8_t)__p1.val[1], (int8x8_t)__p1.val[2], (int8x8_t)__p2, 0);
  28823. return __ret;
  28824. }
  28825. #else
  28826. __ai int8x8_t vtbx3_s8(int8x8_t __p0, int8x8x3_t __p1, int8x8_t __p2) {
  28827. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  28828. int8x8x3_t __rev1;
  28829. __rev1.val[0] = __builtin_shufflevector(__p1.val[0], __p1.val[0], 7, 6, 5, 4, 3, 2, 1, 0);
  28830. __rev1.val[1] = __builtin_shufflevector(__p1.val[1], __p1.val[1], 7, 6, 5, 4, 3, 2, 1, 0);
  28831. __rev1.val[2] = __builtin_shufflevector(__p1.val[2], __p1.val[2], 7, 6, 5, 4, 3, 2, 1, 0);
  28832. int8x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  28833. int8x8_t __ret;
  28834. __ret = (int8x8_t) __builtin_neon_vtbx3_v((int8x8_t)__rev0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], (int8x8_t)__rev2, 0);
  28835. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  28836. return __ret;
  28837. }
  28838. #endif
  28839. #ifdef __LITTLE_ENDIAN__
  28840. __ai poly8x8_t vtbx4_p8(poly8x8_t __p0, poly8x8x4_t __p1, uint8x8_t __p2) {
  28841. poly8x8_t __ret;
  28842. __ret = (poly8x8_t) __builtin_neon_vtbx4_v((int8x8_t)__p0, (int8x8_t)__p1.val[0], (int8x8_t)__p1.val[1], (int8x8_t)__p1.val[2], (int8x8_t)__p1.val[3], (int8x8_t)__p2, 4);
  28843. return __ret;
  28844. }
  28845. #else
  28846. __ai poly8x8_t vtbx4_p8(poly8x8_t __p0, poly8x8x4_t __p1, uint8x8_t __p2) {
  28847. poly8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  28848. poly8x8x4_t __rev1;
  28849. __rev1.val[0] = __builtin_shufflevector(__p1.val[0], __p1.val[0], 7, 6, 5, 4, 3, 2, 1, 0);
  28850. __rev1.val[1] = __builtin_shufflevector(__p1.val[1], __p1.val[1], 7, 6, 5, 4, 3, 2, 1, 0);
  28851. __rev1.val[2] = __builtin_shufflevector(__p1.val[2], __p1.val[2], 7, 6, 5, 4, 3, 2, 1, 0);
  28852. __rev1.val[3] = __builtin_shufflevector(__p1.val[3], __p1.val[3], 7, 6, 5, 4, 3, 2, 1, 0);
  28853. uint8x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  28854. poly8x8_t __ret;
  28855. __ret = (poly8x8_t) __builtin_neon_vtbx4_v((int8x8_t)__rev0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], (int8x8_t)__rev1.val[3], (int8x8_t)__rev2, 4);
  28856. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  28857. return __ret;
  28858. }
  28859. #endif
  28860. #ifdef __LITTLE_ENDIAN__
  28861. __ai uint8x8_t vtbx4_u8(uint8x8_t __p0, uint8x8x4_t __p1, uint8x8_t __p2) {
  28862. uint8x8_t __ret;
  28863. __ret = (uint8x8_t) __builtin_neon_vtbx4_v((int8x8_t)__p0, (int8x8_t)__p1.val[0], (int8x8_t)__p1.val[1], (int8x8_t)__p1.val[2], (int8x8_t)__p1.val[3], (int8x8_t)__p2, 16);
  28864. return __ret;
  28865. }
  28866. #else
  28867. __ai uint8x8_t vtbx4_u8(uint8x8_t __p0, uint8x8x4_t __p1, uint8x8_t __p2) {
  28868. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  28869. uint8x8x4_t __rev1;
  28870. __rev1.val[0] = __builtin_shufflevector(__p1.val[0], __p1.val[0], 7, 6, 5, 4, 3, 2, 1, 0);
  28871. __rev1.val[1] = __builtin_shufflevector(__p1.val[1], __p1.val[1], 7, 6, 5, 4, 3, 2, 1, 0);
  28872. __rev1.val[2] = __builtin_shufflevector(__p1.val[2], __p1.val[2], 7, 6, 5, 4, 3, 2, 1, 0);
  28873. __rev1.val[3] = __builtin_shufflevector(__p1.val[3], __p1.val[3], 7, 6, 5, 4, 3, 2, 1, 0);
  28874. uint8x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  28875. uint8x8_t __ret;
  28876. __ret = (uint8x8_t) __builtin_neon_vtbx4_v((int8x8_t)__rev0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], (int8x8_t)__rev1.val[3], (int8x8_t)__rev2, 16);
  28877. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  28878. return __ret;
  28879. }
  28880. #endif
  28881. #ifdef __LITTLE_ENDIAN__
  28882. __ai int8x8_t vtbx4_s8(int8x8_t __p0, int8x8x4_t __p1, int8x8_t __p2) {
  28883. int8x8_t __ret;
  28884. __ret = (int8x8_t) __builtin_neon_vtbx4_v((int8x8_t)__p0, (int8x8_t)__p1.val[0], (int8x8_t)__p1.val[1], (int8x8_t)__p1.val[2], (int8x8_t)__p1.val[3], (int8x8_t)__p2, 0);
  28885. return __ret;
  28886. }
  28887. #else
  28888. __ai int8x8_t vtbx4_s8(int8x8_t __p0, int8x8x4_t __p1, int8x8_t __p2) {
  28889. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  28890. int8x8x4_t __rev1;
  28891. __rev1.val[0] = __builtin_shufflevector(__p1.val[0], __p1.val[0], 7, 6, 5, 4, 3, 2, 1, 0);
  28892. __rev1.val[1] = __builtin_shufflevector(__p1.val[1], __p1.val[1], 7, 6, 5, 4, 3, 2, 1, 0);
  28893. __rev1.val[2] = __builtin_shufflevector(__p1.val[2], __p1.val[2], 7, 6, 5, 4, 3, 2, 1, 0);
  28894. __rev1.val[3] = __builtin_shufflevector(__p1.val[3], __p1.val[3], 7, 6, 5, 4, 3, 2, 1, 0);
  28895. int8x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  28896. int8x8_t __ret;
  28897. __ret = (int8x8_t) __builtin_neon_vtbx4_v((int8x8_t)__rev0, (int8x8_t)__rev1.val[0], (int8x8_t)__rev1.val[1], (int8x8_t)__rev1.val[2], (int8x8_t)__rev1.val[3], (int8x8_t)__rev2, 0);
  28898. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  28899. return __ret;
  28900. }
  28901. #endif
  28902. #ifdef __LITTLE_ENDIAN__
  28903. __ai poly8x8x2_t vtrn_p8(poly8x8_t __p0, poly8x8_t __p1) {
  28904. poly8x8x2_t __ret;
  28905. __builtin_neon_vtrn_v(&__ret, (int8x8_t)__p0, (int8x8_t)__p1, 4);
  28906. return __ret;
  28907. }
  28908. #else
  28909. __ai poly8x8x2_t vtrn_p8(poly8x8_t __p0, poly8x8_t __p1) {
  28910. poly8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  28911. poly8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  28912. poly8x8x2_t __ret;
  28913. __builtin_neon_vtrn_v(&__ret, (int8x8_t)__rev0, (int8x8_t)__rev1, 4);
  28914. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0);
  28915. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0);
  28916. return __ret;
  28917. }
  28918. #endif
  28919. #ifdef __LITTLE_ENDIAN__
  28920. __ai poly16x4x2_t vtrn_p16(poly16x4_t __p0, poly16x4_t __p1) {
  28921. poly16x4x2_t __ret;
  28922. __builtin_neon_vtrn_v(&__ret, (int8x8_t)__p0, (int8x8_t)__p1, 5);
  28923. return __ret;
  28924. }
  28925. #else
  28926. __ai poly16x4x2_t vtrn_p16(poly16x4_t __p0, poly16x4_t __p1) {
  28927. poly16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  28928. poly16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  28929. poly16x4x2_t __ret;
  28930. __builtin_neon_vtrn_v(&__ret, (int8x8_t)__rev0, (int8x8_t)__rev1, 5);
  28931. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0);
  28932. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0);
  28933. return __ret;
  28934. }
  28935. #endif
  28936. #ifdef __LITTLE_ENDIAN__
  28937. __ai poly8x16x2_t vtrnq_p8(poly8x16_t __p0, poly8x16_t __p1) {
  28938. poly8x16x2_t __ret;
  28939. __builtin_neon_vtrnq_v(&__ret, (int8x16_t)__p0, (int8x16_t)__p1, 36);
  28940. return __ret;
  28941. }
  28942. #else
  28943. __ai poly8x16x2_t vtrnq_p8(poly8x16_t __p0, poly8x16_t __p1) {
  28944. poly8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  28945. poly8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  28946. poly8x16x2_t __ret;
  28947. __builtin_neon_vtrnq_v(&__ret, (int8x16_t)__rev0, (int8x16_t)__rev1, 36);
  28948. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  28949. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  28950. return __ret;
  28951. }
  28952. #endif
  28953. #ifdef __LITTLE_ENDIAN__
  28954. __ai poly16x8x2_t vtrnq_p16(poly16x8_t __p0, poly16x8_t __p1) {
  28955. poly16x8x2_t __ret;
  28956. __builtin_neon_vtrnq_v(&__ret, (int8x16_t)__p0, (int8x16_t)__p1, 37);
  28957. return __ret;
  28958. }
  28959. #else
  28960. __ai poly16x8x2_t vtrnq_p16(poly16x8_t __p0, poly16x8_t __p1) {
  28961. poly16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  28962. poly16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  28963. poly16x8x2_t __ret;
  28964. __builtin_neon_vtrnq_v(&__ret, (int8x16_t)__rev0, (int8x16_t)__rev1, 37);
  28965. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0);
  28966. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0);
  28967. return __ret;
  28968. }
  28969. #endif
  28970. #ifdef __LITTLE_ENDIAN__
  28971. __ai uint8x16x2_t vtrnq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  28972. uint8x16x2_t __ret;
  28973. __builtin_neon_vtrnq_v(&__ret, (int8x16_t)__p0, (int8x16_t)__p1, 48);
  28974. return __ret;
  28975. }
  28976. #else
  28977. __ai uint8x16x2_t vtrnq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  28978. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  28979. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  28980. uint8x16x2_t __ret;
  28981. __builtin_neon_vtrnq_v(&__ret, (int8x16_t)__rev0, (int8x16_t)__rev1, 48);
  28982. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  28983. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  28984. return __ret;
  28985. }
  28986. #endif
  28987. #ifdef __LITTLE_ENDIAN__
  28988. __ai uint32x4x2_t vtrnq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  28989. uint32x4x2_t __ret;
  28990. __builtin_neon_vtrnq_v(&__ret, (int8x16_t)__p0, (int8x16_t)__p1, 50);
  28991. return __ret;
  28992. }
  28993. #else
  28994. __ai uint32x4x2_t vtrnq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  28995. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  28996. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  28997. uint32x4x2_t __ret;
  28998. __builtin_neon_vtrnq_v(&__ret, (int8x16_t)__rev0, (int8x16_t)__rev1, 50);
  28999. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0);
  29000. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0);
  29001. return __ret;
  29002. }
  29003. #endif
  29004. #ifdef __LITTLE_ENDIAN__
  29005. __ai uint16x8x2_t vtrnq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  29006. uint16x8x2_t __ret;
  29007. __builtin_neon_vtrnq_v(&__ret, (int8x16_t)__p0, (int8x16_t)__p1, 49);
  29008. return __ret;
  29009. }
  29010. #else
  29011. __ai uint16x8x2_t vtrnq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  29012. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  29013. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  29014. uint16x8x2_t __ret;
  29015. __builtin_neon_vtrnq_v(&__ret, (int8x16_t)__rev0, (int8x16_t)__rev1, 49);
  29016. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0);
  29017. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0);
  29018. return __ret;
  29019. }
  29020. #endif
  29021. #ifdef __LITTLE_ENDIAN__
  29022. __ai int8x16x2_t vtrnq_s8(int8x16_t __p0, int8x16_t __p1) {
  29023. int8x16x2_t __ret;
  29024. __builtin_neon_vtrnq_v(&__ret, (int8x16_t)__p0, (int8x16_t)__p1, 32);
  29025. return __ret;
  29026. }
  29027. #else
  29028. __ai int8x16x2_t vtrnq_s8(int8x16_t __p0, int8x16_t __p1) {
  29029. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  29030. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  29031. int8x16x2_t __ret;
  29032. __builtin_neon_vtrnq_v(&__ret, (int8x16_t)__rev0, (int8x16_t)__rev1, 32);
  29033. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  29034. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  29035. return __ret;
  29036. }
  29037. #endif
  29038. #ifdef __LITTLE_ENDIAN__
  29039. __ai float32x4x2_t vtrnq_f32(float32x4_t __p0, float32x4_t __p1) {
  29040. float32x4x2_t __ret;
  29041. __builtin_neon_vtrnq_v(&__ret, (int8x16_t)__p0, (int8x16_t)__p1, 41);
  29042. return __ret;
  29043. }
  29044. #else
  29045. __ai float32x4x2_t vtrnq_f32(float32x4_t __p0, float32x4_t __p1) {
  29046. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  29047. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  29048. float32x4x2_t __ret;
  29049. __builtin_neon_vtrnq_v(&__ret, (int8x16_t)__rev0, (int8x16_t)__rev1, 41);
  29050. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0);
  29051. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0);
  29052. return __ret;
  29053. }
  29054. #endif
  29055. #ifdef __LITTLE_ENDIAN__
  29056. __ai int32x4x2_t vtrnq_s32(int32x4_t __p0, int32x4_t __p1) {
  29057. int32x4x2_t __ret;
  29058. __builtin_neon_vtrnq_v(&__ret, (int8x16_t)__p0, (int8x16_t)__p1, 34);
  29059. return __ret;
  29060. }
  29061. #else
  29062. __ai int32x4x2_t vtrnq_s32(int32x4_t __p0, int32x4_t __p1) {
  29063. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  29064. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  29065. int32x4x2_t __ret;
  29066. __builtin_neon_vtrnq_v(&__ret, (int8x16_t)__rev0, (int8x16_t)__rev1, 34);
  29067. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0);
  29068. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0);
  29069. return __ret;
  29070. }
  29071. #endif
  29072. #ifdef __LITTLE_ENDIAN__
  29073. __ai int16x8x2_t vtrnq_s16(int16x8_t __p0, int16x8_t __p1) {
  29074. int16x8x2_t __ret;
  29075. __builtin_neon_vtrnq_v(&__ret, (int8x16_t)__p0, (int8x16_t)__p1, 33);
  29076. return __ret;
  29077. }
  29078. #else
  29079. __ai int16x8x2_t vtrnq_s16(int16x8_t __p0, int16x8_t __p1) {
  29080. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  29081. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  29082. int16x8x2_t __ret;
  29083. __builtin_neon_vtrnq_v(&__ret, (int8x16_t)__rev0, (int8x16_t)__rev1, 33);
  29084. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0);
  29085. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0);
  29086. return __ret;
  29087. }
  29088. #endif
  29089. #ifdef __LITTLE_ENDIAN__
  29090. __ai uint8x8x2_t vtrn_u8(uint8x8_t __p0, uint8x8_t __p1) {
  29091. uint8x8x2_t __ret;
  29092. __builtin_neon_vtrn_v(&__ret, (int8x8_t)__p0, (int8x8_t)__p1, 16);
  29093. return __ret;
  29094. }
  29095. #else
  29096. __ai uint8x8x2_t vtrn_u8(uint8x8_t __p0, uint8x8_t __p1) {
  29097. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  29098. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  29099. uint8x8x2_t __ret;
  29100. __builtin_neon_vtrn_v(&__ret, (int8x8_t)__rev0, (int8x8_t)__rev1, 16);
  29101. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0);
  29102. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0);
  29103. return __ret;
  29104. }
  29105. #endif
  29106. #ifdef __LITTLE_ENDIAN__
  29107. __ai uint32x2x2_t vtrn_u32(uint32x2_t __p0, uint32x2_t __p1) {
  29108. uint32x2x2_t __ret;
  29109. __builtin_neon_vtrn_v(&__ret, (int8x8_t)__p0, (int8x8_t)__p1, 18);
  29110. return __ret;
  29111. }
  29112. #else
  29113. __ai uint32x2x2_t vtrn_u32(uint32x2_t __p0, uint32x2_t __p1) {
  29114. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  29115. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  29116. uint32x2x2_t __ret;
  29117. __builtin_neon_vtrn_v(&__ret, (int8x8_t)__rev0, (int8x8_t)__rev1, 18);
  29118. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0);
  29119. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0);
  29120. return __ret;
  29121. }
  29122. #endif
  29123. #ifdef __LITTLE_ENDIAN__
  29124. __ai uint16x4x2_t vtrn_u16(uint16x4_t __p0, uint16x4_t __p1) {
  29125. uint16x4x2_t __ret;
  29126. __builtin_neon_vtrn_v(&__ret, (int8x8_t)__p0, (int8x8_t)__p1, 17);
  29127. return __ret;
  29128. }
  29129. #else
  29130. __ai uint16x4x2_t vtrn_u16(uint16x4_t __p0, uint16x4_t __p1) {
  29131. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  29132. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  29133. uint16x4x2_t __ret;
  29134. __builtin_neon_vtrn_v(&__ret, (int8x8_t)__rev0, (int8x8_t)__rev1, 17);
  29135. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0);
  29136. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0);
  29137. return __ret;
  29138. }
  29139. #endif
  29140. #ifdef __LITTLE_ENDIAN__
  29141. __ai int8x8x2_t vtrn_s8(int8x8_t __p0, int8x8_t __p1) {
  29142. int8x8x2_t __ret;
  29143. __builtin_neon_vtrn_v(&__ret, (int8x8_t)__p0, (int8x8_t)__p1, 0);
  29144. return __ret;
  29145. }
  29146. #else
  29147. __ai int8x8x2_t vtrn_s8(int8x8_t __p0, int8x8_t __p1) {
  29148. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  29149. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  29150. int8x8x2_t __ret;
  29151. __builtin_neon_vtrn_v(&__ret, (int8x8_t)__rev0, (int8x8_t)__rev1, 0);
  29152. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0);
  29153. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0);
  29154. return __ret;
  29155. }
  29156. #endif
  29157. #ifdef __LITTLE_ENDIAN__
  29158. __ai float32x2x2_t vtrn_f32(float32x2_t __p0, float32x2_t __p1) {
  29159. float32x2x2_t __ret;
  29160. __builtin_neon_vtrn_v(&__ret, (int8x8_t)__p0, (int8x8_t)__p1, 9);
  29161. return __ret;
  29162. }
  29163. #else
  29164. __ai float32x2x2_t vtrn_f32(float32x2_t __p0, float32x2_t __p1) {
  29165. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  29166. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  29167. float32x2x2_t __ret;
  29168. __builtin_neon_vtrn_v(&__ret, (int8x8_t)__rev0, (int8x8_t)__rev1, 9);
  29169. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0);
  29170. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0);
  29171. return __ret;
  29172. }
  29173. #endif
  29174. #ifdef __LITTLE_ENDIAN__
  29175. __ai int32x2x2_t vtrn_s32(int32x2_t __p0, int32x2_t __p1) {
  29176. int32x2x2_t __ret;
  29177. __builtin_neon_vtrn_v(&__ret, (int8x8_t)__p0, (int8x8_t)__p1, 2);
  29178. return __ret;
  29179. }
  29180. #else
  29181. __ai int32x2x2_t vtrn_s32(int32x2_t __p0, int32x2_t __p1) {
  29182. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  29183. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  29184. int32x2x2_t __ret;
  29185. __builtin_neon_vtrn_v(&__ret, (int8x8_t)__rev0, (int8x8_t)__rev1, 2);
  29186. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0);
  29187. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0);
  29188. return __ret;
  29189. }
  29190. #endif
  29191. #ifdef __LITTLE_ENDIAN__
  29192. __ai int16x4x2_t vtrn_s16(int16x4_t __p0, int16x4_t __p1) {
  29193. int16x4x2_t __ret;
  29194. __builtin_neon_vtrn_v(&__ret, (int8x8_t)__p0, (int8x8_t)__p1, 1);
  29195. return __ret;
  29196. }
  29197. #else
  29198. __ai int16x4x2_t vtrn_s16(int16x4_t __p0, int16x4_t __p1) {
  29199. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  29200. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  29201. int16x4x2_t __ret;
  29202. __builtin_neon_vtrn_v(&__ret, (int8x8_t)__rev0, (int8x8_t)__rev1, 1);
  29203. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0);
  29204. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0);
  29205. return __ret;
  29206. }
  29207. #endif
  29208. #ifdef __LITTLE_ENDIAN__
  29209. __ai uint8x8_t vtst_p8(poly8x8_t __p0, poly8x8_t __p1) {
  29210. uint8x8_t __ret;
  29211. __ret = (uint8x8_t) __builtin_neon_vtst_v((int8x8_t)__p0, (int8x8_t)__p1, 16);
  29212. return __ret;
  29213. }
  29214. #else
  29215. __ai uint8x8_t vtst_p8(poly8x8_t __p0, poly8x8_t __p1) {
  29216. poly8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  29217. poly8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  29218. uint8x8_t __ret;
  29219. __ret = (uint8x8_t) __builtin_neon_vtst_v((int8x8_t)__rev0, (int8x8_t)__rev1, 16);
  29220. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  29221. return __ret;
  29222. }
  29223. #endif
  29224. #ifdef __LITTLE_ENDIAN__
  29225. __ai uint16x4_t vtst_p16(poly16x4_t __p0, poly16x4_t __p1) {
  29226. uint16x4_t __ret;
  29227. __ret = (uint16x4_t) __builtin_neon_vtst_v((int8x8_t)__p0, (int8x8_t)__p1, 17);
  29228. return __ret;
  29229. }
  29230. #else
  29231. __ai uint16x4_t vtst_p16(poly16x4_t __p0, poly16x4_t __p1) {
  29232. poly16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  29233. poly16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  29234. uint16x4_t __ret;
  29235. __ret = (uint16x4_t) __builtin_neon_vtst_v((int8x8_t)__rev0, (int8x8_t)__rev1, 17);
  29236. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  29237. return __ret;
  29238. }
  29239. #endif
  29240. #ifdef __LITTLE_ENDIAN__
  29241. __ai uint8x16_t vtstq_p8(poly8x16_t __p0, poly8x16_t __p1) {
  29242. uint8x16_t __ret;
  29243. __ret = (uint8x16_t) __builtin_neon_vtstq_v((int8x16_t)__p0, (int8x16_t)__p1, 48);
  29244. return __ret;
  29245. }
  29246. #else
  29247. __ai uint8x16_t vtstq_p8(poly8x16_t __p0, poly8x16_t __p1) {
  29248. poly8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  29249. poly8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  29250. uint8x16_t __ret;
  29251. __ret = (uint8x16_t) __builtin_neon_vtstq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 48);
  29252. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  29253. return __ret;
  29254. }
  29255. #endif
  29256. #ifdef __LITTLE_ENDIAN__
  29257. __ai uint16x8_t vtstq_p16(poly16x8_t __p0, poly16x8_t __p1) {
  29258. uint16x8_t __ret;
  29259. __ret = (uint16x8_t) __builtin_neon_vtstq_v((int8x16_t)__p0, (int8x16_t)__p1, 49);
  29260. return __ret;
  29261. }
  29262. #else
  29263. __ai uint16x8_t vtstq_p16(poly16x8_t __p0, poly16x8_t __p1) {
  29264. poly16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  29265. poly16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  29266. uint16x8_t __ret;
  29267. __ret = (uint16x8_t) __builtin_neon_vtstq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 49);
  29268. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  29269. return __ret;
  29270. }
  29271. #endif
  29272. #ifdef __LITTLE_ENDIAN__
  29273. __ai uint8x16_t vtstq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  29274. uint8x16_t __ret;
  29275. __ret = (uint8x16_t) __builtin_neon_vtstq_v((int8x16_t)__p0, (int8x16_t)__p1, 48);
  29276. return __ret;
  29277. }
  29278. #else
  29279. __ai uint8x16_t vtstq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  29280. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  29281. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  29282. uint8x16_t __ret;
  29283. __ret = (uint8x16_t) __builtin_neon_vtstq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 48);
  29284. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  29285. return __ret;
  29286. }
  29287. #endif
  29288. #ifdef __LITTLE_ENDIAN__
  29289. __ai uint32x4_t vtstq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  29290. uint32x4_t __ret;
  29291. __ret = (uint32x4_t) __builtin_neon_vtstq_v((int8x16_t)__p0, (int8x16_t)__p1, 50);
  29292. return __ret;
  29293. }
  29294. #else
  29295. __ai uint32x4_t vtstq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  29296. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  29297. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  29298. uint32x4_t __ret;
  29299. __ret = (uint32x4_t) __builtin_neon_vtstq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 50);
  29300. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  29301. return __ret;
  29302. }
  29303. #endif
  29304. #ifdef __LITTLE_ENDIAN__
  29305. __ai uint16x8_t vtstq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  29306. uint16x8_t __ret;
  29307. __ret = (uint16x8_t) __builtin_neon_vtstq_v((int8x16_t)__p0, (int8x16_t)__p1, 49);
  29308. return __ret;
  29309. }
  29310. #else
  29311. __ai uint16x8_t vtstq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  29312. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  29313. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  29314. uint16x8_t __ret;
  29315. __ret = (uint16x8_t) __builtin_neon_vtstq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 49);
  29316. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  29317. return __ret;
  29318. }
  29319. #endif
  29320. #ifdef __LITTLE_ENDIAN__
  29321. __ai uint8x16_t vtstq_s8(int8x16_t __p0, int8x16_t __p1) {
  29322. uint8x16_t __ret;
  29323. __ret = (uint8x16_t) __builtin_neon_vtstq_v((int8x16_t)__p0, (int8x16_t)__p1, 48);
  29324. return __ret;
  29325. }
  29326. #else
  29327. __ai uint8x16_t vtstq_s8(int8x16_t __p0, int8x16_t __p1) {
  29328. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  29329. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  29330. uint8x16_t __ret;
  29331. __ret = (uint8x16_t) __builtin_neon_vtstq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 48);
  29332. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  29333. return __ret;
  29334. }
  29335. #endif
  29336. #ifdef __LITTLE_ENDIAN__
  29337. __ai uint32x4_t vtstq_s32(int32x4_t __p0, int32x4_t __p1) {
  29338. uint32x4_t __ret;
  29339. __ret = (uint32x4_t) __builtin_neon_vtstq_v((int8x16_t)__p0, (int8x16_t)__p1, 50);
  29340. return __ret;
  29341. }
  29342. #else
  29343. __ai uint32x4_t vtstq_s32(int32x4_t __p0, int32x4_t __p1) {
  29344. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  29345. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  29346. uint32x4_t __ret;
  29347. __ret = (uint32x4_t) __builtin_neon_vtstq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 50);
  29348. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  29349. return __ret;
  29350. }
  29351. #endif
  29352. #ifdef __LITTLE_ENDIAN__
  29353. __ai uint16x8_t vtstq_s16(int16x8_t __p0, int16x8_t __p1) {
  29354. uint16x8_t __ret;
  29355. __ret = (uint16x8_t) __builtin_neon_vtstq_v((int8x16_t)__p0, (int8x16_t)__p1, 49);
  29356. return __ret;
  29357. }
  29358. #else
  29359. __ai uint16x8_t vtstq_s16(int16x8_t __p0, int16x8_t __p1) {
  29360. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  29361. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  29362. uint16x8_t __ret;
  29363. __ret = (uint16x8_t) __builtin_neon_vtstq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 49);
  29364. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  29365. return __ret;
  29366. }
  29367. #endif
  29368. #ifdef __LITTLE_ENDIAN__
  29369. __ai uint8x8_t vtst_u8(uint8x8_t __p0, uint8x8_t __p1) {
  29370. uint8x8_t __ret;
  29371. __ret = (uint8x8_t) __builtin_neon_vtst_v((int8x8_t)__p0, (int8x8_t)__p1, 16);
  29372. return __ret;
  29373. }
  29374. #else
  29375. __ai uint8x8_t vtst_u8(uint8x8_t __p0, uint8x8_t __p1) {
  29376. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  29377. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  29378. uint8x8_t __ret;
  29379. __ret = (uint8x8_t) __builtin_neon_vtst_v((int8x8_t)__rev0, (int8x8_t)__rev1, 16);
  29380. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  29381. return __ret;
  29382. }
  29383. #endif
  29384. #ifdef __LITTLE_ENDIAN__
  29385. __ai uint32x2_t vtst_u32(uint32x2_t __p0, uint32x2_t __p1) {
  29386. uint32x2_t __ret;
  29387. __ret = (uint32x2_t) __builtin_neon_vtst_v((int8x8_t)__p0, (int8x8_t)__p1, 18);
  29388. return __ret;
  29389. }
  29390. #else
  29391. __ai uint32x2_t vtst_u32(uint32x2_t __p0, uint32x2_t __p1) {
  29392. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  29393. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  29394. uint32x2_t __ret;
  29395. __ret = (uint32x2_t) __builtin_neon_vtst_v((int8x8_t)__rev0, (int8x8_t)__rev1, 18);
  29396. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  29397. return __ret;
  29398. }
  29399. #endif
  29400. #ifdef __LITTLE_ENDIAN__
  29401. __ai uint16x4_t vtst_u16(uint16x4_t __p0, uint16x4_t __p1) {
  29402. uint16x4_t __ret;
  29403. __ret = (uint16x4_t) __builtin_neon_vtst_v((int8x8_t)__p0, (int8x8_t)__p1, 17);
  29404. return __ret;
  29405. }
  29406. #else
  29407. __ai uint16x4_t vtst_u16(uint16x4_t __p0, uint16x4_t __p1) {
  29408. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  29409. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  29410. uint16x4_t __ret;
  29411. __ret = (uint16x4_t) __builtin_neon_vtst_v((int8x8_t)__rev0, (int8x8_t)__rev1, 17);
  29412. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  29413. return __ret;
  29414. }
  29415. #endif
  29416. #ifdef __LITTLE_ENDIAN__
  29417. __ai uint8x8_t vtst_s8(int8x8_t __p0, int8x8_t __p1) {
  29418. uint8x8_t __ret;
  29419. __ret = (uint8x8_t) __builtin_neon_vtst_v((int8x8_t)__p0, (int8x8_t)__p1, 16);
  29420. return __ret;
  29421. }
  29422. #else
  29423. __ai uint8x8_t vtst_s8(int8x8_t __p0, int8x8_t __p1) {
  29424. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  29425. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  29426. uint8x8_t __ret;
  29427. __ret = (uint8x8_t) __builtin_neon_vtst_v((int8x8_t)__rev0, (int8x8_t)__rev1, 16);
  29428. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  29429. return __ret;
  29430. }
  29431. #endif
  29432. #ifdef __LITTLE_ENDIAN__
  29433. __ai uint32x2_t vtst_s32(int32x2_t __p0, int32x2_t __p1) {
  29434. uint32x2_t __ret;
  29435. __ret = (uint32x2_t) __builtin_neon_vtst_v((int8x8_t)__p0, (int8x8_t)__p1, 18);
  29436. return __ret;
  29437. }
  29438. #else
  29439. __ai uint32x2_t vtst_s32(int32x2_t __p0, int32x2_t __p1) {
  29440. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  29441. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  29442. uint32x2_t __ret;
  29443. __ret = (uint32x2_t) __builtin_neon_vtst_v((int8x8_t)__rev0, (int8x8_t)__rev1, 18);
  29444. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  29445. return __ret;
  29446. }
  29447. #endif
  29448. #ifdef __LITTLE_ENDIAN__
  29449. __ai uint16x4_t vtst_s16(int16x4_t __p0, int16x4_t __p1) {
  29450. uint16x4_t __ret;
  29451. __ret = (uint16x4_t) __builtin_neon_vtst_v((int8x8_t)__p0, (int8x8_t)__p1, 17);
  29452. return __ret;
  29453. }
  29454. #else
  29455. __ai uint16x4_t vtst_s16(int16x4_t __p0, int16x4_t __p1) {
  29456. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  29457. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  29458. uint16x4_t __ret;
  29459. __ret = (uint16x4_t) __builtin_neon_vtst_v((int8x8_t)__rev0, (int8x8_t)__rev1, 17);
  29460. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  29461. return __ret;
  29462. }
  29463. #endif
  29464. #ifdef __LITTLE_ENDIAN__
  29465. __ai poly8x8x2_t vuzp_p8(poly8x8_t __p0, poly8x8_t __p1) {
  29466. poly8x8x2_t __ret;
  29467. __builtin_neon_vuzp_v(&__ret, (int8x8_t)__p0, (int8x8_t)__p1, 4);
  29468. return __ret;
  29469. }
  29470. #else
  29471. __ai poly8x8x2_t vuzp_p8(poly8x8_t __p0, poly8x8_t __p1) {
  29472. poly8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  29473. poly8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  29474. poly8x8x2_t __ret;
  29475. __builtin_neon_vuzp_v(&__ret, (int8x8_t)__rev0, (int8x8_t)__rev1, 4);
  29476. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0);
  29477. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0);
  29478. return __ret;
  29479. }
  29480. #endif
  29481. #ifdef __LITTLE_ENDIAN__
  29482. __ai poly16x4x2_t vuzp_p16(poly16x4_t __p0, poly16x4_t __p1) {
  29483. poly16x4x2_t __ret;
  29484. __builtin_neon_vuzp_v(&__ret, (int8x8_t)__p0, (int8x8_t)__p1, 5);
  29485. return __ret;
  29486. }
  29487. #else
  29488. __ai poly16x4x2_t vuzp_p16(poly16x4_t __p0, poly16x4_t __p1) {
  29489. poly16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  29490. poly16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  29491. poly16x4x2_t __ret;
  29492. __builtin_neon_vuzp_v(&__ret, (int8x8_t)__rev0, (int8x8_t)__rev1, 5);
  29493. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0);
  29494. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0);
  29495. return __ret;
  29496. }
  29497. #endif
  29498. #ifdef __LITTLE_ENDIAN__
  29499. __ai poly8x16x2_t vuzpq_p8(poly8x16_t __p0, poly8x16_t __p1) {
  29500. poly8x16x2_t __ret;
  29501. __builtin_neon_vuzpq_v(&__ret, (int8x16_t)__p0, (int8x16_t)__p1, 36);
  29502. return __ret;
  29503. }
  29504. #else
  29505. __ai poly8x16x2_t vuzpq_p8(poly8x16_t __p0, poly8x16_t __p1) {
  29506. poly8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  29507. poly8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  29508. poly8x16x2_t __ret;
  29509. __builtin_neon_vuzpq_v(&__ret, (int8x16_t)__rev0, (int8x16_t)__rev1, 36);
  29510. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  29511. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  29512. return __ret;
  29513. }
  29514. #endif
  29515. #ifdef __LITTLE_ENDIAN__
  29516. __ai poly16x8x2_t vuzpq_p16(poly16x8_t __p0, poly16x8_t __p1) {
  29517. poly16x8x2_t __ret;
  29518. __builtin_neon_vuzpq_v(&__ret, (int8x16_t)__p0, (int8x16_t)__p1, 37);
  29519. return __ret;
  29520. }
  29521. #else
  29522. __ai poly16x8x2_t vuzpq_p16(poly16x8_t __p0, poly16x8_t __p1) {
  29523. poly16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  29524. poly16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  29525. poly16x8x2_t __ret;
  29526. __builtin_neon_vuzpq_v(&__ret, (int8x16_t)__rev0, (int8x16_t)__rev1, 37);
  29527. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0);
  29528. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0);
  29529. return __ret;
  29530. }
  29531. #endif
  29532. #ifdef __LITTLE_ENDIAN__
  29533. __ai uint8x16x2_t vuzpq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  29534. uint8x16x2_t __ret;
  29535. __builtin_neon_vuzpq_v(&__ret, (int8x16_t)__p0, (int8x16_t)__p1, 48);
  29536. return __ret;
  29537. }
  29538. #else
  29539. __ai uint8x16x2_t vuzpq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  29540. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  29541. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  29542. uint8x16x2_t __ret;
  29543. __builtin_neon_vuzpq_v(&__ret, (int8x16_t)__rev0, (int8x16_t)__rev1, 48);
  29544. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  29545. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  29546. return __ret;
  29547. }
  29548. #endif
  29549. #ifdef __LITTLE_ENDIAN__
  29550. __ai uint32x4x2_t vuzpq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  29551. uint32x4x2_t __ret;
  29552. __builtin_neon_vuzpq_v(&__ret, (int8x16_t)__p0, (int8x16_t)__p1, 50);
  29553. return __ret;
  29554. }
  29555. #else
  29556. __ai uint32x4x2_t vuzpq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  29557. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  29558. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  29559. uint32x4x2_t __ret;
  29560. __builtin_neon_vuzpq_v(&__ret, (int8x16_t)__rev0, (int8x16_t)__rev1, 50);
  29561. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0);
  29562. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0);
  29563. return __ret;
  29564. }
  29565. #endif
  29566. #ifdef __LITTLE_ENDIAN__
  29567. __ai uint16x8x2_t vuzpq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  29568. uint16x8x2_t __ret;
  29569. __builtin_neon_vuzpq_v(&__ret, (int8x16_t)__p0, (int8x16_t)__p1, 49);
  29570. return __ret;
  29571. }
  29572. #else
  29573. __ai uint16x8x2_t vuzpq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  29574. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  29575. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  29576. uint16x8x2_t __ret;
  29577. __builtin_neon_vuzpq_v(&__ret, (int8x16_t)__rev0, (int8x16_t)__rev1, 49);
  29578. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0);
  29579. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0);
  29580. return __ret;
  29581. }
  29582. #endif
  29583. #ifdef __LITTLE_ENDIAN__
  29584. __ai int8x16x2_t vuzpq_s8(int8x16_t __p0, int8x16_t __p1) {
  29585. int8x16x2_t __ret;
  29586. __builtin_neon_vuzpq_v(&__ret, (int8x16_t)__p0, (int8x16_t)__p1, 32);
  29587. return __ret;
  29588. }
  29589. #else
  29590. __ai int8x16x2_t vuzpq_s8(int8x16_t __p0, int8x16_t __p1) {
  29591. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  29592. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  29593. int8x16x2_t __ret;
  29594. __builtin_neon_vuzpq_v(&__ret, (int8x16_t)__rev0, (int8x16_t)__rev1, 32);
  29595. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  29596. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  29597. return __ret;
  29598. }
  29599. #endif
  29600. #ifdef __LITTLE_ENDIAN__
  29601. __ai float32x4x2_t vuzpq_f32(float32x4_t __p0, float32x4_t __p1) {
  29602. float32x4x2_t __ret;
  29603. __builtin_neon_vuzpq_v(&__ret, (int8x16_t)__p0, (int8x16_t)__p1, 41);
  29604. return __ret;
  29605. }
  29606. #else
  29607. __ai float32x4x2_t vuzpq_f32(float32x4_t __p0, float32x4_t __p1) {
  29608. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  29609. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  29610. float32x4x2_t __ret;
  29611. __builtin_neon_vuzpq_v(&__ret, (int8x16_t)__rev0, (int8x16_t)__rev1, 41);
  29612. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0);
  29613. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0);
  29614. return __ret;
  29615. }
  29616. #endif
  29617. #ifdef __LITTLE_ENDIAN__
  29618. __ai int32x4x2_t vuzpq_s32(int32x4_t __p0, int32x4_t __p1) {
  29619. int32x4x2_t __ret;
  29620. __builtin_neon_vuzpq_v(&__ret, (int8x16_t)__p0, (int8x16_t)__p1, 34);
  29621. return __ret;
  29622. }
  29623. #else
  29624. __ai int32x4x2_t vuzpq_s32(int32x4_t __p0, int32x4_t __p1) {
  29625. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  29626. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  29627. int32x4x2_t __ret;
  29628. __builtin_neon_vuzpq_v(&__ret, (int8x16_t)__rev0, (int8x16_t)__rev1, 34);
  29629. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0);
  29630. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0);
  29631. return __ret;
  29632. }
  29633. #endif
  29634. #ifdef __LITTLE_ENDIAN__
  29635. __ai int16x8x2_t vuzpq_s16(int16x8_t __p0, int16x8_t __p1) {
  29636. int16x8x2_t __ret;
  29637. __builtin_neon_vuzpq_v(&__ret, (int8x16_t)__p0, (int8x16_t)__p1, 33);
  29638. return __ret;
  29639. }
  29640. #else
  29641. __ai int16x8x2_t vuzpq_s16(int16x8_t __p0, int16x8_t __p1) {
  29642. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  29643. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  29644. int16x8x2_t __ret;
  29645. __builtin_neon_vuzpq_v(&__ret, (int8x16_t)__rev0, (int8x16_t)__rev1, 33);
  29646. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0);
  29647. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0);
  29648. return __ret;
  29649. }
  29650. #endif
  29651. #ifdef __LITTLE_ENDIAN__
  29652. __ai uint8x8x2_t vuzp_u8(uint8x8_t __p0, uint8x8_t __p1) {
  29653. uint8x8x2_t __ret;
  29654. __builtin_neon_vuzp_v(&__ret, (int8x8_t)__p0, (int8x8_t)__p1, 16);
  29655. return __ret;
  29656. }
  29657. #else
  29658. __ai uint8x8x2_t vuzp_u8(uint8x8_t __p0, uint8x8_t __p1) {
  29659. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  29660. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  29661. uint8x8x2_t __ret;
  29662. __builtin_neon_vuzp_v(&__ret, (int8x8_t)__rev0, (int8x8_t)__rev1, 16);
  29663. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0);
  29664. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0);
  29665. return __ret;
  29666. }
  29667. #endif
  29668. #ifdef __LITTLE_ENDIAN__
  29669. __ai uint32x2x2_t vuzp_u32(uint32x2_t __p0, uint32x2_t __p1) {
  29670. uint32x2x2_t __ret;
  29671. __builtin_neon_vuzp_v(&__ret, (int8x8_t)__p0, (int8x8_t)__p1, 18);
  29672. return __ret;
  29673. }
  29674. #else
  29675. __ai uint32x2x2_t vuzp_u32(uint32x2_t __p0, uint32x2_t __p1) {
  29676. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  29677. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  29678. uint32x2x2_t __ret;
  29679. __builtin_neon_vuzp_v(&__ret, (int8x8_t)__rev0, (int8x8_t)__rev1, 18);
  29680. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0);
  29681. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0);
  29682. return __ret;
  29683. }
  29684. #endif
  29685. #ifdef __LITTLE_ENDIAN__
  29686. __ai uint16x4x2_t vuzp_u16(uint16x4_t __p0, uint16x4_t __p1) {
  29687. uint16x4x2_t __ret;
  29688. __builtin_neon_vuzp_v(&__ret, (int8x8_t)__p0, (int8x8_t)__p1, 17);
  29689. return __ret;
  29690. }
  29691. #else
  29692. __ai uint16x4x2_t vuzp_u16(uint16x4_t __p0, uint16x4_t __p1) {
  29693. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  29694. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  29695. uint16x4x2_t __ret;
  29696. __builtin_neon_vuzp_v(&__ret, (int8x8_t)__rev0, (int8x8_t)__rev1, 17);
  29697. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0);
  29698. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0);
  29699. return __ret;
  29700. }
  29701. #endif
  29702. #ifdef __LITTLE_ENDIAN__
  29703. __ai int8x8x2_t vuzp_s8(int8x8_t __p0, int8x8_t __p1) {
  29704. int8x8x2_t __ret;
  29705. __builtin_neon_vuzp_v(&__ret, (int8x8_t)__p0, (int8x8_t)__p1, 0);
  29706. return __ret;
  29707. }
  29708. #else
  29709. __ai int8x8x2_t vuzp_s8(int8x8_t __p0, int8x8_t __p1) {
  29710. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  29711. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  29712. int8x8x2_t __ret;
  29713. __builtin_neon_vuzp_v(&__ret, (int8x8_t)__rev0, (int8x8_t)__rev1, 0);
  29714. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0);
  29715. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0);
  29716. return __ret;
  29717. }
  29718. #endif
  29719. #ifdef __LITTLE_ENDIAN__
  29720. __ai float32x2x2_t vuzp_f32(float32x2_t __p0, float32x2_t __p1) {
  29721. float32x2x2_t __ret;
  29722. __builtin_neon_vuzp_v(&__ret, (int8x8_t)__p0, (int8x8_t)__p1, 9);
  29723. return __ret;
  29724. }
  29725. #else
  29726. __ai float32x2x2_t vuzp_f32(float32x2_t __p0, float32x2_t __p1) {
  29727. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  29728. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  29729. float32x2x2_t __ret;
  29730. __builtin_neon_vuzp_v(&__ret, (int8x8_t)__rev0, (int8x8_t)__rev1, 9);
  29731. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0);
  29732. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0);
  29733. return __ret;
  29734. }
  29735. #endif
  29736. #ifdef __LITTLE_ENDIAN__
  29737. __ai int32x2x2_t vuzp_s32(int32x2_t __p0, int32x2_t __p1) {
  29738. int32x2x2_t __ret;
  29739. __builtin_neon_vuzp_v(&__ret, (int8x8_t)__p0, (int8x8_t)__p1, 2);
  29740. return __ret;
  29741. }
  29742. #else
  29743. __ai int32x2x2_t vuzp_s32(int32x2_t __p0, int32x2_t __p1) {
  29744. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  29745. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  29746. int32x2x2_t __ret;
  29747. __builtin_neon_vuzp_v(&__ret, (int8x8_t)__rev0, (int8x8_t)__rev1, 2);
  29748. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0);
  29749. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0);
  29750. return __ret;
  29751. }
  29752. #endif
  29753. #ifdef __LITTLE_ENDIAN__
  29754. __ai int16x4x2_t vuzp_s16(int16x4_t __p0, int16x4_t __p1) {
  29755. int16x4x2_t __ret;
  29756. __builtin_neon_vuzp_v(&__ret, (int8x8_t)__p0, (int8x8_t)__p1, 1);
  29757. return __ret;
  29758. }
  29759. #else
  29760. __ai int16x4x2_t vuzp_s16(int16x4_t __p0, int16x4_t __p1) {
  29761. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  29762. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  29763. int16x4x2_t __ret;
  29764. __builtin_neon_vuzp_v(&__ret, (int8x8_t)__rev0, (int8x8_t)__rev1, 1);
  29765. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0);
  29766. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0);
  29767. return __ret;
  29768. }
  29769. #endif
  29770. #ifdef __LITTLE_ENDIAN__
  29771. __ai poly8x8x2_t vzip_p8(poly8x8_t __p0, poly8x8_t __p1) {
  29772. poly8x8x2_t __ret;
  29773. __builtin_neon_vzip_v(&__ret, (int8x8_t)__p0, (int8x8_t)__p1, 4);
  29774. return __ret;
  29775. }
  29776. #else
  29777. __ai poly8x8x2_t vzip_p8(poly8x8_t __p0, poly8x8_t __p1) {
  29778. poly8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  29779. poly8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  29780. poly8x8x2_t __ret;
  29781. __builtin_neon_vzip_v(&__ret, (int8x8_t)__rev0, (int8x8_t)__rev1, 4);
  29782. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0);
  29783. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0);
  29784. return __ret;
  29785. }
  29786. #endif
  29787. #ifdef __LITTLE_ENDIAN__
  29788. __ai poly16x4x2_t vzip_p16(poly16x4_t __p0, poly16x4_t __p1) {
  29789. poly16x4x2_t __ret;
  29790. __builtin_neon_vzip_v(&__ret, (int8x8_t)__p0, (int8x8_t)__p1, 5);
  29791. return __ret;
  29792. }
  29793. #else
  29794. __ai poly16x4x2_t vzip_p16(poly16x4_t __p0, poly16x4_t __p1) {
  29795. poly16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  29796. poly16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  29797. poly16x4x2_t __ret;
  29798. __builtin_neon_vzip_v(&__ret, (int8x8_t)__rev0, (int8x8_t)__rev1, 5);
  29799. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0);
  29800. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0);
  29801. return __ret;
  29802. }
  29803. #endif
  29804. #ifdef __LITTLE_ENDIAN__
  29805. __ai poly8x16x2_t vzipq_p8(poly8x16_t __p0, poly8x16_t __p1) {
  29806. poly8x16x2_t __ret;
  29807. __builtin_neon_vzipq_v(&__ret, (int8x16_t)__p0, (int8x16_t)__p1, 36);
  29808. return __ret;
  29809. }
  29810. #else
  29811. __ai poly8x16x2_t vzipq_p8(poly8x16_t __p0, poly8x16_t __p1) {
  29812. poly8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  29813. poly8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  29814. poly8x16x2_t __ret;
  29815. __builtin_neon_vzipq_v(&__ret, (int8x16_t)__rev0, (int8x16_t)__rev1, 36);
  29816. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  29817. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  29818. return __ret;
  29819. }
  29820. #endif
  29821. #ifdef __LITTLE_ENDIAN__
  29822. __ai poly16x8x2_t vzipq_p16(poly16x8_t __p0, poly16x8_t __p1) {
  29823. poly16x8x2_t __ret;
  29824. __builtin_neon_vzipq_v(&__ret, (int8x16_t)__p0, (int8x16_t)__p1, 37);
  29825. return __ret;
  29826. }
  29827. #else
  29828. __ai poly16x8x2_t vzipq_p16(poly16x8_t __p0, poly16x8_t __p1) {
  29829. poly16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  29830. poly16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  29831. poly16x8x2_t __ret;
  29832. __builtin_neon_vzipq_v(&__ret, (int8x16_t)__rev0, (int8x16_t)__rev1, 37);
  29833. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0);
  29834. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0);
  29835. return __ret;
  29836. }
  29837. #endif
  29838. #ifdef __LITTLE_ENDIAN__
  29839. __ai uint8x16x2_t vzipq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  29840. uint8x16x2_t __ret;
  29841. __builtin_neon_vzipq_v(&__ret, (int8x16_t)__p0, (int8x16_t)__p1, 48);
  29842. return __ret;
  29843. }
  29844. #else
  29845. __ai uint8x16x2_t vzipq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  29846. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  29847. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  29848. uint8x16x2_t __ret;
  29849. __builtin_neon_vzipq_v(&__ret, (int8x16_t)__rev0, (int8x16_t)__rev1, 48);
  29850. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  29851. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  29852. return __ret;
  29853. }
  29854. #endif
  29855. #ifdef __LITTLE_ENDIAN__
  29856. __ai uint32x4x2_t vzipq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  29857. uint32x4x2_t __ret;
  29858. __builtin_neon_vzipq_v(&__ret, (int8x16_t)__p0, (int8x16_t)__p1, 50);
  29859. return __ret;
  29860. }
  29861. #else
  29862. __ai uint32x4x2_t vzipq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  29863. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  29864. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  29865. uint32x4x2_t __ret;
  29866. __builtin_neon_vzipq_v(&__ret, (int8x16_t)__rev0, (int8x16_t)__rev1, 50);
  29867. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0);
  29868. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0);
  29869. return __ret;
  29870. }
  29871. #endif
  29872. #ifdef __LITTLE_ENDIAN__
  29873. __ai uint16x8x2_t vzipq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  29874. uint16x8x2_t __ret;
  29875. __builtin_neon_vzipq_v(&__ret, (int8x16_t)__p0, (int8x16_t)__p1, 49);
  29876. return __ret;
  29877. }
  29878. #else
  29879. __ai uint16x8x2_t vzipq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  29880. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  29881. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  29882. uint16x8x2_t __ret;
  29883. __builtin_neon_vzipq_v(&__ret, (int8x16_t)__rev0, (int8x16_t)__rev1, 49);
  29884. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0);
  29885. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0);
  29886. return __ret;
  29887. }
  29888. #endif
  29889. #ifdef __LITTLE_ENDIAN__
  29890. __ai int8x16x2_t vzipq_s8(int8x16_t __p0, int8x16_t __p1) {
  29891. int8x16x2_t __ret;
  29892. __builtin_neon_vzipq_v(&__ret, (int8x16_t)__p0, (int8x16_t)__p1, 32);
  29893. return __ret;
  29894. }
  29895. #else
  29896. __ai int8x16x2_t vzipq_s8(int8x16_t __p0, int8x16_t __p1) {
  29897. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  29898. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  29899. int8x16x2_t __ret;
  29900. __builtin_neon_vzipq_v(&__ret, (int8x16_t)__rev0, (int8x16_t)__rev1, 32);
  29901. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  29902. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  29903. return __ret;
  29904. }
  29905. #endif
  29906. #ifdef __LITTLE_ENDIAN__
  29907. __ai float32x4x2_t vzipq_f32(float32x4_t __p0, float32x4_t __p1) {
  29908. float32x4x2_t __ret;
  29909. __builtin_neon_vzipq_v(&__ret, (int8x16_t)__p0, (int8x16_t)__p1, 41);
  29910. return __ret;
  29911. }
  29912. #else
  29913. __ai float32x4x2_t vzipq_f32(float32x4_t __p0, float32x4_t __p1) {
  29914. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  29915. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  29916. float32x4x2_t __ret;
  29917. __builtin_neon_vzipq_v(&__ret, (int8x16_t)__rev0, (int8x16_t)__rev1, 41);
  29918. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0);
  29919. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0);
  29920. return __ret;
  29921. }
  29922. #endif
  29923. #ifdef __LITTLE_ENDIAN__
  29924. __ai int32x4x2_t vzipq_s32(int32x4_t __p0, int32x4_t __p1) {
  29925. int32x4x2_t __ret;
  29926. __builtin_neon_vzipq_v(&__ret, (int8x16_t)__p0, (int8x16_t)__p1, 34);
  29927. return __ret;
  29928. }
  29929. #else
  29930. __ai int32x4x2_t vzipq_s32(int32x4_t __p0, int32x4_t __p1) {
  29931. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  29932. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  29933. int32x4x2_t __ret;
  29934. __builtin_neon_vzipq_v(&__ret, (int8x16_t)__rev0, (int8x16_t)__rev1, 34);
  29935. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0);
  29936. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0);
  29937. return __ret;
  29938. }
  29939. #endif
  29940. #ifdef __LITTLE_ENDIAN__
  29941. __ai int16x8x2_t vzipq_s16(int16x8_t __p0, int16x8_t __p1) {
  29942. int16x8x2_t __ret;
  29943. __builtin_neon_vzipq_v(&__ret, (int8x16_t)__p0, (int8x16_t)__p1, 33);
  29944. return __ret;
  29945. }
  29946. #else
  29947. __ai int16x8x2_t vzipq_s16(int16x8_t __p0, int16x8_t __p1) {
  29948. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  29949. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  29950. int16x8x2_t __ret;
  29951. __builtin_neon_vzipq_v(&__ret, (int8x16_t)__rev0, (int8x16_t)__rev1, 33);
  29952. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0);
  29953. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0);
  29954. return __ret;
  29955. }
  29956. #endif
  29957. #ifdef __LITTLE_ENDIAN__
  29958. __ai uint8x8x2_t vzip_u8(uint8x8_t __p0, uint8x8_t __p1) {
  29959. uint8x8x2_t __ret;
  29960. __builtin_neon_vzip_v(&__ret, (int8x8_t)__p0, (int8x8_t)__p1, 16);
  29961. return __ret;
  29962. }
  29963. #else
  29964. __ai uint8x8x2_t vzip_u8(uint8x8_t __p0, uint8x8_t __p1) {
  29965. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  29966. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  29967. uint8x8x2_t __ret;
  29968. __builtin_neon_vzip_v(&__ret, (int8x8_t)__rev0, (int8x8_t)__rev1, 16);
  29969. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0);
  29970. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0);
  29971. return __ret;
  29972. }
  29973. #endif
  29974. #ifdef __LITTLE_ENDIAN__
  29975. __ai uint32x2x2_t vzip_u32(uint32x2_t __p0, uint32x2_t __p1) {
  29976. uint32x2x2_t __ret;
  29977. __builtin_neon_vzip_v(&__ret, (int8x8_t)__p0, (int8x8_t)__p1, 18);
  29978. return __ret;
  29979. }
  29980. #else
  29981. __ai uint32x2x2_t vzip_u32(uint32x2_t __p0, uint32x2_t __p1) {
  29982. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  29983. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  29984. uint32x2x2_t __ret;
  29985. __builtin_neon_vzip_v(&__ret, (int8x8_t)__rev0, (int8x8_t)__rev1, 18);
  29986. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0);
  29987. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0);
  29988. return __ret;
  29989. }
  29990. #endif
  29991. #ifdef __LITTLE_ENDIAN__
  29992. __ai uint16x4x2_t vzip_u16(uint16x4_t __p0, uint16x4_t __p1) {
  29993. uint16x4x2_t __ret;
  29994. __builtin_neon_vzip_v(&__ret, (int8x8_t)__p0, (int8x8_t)__p1, 17);
  29995. return __ret;
  29996. }
  29997. #else
  29998. __ai uint16x4x2_t vzip_u16(uint16x4_t __p0, uint16x4_t __p1) {
  29999. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  30000. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  30001. uint16x4x2_t __ret;
  30002. __builtin_neon_vzip_v(&__ret, (int8x8_t)__rev0, (int8x8_t)__rev1, 17);
  30003. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0);
  30004. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0);
  30005. return __ret;
  30006. }
  30007. #endif
  30008. #ifdef __LITTLE_ENDIAN__
  30009. __ai int8x8x2_t vzip_s8(int8x8_t __p0, int8x8_t __p1) {
  30010. int8x8x2_t __ret;
  30011. __builtin_neon_vzip_v(&__ret, (int8x8_t)__p0, (int8x8_t)__p1, 0);
  30012. return __ret;
  30013. }
  30014. #else
  30015. __ai int8x8x2_t vzip_s8(int8x8_t __p0, int8x8_t __p1) {
  30016. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  30017. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  30018. int8x8x2_t __ret;
  30019. __builtin_neon_vzip_v(&__ret, (int8x8_t)__rev0, (int8x8_t)__rev1, 0);
  30020. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0);
  30021. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0);
  30022. return __ret;
  30023. }
  30024. #endif
  30025. #ifdef __LITTLE_ENDIAN__
  30026. __ai float32x2x2_t vzip_f32(float32x2_t __p0, float32x2_t __p1) {
  30027. float32x2x2_t __ret;
  30028. __builtin_neon_vzip_v(&__ret, (int8x8_t)__p0, (int8x8_t)__p1, 9);
  30029. return __ret;
  30030. }
  30031. #else
  30032. __ai float32x2x2_t vzip_f32(float32x2_t __p0, float32x2_t __p1) {
  30033. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  30034. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  30035. float32x2x2_t __ret;
  30036. __builtin_neon_vzip_v(&__ret, (int8x8_t)__rev0, (int8x8_t)__rev1, 9);
  30037. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0);
  30038. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0);
  30039. return __ret;
  30040. }
  30041. #endif
  30042. #ifdef __LITTLE_ENDIAN__
  30043. __ai int32x2x2_t vzip_s32(int32x2_t __p0, int32x2_t __p1) {
  30044. int32x2x2_t __ret;
  30045. __builtin_neon_vzip_v(&__ret, (int8x8_t)__p0, (int8x8_t)__p1, 2);
  30046. return __ret;
  30047. }
  30048. #else
  30049. __ai int32x2x2_t vzip_s32(int32x2_t __p0, int32x2_t __p1) {
  30050. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  30051. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  30052. int32x2x2_t __ret;
  30053. __builtin_neon_vzip_v(&__ret, (int8x8_t)__rev0, (int8x8_t)__rev1, 2);
  30054. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0);
  30055. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0);
  30056. return __ret;
  30057. }
  30058. #endif
  30059. #ifdef __LITTLE_ENDIAN__
  30060. __ai int16x4x2_t vzip_s16(int16x4_t __p0, int16x4_t __p1) {
  30061. int16x4x2_t __ret;
  30062. __builtin_neon_vzip_v(&__ret, (int8x8_t)__p0, (int8x8_t)__p1, 1);
  30063. return __ret;
  30064. }
  30065. #else
  30066. __ai int16x4x2_t vzip_s16(int16x4_t __p0, int16x4_t __p1) {
  30067. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  30068. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  30069. int16x4x2_t __ret;
  30070. __builtin_neon_vzip_v(&__ret, (int8x8_t)__rev0, (int8x8_t)__rev1, 1);
  30071. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0);
  30072. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0);
  30073. return __ret;
  30074. }
  30075. #endif
  30076. #if !defined(__aarch64__)
  30077. #ifdef __LITTLE_ENDIAN__
  30078. #define vdupq_lane_f16(__p0, __p1) __extension__ ({ \
  30079. float16x4_t __s0 = __p0; \
  30080. float16x8_t __ret; \
  30081. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1); \
  30082. __ret; \
  30083. })
  30084. #else
  30085. #define vdupq_lane_f16(__p0, __p1) __extension__ ({ \
  30086. float16x4_t __s0 = __p0; \
  30087. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  30088. float16x8_t __ret; \
  30089. __ret = __builtin_shufflevector(__rev0, __rev0, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1); \
  30090. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  30091. __ret; \
  30092. })
  30093. #endif
  30094. #ifdef __LITTLE_ENDIAN__
  30095. #define vdup_lane_f16(__p0, __p1) __extension__ ({ \
  30096. float16x4_t __s0 = __p0; \
  30097. float16x4_t __ret; \
  30098. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1, __p1, __p1); \
  30099. __ret; \
  30100. })
  30101. #else
  30102. #define vdup_lane_f16(__p0, __p1) __extension__ ({ \
  30103. float16x4_t __s0 = __p0; \
  30104. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  30105. float16x4_t __ret; \
  30106. __ret = __builtin_shufflevector(__rev0, __rev0, __p1, __p1, __p1, __p1); \
  30107. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  30108. __ret; \
  30109. })
  30110. #endif
  30111. #ifdef __LITTLE_ENDIAN__
  30112. #define vdupq_n_f16(__p0) __extension__ ({ \
  30113. float16_t __s0 = __p0; \
  30114. float16x8_t __ret; \
  30115. __ret = (float16x8_t) {__s0, __s0, __s0, __s0, __s0, __s0, __s0, __s0}; \
  30116. __ret; \
  30117. })
  30118. #else
  30119. #define vdupq_n_f16(__p0) __extension__ ({ \
  30120. float16_t __s0 = __p0; \
  30121. float16x8_t __ret; \
  30122. __ret = (float16x8_t) {__s0, __s0, __s0, __s0, __s0, __s0, __s0, __s0}; \
  30123. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  30124. __ret; \
  30125. })
  30126. #endif
  30127. #ifdef __LITTLE_ENDIAN__
  30128. #define vdup_n_f16(__p0) __extension__ ({ \
  30129. float16_t __s0 = __p0; \
  30130. float16x4_t __ret; \
  30131. __ret = (float16x4_t) {__s0, __s0, __s0, __s0}; \
  30132. __ret; \
  30133. })
  30134. #else
  30135. #define vdup_n_f16(__p0) __extension__ ({ \
  30136. float16_t __s0 = __p0; \
  30137. float16x4_t __ret; \
  30138. __ret = (float16x4_t) {__s0, __s0, __s0, __s0}; \
  30139. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  30140. __ret; \
  30141. })
  30142. #endif
  30143. #ifdef __LITTLE_ENDIAN__
  30144. #define vmovq_n_f16(__p0) __extension__ ({ \
  30145. float16_t __s0 = __p0; \
  30146. float16x8_t __ret; \
  30147. __ret = (float16x8_t) {__s0, __s0, __s0, __s0, __s0, __s0, __s0, __s0}; \
  30148. __ret; \
  30149. })
  30150. #else
  30151. #define vmovq_n_f16(__p0) __extension__ ({ \
  30152. float16_t __s0 = __p0; \
  30153. float16x8_t __ret; \
  30154. __ret = (float16x8_t) {__s0, __s0, __s0, __s0, __s0, __s0, __s0, __s0}; \
  30155. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  30156. __ret; \
  30157. })
  30158. #endif
  30159. #ifdef __LITTLE_ENDIAN__
  30160. #define vmov_n_f16(__p0) __extension__ ({ \
  30161. float16_t __s0 = __p0; \
  30162. float16x4_t __ret; \
  30163. __ret = (float16x4_t) {__s0, __s0, __s0, __s0}; \
  30164. __ret; \
  30165. })
  30166. #else
  30167. #define vmov_n_f16(__p0) __extension__ ({ \
  30168. float16_t __s0 = __p0; \
  30169. float16x4_t __ret; \
  30170. __ret = (float16x4_t) {__s0, __s0, __s0, __s0}; \
  30171. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  30172. __ret; \
  30173. })
  30174. #endif
  30175. #ifdef __LITTLE_ENDIAN__
  30176. __ai poly8x8_t vreinterpret_p8_p16(poly16x4_t __p0) {
  30177. poly8x8_t __ret;
  30178. __ret = (poly8x8_t)(__p0);
  30179. return __ret;
  30180. }
  30181. #else
  30182. __ai poly8x8_t vreinterpret_p8_p16(poly16x4_t __p0) {
  30183. poly8x8_t __ret;
  30184. __ret = (poly8x8_t)(__p0);
  30185. return __ret;
  30186. }
  30187. #endif
  30188. #ifdef __LITTLE_ENDIAN__
  30189. __ai poly8x8_t vreinterpret_p8_u8(uint8x8_t __p0) {
  30190. poly8x8_t __ret;
  30191. __ret = (poly8x8_t)(__p0);
  30192. return __ret;
  30193. }
  30194. #else
  30195. __ai poly8x8_t vreinterpret_p8_u8(uint8x8_t __p0) {
  30196. poly8x8_t __ret;
  30197. __ret = (poly8x8_t)(__p0);
  30198. return __ret;
  30199. }
  30200. #endif
  30201. #ifdef __LITTLE_ENDIAN__
  30202. __ai poly8x8_t vreinterpret_p8_u32(uint32x2_t __p0) {
  30203. poly8x8_t __ret;
  30204. __ret = (poly8x8_t)(__p0);
  30205. return __ret;
  30206. }
  30207. #else
  30208. __ai poly8x8_t vreinterpret_p8_u32(uint32x2_t __p0) {
  30209. poly8x8_t __ret;
  30210. __ret = (poly8x8_t)(__p0);
  30211. return __ret;
  30212. }
  30213. #endif
  30214. #ifdef __LITTLE_ENDIAN__
  30215. __ai poly8x8_t vreinterpret_p8_u64(uint64x1_t __p0) {
  30216. poly8x8_t __ret;
  30217. __ret = (poly8x8_t)(__p0);
  30218. return __ret;
  30219. }
  30220. #else
  30221. __ai poly8x8_t vreinterpret_p8_u64(uint64x1_t __p0) {
  30222. poly8x8_t __ret;
  30223. __ret = (poly8x8_t)(__p0);
  30224. return __ret;
  30225. }
  30226. #endif
  30227. #ifdef __LITTLE_ENDIAN__
  30228. __ai poly8x8_t vreinterpret_p8_u16(uint16x4_t __p0) {
  30229. poly8x8_t __ret;
  30230. __ret = (poly8x8_t)(__p0);
  30231. return __ret;
  30232. }
  30233. #else
  30234. __ai poly8x8_t vreinterpret_p8_u16(uint16x4_t __p0) {
  30235. poly8x8_t __ret;
  30236. __ret = (poly8x8_t)(__p0);
  30237. return __ret;
  30238. }
  30239. #endif
  30240. #ifdef __LITTLE_ENDIAN__
  30241. __ai poly8x8_t vreinterpret_p8_s8(int8x8_t __p0) {
  30242. poly8x8_t __ret;
  30243. __ret = (poly8x8_t)(__p0);
  30244. return __ret;
  30245. }
  30246. #else
  30247. __ai poly8x8_t vreinterpret_p8_s8(int8x8_t __p0) {
  30248. poly8x8_t __ret;
  30249. __ret = (poly8x8_t)(__p0);
  30250. return __ret;
  30251. }
  30252. #endif
  30253. #ifdef __LITTLE_ENDIAN__
  30254. __ai poly8x8_t vreinterpret_p8_f32(float32x2_t __p0) {
  30255. poly8x8_t __ret;
  30256. __ret = (poly8x8_t)(__p0);
  30257. return __ret;
  30258. }
  30259. #else
  30260. __ai poly8x8_t vreinterpret_p8_f32(float32x2_t __p0) {
  30261. poly8x8_t __ret;
  30262. __ret = (poly8x8_t)(__p0);
  30263. return __ret;
  30264. }
  30265. #endif
  30266. #ifdef __LITTLE_ENDIAN__
  30267. __ai poly8x8_t vreinterpret_p8_f16(float16x4_t __p0) {
  30268. poly8x8_t __ret;
  30269. __ret = (poly8x8_t)(__p0);
  30270. return __ret;
  30271. }
  30272. #else
  30273. __ai poly8x8_t vreinterpret_p8_f16(float16x4_t __p0) {
  30274. poly8x8_t __ret;
  30275. __ret = (poly8x8_t)(__p0);
  30276. return __ret;
  30277. }
  30278. #endif
  30279. #ifdef __LITTLE_ENDIAN__
  30280. __ai poly8x8_t vreinterpret_p8_s32(int32x2_t __p0) {
  30281. poly8x8_t __ret;
  30282. __ret = (poly8x8_t)(__p0);
  30283. return __ret;
  30284. }
  30285. #else
  30286. __ai poly8x8_t vreinterpret_p8_s32(int32x2_t __p0) {
  30287. poly8x8_t __ret;
  30288. __ret = (poly8x8_t)(__p0);
  30289. return __ret;
  30290. }
  30291. #endif
  30292. #ifdef __LITTLE_ENDIAN__
  30293. __ai poly8x8_t vreinterpret_p8_s64(int64x1_t __p0) {
  30294. poly8x8_t __ret;
  30295. __ret = (poly8x8_t)(__p0);
  30296. return __ret;
  30297. }
  30298. #else
  30299. __ai poly8x8_t vreinterpret_p8_s64(int64x1_t __p0) {
  30300. poly8x8_t __ret;
  30301. __ret = (poly8x8_t)(__p0);
  30302. return __ret;
  30303. }
  30304. #endif
  30305. #ifdef __LITTLE_ENDIAN__
  30306. __ai poly8x8_t vreinterpret_p8_s16(int16x4_t __p0) {
  30307. poly8x8_t __ret;
  30308. __ret = (poly8x8_t)(__p0);
  30309. return __ret;
  30310. }
  30311. #else
  30312. __ai poly8x8_t vreinterpret_p8_s16(int16x4_t __p0) {
  30313. poly8x8_t __ret;
  30314. __ret = (poly8x8_t)(__p0);
  30315. return __ret;
  30316. }
  30317. #endif
  30318. #ifdef __LITTLE_ENDIAN__
  30319. __ai poly16x4_t vreinterpret_p16_p8(poly8x8_t __p0) {
  30320. poly16x4_t __ret;
  30321. __ret = (poly16x4_t)(__p0);
  30322. return __ret;
  30323. }
  30324. #else
  30325. __ai poly16x4_t vreinterpret_p16_p8(poly8x8_t __p0) {
  30326. poly16x4_t __ret;
  30327. __ret = (poly16x4_t)(__p0);
  30328. return __ret;
  30329. }
  30330. #endif
  30331. #ifdef __LITTLE_ENDIAN__
  30332. __ai poly16x4_t vreinterpret_p16_u8(uint8x8_t __p0) {
  30333. poly16x4_t __ret;
  30334. __ret = (poly16x4_t)(__p0);
  30335. return __ret;
  30336. }
  30337. #else
  30338. __ai poly16x4_t vreinterpret_p16_u8(uint8x8_t __p0) {
  30339. poly16x4_t __ret;
  30340. __ret = (poly16x4_t)(__p0);
  30341. return __ret;
  30342. }
  30343. #endif
  30344. #ifdef __LITTLE_ENDIAN__
  30345. __ai poly16x4_t vreinterpret_p16_u32(uint32x2_t __p0) {
  30346. poly16x4_t __ret;
  30347. __ret = (poly16x4_t)(__p0);
  30348. return __ret;
  30349. }
  30350. #else
  30351. __ai poly16x4_t vreinterpret_p16_u32(uint32x2_t __p0) {
  30352. poly16x4_t __ret;
  30353. __ret = (poly16x4_t)(__p0);
  30354. return __ret;
  30355. }
  30356. #endif
  30357. #ifdef __LITTLE_ENDIAN__
  30358. __ai poly16x4_t vreinterpret_p16_u64(uint64x1_t __p0) {
  30359. poly16x4_t __ret;
  30360. __ret = (poly16x4_t)(__p0);
  30361. return __ret;
  30362. }
  30363. #else
  30364. __ai poly16x4_t vreinterpret_p16_u64(uint64x1_t __p0) {
  30365. poly16x4_t __ret;
  30366. __ret = (poly16x4_t)(__p0);
  30367. return __ret;
  30368. }
  30369. #endif
  30370. #ifdef __LITTLE_ENDIAN__
  30371. __ai poly16x4_t vreinterpret_p16_u16(uint16x4_t __p0) {
  30372. poly16x4_t __ret;
  30373. __ret = (poly16x4_t)(__p0);
  30374. return __ret;
  30375. }
  30376. #else
  30377. __ai poly16x4_t vreinterpret_p16_u16(uint16x4_t __p0) {
  30378. poly16x4_t __ret;
  30379. __ret = (poly16x4_t)(__p0);
  30380. return __ret;
  30381. }
  30382. #endif
  30383. #ifdef __LITTLE_ENDIAN__
  30384. __ai poly16x4_t vreinterpret_p16_s8(int8x8_t __p0) {
  30385. poly16x4_t __ret;
  30386. __ret = (poly16x4_t)(__p0);
  30387. return __ret;
  30388. }
  30389. #else
  30390. __ai poly16x4_t vreinterpret_p16_s8(int8x8_t __p0) {
  30391. poly16x4_t __ret;
  30392. __ret = (poly16x4_t)(__p0);
  30393. return __ret;
  30394. }
  30395. #endif
  30396. #ifdef __LITTLE_ENDIAN__
  30397. __ai poly16x4_t vreinterpret_p16_f32(float32x2_t __p0) {
  30398. poly16x4_t __ret;
  30399. __ret = (poly16x4_t)(__p0);
  30400. return __ret;
  30401. }
  30402. #else
  30403. __ai poly16x4_t vreinterpret_p16_f32(float32x2_t __p0) {
  30404. poly16x4_t __ret;
  30405. __ret = (poly16x4_t)(__p0);
  30406. return __ret;
  30407. }
  30408. #endif
  30409. #ifdef __LITTLE_ENDIAN__
  30410. __ai poly16x4_t vreinterpret_p16_f16(float16x4_t __p0) {
  30411. poly16x4_t __ret;
  30412. __ret = (poly16x4_t)(__p0);
  30413. return __ret;
  30414. }
  30415. #else
  30416. __ai poly16x4_t vreinterpret_p16_f16(float16x4_t __p0) {
  30417. poly16x4_t __ret;
  30418. __ret = (poly16x4_t)(__p0);
  30419. return __ret;
  30420. }
  30421. #endif
  30422. #ifdef __LITTLE_ENDIAN__
  30423. __ai poly16x4_t vreinterpret_p16_s32(int32x2_t __p0) {
  30424. poly16x4_t __ret;
  30425. __ret = (poly16x4_t)(__p0);
  30426. return __ret;
  30427. }
  30428. #else
  30429. __ai poly16x4_t vreinterpret_p16_s32(int32x2_t __p0) {
  30430. poly16x4_t __ret;
  30431. __ret = (poly16x4_t)(__p0);
  30432. return __ret;
  30433. }
  30434. #endif
  30435. #ifdef __LITTLE_ENDIAN__
  30436. __ai poly16x4_t vreinterpret_p16_s64(int64x1_t __p0) {
  30437. poly16x4_t __ret;
  30438. __ret = (poly16x4_t)(__p0);
  30439. return __ret;
  30440. }
  30441. #else
  30442. __ai poly16x4_t vreinterpret_p16_s64(int64x1_t __p0) {
  30443. poly16x4_t __ret;
  30444. __ret = (poly16x4_t)(__p0);
  30445. return __ret;
  30446. }
  30447. #endif
  30448. #ifdef __LITTLE_ENDIAN__
  30449. __ai poly16x4_t vreinterpret_p16_s16(int16x4_t __p0) {
  30450. poly16x4_t __ret;
  30451. __ret = (poly16x4_t)(__p0);
  30452. return __ret;
  30453. }
  30454. #else
  30455. __ai poly16x4_t vreinterpret_p16_s16(int16x4_t __p0) {
  30456. poly16x4_t __ret;
  30457. __ret = (poly16x4_t)(__p0);
  30458. return __ret;
  30459. }
  30460. #endif
  30461. #ifdef __LITTLE_ENDIAN__
  30462. __ai poly8x16_t vreinterpretq_p8_p16(poly16x8_t __p0) {
  30463. poly8x16_t __ret;
  30464. __ret = (poly8x16_t)(__p0);
  30465. return __ret;
  30466. }
  30467. #else
  30468. __ai poly8x16_t vreinterpretq_p8_p16(poly16x8_t __p0) {
  30469. poly8x16_t __ret;
  30470. __ret = (poly8x16_t)(__p0);
  30471. return __ret;
  30472. }
  30473. #endif
  30474. #ifdef __LITTLE_ENDIAN__
  30475. __ai poly8x16_t vreinterpretq_p8_u8(uint8x16_t __p0) {
  30476. poly8x16_t __ret;
  30477. __ret = (poly8x16_t)(__p0);
  30478. return __ret;
  30479. }
  30480. #else
  30481. __ai poly8x16_t vreinterpretq_p8_u8(uint8x16_t __p0) {
  30482. poly8x16_t __ret;
  30483. __ret = (poly8x16_t)(__p0);
  30484. return __ret;
  30485. }
  30486. #endif
  30487. #ifdef __LITTLE_ENDIAN__
  30488. __ai poly8x16_t vreinterpretq_p8_u32(uint32x4_t __p0) {
  30489. poly8x16_t __ret;
  30490. __ret = (poly8x16_t)(__p0);
  30491. return __ret;
  30492. }
  30493. #else
  30494. __ai poly8x16_t vreinterpretq_p8_u32(uint32x4_t __p0) {
  30495. poly8x16_t __ret;
  30496. __ret = (poly8x16_t)(__p0);
  30497. return __ret;
  30498. }
  30499. #endif
  30500. #ifdef __LITTLE_ENDIAN__
  30501. __ai poly8x16_t vreinterpretq_p8_u64(uint64x2_t __p0) {
  30502. poly8x16_t __ret;
  30503. __ret = (poly8x16_t)(__p0);
  30504. return __ret;
  30505. }
  30506. #else
  30507. __ai poly8x16_t vreinterpretq_p8_u64(uint64x2_t __p0) {
  30508. poly8x16_t __ret;
  30509. __ret = (poly8x16_t)(__p0);
  30510. return __ret;
  30511. }
  30512. #endif
  30513. #ifdef __LITTLE_ENDIAN__
  30514. __ai poly8x16_t vreinterpretq_p8_u16(uint16x8_t __p0) {
  30515. poly8x16_t __ret;
  30516. __ret = (poly8x16_t)(__p0);
  30517. return __ret;
  30518. }
  30519. #else
  30520. __ai poly8x16_t vreinterpretq_p8_u16(uint16x8_t __p0) {
  30521. poly8x16_t __ret;
  30522. __ret = (poly8x16_t)(__p0);
  30523. return __ret;
  30524. }
  30525. #endif
  30526. #ifdef __LITTLE_ENDIAN__
  30527. __ai poly8x16_t vreinterpretq_p8_s8(int8x16_t __p0) {
  30528. poly8x16_t __ret;
  30529. __ret = (poly8x16_t)(__p0);
  30530. return __ret;
  30531. }
  30532. #else
  30533. __ai poly8x16_t vreinterpretq_p8_s8(int8x16_t __p0) {
  30534. poly8x16_t __ret;
  30535. __ret = (poly8x16_t)(__p0);
  30536. return __ret;
  30537. }
  30538. #endif
  30539. #ifdef __LITTLE_ENDIAN__
  30540. __ai poly8x16_t vreinterpretq_p8_f32(float32x4_t __p0) {
  30541. poly8x16_t __ret;
  30542. __ret = (poly8x16_t)(__p0);
  30543. return __ret;
  30544. }
  30545. #else
  30546. __ai poly8x16_t vreinterpretq_p8_f32(float32x4_t __p0) {
  30547. poly8x16_t __ret;
  30548. __ret = (poly8x16_t)(__p0);
  30549. return __ret;
  30550. }
  30551. #endif
  30552. #ifdef __LITTLE_ENDIAN__
  30553. __ai poly8x16_t vreinterpretq_p8_f16(float16x8_t __p0) {
  30554. poly8x16_t __ret;
  30555. __ret = (poly8x16_t)(__p0);
  30556. return __ret;
  30557. }
  30558. #else
  30559. __ai poly8x16_t vreinterpretq_p8_f16(float16x8_t __p0) {
  30560. poly8x16_t __ret;
  30561. __ret = (poly8x16_t)(__p0);
  30562. return __ret;
  30563. }
  30564. #endif
  30565. #ifdef __LITTLE_ENDIAN__
  30566. __ai poly8x16_t vreinterpretq_p8_s32(int32x4_t __p0) {
  30567. poly8x16_t __ret;
  30568. __ret = (poly8x16_t)(__p0);
  30569. return __ret;
  30570. }
  30571. #else
  30572. __ai poly8x16_t vreinterpretq_p8_s32(int32x4_t __p0) {
  30573. poly8x16_t __ret;
  30574. __ret = (poly8x16_t)(__p0);
  30575. return __ret;
  30576. }
  30577. #endif
  30578. #ifdef __LITTLE_ENDIAN__
  30579. __ai poly8x16_t vreinterpretq_p8_s64(int64x2_t __p0) {
  30580. poly8x16_t __ret;
  30581. __ret = (poly8x16_t)(__p0);
  30582. return __ret;
  30583. }
  30584. #else
  30585. __ai poly8x16_t vreinterpretq_p8_s64(int64x2_t __p0) {
  30586. poly8x16_t __ret;
  30587. __ret = (poly8x16_t)(__p0);
  30588. return __ret;
  30589. }
  30590. #endif
  30591. #ifdef __LITTLE_ENDIAN__
  30592. __ai poly8x16_t vreinterpretq_p8_s16(int16x8_t __p0) {
  30593. poly8x16_t __ret;
  30594. __ret = (poly8x16_t)(__p0);
  30595. return __ret;
  30596. }
  30597. #else
  30598. __ai poly8x16_t vreinterpretq_p8_s16(int16x8_t __p0) {
  30599. poly8x16_t __ret;
  30600. __ret = (poly8x16_t)(__p0);
  30601. return __ret;
  30602. }
  30603. #endif
  30604. #ifdef __LITTLE_ENDIAN__
  30605. __ai poly16x8_t vreinterpretq_p16_p8(poly8x16_t __p0) {
  30606. poly16x8_t __ret;
  30607. __ret = (poly16x8_t)(__p0);
  30608. return __ret;
  30609. }
  30610. #else
  30611. __ai poly16x8_t vreinterpretq_p16_p8(poly8x16_t __p0) {
  30612. poly16x8_t __ret;
  30613. __ret = (poly16x8_t)(__p0);
  30614. return __ret;
  30615. }
  30616. #endif
  30617. #ifdef __LITTLE_ENDIAN__
  30618. __ai poly16x8_t vreinterpretq_p16_u8(uint8x16_t __p0) {
  30619. poly16x8_t __ret;
  30620. __ret = (poly16x8_t)(__p0);
  30621. return __ret;
  30622. }
  30623. #else
  30624. __ai poly16x8_t vreinterpretq_p16_u8(uint8x16_t __p0) {
  30625. poly16x8_t __ret;
  30626. __ret = (poly16x8_t)(__p0);
  30627. return __ret;
  30628. }
  30629. #endif
  30630. #ifdef __LITTLE_ENDIAN__
  30631. __ai poly16x8_t vreinterpretq_p16_u32(uint32x4_t __p0) {
  30632. poly16x8_t __ret;
  30633. __ret = (poly16x8_t)(__p0);
  30634. return __ret;
  30635. }
  30636. #else
  30637. __ai poly16x8_t vreinterpretq_p16_u32(uint32x4_t __p0) {
  30638. poly16x8_t __ret;
  30639. __ret = (poly16x8_t)(__p0);
  30640. return __ret;
  30641. }
  30642. #endif
  30643. #ifdef __LITTLE_ENDIAN__
  30644. __ai poly16x8_t vreinterpretq_p16_u64(uint64x2_t __p0) {
  30645. poly16x8_t __ret;
  30646. __ret = (poly16x8_t)(__p0);
  30647. return __ret;
  30648. }
  30649. #else
  30650. __ai poly16x8_t vreinterpretq_p16_u64(uint64x2_t __p0) {
  30651. poly16x8_t __ret;
  30652. __ret = (poly16x8_t)(__p0);
  30653. return __ret;
  30654. }
  30655. #endif
  30656. #ifdef __LITTLE_ENDIAN__
  30657. __ai poly16x8_t vreinterpretq_p16_u16(uint16x8_t __p0) {
  30658. poly16x8_t __ret;
  30659. __ret = (poly16x8_t)(__p0);
  30660. return __ret;
  30661. }
  30662. #else
  30663. __ai poly16x8_t vreinterpretq_p16_u16(uint16x8_t __p0) {
  30664. poly16x8_t __ret;
  30665. __ret = (poly16x8_t)(__p0);
  30666. return __ret;
  30667. }
  30668. #endif
  30669. #ifdef __LITTLE_ENDIAN__
  30670. __ai poly16x8_t vreinterpretq_p16_s8(int8x16_t __p0) {
  30671. poly16x8_t __ret;
  30672. __ret = (poly16x8_t)(__p0);
  30673. return __ret;
  30674. }
  30675. #else
  30676. __ai poly16x8_t vreinterpretq_p16_s8(int8x16_t __p0) {
  30677. poly16x8_t __ret;
  30678. __ret = (poly16x8_t)(__p0);
  30679. return __ret;
  30680. }
  30681. #endif
  30682. #ifdef __LITTLE_ENDIAN__
  30683. __ai poly16x8_t vreinterpretq_p16_f32(float32x4_t __p0) {
  30684. poly16x8_t __ret;
  30685. __ret = (poly16x8_t)(__p0);
  30686. return __ret;
  30687. }
  30688. #else
  30689. __ai poly16x8_t vreinterpretq_p16_f32(float32x4_t __p0) {
  30690. poly16x8_t __ret;
  30691. __ret = (poly16x8_t)(__p0);
  30692. return __ret;
  30693. }
  30694. #endif
  30695. #ifdef __LITTLE_ENDIAN__
  30696. __ai poly16x8_t vreinterpretq_p16_f16(float16x8_t __p0) {
  30697. poly16x8_t __ret;
  30698. __ret = (poly16x8_t)(__p0);
  30699. return __ret;
  30700. }
  30701. #else
  30702. __ai poly16x8_t vreinterpretq_p16_f16(float16x8_t __p0) {
  30703. poly16x8_t __ret;
  30704. __ret = (poly16x8_t)(__p0);
  30705. return __ret;
  30706. }
  30707. #endif
  30708. #ifdef __LITTLE_ENDIAN__
  30709. __ai poly16x8_t vreinterpretq_p16_s32(int32x4_t __p0) {
  30710. poly16x8_t __ret;
  30711. __ret = (poly16x8_t)(__p0);
  30712. return __ret;
  30713. }
  30714. #else
  30715. __ai poly16x8_t vreinterpretq_p16_s32(int32x4_t __p0) {
  30716. poly16x8_t __ret;
  30717. __ret = (poly16x8_t)(__p0);
  30718. return __ret;
  30719. }
  30720. #endif
  30721. #ifdef __LITTLE_ENDIAN__
  30722. __ai poly16x8_t vreinterpretq_p16_s64(int64x2_t __p0) {
  30723. poly16x8_t __ret;
  30724. __ret = (poly16x8_t)(__p0);
  30725. return __ret;
  30726. }
  30727. #else
  30728. __ai poly16x8_t vreinterpretq_p16_s64(int64x2_t __p0) {
  30729. poly16x8_t __ret;
  30730. __ret = (poly16x8_t)(__p0);
  30731. return __ret;
  30732. }
  30733. #endif
  30734. #ifdef __LITTLE_ENDIAN__
  30735. __ai poly16x8_t vreinterpretq_p16_s16(int16x8_t __p0) {
  30736. poly16x8_t __ret;
  30737. __ret = (poly16x8_t)(__p0);
  30738. return __ret;
  30739. }
  30740. #else
  30741. __ai poly16x8_t vreinterpretq_p16_s16(int16x8_t __p0) {
  30742. poly16x8_t __ret;
  30743. __ret = (poly16x8_t)(__p0);
  30744. return __ret;
  30745. }
  30746. #endif
  30747. #ifdef __LITTLE_ENDIAN__
  30748. __ai uint8x16_t vreinterpretq_u8_p8(poly8x16_t __p0) {
  30749. uint8x16_t __ret;
  30750. __ret = (uint8x16_t)(__p0);
  30751. return __ret;
  30752. }
  30753. #else
  30754. __ai uint8x16_t vreinterpretq_u8_p8(poly8x16_t __p0) {
  30755. uint8x16_t __ret;
  30756. __ret = (uint8x16_t)(__p0);
  30757. return __ret;
  30758. }
  30759. #endif
  30760. #ifdef __LITTLE_ENDIAN__
  30761. __ai uint8x16_t vreinterpretq_u8_p16(poly16x8_t __p0) {
  30762. uint8x16_t __ret;
  30763. __ret = (uint8x16_t)(__p0);
  30764. return __ret;
  30765. }
  30766. #else
  30767. __ai uint8x16_t vreinterpretq_u8_p16(poly16x8_t __p0) {
  30768. uint8x16_t __ret;
  30769. __ret = (uint8x16_t)(__p0);
  30770. return __ret;
  30771. }
  30772. #endif
  30773. #ifdef __LITTLE_ENDIAN__
  30774. __ai uint8x16_t vreinterpretq_u8_u32(uint32x4_t __p0) {
  30775. uint8x16_t __ret;
  30776. __ret = (uint8x16_t)(__p0);
  30777. return __ret;
  30778. }
  30779. #else
  30780. __ai uint8x16_t vreinterpretq_u8_u32(uint32x4_t __p0) {
  30781. uint8x16_t __ret;
  30782. __ret = (uint8x16_t)(__p0);
  30783. return __ret;
  30784. }
  30785. #endif
  30786. #ifdef __LITTLE_ENDIAN__
  30787. __ai uint8x16_t vreinterpretq_u8_u64(uint64x2_t __p0) {
  30788. uint8x16_t __ret;
  30789. __ret = (uint8x16_t)(__p0);
  30790. return __ret;
  30791. }
  30792. #else
  30793. __ai uint8x16_t vreinterpretq_u8_u64(uint64x2_t __p0) {
  30794. uint8x16_t __ret;
  30795. __ret = (uint8x16_t)(__p0);
  30796. return __ret;
  30797. }
  30798. #endif
  30799. #ifdef __LITTLE_ENDIAN__
  30800. __ai uint8x16_t vreinterpretq_u8_u16(uint16x8_t __p0) {
  30801. uint8x16_t __ret;
  30802. __ret = (uint8x16_t)(__p0);
  30803. return __ret;
  30804. }
  30805. #else
  30806. __ai uint8x16_t vreinterpretq_u8_u16(uint16x8_t __p0) {
  30807. uint8x16_t __ret;
  30808. __ret = (uint8x16_t)(__p0);
  30809. return __ret;
  30810. }
  30811. #endif
  30812. #ifdef __LITTLE_ENDIAN__
  30813. __ai uint8x16_t vreinterpretq_u8_s8(int8x16_t __p0) {
  30814. uint8x16_t __ret;
  30815. __ret = (uint8x16_t)(__p0);
  30816. return __ret;
  30817. }
  30818. #else
  30819. __ai uint8x16_t vreinterpretq_u8_s8(int8x16_t __p0) {
  30820. uint8x16_t __ret;
  30821. __ret = (uint8x16_t)(__p0);
  30822. return __ret;
  30823. }
  30824. #endif
  30825. #ifdef __LITTLE_ENDIAN__
  30826. __ai uint8x16_t vreinterpretq_u8_f32(float32x4_t __p0) {
  30827. uint8x16_t __ret;
  30828. __ret = (uint8x16_t)(__p0);
  30829. return __ret;
  30830. }
  30831. #else
  30832. __ai uint8x16_t vreinterpretq_u8_f32(float32x4_t __p0) {
  30833. uint8x16_t __ret;
  30834. __ret = (uint8x16_t)(__p0);
  30835. return __ret;
  30836. }
  30837. #endif
  30838. #ifdef __LITTLE_ENDIAN__
  30839. __ai uint8x16_t vreinterpretq_u8_f16(float16x8_t __p0) {
  30840. uint8x16_t __ret;
  30841. __ret = (uint8x16_t)(__p0);
  30842. return __ret;
  30843. }
  30844. #else
  30845. __ai uint8x16_t vreinterpretq_u8_f16(float16x8_t __p0) {
  30846. uint8x16_t __ret;
  30847. __ret = (uint8x16_t)(__p0);
  30848. return __ret;
  30849. }
  30850. #endif
  30851. #ifdef __LITTLE_ENDIAN__
  30852. __ai uint8x16_t vreinterpretq_u8_s32(int32x4_t __p0) {
  30853. uint8x16_t __ret;
  30854. __ret = (uint8x16_t)(__p0);
  30855. return __ret;
  30856. }
  30857. #else
  30858. __ai uint8x16_t vreinterpretq_u8_s32(int32x4_t __p0) {
  30859. uint8x16_t __ret;
  30860. __ret = (uint8x16_t)(__p0);
  30861. return __ret;
  30862. }
  30863. #endif
  30864. #ifdef __LITTLE_ENDIAN__
  30865. __ai uint8x16_t vreinterpretq_u8_s64(int64x2_t __p0) {
  30866. uint8x16_t __ret;
  30867. __ret = (uint8x16_t)(__p0);
  30868. return __ret;
  30869. }
  30870. #else
  30871. __ai uint8x16_t vreinterpretq_u8_s64(int64x2_t __p0) {
  30872. uint8x16_t __ret;
  30873. __ret = (uint8x16_t)(__p0);
  30874. return __ret;
  30875. }
  30876. #endif
  30877. #ifdef __LITTLE_ENDIAN__
  30878. __ai uint8x16_t vreinterpretq_u8_s16(int16x8_t __p0) {
  30879. uint8x16_t __ret;
  30880. __ret = (uint8x16_t)(__p0);
  30881. return __ret;
  30882. }
  30883. #else
  30884. __ai uint8x16_t vreinterpretq_u8_s16(int16x8_t __p0) {
  30885. uint8x16_t __ret;
  30886. __ret = (uint8x16_t)(__p0);
  30887. return __ret;
  30888. }
  30889. #endif
  30890. #ifdef __LITTLE_ENDIAN__
  30891. __ai uint32x4_t vreinterpretq_u32_p8(poly8x16_t __p0) {
  30892. uint32x4_t __ret;
  30893. __ret = (uint32x4_t)(__p0);
  30894. return __ret;
  30895. }
  30896. #else
  30897. __ai uint32x4_t vreinterpretq_u32_p8(poly8x16_t __p0) {
  30898. uint32x4_t __ret;
  30899. __ret = (uint32x4_t)(__p0);
  30900. return __ret;
  30901. }
  30902. #endif
  30903. #ifdef __LITTLE_ENDIAN__
  30904. __ai uint32x4_t vreinterpretq_u32_p16(poly16x8_t __p0) {
  30905. uint32x4_t __ret;
  30906. __ret = (uint32x4_t)(__p0);
  30907. return __ret;
  30908. }
  30909. #else
  30910. __ai uint32x4_t vreinterpretq_u32_p16(poly16x8_t __p0) {
  30911. uint32x4_t __ret;
  30912. __ret = (uint32x4_t)(__p0);
  30913. return __ret;
  30914. }
  30915. #endif
  30916. #ifdef __LITTLE_ENDIAN__
  30917. __ai uint32x4_t vreinterpretq_u32_u8(uint8x16_t __p0) {
  30918. uint32x4_t __ret;
  30919. __ret = (uint32x4_t)(__p0);
  30920. return __ret;
  30921. }
  30922. #else
  30923. __ai uint32x4_t vreinterpretq_u32_u8(uint8x16_t __p0) {
  30924. uint32x4_t __ret;
  30925. __ret = (uint32x4_t)(__p0);
  30926. return __ret;
  30927. }
  30928. #endif
  30929. #ifdef __LITTLE_ENDIAN__
  30930. __ai uint32x4_t vreinterpretq_u32_u64(uint64x2_t __p0) {
  30931. uint32x4_t __ret;
  30932. __ret = (uint32x4_t)(__p0);
  30933. return __ret;
  30934. }
  30935. #else
  30936. __ai uint32x4_t vreinterpretq_u32_u64(uint64x2_t __p0) {
  30937. uint32x4_t __ret;
  30938. __ret = (uint32x4_t)(__p0);
  30939. return __ret;
  30940. }
  30941. #endif
  30942. #ifdef __LITTLE_ENDIAN__
  30943. __ai uint32x4_t vreinterpretq_u32_u16(uint16x8_t __p0) {
  30944. uint32x4_t __ret;
  30945. __ret = (uint32x4_t)(__p0);
  30946. return __ret;
  30947. }
  30948. #else
  30949. __ai uint32x4_t vreinterpretq_u32_u16(uint16x8_t __p0) {
  30950. uint32x4_t __ret;
  30951. __ret = (uint32x4_t)(__p0);
  30952. return __ret;
  30953. }
  30954. #endif
  30955. #ifdef __LITTLE_ENDIAN__
  30956. __ai uint32x4_t vreinterpretq_u32_s8(int8x16_t __p0) {
  30957. uint32x4_t __ret;
  30958. __ret = (uint32x4_t)(__p0);
  30959. return __ret;
  30960. }
  30961. #else
  30962. __ai uint32x4_t vreinterpretq_u32_s8(int8x16_t __p0) {
  30963. uint32x4_t __ret;
  30964. __ret = (uint32x4_t)(__p0);
  30965. return __ret;
  30966. }
  30967. #endif
  30968. #ifdef __LITTLE_ENDIAN__
  30969. __ai uint32x4_t vreinterpretq_u32_f32(float32x4_t __p0) {
  30970. uint32x4_t __ret;
  30971. __ret = (uint32x4_t)(__p0);
  30972. return __ret;
  30973. }
  30974. #else
  30975. __ai uint32x4_t vreinterpretq_u32_f32(float32x4_t __p0) {
  30976. uint32x4_t __ret;
  30977. __ret = (uint32x4_t)(__p0);
  30978. return __ret;
  30979. }
  30980. #endif
  30981. #ifdef __LITTLE_ENDIAN__
  30982. __ai uint32x4_t vreinterpretq_u32_f16(float16x8_t __p0) {
  30983. uint32x4_t __ret;
  30984. __ret = (uint32x4_t)(__p0);
  30985. return __ret;
  30986. }
  30987. #else
  30988. __ai uint32x4_t vreinterpretq_u32_f16(float16x8_t __p0) {
  30989. uint32x4_t __ret;
  30990. __ret = (uint32x4_t)(__p0);
  30991. return __ret;
  30992. }
  30993. #endif
  30994. #ifdef __LITTLE_ENDIAN__
  30995. __ai uint32x4_t vreinterpretq_u32_s32(int32x4_t __p0) {
  30996. uint32x4_t __ret;
  30997. __ret = (uint32x4_t)(__p0);
  30998. return __ret;
  30999. }
  31000. #else
  31001. __ai uint32x4_t vreinterpretq_u32_s32(int32x4_t __p0) {
  31002. uint32x4_t __ret;
  31003. __ret = (uint32x4_t)(__p0);
  31004. return __ret;
  31005. }
  31006. #endif
  31007. #ifdef __LITTLE_ENDIAN__
  31008. __ai uint32x4_t vreinterpretq_u32_s64(int64x2_t __p0) {
  31009. uint32x4_t __ret;
  31010. __ret = (uint32x4_t)(__p0);
  31011. return __ret;
  31012. }
  31013. #else
  31014. __ai uint32x4_t vreinterpretq_u32_s64(int64x2_t __p0) {
  31015. uint32x4_t __ret;
  31016. __ret = (uint32x4_t)(__p0);
  31017. return __ret;
  31018. }
  31019. #endif
  31020. #ifdef __LITTLE_ENDIAN__
  31021. __ai uint32x4_t vreinterpretq_u32_s16(int16x8_t __p0) {
  31022. uint32x4_t __ret;
  31023. __ret = (uint32x4_t)(__p0);
  31024. return __ret;
  31025. }
  31026. #else
  31027. __ai uint32x4_t vreinterpretq_u32_s16(int16x8_t __p0) {
  31028. uint32x4_t __ret;
  31029. __ret = (uint32x4_t)(__p0);
  31030. return __ret;
  31031. }
  31032. #endif
  31033. #ifdef __LITTLE_ENDIAN__
  31034. __ai uint64x2_t vreinterpretq_u64_p8(poly8x16_t __p0) {
  31035. uint64x2_t __ret;
  31036. __ret = (uint64x2_t)(__p0);
  31037. return __ret;
  31038. }
  31039. #else
  31040. __ai uint64x2_t vreinterpretq_u64_p8(poly8x16_t __p0) {
  31041. uint64x2_t __ret;
  31042. __ret = (uint64x2_t)(__p0);
  31043. return __ret;
  31044. }
  31045. #endif
  31046. #ifdef __LITTLE_ENDIAN__
  31047. __ai uint64x2_t vreinterpretq_u64_p16(poly16x8_t __p0) {
  31048. uint64x2_t __ret;
  31049. __ret = (uint64x2_t)(__p0);
  31050. return __ret;
  31051. }
  31052. #else
  31053. __ai uint64x2_t vreinterpretq_u64_p16(poly16x8_t __p0) {
  31054. uint64x2_t __ret;
  31055. __ret = (uint64x2_t)(__p0);
  31056. return __ret;
  31057. }
  31058. #endif
  31059. #ifdef __LITTLE_ENDIAN__
  31060. __ai uint64x2_t vreinterpretq_u64_u8(uint8x16_t __p0) {
  31061. uint64x2_t __ret;
  31062. __ret = (uint64x2_t)(__p0);
  31063. return __ret;
  31064. }
  31065. #else
  31066. __ai uint64x2_t vreinterpretq_u64_u8(uint8x16_t __p0) {
  31067. uint64x2_t __ret;
  31068. __ret = (uint64x2_t)(__p0);
  31069. return __ret;
  31070. }
  31071. #endif
  31072. #ifdef __LITTLE_ENDIAN__
  31073. __ai uint64x2_t vreinterpretq_u64_u32(uint32x4_t __p0) {
  31074. uint64x2_t __ret;
  31075. __ret = (uint64x2_t)(__p0);
  31076. return __ret;
  31077. }
  31078. #else
  31079. __ai uint64x2_t vreinterpretq_u64_u32(uint32x4_t __p0) {
  31080. uint64x2_t __ret;
  31081. __ret = (uint64x2_t)(__p0);
  31082. return __ret;
  31083. }
  31084. #endif
  31085. #ifdef __LITTLE_ENDIAN__
  31086. __ai uint64x2_t vreinterpretq_u64_u16(uint16x8_t __p0) {
  31087. uint64x2_t __ret;
  31088. __ret = (uint64x2_t)(__p0);
  31089. return __ret;
  31090. }
  31091. #else
  31092. __ai uint64x2_t vreinterpretq_u64_u16(uint16x8_t __p0) {
  31093. uint64x2_t __ret;
  31094. __ret = (uint64x2_t)(__p0);
  31095. return __ret;
  31096. }
  31097. #endif
  31098. #ifdef __LITTLE_ENDIAN__
  31099. __ai uint64x2_t vreinterpretq_u64_s8(int8x16_t __p0) {
  31100. uint64x2_t __ret;
  31101. __ret = (uint64x2_t)(__p0);
  31102. return __ret;
  31103. }
  31104. #else
  31105. __ai uint64x2_t vreinterpretq_u64_s8(int8x16_t __p0) {
  31106. uint64x2_t __ret;
  31107. __ret = (uint64x2_t)(__p0);
  31108. return __ret;
  31109. }
  31110. #endif
  31111. #ifdef __LITTLE_ENDIAN__
  31112. __ai uint64x2_t vreinterpretq_u64_f32(float32x4_t __p0) {
  31113. uint64x2_t __ret;
  31114. __ret = (uint64x2_t)(__p0);
  31115. return __ret;
  31116. }
  31117. #else
  31118. __ai uint64x2_t vreinterpretq_u64_f32(float32x4_t __p0) {
  31119. uint64x2_t __ret;
  31120. __ret = (uint64x2_t)(__p0);
  31121. return __ret;
  31122. }
  31123. #endif
  31124. #ifdef __LITTLE_ENDIAN__
  31125. __ai uint64x2_t vreinterpretq_u64_f16(float16x8_t __p0) {
  31126. uint64x2_t __ret;
  31127. __ret = (uint64x2_t)(__p0);
  31128. return __ret;
  31129. }
  31130. #else
  31131. __ai uint64x2_t vreinterpretq_u64_f16(float16x8_t __p0) {
  31132. uint64x2_t __ret;
  31133. __ret = (uint64x2_t)(__p0);
  31134. return __ret;
  31135. }
  31136. #endif
  31137. #ifdef __LITTLE_ENDIAN__
  31138. __ai uint64x2_t vreinterpretq_u64_s32(int32x4_t __p0) {
  31139. uint64x2_t __ret;
  31140. __ret = (uint64x2_t)(__p0);
  31141. return __ret;
  31142. }
  31143. #else
  31144. __ai uint64x2_t vreinterpretq_u64_s32(int32x4_t __p0) {
  31145. uint64x2_t __ret;
  31146. __ret = (uint64x2_t)(__p0);
  31147. return __ret;
  31148. }
  31149. #endif
  31150. #ifdef __LITTLE_ENDIAN__
  31151. __ai uint64x2_t vreinterpretq_u64_s64(int64x2_t __p0) {
  31152. uint64x2_t __ret;
  31153. __ret = (uint64x2_t)(__p0);
  31154. return __ret;
  31155. }
  31156. #else
  31157. __ai uint64x2_t vreinterpretq_u64_s64(int64x2_t __p0) {
  31158. uint64x2_t __ret;
  31159. __ret = (uint64x2_t)(__p0);
  31160. return __ret;
  31161. }
  31162. #endif
  31163. #ifdef __LITTLE_ENDIAN__
  31164. __ai uint64x2_t vreinterpretq_u64_s16(int16x8_t __p0) {
  31165. uint64x2_t __ret;
  31166. __ret = (uint64x2_t)(__p0);
  31167. return __ret;
  31168. }
  31169. #else
  31170. __ai uint64x2_t vreinterpretq_u64_s16(int16x8_t __p0) {
  31171. uint64x2_t __ret;
  31172. __ret = (uint64x2_t)(__p0);
  31173. return __ret;
  31174. }
  31175. #endif
  31176. #ifdef __LITTLE_ENDIAN__
  31177. __ai uint16x8_t vreinterpretq_u16_p8(poly8x16_t __p0) {
  31178. uint16x8_t __ret;
  31179. __ret = (uint16x8_t)(__p0);
  31180. return __ret;
  31181. }
  31182. #else
  31183. __ai uint16x8_t vreinterpretq_u16_p8(poly8x16_t __p0) {
  31184. uint16x8_t __ret;
  31185. __ret = (uint16x8_t)(__p0);
  31186. return __ret;
  31187. }
  31188. #endif
  31189. #ifdef __LITTLE_ENDIAN__
  31190. __ai uint16x8_t vreinterpretq_u16_p16(poly16x8_t __p0) {
  31191. uint16x8_t __ret;
  31192. __ret = (uint16x8_t)(__p0);
  31193. return __ret;
  31194. }
  31195. #else
  31196. __ai uint16x8_t vreinterpretq_u16_p16(poly16x8_t __p0) {
  31197. uint16x8_t __ret;
  31198. __ret = (uint16x8_t)(__p0);
  31199. return __ret;
  31200. }
  31201. #endif
  31202. #ifdef __LITTLE_ENDIAN__
  31203. __ai uint16x8_t vreinterpretq_u16_u8(uint8x16_t __p0) {
  31204. uint16x8_t __ret;
  31205. __ret = (uint16x8_t)(__p0);
  31206. return __ret;
  31207. }
  31208. #else
  31209. __ai uint16x8_t vreinterpretq_u16_u8(uint8x16_t __p0) {
  31210. uint16x8_t __ret;
  31211. __ret = (uint16x8_t)(__p0);
  31212. return __ret;
  31213. }
  31214. #endif
  31215. #ifdef __LITTLE_ENDIAN__
  31216. __ai uint16x8_t vreinterpretq_u16_u32(uint32x4_t __p0) {
  31217. uint16x8_t __ret;
  31218. __ret = (uint16x8_t)(__p0);
  31219. return __ret;
  31220. }
  31221. #else
  31222. __ai uint16x8_t vreinterpretq_u16_u32(uint32x4_t __p0) {
  31223. uint16x8_t __ret;
  31224. __ret = (uint16x8_t)(__p0);
  31225. return __ret;
  31226. }
  31227. #endif
  31228. #ifdef __LITTLE_ENDIAN__
  31229. __ai uint16x8_t vreinterpretq_u16_u64(uint64x2_t __p0) {
  31230. uint16x8_t __ret;
  31231. __ret = (uint16x8_t)(__p0);
  31232. return __ret;
  31233. }
  31234. #else
  31235. __ai uint16x8_t vreinterpretq_u16_u64(uint64x2_t __p0) {
  31236. uint16x8_t __ret;
  31237. __ret = (uint16x8_t)(__p0);
  31238. return __ret;
  31239. }
  31240. #endif
  31241. #ifdef __LITTLE_ENDIAN__
  31242. __ai uint16x8_t vreinterpretq_u16_s8(int8x16_t __p0) {
  31243. uint16x8_t __ret;
  31244. __ret = (uint16x8_t)(__p0);
  31245. return __ret;
  31246. }
  31247. #else
  31248. __ai uint16x8_t vreinterpretq_u16_s8(int8x16_t __p0) {
  31249. uint16x8_t __ret;
  31250. __ret = (uint16x8_t)(__p0);
  31251. return __ret;
  31252. }
  31253. #endif
  31254. #ifdef __LITTLE_ENDIAN__
  31255. __ai uint16x8_t vreinterpretq_u16_f32(float32x4_t __p0) {
  31256. uint16x8_t __ret;
  31257. __ret = (uint16x8_t)(__p0);
  31258. return __ret;
  31259. }
  31260. #else
  31261. __ai uint16x8_t vreinterpretq_u16_f32(float32x4_t __p0) {
  31262. uint16x8_t __ret;
  31263. __ret = (uint16x8_t)(__p0);
  31264. return __ret;
  31265. }
  31266. #endif
  31267. #ifdef __LITTLE_ENDIAN__
  31268. __ai uint16x8_t vreinterpretq_u16_f16(float16x8_t __p0) {
  31269. uint16x8_t __ret;
  31270. __ret = (uint16x8_t)(__p0);
  31271. return __ret;
  31272. }
  31273. #else
  31274. __ai uint16x8_t vreinterpretq_u16_f16(float16x8_t __p0) {
  31275. uint16x8_t __ret;
  31276. __ret = (uint16x8_t)(__p0);
  31277. return __ret;
  31278. }
  31279. #endif
  31280. #ifdef __LITTLE_ENDIAN__
  31281. __ai uint16x8_t vreinterpretq_u16_s32(int32x4_t __p0) {
  31282. uint16x8_t __ret;
  31283. __ret = (uint16x8_t)(__p0);
  31284. return __ret;
  31285. }
  31286. #else
  31287. __ai uint16x8_t vreinterpretq_u16_s32(int32x4_t __p0) {
  31288. uint16x8_t __ret;
  31289. __ret = (uint16x8_t)(__p0);
  31290. return __ret;
  31291. }
  31292. #endif
  31293. #ifdef __LITTLE_ENDIAN__
  31294. __ai uint16x8_t vreinterpretq_u16_s64(int64x2_t __p0) {
  31295. uint16x8_t __ret;
  31296. __ret = (uint16x8_t)(__p0);
  31297. return __ret;
  31298. }
  31299. #else
  31300. __ai uint16x8_t vreinterpretq_u16_s64(int64x2_t __p0) {
  31301. uint16x8_t __ret;
  31302. __ret = (uint16x8_t)(__p0);
  31303. return __ret;
  31304. }
  31305. #endif
  31306. #ifdef __LITTLE_ENDIAN__
  31307. __ai uint16x8_t vreinterpretq_u16_s16(int16x8_t __p0) {
  31308. uint16x8_t __ret;
  31309. __ret = (uint16x8_t)(__p0);
  31310. return __ret;
  31311. }
  31312. #else
  31313. __ai uint16x8_t vreinterpretq_u16_s16(int16x8_t __p0) {
  31314. uint16x8_t __ret;
  31315. __ret = (uint16x8_t)(__p0);
  31316. return __ret;
  31317. }
  31318. #endif
  31319. #ifdef __LITTLE_ENDIAN__
  31320. __ai int8x16_t vreinterpretq_s8_p8(poly8x16_t __p0) {
  31321. int8x16_t __ret;
  31322. __ret = (int8x16_t)(__p0);
  31323. return __ret;
  31324. }
  31325. #else
  31326. __ai int8x16_t vreinterpretq_s8_p8(poly8x16_t __p0) {
  31327. int8x16_t __ret;
  31328. __ret = (int8x16_t)(__p0);
  31329. return __ret;
  31330. }
  31331. #endif
  31332. #ifdef __LITTLE_ENDIAN__
  31333. __ai int8x16_t vreinterpretq_s8_p16(poly16x8_t __p0) {
  31334. int8x16_t __ret;
  31335. __ret = (int8x16_t)(__p0);
  31336. return __ret;
  31337. }
  31338. #else
  31339. __ai int8x16_t vreinterpretq_s8_p16(poly16x8_t __p0) {
  31340. int8x16_t __ret;
  31341. __ret = (int8x16_t)(__p0);
  31342. return __ret;
  31343. }
  31344. #endif
  31345. #ifdef __LITTLE_ENDIAN__
  31346. __ai int8x16_t vreinterpretq_s8_u8(uint8x16_t __p0) {
  31347. int8x16_t __ret;
  31348. __ret = (int8x16_t)(__p0);
  31349. return __ret;
  31350. }
  31351. #else
  31352. __ai int8x16_t vreinterpretq_s8_u8(uint8x16_t __p0) {
  31353. int8x16_t __ret;
  31354. __ret = (int8x16_t)(__p0);
  31355. return __ret;
  31356. }
  31357. #endif
  31358. #ifdef __LITTLE_ENDIAN__
  31359. __ai int8x16_t vreinterpretq_s8_u32(uint32x4_t __p0) {
  31360. int8x16_t __ret;
  31361. __ret = (int8x16_t)(__p0);
  31362. return __ret;
  31363. }
  31364. #else
  31365. __ai int8x16_t vreinterpretq_s8_u32(uint32x4_t __p0) {
  31366. int8x16_t __ret;
  31367. __ret = (int8x16_t)(__p0);
  31368. return __ret;
  31369. }
  31370. #endif
  31371. #ifdef __LITTLE_ENDIAN__
  31372. __ai int8x16_t vreinterpretq_s8_u64(uint64x2_t __p0) {
  31373. int8x16_t __ret;
  31374. __ret = (int8x16_t)(__p0);
  31375. return __ret;
  31376. }
  31377. #else
  31378. __ai int8x16_t vreinterpretq_s8_u64(uint64x2_t __p0) {
  31379. int8x16_t __ret;
  31380. __ret = (int8x16_t)(__p0);
  31381. return __ret;
  31382. }
  31383. #endif
  31384. #ifdef __LITTLE_ENDIAN__
  31385. __ai int8x16_t vreinterpretq_s8_u16(uint16x8_t __p0) {
  31386. int8x16_t __ret;
  31387. __ret = (int8x16_t)(__p0);
  31388. return __ret;
  31389. }
  31390. #else
  31391. __ai int8x16_t vreinterpretq_s8_u16(uint16x8_t __p0) {
  31392. int8x16_t __ret;
  31393. __ret = (int8x16_t)(__p0);
  31394. return __ret;
  31395. }
  31396. #endif
  31397. #ifdef __LITTLE_ENDIAN__
  31398. __ai int8x16_t vreinterpretq_s8_f32(float32x4_t __p0) {
  31399. int8x16_t __ret;
  31400. __ret = (int8x16_t)(__p0);
  31401. return __ret;
  31402. }
  31403. #else
  31404. __ai int8x16_t vreinterpretq_s8_f32(float32x4_t __p0) {
  31405. int8x16_t __ret;
  31406. __ret = (int8x16_t)(__p0);
  31407. return __ret;
  31408. }
  31409. #endif
  31410. #ifdef __LITTLE_ENDIAN__
  31411. __ai int8x16_t vreinterpretq_s8_f16(float16x8_t __p0) {
  31412. int8x16_t __ret;
  31413. __ret = (int8x16_t)(__p0);
  31414. return __ret;
  31415. }
  31416. #else
  31417. __ai int8x16_t vreinterpretq_s8_f16(float16x8_t __p0) {
  31418. int8x16_t __ret;
  31419. __ret = (int8x16_t)(__p0);
  31420. return __ret;
  31421. }
  31422. #endif
  31423. #ifdef __LITTLE_ENDIAN__
  31424. __ai int8x16_t vreinterpretq_s8_s32(int32x4_t __p0) {
  31425. int8x16_t __ret;
  31426. __ret = (int8x16_t)(__p0);
  31427. return __ret;
  31428. }
  31429. #else
  31430. __ai int8x16_t vreinterpretq_s8_s32(int32x4_t __p0) {
  31431. int8x16_t __ret;
  31432. __ret = (int8x16_t)(__p0);
  31433. return __ret;
  31434. }
  31435. #endif
  31436. #ifdef __LITTLE_ENDIAN__
  31437. __ai int8x16_t vreinterpretq_s8_s64(int64x2_t __p0) {
  31438. int8x16_t __ret;
  31439. __ret = (int8x16_t)(__p0);
  31440. return __ret;
  31441. }
  31442. #else
  31443. __ai int8x16_t vreinterpretq_s8_s64(int64x2_t __p0) {
  31444. int8x16_t __ret;
  31445. __ret = (int8x16_t)(__p0);
  31446. return __ret;
  31447. }
  31448. #endif
  31449. #ifdef __LITTLE_ENDIAN__
  31450. __ai int8x16_t vreinterpretq_s8_s16(int16x8_t __p0) {
  31451. int8x16_t __ret;
  31452. __ret = (int8x16_t)(__p0);
  31453. return __ret;
  31454. }
  31455. #else
  31456. __ai int8x16_t vreinterpretq_s8_s16(int16x8_t __p0) {
  31457. int8x16_t __ret;
  31458. __ret = (int8x16_t)(__p0);
  31459. return __ret;
  31460. }
  31461. #endif
  31462. #ifdef __LITTLE_ENDIAN__
  31463. __ai float32x4_t vreinterpretq_f32_p8(poly8x16_t __p0) {
  31464. float32x4_t __ret;
  31465. __ret = (float32x4_t)(__p0);
  31466. return __ret;
  31467. }
  31468. #else
  31469. __ai float32x4_t vreinterpretq_f32_p8(poly8x16_t __p0) {
  31470. float32x4_t __ret;
  31471. __ret = (float32x4_t)(__p0);
  31472. return __ret;
  31473. }
  31474. #endif
  31475. #ifdef __LITTLE_ENDIAN__
  31476. __ai float32x4_t vreinterpretq_f32_p16(poly16x8_t __p0) {
  31477. float32x4_t __ret;
  31478. __ret = (float32x4_t)(__p0);
  31479. return __ret;
  31480. }
  31481. #else
  31482. __ai float32x4_t vreinterpretq_f32_p16(poly16x8_t __p0) {
  31483. float32x4_t __ret;
  31484. __ret = (float32x4_t)(__p0);
  31485. return __ret;
  31486. }
  31487. #endif
  31488. #ifdef __LITTLE_ENDIAN__
  31489. __ai float32x4_t vreinterpretq_f32_u8(uint8x16_t __p0) {
  31490. float32x4_t __ret;
  31491. __ret = (float32x4_t)(__p0);
  31492. return __ret;
  31493. }
  31494. #else
  31495. __ai float32x4_t vreinterpretq_f32_u8(uint8x16_t __p0) {
  31496. float32x4_t __ret;
  31497. __ret = (float32x4_t)(__p0);
  31498. return __ret;
  31499. }
  31500. #endif
  31501. #ifdef __LITTLE_ENDIAN__
  31502. __ai float32x4_t vreinterpretq_f32_u32(uint32x4_t __p0) {
  31503. float32x4_t __ret;
  31504. __ret = (float32x4_t)(__p0);
  31505. return __ret;
  31506. }
  31507. #else
  31508. __ai float32x4_t vreinterpretq_f32_u32(uint32x4_t __p0) {
  31509. float32x4_t __ret;
  31510. __ret = (float32x4_t)(__p0);
  31511. return __ret;
  31512. }
  31513. #endif
  31514. #ifdef __LITTLE_ENDIAN__
  31515. __ai float32x4_t vreinterpretq_f32_u64(uint64x2_t __p0) {
  31516. float32x4_t __ret;
  31517. __ret = (float32x4_t)(__p0);
  31518. return __ret;
  31519. }
  31520. #else
  31521. __ai float32x4_t vreinterpretq_f32_u64(uint64x2_t __p0) {
  31522. float32x4_t __ret;
  31523. __ret = (float32x4_t)(__p0);
  31524. return __ret;
  31525. }
  31526. #endif
  31527. #ifdef __LITTLE_ENDIAN__
  31528. __ai float32x4_t vreinterpretq_f32_u16(uint16x8_t __p0) {
  31529. float32x4_t __ret;
  31530. __ret = (float32x4_t)(__p0);
  31531. return __ret;
  31532. }
  31533. #else
  31534. __ai float32x4_t vreinterpretq_f32_u16(uint16x8_t __p0) {
  31535. float32x4_t __ret;
  31536. __ret = (float32x4_t)(__p0);
  31537. return __ret;
  31538. }
  31539. #endif
  31540. #ifdef __LITTLE_ENDIAN__
  31541. __ai float32x4_t vreinterpretq_f32_s8(int8x16_t __p0) {
  31542. float32x4_t __ret;
  31543. __ret = (float32x4_t)(__p0);
  31544. return __ret;
  31545. }
  31546. #else
  31547. __ai float32x4_t vreinterpretq_f32_s8(int8x16_t __p0) {
  31548. float32x4_t __ret;
  31549. __ret = (float32x4_t)(__p0);
  31550. return __ret;
  31551. }
  31552. #endif
  31553. #ifdef __LITTLE_ENDIAN__
  31554. __ai float32x4_t vreinterpretq_f32_f16(float16x8_t __p0) {
  31555. float32x4_t __ret;
  31556. __ret = (float32x4_t)(__p0);
  31557. return __ret;
  31558. }
  31559. #else
  31560. __ai float32x4_t vreinterpretq_f32_f16(float16x8_t __p0) {
  31561. float32x4_t __ret;
  31562. __ret = (float32x4_t)(__p0);
  31563. return __ret;
  31564. }
  31565. #endif
  31566. #ifdef __LITTLE_ENDIAN__
  31567. __ai float32x4_t vreinterpretq_f32_s32(int32x4_t __p0) {
  31568. float32x4_t __ret;
  31569. __ret = (float32x4_t)(__p0);
  31570. return __ret;
  31571. }
  31572. #else
  31573. __ai float32x4_t vreinterpretq_f32_s32(int32x4_t __p0) {
  31574. float32x4_t __ret;
  31575. __ret = (float32x4_t)(__p0);
  31576. return __ret;
  31577. }
  31578. #endif
  31579. #ifdef __LITTLE_ENDIAN__
  31580. __ai float32x4_t vreinterpretq_f32_s64(int64x2_t __p0) {
  31581. float32x4_t __ret;
  31582. __ret = (float32x4_t)(__p0);
  31583. return __ret;
  31584. }
  31585. #else
  31586. __ai float32x4_t vreinterpretq_f32_s64(int64x2_t __p0) {
  31587. float32x4_t __ret;
  31588. __ret = (float32x4_t)(__p0);
  31589. return __ret;
  31590. }
  31591. #endif
  31592. #ifdef __LITTLE_ENDIAN__
  31593. __ai float32x4_t vreinterpretq_f32_s16(int16x8_t __p0) {
  31594. float32x4_t __ret;
  31595. __ret = (float32x4_t)(__p0);
  31596. return __ret;
  31597. }
  31598. #else
  31599. __ai float32x4_t vreinterpretq_f32_s16(int16x8_t __p0) {
  31600. float32x4_t __ret;
  31601. __ret = (float32x4_t)(__p0);
  31602. return __ret;
  31603. }
  31604. #endif
  31605. #ifdef __LITTLE_ENDIAN__
  31606. __ai float16x8_t vreinterpretq_f16_p8(poly8x16_t __p0) {
  31607. float16x8_t __ret;
  31608. __ret = (float16x8_t)(__p0);
  31609. return __ret;
  31610. }
  31611. #else
  31612. __ai float16x8_t vreinterpretq_f16_p8(poly8x16_t __p0) {
  31613. float16x8_t __ret;
  31614. __ret = (float16x8_t)(__p0);
  31615. return __ret;
  31616. }
  31617. #endif
  31618. #ifdef __LITTLE_ENDIAN__
  31619. __ai float16x8_t vreinterpretq_f16_p16(poly16x8_t __p0) {
  31620. float16x8_t __ret;
  31621. __ret = (float16x8_t)(__p0);
  31622. return __ret;
  31623. }
  31624. #else
  31625. __ai float16x8_t vreinterpretq_f16_p16(poly16x8_t __p0) {
  31626. float16x8_t __ret;
  31627. __ret = (float16x8_t)(__p0);
  31628. return __ret;
  31629. }
  31630. #endif
  31631. #ifdef __LITTLE_ENDIAN__
  31632. __ai float16x8_t vreinterpretq_f16_u8(uint8x16_t __p0) {
  31633. float16x8_t __ret;
  31634. __ret = (float16x8_t)(__p0);
  31635. return __ret;
  31636. }
  31637. #else
  31638. __ai float16x8_t vreinterpretq_f16_u8(uint8x16_t __p0) {
  31639. float16x8_t __ret;
  31640. __ret = (float16x8_t)(__p0);
  31641. return __ret;
  31642. }
  31643. #endif
  31644. #ifdef __LITTLE_ENDIAN__
  31645. __ai float16x8_t vreinterpretq_f16_u32(uint32x4_t __p0) {
  31646. float16x8_t __ret;
  31647. __ret = (float16x8_t)(__p0);
  31648. return __ret;
  31649. }
  31650. #else
  31651. __ai float16x8_t vreinterpretq_f16_u32(uint32x4_t __p0) {
  31652. float16x8_t __ret;
  31653. __ret = (float16x8_t)(__p0);
  31654. return __ret;
  31655. }
  31656. #endif
  31657. #ifdef __LITTLE_ENDIAN__
  31658. __ai float16x8_t vreinterpretq_f16_u64(uint64x2_t __p0) {
  31659. float16x8_t __ret;
  31660. __ret = (float16x8_t)(__p0);
  31661. return __ret;
  31662. }
  31663. #else
  31664. __ai float16x8_t vreinterpretq_f16_u64(uint64x2_t __p0) {
  31665. float16x8_t __ret;
  31666. __ret = (float16x8_t)(__p0);
  31667. return __ret;
  31668. }
  31669. #endif
  31670. #ifdef __LITTLE_ENDIAN__
  31671. __ai float16x8_t vreinterpretq_f16_u16(uint16x8_t __p0) {
  31672. float16x8_t __ret;
  31673. __ret = (float16x8_t)(__p0);
  31674. return __ret;
  31675. }
  31676. #else
  31677. __ai float16x8_t vreinterpretq_f16_u16(uint16x8_t __p0) {
  31678. float16x8_t __ret;
  31679. __ret = (float16x8_t)(__p0);
  31680. return __ret;
  31681. }
  31682. #endif
  31683. #ifdef __LITTLE_ENDIAN__
  31684. __ai float16x8_t vreinterpretq_f16_s8(int8x16_t __p0) {
  31685. float16x8_t __ret;
  31686. __ret = (float16x8_t)(__p0);
  31687. return __ret;
  31688. }
  31689. #else
  31690. __ai float16x8_t vreinterpretq_f16_s8(int8x16_t __p0) {
  31691. float16x8_t __ret;
  31692. __ret = (float16x8_t)(__p0);
  31693. return __ret;
  31694. }
  31695. #endif
  31696. #ifdef __LITTLE_ENDIAN__
  31697. __ai float16x8_t vreinterpretq_f16_f32(float32x4_t __p0) {
  31698. float16x8_t __ret;
  31699. __ret = (float16x8_t)(__p0);
  31700. return __ret;
  31701. }
  31702. #else
  31703. __ai float16x8_t vreinterpretq_f16_f32(float32x4_t __p0) {
  31704. float16x8_t __ret;
  31705. __ret = (float16x8_t)(__p0);
  31706. return __ret;
  31707. }
  31708. #endif
  31709. #ifdef __LITTLE_ENDIAN__
  31710. __ai float16x8_t vreinterpretq_f16_s32(int32x4_t __p0) {
  31711. float16x8_t __ret;
  31712. __ret = (float16x8_t)(__p0);
  31713. return __ret;
  31714. }
  31715. #else
  31716. __ai float16x8_t vreinterpretq_f16_s32(int32x4_t __p0) {
  31717. float16x8_t __ret;
  31718. __ret = (float16x8_t)(__p0);
  31719. return __ret;
  31720. }
  31721. #endif
  31722. #ifdef __LITTLE_ENDIAN__
  31723. __ai float16x8_t vreinterpretq_f16_s64(int64x2_t __p0) {
  31724. float16x8_t __ret;
  31725. __ret = (float16x8_t)(__p0);
  31726. return __ret;
  31727. }
  31728. #else
  31729. __ai float16x8_t vreinterpretq_f16_s64(int64x2_t __p0) {
  31730. float16x8_t __ret;
  31731. __ret = (float16x8_t)(__p0);
  31732. return __ret;
  31733. }
  31734. #endif
  31735. #ifdef __LITTLE_ENDIAN__
  31736. __ai float16x8_t vreinterpretq_f16_s16(int16x8_t __p0) {
  31737. float16x8_t __ret;
  31738. __ret = (float16x8_t)(__p0);
  31739. return __ret;
  31740. }
  31741. #else
  31742. __ai float16x8_t vreinterpretq_f16_s16(int16x8_t __p0) {
  31743. float16x8_t __ret;
  31744. __ret = (float16x8_t)(__p0);
  31745. return __ret;
  31746. }
  31747. #endif
  31748. #ifdef __LITTLE_ENDIAN__
  31749. __ai int32x4_t vreinterpretq_s32_p8(poly8x16_t __p0) {
  31750. int32x4_t __ret;
  31751. __ret = (int32x4_t)(__p0);
  31752. return __ret;
  31753. }
  31754. #else
  31755. __ai int32x4_t vreinterpretq_s32_p8(poly8x16_t __p0) {
  31756. int32x4_t __ret;
  31757. __ret = (int32x4_t)(__p0);
  31758. return __ret;
  31759. }
  31760. #endif
  31761. #ifdef __LITTLE_ENDIAN__
  31762. __ai int32x4_t vreinterpretq_s32_p16(poly16x8_t __p0) {
  31763. int32x4_t __ret;
  31764. __ret = (int32x4_t)(__p0);
  31765. return __ret;
  31766. }
  31767. #else
  31768. __ai int32x4_t vreinterpretq_s32_p16(poly16x8_t __p0) {
  31769. int32x4_t __ret;
  31770. __ret = (int32x4_t)(__p0);
  31771. return __ret;
  31772. }
  31773. #endif
  31774. #ifdef __LITTLE_ENDIAN__
  31775. __ai int32x4_t vreinterpretq_s32_u8(uint8x16_t __p0) {
  31776. int32x4_t __ret;
  31777. __ret = (int32x4_t)(__p0);
  31778. return __ret;
  31779. }
  31780. #else
  31781. __ai int32x4_t vreinterpretq_s32_u8(uint8x16_t __p0) {
  31782. int32x4_t __ret;
  31783. __ret = (int32x4_t)(__p0);
  31784. return __ret;
  31785. }
  31786. #endif
  31787. #ifdef __LITTLE_ENDIAN__
  31788. __ai int32x4_t vreinterpretq_s32_u32(uint32x4_t __p0) {
  31789. int32x4_t __ret;
  31790. __ret = (int32x4_t)(__p0);
  31791. return __ret;
  31792. }
  31793. #else
  31794. __ai int32x4_t vreinterpretq_s32_u32(uint32x4_t __p0) {
  31795. int32x4_t __ret;
  31796. __ret = (int32x4_t)(__p0);
  31797. return __ret;
  31798. }
  31799. #endif
  31800. #ifdef __LITTLE_ENDIAN__
  31801. __ai int32x4_t vreinterpretq_s32_u64(uint64x2_t __p0) {
  31802. int32x4_t __ret;
  31803. __ret = (int32x4_t)(__p0);
  31804. return __ret;
  31805. }
  31806. #else
  31807. __ai int32x4_t vreinterpretq_s32_u64(uint64x2_t __p0) {
  31808. int32x4_t __ret;
  31809. __ret = (int32x4_t)(__p0);
  31810. return __ret;
  31811. }
  31812. #endif
  31813. #ifdef __LITTLE_ENDIAN__
  31814. __ai int32x4_t vreinterpretq_s32_u16(uint16x8_t __p0) {
  31815. int32x4_t __ret;
  31816. __ret = (int32x4_t)(__p0);
  31817. return __ret;
  31818. }
  31819. #else
  31820. __ai int32x4_t vreinterpretq_s32_u16(uint16x8_t __p0) {
  31821. int32x4_t __ret;
  31822. __ret = (int32x4_t)(__p0);
  31823. return __ret;
  31824. }
  31825. #endif
  31826. #ifdef __LITTLE_ENDIAN__
  31827. __ai int32x4_t vreinterpretq_s32_s8(int8x16_t __p0) {
  31828. int32x4_t __ret;
  31829. __ret = (int32x4_t)(__p0);
  31830. return __ret;
  31831. }
  31832. #else
  31833. __ai int32x4_t vreinterpretq_s32_s8(int8x16_t __p0) {
  31834. int32x4_t __ret;
  31835. __ret = (int32x4_t)(__p0);
  31836. return __ret;
  31837. }
  31838. #endif
  31839. #ifdef __LITTLE_ENDIAN__
  31840. __ai int32x4_t vreinterpretq_s32_f32(float32x4_t __p0) {
  31841. int32x4_t __ret;
  31842. __ret = (int32x4_t)(__p0);
  31843. return __ret;
  31844. }
  31845. #else
  31846. __ai int32x4_t vreinterpretq_s32_f32(float32x4_t __p0) {
  31847. int32x4_t __ret;
  31848. __ret = (int32x4_t)(__p0);
  31849. return __ret;
  31850. }
  31851. #endif
  31852. #ifdef __LITTLE_ENDIAN__
  31853. __ai int32x4_t vreinterpretq_s32_f16(float16x8_t __p0) {
  31854. int32x4_t __ret;
  31855. __ret = (int32x4_t)(__p0);
  31856. return __ret;
  31857. }
  31858. #else
  31859. __ai int32x4_t vreinterpretq_s32_f16(float16x8_t __p0) {
  31860. int32x4_t __ret;
  31861. __ret = (int32x4_t)(__p0);
  31862. return __ret;
  31863. }
  31864. #endif
  31865. #ifdef __LITTLE_ENDIAN__
  31866. __ai int32x4_t vreinterpretq_s32_s64(int64x2_t __p0) {
  31867. int32x4_t __ret;
  31868. __ret = (int32x4_t)(__p0);
  31869. return __ret;
  31870. }
  31871. #else
  31872. __ai int32x4_t vreinterpretq_s32_s64(int64x2_t __p0) {
  31873. int32x4_t __ret;
  31874. __ret = (int32x4_t)(__p0);
  31875. return __ret;
  31876. }
  31877. #endif
  31878. #ifdef __LITTLE_ENDIAN__
  31879. __ai int32x4_t vreinterpretq_s32_s16(int16x8_t __p0) {
  31880. int32x4_t __ret;
  31881. __ret = (int32x4_t)(__p0);
  31882. return __ret;
  31883. }
  31884. #else
  31885. __ai int32x4_t vreinterpretq_s32_s16(int16x8_t __p0) {
  31886. int32x4_t __ret;
  31887. __ret = (int32x4_t)(__p0);
  31888. return __ret;
  31889. }
  31890. #endif
  31891. #ifdef __LITTLE_ENDIAN__
  31892. __ai int64x2_t vreinterpretq_s64_p8(poly8x16_t __p0) {
  31893. int64x2_t __ret;
  31894. __ret = (int64x2_t)(__p0);
  31895. return __ret;
  31896. }
  31897. #else
  31898. __ai int64x2_t vreinterpretq_s64_p8(poly8x16_t __p0) {
  31899. int64x2_t __ret;
  31900. __ret = (int64x2_t)(__p0);
  31901. return __ret;
  31902. }
  31903. #endif
  31904. #ifdef __LITTLE_ENDIAN__
  31905. __ai int64x2_t vreinterpretq_s64_p16(poly16x8_t __p0) {
  31906. int64x2_t __ret;
  31907. __ret = (int64x2_t)(__p0);
  31908. return __ret;
  31909. }
  31910. #else
  31911. __ai int64x2_t vreinterpretq_s64_p16(poly16x8_t __p0) {
  31912. int64x2_t __ret;
  31913. __ret = (int64x2_t)(__p0);
  31914. return __ret;
  31915. }
  31916. #endif
  31917. #ifdef __LITTLE_ENDIAN__
  31918. __ai int64x2_t vreinterpretq_s64_u8(uint8x16_t __p0) {
  31919. int64x2_t __ret;
  31920. __ret = (int64x2_t)(__p0);
  31921. return __ret;
  31922. }
  31923. #else
  31924. __ai int64x2_t vreinterpretq_s64_u8(uint8x16_t __p0) {
  31925. int64x2_t __ret;
  31926. __ret = (int64x2_t)(__p0);
  31927. return __ret;
  31928. }
  31929. #endif
  31930. #ifdef __LITTLE_ENDIAN__
  31931. __ai int64x2_t vreinterpretq_s64_u32(uint32x4_t __p0) {
  31932. int64x2_t __ret;
  31933. __ret = (int64x2_t)(__p0);
  31934. return __ret;
  31935. }
  31936. #else
  31937. __ai int64x2_t vreinterpretq_s64_u32(uint32x4_t __p0) {
  31938. int64x2_t __ret;
  31939. __ret = (int64x2_t)(__p0);
  31940. return __ret;
  31941. }
  31942. #endif
  31943. #ifdef __LITTLE_ENDIAN__
  31944. __ai int64x2_t vreinterpretq_s64_u64(uint64x2_t __p0) {
  31945. int64x2_t __ret;
  31946. __ret = (int64x2_t)(__p0);
  31947. return __ret;
  31948. }
  31949. #else
  31950. __ai int64x2_t vreinterpretq_s64_u64(uint64x2_t __p0) {
  31951. int64x2_t __ret;
  31952. __ret = (int64x2_t)(__p0);
  31953. return __ret;
  31954. }
  31955. #endif
  31956. #ifdef __LITTLE_ENDIAN__
  31957. __ai int64x2_t vreinterpretq_s64_u16(uint16x8_t __p0) {
  31958. int64x2_t __ret;
  31959. __ret = (int64x2_t)(__p0);
  31960. return __ret;
  31961. }
  31962. #else
  31963. __ai int64x2_t vreinterpretq_s64_u16(uint16x8_t __p0) {
  31964. int64x2_t __ret;
  31965. __ret = (int64x2_t)(__p0);
  31966. return __ret;
  31967. }
  31968. #endif
  31969. #ifdef __LITTLE_ENDIAN__
  31970. __ai int64x2_t vreinterpretq_s64_s8(int8x16_t __p0) {
  31971. int64x2_t __ret;
  31972. __ret = (int64x2_t)(__p0);
  31973. return __ret;
  31974. }
  31975. #else
  31976. __ai int64x2_t vreinterpretq_s64_s8(int8x16_t __p0) {
  31977. int64x2_t __ret;
  31978. __ret = (int64x2_t)(__p0);
  31979. return __ret;
  31980. }
  31981. #endif
  31982. #ifdef __LITTLE_ENDIAN__
  31983. __ai int64x2_t vreinterpretq_s64_f32(float32x4_t __p0) {
  31984. int64x2_t __ret;
  31985. __ret = (int64x2_t)(__p0);
  31986. return __ret;
  31987. }
  31988. #else
  31989. __ai int64x2_t vreinterpretq_s64_f32(float32x4_t __p0) {
  31990. int64x2_t __ret;
  31991. __ret = (int64x2_t)(__p0);
  31992. return __ret;
  31993. }
  31994. #endif
  31995. #ifdef __LITTLE_ENDIAN__
  31996. __ai int64x2_t vreinterpretq_s64_f16(float16x8_t __p0) {
  31997. int64x2_t __ret;
  31998. __ret = (int64x2_t)(__p0);
  31999. return __ret;
  32000. }
  32001. #else
  32002. __ai int64x2_t vreinterpretq_s64_f16(float16x8_t __p0) {
  32003. int64x2_t __ret;
  32004. __ret = (int64x2_t)(__p0);
  32005. return __ret;
  32006. }
  32007. #endif
  32008. #ifdef __LITTLE_ENDIAN__
  32009. __ai int64x2_t vreinterpretq_s64_s32(int32x4_t __p0) {
  32010. int64x2_t __ret;
  32011. __ret = (int64x2_t)(__p0);
  32012. return __ret;
  32013. }
  32014. #else
  32015. __ai int64x2_t vreinterpretq_s64_s32(int32x4_t __p0) {
  32016. int64x2_t __ret;
  32017. __ret = (int64x2_t)(__p0);
  32018. return __ret;
  32019. }
  32020. #endif
  32021. #ifdef __LITTLE_ENDIAN__
  32022. __ai int64x2_t vreinterpretq_s64_s16(int16x8_t __p0) {
  32023. int64x2_t __ret;
  32024. __ret = (int64x2_t)(__p0);
  32025. return __ret;
  32026. }
  32027. #else
  32028. __ai int64x2_t vreinterpretq_s64_s16(int16x8_t __p0) {
  32029. int64x2_t __ret;
  32030. __ret = (int64x2_t)(__p0);
  32031. return __ret;
  32032. }
  32033. #endif
  32034. #ifdef __LITTLE_ENDIAN__
  32035. __ai int16x8_t vreinterpretq_s16_p8(poly8x16_t __p0) {
  32036. int16x8_t __ret;
  32037. __ret = (int16x8_t)(__p0);
  32038. return __ret;
  32039. }
  32040. #else
  32041. __ai int16x8_t vreinterpretq_s16_p8(poly8x16_t __p0) {
  32042. int16x8_t __ret;
  32043. __ret = (int16x8_t)(__p0);
  32044. return __ret;
  32045. }
  32046. #endif
  32047. #ifdef __LITTLE_ENDIAN__
  32048. __ai int16x8_t vreinterpretq_s16_p16(poly16x8_t __p0) {
  32049. int16x8_t __ret;
  32050. __ret = (int16x8_t)(__p0);
  32051. return __ret;
  32052. }
  32053. #else
  32054. __ai int16x8_t vreinterpretq_s16_p16(poly16x8_t __p0) {
  32055. int16x8_t __ret;
  32056. __ret = (int16x8_t)(__p0);
  32057. return __ret;
  32058. }
  32059. #endif
  32060. #ifdef __LITTLE_ENDIAN__
  32061. __ai int16x8_t vreinterpretq_s16_u8(uint8x16_t __p0) {
  32062. int16x8_t __ret;
  32063. __ret = (int16x8_t)(__p0);
  32064. return __ret;
  32065. }
  32066. #else
  32067. __ai int16x8_t vreinterpretq_s16_u8(uint8x16_t __p0) {
  32068. int16x8_t __ret;
  32069. __ret = (int16x8_t)(__p0);
  32070. return __ret;
  32071. }
  32072. #endif
  32073. #ifdef __LITTLE_ENDIAN__
  32074. __ai int16x8_t vreinterpretq_s16_u32(uint32x4_t __p0) {
  32075. int16x8_t __ret;
  32076. __ret = (int16x8_t)(__p0);
  32077. return __ret;
  32078. }
  32079. #else
  32080. __ai int16x8_t vreinterpretq_s16_u32(uint32x4_t __p0) {
  32081. int16x8_t __ret;
  32082. __ret = (int16x8_t)(__p0);
  32083. return __ret;
  32084. }
  32085. #endif
  32086. #ifdef __LITTLE_ENDIAN__
  32087. __ai int16x8_t vreinterpretq_s16_u64(uint64x2_t __p0) {
  32088. int16x8_t __ret;
  32089. __ret = (int16x8_t)(__p0);
  32090. return __ret;
  32091. }
  32092. #else
  32093. __ai int16x8_t vreinterpretq_s16_u64(uint64x2_t __p0) {
  32094. int16x8_t __ret;
  32095. __ret = (int16x8_t)(__p0);
  32096. return __ret;
  32097. }
  32098. #endif
  32099. #ifdef __LITTLE_ENDIAN__
  32100. __ai int16x8_t vreinterpretq_s16_u16(uint16x8_t __p0) {
  32101. int16x8_t __ret;
  32102. __ret = (int16x8_t)(__p0);
  32103. return __ret;
  32104. }
  32105. #else
  32106. __ai int16x8_t vreinterpretq_s16_u16(uint16x8_t __p0) {
  32107. int16x8_t __ret;
  32108. __ret = (int16x8_t)(__p0);
  32109. return __ret;
  32110. }
  32111. #endif
  32112. #ifdef __LITTLE_ENDIAN__
  32113. __ai int16x8_t vreinterpretq_s16_s8(int8x16_t __p0) {
  32114. int16x8_t __ret;
  32115. __ret = (int16x8_t)(__p0);
  32116. return __ret;
  32117. }
  32118. #else
  32119. __ai int16x8_t vreinterpretq_s16_s8(int8x16_t __p0) {
  32120. int16x8_t __ret;
  32121. __ret = (int16x8_t)(__p0);
  32122. return __ret;
  32123. }
  32124. #endif
  32125. #ifdef __LITTLE_ENDIAN__
  32126. __ai int16x8_t vreinterpretq_s16_f32(float32x4_t __p0) {
  32127. int16x8_t __ret;
  32128. __ret = (int16x8_t)(__p0);
  32129. return __ret;
  32130. }
  32131. #else
  32132. __ai int16x8_t vreinterpretq_s16_f32(float32x4_t __p0) {
  32133. int16x8_t __ret;
  32134. __ret = (int16x8_t)(__p0);
  32135. return __ret;
  32136. }
  32137. #endif
  32138. #ifdef __LITTLE_ENDIAN__
  32139. __ai int16x8_t vreinterpretq_s16_f16(float16x8_t __p0) {
  32140. int16x8_t __ret;
  32141. __ret = (int16x8_t)(__p0);
  32142. return __ret;
  32143. }
  32144. #else
  32145. __ai int16x8_t vreinterpretq_s16_f16(float16x8_t __p0) {
  32146. int16x8_t __ret;
  32147. __ret = (int16x8_t)(__p0);
  32148. return __ret;
  32149. }
  32150. #endif
  32151. #ifdef __LITTLE_ENDIAN__
  32152. __ai int16x8_t vreinterpretq_s16_s32(int32x4_t __p0) {
  32153. int16x8_t __ret;
  32154. __ret = (int16x8_t)(__p0);
  32155. return __ret;
  32156. }
  32157. #else
  32158. __ai int16x8_t vreinterpretq_s16_s32(int32x4_t __p0) {
  32159. int16x8_t __ret;
  32160. __ret = (int16x8_t)(__p0);
  32161. return __ret;
  32162. }
  32163. #endif
  32164. #ifdef __LITTLE_ENDIAN__
  32165. __ai int16x8_t vreinterpretq_s16_s64(int64x2_t __p0) {
  32166. int16x8_t __ret;
  32167. __ret = (int16x8_t)(__p0);
  32168. return __ret;
  32169. }
  32170. #else
  32171. __ai int16x8_t vreinterpretq_s16_s64(int64x2_t __p0) {
  32172. int16x8_t __ret;
  32173. __ret = (int16x8_t)(__p0);
  32174. return __ret;
  32175. }
  32176. #endif
  32177. #ifdef __LITTLE_ENDIAN__
  32178. __ai uint8x8_t vreinterpret_u8_p8(poly8x8_t __p0) {
  32179. uint8x8_t __ret;
  32180. __ret = (uint8x8_t)(__p0);
  32181. return __ret;
  32182. }
  32183. #else
  32184. __ai uint8x8_t vreinterpret_u8_p8(poly8x8_t __p0) {
  32185. uint8x8_t __ret;
  32186. __ret = (uint8x8_t)(__p0);
  32187. return __ret;
  32188. }
  32189. #endif
  32190. #ifdef __LITTLE_ENDIAN__
  32191. __ai uint8x8_t vreinterpret_u8_p16(poly16x4_t __p0) {
  32192. uint8x8_t __ret;
  32193. __ret = (uint8x8_t)(__p0);
  32194. return __ret;
  32195. }
  32196. #else
  32197. __ai uint8x8_t vreinterpret_u8_p16(poly16x4_t __p0) {
  32198. uint8x8_t __ret;
  32199. __ret = (uint8x8_t)(__p0);
  32200. return __ret;
  32201. }
  32202. #endif
  32203. #ifdef __LITTLE_ENDIAN__
  32204. __ai uint8x8_t vreinterpret_u8_u32(uint32x2_t __p0) {
  32205. uint8x8_t __ret;
  32206. __ret = (uint8x8_t)(__p0);
  32207. return __ret;
  32208. }
  32209. #else
  32210. __ai uint8x8_t vreinterpret_u8_u32(uint32x2_t __p0) {
  32211. uint8x8_t __ret;
  32212. __ret = (uint8x8_t)(__p0);
  32213. return __ret;
  32214. }
  32215. #endif
  32216. #ifdef __LITTLE_ENDIAN__
  32217. __ai uint8x8_t vreinterpret_u8_u64(uint64x1_t __p0) {
  32218. uint8x8_t __ret;
  32219. __ret = (uint8x8_t)(__p0);
  32220. return __ret;
  32221. }
  32222. #else
  32223. __ai uint8x8_t vreinterpret_u8_u64(uint64x1_t __p0) {
  32224. uint8x8_t __ret;
  32225. __ret = (uint8x8_t)(__p0);
  32226. return __ret;
  32227. }
  32228. #endif
  32229. #ifdef __LITTLE_ENDIAN__
  32230. __ai uint8x8_t vreinterpret_u8_u16(uint16x4_t __p0) {
  32231. uint8x8_t __ret;
  32232. __ret = (uint8x8_t)(__p0);
  32233. return __ret;
  32234. }
  32235. #else
  32236. __ai uint8x8_t vreinterpret_u8_u16(uint16x4_t __p0) {
  32237. uint8x8_t __ret;
  32238. __ret = (uint8x8_t)(__p0);
  32239. return __ret;
  32240. }
  32241. #endif
  32242. #ifdef __LITTLE_ENDIAN__
  32243. __ai uint8x8_t vreinterpret_u8_s8(int8x8_t __p0) {
  32244. uint8x8_t __ret;
  32245. __ret = (uint8x8_t)(__p0);
  32246. return __ret;
  32247. }
  32248. #else
  32249. __ai uint8x8_t vreinterpret_u8_s8(int8x8_t __p0) {
  32250. uint8x8_t __ret;
  32251. __ret = (uint8x8_t)(__p0);
  32252. return __ret;
  32253. }
  32254. #endif
  32255. #ifdef __LITTLE_ENDIAN__
  32256. __ai uint8x8_t vreinterpret_u8_f32(float32x2_t __p0) {
  32257. uint8x8_t __ret;
  32258. __ret = (uint8x8_t)(__p0);
  32259. return __ret;
  32260. }
  32261. #else
  32262. __ai uint8x8_t vreinterpret_u8_f32(float32x2_t __p0) {
  32263. uint8x8_t __ret;
  32264. __ret = (uint8x8_t)(__p0);
  32265. return __ret;
  32266. }
  32267. #endif
  32268. #ifdef __LITTLE_ENDIAN__
  32269. __ai uint8x8_t vreinterpret_u8_f16(float16x4_t __p0) {
  32270. uint8x8_t __ret;
  32271. __ret = (uint8x8_t)(__p0);
  32272. return __ret;
  32273. }
  32274. #else
  32275. __ai uint8x8_t vreinterpret_u8_f16(float16x4_t __p0) {
  32276. uint8x8_t __ret;
  32277. __ret = (uint8x8_t)(__p0);
  32278. return __ret;
  32279. }
  32280. #endif
  32281. #ifdef __LITTLE_ENDIAN__
  32282. __ai uint8x8_t vreinterpret_u8_s32(int32x2_t __p0) {
  32283. uint8x8_t __ret;
  32284. __ret = (uint8x8_t)(__p0);
  32285. return __ret;
  32286. }
  32287. #else
  32288. __ai uint8x8_t vreinterpret_u8_s32(int32x2_t __p0) {
  32289. uint8x8_t __ret;
  32290. __ret = (uint8x8_t)(__p0);
  32291. return __ret;
  32292. }
  32293. #endif
  32294. #ifdef __LITTLE_ENDIAN__
  32295. __ai uint8x8_t vreinterpret_u8_s64(int64x1_t __p0) {
  32296. uint8x8_t __ret;
  32297. __ret = (uint8x8_t)(__p0);
  32298. return __ret;
  32299. }
  32300. #else
  32301. __ai uint8x8_t vreinterpret_u8_s64(int64x1_t __p0) {
  32302. uint8x8_t __ret;
  32303. __ret = (uint8x8_t)(__p0);
  32304. return __ret;
  32305. }
  32306. #endif
  32307. #ifdef __LITTLE_ENDIAN__
  32308. __ai uint8x8_t vreinterpret_u8_s16(int16x4_t __p0) {
  32309. uint8x8_t __ret;
  32310. __ret = (uint8x8_t)(__p0);
  32311. return __ret;
  32312. }
  32313. #else
  32314. __ai uint8x8_t vreinterpret_u8_s16(int16x4_t __p0) {
  32315. uint8x8_t __ret;
  32316. __ret = (uint8x8_t)(__p0);
  32317. return __ret;
  32318. }
  32319. #endif
  32320. #ifdef __LITTLE_ENDIAN__
  32321. __ai uint32x2_t vreinterpret_u32_p8(poly8x8_t __p0) {
  32322. uint32x2_t __ret;
  32323. __ret = (uint32x2_t)(__p0);
  32324. return __ret;
  32325. }
  32326. #else
  32327. __ai uint32x2_t vreinterpret_u32_p8(poly8x8_t __p0) {
  32328. uint32x2_t __ret;
  32329. __ret = (uint32x2_t)(__p0);
  32330. return __ret;
  32331. }
  32332. #endif
  32333. #ifdef __LITTLE_ENDIAN__
  32334. __ai uint32x2_t vreinterpret_u32_p16(poly16x4_t __p0) {
  32335. uint32x2_t __ret;
  32336. __ret = (uint32x2_t)(__p0);
  32337. return __ret;
  32338. }
  32339. #else
  32340. __ai uint32x2_t vreinterpret_u32_p16(poly16x4_t __p0) {
  32341. uint32x2_t __ret;
  32342. __ret = (uint32x2_t)(__p0);
  32343. return __ret;
  32344. }
  32345. #endif
  32346. #ifdef __LITTLE_ENDIAN__
  32347. __ai uint32x2_t vreinterpret_u32_u8(uint8x8_t __p0) {
  32348. uint32x2_t __ret;
  32349. __ret = (uint32x2_t)(__p0);
  32350. return __ret;
  32351. }
  32352. #else
  32353. __ai uint32x2_t vreinterpret_u32_u8(uint8x8_t __p0) {
  32354. uint32x2_t __ret;
  32355. __ret = (uint32x2_t)(__p0);
  32356. return __ret;
  32357. }
  32358. #endif
  32359. #ifdef __LITTLE_ENDIAN__
  32360. __ai uint32x2_t vreinterpret_u32_u64(uint64x1_t __p0) {
  32361. uint32x2_t __ret;
  32362. __ret = (uint32x2_t)(__p0);
  32363. return __ret;
  32364. }
  32365. #else
  32366. __ai uint32x2_t vreinterpret_u32_u64(uint64x1_t __p0) {
  32367. uint32x2_t __ret;
  32368. __ret = (uint32x2_t)(__p0);
  32369. return __ret;
  32370. }
  32371. #endif
  32372. #ifdef __LITTLE_ENDIAN__
  32373. __ai uint32x2_t vreinterpret_u32_u16(uint16x4_t __p0) {
  32374. uint32x2_t __ret;
  32375. __ret = (uint32x2_t)(__p0);
  32376. return __ret;
  32377. }
  32378. #else
  32379. __ai uint32x2_t vreinterpret_u32_u16(uint16x4_t __p0) {
  32380. uint32x2_t __ret;
  32381. __ret = (uint32x2_t)(__p0);
  32382. return __ret;
  32383. }
  32384. #endif
  32385. #ifdef __LITTLE_ENDIAN__
  32386. __ai uint32x2_t vreinterpret_u32_s8(int8x8_t __p0) {
  32387. uint32x2_t __ret;
  32388. __ret = (uint32x2_t)(__p0);
  32389. return __ret;
  32390. }
  32391. #else
  32392. __ai uint32x2_t vreinterpret_u32_s8(int8x8_t __p0) {
  32393. uint32x2_t __ret;
  32394. __ret = (uint32x2_t)(__p0);
  32395. return __ret;
  32396. }
  32397. #endif
  32398. #ifdef __LITTLE_ENDIAN__
  32399. __ai uint32x2_t vreinterpret_u32_f32(float32x2_t __p0) {
  32400. uint32x2_t __ret;
  32401. __ret = (uint32x2_t)(__p0);
  32402. return __ret;
  32403. }
  32404. #else
  32405. __ai uint32x2_t vreinterpret_u32_f32(float32x2_t __p0) {
  32406. uint32x2_t __ret;
  32407. __ret = (uint32x2_t)(__p0);
  32408. return __ret;
  32409. }
  32410. #endif
  32411. #ifdef __LITTLE_ENDIAN__
  32412. __ai uint32x2_t vreinterpret_u32_f16(float16x4_t __p0) {
  32413. uint32x2_t __ret;
  32414. __ret = (uint32x2_t)(__p0);
  32415. return __ret;
  32416. }
  32417. #else
  32418. __ai uint32x2_t vreinterpret_u32_f16(float16x4_t __p0) {
  32419. uint32x2_t __ret;
  32420. __ret = (uint32x2_t)(__p0);
  32421. return __ret;
  32422. }
  32423. #endif
  32424. #ifdef __LITTLE_ENDIAN__
  32425. __ai uint32x2_t vreinterpret_u32_s32(int32x2_t __p0) {
  32426. uint32x2_t __ret;
  32427. __ret = (uint32x2_t)(__p0);
  32428. return __ret;
  32429. }
  32430. #else
  32431. __ai uint32x2_t vreinterpret_u32_s32(int32x2_t __p0) {
  32432. uint32x2_t __ret;
  32433. __ret = (uint32x2_t)(__p0);
  32434. return __ret;
  32435. }
  32436. #endif
  32437. #ifdef __LITTLE_ENDIAN__
  32438. __ai uint32x2_t vreinterpret_u32_s64(int64x1_t __p0) {
  32439. uint32x2_t __ret;
  32440. __ret = (uint32x2_t)(__p0);
  32441. return __ret;
  32442. }
  32443. #else
  32444. __ai uint32x2_t vreinterpret_u32_s64(int64x1_t __p0) {
  32445. uint32x2_t __ret;
  32446. __ret = (uint32x2_t)(__p0);
  32447. return __ret;
  32448. }
  32449. #endif
  32450. #ifdef __LITTLE_ENDIAN__
  32451. __ai uint32x2_t vreinterpret_u32_s16(int16x4_t __p0) {
  32452. uint32x2_t __ret;
  32453. __ret = (uint32x2_t)(__p0);
  32454. return __ret;
  32455. }
  32456. #else
  32457. __ai uint32x2_t vreinterpret_u32_s16(int16x4_t __p0) {
  32458. uint32x2_t __ret;
  32459. __ret = (uint32x2_t)(__p0);
  32460. return __ret;
  32461. }
  32462. #endif
  32463. #ifdef __LITTLE_ENDIAN__
  32464. __ai uint64x1_t vreinterpret_u64_p8(poly8x8_t __p0) {
  32465. uint64x1_t __ret;
  32466. __ret = (uint64x1_t)(__p0);
  32467. return __ret;
  32468. }
  32469. #else
  32470. __ai uint64x1_t vreinterpret_u64_p8(poly8x8_t __p0) {
  32471. uint64x1_t __ret;
  32472. __ret = (uint64x1_t)(__p0);
  32473. return __ret;
  32474. }
  32475. #endif
  32476. #ifdef __LITTLE_ENDIAN__
  32477. __ai uint64x1_t vreinterpret_u64_p16(poly16x4_t __p0) {
  32478. uint64x1_t __ret;
  32479. __ret = (uint64x1_t)(__p0);
  32480. return __ret;
  32481. }
  32482. #else
  32483. __ai uint64x1_t vreinterpret_u64_p16(poly16x4_t __p0) {
  32484. uint64x1_t __ret;
  32485. __ret = (uint64x1_t)(__p0);
  32486. return __ret;
  32487. }
  32488. #endif
  32489. #ifdef __LITTLE_ENDIAN__
  32490. __ai uint64x1_t vreinterpret_u64_u8(uint8x8_t __p0) {
  32491. uint64x1_t __ret;
  32492. __ret = (uint64x1_t)(__p0);
  32493. return __ret;
  32494. }
  32495. #else
  32496. __ai uint64x1_t vreinterpret_u64_u8(uint8x8_t __p0) {
  32497. uint64x1_t __ret;
  32498. __ret = (uint64x1_t)(__p0);
  32499. return __ret;
  32500. }
  32501. #endif
  32502. #ifdef __LITTLE_ENDIAN__
  32503. __ai uint64x1_t vreinterpret_u64_u32(uint32x2_t __p0) {
  32504. uint64x1_t __ret;
  32505. __ret = (uint64x1_t)(__p0);
  32506. return __ret;
  32507. }
  32508. #else
  32509. __ai uint64x1_t vreinterpret_u64_u32(uint32x2_t __p0) {
  32510. uint64x1_t __ret;
  32511. __ret = (uint64x1_t)(__p0);
  32512. return __ret;
  32513. }
  32514. #endif
  32515. #ifdef __LITTLE_ENDIAN__
  32516. __ai uint64x1_t vreinterpret_u64_u16(uint16x4_t __p0) {
  32517. uint64x1_t __ret;
  32518. __ret = (uint64x1_t)(__p0);
  32519. return __ret;
  32520. }
  32521. #else
  32522. __ai uint64x1_t vreinterpret_u64_u16(uint16x4_t __p0) {
  32523. uint64x1_t __ret;
  32524. __ret = (uint64x1_t)(__p0);
  32525. return __ret;
  32526. }
  32527. #endif
  32528. #ifdef __LITTLE_ENDIAN__
  32529. __ai uint64x1_t vreinterpret_u64_s8(int8x8_t __p0) {
  32530. uint64x1_t __ret;
  32531. __ret = (uint64x1_t)(__p0);
  32532. return __ret;
  32533. }
  32534. #else
  32535. __ai uint64x1_t vreinterpret_u64_s8(int8x8_t __p0) {
  32536. uint64x1_t __ret;
  32537. __ret = (uint64x1_t)(__p0);
  32538. return __ret;
  32539. }
  32540. #endif
  32541. #ifdef __LITTLE_ENDIAN__
  32542. __ai uint64x1_t vreinterpret_u64_f32(float32x2_t __p0) {
  32543. uint64x1_t __ret;
  32544. __ret = (uint64x1_t)(__p0);
  32545. return __ret;
  32546. }
  32547. #else
  32548. __ai uint64x1_t vreinterpret_u64_f32(float32x2_t __p0) {
  32549. uint64x1_t __ret;
  32550. __ret = (uint64x1_t)(__p0);
  32551. return __ret;
  32552. }
  32553. #endif
  32554. #ifdef __LITTLE_ENDIAN__
  32555. __ai uint64x1_t vreinterpret_u64_f16(float16x4_t __p0) {
  32556. uint64x1_t __ret;
  32557. __ret = (uint64x1_t)(__p0);
  32558. return __ret;
  32559. }
  32560. #else
  32561. __ai uint64x1_t vreinterpret_u64_f16(float16x4_t __p0) {
  32562. uint64x1_t __ret;
  32563. __ret = (uint64x1_t)(__p0);
  32564. return __ret;
  32565. }
  32566. #endif
  32567. #ifdef __LITTLE_ENDIAN__
  32568. __ai uint64x1_t vreinterpret_u64_s32(int32x2_t __p0) {
  32569. uint64x1_t __ret;
  32570. __ret = (uint64x1_t)(__p0);
  32571. return __ret;
  32572. }
  32573. #else
  32574. __ai uint64x1_t vreinterpret_u64_s32(int32x2_t __p0) {
  32575. uint64x1_t __ret;
  32576. __ret = (uint64x1_t)(__p0);
  32577. return __ret;
  32578. }
  32579. #endif
  32580. #ifdef __LITTLE_ENDIAN__
  32581. __ai uint64x1_t vreinterpret_u64_s64(int64x1_t __p0) {
  32582. uint64x1_t __ret;
  32583. __ret = (uint64x1_t)(__p0);
  32584. return __ret;
  32585. }
  32586. #else
  32587. __ai uint64x1_t vreinterpret_u64_s64(int64x1_t __p0) {
  32588. uint64x1_t __ret;
  32589. __ret = (uint64x1_t)(__p0);
  32590. return __ret;
  32591. }
  32592. #endif
  32593. #ifdef __LITTLE_ENDIAN__
  32594. __ai uint64x1_t vreinterpret_u64_s16(int16x4_t __p0) {
  32595. uint64x1_t __ret;
  32596. __ret = (uint64x1_t)(__p0);
  32597. return __ret;
  32598. }
  32599. #else
  32600. __ai uint64x1_t vreinterpret_u64_s16(int16x4_t __p0) {
  32601. uint64x1_t __ret;
  32602. __ret = (uint64x1_t)(__p0);
  32603. return __ret;
  32604. }
  32605. #endif
  32606. #ifdef __LITTLE_ENDIAN__
  32607. __ai uint16x4_t vreinterpret_u16_p8(poly8x8_t __p0) {
  32608. uint16x4_t __ret;
  32609. __ret = (uint16x4_t)(__p0);
  32610. return __ret;
  32611. }
  32612. #else
  32613. __ai uint16x4_t vreinterpret_u16_p8(poly8x8_t __p0) {
  32614. uint16x4_t __ret;
  32615. __ret = (uint16x4_t)(__p0);
  32616. return __ret;
  32617. }
  32618. #endif
  32619. #ifdef __LITTLE_ENDIAN__
  32620. __ai uint16x4_t vreinterpret_u16_p16(poly16x4_t __p0) {
  32621. uint16x4_t __ret;
  32622. __ret = (uint16x4_t)(__p0);
  32623. return __ret;
  32624. }
  32625. #else
  32626. __ai uint16x4_t vreinterpret_u16_p16(poly16x4_t __p0) {
  32627. uint16x4_t __ret;
  32628. __ret = (uint16x4_t)(__p0);
  32629. return __ret;
  32630. }
  32631. #endif
  32632. #ifdef __LITTLE_ENDIAN__
  32633. __ai uint16x4_t vreinterpret_u16_u8(uint8x8_t __p0) {
  32634. uint16x4_t __ret;
  32635. __ret = (uint16x4_t)(__p0);
  32636. return __ret;
  32637. }
  32638. #else
  32639. __ai uint16x4_t vreinterpret_u16_u8(uint8x8_t __p0) {
  32640. uint16x4_t __ret;
  32641. __ret = (uint16x4_t)(__p0);
  32642. return __ret;
  32643. }
  32644. #endif
  32645. #ifdef __LITTLE_ENDIAN__
  32646. __ai uint16x4_t vreinterpret_u16_u32(uint32x2_t __p0) {
  32647. uint16x4_t __ret;
  32648. __ret = (uint16x4_t)(__p0);
  32649. return __ret;
  32650. }
  32651. #else
  32652. __ai uint16x4_t vreinterpret_u16_u32(uint32x2_t __p0) {
  32653. uint16x4_t __ret;
  32654. __ret = (uint16x4_t)(__p0);
  32655. return __ret;
  32656. }
  32657. #endif
  32658. #ifdef __LITTLE_ENDIAN__
  32659. __ai uint16x4_t vreinterpret_u16_u64(uint64x1_t __p0) {
  32660. uint16x4_t __ret;
  32661. __ret = (uint16x4_t)(__p0);
  32662. return __ret;
  32663. }
  32664. #else
  32665. __ai uint16x4_t vreinterpret_u16_u64(uint64x1_t __p0) {
  32666. uint16x4_t __ret;
  32667. __ret = (uint16x4_t)(__p0);
  32668. return __ret;
  32669. }
  32670. #endif
  32671. #ifdef __LITTLE_ENDIAN__
  32672. __ai uint16x4_t vreinterpret_u16_s8(int8x8_t __p0) {
  32673. uint16x4_t __ret;
  32674. __ret = (uint16x4_t)(__p0);
  32675. return __ret;
  32676. }
  32677. #else
  32678. __ai uint16x4_t vreinterpret_u16_s8(int8x8_t __p0) {
  32679. uint16x4_t __ret;
  32680. __ret = (uint16x4_t)(__p0);
  32681. return __ret;
  32682. }
  32683. #endif
  32684. #ifdef __LITTLE_ENDIAN__
  32685. __ai uint16x4_t vreinterpret_u16_f32(float32x2_t __p0) {
  32686. uint16x4_t __ret;
  32687. __ret = (uint16x4_t)(__p0);
  32688. return __ret;
  32689. }
  32690. #else
  32691. __ai uint16x4_t vreinterpret_u16_f32(float32x2_t __p0) {
  32692. uint16x4_t __ret;
  32693. __ret = (uint16x4_t)(__p0);
  32694. return __ret;
  32695. }
  32696. #endif
  32697. #ifdef __LITTLE_ENDIAN__
  32698. __ai uint16x4_t vreinterpret_u16_f16(float16x4_t __p0) {
  32699. uint16x4_t __ret;
  32700. __ret = (uint16x4_t)(__p0);
  32701. return __ret;
  32702. }
  32703. #else
  32704. __ai uint16x4_t vreinterpret_u16_f16(float16x4_t __p0) {
  32705. uint16x4_t __ret;
  32706. __ret = (uint16x4_t)(__p0);
  32707. return __ret;
  32708. }
  32709. #endif
  32710. #ifdef __LITTLE_ENDIAN__
  32711. __ai uint16x4_t vreinterpret_u16_s32(int32x2_t __p0) {
  32712. uint16x4_t __ret;
  32713. __ret = (uint16x4_t)(__p0);
  32714. return __ret;
  32715. }
  32716. #else
  32717. __ai uint16x4_t vreinterpret_u16_s32(int32x2_t __p0) {
  32718. uint16x4_t __ret;
  32719. __ret = (uint16x4_t)(__p0);
  32720. return __ret;
  32721. }
  32722. #endif
  32723. #ifdef __LITTLE_ENDIAN__
  32724. __ai uint16x4_t vreinterpret_u16_s64(int64x1_t __p0) {
  32725. uint16x4_t __ret;
  32726. __ret = (uint16x4_t)(__p0);
  32727. return __ret;
  32728. }
  32729. #else
  32730. __ai uint16x4_t vreinterpret_u16_s64(int64x1_t __p0) {
  32731. uint16x4_t __ret;
  32732. __ret = (uint16x4_t)(__p0);
  32733. return __ret;
  32734. }
  32735. #endif
  32736. #ifdef __LITTLE_ENDIAN__
  32737. __ai uint16x4_t vreinterpret_u16_s16(int16x4_t __p0) {
  32738. uint16x4_t __ret;
  32739. __ret = (uint16x4_t)(__p0);
  32740. return __ret;
  32741. }
  32742. #else
  32743. __ai uint16x4_t vreinterpret_u16_s16(int16x4_t __p0) {
  32744. uint16x4_t __ret;
  32745. __ret = (uint16x4_t)(__p0);
  32746. return __ret;
  32747. }
  32748. #endif
  32749. #ifdef __LITTLE_ENDIAN__
  32750. __ai int8x8_t vreinterpret_s8_p8(poly8x8_t __p0) {
  32751. int8x8_t __ret;
  32752. __ret = (int8x8_t)(__p0);
  32753. return __ret;
  32754. }
  32755. #else
  32756. __ai int8x8_t vreinterpret_s8_p8(poly8x8_t __p0) {
  32757. int8x8_t __ret;
  32758. __ret = (int8x8_t)(__p0);
  32759. return __ret;
  32760. }
  32761. #endif
  32762. #ifdef __LITTLE_ENDIAN__
  32763. __ai int8x8_t vreinterpret_s8_p16(poly16x4_t __p0) {
  32764. int8x8_t __ret;
  32765. __ret = (int8x8_t)(__p0);
  32766. return __ret;
  32767. }
  32768. #else
  32769. __ai int8x8_t vreinterpret_s8_p16(poly16x4_t __p0) {
  32770. int8x8_t __ret;
  32771. __ret = (int8x8_t)(__p0);
  32772. return __ret;
  32773. }
  32774. #endif
  32775. #ifdef __LITTLE_ENDIAN__
  32776. __ai int8x8_t vreinterpret_s8_u8(uint8x8_t __p0) {
  32777. int8x8_t __ret;
  32778. __ret = (int8x8_t)(__p0);
  32779. return __ret;
  32780. }
  32781. #else
  32782. __ai int8x8_t vreinterpret_s8_u8(uint8x8_t __p0) {
  32783. int8x8_t __ret;
  32784. __ret = (int8x8_t)(__p0);
  32785. return __ret;
  32786. }
  32787. #endif
  32788. #ifdef __LITTLE_ENDIAN__
  32789. __ai int8x8_t vreinterpret_s8_u32(uint32x2_t __p0) {
  32790. int8x8_t __ret;
  32791. __ret = (int8x8_t)(__p0);
  32792. return __ret;
  32793. }
  32794. #else
  32795. __ai int8x8_t vreinterpret_s8_u32(uint32x2_t __p0) {
  32796. int8x8_t __ret;
  32797. __ret = (int8x8_t)(__p0);
  32798. return __ret;
  32799. }
  32800. #endif
  32801. #ifdef __LITTLE_ENDIAN__
  32802. __ai int8x8_t vreinterpret_s8_u64(uint64x1_t __p0) {
  32803. int8x8_t __ret;
  32804. __ret = (int8x8_t)(__p0);
  32805. return __ret;
  32806. }
  32807. #else
  32808. __ai int8x8_t vreinterpret_s8_u64(uint64x1_t __p0) {
  32809. int8x8_t __ret;
  32810. __ret = (int8x8_t)(__p0);
  32811. return __ret;
  32812. }
  32813. #endif
  32814. #ifdef __LITTLE_ENDIAN__
  32815. __ai int8x8_t vreinterpret_s8_u16(uint16x4_t __p0) {
  32816. int8x8_t __ret;
  32817. __ret = (int8x8_t)(__p0);
  32818. return __ret;
  32819. }
  32820. #else
  32821. __ai int8x8_t vreinterpret_s8_u16(uint16x4_t __p0) {
  32822. int8x8_t __ret;
  32823. __ret = (int8x8_t)(__p0);
  32824. return __ret;
  32825. }
  32826. #endif
  32827. #ifdef __LITTLE_ENDIAN__
  32828. __ai int8x8_t vreinterpret_s8_f32(float32x2_t __p0) {
  32829. int8x8_t __ret;
  32830. __ret = (int8x8_t)(__p0);
  32831. return __ret;
  32832. }
  32833. #else
  32834. __ai int8x8_t vreinterpret_s8_f32(float32x2_t __p0) {
  32835. int8x8_t __ret;
  32836. __ret = (int8x8_t)(__p0);
  32837. return __ret;
  32838. }
  32839. #endif
  32840. #ifdef __LITTLE_ENDIAN__
  32841. __ai int8x8_t vreinterpret_s8_f16(float16x4_t __p0) {
  32842. int8x8_t __ret;
  32843. __ret = (int8x8_t)(__p0);
  32844. return __ret;
  32845. }
  32846. #else
  32847. __ai int8x8_t vreinterpret_s8_f16(float16x4_t __p0) {
  32848. int8x8_t __ret;
  32849. __ret = (int8x8_t)(__p0);
  32850. return __ret;
  32851. }
  32852. #endif
  32853. #ifdef __LITTLE_ENDIAN__
  32854. __ai int8x8_t vreinterpret_s8_s32(int32x2_t __p0) {
  32855. int8x8_t __ret;
  32856. __ret = (int8x8_t)(__p0);
  32857. return __ret;
  32858. }
  32859. #else
  32860. __ai int8x8_t vreinterpret_s8_s32(int32x2_t __p0) {
  32861. int8x8_t __ret;
  32862. __ret = (int8x8_t)(__p0);
  32863. return __ret;
  32864. }
  32865. #endif
  32866. #ifdef __LITTLE_ENDIAN__
  32867. __ai int8x8_t vreinterpret_s8_s64(int64x1_t __p0) {
  32868. int8x8_t __ret;
  32869. __ret = (int8x8_t)(__p0);
  32870. return __ret;
  32871. }
  32872. #else
  32873. __ai int8x8_t vreinterpret_s8_s64(int64x1_t __p0) {
  32874. int8x8_t __ret;
  32875. __ret = (int8x8_t)(__p0);
  32876. return __ret;
  32877. }
  32878. #endif
  32879. #ifdef __LITTLE_ENDIAN__
  32880. __ai int8x8_t vreinterpret_s8_s16(int16x4_t __p0) {
  32881. int8x8_t __ret;
  32882. __ret = (int8x8_t)(__p0);
  32883. return __ret;
  32884. }
  32885. #else
  32886. __ai int8x8_t vreinterpret_s8_s16(int16x4_t __p0) {
  32887. int8x8_t __ret;
  32888. __ret = (int8x8_t)(__p0);
  32889. return __ret;
  32890. }
  32891. #endif
  32892. #ifdef __LITTLE_ENDIAN__
  32893. __ai float32x2_t vreinterpret_f32_p8(poly8x8_t __p0) {
  32894. float32x2_t __ret;
  32895. __ret = (float32x2_t)(__p0);
  32896. return __ret;
  32897. }
  32898. #else
  32899. __ai float32x2_t vreinterpret_f32_p8(poly8x8_t __p0) {
  32900. float32x2_t __ret;
  32901. __ret = (float32x2_t)(__p0);
  32902. return __ret;
  32903. }
  32904. #endif
  32905. #ifdef __LITTLE_ENDIAN__
  32906. __ai float32x2_t vreinterpret_f32_p16(poly16x4_t __p0) {
  32907. float32x2_t __ret;
  32908. __ret = (float32x2_t)(__p0);
  32909. return __ret;
  32910. }
  32911. #else
  32912. __ai float32x2_t vreinterpret_f32_p16(poly16x4_t __p0) {
  32913. float32x2_t __ret;
  32914. __ret = (float32x2_t)(__p0);
  32915. return __ret;
  32916. }
  32917. #endif
  32918. #ifdef __LITTLE_ENDIAN__
  32919. __ai float32x2_t vreinterpret_f32_u8(uint8x8_t __p0) {
  32920. float32x2_t __ret;
  32921. __ret = (float32x2_t)(__p0);
  32922. return __ret;
  32923. }
  32924. #else
  32925. __ai float32x2_t vreinterpret_f32_u8(uint8x8_t __p0) {
  32926. float32x2_t __ret;
  32927. __ret = (float32x2_t)(__p0);
  32928. return __ret;
  32929. }
  32930. #endif
  32931. #ifdef __LITTLE_ENDIAN__
  32932. __ai float32x2_t vreinterpret_f32_u32(uint32x2_t __p0) {
  32933. float32x2_t __ret;
  32934. __ret = (float32x2_t)(__p0);
  32935. return __ret;
  32936. }
  32937. #else
  32938. __ai float32x2_t vreinterpret_f32_u32(uint32x2_t __p0) {
  32939. float32x2_t __ret;
  32940. __ret = (float32x2_t)(__p0);
  32941. return __ret;
  32942. }
  32943. #endif
  32944. #ifdef __LITTLE_ENDIAN__
  32945. __ai float32x2_t vreinterpret_f32_u64(uint64x1_t __p0) {
  32946. float32x2_t __ret;
  32947. __ret = (float32x2_t)(__p0);
  32948. return __ret;
  32949. }
  32950. #else
  32951. __ai float32x2_t vreinterpret_f32_u64(uint64x1_t __p0) {
  32952. float32x2_t __ret;
  32953. __ret = (float32x2_t)(__p0);
  32954. return __ret;
  32955. }
  32956. #endif
  32957. #ifdef __LITTLE_ENDIAN__
  32958. __ai float32x2_t vreinterpret_f32_u16(uint16x4_t __p0) {
  32959. float32x2_t __ret;
  32960. __ret = (float32x2_t)(__p0);
  32961. return __ret;
  32962. }
  32963. #else
  32964. __ai float32x2_t vreinterpret_f32_u16(uint16x4_t __p0) {
  32965. float32x2_t __ret;
  32966. __ret = (float32x2_t)(__p0);
  32967. return __ret;
  32968. }
  32969. #endif
  32970. #ifdef __LITTLE_ENDIAN__
  32971. __ai float32x2_t vreinterpret_f32_s8(int8x8_t __p0) {
  32972. float32x2_t __ret;
  32973. __ret = (float32x2_t)(__p0);
  32974. return __ret;
  32975. }
  32976. #else
  32977. __ai float32x2_t vreinterpret_f32_s8(int8x8_t __p0) {
  32978. float32x2_t __ret;
  32979. __ret = (float32x2_t)(__p0);
  32980. return __ret;
  32981. }
  32982. #endif
  32983. #ifdef __LITTLE_ENDIAN__
  32984. __ai float32x2_t vreinterpret_f32_f16(float16x4_t __p0) {
  32985. float32x2_t __ret;
  32986. __ret = (float32x2_t)(__p0);
  32987. return __ret;
  32988. }
  32989. #else
  32990. __ai float32x2_t vreinterpret_f32_f16(float16x4_t __p0) {
  32991. float32x2_t __ret;
  32992. __ret = (float32x2_t)(__p0);
  32993. return __ret;
  32994. }
  32995. #endif
  32996. #ifdef __LITTLE_ENDIAN__
  32997. __ai float32x2_t vreinterpret_f32_s32(int32x2_t __p0) {
  32998. float32x2_t __ret;
  32999. __ret = (float32x2_t)(__p0);
  33000. return __ret;
  33001. }
  33002. #else
  33003. __ai float32x2_t vreinterpret_f32_s32(int32x2_t __p0) {
  33004. float32x2_t __ret;
  33005. __ret = (float32x2_t)(__p0);
  33006. return __ret;
  33007. }
  33008. #endif
  33009. #ifdef __LITTLE_ENDIAN__
  33010. __ai float32x2_t vreinterpret_f32_s64(int64x1_t __p0) {
  33011. float32x2_t __ret;
  33012. __ret = (float32x2_t)(__p0);
  33013. return __ret;
  33014. }
  33015. #else
  33016. __ai float32x2_t vreinterpret_f32_s64(int64x1_t __p0) {
  33017. float32x2_t __ret;
  33018. __ret = (float32x2_t)(__p0);
  33019. return __ret;
  33020. }
  33021. #endif
  33022. #ifdef __LITTLE_ENDIAN__
  33023. __ai float32x2_t vreinterpret_f32_s16(int16x4_t __p0) {
  33024. float32x2_t __ret;
  33025. __ret = (float32x2_t)(__p0);
  33026. return __ret;
  33027. }
  33028. #else
  33029. __ai float32x2_t vreinterpret_f32_s16(int16x4_t __p0) {
  33030. float32x2_t __ret;
  33031. __ret = (float32x2_t)(__p0);
  33032. return __ret;
  33033. }
  33034. #endif
  33035. #ifdef __LITTLE_ENDIAN__
  33036. __ai float16x4_t vreinterpret_f16_p8(poly8x8_t __p0) {
  33037. float16x4_t __ret;
  33038. __ret = (float16x4_t)(__p0);
  33039. return __ret;
  33040. }
  33041. #else
  33042. __ai float16x4_t vreinterpret_f16_p8(poly8x8_t __p0) {
  33043. float16x4_t __ret;
  33044. __ret = (float16x4_t)(__p0);
  33045. return __ret;
  33046. }
  33047. #endif
  33048. #ifdef __LITTLE_ENDIAN__
  33049. __ai float16x4_t vreinterpret_f16_p16(poly16x4_t __p0) {
  33050. float16x4_t __ret;
  33051. __ret = (float16x4_t)(__p0);
  33052. return __ret;
  33053. }
  33054. #else
  33055. __ai float16x4_t vreinterpret_f16_p16(poly16x4_t __p0) {
  33056. float16x4_t __ret;
  33057. __ret = (float16x4_t)(__p0);
  33058. return __ret;
  33059. }
  33060. #endif
  33061. #ifdef __LITTLE_ENDIAN__
  33062. __ai float16x4_t vreinterpret_f16_u8(uint8x8_t __p0) {
  33063. float16x4_t __ret;
  33064. __ret = (float16x4_t)(__p0);
  33065. return __ret;
  33066. }
  33067. #else
  33068. __ai float16x4_t vreinterpret_f16_u8(uint8x8_t __p0) {
  33069. float16x4_t __ret;
  33070. __ret = (float16x4_t)(__p0);
  33071. return __ret;
  33072. }
  33073. #endif
  33074. #ifdef __LITTLE_ENDIAN__
  33075. __ai float16x4_t vreinterpret_f16_u32(uint32x2_t __p0) {
  33076. float16x4_t __ret;
  33077. __ret = (float16x4_t)(__p0);
  33078. return __ret;
  33079. }
  33080. #else
  33081. __ai float16x4_t vreinterpret_f16_u32(uint32x2_t __p0) {
  33082. float16x4_t __ret;
  33083. __ret = (float16x4_t)(__p0);
  33084. return __ret;
  33085. }
  33086. #endif
  33087. #ifdef __LITTLE_ENDIAN__
  33088. __ai float16x4_t vreinterpret_f16_u64(uint64x1_t __p0) {
  33089. float16x4_t __ret;
  33090. __ret = (float16x4_t)(__p0);
  33091. return __ret;
  33092. }
  33093. #else
  33094. __ai float16x4_t vreinterpret_f16_u64(uint64x1_t __p0) {
  33095. float16x4_t __ret;
  33096. __ret = (float16x4_t)(__p0);
  33097. return __ret;
  33098. }
  33099. #endif
  33100. #ifdef __LITTLE_ENDIAN__
  33101. __ai float16x4_t vreinterpret_f16_u16(uint16x4_t __p0) {
  33102. float16x4_t __ret;
  33103. __ret = (float16x4_t)(__p0);
  33104. return __ret;
  33105. }
  33106. #else
  33107. __ai float16x4_t vreinterpret_f16_u16(uint16x4_t __p0) {
  33108. float16x4_t __ret;
  33109. __ret = (float16x4_t)(__p0);
  33110. return __ret;
  33111. }
  33112. #endif
  33113. #ifdef __LITTLE_ENDIAN__
  33114. __ai float16x4_t vreinterpret_f16_s8(int8x8_t __p0) {
  33115. float16x4_t __ret;
  33116. __ret = (float16x4_t)(__p0);
  33117. return __ret;
  33118. }
  33119. #else
  33120. __ai float16x4_t vreinterpret_f16_s8(int8x8_t __p0) {
  33121. float16x4_t __ret;
  33122. __ret = (float16x4_t)(__p0);
  33123. return __ret;
  33124. }
  33125. #endif
  33126. #ifdef __LITTLE_ENDIAN__
  33127. __ai float16x4_t vreinterpret_f16_f32(float32x2_t __p0) {
  33128. float16x4_t __ret;
  33129. __ret = (float16x4_t)(__p0);
  33130. return __ret;
  33131. }
  33132. #else
  33133. __ai float16x4_t vreinterpret_f16_f32(float32x2_t __p0) {
  33134. float16x4_t __ret;
  33135. __ret = (float16x4_t)(__p0);
  33136. return __ret;
  33137. }
  33138. #endif
  33139. #ifdef __LITTLE_ENDIAN__
  33140. __ai float16x4_t vreinterpret_f16_s32(int32x2_t __p0) {
  33141. float16x4_t __ret;
  33142. __ret = (float16x4_t)(__p0);
  33143. return __ret;
  33144. }
  33145. #else
  33146. __ai float16x4_t vreinterpret_f16_s32(int32x2_t __p0) {
  33147. float16x4_t __ret;
  33148. __ret = (float16x4_t)(__p0);
  33149. return __ret;
  33150. }
  33151. #endif
  33152. #ifdef __LITTLE_ENDIAN__
  33153. __ai float16x4_t vreinterpret_f16_s64(int64x1_t __p0) {
  33154. float16x4_t __ret;
  33155. __ret = (float16x4_t)(__p0);
  33156. return __ret;
  33157. }
  33158. #else
  33159. __ai float16x4_t vreinterpret_f16_s64(int64x1_t __p0) {
  33160. float16x4_t __ret;
  33161. __ret = (float16x4_t)(__p0);
  33162. return __ret;
  33163. }
  33164. #endif
  33165. #ifdef __LITTLE_ENDIAN__
  33166. __ai float16x4_t vreinterpret_f16_s16(int16x4_t __p0) {
  33167. float16x4_t __ret;
  33168. __ret = (float16x4_t)(__p0);
  33169. return __ret;
  33170. }
  33171. #else
  33172. __ai float16x4_t vreinterpret_f16_s16(int16x4_t __p0) {
  33173. float16x4_t __ret;
  33174. __ret = (float16x4_t)(__p0);
  33175. return __ret;
  33176. }
  33177. #endif
  33178. #ifdef __LITTLE_ENDIAN__
  33179. __ai int32x2_t vreinterpret_s32_p8(poly8x8_t __p0) {
  33180. int32x2_t __ret;
  33181. __ret = (int32x2_t)(__p0);
  33182. return __ret;
  33183. }
  33184. #else
  33185. __ai int32x2_t vreinterpret_s32_p8(poly8x8_t __p0) {
  33186. int32x2_t __ret;
  33187. __ret = (int32x2_t)(__p0);
  33188. return __ret;
  33189. }
  33190. #endif
  33191. #ifdef __LITTLE_ENDIAN__
  33192. __ai int32x2_t vreinterpret_s32_p16(poly16x4_t __p0) {
  33193. int32x2_t __ret;
  33194. __ret = (int32x2_t)(__p0);
  33195. return __ret;
  33196. }
  33197. #else
  33198. __ai int32x2_t vreinterpret_s32_p16(poly16x4_t __p0) {
  33199. int32x2_t __ret;
  33200. __ret = (int32x2_t)(__p0);
  33201. return __ret;
  33202. }
  33203. #endif
  33204. #ifdef __LITTLE_ENDIAN__
  33205. __ai int32x2_t vreinterpret_s32_u8(uint8x8_t __p0) {
  33206. int32x2_t __ret;
  33207. __ret = (int32x2_t)(__p0);
  33208. return __ret;
  33209. }
  33210. #else
  33211. __ai int32x2_t vreinterpret_s32_u8(uint8x8_t __p0) {
  33212. int32x2_t __ret;
  33213. __ret = (int32x2_t)(__p0);
  33214. return __ret;
  33215. }
  33216. #endif
  33217. #ifdef __LITTLE_ENDIAN__
  33218. __ai int32x2_t vreinterpret_s32_u32(uint32x2_t __p0) {
  33219. int32x2_t __ret;
  33220. __ret = (int32x2_t)(__p0);
  33221. return __ret;
  33222. }
  33223. #else
  33224. __ai int32x2_t vreinterpret_s32_u32(uint32x2_t __p0) {
  33225. int32x2_t __ret;
  33226. __ret = (int32x2_t)(__p0);
  33227. return __ret;
  33228. }
  33229. #endif
  33230. #ifdef __LITTLE_ENDIAN__
  33231. __ai int32x2_t vreinterpret_s32_u64(uint64x1_t __p0) {
  33232. int32x2_t __ret;
  33233. __ret = (int32x2_t)(__p0);
  33234. return __ret;
  33235. }
  33236. #else
  33237. __ai int32x2_t vreinterpret_s32_u64(uint64x1_t __p0) {
  33238. int32x2_t __ret;
  33239. __ret = (int32x2_t)(__p0);
  33240. return __ret;
  33241. }
  33242. #endif
  33243. #ifdef __LITTLE_ENDIAN__
  33244. __ai int32x2_t vreinterpret_s32_u16(uint16x4_t __p0) {
  33245. int32x2_t __ret;
  33246. __ret = (int32x2_t)(__p0);
  33247. return __ret;
  33248. }
  33249. #else
  33250. __ai int32x2_t vreinterpret_s32_u16(uint16x4_t __p0) {
  33251. int32x2_t __ret;
  33252. __ret = (int32x2_t)(__p0);
  33253. return __ret;
  33254. }
  33255. #endif
  33256. #ifdef __LITTLE_ENDIAN__
  33257. __ai int32x2_t vreinterpret_s32_s8(int8x8_t __p0) {
  33258. int32x2_t __ret;
  33259. __ret = (int32x2_t)(__p0);
  33260. return __ret;
  33261. }
  33262. #else
  33263. __ai int32x2_t vreinterpret_s32_s8(int8x8_t __p0) {
  33264. int32x2_t __ret;
  33265. __ret = (int32x2_t)(__p0);
  33266. return __ret;
  33267. }
  33268. #endif
  33269. #ifdef __LITTLE_ENDIAN__
  33270. __ai int32x2_t vreinterpret_s32_f32(float32x2_t __p0) {
  33271. int32x2_t __ret;
  33272. __ret = (int32x2_t)(__p0);
  33273. return __ret;
  33274. }
  33275. #else
  33276. __ai int32x2_t vreinterpret_s32_f32(float32x2_t __p0) {
  33277. int32x2_t __ret;
  33278. __ret = (int32x2_t)(__p0);
  33279. return __ret;
  33280. }
  33281. #endif
  33282. #ifdef __LITTLE_ENDIAN__
  33283. __ai int32x2_t vreinterpret_s32_f16(float16x4_t __p0) {
  33284. int32x2_t __ret;
  33285. __ret = (int32x2_t)(__p0);
  33286. return __ret;
  33287. }
  33288. #else
  33289. __ai int32x2_t vreinterpret_s32_f16(float16x4_t __p0) {
  33290. int32x2_t __ret;
  33291. __ret = (int32x2_t)(__p0);
  33292. return __ret;
  33293. }
  33294. #endif
  33295. #ifdef __LITTLE_ENDIAN__
  33296. __ai int32x2_t vreinterpret_s32_s64(int64x1_t __p0) {
  33297. int32x2_t __ret;
  33298. __ret = (int32x2_t)(__p0);
  33299. return __ret;
  33300. }
  33301. #else
  33302. __ai int32x2_t vreinterpret_s32_s64(int64x1_t __p0) {
  33303. int32x2_t __ret;
  33304. __ret = (int32x2_t)(__p0);
  33305. return __ret;
  33306. }
  33307. #endif
  33308. #ifdef __LITTLE_ENDIAN__
  33309. __ai int32x2_t vreinterpret_s32_s16(int16x4_t __p0) {
  33310. int32x2_t __ret;
  33311. __ret = (int32x2_t)(__p0);
  33312. return __ret;
  33313. }
  33314. #else
  33315. __ai int32x2_t vreinterpret_s32_s16(int16x4_t __p0) {
  33316. int32x2_t __ret;
  33317. __ret = (int32x2_t)(__p0);
  33318. return __ret;
  33319. }
  33320. #endif
  33321. #ifdef __LITTLE_ENDIAN__
  33322. __ai int64x1_t vreinterpret_s64_p8(poly8x8_t __p0) {
  33323. int64x1_t __ret;
  33324. __ret = (int64x1_t)(__p0);
  33325. return __ret;
  33326. }
  33327. #else
  33328. __ai int64x1_t vreinterpret_s64_p8(poly8x8_t __p0) {
  33329. int64x1_t __ret;
  33330. __ret = (int64x1_t)(__p0);
  33331. return __ret;
  33332. }
  33333. #endif
  33334. #ifdef __LITTLE_ENDIAN__
  33335. __ai int64x1_t vreinterpret_s64_p16(poly16x4_t __p0) {
  33336. int64x1_t __ret;
  33337. __ret = (int64x1_t)(__p0);
  33338. return __ret;
  33339. }
  33340. #else
  33341. __ai int64x1_t vreinterpret_s64_p16(poly16x4_t __p0) {
  33342. int64x1_t __ret;
  33343. __ret = (int64x1_t)(__p0);
  33344. return __ret;
  33345. }
  33346. #endif
  33347. #ifdef __LITTLE_ENDIAN__
  33348. __ai int64x1_t vreinterpret_s64_u8(uint8x8_t __p0) {
  33349. int64x1_t __ret;
  33350. __ret = (int64x1_t)(__p0);
  33351. return __ret;
  33352. }
  33353. #else
  33354. __ai int64x1_t vreinterpret_s64_u8(uint8x8_t __p0) {
  33355. int64x1_t __ret;
  33356. __ret = (int64x1_t)(__p0);
  33357. return __ret;
  33358. }
  33359. #endif
  33360. #ifdef __LITTLE_ENDIAN__
  33361. __ai int64x1_t vreinterpret_s64_u32(uint32x2_t __p0) {
  33362. int64x1_t __ret;
  33363. __ret = (int64x1_t)(__p0);
  33364. return __ret;
  33365. }
  33366. #else
  33367. __ai int64x1_t vreinterpret_s64_u32(uint32x2_t __p0) {
  33368. int64x1_t __ret;
  33369. __ret = (int64x1_t)(__p0);
  33370. return __ret;
  33371. }
  33372. #endif
  33373. #ifdef __LITTLE_ENDIAN__
  33374. __ai int64x1_t vreinterpret_s64_u64(uint64x1_t __p0) {
  33375. int64x1_t __ret;
  33376. __ret = (int64x1_t)(__p0);
  33377. return __ret;
  33378. }
  33379. #else
  33380. __ai int64x1_t vreinterpret_s64_u64(uint64x1_t __p0) {
  33381. int64x1_t __ret;
  33382. __ret = (int64x1_t)(__p0);
  33383. return __ret;
  33384. }
  33385. #endif
  33386. #ifdef __LITTLE_ENDIAN__
  33387. __ai int64x1_t vreinterpret_s64_u16(uint16x4_t __p0) {
  33388. int64x1_t __ret;
  33389. __ret = (int64x1_t)(__p0);
  33390. return __ret;
  33391. }
  33392. #else
  33393. __ai int64x1_t vreinterpret_s64_u16(uint16x4_t __p0) {
  33394. int64x1_t __ret;
  33395. __ret = (int64x1_t)(__p0);
  33396. return __ret;
  33397. }
  33398. #endif
  33399. #ifdef __LITTLE_ENDIAN__
  33400. __ai int64x1_t vreinterpret_s64_s8(int8x8_t __p0) {
  33401. int64x1_t __ret;
  33402. __ret = (int64x1_t)(__p0);
  33403. return __ret;
  33404. }
  33405. #else
  33406. __ai int64x1_t vreinterpret_s64_s8(int8x8_t __p0) {
  33407. int64x1_t __ret;
  33408. __ret = (int64x1_t)(__p0);
  33409. return __ret;
  33410. }
  33411. #endif
  33412. #ifdef __LITTLE_ENDIAN__
  33413. __ai int64x1_t vreinterpret_s64_f32(float32x2_t __p0) {
  33414. int64x1_t __ret;
  33415. __ret = (int64x1_t)(__p0);
  33416. return __ret;
  33417. }
  33418. #else
  33419. __ai int64x1_t vreinterpret_s64_f32(float32x2_t __p0) {
  33420. int64x1_t __ret;
  33421. __ret = (int64x1_t)(__p0);
  33422. return __ret;
  33423. }
  33424. #endif
  33425. #ifdef __LITTLE_ENDIAN__
  33426. __ai int64x1_t vreinterpret_s64_f16(float16x4_t __p0) {
  33427. int64x1_t __ret;
  33428. __ret = (int64x1_t)(__p0);
  33429. return __ret;
  33430. }
  33431. #else
  33432. __ai int64x1_t vreinterpret_s64_f16(float16x4_t __p0) {
  33433. int64x1_t __ret;
  33434. __ret = (int64x1_t)(__p0);
  33435. return __ret;
  33436. }
  33437. #endif
  33438. #ifdef __LITTLE_ENDIAN__
  33439. __ai int64x1_t vreinterpret_s64_s32(int32x2_t __p0) {
  33440. int64x1_t __ret;
  33441. __ret = (int64x1_t)(__p0);
  33442. return __ret;
  33443. }
  33444. #else
  33445. __ai int64x1_t vreinterpret_s64_s32(int32x2_t __p0) {
  33446. int64x1_t __ret;
  33447. __ret = (int64x1_t)(__p0);
  33448. return __ret;
  33449. }
  33450. #endif
  33451. #ifdef __LITTLE_ENDIAN__
  33452. __ai int64x1_t vreinterpret_s64_s16(int16x4_t __p0) {
  33453. int64x1_t __ret;
  33454. __ret = (int64x1_t)(__p0);
  33455. return __ret;
  33456. }
  33457. #else
  33458. __ai int64x1_t vreinterpret_s64_s16(int16x4_t __p0) {
  33459. int64x1_t __ret;
  33460. __ret = (int64x1_t)(__p0);
  33461. return __ret;
  33462. }
  33463. #endif
  33464. #ifdef __LITTLE_ENDIAN__
  33465. __ai int16x4_t vreinterpret_s16_p8(poly8x8_t __p0) {
  33466. int16x4_t __ret;
  33467. __ret = (int16x4_t)(__p0);
  33468. return __ret;
  33469. }
  33470. #else
  33471. __ai int16x4_t vreinterpret_s16_p8(poly8x8_t __p0) {
  33472. int16x4_t __ret;
  33473. __ret = (int16x4_t)(__p0);
  33474. return __ret;
  33475. }
  33476. #endif
  33477. #ifdef __LITTLE_ENDIAN__
  33478. __ai int16x4_t vreinterpret_s16_p16(poly16x4_t __p0) {
  33479. int16x4_t __ret;
  33480. __ret = (int16x4_t)(__p0);
  33481. return __ret;
  33482. }
  33483. #else
  33484. __ai int16x4_t vreinterpret_s16_p16(poly16x4_t __p0) {
  33485. int16x4_t __ret;
  33486. __ret = (int16x4_t)(__p0);
  33487. return __ret;
  33488. }
  33489. #endif
  33490. #ifdef __LITTLE_ENDIAN__
  33491. __ai int16x4_t vreinterpret_s16_u8(uint8x8_t __p0) {
  33492. int16x4_t __ret;
  33493. __ret = (int16x4_t)(__p0);
  33494. return __ret;
  33495. }
  33496. #else
  33497. __ai int16x4_t vreinterpret_s16_u8(uint8x8_t __p0) {
  33498. int16x4_t __ret;
  33499. __ret = (int16x4_t)(__p0);
  33500. return __ret;
  33501. }
  33502. #endif
  33503. #ifdef __LITTLE_ENDIAN__
  33504. __ai int16x4_t vreinterpret_s16_u32(uint32x2_t __p0) {
  33505. int16x4_t __ret;
  33506. __ret = (int16x4_t)(__p0);
  33507. return __ret;
  33508. }
  33509. #else
  33510. __ai int16x4_t vreinterpret_s16_u32(uint32x2_t __p0) {
  33511. int16x4_t __ret;
  33512. __ret = (int16x4_t)(__p0);
  33513. return __ret;
  33514. }
  33515. #endif
  33516. #ifdef __LITTLE_ENDIAN__
  33517. __ai int16x4_t vreinterpret_s16_u64(uint64x1_t __p0) {
  33518. int16x4_t __ret;
  33519. __ret = (int16x4_t)(__p0);
  33520. return __ret;
  33521. }
  33522. #else
  33523. __ai int16x4_t vreinterpret_s16_u64(uint64x1_t __p0) {
  33524. int16x4_t __ret;
  33525. __ret = (int16x4_t)(__p0);
  33526. return __ret;
  33527. }
  33528. #endif
  33529. #ifdef __LITTLE_ENDIAN__
  33530. __ai int16x4_t vreinterpret_s16_u16(uint16x4_t __p0) {
  33531. int16x4_t __ret;
  33532. __ret = (int16x4_t)(__p0);
  33533. return __ret;
  33534. }
  33535. #else
  33536. __ai int16x4_t vreinterpret_s16_u16(uint16x4_t __p0) {
  33537. int16x4_t __ret;
  33538. __ret = (int16x4_t)(__p0);
  33539. return __ret;
  33540. }
  33541. #endif
  33542. #ifdef __LITTLE_ENDIAN__
  33543. __ai int16x4_t vreinterpret_s16_s8(int8x8_t __p0) {
  33544. int16x4_t __ret;
  33545. __ret = (int16x4_t)(__p0);
  33546. return __ret;
  33547. }
  33548. #else
  33549. __ai int16x4_t vreinterpret_s16_s8(int8x8_t __p0) {
  33550. int16x4_t __ret;
  33551. __ret = (int16x4_t)(__p0);
  33552. return __ret;
  33553. }
  33554. #endif
  33555. #ifdef __LITTLE_ENDIAN__
  33556. __ai int16x4_t vreinterpret_s16_f32(float32x2_t __p0) {
  33557. int16x4_t __ret;
  33558. __ret = (int16x4_t)(__p0);
  33559. return __ret;
  33560. }
  33561. #else
  33562. __ai int16x4_t vreinterpret_s16_f32(float32x2_t __p0) {
  33563. int16x4_t __ret;
  33564. __ret = (int16x4_t)(__p0);
  33565. return __ret;
  33566. }
  33567. #endif
  33568. #ifdef __LITTLE_ENDIAN__
  33569. __ai int16x4_t vreinterpret_s16_f16(float16x4_t __p0) {
  33570. int16x4_t __ret;
  33571. __ret = (int16x4_t)(__p0);
  33572. return __ret;
  33573. }
  33574. #else
  33575. __ai int16x4_t vreinterpret_s16_f16(float16x4_t __p0) {
  33576. int16x4_t __ret;
  33577. __ret = (int16x4_t)(__p0);
  33578. return __ret;
  33579. }
  33580. #endif
  33581. #ifdef __LITTLE_ENDIAN__
  33582. __ai int16x4_t vreinterpret_s16_s32(int32x2_t __p0) {
  33583. int16x4_t __ret;
  33584. __ret = (int16x4_t)(__p0);
  33585. return __ret;
  33586. }
  33587. #else
  33588. __ai int16x4_t vreinterpret_s16_s32(int32x2_t __p0) {
  33589. int16x4_t __ret;
  33590. __ret = (int16x4_t)(__p0);
  33591. return __ret;
  33592. }
  33593. #endif
  33594. #ifdef __LITTLE_ENDIAN__
  33595. __ai int16x4_t vreinterpret_s16_s64(int64x1_t __p0) {
  33596. int16x4_t __ret;
  33597. __ret = (int16x4_t)(__p0);
  33598. return __ret;
  33599. }
  33600. #else
  33601. __ai int16x4_t vreinterpret_s16_s64(int64x1_t __p0) {
  33602. int16x4_t __ret;
  33603. __ret = (int16x4_t)(__p0);
  33604. return __ret;
  33605. }
  33606. #endif
  33607. #endif
  33608. #if (__ARM_FP & 2)
  33609. #ifdef __LITTLE_ENDIAN__
  33610. __ai float16x4_t vcvt_f16_f32(float32x4_t __p0) {
  33611. float16x4_t __ret;
  33612. __ret = (float16x4_t) __builtin_neon_vcvt_f16_f32((int8x16_t)__p0, 8);
  33613. return __ret;
  33614. }
  33615. #else
  33616. __ai float16x4_t vcvt_f16_f32(float32x4_t __p0) {
  33617. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  33618. float16x4_t __ret;
  33619. __ret = (float16x4_t) __builtin_neon_vcvt_f16_f32((int8x16_t)__rev0, 8);
  33620. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  33621. return __ret;
  33622. }
  33623. __ai float16x4_t __noswap_vcvt_f16_f32(float32x4_t __p0) {
  33624. float16x4_t __ret;
  33625. __ret = (float16x4_t) __builtin_neon_vcvt_f16_f32((int8x16_t)__p0, 8);
  33626. return __ret;
  33627. }
  33628. #endif
  33629. #ifdef __LITTLE_ENDIAN__
  33630. __ai float32x4_t vcvt_f32_f16(float16x4_t __p0) {
  33631. float32x4_t __ret;
  33632. __ret = (float32x4_t) __builtin_neon_vcvt_f32_f16((int8x8_t)__p0, 41);
  33633. return __ret;
  33634. }
  33635. #else
  33636. __ai float32x4_t vcvt_f32_f16(float16x4_t __p0) {
  33637. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  33638. float32x4_t __ret;
  33639. __ret = (float32x4_t) __builtin_neon_vcvt_f32_f16((int8x8_t)__rev0, 41);
  33640. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  33641. return __ret;
  33642. }
  33643. __ai float32x4_t __noswap_vcvt_f32_f16(float16x4_t __p0) {
  33644. float32x4_t __ret;
  33645. __ret = (float32x4_t) __builtin_neon_vcvt_f32_f16((int8x8_t)__p0, 41);
  33646. return __ret;
  33647. }
  33648. #endif
  33649. #ifdef __LITTLE_ENDIAN__
  33650. #define vld1q_f16(__p0) __extension__ ({ \
  33651. float16x8_t __ret; \
  33652. __ret = (float16x8_t) __builtin_neon_vld1q_v(__p0, 40); \
  33653. __ret; \
  33654. })
  33655. #else
  33656. #define vld1q_f16(__p0) __extension__ ({ \
  33657. float16x8_t __ret; \
  33658. __ret = (float16x8_t) __builtin_neon_vld1q_v(__p0, 40); \
  33659. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  33660. __ret; \
  33661. })
  33662. #endif
  33663. #ifdef __LITTLE_ENDIAN__
  33664. #define vld1_f16(__p0) __extension__ ({ \
  33665. float16x4_t __ret; \
  33666. __ret = (float16x4_t) __builtin_neon_vld1_v(__p0, 8); \
  33667. __ret; \
  33668. })
  33669. #else
  33670. #define vld1_f16(__p0) __extension__ ({ \
  33671. float16x4_t __ret; \
  33672. __ret = (float16x4_t) __builtin_neon_vld1_v(__p0, 8); \
  33673. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  33674. __ret; \
  33675. })
  33676. #endif
  33677. #ifdef __LITTLE_ENDIAN__
  33678. #define vld1q_dup_f16(__p0) __extension__ ({ \
  33679. float16x8_t __ret; \
  33680. __ret = (float16x8_t) __builtin_neon_vld1q_dup_v(__p0, 40); \
  33681. __ret; \
  33682. })
  33683. #else
  33684. #define vld1q_dup_f16(__p0) __extension__ ({ \
  33685. float16x8_t __ret; \
  33686. __ret = (float16x8_t) __builtin_neon_vld1q_dup_v(__p0, 40); \
  33687. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  33688. __ret; \
  33689. })
  33690. #endif
  33691. #ifdef __LITTLE_ENDIAN__
  33692. #define vld1_dup_f16(__p0) __extension__ ({ \
  33693. float16x4_t __ret; \
  33694. __ret = (float16x4_t) __builtin_neon_vld1_dup_v(__p0, 8); \
  33695. __ret; \
  33696. })
  33697. #else
  33698. #define vld1_dup_f16(__p0) __extension__ ({ \
  33699. float16x4_t __ret; \
  33700. __ret = (float16x4_t) __builtin_neon_vld1_dup_v(__p0, 8); \
  33701. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  33702. __ret; \
  33703. })
  33704. #endif
  33705. #ifdef __LITTLE_ENDIAN__
  33706. #define vld1q_lane_f16(__p0, __p1, __p2) __extension__ ({ \
  33707. float16x8_t __s1 = __p1; \
  33708. float16x8_t __ret; \
  33709. __ret = (float16x8_t) __builtin_neon_vld1q_lane_v(__p0, (int8x16_t)__s1, __p2, 40); \
  33710. __ret; \
  33711. })
  33712. #else
  33713. #define vld1q_lane_f16(__p0, __p1, __p2) __extension__ ({ \
  33714. float16x8_t __s1 = __p1; \
  33715. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  33716. float16x8_t __ret; \
  33717. __ret = (float16x8_t) __builtin_neon_vld1q_lane_v(__p0, (int8x16_t)__rev1, __p2, 40); \
  33718. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  33719. __ret; \
  33720. })
  33721. #endif
  33722. #ifdef __LITTLE_ENDIAN__
  33723. #define vld1_lane_f16(__p0, __p1, __p2) __extension__ ({ \
  33724. float16x4_t __s1 = __p1; \
  33725. float16x4_t __ret; \
  33726. __ret = (float16x4_t) __builtin_neon_vld1_lane_v(__p0, (int8x8_t)__s1, __p2, 8); \
  33727. __ret; \
  33728. })
  33729. #else
  33730. #define vld1_lane_f16(__p0, __p1, __p2) __extension__ ({ \
  33731. float16x4_t __s1 = __p1; \
  33732. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  33733. float16x4_t __ret; \
  33734. __ret = (float16x4_t) __builtin_neon_vld1_lane_v(__p0, (int8x8_t)__rev1, __p2, 8); \
  33735. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  33736. __ret; \
  33737. })
  33738. #endif
  33739. #ifdef __LITTLE_ENDIAN__
  33740. #define vld1q_f16_x2(__p0) __extension__ ({ \
  33741. float16x8x2_t __ret; \
  33742. __builtin_neon_vld1q_x2_v(&__ret, __p0, 40); \
  33743. __ret; \
  33744. })
  33745. #else
  33746. #define vld1q_f16_x2(__p0) __extension__ ({ \
  33747. float16x8x2_t __ret; \
  33748. __builtin_neon_vld1q_x2_v(&__ret, __p0, 40); \
  33749. \
  33750. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  33751. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  33752. __ret; \
  33753. })
  33754. #endif
  33755. #ifdef __LITTLE_ENDIAN__
  33756. #define vld1_f16_x2(__p0) __extension__ ({ \
  33757. float16x4x2_t __ret; \
  33758. __builtin_neon_vld1_x2_v(&__ret, __p0, 8); \
  33759. __ret; \
  33760. })
  33761. #else
  33762. #define vld1_f16_x2(__p0) __extension__ ({ \
  33763. float16x4x2_t __ret; \
  33764. __builtin_neon_vld1_x2_v(&__ret, __p0, 8); \
  33765. \
  33766. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  33767. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  33768. __ret; \
  33769. })
  33770. #endif
  33771. #ifdef __LITTLE_ENDIAN__
  33772. #define vld1q_f16_x3(__p0) __extension__ ({ \
  33773. float16x8x3_t __ret; \
  33774. __builtin_neon_vld1q_x3_v(&__ret, __p0, 40); \
  33775. __ret; \
  33776. })
  33777. #else
  33778. #define vld1q_f16_x3(__p0) __extension__ ({ \
  33779. float16x8x3_t __ret; \
  33780. __builtin_neon_vld1q_x3_v(&__ret, __p0, 40); \
  33781. \
  33782. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  33783. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  33784. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  33785. __ret; \
  33786. })
  33787. #endif
  33788. #ifdef __LITTLE_ENDIAN__
  33789. #define vld1_f16_x3(__p0) __extension__ ({ \
  33790. float16x4x3_t __ret; \
  33791. __builtin_neon_vld1_x3_v(&__ret, __p0, 8); \
  33792. __ret; \
  33793. })
  33794. #else
  33795. #define vld1_f16_x3(__p0) __extension__ ({ \
  33796. float16x4x3_t __ret; \
  33797. __builtin_neon_vld1_x3_v(&__ret, __p0, 8); \
  33798. \
  33799. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  33800. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  33801. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  33802. __ret; \
  33803. })
  33804. #endif
  33805. #ifdef __LITTLE_ENDIAN__
  33806. #define vld1q_f16_x4(__p0) __extension__ ({ \
  33807. float16x8x4_t __ret; \
  33808. __builtin_neon_vld1q_x4_v(&__ret, __p0, 40); \
  33809. __ret; \
  33810. })
  33811. #else
  33812. #define vld1q_f16_x4(__p0) __extension__ ({ \
  33813. float16x8x4_t __ret; \
  33814. __builtin_neon_vld1q_x4_v(&__ret, __p0, 40); \
  33815. \
  33816. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  33817. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  33818. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  33819. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  33820. __ret; \
  33821. })
  33822. #endif
  33823. #ifdef __LITTLE_ENDIAN__
  33824. #define vld1_f16_x4(__p0) __extension__ ({ \
  33825. float16x4x4_t __ret; \
  33826. __builtin_neon_vld1_x4_v(&__ret, __p0, 8); \
  33827. __ret; \
  33828. })
  33829. #else
  33830. #define vld1_f16_x4(__p0) __extension__ ({ \
  33831. float16x4x4_t __ret; \
  33832. __builtin_neon_vld1_x4_v(&__ret, __p0, 8); \
  33833. \
  33834. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  33835. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  33836. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  33837. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 3, 2, 1, 0); \
  33838. __ret; \
  33839. })
  33840. #endif
  33841. #ifdef __LITTLE_ENDIAN__
  33842. #define vld2q_f16(__p0) __extension__ ({ \
  33843. float16x8x2_t __ret; \
  33844. __builtin_neon_vld2q_v(&__ret, __p0, 40); \
  33845. __ret; \
  33846. })
  33847. #else
  33848. #define vld2q_f16(__p0) __extension__ ({ \
  33849. float16x8x2_t __ret; \
  33850. __builtin_neon_vld2q_v(&__ret, __p0, 40); \
  33851. \
  33852. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  33853. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  33854. __ret; \
  33855. })
  33856. #endif
  33857. #ifdef __LITTLE_ENDIAN__
  33858. #define vld2_f16(__p0) __extension__ ({ \
  33859. float16x4x2_t __ret; \
  33860. __builtin_neon_vld2_v(&__ret, __p0, 8); \
  33861. __ret; \
  33862. })
  33863. #else
  33864. #define vld2_f16(__p0) __extension__ ({ \
  33865. float16x4x2_t __ret; \
  33866. __builtin_neon_vld2_v(&__ret, __p0, 8); \
  33867. \
  33868. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  33869. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  33870. __ret; \
  33871. })
  33872. #endif
  33873. #ifdef __LITTLE_ENDIAN__
  33874. #define vld2q_dup_f16(__p0) __extension__ ({ \
  33875. float16x8x2_t __ret; \
  33876. __builtin_neon_vld2q_dup_v(&__ret, __p0, 40); \
  33877. __ret; \
  33878. })
  33879. #else
  33880. #define vld2q_dup_f16(__p0) __extension__ ({ \
  33881. float16x8x2_t __ret; \
  33882. __builtin_neon_vld2q_dup_v(&__ret, __p0, 40); \
  33883. \
  33884. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  33885. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  33886. __ret; \
  33887. })
  33888. #endif
  33889. #ifdef __LITTLE_ENDIAN__
  33890. #define vld2_dup_f16(__p0) __extension__ ({ \
  33891. float16x4x2_t __ret; \
  33892. __builtin_neon_vld2_dup_v(&__ret, __p0, 8); \
  33893. __ret; \
  33894. })
  33895. #else
  33896. #define vld2_dup_f16(__p0) __extension__ ({ \
  33897. float16x4x2_t __ret; \
  33898. __builtin_neon_vld2_dup_v(&__ret, __p0, 8); \
  33899. \
  33900. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  33901. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  33902. __ret; \
  33903. })
  33904. #endif
  33905. #ifdef __LITTLE_ENDIAN__
  33906. #define vld2q_lane_f16(__p0, __p1, __p2) __extension__ ({ \
  33907. float16x8x2_t __s1 = __p1; \
  33908. float16x8x2_t __ret; \
  33909. __builtin_neon_vld2q_lane_v(&__ret, __p0, __s1.val[0], __s1.val[1], __p2, 40); \
  33910. __ret; \
  33911. })
  33912. #else
  33913. #define vld2q_lane_f16(__p0, __p1, __p2) __extension__ ({ \
  33914. float16x8x2_t __s1 = __p1; \
  33915. float16x8x2_t __rev1; \
  33916. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  33917. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  33918. float16x8x2_t __ret; \
  33919. __builtin_neon_vld2q_lane_v(&__ret, __p0, __rev1.val[0], __rev1.val[1], __p2, 40); \
  33920. \
  33921. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  33922. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  33923. __ret; \
  33924. })
  33925. #endif
  33926. #ifdef __LITTLE_ENDIAN__
  33927. #define vld2_lane_f16(__p0, __p1, __p2) __extension__ ({ \
  33928. float16x4x2_t __s1 = __p1; \
  33929. float16x4x2_t __ret; \
  33930. __builtin_neon_vld2_lane_v(&__ret, __p0, __s1.val[0], __s1.val[1], __p2, 8); \
  33931. __ret; \
  33932. })
  33933. #else
  33934. #define vld2_lane_f16(__p0, __p1, __p2) __extension__ ({ \
  33935. float16x4x2_t __s1 = __p1; \
  33936. float16x4x2_t __rev1; \
  33937. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  33938. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  33939. float16x4x2_t __ret; \
  33940. __builtin_neon_vld2_lane_v(&__ret, __p0, __rev1.val[0], __rev1.val[1], __p2, 8); \
  33941. \
  33942. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  33943. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  33944. __ret; \
  33945. })
  33946. #endif
  33947. #ifdef __LITTLE_ENDIAN__
  33948. #define vld3q_f16(__p0) __extension__ ({ \
  33949. float16x8x3_t __ret; \
  33950. __builtin_neon_vld3q_v(&__ret, __p0, 40); \
  33951. __ret; \
  33952. })
  33953. #else
  33954. #define vld3q_f16(__p0) __extension__ ({ \
  33955. float16x8x3_t __ret; \
  33956. __builtin_neon_vld3q_v(&__ret, __p0, 40); \
  33957. \
  33958. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  33959. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  33960. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  33961. __ret; \
  33962. })
  33963. #endif
  33964. #ifdef __LITTLE_ENDIAN__
  33965. #define vld3_f16(__p0) __extension__ ({ \
  33966. float16x4x3_t __ret; \
  33967. __builtin_neon_vld3_v(&__ret, __p0, 8); \
  33968. __ret; \
  33969. })
  33970. #else
  33971. #define vld3_f16(__p0) __extension__ ({ \
  33972. float16x4x3_t __ret; \
  33973. __builtin_neon_vld3_v(&__ret, __p0, 8); \
  33974. \
  33975. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  33976. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  33977. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  33978. __ret; \
  33979. })
  33980. #endif
  33981. #ifdef __LITTLE_ENDIAN__
  33982. #define vld3q_dup_f16(__p0) __extension__ ({ \
  33983. float16x8x3_t __ret; \
  33984. __builtin_neon_vld3q_dup_v(&__ret, __p0, 40); \
  33985. __ret; \
  33986. })
  33987. #else
  33988. #define vld3q_dup_f16(__p0) __extension__ ({ \
  33989. float16x8x3_t __ret; \
  33990. __builtin_neon_vld3q_dup_v(&__ret, __p0, 40); \
  33991. \
  33992. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  33993. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  33994. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  33995. __ret; \
  33996. })
  33997. #endif
  33998. #ifdef __LITTLE_ENDIAN__
  33999. #define vld3_dup_f16(__p0) __extension__ ({ \
  34000. float16x4x3_t __ret; \
  34001. __builtin_neon_vld3_dup_v(&__ret, __p0, 8); \
  34002. __ret; \
  34003. })
  34004. #else
  34005. #define vld3_dup_f16(__p0) __extension__ ({ \
  34006. float16x4x3_t __ret; \
  34007. __builtin_neon_vld3_dup_v(&__ret, __p0, 8); \
  34008. \
  34009. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  34010. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  34011. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  34012. __ret; \
  34013. })
  34014. #endif
  34015. #ifdef __LITTLE_ENDIAN__
  34016. #define vld3q_lane_f16(__p0, __p1, __p2) __extension__ ({ \
  34017. float16x8x3_t __s1 = __p1; \
  34018. float16x8x3_t __ret; \
  34019. __builtin_neon_vld3q_lane_v(&__ret, __p0, __s1.val[0], __s1.val[1], __s1.val[2], __p2, 40); \
  34020. __ret; \
  34021. })
  34022. #else
  34023. #define vld3q_lane_f16(__p0, __p1, __p2) __extension__ ({ \
  34024. float16x8x3_t __s1 = __p1; \
  34025. float16x8x3_t __rev1; \
  34026. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  34027. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  34028. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  34029. float16x8x3_t __ret; \
  34030. __builtin_neon_vld3q_lane_v(&__ret, __p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __p2, 40); \
  34031. \
  34032. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  34033. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  34034. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  34035. __ret; \
  34036. })
  34037. #endif
  34038. #ifdef __LITTLE_ENDIAN__
  34039. #define vld3_lane_f16(__p0, __p1, __p2) __extension__ ({ \
  34040. float16x4x3_t __s1 = __p1; \
  34041. float16x4x3_t __ret; \
  34042. __builtin_neon_vld3_lane_v(&__ret, __p0, __s1.val[0], __s1.val[1], __s1.val[2], __p2, 8); \
  34043. __ret; \
  34044. })
  34045. #else
  34046. #define vld3_lane_f16(__p0, __p1, __p2) __extension__ ({ \
  34047. float16x4x3_t __s1 = __p1; \
  34048. float16x4x3_t __rev1; \
  34049. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  34050. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  34051. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  34052. float16x4x3_t __ret; \
  34053. __builtin_neon_vld3_lane_v(&__ret, __p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __p2, 8); \
  34054. \
  34055. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  34056. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  34057. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  34058. __ret; \
  34059. })
  34060. #endif
  34061. #ifdef __LITTLE_ENDIAN__
  34062. #define vld4q_f16(__p0) __extension__ ({ \
  34063. float16x8x4_t __ret; \
  34064. __builtin_neon_vld4q_v(&__ret, __p0, 40); \
  34065. __ret; \
  34066. })
  34067. #else
  34068. #define vld4q_f16(__p0) __extension__ ({ \
  34069. float16x8x4_t __ret; \
  34070. __builtin_neon_vld4q_v(&__ret, __p0, 40); \
  34071. \
  34072. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  34073. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  34074. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  34075. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  34076. __ret; \
  34077. })
  34078. #endif
  34079. #ifdef __LITTLE_ENDIAN__
  34080. #define vld4_f16(__p0) __extension__ ({ \
  34081. float16x4x4_t __ret; \
  34082. __builtin_neon_vld4_v(&__ret, __p0, 8); \
  34083. __ret; \
  34084. })
  34085. #else
  34086. #define vld4_f16(__p0) __extension__ ({ \
  34087. float16x4x4_t __ret; \
  34088. __builtin_neon_vld4_v(&__ret, __p0, 8); \
  34089. \
  34090. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  34091. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  34092. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  34093. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 3, 2, 1, 0); \
  34094. __ret; \
  34095. })
  34096. #endif
  34097. #ifdef __LITTLE_ENDIAN__
  34098. #define vld4q_dup_f16(__p0) __extension__ ({ \
  34099. float16x8x4_t __ret; \
  34100. __builtin_neon_vld4q_dup_v(&__ret, __p0, 40); \
  34101. __ret; \
  34102. })
  34103. #else
  34104. #define vld4q_dup_f16(__p0) __extension__ ({ \
  34105. float16x8x4_t __ret; \
  34106. __builtin_neon_vld4q_dup_v(&__ret, __p0, 40); \
  34107. \
  34108. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  34109. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  34110. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  34111. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  34112. __ret; \
  34113. })
  34114. #endif
  34115. #ifdef __LITTLE_ENDIAN__
  34116. #define vld4_dup_f16(__p0) __extension__ ({ \
  34117. float16x4x4_t __ret; \
  34118. __builtin_neon_vld4_dup_v(&__ret, __p0, 8); \
  34119. __ret; \
  34120. })
  34121. #else
  34122. #define vld4_dup_f16(__p0) __extension__ ({ \
  34123. float16x4x4_t __ret; \
  34124. __builtin_neon_vld4_dup_v(&__ret, __p0, 8); \
  34125. \
  34126. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  34127. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  34128. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  34129. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 3, 2, 1, 0); \
  34130. __ret; \
  34131. })
  34132. #endif
  34133. #ifdef __LITTLE_ENDIAN__
  34134. #define vld4q_lane_f16(__p0, __p1, __p2) __extension__ ({ \
  34135. float16x8x4_t __s1 = __p1; \
  34136. float16x8x4_t __ret; \
  34137. __builtin_neon_vld4q_lane_v(&__ret, __p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], __p2, 40); \
  34138. __ret; \
  34139. })
  34140. #else
  34141. #define vld4q_lane_f16(__p0, __p1, __p2) __extension__ ({ \
  34142. float16x8x4_t __s1 = __p1; \
  34143. float16x8x4_t __rev1; \
  34144. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  34145. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  34146. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  34147. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  34148. float16x8x4_t __ret; \
  34149. __builtin_neon_vld4q_lane_v(&__ret, __p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __rev1.val[3], __p2, 40); \
  34150. \
  34151. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  34152. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  34153. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  34154. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  34155. __ret; \
  34156. })
  34157. #endif
  34158. #ifdef __LITTLE_ENDIAN__
  34159. #define vld4_lane_f16(__p0, __p1, __p2) __extension__ ({ \
  34160. float16x4x4_t __s1 = __p1; \
  34161. float16x4x4_t __ret; \
  34162. __builtin_neon_vld4_lane_v(&__ret, __p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], __p2, 8); \
  34163. __ret; \
  34164. })
  34165. #else
  34166. #define vld4_lane_f16(__p0, __p1, __p2) __extension__ ({ \
  34167. float16x4x4_t __s1 = __p1; \
  34168. float16x4x4_t __rev1; \
  34169. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  34170. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  34171. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  34172. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 3, 2, 1, 0); \
  34173. float16x4x4_t __ret; \
  34174. __builtin_neon_vld4_lane_v(&__ret, __p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __rev1.val[3], __p2, 8); \
  34175. \
  34176. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0); \
  34177. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0); \
  34178. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 3, 2, 1, 0); \
  34179. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 3, 2, 1, 0); \
  34180. __ret; \
  34181. })
  34182. #endif
  34183. #ifdef __LITTLE_ENDIAN__
  34184. #define vst1q_f16(__p0, __p1) __extension__ ({ \
  34185. float16x8_t __s1 = __p1; \
  34186. __builtin_neon_vst1q_v(__p0, (int8x16_t)__s1, 40); \
  34187. })
  34188. #else
  34189. #define vst1q_f16(__p0, __p1) __extension__ ({ \
  34190. float16x8_t __s1 = __p1; \
  34191. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  34192. __builtin_neon_vst1q_v(__p0, (int8x16_t)__rev1, 40); \
  34193. })
  34194. #endif
  34195. #ifdef __LITTLE_ENDIAN__
  34196. #define vst1_f16(__p0, __p1) __extension__ ({ \
  34197. float16x4_t __s1 = __p1; \
  34198. __builtin_neon_vst1_v(__p0, (int8x8_t)__s1, 8); \
  34199. })
  34200. #else
  34201. #define vst1_f16(__p0, __p1) __extension__ ({ \
  34202. float16x4_t __s1 = __p1; \
  34203. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  34204. __builtin_neon_vst1_v(__p0, (int8x8_t)__rev1, 8); \
  34205. })
  34206. #endif
  34207. #ifdef __LITTLE_ENDIAN__
  34208. #define vst1q_lane_f16(__p0, __p1, __p2) __extension__ ({ \
  34209. float16x8_t __s1 = __p1; \
  34210. __builtin_neon_vst1q_lane_v(__p0, (int8x16_t)__s1, __p2, 40); \
  34211. })
  34212. #else
  34213. #define vst1q_lane_f16(__p0, __p1, __p2) __extension__ ({ \
  34214. float16x8_t __s1 = __p1; \
  34215. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  34216. __builtin_neon_vst1q_lane_v(__p0, (int8x16_t)__rev1, __p2, 40); \
  34217. })
  34218. #endif
  34219. #ifdef __LITTLE_ENDIAN__
  34220. #define vst1_lane_f16(__p0, __p1, __p2) __extension__ ({ \
  34221. float16x4_t __s1 = __p1; \
  34222. __builtin_neon_vst1_lane_v(__p0, (int8x8_t)__s1, __p2, 8); \
  34223. })
  34224. #else
  34225. #define vst1_lane_f16(__p0, __p1, __p2) __extension__ ({ \
  34226. float16x4_t __s1 = __p1; \
  34227. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  34228. __builtin_neon_vst1_lane_v(__p0, (int8x8_t)__rev1, __p2, 8); \
  34229. })
  34230. #endif
  34231. #ifdef __LITTLE_ENDIAN__
  34232. #define vst1q_f16_x2(__p0, __p1) __extension__ ({ \
  34233. float16x8x2_t __s1 = __p1; \
  34234. __builtin_neon_vst1q_x2_v(__p0, __s1.val[0], __s1.val[1], 40); \
  34235. })
  34236. #else
  34237. #define vst1q_f16_x2(__p0, __p1) __extension__ ({ \
  34238. float16x8x2_t __s1 = __p1; \
  34239. float16x8x2_t __rev1; \
  34240. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  34241. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  34242. __builtin_neon_vst1q_x2_v(__p0, __rev1.val[0], __rev1.val[1], 40); \
  34243. })
  34244. #endif
  34245. #ifdef __LITTLE_ENDIAN__
  34246. #define vst1_f16_x2(__p0, __p1) __extension__ ({ \
  34247. float16x4x2_t __s1 = __p1; \
  34248. __builtin_neon_vst1_x2_v(__p0, __s1.val[0], __s1.val[1], 8); \
  34249. })
  34250. #else
  34251. #define vst1_f16_x2(__p0, __p1) __extension__ ({ \
  34252. float16x4x2_t __s1 = __p1; \
  34253. float16x4x2_t __rev1; \
  34254. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  34255. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  34256. __builtin_neon_vst1_x2_v(__p0, __rev1.val[0], __rev1.val[1], 8); \
  34257. })
  34258. #endif
  34259. #ifdef __LITTLE_ENDIAN__
  34260. #define vst1q_f16_x3(__p0, __p1) __extension__ ({ \
  34261. float16x8x3_t __s1 = __p1; \
  34262. __builtin_neon_vst1q_x3_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], 40); \
  34263. })
  34264. #else
  34265. #define vst1q_f16_x3(__p0, __p1) __extension__ ({ \
  34266. float16x8x3_t __s1 = __p1; \
  34267. float16x8x3_t __rev1; \
  34268. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  34269. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  34270. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  34271. __builtin_neon_vst1q_x3_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], 40); \
  34272. })
  34273. #endif
  34274. #ifdef __LITTLE_ENDIAN__
  34275. #define vst1_f16_x3(__p0, __p1) __extension__ ({ \
  34276. float16x4x3_t __s1 = __p1; \
  34277. __builtin_neon_vst1_x3_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], 8); \
  34278. })
  34279. #else
  34280. #define vst1_f16_x3(__p0, __p1) __extension__ ({ \
  34281. float16x4x3_t __s1 = __p1; \
  34282. float16x4x3_t __rev1; \
  34283. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  34284. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  34285. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  34286. __builtin_neon_vst1_x3_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], 8); \
  34287. })
  34288. #endif
  34289. #ifdef __LITTLE_ENDIAN__
  34290. #define vst1q_f16_x4(__p0, __p1) __extension__ ({ \
  34291. float16x8x4_t __s1 = __p1; \
  34292. __builtin_neon_vst1q_x4_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], 40); \
  34293. })
  34294. #else
  34295. #define vst1q_f16_x4(__p0, __p1) __extension__ ({ \
  34296. float16x8x4_t __s1 = __p1; \
  34297. float16x8x4_t __rev1; \
  34298. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  34299. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  34300. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  34301. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  34302. __builtin_neon_vst1q_x4_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __rev1.val[3], 40); \
  34303. })
  34304. #endif
  34305. #ifdef __LITTLE_ENDIAN__
  34306. #define vst1_f16_x4(__p0, __p1) __extension__ ({ \
  34307. float16x4x4_t __s1 = __p1; \
  34308. __builtin_neon_vst1_x4_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], 8); \
  34309. })
  34310. #else
  34311. #define vst1_f16_x4(__p0, __p1) __extension__ ({ \
  34312. float16x4x4_t __s1 = __p1; \
  34313. float16x4x4_t __rev1; \
  34314. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  34315. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  34316. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  34317. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 3, 2, 1, 0); \
  34318. __builtin_neon_vst1_x4_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __rev1.val[3], 8); \
  34319. })
  34320. #endif
  34321. #ifdef __LITTLE_ENDIAN__
  34322. #define vst2q_f16(__p0, __p1) __extension__ ({ \
  34323. float16x8x2_t __s1 = __p1; \
  34324. __builtin_neon_vst2q_v(__p0, __s1.val[0], __s1.val[1], 40); \
  34325. })
  34326. #else
  34327. #define vst2q_f16(__p0, __p1) __extension__ ({ \
  34328. float16x8x2_t __s1 = __p1; \
  34329. float16x8x2_t __rev1; \
  34330. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  34331. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  34332. __builtin_neon_vst2q_v(__p0, __rev1.val[0], __rev1.val[1], 40); \
  34333. })
  34334. #endif
  34335. #ifdef __LITTLE_ENDIAN__
  34336. #define vst2_f16(__p0, __p1) __extension__ ({ \
  34337. float16x4x2_t __s1 = __p1; \
  34338. __builtin_neon_vst2_v(__p0, __s1.val[0], __s1.val[1], 8); \
  34339. })
  34340. #else
  34341. #define vst2_f16(__p0, __p1) __extension__ ({ \
  34342. float16x4x2_t __s1 = __p1; \
  34343. float16x4x2_t __rev1; \
  34344. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  34345. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  34346. __builtin_neon_vst2_v(__p0, __rev1.val[0], __rev1.val[1], 8); \
  34347. })
  34348. #endif
  34349. #ifdef __LITTLE_ENDIAN__
  34350. #define vst2q_lane_f16(__p0, __p1, __p2) __extension__ ({ \
  34351. float16x8x2_t __s1 = __p1; \
  34352. __builtin_neon_vst2q_lane_v(__p0, __s1.val[0], __s1.val[1], __p2, 40); \
  34353. })
  34354. #else
  34355. #define vst2q_lane_f16(__p0, __p1, __p2) __extension__ ({ \
  34356. float16x8x2_t __s1 = __p1; \
  34357. float16x8x2_t __rev1; \
  34358. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  34359. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  34360. __builtin_neon_vst2q_lane_v(__p0, __rev1.val[0], __rev1.val[1], __p2, 40); \
  34361. })
  34362. #endif
  34363. #ifdef __LITTLE_ENDIAN__
  34364. #define vst2_lane_f16(__p0, __p1, __p2) __extension__ ({ \
  34365. float16x4x2_t __s1 = __p1; \
  34366. __builtin_neon_vst2_lane_v(__p0, __s1.val[0], __s1.val[1], __p2, 8); \
  34367. })
  34368. #else
  34369. #define vst2_lane_f16(__p0, __p1, __p2) __extension__ ({ \
  34370. float16x4x2_t __s1 = __p1; \
  34371. float16x4x2_t __rev1; \
  34372. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  34373. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  34374. __builtin_neon_vst2_lane_v(__p0, __rev1.val[0], __rev1.val[1], __p2, 8); \
  34375. })
  34376. #endif
  34377. #ifdef __LITTLE_ENDIAN__
  34378. #define vst3q_f16(__p0, __p1) __extension__ ({ \
  34379. float16x8x3_t __s1 = __p1; \
  34380. __builtin_neon_vst3q_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], 40); \
  34381. })
  34382. #else
  34383. #define vst3q_f16(__p0, __p1) __extension__ ({ \
  34384. float16x8x3_t __s1 = __p1; \
  34385. float16x8x3_t __rev1; \
  34386. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  34387. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  34388. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  34389. __builtin_neon_vst3q_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], 40); \
  34390. })
  34391. #endif
  34392. #ifdef __LITTLE_ENDIAN__
  34393. #define vst3_f16(__p0, __p1) __extension__ ({ \
  34394. float16x4x3_t __s1 = __p1; \
  34395. __builtin_neon_vst3_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], 8); \
  34396. })
  34397. #else
  34398. #define vst3_f16(__p0, __p1) __extension__ ({ \
  34399. float16x4x3_t __s1 = __p1; \
  34400. float16x4x3_t __rev1; \
  34401. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  34402. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  34403. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  34404. __builtin_neon_vst3_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], 8); \
  34405. })
  34406. #endif
  34407. #ifdef __LITTLE_ENDIAN__
  34408. #define vst3q_lane_f16(__p0, __p1, __p2) __extension__ ({ \
  34409. float16x8x3_t __s1 = __p1; \
  34410. __builtin_neon_vst3q_lane_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __p2, 40); \
  34411. })
  34412. #else
  34413. #define vst3q_lane_f16(__p0, __p1, __p2) __extension__ ({ \
  34414. float16x8x3_t __s1 = __p1; \
  34415. float16x8x3_t __rev1; \
  34416. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  34417. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  34418. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  34419. __builtin_neon_vst3q_lane_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __p2, 40); \
  34420. })
  34421. #endif
  34422. #ifdef __LITTLE_ENDIAN__
  34423. #define vst3_lane_f16(__p0, __p1, __p2) __extension__ ({ \
  34424. float16x4x3_t __s1 = __p1; \
  34425. __builtin_neon_vst3_lane_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __p2, 8); \
  34426. })
  34427. #else
  34428. #define vst3_lane_f16(__p0, __p1, __p2) __extension__ ({ \
  34429. float16x4x3_t __s1 = __p1; \
  34430. float16x4x3_t __rev1; \
  34431. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  34432. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  34433. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  34434. __builtin_neon_vst3_lane_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __p2, 8); \
  34435. })
  34436. #endif
  34437. #ifdef __LITTLE_ENDIAN__
  34438. #define vst4q_f16(__p0, __p1) __extension__ ({ \
  34439. float16x8x4_t __s1 = __p1; \
  34440. __builtin_neon_vst4q_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], 40); \
  34441. })
  34442. #else
  34443. #define vst4q_f16(__p0, __p1) __extension__ ({ \
  34444. float16x8x4_t __s1 = __p1; \
  34445. float16x8x4_t __rev1; \
  34446. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  34447. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  34448. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  34449. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  34450. __builtin_neon_vst4q_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __rev1.val[3], 40); \
  34451. })
  34452. #endif
  34453. #ifdef __LITTLE_ENDIAN__
  34454. #define vst4_f16(__p0, __p1) __extension__ ({ \
  34455. float16x4x4_t __s1 = __p1; \
  34456. __builtin_neon_vst4_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], 8); \
  34457. })
  34458. #else
  34459. #define vst4_f16(__p0, __p1) __extension__ ({ \
  34460. float16x4x4_t __s1 = __p1; \
  34461. float16x4x4_t __rev1; \
  34462. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  34463. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  34464. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  34465. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 3, 2, 1, 0); \
  34466. __builtin_neon_vst4_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __rev1.val[3], 8); \
  34467. })
  34468. #endif
  34469. #ifdef __LITTLE_ENDIAN__
  34470. #define vst4q_lane_f16(__p0, __p1, __p2) __extension__ ({ \
  34471. float16x8x4_t __s1 = __p1; \
  34472. __builtin_neon_vst4q_lane_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], __p2, 40); \
  34473. })
  34474. #else
  34475. #define vst4q_lane_f16(__p0, __p1, __p2) __extension__ ({ \
  34476. float16x8x4_t __s1 = __p1; \
  34477. float16x8x4_t __rev1; \
  34478. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 7, 6, 5, 4, 3, 2, 1, 0); \
  34479. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 7, 6, 5, 4, 3, 2, 1, 0); \
  34480. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 7, 6, 5, 4, 3, 2, 1, 0); \
  34481. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 7, 6, 5, 4, 3, 2, 1, 0); \
  34482. __builtin_neon_vst4q_lane_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __rev1.val[3], __p2, 40); \
  34483. })
  34484. #endif
  34485. #ifdef __LITTLE_ENDIAN__
  34486. #define vst4_lane_f16(__p0, __p1, __p2) __extension__ ({ \
  34487. float16x4x4_t __s1 = __p1; \
  34488. __builtin_neon_vst4_lane_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], __p2, 8); \
  34489. })
  34490. #else
  34491. #define vst4_lane_f16(__p0, __p1, __p2) __extension__ ({ \
  34492. float16x4x4_t __s1 = __p1; \
  34493. float16x4x4_t __rev1; \
  34494. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 3, 2, 1, 0); \
  34495. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 3, 2, 1, 0); \
  34496. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 3, 2, 1, 0); \
  34497. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 3, 2, 1, 0); \
  34498. __builtin_neon_vst4_lane_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __rev1.val[3], __p2, 8); \
  34499. })
  34500. #endif
  34501. #endif
  34502. #if __ARM_ARCH >= 8
  34503. #ifdef __LITTLE_ENDIAN__
  34504. __ai int32x4_t vcvtaq_s32_f32(float32x4_t __p0) {
  34505. int32x4_t __ret;
  34506. __ret = (int32x4_t) __builtin_neon_vcvtaq_s32_v((int8x16_t)__p0, 34);
  34507. return __ret;
  34508. }
  34509. #else
  34510. __ai int32x4_t vcvtaq_s32_f32(float32x4_t __p0) {
  34511. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  34512. int32x4_t __ret;
  34513. __ret = (int32x4_t) __builtin_neon_vcvtaq_s32_v((int8x16_t)__rev0, 34);
  34514. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  34515. return __ret;
  34516. }
  34517. #endif
  34518. #ifdef __LITTLE_ENDIAN__
  34519. __ai int32x2_t vcvta_s32_f32(float32x2_t __p0) {
  34520. int32x2_t __ret;
  34521. __ret = (int32x2_t) __builtin_neon_vcvta_s32_v((int8x8_t)__p0, 2);
  34522. return __ret;
  34523. }
  34524. #else
  34525. __ai int32x2_t vcvta_s32_f32(float32x2_t __p0) {
  34526. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  34527. int32x2_t __ret;
  34528. __ret = (int32x2_t) __builtin_neon_vcvta_s32_v((int8x8_t)__rev0, 2);
  34529. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  34530. return __ret;
  34531. }
  34532. #endif
  34533. #ifdef __LITTLE_ENDIAN__
  34534. __ai uint32x4_t vcvtaq_u32_f32(float32x4_t __p0) {
  34535. uint32x4_t __ret;
  34536. __ret = (uint32x4_t) __builtin_neon_vcvtaq_u32_v((int8x16_t)__p0, 50);
  34537. return __ret;
  34538. }
  34539. #else
  34540. __ai uint32x4_t vcvtaq_u32_f32(float32x4_t __p0) {
  34541. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  34542. uint32x4_t __ret;
  34543. __ret = (uint32x4_t) __builtin_neon_vcvtaq_u32_v((int8x16_t)__rev0, 50);
  34544. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  34545. return __ret;
  34546. }
  34547. #endif
  34548. #ifdef __LITTLE_ENDIAN__
  34549. __ai uint32x2_t vcvta_u32_f32(float32x2_t __p0) {
  34550. uint32x2_t __ret;
  34551. __ret = (uint32x2_t) __builtin_neon_vcvta_u32_v((int8x8_t)__p0, 18);
  34552. return __ret;
  34553. }
  34554. #else
  34555. __ai uint32x2_t vcvta_u32_f32(float32x2_t __p0) {
  34556. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  34557. uint32x2_t __ret;
  34558. __ret = (uint32x2_t) __builtin_neon_vcvta_u32_v((int8x8_t)__rev0, 18);
  34559. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  34560. return __ret;
  34561. }
  34562. #endif
  34563. #ifdef __LITTLE_ENDIAN__
  34564. __ai int32x4_t vcvtmq_s32_f32(float32x4_t __p0) {
  34565. int32x4_t __ret;
  34566. __ret = (int32x4_t) __builtin_neon_vcvtmq_s32_v((int8x16_t)__p0, 34);
  34567. return __ret;
  34568. }
  34569. #else
  34570. __ai int32x4_t vcvtmq_s32_f32(float32x4_t __p0) {
  34571. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  34572. int32x4_t __ret;
  34573. __ret = (int32x4_t) __builtin_neon_vcvtmq_s32_v((int8x16_t)__rev0, 34);
  34574. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  34575. return __ret;
  34576. }
  34577. #endif
  34578. #ifdef __LITTLE_ENDIAN__
  34579. __ai int32x2_t vcvtm_s32_f32(float32x2_t __p0) {
  34580. int32x2_t __ret;
  34581. __ret = (int32x2_t) __builtin_neon_vcvtm_s32_v((int8x8_t)__p0, 2);
  34582. return __ret;
  34583. }
  34584. #else
  34585. __ai int32x2_t vcvtm_s32_f32(float32x2_t __p0) {
  34586. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  34587. int32x2_t __ret;
  34588. __ret = (int32x2_t) __builtin_neon_vcvtm_s32_v((int8x8_t)__rev0, 2);
  34589. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  34590. return __ret;
  34591. }
  34592. #endif
  34593. #ifdef __LITTLE_ENDIAN__
  34594. __ai uint32x4_t vcvtmq_u32_f32(float32x4_t __p0) {
  34595. uint32x4_t __ret;
  34596. __ret = (uint32x4_t) __builtin_neon_vcvtmq_u32_v((int8x16_t)__p0, 50);
  34597. return __ret;
  34598. }
  34599. #else
  34600. __ai uint32x4_t vcvtmq_u32_f32(float32x4_t __p0) {
  34601. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  34602. uint32x4_t __ret;
  34603. __ret = (uint32x4_t) __builtin_neon_vcvtmq_u32_v((int8x16_t)__rev0, 50);
  34604. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  34605. return __ret;
  34606. }
  34607. #endif
  34608. #ifdef __LITTLE_ENDIAN__
  34609. __ai uint32x2_t vcvtm_u32_f32(float32x2_t __p0) {
  34610. uint32x2_t __ret;
  34611. __ret = (uint32x2_t) __builtin_neon_vcvtm_u32_v((int8x8_t)__p0, 18);
  34612. return __ret;
  34613. }
  34614. #else
  34615. __ai uint32x2_t vcvtm_u32_f32(float32x2_t __p0) {
  34616. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  34617. uint32x2_t __ret;
  34618. __ret = (uint32x2_t) __builtin_neon_vcvtm_u32_v((int8x8_t)__rev0, 18);
  34619. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  34620. return __ret;
  34621. }
  34622. #endif
  34623. #ifdef __LITTLE_ENDIAN__
  34624. __ai int32x4_t vcvtnq_s32_f32(float32x4_t __p0) {
  34625. int32x4_t __ret;
  34626. __ret = (int32x4_t) __builtin_neon_vcvtnq_s32_v((int8x16_t)__p0, 34);
  34627. return __ret;
  34628. }
  34629. #else
  34630. __ai int32x4_t vcvtnq_s32_f32(float32x4_t __p0) {
  34631. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  34632. int32x4_t __ret;
  34633. __ret = (int32x4_t) __builtin_neon_vcvtnq_s32_v((int8x16_t)__rev0, 34);
  34634. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  34635. return __ret;
  34636. }
  34637. #endif
  34638. #ifdef __LITTLE_ENDIAN__
  34639. __ai int32x2_t vcvtn_s32_f32(float32x2_t __p0) {
  34640. int32x2_t __ret;
  34641. __ret = (int32x2_t) __builtin_neon_vcvtn_s32_v((int8x8_t)__p0, 2);
  34642. return __ret;
  34643. }
  34644. #else
  34645. __ai int32x2_t vcvtn_s32_f32(float32x2_t __p0) {
  34646. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  34647. int32x2_t __ret;
  34648. __ret = (int32x2_t) __builtin_neon_vcvtn_s32_v((int8x8_t)__rev0, 2);
  34649. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  34650. return __ret;
  34651. }
  34652. #endif
  34653. #ifdef __LITTLE_ENDIAN__
  34654. __ai uint32x4_t vcvtnq_u32_f32(float32x4_t __p0) {
  34655. uint32x4_t __ret;
  34656. __ret = (uint32x4_t) __builtin_neon_vcvtnq_u32_v((int8x16_t)__p0, 50);
  34657. return __ret;
  34658. }
  34659. #else
  34660. __ai uint32x4_t vcvtnq_u32_f32(float32x4_t __p0) {
  34661. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  34662. uint32x4_t __ret;
  34663. __ret = (uint32x4_t) __builtin_neon_vcvtnq_u32_v((int8x16_t)__rev0, 50);
  34664. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  34665. return __ret;
  34666. }
  34667. #endif
  34668. #ifdef __LITTLE_ENDIAN__
  34669. __ai uint32x2_t vcvtn_u32_f32(float32x2_t __p0) {
  34670. uint32x2_t __ret;
  34671. __ret = (uint32x2_t) __builtin_neon_vcvtn_u32_v((int8x8_t)__p0, 18);
  34672. return __ret;
  34673. }
  34674. #else
  34675. __ai uint32x2_t vcvtn_u32_f32(float32x2_t __p0) {
  34676. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  34677. uint32x2_t __ret;
  34678. __ret = (uint32x2_t) __builtin_neon_vcvtn_u32_v((int8x8_t)__rev0, 18);
  34679. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  34680. return __ret;
  34681. }
  34682. #endif
  34683. #ifdef __LITTLE_ENDIAN__
  34684. __ai int32x4_t vcvtpq_s32_f32(float32x4_t __p0) {
  34685. int32x4_t __ret;
  34686. __ret = (int32x4_t) __builtin_neon_vcvtpq_s32_v((int8x16_t)__p0, 34);
  34687. return __ret;
  34688. }
  34689. #else
  34690. __ai int32x4_t vcvtpq_s32_f32(float32x4_t __p0) {
  34691. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  34692. int32x4_t __ret;
  34693. __ret = (int32x4_t) __builtin_neon_vcvtpq_s32_v((int8x16_t)__rev0, 34);
  34694. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  34695. return __ret;
  34696. }
  34697. #endif
  34698. #ifdef __LITTLE_ENDIAN__
  34699. __ai int32x2_t vcvtp_s32_f32(float32x2_t __p0) {
  34700. int32x2_t __ret;
  34701. __ret = (int32x2_t) __builtin_neon_vcvtp_s32_v((int8x8_t)__p0, 2);
  34702. return __ret;
  34703. }
  34704. #else
  34705. __ai int32x2_t vcvtp_s32_f32(float32x2_t __p0) {
  34706. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  34707. int32x2_t __ret;
  34708. __ret = (int32x2_t) __builtin_neon_vcvtp_s32_v((int8x8_t)__rev0, 2);
  34709. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  34710. return __ret;
  34711. }
  34712. #endif
  34713. #ifdef __LITTLE_ENDIAN__
  34714. __ai uint32x4_t vcvtpq_u32_f32(float32x4_t __p0) {
  34715. uint32x4_t __ret;
  34716. __ret = (uint32x4_t) __builtin_neon_vcvtpq_u32_v((int8x16_t)__p0, 50);
  34717. return __ret;
  34718. }
  34719. #else
  34720. __ai uint32x4_t vcvtpq_u32_f32(float32x4_t __p0) {
  34721. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  34722. uint32x4_t __ret;
  34723. __ret = (uint32x4_t) __builtin_neon_vcvtpq_u32_v((int8x16_t)__rev0, 50);
  34724. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  34725. return __ret;
  34726. }
  34727. #endif
  34728. #ifdef __LITTLE_ENDIAN__
  34729. __ai uint32x2_t vcvtp_u32_f32(float32x2_t __p0) {
  34730. uint32x2_t __ret;
  34731. __ret = (uint32x2_t) __builtin_neon_vcvtp_u32_v((int8x8_t)__p0, 18);
  34732. return __ret;
  34733. }
  34734. #else
  34735. __ai uint32x2_t vcvtp_u32_f32(float32x2_t __p0) {
  34736. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  34737. uint32x2_t __ret;
  34738. __ret = (uint32x2_t) __builtin_neon_vcvtp_u32_v((int8x8_t)__rev0, 18);
  34739. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  34740. return __ret;
  34741. }
  34742. #endif
  34743. #endif
  34744. #if __ARM_ARCH >= 8 && defined(__ARM_FEATURE_CRYPTO)
  34745. #ifdef __LITTLE_ENDIAN__
  34746. __ai uint8x16_t vaesdq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  34747. uint8x16_t __ret;
  34748. __ret = (uint8x16_t) __builtin_neon_vaesdq_v((int8x16_t)__p0, (int8x16_t)__p1, 48);
  34749. return __ret;
  34750. }
  34751. #else
  34752. __ai uint8x16_t vaesdq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  34753. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  34754. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  34755. uint8x16_t __ret;
  34756. __ret = (uint8x16_t) __builtin_neon_vaesdq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 48);
  34757. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  34758. return __ret;
  34759. }
  34760. #endif
  34761. #ifdef __LITTLE_ENDIAN__
  34762. __ai uint8x16_t vaeseq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  34763. uint8x16_t __ret;
  34764. __ret = (uint8x16_t) __builtin_neon_vaeseq_v((int8x16_t)__p0, (int8x16_t)__p1, 48);
  34765. return __ret;
  34766. }
  34767. #else
  34768. __ai uint8x16_t vaeseq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  34769. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  34770. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  34771. uint8x16_t __ret;
  34772. __ret = (uint8x16_t) __builtin_neon_vaeseq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 48);
  34773. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  34774. return __ret;
  34775. }
  34776. #endif
  34777. #ifdef __LITTLE_ENDIAN__
  34778. __ai uint8x16_t vaesimcq_u8(uint8x16_t __p0) {
  34779. uint8x16_t __ret;
  34780. __ret = (uint8x16_t) __builtin_neon_vaesimcq_v((int8x16_t)__p0, 48);
  34781. return __ret;
  34782. }
  34783. #else
  34784. __ai uint8x16_t vaesimcq_u8(uint8x16_t __p0) {
  34785. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  34786. uint8x16_t __ret;
  34787. __ret = (uint8x16_t) __builtin_neon_vaesimcq_v((int8x16_t)__rev0, 48);
  34788. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  34789. return __ret;
  34790. }
  34791. #endif
  34792. #ifdef __LITTLE_ENDIAN__
  34793. __ai uint8x16_t vaesmcq_u8(uint8x16_t __p0) {
  34794. uint8x16_t __ret;
  34795. __ret = (uint8x16_t) __builtin_neon_vaesmcq_v((int8x16_t)__p0, 48);
  34796. return __ret;
  34797. }
  34798. #else
  34799. __ai uint8x16_t vaesmcq_u8(uint8x16_t __p0) {
  34800. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  34801. uint8x16_t __ret;
  34802. __ret = (uint8x16_t) __builtin_neon_vaesmcq_v((int8x16_t)__rev0, 48);
  34803. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  34804. return __ret;
  34805. }
  34806. #endif
  34807. #ifdef __LITTLE_ENDIAN__
  34808. __ai uint32x4_t vsha1cq_u32(uint32x4_t __p0, uint32_t __p1, uint32x4_t __p2) {
  34809. uint32x4_t __ret;
  34810. __ret = (uint32x4_t) __builtin_neon_vsha1cq_u32((int8x16_t)__p0, __p1, (int8x16_t)__p2);
  34811. return __ret;
  34812. }
  34813. #else
  34814. __ai uint32x4_t vsha1cq_u32(uint32x4_t __p0, uint32_t __p1, uint32x4_t __p2) {
  34815. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  34816. uint32x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  34817. uint32x4_t __ret;
  34818. __ret = (uint32x4_t) __builtin_neon_vsha1cq_u32((int8x16_t)__rev0, __p1, (int8x16_t)__rev2);
  34819. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  34820. return __ret;
  34821. }
  34822. #endif
  34823. #ifdef __LITTLE_ENDIAN__
  34824. __ai uint32_t vsha1h_u32(uint32_t __p0) {
  34825. uint32_t __ret;
  34826. __ret = (uint32_t) __builtin_neon_vsha1h_u32(__p0);
  34827. return __ret;
  34828. }
  34829. #else
  34830. __ai uint32_t vsha1h_u32(uint32_t __p0) {
  34831. uint32_t __ret;
  34832. __ret = (uint32_t) __builtin_neon_vsha1h_u32(__p0);
  34833. return __ret;
  34834. }
  34835. #endif
  34836. #ifdef __LITTLE_ENDIAN__
  34837. __ai uint32x4_t vsha1mq_u32(uint32x4_t __p0, uint32_t __p1, uint32x4_t __p2) {
  34838. uint32x4_t __ret;
  34839. __ret = (uint32x4_t) __builtin_neon_vsha1mq_u32((int8x16_t)__p0, __p1, (int8x16_t)__p2);
  34840. return __ret;
  34841. }
  34842. #else
  34843. __ai uint32x4_t vsha1mq_u32(uint32x4_t __p0, uint32_t __p1, uint32x4_t __p2) {
  34844. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  34845. uint32x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  34846. uint32x4_t __ret;
  34847. __ret = (uint32x4_t) __builtin_neon_vsha1mq_u32((int8x16_t)__rev0, __p1, (int8x16_t)__rev2);
  34848. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  34849. return __ret;
  34850. }
  34851. #endif
  34852. #ifdef __LITTLE_ENDIAN__
  34853. __ai uint32x4_t vsha1pq_u32(uint32x4_t __p0, uint32_t __p1, uint32x4_t __p2) {
  34854. uint32x4_t __ret;
  34855. __ret = (uint32x4_t) __builtin_neon_vsha1pq_u32((int8x16_t)__p0, __p1, (int8x16_t)__p2);
  34856. return __ret;
  34857. }
  34858. #else
  34859. __ai uint32x4_t vsha1pq_u32(uint32x4_t __p0, uint32_t __p1, uint32x4_t __p2) {
  34860. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  34861. uint32x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  34862. uint32x4_t __ret;
  34863. __ret = (uint32x4_t) __builtin_neon_vsha1pq_u32((int8x16_t)__rev0, __p1, (int8x16_t)__rev2);
  34864. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  34865. return __ret;
  34866. }
  34867. #endif
  34868. #ifdef __LITTLE_ENDIAN__
  34869. __ai uint32x4_t vsha1su0q_u32(uint32x4_t __p0, uint32x4_t __p1, uint32x4_t __p2) {
  34870. uint32x4_t __ret;
  34871. __ret = (uint32x4_t) __builtin_neon_vsha1su0q_v((int8x16_t)__p0, (int8x16_t)__p1, (int8x16_t)__p2, 50);
  34872. return __ret;
  34873. }
  34874. #else
  34875. __ai uint32x4_t vsha1su0q_u32(uint32x4_t __p0, uint32x4_t __p1, uint32x4_t __p2) {
  34876. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  34877. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  34878. uint32x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  34879. uint32x4_t __ret;
  34880. __ret = (uint32x4_t) __builtin_neon_vsha1su0q_v((int8x16_t)__rev0, (int8x16_t)__rev1, (int8x16_t)__rev2, 50);
  34881. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  34882. return __ret;
  34883. }
  34884. #endif
  34885. #ifdef __LITTLE_ENDIAN__
  34886. __ai uint32x4_t vsha1su1q_u32(uint32x4_t __p0, uint32x4_t __p1) {
  34887. uint32x4_t __ret;
  34888. __ret = (uint32x4_t) __builtin_neon_vsha1su1q_v((int8x16_t)__p0, (int8x16_t)__p1, 50);
  34889. return __ret;
  34890. }
  34891. #else
  34892. __ai uint32x4_t vsha1su1q_u32(uint32x4_t __p0, uint32x4_t __p1) {
  34893. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  34894. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  34895. uint32x4_t __ret;
  34896. __ret = (uint32x4_t) __builtin_neon_vsha1su1q_v((int8x16_t)__rev0, (int8x16_t)__rev1, 50);
  34897. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  34898. return __ret;
  34899. }
  34900. #endif
  34901. #ifdef __LITTLE_ENDIAN__
  34902. __ai uint32x4_t vsha256hq_u32(uint32x4_t __p0, uint32x4_t __p1, uint32x4_t __p2) {
  34903. uint32x4_t __ret;
  34904. __ret = (uint32x4_t) __builtin_neon_vsha256hq_v((int8x16_t)__p0, (int8x16_t)__p1, (int8x16_t)__p2, 50);
  34905. return __ret;
  34906. }
  34907. #else
  34908. __ai uint32x4_t vsha256hq_u32(uint32x4_t __p0, uint32x4_t __p1, uint32x4_t __p2) {
  34909. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  34910. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  34911. uint32x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  34912. uint32x4_t __ret;
  34913. __ret = (uint32x4_t) __builtin_neon_vsha256hq_v((int8x16_t)__rev0, (int8x16_t)__rev1, (int8x16_t)__rev2, 50);
  34914. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  34915. return __ret;
  34916. }
  34917. #endif
  34918. #ifdef __LITTLE_ENDIAN__
  34919. __ai uint32x4_t vsha256h2q_u32(uint32x4_t __p0, uint32x4_t __p1, uint32x4_t __p2) {
  34920. uint32x4_t __ret;
  34921. __ret = (uint32x4_t) __builtin_neon_vsha256h2q_v((int8x16_t)__p0, (int8x16_t)__p1, (int8x16_t)__p2, 50);
  34922. return __ret;
  34923. }
  34924. #else
  34925. __ai uint32x4_t vsha256h2q_u32(uint32x4_t __p0, uint32x4_t __p1, uint32x4_t __p2) {
  34926. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  34927. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  34928. uint32x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  34929. uint32x4_t __ret;
  34930. __ret = (uint32x4_t) __builtin_neon_vsha256h2q_v((int8x16_t)__rev0, (int8x16_t)__rev1, (int8x16_t)__rev2, 50);
  34931. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  34932. return __ret;
  34933. }
  34934. #endif
  34935. #ifdef __LITTLE_ENDIAN__
  34936. __ai uint32x4_t vsha256su0q_u32(uint32x4_t __p0, uint32x4_t __p1) {
  34937. uint32x4_t __ret;
  34938. __ret = (uint32x4_t) __builtin_neon_vsha256su0q_v((int8x16_t)__p0, (int8x16_t)__p1, 50);
  34939. return __ret;
  34940. }
  34941. #else
  34942. __ai uint32x4_t vsha256su0q_u32(uint32x4_t __p0, uint32x4_t __p1) {
  34943. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  34944. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  34945. uint32x4_t __ret;
  34946. __ret = (uint32x4_t) __builtin_neon_vsha256su0q_v((int8x16_t)__rev0, (int8x16_t)__rev1, 50);
  34947. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  34948. return __ret;
  34949. }
  34950. #endif
  34951. #ifdef __LITTLE_ENDIAN__
  34952. __ai uint32x4_t vsha256su1q_u32(uint32x4_t __p0, uint32x4_t __p1, uint32x4_t __p2) {
  34953. uint32x4_t __ret;
  34954. __ret = (uint32x4_t) __builtin_neon_vsha256su1q_v((int8x16_t)__p0, (int8x16_t)__p1, (int8x16_t)__p2, 50);
  34955. return __ret;
  34956. }
  34957. #else
  34958. __ai uint32x4_t vsha256su1q_u32(uint32x4_t __p0, uint32x4_t __p1, uint32x4_t __p2) {
  34959. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  34960. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  34961. uint32x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  34962. uint32x4_t __ret;
  34963. __ret = (uint32x4_t) __builtin_neon_vsha256su1q_v((int8x16_t)__rev0, (int8x16_t)__rev1, (int8x16_t)__rev2, 50);
  34964. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  34965. return __ret;
  34966. }
  34967. #endif
  34968. #endif
  34969. #if __ARM_ARCH >= 8 && defined(__ARM_FEATURE_DIRECTED_ROUNDING)
  34970. #ifdef __LITTLE_ENDIAN__
  34971. __ai float32x4_t vrndq_f32(float32x4_t __p0) {
  34972. float32x4_t __ret;
  34973. __ret = (float32x4_t) __builtin_neon_vrndq_v((int8x16_t)__p0, 41);
  34974. return __ret;
  34975. }
  34976. #else
  34977. __ai float32x4_t vrndq_f32(float32x4_t __p0) {
  34978. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  34979. float32x4_t __ret;
  34980. __ret = (float32x4_t) __builtin_neon_vrndq_v((int8x16_t)__rev0, 41);
  34981. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  34982. return __ret;
  34983. }
  34984. #endif
  34985. #ifdef __LITTLE_ENDIAN__
  34986. __ai float32x2_t vrnd_f32(float32x2_t __p0) {
  34987. float32x2_t __ret;
  34988. __ret = (float32x2_t) __builtin_neon_vrnd_v((int8x8_t)__p0, 9);
  34989. return __ret;
  34990. }
  34991. #else
  34992. __ai float32x2_t vrnd_f32(float32x2_t __p0) {
  34993. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  34994. float32x2_t __ret;
  34995. __ret = (float32x2_t) __builtin_neon_vrnd_v((int8x8_t)__rev0, 9);
  34996. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  34997. return __ret;
  34998. }
  34999. #endif
  35000. #ifdef __LITTLE_ENDIAN__
  35001. __ai float32x4_t vrndaq_f32(float32x4_t __p0) {
  35002. float32x4_t __ret;
  35003. __ret = (float32x4_t) __builtin_neon_vrndaq_v((int8x16_t)__p0, 41);
  35004. return __ret;
  35005. }
  35006. #else
  35007. __ai float32x4_t vrndaq_f32(float32x4_t __p0) {
  35008. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  35009. float32x4_t __ret;
  35010. __ret = (float32x4_t) __builtin_neon_vrndaq_v((int8x16_t)__rev0, 41);
  35011. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  35012. return __ret;
  35013. }
  35014. #endif
  35015. #ifdef __LITTLE_ENDIAN__
  35016. __ai float32x2_t vrnda_f32(float32x2_t __p0) {
  35017. float32x2_t __ret;
  35018. __ret = (float32x2_t) __builtin_neon_vrnda_v((int8x8_t)__p0, 9);
  35019. return __ret;
  35020. }
  35021. #else
  35022. __ai float32x2_t vrnda_f32(float32x2_t __p0) {
  35023. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  35024. float32x2_t __ret;
  35025. __ret = (float32x2_t) __builtin_neon_vrnda_v((int8x8_t)__rev0, 9);
  35026. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  35027. return __ret;
  35028. }
  35029. #endif
  35030. #ifdef __LITTLE_ENDIAN__
  35031. __ai float32x4_t vrndiq_f32(float32x4_t __p0) {
  35032. float32x4_t __ret;
  35033. __ret = (float32x4_t) __builtin_neon_vrndiq_v((int8x16_t)__p0, 41);
  35034. return __ret;
  35035. }
  35036. #else
  35037. __ai float32x4_t vrndiq_f32(float32x4_t __p0) {
  35038. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  35039. float32x4_t __ret;
  35040. __ret = (float32x4_t) __builtin_neon_vrndiq_v((int8x16_t)__rev0, 41);
  35041. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  35042. return __ret;
  35043. }
  35044. #endif
  35045. #ifdef __LITTLE_ENDIAN__
  35046. __ai float32x2_t vrndi_f32(float32x2_t __p0) {
  35047. float32x2_t __ret;
  35048. __ret = (float32x2_t) __builtin_neon_vrndi_v((int8x8_t)__p0, 9);
  35049. return __ret;
  35050. }
  35051. #else
  35052. __ai float32x2_t vrndi_f32(float32x2_t __p0) {
  35053. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  35054. float32x2_t __ret;
  35055. __ret = (float32x2_t) __builtin_neon_vrndi_v((int8x8_t)__rev0, 9);
  35056. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  35057. return __ret;
  35058. }
  35059. #endif
  35060. #ifdef __LITTLE_ENDIAN__
  35061. __ai float32x4_t vrndmq_f32(float32x4_t __p0) {
  35062. float32x4_t __ret;
  35063. __ret = (float32x4_t) __builtin_neon_vrndmq_v((int8x16_t)__p0, 41);
  35064. return __ret;
  35065. }
  35066. #else
  35067. __ai float32x4_t vrndmq_f32(float32x4_t __p0) {
  35068. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  35069. float32x4_t __ret;
  35070. __ret = (float32x4_t) __builtin_neon_vrndmq_v((int8x16_t)__rev0, 41);
  35071. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  35072. return __ret;
  35073. }
  35074. #endif
  35075. #ifdef __LITTLE_ENDIAN__
  35076. __ai float32x2_t vrndm_f32(float32x2_t __p0) {
  35077. float32x2_t __ret;
  35078. __ret = (float32x2_t) __builtin_neon_vrndm_v((int8x8_t)__p0, 9);
  35079. return __ret;
  35080. }
  35081. #else
  35082. __ai float32x2_t vrndm_f32(float32x2_t __p0) {
  35083. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  35084. float32x2_t __ret;
  35085. __ret = (float32x2_t) __builtin_neon_vrndm_v((int8x8_t)__rev0, 9);
  35086. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  35087. return __ret;
  35088. }
  35089. #endif
  35090. #ifdef __LITTLE_ENDIAN__
  35091. __ai float32x4_t vrndnq_f32(float32x4_t __p0) {
  35092. float32x4_t __ret;
  35093. __ret = (float32x4_t) __builtin_neon_vrndnq_v((int8x16_t)__p0, 41);
  35094. return __ret;
  35095. }
  35096. #else
  35097. __ai float32x4_t vrndnq_f32(float32x4_t __p0) {
  35098. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  35099. float32x4_t __ret;
  35100. __ret = (float32x4_t) __builtin_neon_vrndnq_v((int8x16_t)__rev0, 41);
  35101. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  35102. return __ret;
  35103. }
  35104. #endif
  35105. #ifdef __LITTLE_ENDIAN__
  35106. __ai float32x2_t vrndn_f32(float32x2_t __p0) {
  35107. float32x2_t __ret;
  35108. __ret = (float32x2_t) __builtin_neon_vrndn_v((int8x8_t)__p0, 9);
  35109. return __ret;
  35110. }
  35111. #else
  35112. __ai float32x2_t vrndn_f32(float32x2_t __p0) {
  35113. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  35114. float32x2_t __ret;
  35115. __ret = (float32x2_t) __builtin_neon_vrndn_v((int8x8_t)__rev0, 9);
  35116. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  35117. return __ret;
  35118. }
  35119. #endif
  35120. #ifdef __LITTLE_ENDIAN__
  35121. __ai float32_t vrndns_f32(float32_t __p0) {
  35122. float32_t __ret;
  35123. __ret = (float32_t) __builtin_neon_vrndns_f32(__p0);
  35124. return __ret;
  35125. }
  35126. #else
  35127. __ai float32_t vrndns_f32(float32_t __p0) {
  35128. float32_t __ret;
  35129. __ret = (float32_t) __builtin_neon_vrndns_f32(__p0);
  35130. return __ret;
  35131. }
  35132. #endif
  35133. #ifdef __LITTLE_ENDIAN__
  35134. __ai float32x4_t vrndpq_f32(float32x4_t __p0) {
  35135. float32x4_t __ret;
  35136. __ret = (float32x4_t) __builtin_neon_vrndpq_v((int8x16_t)__p0, 41);
  35137. return __ret;
  35138. }
  35139. #else
  35140. __ai float32x4_t vrndpq_f32(float32x4_t __p0) {
  35141. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  35142. float32x4_t __ret;
  35143. __ret = (float32x4_t) __builtin_neon_vrndpq_v((int8x16_t)__rev0, 41);
  35144. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  35145. return __ret;
  35146. }
  35147. #endif
  35148. #ifdef __LITTLE_ENDIAN__
  35149. __ai float32x2_t vrndp_f32(float32x2_t __p0) {
  35150. float32x2_t __ret;
  35151. __ret = (float32x2_t) __builtin_neon_vrndp_v((int8x8_t)__p0, 9);
  35152. return __ret;
  35153. }
  35154. #else
  35155. __ai float32x2_t vrndp_f32(float32x2_t __p0) {
  35156. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  35157. float32x2_t __ret;
  35158. __ret = (float32x2_t) __builtin_neon_vrndp_v((int8x8_t)__rev0, 9);
  35159. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  35160. return __ret;
  35161. }
  35162. #endif
  35163. #ifdef __LITTLE_ENDIAN__
  35164. __ai float32x4_t vrndxq_f32(float32x4_t __p0) {
  35165. float32x4_t __ret;
  35166. __ret = (float32x4_t) __builtin_neon_vrndxq_v((int8x16_t)__p0, 41);
  35167. return __ret;
  35168. }
  35169. #else
  35170. __ai float32x4_t vrndxq_f32(float32x4_t __p0) {
  35171. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  35172. float32x4_t __ret;
  35173. __ret = (float32x4_t) __builtin_neon_vrndxq_v((int8x16_t)__rev0, 41);
  35174. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  35175. return __ret;
  35176. }
  35177. #endif
  35178. #ifdef __LITTLE_ENDIAN__
  35179. __ai float32x2_t vrndx_f32(float32x2_t __p0) {
  35180. float32x2_t __ret;
  35181. __ret = (float32x2_t) __builtin_neon_vrndx_v((int8x8_t)__p0, 9);
  35182. return __ret;
  35183. }
  35184. #else
  35185. __ai float32x2_t vrndx_f32(float32x2_t __p0) {
  35186. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  35187. float32x2_t __ret;
  35188. __ret = (float32x2_t) __builtin_neon_vrndx_v((int8x8_t)__rev0, 9);
  35189. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  35190. return __ret;
  35191. }
  35192. #endif
  35193. #endif
  35194. #if __ARM_ARCH >= 8 && defined(__ARM_FEATURE_DIRECTED_ROUNDING) && defined(__ARM_FEATURE_FP16_VECTOR_ARITHMETIC)
  35195. #ifdef __LITTLE_ENDIAN__
  35196. __ai float16x8_t vrndq_f16(float16x8_t __p0) {
  35197. float16x8_t __ret;
  35198. __ret = (float16x8_t) __builtin_neon_vrndq_v((int8x16_t)__p0, 40);
  35199. return __ret;
  35200. }
  35201. #else
  35202. __ai float16x8_t vrndq_f16(float16x8_t __p0) {
  35203. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  35204. float16x8_t __ret;
  35205. __ret = (float16x8_t) __builtin_neon_vrndq_v((int8x16_t)__rev0, 40);
  35206. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  35207. return __ret;
  35208. }
  35209. #endif
  35210. #ifdef __LITTLE_ENDIAN__
  35211. __ai float16x4_t vrnd_f16(float16x4_t __p0) {
  35212. float16x4_t __ret;
  35213. __ret = (float16x4_t) __builtin_neon_vrnd_v((int8x8_t)__p0, 8);
  35214. return __ret;
  35215. }
  35216. #else
  35217. __ai float16x4_t vrnd_f16(float16x4_t __p0) {
  35218. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  35219. float16x4_t __ret;
  35220. __ret = (float16x4_t) __builtin_neon_vrnd_v((int8x8_t)__rev0, 8);
  35221. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  35222. return __ret;
  35223. }
  35224. #endif
  35225. #ifdef __LITTLE_ENDIAN__
  35226. __ai float16x8_t vrndaq_f16(float16x8_t __p0) {
  35227. float16x8_t __ret;
  35228. __ret = (float16x8_t) __builtin_neon_vrndaq_v((int8x16_t)__p0, 40);
  35229. return __ret;
  35230. }
  35231. #else
  35232. __ai float16x8_t vrndaq_f16(float16x8_t __p0) {
  35233. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  35234. float16x8_t __ret;
  35235. __ret = (float16x8_t) __builtin_neon_vrndaq_v((int8x16_t)__rev0, 40);
  35236. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  35237. return __ret;
  35238. }
  35239. #endif
  35240. #ifdef __LITTLE_ENDIAN__
  35241. __ai float16x4_t vrnda_f16(float16x4_t __p0) {
  35242. float16x4_t __ret;
  35243. __ret = (float16x4_t) __builtin_neon_vrnda_v((int8x8_t)__p0, 8);
  35244. return __ret;
  35245. }
  35246. #else
  35247. __ai float16x4_t vrnda_f16(float16x4_t __p0) {
  35248. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  35249. float16x4_t __ret;
  35250. __ret = (float16x4_t) __builtin_neon_vrnda_v((int8x8_t)__rev0, 8);
  35251. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  35252. return __ret;
  35253. }
  35254. #endif
  35255. #ifdef __LITTLE_ENDIAN__
  35256. __ai float16x8_t vrndmq_f16(float16x8_t __p0) {
  35257. float16x8_t __ret;
  35258. __ret = (float16x8_t) __builtin_neon_vrndmq_v((int8x16_t)__p0, 40);
  35259. return __ret;
  35260. }
  35261. #else
  35262. __ai float16x8_t vrndmq_f16(float16x8_t __p0) {
  35263. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  35264. float16x8_t __ret;
  35265. __ret = (float16x8_t) __builtin_neon_vrndmq_v((int8x16_t)__rev0, 40);
  35266. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  35267. return __ret;
  35268. }
  35269. #endif
  35270. #ifdef __LITTLE_ENDIAN__
  35271. __ai float16x4_t vrndm_f16(float16x4_t __p0) {
  35272. float16x4_t __ret;
  35273. __ret = (float16x4_t) __builtin_neon_vrndm_v((int8x8_t)__p0, 8);
  35274. return __ret;
  35275. }
  35276. #else
  35277. __ai float16x4_t vrndm_f16(float16x4_t __p0) {
  35278. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  35279. float16x4_t __ret;
  35280. __ret = (float16x4_t) __builtin_neon_vrndm_v((int8x8_t)__rev0, 8);
  35281. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  35282. return __ret;
  35283. }
  35284. #endif
  35285. #ifdef __LITTLE_ENDIAN__
  35286. __ai float16x8_t vrndnq_f16(float16x8_t __p0) {
  35287. float16x8_t __ret;
  35288. __ret = (float16x8_t) __builtin_neon_vrndnq_v((int8x16_t)__p0, 40);
  35289. return __ret;
  35290. }
  35291. #else
  35292. __ai float16x8_t vrndnq_f16(float16x8_t __p0) {
  35293. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  35294. float16x8_t __ret;
  35295. __ret = (float16x8_t) __builtin_neon_vrndnq_v((int8x16_t)__rev0, 40);
  35296. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  35297. return __ret;
  35298. }
  35299. #endif
  35300. #ifdef __LITTLE_ENDIAN__
  35301. __ai float16x4_t vrndn_f16(float16x4_t __p0) {
  35302. float16x4_t __ret;
  35303. __ret = (float16x4_t) __builtin_neon_vrndn_v((int8x8_t)__p0, 8);
  35304. return __ret;
  35305. }
  35306. #else
  35307. __ai float16x4_t vrndn_f16(float16x4_t __p0) {
  35308. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  35309. float16x4_t __ret;
  35310. __ret = (float16x4_t) __builtin_neon_vrndn_v((int8x8_t)__rev0, 8);
  35311. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  35312. return __ret;
  35313. }
  35314. #endif
  35315. #ifdef __LITTLE_ENDIAN__
  35316. __ai float16x8_t vrndpq_f16(float16x8_t __p0) {
  35317. float16x8_t __ret;
  35318. __ret = (float16x8_t) __builtin_neon_vrndpq_v((int8x16_t)__p0, 40);
  35319. return __ret;
  35320. }
  35321. #else
  35322. __ai float16x8_t vrndpq_f16(float16x8_t __p0) {
  35323. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  35324. float16x8_t __ret;
  35325. __ret = (float16x8_t) __builtin_neon_vrndpq_v((int8x16_t)__rev0, 40);
  35326. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  35327. return __ret;
  35328. }
  35329. #endif
  35330. #ifdef __LITTLE_ENDIAN__
  35331. __ai float16x4_t vrndp_f16(float16x4_t __p0) {
  35332. float16x4_t __ret;
  35333. __ret = (float16x4_t) __builtin_neon_vrndp_v((int8x8_t)__p0, 8);
  35334. return __ret;
  35335. }
  35336. #else
  35337. __ai float16x4_t vrndp_f16(float16x4_t __p0) {
  35338. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  35339. float16x4_t __ret;
  35340. __ret = (float16x4_t) __builtin_neon_vrndp_v((int8x8_t)__rev0, 8);
  35341. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  35342. return __ret;
  35343. }
  35344. #endif
  35345. #ifdef __LITTLE_ENDIAN__
  35346. __ai float16x8_t vrndxq_f16(float16x8_t __p0) {
  35347. float16x8_t __ret;
  35348. __ret = (float16x8_t) __builtin_neon_vrndxq_v((int8x16_t)__p0, 40);
  35349. return __ret;
  35350. }
  35351. #else
  35352. __ai float16x8_t vrndxq_f16(float16x8_t __p0) {
  35353. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  35354. float16x8_t __ret;
  35355. __ret = (float16x8_t) __builtin_neon_vrndxq_v((int8x16_t)__rev0, 40);
  35356. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  35357. return __ret;
  35358. }
  35359. #endif
  35360. #ifdef __LITTLE_ENDIAN__
  35361. __ai float16x4_t vrndx_f16(float16x4_t __p0) {
  35362. float16x4_t __ret;
  35363. __ret = (float16x4_t) __builtin_neon_vrndx_v((int8x8_t)__p0, 8);
  35364. return __ret;
  35365. }
  35366. #else
  35367. __ai float16x4_t vrndx_f16(float16x4_t __p0) {
  35368. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  35369. float16x4_t __ret;
  35370. __ret = (float16x4_t) __builtin_neon_vrndx_v((int8x8_t)__rev0, 8);
  35371. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  35372. return __ret;
  35373. }
  35374. #endif
  35375. #endif
  35376. #if __ARM_ARCH >= 8 && defined(__ARM_FEATURE_NUMERIC_MAXMIN)
  35377. #ifdef __LITTLE_ENDIAN__
  35378. __ai float32x4_t vmaxnmq_f32(float32x4_t __p0, float32x4_t __p1) {
  35379. float32x4_t __ret;
  35380. __ret = (float32x4_t) __builtin_neon_vmaxnmq_v((int8x16_t)__p0, (int8x16_t)__p1, 41);
  35381. return __ret;
  35382. }
  35383. #else
  35384. __ai float32x4_t vmaxnmq_f32(float32x4_t __p0, float32x4_t __p1) {
  35385. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  35386. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  35387. float32x4_t __ret;
  35388. __ret = (float32x4_t) __builtin_neon_vmaxnmq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 41);
  35389. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  35390. return __ret;
  35391. }
  35392. #endif
  35393. #ifdef __LITTLE_ENDIAN__
  35394. __ai float32x2_t vmaxnm_f32(float32x2_t __p0, float32x2_t __p1) {
  35395. float32x2_t __ret;
  35396. __ret = (float32x2_t) __builtin_neon_vmaxnm_v((int8x8_t)__p0, (int8x8_t)__p1, 9);
  35397. return __ret;
  35398. }
  35399. #else
  35400. __ai float32x2_t vmaxnm_f32(float32x2_t __p0, float32x2_t __p1) {
  35401. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  35402. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  35403. float32x2_t __ret;
  35404. __ret = (float32x2_t) __builtin_neon_vmaxnm_v((int8x8_t)__rev0, (int8x8_t)__rev1, 9);
  35405. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  35406. return __ret;
  35407. }
  35408. #endif
  35409. #ifdef __LITTLE_ENDIAN__
  35410. __ai float32x4_t vminnmq_f32(float32x4_t __p0, float32x4_t __p1) {
  35411. float32x4_t __ret;
  35412. __ret = (float32x4_t) __builtin_neon_vminnmq_v((int8x16_t)__p0, (int8x16_t)__p1, 41);
  35413. return __ret;
  35414. }
  35415. #else
  35416. __ai float32x4_t vminnmq_f32(float32x4_t __p0, float32x4_t __p1) {
  35417. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  35418. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  35419. float32x4_t __ret;
  35420. __ret = (float32x4_t) __builtin_neon_vminnmq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 41);
  35421. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  35422. return __ret;
  35423. }
  35424. #endif
  35425. #ifdef __LITTLE_ENDIAN__
  35426. __ai float32x2_t vminnm_f32(float32x2_t __p0, float32x2_t __p1) {
  35427. float32x2_t __ret;
  35428. __ret = (float32x2_t) __builtin_neon_vminnm_v((int8x8_t)__p0, (int8x8_t)__p1, 9);
  35429. return __ret;
  35430. }
  35431. #else
  35432. __ai float32x2_t vminnm_f32(float32x2_t __p0, float32x2_t __p1) {
  35433. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  35434. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  35435. float32x2_t __ret;
  35436. __ret = (float32x2_t) __builtin_neon_vminnm_v((int8x8_t)__rev0, (int8x8_t)__rev1, 9);
  35437. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  35438. return __ret;
  35439. }
  35440. #endif
  35441. #endif
  35442. #if __ARM_ARCH >= 8 && defined(__ARM_FEATURE_NUMERIC_MAXMIN) && defined(__ARM_FEATURE_FP16_VECTOR_ARITHMETIC)
  35443. #ifdef __LITTLE_ENDIAN__
  35444. __ai float16x8_t vmaxnmq_f16(float16x8_t __p0, float16x8_t __p1) {
  35445. float16x8_t __ret;
  35446. __ret = (float16x8_t) __builtin_neon_vmaxnmq_v((int8x16_t)__p0, (int8x16_t)__p1, 40);
  35447. return __ret;
  35448. }
  35449. #else
  35450. __ai float16x8_t vmaxnmq_f16(float16x8_t __p0, float16x8_t __p1) {
  35451. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  35452. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  35453. float16x8_t __ret;
  35454. __ret = (float16x8_t) __builtin_neon_vmaxnmq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 40);
  35455. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  35456. return __ret;
  35457. }
  35458. #endif
  35459. #ifdef __LITTLE_ENDIAN__
  35460. __ai float16x4_t vmaxnm_f16(float16x4_t __p0, float16x4_t __p1) {
  35461. float16x4_t __ret;
  35462. __ret = (float16x4_t) __builtin_neon_vmaxnm_v((int8x8_t)__p0, (int8x8_t)__p1, 8);
  35463. return __ret;
  35464. }
  35465. #else
  35466. __ai float16x4_t vmaxnm_f16(float16x4_t __p0, float16x4_t __p1) {
  35467. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  35468. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  35469. float16x4_t __ret;
  35470. __ret = (float16x4_t) __builtin_neon_vmaxnm_v((int8x8_t)__rev0, (int8x8_t)__rev1, 8);
  35471. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  35472. return __ret;
  35473. }
  35474. #endif
  35475. #ifdef __LITTLE_ENDIAN__
  35476. __ai float16x8_t vminnmq_f16(float16x8_t __p0, float16x8_t __p1) {
  35477. float16x8_t __ret;
  35478. __ret = (float16x8_t) __builtin_neon_vminnmq_v((int8x16_t)__p0, (int8x16_t)__p1, 40);
  35479. return __ret;
  35480. }
  35481. #else
  35482. __ai float16x8_t vminnmq_f16(float16x8_t __p0, float16x8_t __p1) {
  35483. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  35484. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  35485. float16x8_t __ret;
  35486. __ret = (float16x8_t) __builtin_neon_vminnmq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 40);
  35487. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  35488. return __ret;
  35489. }
  35490. #endif
  35491. #ifdef __LITTLE_ENDIAN__
  35492. __ai float16x4_t vminnm_f16(float16x4_t __p0, float16x4_t __p1) {
  35493. float16x4_t __ret;
  35494. __ret = (float16x4_t) __builtin_neon_vminnm_v((int8x8_t)__p0, (int8x8_t)__p1, 8);
  35495. return __ret;
  35496. }
  35497. #else
  35498. __ai float16x4_t vminnm_f16(float16x4_t __p0, float16x4_t __p1) {
  35499. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  35500. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  35501. float16x4_t __ret;
  35502. __ret = (float16x4_t) __builtin_neon_vminnm_v((int8x8_t)__rev0, (int8x8_t)__rev1, 8);
  35503. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  35504. return __ret;
  35505. }
  35506. #endif
  35507. #endif
  35508. #if __ARM_ARCH >= 8 && defined(__aarch64__)
  35509. #ifdef __LITTLE_ENDIAN__
  35510. __ai int64x2_t vcvtaq_s64_f64(float64x2_t __p0) {
  35511. int64x2_t __ret;
  35512. __ret = (int64x2_t) __builtin_neon_vcvtaq_s64_v((int8x16_t)__p0, 35);
  35513. return __ret;
  35514. }
  35515. #else
  35516. __ai int64x2_t vcvtaq_s64_f64(float64x2_t __p0) {
  35517. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  35518. int64x2_t __ret;
  35519. __ret = (int64x2_t) __builtin_neon_vcvtaq_s64_v((int8x16_t)__rev0, 35);
  35520. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  35521. return __ret;
  35522. }
  35523. #endif
  35524. #ifdef __LITTLE_ENDIAN__
  35525. __ai int64x1_t vcvta_s64_f64(float64x1_t __p0) {
  35526. int64x1_t __ret;
  35527. __ret = (int64x1_t) __builtin_neon_vcvta_s64_v((int8x8_t)__p0, 3);
  35528. return __ret;
  35529. }
  35530. #else
  35531. __ai int64x1_t vcvta_s64_f64(float64x1_t __p0) {
  35532. int64x1_t __ret;
  35533. __ret = (int64x1_t) __builtin_neon_vcvta_s64_v((int8x8_t)__p0, 3);
  35534. return __ret;
  35535. }
  35536. #endif
  35537. #ifdef __LITTLE_ENDIAN__
  35538. __ai uint64x2_t vcvtaq_u64_f64(float64x2_t __p0) {
  35539. uint64x2_t __ret;
  35540. __ret = (uint64x2_t) __builtin_neon_vcvtaq_u64_v((int8x16_t)__p0, 51);
  35541. return __ret;
  35542. }
  35543. #else
  35544. __ai uint64x2_t vcvtaq_u64_f64(float64x2_t __p0) {
  35545. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  35546. uint64x2_t __ret;
  35547. __ret = (uint64x2_t) __builtin_neon_vcvtaq_u64_v((int8x16_t)__rev0, 51);
  35548. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  35549. return __ret;
  35550. }
  35551. #endif
  35552. #ifdef __LITTLE_ENDIAN__
  35553. __ai uint64x1_t vcvta_u64_f64(float64x1_t __p0) {
  35554. uint64x1_t __ret;
  35555. __ret = (uint64x1_t) __builtin_neon_vcvta_u64_v((int8x8_t)__p0, 19);
  35556. return __ret;
  35557. }
  35558. #else
  35559. __ai uint64x1_t vcvta_u64_f64(float64x1_t __p0) {
  35560. uint64x1_t __ret;
  35561. __ret = (uint64x1_t) __builtin_neon_vcvta_u64_v((int8x8_t)__p0, 19);
  35562. return __ret;
  35563. }
  35564. #endif
  35565. #ifdef __LITTLE_ENDIAN__
  35566. __ai int64x2_t vcvtmq_s64_f64(float64x2_t __p0) {
  35567. int64x2_t __ret;
  35568. __ret = (int64x2_t) __builtin_neon_vcvtmq_s64_v((int8x16_t)__p0, 35);
  35569. return __ret;
  35570. }
  35571. #else
  35572. __ai int64x2_t vcvtmq_s64_f64(float64x2_t __p0) {
  35573. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  35574. int64x2_t __ret;
  35575. __ret = (int64x2_t) __builtin_neon_vcvtmq_s64_v((int8x16_t)__rev0, 35);
  35576. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  35577. return __ret;
  35578. }
  35579. #endif
  35580. #ifdef __LITTLE_ENDIAN__
  35581. __ai int64x1_t vcvtm_s64_f64(float64x1_t __p0) {
  35582. int64x1_t __ret;
  35583. __ret = (int64x1_t) __builtin_neon_vcvtm_s64_v((int8x8_t)__p0, 3);
  35584. return __ret;
  35585. }
  35586. #else
  35587. __ai int64x1_t vcvtm_s64_f64(float64x1_t __p0) {
  35588. int64x1_t __ret;
  35589. __ret = (int64x1_t) __builtin_neon_vcvtm_s64_v((int8x8_t)__p0, 3);
  35590. return __ret;
  35591. }
  35592. #endif
  35593. #ifdef __LITTLE_ENDIAN__
  35594. __ai uint64x2_t vcvtmq_u64_f64(float64x2_t __p0) {
  35595. uint64x2_t __ret;
  35596. __ret = (uint64x2_t) __builtin_neon_vcvtmq_u64_v((int8x16_t)__p0, 51);
  35597. return __ret;
  35598. }
  35599. #else
  35600. __ai uint64x2_t vcvtmq_u64_f64(float64x2_t __p0) {
  35601. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  35602. uint64x2_t __ret;
  35603. __ret = (uint64x2_t) __builtin_neon_vcvtmq_u64_v((int8x16_t)__rev0, 51);
  35604. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  35605. return __ret;
  35606. }
  35607. #endif
  35608. #ifdef __LITTLE_ENDIAN__
  35609. __ai uint64x1_t vcvtm_u64_f64(float64x1_t __p0) {
  35610. uint64x1_t __ret;
  35611. __ret = (uint64x1_t) __builtin_neon_vcvtm_u64_v((int8x8_t)__p0, 19);
  35612. return __ret;
  35613. }
  35614. #else
  35615. __ai uint64x1_t vcvtm_u64_f64(float64x1_t __p0) {
  35616. uint64x1_t __ret;
  35617. __ret = (uint64x1_t) __builtin_neon_vcvtm_u64_v((int8x8_t)__p0, 19);
  35618. return __ret;
  35619. }
  35620. #endif
  35621. #ifdef __LITTLE_ENDIAN__
  35622. __ai int64x2_t vcvtnq_s64_f64(float64x2_t __p0) {
  35623. int64x2_t __ret;
  35624. __ret = (int64x2_t) __builtin_neon_vcvtnq_s64_v((int8x16_t)__p0, 35);
  35625. return __ret;
  35626. }
  35627. #else
  35628. __ai int64x2_t vcvtnq_s64_f64(float64x2_t __p0) {
  35629. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  35630. int64x2_t __ret;
  35631. __ret = (int64x2_t) __builtin_neon_vcvtnq_s64_v((int8x16_t)__rev0, 35);
  35632. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  35633. return __ret;
  35634. }
  35635. #endif
  35636. #ifdef __LITTLE_ENDIAN__
  35637. __ai int64x1_t vcvtn_s64_f64(float64x1_t __p0) {
  35638. int64x1_t __ret;
  35639. __ret = (int64x1_t) __builtin_neon_vcvtn_s64_v((int8x8_t)__p0, 3);
  35640. return __ret;
  35641. }
  35642. #else
  35643. __ai int64x1_t vcvtn_s64_f64(float64x1_t __p0) {
  35644. int64x1_t __ret;
  35645. __ret = (int64x1_t) __builtin_neon_vcvtn_s64_v((int8x8_t)__p0, 3);
  35646. return __ret;
  35647. }
  35648. #endif
  35649. #ifdef __LITTLE_ENDIAN__
  35650. __ai uint64x2_t vcvtnq_u64_f64(float64x2_t __p0) {
  35651. uint64x2_t __ret;
  35652. __ret = (uint64x2_t) __builtin_neon_vcvtnq_u64_v((int8x16_t)__p0, 51);
  35653. return __ret;
  35654. }
  35655. #else
  35656. __ai uint64x2_t vcvtnq_u64_f64(float64x2_t __p0) {
  35657. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  35658. uint64x2_t __ret;
  35659. __ret = (uint64x2_t) __builtin_neon_vcvtnq_u64_v((int8x16_t)__rev0, 51);
  35660. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  35661. return __ret;
  35662. }
  35663. #endif
  35664. #ifdef __LITTLE_ENDIAN__
  35665. __ai uint64x1_t vcvtn_u64_f64(float64x1_t __p0) {
  35666. uint64x1_t __ret;
  35667. __ret = (uint64x1_t) __builtin_neon_vcvtn_u64_v((int8x8_t)__p0, 19);
  35668. return __ret;
  35669. }
  35670. #else
  35671. __ai uint64x1_t vcvtn_u64_f64(float64x1_t __p0) {
  35672. uint64x1_t __ret;
  35673. __ret = (uint64x1_t) __builtin_neon_vcvtn_u64_v((int8x8_t)__p0, 19);
  35674. return __ret;
  35675. }
  35676. #endif
  35677. #ifdef __LITTLE_ENDIAN__
  35678. __ai int64x2_t vcvtpq_s64_f64(float64x2_t __p0) {
  35679. int64x2_t __ret;
  35680. __ret = (int64x2_t) __builtin_neon_vcvtpq_s64_v((int8x16_t)__p0, 35);
  35681. return __ret;
  35682. }
  35683. #else
  35684. __ai int64x2_t vcvtpq_s64_f64(float64x2_t __p0) {
  35685. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  35686. int64x2_t __ret;
  35687. __ret = (int64x2_t) __builtin_neon_vcvtpq_s64_v((int8x16_t)__rev0, 35);
  35688. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  35689. return __ret;
  35690. }
  35691. #endif
  35692. #ifdef __LITTLE_ENDIAN__
  35693. __ai int64x1_t vcvtp_s64_f64(float64x1_t __p0) {
  35694. int64x1_t __ret;
  35695. __ret = (int64x1_t) __builtin_neon_vcvtp_s64_v((int8x8_t)__p0, 3);
  35696. return __ret;
  35697. }
  35698. #else
  35699. __ai int64x1_t vcvtp_s64_f64(float64x1_t __p0) {
  35700. int64x1_t __ret;
  35701. __ret = (int64x1_t) __builtin_neon_vcvtp_s64_v((int8x8_t)__p0, 3);
  35702. return __ret;
  35703. }
  35704. #endif
  35705. #ifdef __LITTLE_ENDIAN__
  35706. __ai uint64x2_t vcvtpq_u64_f64(float64x2_t __p0) {
  35707. uint64x2_t __ret;
  35708. __ret = (uint64x2_t) __builtin_neon_vcvtpq_u64_v((int8x16_t)__p0, 51);
  35709. return __ret;
  35710. }
  35711. #else
  35712. __ai uint64x2_t vcvtpq_u64_f64(float64x2_t __p0) {
  35713. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  35714. uint64x2_t __ret;
  35715. __ret = (uint64x2_t) __builtin_neon_vcvtpq_u64_v((int8x16_t)__rev0, 51);
  35716. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  35717. return __ret;
  35718. }
  35719. #endif
  35720. #ifdef __LITTLE_ENDIAN__
  35721. __ai uint64x1_t vcvtp_u64_f64(float64x1_t __p0) {
  35722. uint64x1_t __ret;
  35723. __ret = (uint64x1_t) __builtin_neon_vcvtp_u64_v((int8x8_t)__p0, 19);
  35724. return __ret;
  35725. }
  35726. #else
  35727. __ai uint64x1_t vcvtp_u64_f64(float64x1_t __p0) {
  35728. uint64x1_t __ret;
  35729. __ret = (uint64x1_t) __builtin_neon_vcvtp_u64_v((int8x8_t)__p0, 19);
  35730. return __ret;
  35731. }
  35732. #endif
  35733. #ifdef __LITTLE_ENDIAN__
  35734. __ai poly8x8_t vreinterpret_p8_p64(poly64x1_t __p0) {
  35735. poly8x8_t __ret;
  35736. __ret = (poly8x8_t)(__p0);
  35737. return __ret;
  35738. }
  35739. #else
  35740. __ai poly8x8_t vreinterpret_p8_p64(poly64x1_t __p0) {
  35741. poly8x8_t __ret;
  35742. __ret = (poly8x8_t)(__p0);
  35743. return __ret;
  35744. }
  35745. #endif
  35746. #ifdef __LITTLE_ENDIAN__
  35747. __ai poly8x8_t vreinterpret_p8_p16(poly16x4_t __p0) {
  35748. poly8x8_t __ret;
  35749. __ret = (poly8x8_t)(__p0);
  35750. return __ret;
  35751. }
  35752. #else
  35753. __ai poly8x8_t vreinterpret_p8_p16(poly16x4_t __p0) {
  35754. poly8x8_t __ret;
  35755. __ret = (poly8x8_t)(__p0);
  35756. return __ret;
  35757. }
  35758. #endif
  35759. #ifdef __LITTLE_ENDIAN__
  35760. __ai poly8x8_t vreinterpret_p8_u8(uint8x8_t __p0) {
  35761. poly8x8_t __ret;
  35762. __ret = (poly8x8_t)(__p0);
  35763. return __ret;
  35764. }
  35765. #else
  35766. __ai poly8x8_t vreinterpret_p8_u8(uint8x8_t __p0) {
  35767. poly8x8_t __ret;
  35768. __ret = (poly8x8_t)(__p0);
  35769. return __ret;
  35770. }
  35771. #endif
  35772. #ifdef __LITTLE_ENDIAN__
  35773. __ai poly8x8_t vreinterpret_p8_u32(uint32x2_t __p0) {
  35774. poly8x8_t __ret;
  35775. __ret = (poly8x8_t)(__p0);
  35776. return __ret;
  35777. }
  35778. #else
  35779. __ai poly8x8_t vreinterpret_p8_u32(uint32x2_t __p0) {
  35780. poly8x8_t __ret;
  35781. __ret = (poly8x8_t)(__p0);
  35782. return __ret;
  35783. }
  35784. #endif
  35785. #ifdef __LITTLE_ENDIAN__
  35786. __ai poly8x8_t vreinterpret_p8_u64(uint64x1_t __p0) {
  35787. poly8x8_t __ret;
  35788. __ret = (poly8x8_t)(__p0);
  35789. return __ret;
  35790. }
  35791. #else
  35792. __ai poly8x8_t vreinterpret_p8_u64(uint64x1_t __p0) {
  35793. poly8x8_t __ret;
  35794. __ret = (poly8x8_t)(__p0);
  35795. return __ret;
  35796. }
  35797. #endif
  35798. #ifdef __LITTLE_ENDIAN__
  35799. __ai poly8x8_t vreinterpret_p8_u16(uint16x4_t __p0) {
  35800. poly8x8_t __ret;
  35801. __ret = (poly8x8_t)(__p0);
  35802. return __ret;
  35803. }
  35804. #else
  35805. __ai poly8x8_t vreinterpret_p8_u16(uint16x4_t __p0) {
  35806. poly8x8_t __ret;
  35807. __ret = (poly8x8_t)(__p0);
  35808. return __ret;
  35809. }
  35810. #endif
  35811. #ifdef __LITTLE_ENDIAN__
  35812. __ai poly8x8_t vreinterpret_p8_s8(int8x8_t __p0) {
  35813. poly8x8_t __ret;
  35814. __ret = (poly8x8_t)(__p0);
  35815. return __ret;
  35816. }
  35817. #else
  35818. __ai poly8x8_t vreinterpret_p8_s8(int8x8_t __p0) {
  35819. poly8x8_t __ret;
  35820. __ret = (poly8x8_t)(__p0);
  35821. return __ret;
  35822. }
  35823. #endif
  35824. #ifdef __LITTLE_ENDIAN__
  35825. __ai poly8x8_t vreinterpret_p8_f64(float64x1_t __p0) {
  35826. poly8x8_t __ret;
  35827. __ret = (poly8x8_t)(__p0);
  35828. return __ret;
  35829. }
  35830. #else
  35831. __ai poly8x8_t vreinterpret_p8_f64(float64x1_t __p0) {
  35832. poly8x8_t __ret;
  35833. __ret = (poly8x8_t)(__p0);
  35834. return __ret;
  35835. }
  35836. #endif
  35837. #ifdef __LITTLE_ENDIAN__
  35838. __ai poly8x8_t vreinterpret_p8_f32(float32x2_t __p0) {
  35839. poly8x8_t __ret;
  35840. __ret = (poly8x8_t)(__p0);
  35841. return __ret;
  35842. }
  35843. #else
  35844. __ai poly8x8_t vreinterpret_p8_f32(float32x2_t __p0) {
  35845. poly8x8_t __ret;
  35846. __ret = (poly8x8_t)(__p0);
  35847. return __ret;
  35848. }
  35849. #endif
  35850. #ifdef __LITTLE_ENDIAN__
  35851. __ai poly8x8_t vreinterpret_p8_f16(float16x4_t __p0) {
  35852. poly8x8_t __ret;
  35853. __ret = (poly8x8_t)(__p0);
  35854. return __ret;
  35855. }
  35856. #else
  35857. __ai poly8x8_t vreinterpret_p8_f16(float16x4_t __p0) {
  35858. poly8x8_t __ret;
  35859. __ret = (poly8x8_t)(__p0);
  35860. return __ret;
  35861. }
  35862. #endif
  35863. #ifdef __LITTLE_ENDIAN__
  35864. __ai poly8x8_t vreinterpret_p8_s32(int32x2_t __p0) {
  35865. poly8x8_t __ret;
  35866. __ret = (poly8x8_t)(__p0);
  35867. return __ret;
  35868. }
  35869. #else
  35870. __ai poly8x8_t vreinterpret_p8_s32(int32x2_t __p0) {
  35871. poly8x8_t __ret;
  35872. __ret = (poly8x8_t)(__p0);
  35873. return __ret;
  35874. }
  35875. #endif
  35876. #ifdef __LITTLE_ENDIAN__
  35877. __ai poly8x8_t vreinterpret_p8_s64(int64x1_t __p0) {
  35878. poly8x8_t __ret;
  35879. __ret = (poly8x8_t)(__p0);
  35880. return __ret;
  35881. }
  35882. #else
  35883. __ai poly8x8_t vreinterpret_p8_s64(int64x1_t __p0) {
  35884. poly8x8_t __ret;
  35885. __ret = (poly8x8_t)(__p0);
  35886. return __ret;
  35887. }
  35888. #endif
  35889. #ifdef __LITTLE_ENDIAN__
  35890. __ai poly8x8_t vreinterpret_p8_s16(int16x4_t __p0) {
  35891. poly8x8_t __ret;
  35892. __ret = (poly8x8_t)(__p0);
  35893. return __ret;
  35894. }
  35895. #else
  35896. __ai poly8x8_t vreinterpret_p8_s16(int16x4_t __p0) {
  35897. poly8x8_t __ret;
  35898. __ret = (poly8x8_t)(__p0);
  35899. return __ret;
  35900. }
  35901. #endif
  35902. #ifdef __LITTLE_ENDIAN__
  35903. __ai poly64x1_t vreinterpret_p64_p8(poly8x8_t __p0) {
  35904. poly64x1_t __ret;
  35905. __ret = (poly64x1_t)(__p0);
  35906. return __ret;
  35907. }
  35908. #else
  35909. __ai poly64x1_t vreinterpret_p64_p8(poly8x8_t __p0) {
  35910. poly64x1_t __ret;
  35911. __ret = (poly64x1_t)(__p0);
  35912. return __ret;
  35913. }
  35914. #endif
  35915. #ifdef __LITTLE_ENDIAN__
  35916. __ai poly64x1_t vreinterpret_p64_p16(poly16x4_t __p0) {
  35917. poly64x1_t __ret;
  35918. __ret = (poly64x1_t)(__p0);
  35919. return __ret;
  35920. }
  35921. #else
  35922. __ai poly64x1_t vreinterpret_p64_p16(poly16x4_t __p0) {
  35923. poly64x1_t __ret;
  35924. __ret = (poly64x1_t)(__p0);
  35925. return __ret;
  35926. }
  35927. #endif
  35928. #ifdef __LITTLE_ENDIAN__
  35929. __ai poly64x1_t vreinterpret_p64_u8(uint8x8_t __p0) {
  35930. poly64x1_t __ret;
  35931. __ret = (poly64x1_t)(__p0);
  35932. return __ret;
  35933. }
  35934. #else
  35935. __ai poly64x1_t vreinterpret_p64_u8(uint8x8_t __p0) {
  35936. poly64x1_t __ret;
  35937. __ret = (poly64x1_t)(__p0);
  35938. return __ret;
  35939. }
  35940. #endif
  35941. #ifdef __LITTLE_ENDIAN__
  35942. __ai poly64x1_t vreinterpret_p64_u32(uint32x2_t __p0) {
  35943. poly64x1_t __ret;
  35944. __ret = (poly64x1_t)(__p0);
  35945. return __ret;
  35946. }
  35947. #else
  35948. __ai poly64x1_t vreinterpret_p64_u32(uint32x2_t __p0) {
  35949. poly64x1_t __ret;
  35950. __ret = (poly64x1_t)(__p0);
  35951. return __ret;
  35952. }
  35953. #endif
  35954. #ifdef __LITTLE_ENDIAN__
  35955. __ai poly64x1_t vreinterpret_p64_u64(uint64x1_t __p0) {
  35956. poly64x1_t __ret;
  35957. __ret = (poly64x1_t)(__p0);
  35958. return __ret;
  35959. }
  35960. #else
  35961. __ai poly64x1_t vreinterpret_p64_u64(uint64x1_t __p0) {
  35962. poly64x1_t __ret;
  35963. __ret = (poly64x1_t)(__p0);
  35964. return __ret;
  35965. }
  35966. #endif
  35967. #ifdef __LITTLE_ENDIAN__
  35968. __ai poly64x1_t vreinterpret_p64_u16(uint16x4_t __p0) {
  35969. poly64x1_t __ret;
  35970. __ret = (poly64x1_t)(__p0);
  35971. return __ret;
  35972. }
  35973. #else
  35974. __ai poly64x1_t vreinterpret_p64_u16(uint16x4_t __p0) {
  35975. poly64x1_t __ret;
  35976. __ret = (poly64x1_t)(__p0);
  35977. return __ret;
  35978. }
  35979. #endif
  35980. #ifdef __LITTLE_ENDIAN__
  35981. __ai poly64x1_t vreinterpret_p64_s8(int8x8_t __p0) {
  35982. poly64x1_t __ret;
  35983. __ret = (poly64x1_t)(__p0);
  35984. return __ret;
  35985. }
  35986. #else
  35987. __ai poly64x1_t vreinterpret_p64_s8(int8x8_t __p0) {
  35988. poly64x1_t __ret;
  35989. __ret = (poly64x1_t)(__p0);
  35990. return __ret;
  35991. }
  35992. #endif
  35993. #ifdef __LITTLE_ENDIAN__
  35994. __ai poly64x1_t vreinterpret_p64_f64(float64x1_t __p0) {
  35995. poly64x1_t __ret;
  35996. __ret = (poly64x1_t)(__p0);
  35997. return __ret;
  35998. }
  35999. #else
  36000. __ai poly64x1_t vreinterpret_p64_f64(float64x1_t __p0) {
  36001. poly64x1_t __ret;
  36002. __ret = (poly64x1_t)(__p0);
  36003. return __ret;
  36004. }
  36005. #endif
  36006. #ifdef __LITTLE_ENDIAN__
  36007. __ai poly64x1_t vreinterpret_p64_f32(float32x2_t __p0) {
  36008. poly64x1_t __ret;
  36009. __ret = (poly64x1_t)(__p0);
  36010. return __ret;
  36011. }
  36012. #else
  36013. __ai poly64x1_t vreinterpret_p64_f32(float32x2_t __p0) {
  36014. poly64x1_t __ret;
  36015. __ret = (poly64x1_t)(__p0);
  36016. return __ret;
  36017. }
  36018. #endif
  36019. #ifdef __LITTLE_ENDIAN__
  36020. __ai poly64x1_t vreinterpret_p64_f16(float16x4_t __p0) {
  36021. poly64x1_t __ret;
  36022. __ret = (poly64x1_t)(__p0);
  36023. return __ret;
  36024. }
  36025. #else
  36026. __ai poly64x1_t vreinterpret_p64_f16(float16x4_t __p0) {
  36027. poly64x1_t __ret;
  36028. __ret = (poly64x1_t)(__p0);
  36029. return __ret;
  36030. }
  36031. #endif
  36032. #ifdef __LITTLE_ENDIAN__
  36033. __ai poly64x1_t vreinterpret_p64_s32(int32x2_t __p0) {
  36034. poly64x1_t __ret;
  36035. __ret = (poly64x1_t)(__p0);
  36036. return __ret;
  36037. }
  36038. #else
  36039. __ai poly64x1_t vreinterpret_p64_s32(int32x2_t __p0) {
  36040. poly64x1_t __ret;
  36041. __ret = (poly64x1_t)(__p0);
  36042. return __ret;
  36043. }
  36044. #endif
  36045. #ifdef __LITTLE_ENDIAN__
  36046. __ai poly64x1_t vreinterpret_p64_s64(int64x1_t __p0) {
  36047. poly64x1_t __ret;
  36048. __ret = (poly64x1_t)(__p0);
  36049. return __ret;
  36050. }
  36051. #else
  36052. __ai poly64x1_t vreinterpret_p64_s64(int64x1_t __p0) {
  36053. poly64x1_t __ret;
  36054. __ret = (poly64x1_t)(__p0);
  36055. return __ret;
  36056. }
  36057. #endif
  36058. #ifdef __LITTLE_ENDIAN__
  36059. __ai poly64x1_t vreinterpret_p64_s16(int16x4_t __p0) {
  36060. poly64x1_t __ret;
  36061. __ret = (poly64x1_t)(__p0);
  36062. return __ret;
  36063. }
  36064. #else
  36065. __ai poly64x1_t vreinterpret_p64_s16(int16x4_t __p0) {
  36066. poly64x1_t __ret;
  36067. __ret = (poly64x1_t)(__p0);
  36068. return __ret;
  36069. }
  36070. #endif
  36071. #ifdef __LITTLE_ENDIAN__
  36072. __ai poly16x4_t vreinterpret_p16_p8(poly8x8_t __p0) {
  36073. poly16x4_t __ret;
  36074. __ret = (poly16x4_t)(__p0);
  36075. return __ret;
  36076. }
  36077. #else
  36078. __ai poly16x4_t vreinterpret_p16_p8(poly8x8_t __p0) {
  36079. poly16x4_t __ret;
  36080. __ret = (poly16x4_t)(__p0);
  36081. return __ret;
  36082. }
  36083. #endif
  36084. #ifdef __LITTLE_ENDIAN__
  36085. __ai poly16x4_t vreinterpret_p16_p64(poly64x1_t __p0) {
  36086. poly16x4_t __ret;
  36087. __ret = (poly16x4_t)(__p0);
  36088. return __ret;
  36089. }
  36090. #else
  36091. __ai poly16x4_t vreinterpret_p16_p64(poly64x1_t __p0) {
  36092. poly16x4_t __ret;
  36093. __ret = (poly16x4_t)(__p0);
  36094. return __ret;
  36095. }
  36096. #endif
  36097. #ifdef __LITTLE_ENDIAN__
  36098. __ai poly16x4_t vreinterpret_p16_u8(uint8x8_t __p0) {
  36099. poly16x4_t __ret;
  36100. __ret = (poly16x4_t)(__p0);
  36101. return __ret;
  36102. }
  36103. #else
  36104. __ai poly16x4_t vreinterpret_p16_u8(uint8x8_t __p0) {
  36105. poly16x4_t __ret;
  36106. __ret = (poly16x4_t)(__p0);
  36107. return __ret;
  36108. }
  36109. #endif
  36110. #ifdef __LITTLE_ENDIAN__
  36111. __ai poly16x4_t vreinterpret_p16_u32(uint32x2_t __p0) {
  36112. poly16x4_t __ret;
  36113. __ret = (poly16x4_t)(__p0);
  36114. return __ret;
  36115. }
  36116. #else
  36117. __ai poly16x4_t vreinterpret_p16_u32(uint32x2_t __p0) {
  36118. poly16x4_t __ret;
  36119. __ret = (poly16x4_t)(__p0);
  36120. return __ret;
  36121. }
  36122. #endif
  36123. #ifdef __LITTLE_ENDIAN__
  36124. __ai poly16x4_t vreinterpret_p16_u64(uint64x1_t __p0) {
  36125. poly16x4_t __ret;
  36126. __ret = (poly16x4_t)(__p0);
  36127. return __ret;
  36128. }
  36129. #else
  36130. __ai poly16x4_t vreinterpret_p16_u64(uint64x1_t __p0) {
  36131. poly16x4_t __ret;
  36132. __ret = (poly16x4_t)(__p0);
  36133. return __ret;
  36134. }
  36135. #endif
  36136. #ifdef __LITTLE_ENDIAN__
  36137. __ai poly16x4_t vreinterpret_p16_u16(uint16x4_t __p0) {
  36138. poly16x4_t __ret;
  36139. __ret = (poly16x4_t)(__p0);
  36140. return __ret;
  36141. }
  36142. #else
  36143. __ai poly16x4_t vreinterpret_p16_u16(uint16x4_t __p0) {
  36144. poly16x4_t __ret;
  36145. __ret = (poly16x4_t)(__p0);
  36146. return __ret;
  36147. }
  36148. #endif
  36149. #ifdef __LITTLE_ENDIAN__
  36150. __ai poly16x4_t vreinterpret_p16_s8(int8x8_t __p0) {
  36151. poly16x4_t __ret;
  36152. __ret = (poly16x4_t)(__p0);
  36153. return __ret;
  36154. }
  36155. #else
  36156. __ai poly16x4_t vreinterpret_p16_s8(int8x8_t __p0) {
  36157. poly16x4_t __ret;
  36158. __ret = (poly16x4_t)(__p0);
  36159. return __ret;
  36160. }
  36161. #endif
  36162. #ifdef __LITTLE_ENDIAN__
  36163. __ai poly16x4_t vreinterpret_p16_f64(float64x1_t __p0) {
  36164. poly16x4_t __ret;
  36165. __ret = (poly16x4_t)(__p0);
  36166. return __ret;
  36167. }
  36168. #else
  36169. __ai poly16x4_t vreinterpret_p16_f64(float64x1_t __p0) {
  36170. poly16x4_t __ret;
  36171. __ret = (poly16x4_t)(__p0);
  36172. return __ret;
  36173. }
  36174. #endif
  36175. #ifdef __LITTLE_ENDIAN__
  36176. __ai poly16x4_t vreinterpret_p16_f32(float32x2_t __p0) {
  36177. poly16x4_t __ret;
  36178. __ret = (poly16x4_t)(__p0);
  36179. return __ret;
  36180. }
  36181. #else
  36182. __ai poly16x4_t vreinterpret_p16_f32(float32x2_t __p0) {
  36183. poly16x4_t __ret;
  36184. __ret = (poly16x4_t)(__p0);
  36185. return __ret;
  36186. }
  36187. #endif
  36188. #ifdef __LITTLE_ENDIAN__
  36189. __ai poly16x4_t vreinterpret_p16_f16(float16x4_t __p0) {
  36190. poly16x4_t __ret;
  36191. __ret = (poly16x4_t)(__p0);
  36192. return __ret;
  36193. }
  36194. #else
  36195. __ai poly16x4_t vreinterpret_p16_f16(float16x4_t __p0) {
  36196. poly16x4_t __ret;
  36197. __ret = (poly16x4_t)(__p0);
  36198. return __ret;
  36199. }
  36200. #endif
  36201. #ifdef __LITTLE_ENDIAN__
  36202. __ai poly16x4_t vreinterpret_p16_s32(int32x2_t __p0) {
  36203. poly16x4_t __ret;
  36204. __ret = (poly16x4_t)(__p0);
  36205. return __ret;
  36206. }
  36207. #else
  36208. __ai poly16x4_t vreinterpret_p16_s32(int32x2_t __p0) {
  36209. poly16x4_t __ret;
  36210. __ret = (poly16x4_t)(__p0);
  36211. return __ret;
  36212. }
  36213. #endif
  36214. #ifdef __LITTLE_ENDIAN__
  36215. __ai poly16x4_t vreinterpret_p16_s64(int64x1_t __p0) {
  36216. poly16x4_t __ret;
  36217. __ret = (poly16x4_t)(__p0);
  36218. return __ret;
  36219. }
  36220. #else
  36221. __ai poly16x4_t vreinterpret_p16_s64(int64x1_t __p0) {
  36222. poly16x4_t __ret;
  36223. __ret = (poly16x4_t)(__p0);
  36224. return __ret;
  36225. }
  36226. #endif
  36227. #ifdef __LITTLE_ENDIAN__
  36228. __ai poly16x4_t vreinterpret_p16_s16(int16x4_t __p0) {
  36229. poly16x4_t __ret;
  36230. __ret = (poly16x4_t)(__p0);
  36231. return __ret;
  36232. }
  36233. #else
  36234. __ai poly16x4_t vreinterpret_p16_s16(int16x4_t __p0) {
  36235. poly16x4_t __ret;
  36236. __ret = (poly16x4_t)(__p0);
  36237. return __ret;
  36238. }
  36239. #endif
  36240. #ifdef __LITTLE_ENDIAN__
  36241. __ai poly8x16_t vreinterpretq_p8_p128(poly128_t __p0) {
  36242. poly8x16_t __ret;
  36243. __ret = (poly8x16_t)(__p0);
  36244. return __ret;
  36245. }
  36246. #else
  36247. __ai poly8x16_t vreinterpretq_p8_p128(poly128_t __p0) {
  36248. poly8x16_t __ret;
  36249. __ret = (poly8x16_t)(__p0);
  36250. return __ret;
  36251. }
  36252. #endif
  36253. #ifdef __LITTLE_ENDIAN__
  36254. __ai poly8x16_t vreinterpretq_p8_p64(poly64x2_t __p0) {
  36255. poly8x16_t __ret;
  36256. __ret = (poly8x16_t)(__p0);
  36257. return __ret;
  36258. }
  36259. #else
  36260. __ai poly8x16_t vreinterpretq_p8_p64(poly64x2_t __p0) {
  36261. poly8x16_t __ret;
  36262. __ret = (poly8x16_t)(__p0);
  36263. return __ret;
  36264. }
  36265. #endif
  36266. #ifdef __LITTLE_ENDIAN__
  36267. __ai poly8x16_t vreinterpretq_p8_p16(poly16x8_t __p0) {
  36268. poly8x16_t __ret;
  36269. __ret = (poly8x16_t)(__p0);
  36270. return __ret;
  36271. }
  36272. #else
  36273. __ai poly8x16_t vreinterpretq_p8_p16(poly16x8_t __p0) {
  36274. poly8x16_t __ret;
  36275. __ret = (poly8x16_t)(__p0);
  36276. return __ret;
  36277. }
  36278. #endif
  36279. #ifdef __LITTLE_ENDIAN__
  36280. __ai poly8x16_t vreinterpretq_p8_u8(uint8x16_t __p0) {
  36281. poly8x16_t __ret;
  36282. __ret = (poly8x16_t)(__p0);
  36283. return __ret;
  36284. }
  36285. #else
  36286. __ai poly8x16_t vreinterpretq_p8_u8(uint8x16_t __p0) {
  36287. poly8x16_t __ret;
  36288. __ret = (poly8x16_t)(__p0);
  36289. return __ret;
  36290. }
  36291. #endif
  36292. #ifdef __LITTLE_ENDIAN__
  36293. __ai poly8x16_t vreinterpretq_p8_u32(uint32x4_t __p0) {
  36294. poly8x16_t __ret;
  36295. __ret = (poly8x16_t)(__p0);
  36296. return __ret;
  36297. }
  36298. #else
  36299. __ai poly8x16_t vreinterpretq_p8_u32(uint32x4_t __p0) {
  36300. poly8x16_t __ret;
  36301. __ret = (poly8x16_t)(__p0);
  36302. return __ret;
  36303. }
  36304. #endif
  36305. #ifdef __LITTLE_ENDIAN__
  36306. __ai poly8x16_t vreinterpretq_p8_u64(uint64x2_t __p0) {
  36307. poly8x16_t __ret;
  36308. __ret = (poly8x16_t)(__p0);
  36309. return __ret;
  36310. }
  36311. #else
  36312. __ai poly8x16_t vreinterpretq_p8_u64(uint64x2_t __p0) {
  36313. poly8x16_t __ret;
  36314. __ret = (poly8x16_t)(__p0);
  36315. return __ret;
  36316. }
  36317. #endif
  36318. #ifdef __LITTLE_ENDIAN__
  36319. __ai poly8x16_t vreinterpretq_p8_u16(uint16x8_t __p0) {
  36320. poly8x16_t __ret;
  36321. __ret = (poly8x16_t)(__p0);
  36322. return __ret;
  36323. }
  36324. #else
  36325. __ai poly8x16_t vreinterpretq_p8_u16(uint16x8_t __p0) {
  36326. poly8x16_t __ret;
  36327. __ret = (poly8x16_t)(__p0);
  36328. return __ret;
  36329. }
  36330. #endif
  36331. #ifdef __LITTLE_ENDIAN__
  36332. __ai poly8x16_t vreinterpretq_p8_s8(int8x16_t __p0) {
  36333. poly8x16_t __ret;
  36334. __ret = (poly8x16_t)(__p0);
  36335. return __ret;
  36336. }
  36337. #else
  36338. __ai poly8x16_t vreinterpretq_p8_s8(int8x16_t __p0) {
  36339. poly8x16_t __ret;
  36340. __ret = (poly8x16_t)(__p0);
  36341. return __ret;
  36342. }
  36343. #endif
  36344. #ifdef __LITTLE_ENDIAN__
  36345. __ai poly8x16_t vreinterpretq_p8_f64(float64x2_t __p0) {
  36346. poly8x16_t __ret;
  36347. __ret = (poly8x16_t)(__p0);
  36348. return __ret;
  36349. }
  36350. #else
  36351. __ai poly8x16_t vreinterpretq_p8_f64(float64x2_t __p0) {
  36352. poly8x16_t __ret;
  36353. __ret = (poly8x16_t)(__p0);
  36354. return __ret;
  36355. }
  36356. #endif
  36357. #ifdef __LITTLE_ENDIAN__
  36358. __ai poly8x16_t vreinterpretq_p8_f32(float32x4_t __p0) {
  36359. poly8x16_t __ret;
  36360. __ret = (poly8x16_t)(__p0);
  36361. return __ret;
  36362. }
  36363. #else
  36364. __ai poly8x16_t vreinterpretq_p8_f32(float32x4_t __p0) {
  36365. poly8x16_t __ret;
  36366. __ret = (poly8x16_t)(__p0);
  36367. return __ret;
  36368. }
  36369. #endif
  36370. #ifdef __LITTLE_ENDIAN__
  36371. __ai poly8x16_t vreinterpretq_p8_f16(float16x8_t __p0) {
  36372. poly8x16_t __ret;
  36373. __ret = (poly8x16_t)(__p0);
  36374. return __ret;
  36375. }
  36376. #else
  36377. __ai poly8x16_t vreinterpretq_p8_f16(float16x8_t __p0) {
  36378. poly8x16_t __ret;
  36379. __ret = (poly8x16_t)(__p0);
  36380. return __ret;
  36381. }
  36382. #endif
  36383. #ifdef __LITTLE_ENDIAN__
  36384. __ai poly8x16_t vreinterpretq_p8_s32(int32x4_t __p0) {
  36385. poly8x16_t __ret;
  36386. __ret = (poly8x16_t)(__p0);
  36387. return __ret;
  36388. }
  36389. #else
  36390. __ai poly8x16_t vreinterpretq_p8_s32(int32x4_t __p0) {
  36391. poly8x16_t __ret;
  36392. __ret = (poly8x16_t)(__p0);
  36393. return __ret;
  36394. }
  36395. #endif
  36396. #ifdef __LITTLE_ENDIAN__
  36397. __ai poly8x16_t vreinterpretq_p8_s64(int64x2_t __p0) {
  36398. poly8x16_t __ret;
  36399. __ret = (poly8x16_t)(__p0);
  36400. return __ret;
  36401. }
  36402. #else
  36403. __ai poly8x16_t vreinterpretq_p8_s64(int64x2_t __p0) {
  36404. poly8x16_t __ret;
  36405. __ret = (poly8x16_t)(__p0);
  36406. return __ret;
  36407. }
  36408. #endif
  36409. #ifdef __LITTLE_ENDIAN__
  36410. __ai poly8x16_t vreinterpretq_p8_s16(int16x8_t __p0) {
  36411. poly8x16_t __ret;
  36412. __ret = (poly8x16_t)(__p0);
  36413. return __ret;
  36414. }
  36415. #else
  36416. __ai poly8x16_t vreinterpretq_p8_s16(int16x8_t __p0) {
  36417. poly8x16_t __ret;
  36418. __ret = (poly8x16_t)(__p0);
  36419. return __ret;
  36420. }
  36421. #endif
  36422. #ifdef __LITTLE_ENDIAN__
  36423. __ai poly128_t vreinterpretq_p128_p8(poly8x16_t __p0) {
  36424. poly128_t __ret;
  36425. __ret = (poly128_t)(__p0);
  36426. return __ret;
  36427. }
  36428. #else
  36429. __ai poly128_t vreinterpretq_p128_p8(poly8x16_t __p0) {
  36430. poly128_t __ret;
  36431. __ret = (poly128_t)(__p0);
  36432. return __ret;
  36433. }
  36434. #endif
  36435. #ifdef __LITTLE_ENDIAN__
  36436. __ai poly128_t vreinterpretq_p128_p64(poly64x2_t __p0) {
  36437. poly128_t __ret;
  36438. __ret = (poly128_t)(__p0);
  36439. return __ret;
  36440. }
  36441. #else
  36442. __ai poly128_t vreinterpretq_p128_p64(poly64x2_t __p0) {
  36443. poly128_t __ret;
  36444. __ret = (poly128_t)(__p0);
  36445. return __ret;
  36446. }
  36447. #endif
  36448. #ifdef __LITTLE_ENDIAN__
  36449. __ai poly128_t vreinterpretq_p128_p16(poly16x8_t __p0) {
  36450. poly128_t __ret;
  36451. __ret = (poly128_t)(__p0);
  36452. return __ret;
  36453. }
  36454. #else
  36455. __ai poly128_t vreinterpretq_p128_p16(poly16x8_t __p0) {
  36456. poly128_t __ret;
  36457. __ret = (poly128_t)(__p0);
  36458. return __ret;
  36459. }
  36460. #endif
  36461. #ifdef __LITTLE_ENDIAN__
  36462. __ai poly128_t vreinterpretq_p128_u8(uint8x16_t __p0) {
  36463. poly128_t __ret;
  36464. __ret = (poly128_t)(__p0);
  36465. return __ret;
  36466. }
  36467. #else
  36468. __ai poly128_t vreinterpretq_p128_u8(uint8x16_t __p0) {
  36469. poly128_t __ret;
  36470. __ret = (poly128_t)(__p0);
  36471. return __ret;
  36472. }
  36473. #endif
  36474. #ifdef __LITTLE_ENDIAN__
  36475. __ai poly128_t vreinterpretq_p128_u32(uint32x4_t __p0) {
  36476. poly128_t __ret;
  36477. __ret = (poly128_t)(__p0);
  36478. return __ret;
  36479. }
  36480. #else
  36481. __ai poly128_t vreinterpretq_p128_u32(uint32x4_t __p0) {
  36482. poly128_t __ret;
  36483. __ret = (poly128_t)(__p0);
  36484. return __ret;
  36485. }
  36486. #endif
  36487. #ifdef __LITTLE_ENDIAN__
  36488. __ai poly128_t vreinterpretq_p128_u64(uint64x2_t __p0) {
  36489. poly128_t __ret;
  36490. __ret = (poly128_t)(__p0);
  36491. return __ret;
  36492. }
  36493. #else
  36494. __ai poly128_t vreinterpretq_p128_u64(uint64x2_t __p0) {
  36495. poly128_t __ret;
  36496. __ret = (poly128_t)(__p0);
  36497. return __ret;
  36498. }
  36499. #endif
  36500. #ifdef __LITTLE_ENDIAN__
  36501. __ai poly128_t vreinterpretq_p128_u16(uint16x8_t __p0) {
  36502. poly128_t __ret;
  36503. __ret = (poly128_t)(__p0);
  36504. return __ret;
  36505. }
  36506. #else
  36507. __ai poly128_t vreinterpretq_p128_u16(uint16x8_t __p0) {
  36508. poly128_t __ret;
  36509. __ret = (poly128_t)(__p0);
  36510. return __ret;
  36511. }
  36512. #endif
  36513. #ifdef __LITTLE_ENDIAN__
  36514. __ai poly128_t vreinterpretq_p128_s8(int8x16_t __p0) {
  36515. poly128_t __ret;
  36516. __ret = (poly128_t)(__p0);
  36517. return __ret;
  36518. }
  36519. #else
  36520. __ai poly128_t vreinterpretq_p128_s8(int8x16_t __p0) {
  36521. poly128_t __ret;
  36522. __ret = (poly128_t)(__p0);
  36523. return __ret;
  36524. }
  36525. #endif
  36526. #ifdef __LITTLE_ENDIAN__
  36527. __ai poly128_t vreinterpretq_p128_f64(float64x2_t __p0) {
  36528. poly128_t __ret;
  36529. __ret = (poly128_t)(__p0);
  36530. return __ret;
  36531. }
  36532. #else
  36533. __ai poly128_t vreinterpretq_p128_f64(float64x2_t __p0) {
  36534. poly128_t __ret;
  36535. __ret = (poly128_t)(__p0);
  36536. return __ret;
  36537. }
  36538. #endif
  36539. #ifdef __LITTLE_ENDIAN__
  36540. __ai poly128_t vreinterpretq_p128_f32(float32x4_t __p0) {
  36541. poly128_t __ret;
  36542. __ret = (poly128_t)(__p0);
  36543. return __ret;
  36544. }
  36545. #else
  36546. __ai poly128_t vreinterpretq_p128_f32(float32x4_t __p0) {
  36547. poly128_t __ret;
  36548. __ret = (poly128_t)(__p0);
  36549. return __ret;
  36550. }
  36551. #endif
  36552. #ifdef __LITTLE_ENDIAN__
  36553. __ai poly128_t vreinterpretq_p128_f16(float16x8_t __p0) {
  36554. poly128_t __ret;
  36555. __ret = (poly128_t)(__p0);
  36556. return __ret;
  36557. }
  36558. #else
  36559. __ai poly128_t vreinterpretq_p128_f16(float16x8_t __p0) {
  36560. poly128_t __ret;
  36561. __ret = (poly128_t)(__p0);
  36562. return __ret;
  36563. }
  36564. #endif
  36565. #ifdef __LITTLE_ENDIAN__
  36566. __ai poly128_t vreinterpretq_p128_s32(int32x4_t __p0) {
  36567. poly128_t __ret;
  36568. __ret = (poly128_t)(__p0);
  36569. return __ret;
  36570. }
  36571. #else
  36572. __ai poly128_t vreinterpretq_p128_s32(int32x4_t __p0) {
  36573. poly128_t __ret;
  36574. __ret = (poly128_t)(__p0);
  36575. return __ret;
  36576. }
  36577. #endif
  36578. #ifdef __LITTLE_ENDIAN__
  36579. __ai poly128_t vreinterpretq_p128_s64(int64x2_t __p0) {
  36580. poly128_t __ret;
  36581. __ret = (poly128_t)(__p0);
  36582. return __ret;
  36583. }
  36584. #else
  36585. __ai poly128_t vreinterpretq_p128_s64(int64x2_t __p0) {
  36586. poly128_t __ret;
  36587. __ret = (poly128_t)(__p0);
  36588. return __ret;
  36589. }
  36590. #endif
  36591. #ifdef __LITTLE_ENDIAN__
  36592. __ai poly128_t vreinterpretq_p128_s16(int16x8_t __p0) {
  36593. poly128_t __ret;
  36594. __ret = (poly128_t)(__p0);
  36595. return __ret;
  36596. }
  36597. #else
  36598. __ai poly128_t vreinterpretq_p128_s16(int16x8_t __p0) {
  36599. poly128_t __ret;
  36600. __ret = (poly128_t)(__p0);
  36601. return __ret;
  36602. }
  36603. #endif
  36604. #ifdef __LITTLE_ENDIAN__
  36605. __ai poly64x2_t vreinterpretq_p64_p8(poly8x16_t __p0) {
  36606. poly64x2_t __ret;
  36607. __ret = (poly64x2_t)(__p0);
  36608. return __ret;
  36609. }
  36610. #else
  36611. __ai poly64x2_t vreinterpretq_p64_p8(poly8x16_t __p0) {
  36612. poly64x2_t __ret;
  36613. __ret = (poly64x2_t)(__p0);
  36614. return __ret;
  36615. }
  36616. #endif
  36617. #ifdef __LITTLE_ENDIAN__
  36618. __ai poly64x2_t vreinterpretq_p64_p128(poly128_t __p0) {
  36619. poly64x2_t __ret;
  36620. __ret = (poly64x2_t)(__p0);
  36621. return __ret;
  36622. }
  36623. #else
  36624. __ai poly64x2_t vreinterpretq_p64_p128(poly128_t __p0) {
  36625. poly64x2_t __ret;
  36626. __ret = (poly64x2_t)(__p0);
  36627. return __ret;
  36628. }
  36629. #endif
  36630. #ifdef __LITTLE_ENDIAN__
  36631. __ai poly64x2_t vreinterpretq_p64_p16(poly16x8_t __p0) {
  36632. poly64x2_t __ret;
  36633. __ret = (poly64x2_t)(__p0);
  36634. return __ret;
  36635. }
  36636. #else
  36637. __ai poly64x2_t vreinterpretq_p64_p16(poly16x8_t __p0) {
  36638. poly64x2_t __ret;
  36639. __ret = (poly64x2_t)(__p0);
  36640. return __ret;
  36641. }
  36642. #endif
  36643. #ifdef __LITTLE_ENDIAN__
  36644. __ai poly64x2_t vreinterpretq_p64_u8(uint8x16_t __p0) {
  36645. poly64x2_t __ret;
  36646. __ret = (poly64x2_t)(__p0);
  36647. return __ret;
  36648. }
  36649. #else
  36650. __ai poly64x2_t vreinterpretq_p64_u8(uint8x16_t __p0) {
  36651. poly64x2_t __ret;
  36652. __ret = (poly64x2_t)(__p0);
  36653. return __ret;
  36654. }
  36655. #endif
  36656. #ifdef __LITTLE_ENDIAN__
  36657. __ai poly64x2_t vreinterpretq_p64_u32(uint32x4_t __p0) {
  36658. poly64x2_t __ret;
  36659. __ret = (poly64x2_t)(__p0);
  36660. return __ret;
  36661. }
  36662. #else
  36663. __ai poly64x2_t vreinterpretq_p64_u32(uint32x4_t __p0) {
  36664. poly64x2_t __ret;
  36665. __ret = (poly64x2_t)(__p0);
  36666. return __ret;
  36667. }
  36668. #endif
  36669. #ifdef __LITTLE_ENDIAN__
  36670. __ai poly64x2_t vreinterpretq_p64_u64(uint64x2_t __p0) {
  36671. poly64x2_t __ret;
  36672. __ret = (poly64x2_t)(__p0);
  36673. return __ret;
  36674. }
  36675. #else
  36676. __ai poly64x2_t vreinterpretq_p64_u64(uint64x2_t __p0) {
  36677. poly64x2_t __ret;
  36678. __ret = (poly64x2_t)(__p0);
  36679. return __ret;
  36680. }
  36681. #endif
  36682. #ifdef __LITTLE_ENDIAN__
  36683. __ai poly64x2_t vreinterpretq_p64_u16(uint16x8_t __p0) {
  36684. poly64x2_t __ret;
  36685. __ret = (poly64x2_t)(__p0);
  36686. return __ret;
  36687. }
  36688. #else
  36689. __ai poly64x2_t vreinterpretq_p64_u16(uint16x8_t __p0) {
  36690. poly64x2_t __ret;
  36691. __ret = (poly64x2_t)(__p0);
  36692. return __ret;
  36693. }
  36694. #endif
  36695. #ifdef __LITTLE_ENDIAN__
  36696. __ai poly64x2_t vreinterpretq_p64_s8(int8x16_t __p0) {
  36697. poly64x2_t __ret;
  36698. __ret = (poly64x2_t)(__p0);
  36699. return __ret;
  36700. }
  36701. #else
  36702. __ai poly64x2_t vreinterpretq_p64_s8(int8x16_t __p0) {
  36703. poly64x2_t __ret;
  36704. __ret = (poly64x2_t)(__p0);
  36705. return __ret;
  36706. }
  36707. #endif
  36708. #ifdef __LITTLE_ENDIAN__
  36709. __ai poly64x2_t vreinterpretq_p64_f64(float64x2_t __p0) {
  36710. poly64x2_t __ret;
  36711. __ret = (poly64x2_t)(__p0);
  36712. return __ret;
  36713. }
  36714. #else
  36715. __ai poly64x2_t vreinterpretq_p64_f64(float64x2_t __p0) {
  36716. poly64x2_t __ret;
  36717. __ret = (poly64x2_t)(__p0);
  36718. return __ret;
  36719. }
  36720. #endif
  36721. #ifdef __LITTLE_ENDIAN__
  36722. __ai poly64x2_t vreinterpretq_p64_f32(float32x4_t __p0) {
  36723. poly64x2_t __ret;
  36724. __ret = (poly64x2_t)(__p0);
  36725. return __ret;
  36726. }
  36727. #else
  36728. __ai poly64x2_t vreinterpretq_p64_f32(float32x4_t __p0) {
  36729. poly64x2_t __ret;
  36730. __ret = (poly64x2_t)(__p0);
  36731. return __ret;
  36732. }
  36733. #endif
  36734. #ifdef __LITTLE_ENDIAN__
  36735. __ai poly64x2_t vreinterpretq_p64_f16(float16x8_t __p0) {
  36736. poly64x2_t __ret;
  36737. __ret = (poly64x2_t)(__p0);
  36738. return __ret;
  36739. }
  36740. #else
  36741. __ai poly64x2_t vreinterpretq_p64_f16(float16x8_t __p0) {
  36742. poly64x2_t __ret;
  36743. __ret = (poly64x2_t)(__p0);
  36744. return __ret;
  36745. }
  36746. #endif
  36747. #ifdef __LITTLE_ENDIAN__
  36748. __ai poly64x2_t vreinterpretq_p64_s32(int32x4_t __p0) {
  36749. poly64x2_t __ret;
  36750. __ret = (poly64x2_t)(__p0);
  36751. return __ret;
  36752. }
  36753. #else
  36754. __ai poly64x2_t vreinterpretq_p64_s32(int32x4_t __p0) {
  36755. poly64x2_t __ret;
  36756. __ret = (poly64x2_t)(__p0);
  36757. return __ret;
  36758. }
  36759. #endif
  36760. #ifdef __LITTLE_ENDIAN__
  36761. __ai poly64x2_t vreinterpretq_p64_s64(int64x2_t __p0) {
  36762. poly64x2_t __ret;
  36763. __ret = (poly64x2_t)(__p0);
  36764. return __ret;
  36765. }
  36766. #else
  36767. __ai poly64x2_t vreinterpretq_p64_s64(int64x2_t __p0) {
  36768. poly64x2_t __ret;
  36769. __ret = (poly64x2_t)(__p0);
  36770. return __ret;
  36771. }
  36772. #endif
  36773. #ifdef __LITTLE_ENDIAN__
  36774. __ai poly64x2_t vreinterpretq_p64_s16(int16x8_t __p0) {
  36775. poly64x2_t __ret;
  36776. __ret = (poly64x2_t)(__p0);
  36777. return __ret;
  36778. }
  36779. #else
  36780. __ai poly64x2_t vreinterpretq_p64_s16(int16x8_t __p0) {
  36781. poly64x2_t __ret;
  36782. __ret = (poly64x2_t)(__p0);
  36783. return __ret;
  36784. }
  36785. #endif
  36786. #ifdef __LITTLE_ENDIAN__
  36787. __ai poly16x8_t vreinterpretq_p16_p8(poly8x16_t __p0) {
  36788. poly16x8_t __ret;
  36789. __ret = (poly16x8_t)(__p0);
  36790. return __ret;
  36791. }
  36792. #else
  36793. __ai poly16x8_t vreinterpretq_p16_p8(poly8x16_t __p0) {
  36794. poly16x8_t __ret;
  36795. __ret = (poly16x8_t)(__p0);
  36796. return __ret;
  36797. }
  36798. #endif
  36799. #ifdef __LITTLE_ENDIAN__
  36800. __ai poly16x8_t vreinterpretq_p16_p128(poly128_t __p0) {
  36801. poly16x8_t __ret;
  36802. __ret = (poly16x8_t)(__p0);
  36803. return __ret;
  36804. }
  36805. #else
  36806. __ai poly16x8_t vreinterpretq_p16_p128(poly128_t __p0) {
  36807. poly16x8_t __ret;
  36808. __ret = (poly16x8_t)(__p0);
  36809. return __ret;
  36810. }
  36811. #endif
  36812. #ifdef __LITTLE_ENDIAN__
  36813. __ai poly16x8_t vreinterpretq_p16_p64(poly64x2_t __p0) {
  36814. poly16x8_t __ret;
  36815. __ret = (poly16x8_t)(__p0);
  36816. return __ret;
  36817. }
  36818. #else
  36819. __ai poly16x8_t vreinterpretq_p16_p64(poly64x2_t __p0) {
  36820. poly16x8_t __ret;
  36821. __ret = (poly16x8_t)(__p0);
  36822. return __ret;
  36823. }
  36824. #endif
  36825. #ifdef __LITTLE_ENDIAN__
  36826. __ai poly16x8_t vreinterpretq_p16_u8(uint8x16_t __p0) {
  36827. poly16x8_t __ret;
  36828. __ret = (poly16x8_t)(__p0);
  36829. return __ret;
  36830. }
  36831. #else
  36832. __ai poly16x8_t vreinterpretq_p16_u8(uint8x16_t __p0) {
  36833. poly16x8_t __ret;
  36834. __ret = (poly16x8_t)(__p0);
  36835. return __ret;
  36836. }
  36837. #endif
  36838. #ifdef __LITTLE_ENDIAN__
  36839. __ai poly16x8_t vreinterpretq_p16_u32(uint32x4_t __p0) {
  36840. poly16x8_t __ret;
  36841. __ret = (poly16x8_t)(__p0);
  36842. return __ret;
  36843. }
  36844. #else
  36845. __ai poly16x8_t vreinterpretq_p16_u32(uint32x4_t __p0) {
  36846. poly16x8_t __ret;
  36847. __ret = (poly16x8_t)(__p0);
  36848. return __ret;
  36849. }
  36850. #endif
  36851. #ifdef __LITTLE_ENDIAN__
  36852. __ai poly16x8_t vreinterpretq_p16_u64(uint64x2_t __p0) {
  36853. poly16x8_t __ret;
  36854. __ret = (poly16x8_t)(__p0);
  36855. return __ret;
  36856. }
  36857. #else
  36858. __ai poly16x8_t vreinterpretq_p16_u64(uint64x2_t __p0) {
  36859. poly16x8_t __ret;
  36860. __ret = (poly16x8_t)(__p0);
  36861. return __ret;
  36862. }
  36863. #endif
  36864. #ifdef __LITTLE_ENDIAN__
  36865. __ai poly16x8_t vreinterpretq_p16_u16(uint16x8_t __p0) {
  36866. poly16x8_t __ret;
  36867. __ret = (poly16x8_t)(__p0);
  36868. return __ret;
  36869. }
  36870. #else
  36871. __ai poly16x8_t vreinterpretq_p16_u16(uint16x8_t __p0) {
  36872. poly16x8_t __ret;
  36873. __ret = (poly16x8_t)(__p0);
  36874. return __ret;
  36875. }
  36876. #endif
  36877. #ifdef __LITTLE_ENDIAN__
  36878. __ai poly16x8_t vreinterpretq_p16_s8(int8x16_t __p0) {
  36879. poly16x8_t __ret;
  36880. __ret = (poly16x8_t)(__p0);
  36881. return __ret;
  36882. }
  36883. #else
  36884. __ai poly16x8_t vreinterpretq_p16_s8(int8x16_t __p0) {
  36885. poly16x8_t __ret;
  36886. __ret = (poly16x8_t)(__p0);
  36887. return __ret;
  36888. }
  36889. #endif
  36890. #ifdef __LITTLE_ENDIAN__
  36891. __ai poly16x8_t vreinterpretq_p16_f64(float64x2_t __p0) {
  36892. poly16x8_t __ret;
  36893. __ret = (poly16x8_t)(__p0);
  36894. return __ret;
  36895. }
  36896. #else
  36897. __ai poly16x8_t vreinterpretq_p16_f64(float64x2_t __p0) {
  36898. poly16x8_t __ret;
  36899. __ret = (poly16x8_t)(__p0);
  36900. return __ret;
  36901. }
  36902. #endif
  36903. #ifdef __LITTLE_ENDIAN__
  36904. __ai poly16x8_t vreinterpretq_p16_f32(float32x4_t __p0) {
  36905. poly16x8_t __ret;
  36906. __ret = (poly16x8_t)(__p0);
  36907. return __ret;
  36908. }
  36909. #else
  36910. __ai poly16x8_t vreinterpretq_p16_f32(float32x4_t __p0) {
  36911. poly16x8_t __ret;
  36912. __ret = (poly16x8_t)(__p0);
  36913. return __ret;
  36914. }
  36915. #endif
  36916. #ifdef __LITTLE_ENDIAN__
  36917. __ai poly16x8_t vreinterpretq_p16_f16(float16x8_t __p0) {
  36918. poly16x8_t __ret;
  36919. __ret = (poly16x8_t)(__p0);
  36920. return __ret;
  36921. }
  36922. #else
  36923. __ai poly16x8_t vreinterpretq_p16_f16(float16x8_t __p0) {
  36924. poly16x8_t __ret;
  36925. __ret = (poly16x8_t)(__p0);
  36926. return __ret;
  36927. }
  36928. #endif
  36929. #ifdef __LITTLE_ENDIAN__
  36930. __ai poly16x8_t vreinterpretq_p16_s32(int32x4_t __p0) {
  36931. poly16x8_t __ret;
  36932. __ret = (poly16x8_t)(__p0);
  36933. return __ret;
  36934. }
  36935. #else
  36936. __ai poly16x8_t vreinterpretq_p16_s32(int32x4_t __p0) {
  36937. poly16x8_t __ret;
  36938. __ret = (poly16x8_t)(__p0);
  36939. return __ret;
  36940. }
  36941. #endif
  36942. #ifdef __LITTLE_ENDIAN__
  36943. __ai poly16x8_t vreinterpretq_p16_s64(int64x2_t __p0) {
  36944. poly16x8_t __ret;
  36945. __ret = (poly16x8_t)(__p0);
  36946. return __ret;
  36947. }
  36948. #else
  36949. __ai poly16x8_t vreinterpretq_p16_s64(int64x2_t __p0) {
  36950. poly16x8_t __ret;
  36951. __ret = (poly16x8_t)(__p0);
  36952. return __ret;
  36953. }
  36954. #endif
  36955. #ifdef __LITTLE_ENDIAN__
  36956. __ai poly16x8_t vreinterpretq_p16_s16(int16x8_t __p0) {
  36957. poly16x8_t __ret;
  36958. __ret = (poly16x8_t)(__p0);
  36959. return __ret;
  36960. }
  36961. #else
  36962. __ai poly16x8_t vreinterpretq_p16_s16(int16x8_t __p0) {
  36963. poly16x8_t __ret;
  36964. __ret = (poly16x8_t)(__p0);
  36965. return __ret;
  36966. }
  36967. #endif
  36968. #ifdef __LITTLE_ENDIAN__
  36969. __ai uint8x16_t vreinterpretq_u8_p8(poly8x16_t __p0) {
  36970. uint8x16_t __ret;
  36971. __ret = (uint8x16_t)(__p0);
  36972. return __ret;
  36973. }
  36974. #else
  36975. __ai uint8x16_t vreinterpretq_u8_p8(poly8x16_t __p0) {
  36976. uint8x16_t __ret;
  36977. __ret = (uint8x16_t)(__p0);
  36978. return __ret;
  36979. }
  36980. #endif
  36981. #ifdef __LITTLE_ENDIAN__
  36982. __ai uint8x16_t vreinterpretq_u8_p128(poly128_t __p0) {
  36983. uint8x16_t __ret;
  36984. __ret = (uint8x16_t)(__p0);
  36985. return __ret;
  36986. }
  36987. #else
  36988. __ai uint8x16_t vreinterpretq_u8_p128(poly128_t __p0) {
  36989. uint8x16_t __ret;
  36990. __ret = (uint8x16_t)(__p0);
  36991. return __ret;
  36992. }
  36993. #endif
  36994. #ifdef __LITTLE_ENDIAN__
  36995. __ai uint8x16_t vreinterpretq_u8_p64(poly64x2_t __p0) {
  36996. uint8x16_t __ret;
  36997. __ret = (uint8x16_t)(__p0);
  36998. return __ret;
  36999. }
  37000. #else
  37001. __ai uint8x16_t vreinterpretq_u8_p64(poly64x2_t __p0) {
  37002. uint8x16_t __ret;
  37003. __ret = (uint8x16_t)(__p0);
  37004. return __ret;
  37005. }
  37006. #endif
  37007. #ifdef __LITTLE_ENDIAN__
  37008. __ai uint8x16_t vreinterpretq_u8_p16(poly16x8_t __p0) {
  37009. uint8x16_t __ret;
  37010. __ret = (uint8x16_t)(__p0);
  37011. return __ret;
  37012. }
  37013. #else
  37014. __ai uint8x16_t vreinterpretq_u8_p16(poly16x8_t __p0) {
  37015. uint8x16_t __ret;
  37016. __ret = (uint8x16_t)(__p0);
  37017. return __ret;
  37018. }
  37019. #endif
  37020. #ifdef __LITTLE_ENDIAN__
  37021. __ai uint8x16_t vreinterpretq_u8_u32(uint32x4_t __p0) {
  37022. uint8x16_t __ret;
  37023. __ret = (uint8x16_t)(__p0);
  37024. return __ret;
  37025. }
  37026. #else
  37027. __ai uint8x16_t vreinterpretq_u8_u32(uint32x4_t __p0) {
  37028. uint8x16_t __ret;
  37029. __ret = (uint8x16_t)(__p0);
  37030. return __ret;
  37031. }
  37032. #endif
  37033. #ifdef __LITTLE_ENDIAN__
  37034. __ai uint8x16_t vreinterpretq_u8_u64(uint64x2_t __p0) {
  37035. uint8x16_t __ret;
  37036. __ret = (uint8x16_t)(__p0);
  37037. return __ret;
  37038. }
  37039. #else
  37040. __ai uint8x16_t vreinterpretq_u8_u64(uint64x2_t __p0) {
  37041. uint8x16_t __ret;
  37042. __ret = (uint8x16_t)(__p0);
  37043. return __ret;
  37044. }
  37045. #endif
  37046. #ifdef __LITTLE_ENDIAN__
  37047. __ai uint8x16_t vreinterpretq_u8_u16(uint16x8_t __p0) {
  37048. uint8x16_t __ret;
  37049. __ret = (uint8x16_t)(__p0);
  37050. return __ret;
  37051. }
  37052. #else
  37053. __ai uint8x16_t vreinterpretq_u8_u16(uint16x8_t __p0) {
  37054. uint8x16_t __ret;
  37055. __ret = (uint8x16_t)(__p0);
  37056. return __ret;
  37057. }
  37058. #endif
  37059. #ifdef __LITTLE_ENDIAN__
  37060. __ai uint8x16_t vreinterpretq_u8_s8(int8x16_t __p0) {
  37061. uint8x16_t __ret;
  37062. __ret = (uint8x16_t)(__p0);
  37063. return __ret;
  37064. }
  37065. #else
  37066. __ai uint8x16_t vreinterpretq_u8_s8(int8x16_t __p0) {
  37067. uint8x16_t __ret;
  37068. __ret = (uint8x16_t)(__p0);
  37069. return __ret;
  37070. }
  37071. #endif
  37072. #ifdef __LITTLE_ENDIAN__
  37073. __ai uint8x16_t vreinterpretq_u8_f64(float64x2_t __p0) {
  37074. uint8x16_t __ret;
  37075. __ret = (uint8x16_t)(__p0);
  37076. return __ret;
  37077. }
  37078. #else
  37079. __ai uint8x16_t vreinterpretq_u8_f64(float64x2_t __p0) {
  37080. uint8x16_t __ret;
  37081. __ret = (uint8x16_t)(__p0);
  37082. return __ret;
  37083. }
  37084. #endif
  37085. #ifdef __LITTLE_ENDIAN__
  37086. __ai uint8x16_t vreinterpretq_u8_f32(float32x4_t __p0) {
  37087. uint8x16_t __ret;
  37088. __ret = (uint8x16_t)(__p0);
  37089. return __ret;
  37090. }
  37091. #else
  37092. __ai uint8x16_t vreinterpretq_u8_f32(float32x4_t __p0) {
  37093. uint8x16_t __ret;
  37094. __ret = (uint8x16_t)(__p0);
  37095. return __ret;
  37096. }
  37097. #endif
  37098. #ifdef __LITTLE_ENDIAN__
  37099. __ai uint8x16_t vreinterpretq_u8_f16(float16x8_t __p0) {
  37100. uint8x16_t __ret;
  37101. __ret = (uint8x16_t)(__p0);
  37102. return __ret;
  37103. }
  37104. #else
  37105. __ai uint8x16_t vreinterpretq_u8_f16(float16x8_t __p0) {
  37106. uint8x16_t __ret;
  37107. __ret = (uint8x16_t)(__p0);
  37108. return __ret;
  37109. }
  37110. #endif
  37111. #ifdef __LITTLE_ENDIAN__
  37112. __ai uint8x16_t vreinterpretq_u8_s32(int32x4_t __p0) {
  37113. uint8x16_t __ret;
  37114. __ret = (uint8x16_t)(__p0);
  37115. return __ret;
  37116. }
  37117. #else
  37118. __ai uint8x16_t vreinterpretq_u8_s32(int32x4_t __p0) {
  37119. uint8x16_t __ret;
  37120. __ret = (uint8x16_t)(__p0);
  37121. return __ret;
  37122. }
  37123. #endif
  37124. #ifdef __LITTLE_ENDIAN__
  37125. __ai uint8x16_t vreinterpretq_u8_s64(int64x2_t __p0) {
  37126. uint8x16_t __ret;
  37127. __ret = (uint8x16_t)(__p0);
  37128. return __ret;
  37129. }
  37130. #else
  37131. __ai uint8x16_t vreinterpretq_u8_s64(int64x2_t __p0) {
  37132. uint8x16_t __ret;
  37133. __ret = (uint8x16_t)(__p0);
  37134. return __ret;
  37135. }
  37136. #endif
  37137. #ifdef __LITTLE_ENDIAN__
  37138. __ai uint8x16_t vreinterpretq_u8_s16(int16x8_t __p0) {
  37139. uint8x16_t __ret;
  37140. __ret = (uint8x16_t)(__p0);
  37141. return __ret;
  37142. }
  37143. #else
  37144. __ai uint8x16_t vreinterpretq_u8_s16(int16x8_t __p0) {
  37145. uint8x16_t __ret;
  37146. __ret = (uint8x16_t)(__p0);
  37147. return __ret;
  37148. }
  37149. #endif
  37150. #ifdef __LITTLE_ENDIAN__
  37151. __ai uint32x4_t vreinterpretq_u32_p8(poly8x16_t __p0) {
  37152. uint32x4_t __ret;
  37153. __ret = (uint32x4_t)(__p0);
  37154. return __ret;
  37155. }
  37156. #else
  37157. __ai uint32x4_t vreinterpretq_u32_p8(poly8x16_t __p0) {
  37158. uint32x4_t __ret;
  37159. __ret = (uint32x4_t)(__p0);
  37160. return __ret;
  37161. }
  37162. #endif
  37163. #ifdef __LITTLE_ENDIAN__
  37164. __ai uint32x4_t vreinterpretq_u32_p128(poly128_t __p0) {
  37165. uint32x4_t __ret;
  37166. __ret = (uint32x4_t)(__p0);
  37167. return __ret;
  37168. }
  37169. #else
  37170. __ai uint32x4_t vreinterpretq_u32_p128(poly128_t __p0) {
  37171. uint32x4_t __ret;
  37172. __ret = (uint32x4_t)(__p0);
  37173. return __ret;
  37174. }
  37175. #endif
  37176. #ifdef __LITTLE_ENDIAN__
  37177. __ai uint32x4_t vreinterpretq_u32_p64(poly64x2_t __p0) {
  37178. uint32x4_t __ret;
  37179. __ret = (uint32x4_t)(__p0);
  37180. return __ret;
  37181. }
  37182. #else
  37183. __ai uint32x4_t vreinterpretq_u32_p64(poly64x2_t __p0) {
  37184. uint32x4_t __ret;
  37185. __ret = (uint32x4_t)(__p0);
  37186. return __ret;
  37187. }
  37188. #endif
  37189. #ifdef __LITTLE_ENDIAN__
  37190. __ai uint32x4_t vreinterpretq_u32_p16(poly16x8_t __p0) {
  37191. uint32x4_t __ret;
  37192. __ret = (uint32x4_t)(__p0);
  37193. return __ret;
  37194. }
  37195. #else
  37196. __ai uint32x4_t vreinterpretq_u32_p16(poly16x8_t __p0) {
  37197. uint32x4_t __ret;
  37198. __ret = (uint32x4_t)(__p0);
  37199. return __ret;
  37200. }
  37201. #endif
  37202. #ifdef __LITTLE_ENDIAN__
  37203. __ai uint32x4_t vreinterpretq_u32_u8(uint8x16_t __p0) {
  37204. uint32x4_t __ret;
  37205. __ret = (uint32x4_t)(__p0);
  37206. return __ret;
  37207. }
  37208. #else
  37209. __ai uint32x4_t vreinterpretq_u32_u8(uint8x16_t __p0) {
  37210. uint32x4_t __ret;
  37211. __ret = (uint32x4_t)(__p0);
  37212. return __ret;
  37213. }
  37214. #endif
  37215. #ifdef __LITTLE_ENDIAN__
  37216. __ai uint32x4_t vreinterpretq_u32_u64(uint64x2_t __p0) {
  37217. uint32x4_t __ret;
  37218. __ret = (uint32x4_t)(__p0);
  37219. return __ret;
  37220. }
  37221. #else
  37222. __ai uint32x4_t vreinterpretq_u32_u64(uint64x2_t __p0) {
  37223. uint32x4_t __ret;
  37224. __ret = (uint32x4_t)(__p0);
  37225. return __ret;
  37226. }
  37227. #endif
  37228. #ifdef __LITTLE_ENDIAN__
  37229. __ai uint32x4_t vreinterpretq_u32_u16(uint16x8_t __p0) {
  37230. uint32x4_t __ret;
  37231. __ret = (uint32x4_t)(__p0);
  37232. return __ret;
  37233. }
  37234. #else
  37235. __ai uint32x4_t vreinterpretq_u32_u16(uint16x8_t __p0) {
  37236. uint32x4_t __ret;
  37237. __ret = (uint32x4_t)(__p0);
  37238. return __ret;
  37239. }
  37240. #endif
  37241. #ifdef __LITTLE_ENDIAN__
  37242. __ai uint32x4_t vreinterpretq_u32_s8(int8x16_t __p0) {
  37243. uint32x4_t __ret;
  37244. __ret = (uint32x4_t)(__p0);
  37245. return __ret;
  37246. }
  37247. #else
  37248. __ai uint32x4_t vreinterpretq_u32_s8(int8x16_t __p0) {
  37249. uint32x4_t __ret;
  37250. __ret = (uint32x4_t)(__p0);
  37251. return __ret;
  37252. }
  37253. #endif
  37254. #ifdef __LITTLE_ENDIAN__
  37255. __ai uint32x4_t vreinterpretq_u32_f64(float64x2_t __p0) {
  37256. uint32x4_t __ret;
  37257. __ret = (uint32x4_t)(__p0);
  37258. return __ret;
  37259. }
  37260. #else
  37261. __ai uint32x4_t vreinterpretq_u32_f64(float64x2_t __p0) {
  37262. uint32x4_t __ret;
  37263. __ret = (uint32x4_t)(__p0);
  37264. return __ret;
  37265. }
  37266. #endif
  37267. #ifdef __LITTLE_ENDIAN__
  37268. __ai uint32x4_t vreinterpretq_u32_f32(float32x4_t __p0) {
  37269. uint32x4_t __ret;
  37270. __ret = (uint32x4_t)(__p0);
  37271. return __ret;
  37272. }
  37273. #else
  37274. __ai uint32x4_t vreinterpretq_u32_f32(float32x4_t __p0) {
  37275. uint32x4_t __ret;
  37276. __ret = (uint32x4_t)(__p0);
  37277. return __ret;
  37278. }
  37279. #endif
  37280. #ifdef __LITTLE_ENDIAN__
  37281. __ai uint32x4_t vreinterpretq_u32_f16(float16x8_t __p0) {
  37282. uint32x4_t __ret;
  37283. __ret = (uint32x4_t)(__p0);
  37284. return __ret;
  37285. }
  37286. #else
  37287. __ai uint32x4_t vreinterpretq_u32_f16(float16x8_t __p0) {
  37288. uint32x4_t __ret;
  37289. __ret = (uint32x4_t)(__p0);
  37290. return __ret;
  37291. }
  37292. #endif
  37293. #ifdef __LITTLE_ENDIAN__
  37294. __ai uint32x4_t vreinterpretq_u32_s32(int32x4_t __p0) {
  37295. uint32x4_t __ret;
  37296. __ret = (uint32x4_t)(__p0);
  37297. return __ret;
  37298. }
  37299. #else
  37300. __ai uint32x4_t vreinterpretq_u32_s32(int32x4_t __p0) {
  37301. uint32x4_t __ret;
  37302. __ret = (uint32x4_t)(__p0);
  37303. return __ret;
  37304. }
  37305. #endif
  37306. #ifdef __LITTLE_ENDIAN__
  37307. __ai uint32x4_t vreinterpretq_u32_s64(int64x2_t __p0) {
  37308. uint32x4_t __ret;
  37309. __ret = (uint32x4_t)(__p0);
  37310. return __ret;
  37311. }
  37312. #else
  37313. __ai uint32x4_t vreinterpretq_u32_s64(int64x2_t __p0) {
  37314. uint32x4_t __ret;
  37315. __ret = (uint32x4_t)(__p0);
  37316. return __ret;
  37317. }
  37318. #endif
  37319. #ifdef __LITTLE_ENDIAN__
  37320. __ai uint32x4_t vreinterpretq_u32_s16(int16x8_t __p0) {
  37321. uint32x4_t __ret;
  37322. __ret = (uint32x4_t)(__p0);
  37323. return __ret;
  37324. }
  37325. #else
  37326. __ai uint32x4_t vreinterpretq_u32_s16(int16x8_t __p0) {
  37327. uint32x4_t __ret;
  37328. __ret = (uint32x4_t)(__p0);
  37329. return __ret;
  37330. }
  37331. #endif
  37332. #ifdef __LITTLE_ENDIAN__
  37333. __ai uint64x2_t vreinterpretq_u64_p8(poly8x16_t __p0) {
  37334. uint64x2_t __ret;
  37335. __ret = (uint64x2_t)(__p0);
  37336. return __ret;
  37337. }
  37338. #else
  37339. __ai uint64x2_t vreinterpretq_u64_p8(poly8x16_t __p0) {
  37340. uint64x2_t __ret;
  37341. __ret = (uint64x2_t)(__p0);
  37342. return __ret;
  37343. }
  37344. #endif
  37345. #ifdef __LITTLE_ENDIAN__
  37346. __ai uint64x2_t vreinterpretq_u64_p128(poly128_t __p0) {
  37347. uint64x2_t __ret;
  37348. __ret = (uint64x2_t)(__p0);
  37349. return __ret;
  37350. }
  37351. #else
  37352. __ai uint64x2_t vreinterpretq_u64_p128(poly128_t __p0) {
  37353. uint64x2_t __ret;
  37354. __ret = (uint64x2_t)(__p0);
  37355. return __ret;
  37356. }
  37357. #endif
  37358. #ifdef __LITTLE_ENDIAN__
  37359. __ai uint64x2_t vreinterpretq_u64_p64(poly64x2_t __p0) {
  37360. uint64x2_t __ret;
  37361. __ret = (uint64x2_t)(__p0);
  37362. return __ret;
  37363. }
  37364. #else
  37365. __ai uint64x2_t vreinterpretq_u64_p64(poly64x2_t __p0) {
  37366. uint64x2_t __ret;
  37367. __ret = (uint64x2_t)(__p0);
  37368. return __ret;
  37369. }
  37370. #endif
  37371. #ifdef __LITTLE_ENDIAN__
  37372. __ai uint64x2_t vreinterpretq_u64_p16(poly16x8_t __p0) {
  37373. uint64x2_t __ret;
  37374. __ret = (uint64x2_t)(__p0);
  37375. return __ret;
  37376. }
  37377. #else
  37378. __ai uint64x2_t vreinterpretq_u64_p16(poly16x8_t __p0) {
  37379. uint64x2_t __ret;
  37380. __ret = (uint64x2_t)(__p0);
  37381. return __ret;
  37382. }
  37383. #endif
  37384. #ifdef __LITTLE_ENDIAN__
  37385. __ai uint64x2_t vreinterpretq_u64_u8(uint8x16_t __p0) {
  37386. uint64x2_t __ret;
  37387. __ret = (uint64x2_t)(__p0);
  37388. return __ret;
  37389. }
  37390. #else
  37391. __ai uint64x2_t vreinterpretq_u64_u8(uint8x16_t __p0) {
  37392. uint64x2_t __ret;
  37393. __ret = (uint64x2_t)(__p0);
  37394. return __ret;
  37395. }
  37396. #endif
  37397. #ifdef __LITTLE_ENDIAN__
  37398. __ai uint64x2_t vreinterpretq_u64_u32(uint32x4_t __p0) {
  37399. uint64x2_t __ret;
  37400. __ret = (uint64x2_t)(__p0);
  37401. return __ret;
  37402. }
  37403. #else
  37404. __ai uint64x2_t vreinterpretq_u64_u32(uint32x4_t __p0) {
  37405. uint64x2_t __ret;
  37406. __ret = (uint64x2_t)(__p0);
  37407. return __ret;
  37408. }
  37409. #endif
  37410. #ifdef __LITTLE_ENDIAN__
  37411. __ai uint64x2_t vreinterpretq_u64_u16(uint16x8_t __p0) {
  37412. uint64x2_t __ret;
  37413. __ret = (uint64x2_t)(__p0);
  37414. return __ret;
  37415. }
  37416. #else
  37417. __ai uint64x2_t vreinterpretq_u64_u16(uint16x8_t __p0) {
  37418. uint64x2_t __ret;
  37419. __ret = (uint64x2_t)(__p0);
  37420. return __ret;
  37421. }
  37422. #endif
  37423. #ifdef __LITTLE_ENDIAN__
  37424. __ai uint64x2_t vreinterpretq_u64_s8(int8x16_t __p0) {
  37425. uint64x2_t __ret;
  37426. __ret = (uint64x2_t)(__p0);
  37427. return __ret;
  37428. }
  37429. #else
  37430. __ai uint64x2_t vreinterpretq_u64_s8(int8x16_t __p0) {
  37431. uint64x2_t __ret;
  37432. __ret = (uint64x2_t)(__p0);
  37433. return __ret;
  37434. }
  37435. #endif
  37436. #ifdef __LITTLE_ENDIAN__
  37437. __ai uint64x2_t vreinterpretq_u64_f64(float64x2_t __p0) {
  37438. uint64x2_t __ret;
  37439. __ret = (uint64x2_t)(__p0);
  37440. return __ret;
  37441. }
  37442. #else
  37443. __ai uint64x2_t vreinterpretq_u64_f64(float64x2_t __p0) {
  37444. uint64x2_t __ret;
  37445. __ret = (uint64x2_t)(__p0);
  37446. return __ret;
  37447. }
  37448. #endif
  37449. #ifdef __LITTLE_ENDIAN__
  37450. __ai uint64x2_t vreinterpretq_u64_f32(float32x4_t __p0) {
  37451. uint64x2_t __ret;
  37452. __ret = (uint64x2_t)(__p0);
  37453. return __ret;
  37454. }
  37455. #else
  37456. __ai uint64x2_t vreinterpretq_u64_f32(float32x4_t __p0) {
  37457. uint64x2_t __ret;
  37458. __ret = (uint64x2_t)(__p0);
  37459. return __ret;
  37460. }
  37461. #endif
  37462. #ifdef __LITTLE_ENDIAN__
  37463. __ai uint64x2_t vreinterpretq_u64_f16(float16x8_t __p0) {
  37464. uint64x2_t __ret;
  37465. __ret = (uint64x2_t)(__p0);
  37466. return __ret;
  37467. }
  37468. #else
  37469. __ai uint64x2_t vreinterpretq_u64_f16(float16x8_t __p0) {
  37470. uint64x2_t __ret;
  37471. __ret = (uint64x2_t)(__p0);
  37472. return __ret;
  37473. }
  37474. #endif
  37475. #ifdef __LITTLE_ENDIAN__
  37476. __ai uint64x2_t vreinterpretq_u64_s32(int32x4_t __p0) {
  37477. uint64x2_t __ret;
  37478. __ret = (uint64x2_t)(__p0);
  37479. return __ret;
  37480. }
  37481. #else
  37482. __ai uint64x2_t vreinterpretq_u64_s32(int32x4_t __p0) {
  37483. uint64x2_t __ret;
  37484. __ret = (uint64x2_t)(__p0);
  37485. return __ret;
  37486. }
  37487. #endif
  37488. #ifdef __LITTLE_ENDIAN__
  37489. __ai uint64x2_t vreinterpretq_u64_s64(int64x2_t __p0) {
  37490. uint64x2_t __ret;
  37491. __ret = (uint64x2_t)(__p0);
  37492. return __ret;
  37493. }
  37494. #else
  37495. __ai uint64x2_t vreinterpretq_u64_s64(int64x2_t __p0) {
  37496. uint64x2_t __ret;
  37497. __ret = (uint64x2_t)(__p0);
  37498. return __ret;
  37499. }
  37500. #endif
  37501. #ifdef __LITTLE_ENDIAN__
  37502. __ai uint64x2_t vreinterpretq_u64_s16(int16x8_t __p0) {
  37503. uint64x2_t __ret;
  37504. __ret = (uint64x2_t)(__p0);
  37505. return __ret;
  37506. }
  37507. #else
  37508. __ai uint64x2_t vreinterpretq_u64_s16(int16x8_t __p0) {
  37509. uint64x2_t __ret;
  37510. __ret = (uint64x2_t)(__p0);
  37511. return __ret;
  37512. }
  37513. #endif
  37514. #ifdef __LITTLE_ENDIAN__
  37515. __ai uint16x8_t vreinterpretq_u16_p8(poly8x16_t __p0) {
  37516. uint16x8_t __ret;
  37517. __ret = (uint16x8_t)(__p0);
  37518. return __ret;
  37519. }
  37520. #else
  37521. __ai uint16x8_t vreinterpretq_u16_p8(poly8x16_t __p0) {
  37522. uint16x8_t __ret;
  37523. __ret = (uint16x8_t)(__p0);
  37524. return __ret;
  37525. }
  37526. #endif
  37527. #ifdef __LITTLE_ENDIAN__
  37528. __ai uint16x8_t vreinterpretq_u16_p128(poly128_t __p0) {
  37529. uint16x8_t __ret;
  37530. __ret = (uint16x8_t)(__p0);
  37531. return __ret;
  37532. }
  37533. #else
  37534. __ai uint16x8_t vreinterpretq_u16_p128(poly128_t __p0) {
  37535. uint16x8_t __ret;
  37536. __ret = (uint16x8_t)(__p0);
  37537. return __ret;
  37538. }
  37539. #endif
  37540. #ifdef __LITTLE_ENDIAN__
  37541. __ai uint16x8_t vreinterpretq_u16_p64(poly64x2_t __p0) {
  37542. uint16x8_t __ret;
  37543. __ret = (uint16x8_t)(__p0);
  37544. return __ret;
  37545. }
  37546. #else
  37547. __ai uint16x8_t vreinterpretq_u16_p64(poly64x2_t __p0) {
  37548. uint16x8_t __ret;
  37549. __ret = (uint16x8_t)(__p0);
  37550. return __ret;
  37551. }
  37552. #endif
  37553. #ifdef __LITTLE_ENDIAN__
  37554. __ai uint16x8_t vreinterpretq_u16_p16(poly16x8_t __p0) {
  37555. uint16x8_t __ret;
  37556. __ret = (uint16x8_t)(__p0);
  37557. return __ret;
  37558. }
  37559. #else
  37560. __ai uint16x8_t vreinterpretq_u16_p16(poly16x8_t __p0) {
  37561. uint16x8_t __ret;
  37562. __ret = (uint16x8_t)(__p0);
  37563. return __ret;
  37564. }
  37565. #endif
  37566. #ifdef __LITTLE_ENDIAN__
  37567. __ai uint16x8_t vreinterpretq_u16_u8(uint8x16_t __p0) {
  37568. uint16x8_t __ret;
  37569. __ret = (uint16x8_t)(__p0);
  37570. return __ret;
  37571. }
  37572. #else
  37573. __ai uint16x8_t vreinterpretq_u16_u8(uint8x16_t __p0) {
  37574. uint16x8_t __ret;
  37575. __ret = (uint16x8_t)(__p0);
  37576. return __ret;
  37577. }
  37578. #endif
  37579. #ifdef __LITTLE_ENDIAN__
  37580. __ai uint16x8_t vreinterpretq_u16_u32(uint32x4_t __p0) {
  37581. uint16x8_t __ret;
  37582. __ret = (uint16x8_t)(__p0);
  37583. return __ret;
  37584. }
  37585. #else
  37586. __ai uint16x8_t vreinterpretq_u16_u32(uint32x4_t __p0) {
  37587. uint16x8_t __ret;
  37588. __ret = (uint16x8_t)(__p0);
  37589. return __ret;
  37590. }
  37591. #endif
  37592. #ifdef __LITTLE_ENDIAN__
  37593. __ai uint16x8_t vreinterpretq_u16_u64(uint64x2_t __p0) {
  37594. uint16x8_t __ret;
  37595. __ret = (uint16x8_t)(__p0);
  37596. return __ret;
  37597. }
  37598. #else
  37599. __ai uint16x8_t vreinterpretq_u16_u64(uint64x2_t __p0) {
  37600. uint16x8_t __ret;
  37601. __ret = (uint16x8_t)(__p0);
  37602. return __ret;
  37603. }
  37604. #endif
  37605. #ifdef __LITTLE_ENDIAN__
  37606. __ai uint16x8_t vreinterpretq_u16_s8(int8x16_t __p0) {
  37607. uint16x8_t __ret;
  37608. __ret = (uint16x8_t)(__p0);
  37609. return __ret;
  37610. }
  37611. #else
  37612. __ai uint16x8_t vreinterpretq_u16_s8(int8x16_t __p0) {
  37613. uint16x8_t __ret;
  37614. __ret = (uint16x8_t)(__p0);
  37615. return __ret;
  37616. }
  37617. #endif
  37618. #ifdef __LITTLE_ENDIAN__
  37619. __ai uint16x8_t vreinterpretq_u16_f64(float64x2_t __p0) {
  37620. uint16x8_t __ret;
  37621. __ret = (uint16x8_t)(__p0);
  37622. return __ret;
  37623. }
  37624. #else
  37625. __ai uint16x8_t vreinterpretq_u16_f64(float64x2_t __p0) {
  37626. uint16x8_t __ret;
  37627. __ret = (uint16x8_t)(__p0);
  37628. return __ret;
  37629. }
  37630. #endif
  37631. #ifdef __LITTLE_ENDIAN__
  37632. __ai uint16x8_t vreinterpretq_u16_f32(float32x4_t __p0) {
  37633. uint16x8_t __ret;
  37634. __ret = (uint16x8_t)(__p0);
  37635. return __ret;
  37636. }
  37637. #else
  37638. __ai uint16x8_t vreinterpretq_u16_f32(float32x4_t __p0) {
  37639. uint16x8_t __ret;
  37640. __ret = (uint16x8_t)(__p0);
  37641. return __ret;
  37642. }
  37643. #endif
  37644. #ifdef __LITTLE_ENDIAN__
  37645. __ai uint16x8_t vreinterpretq_u16_f16(float16x8_t __p0) {
  37646. uint16x8_t __ret;
  37647. __ret = (uint16x8_t)(__p0);
  37648. return __ret;
  37649. }
  37650. #else
  37651. __ai uint16x8_t vreinterpretq_u16_f16(float16x8_t __p0) {
  37652. uint16x8_t __ret;
  37653. __ret = (uint16x8_t)(__p0);
  37654. return __ret;
  37655. }
  37656. #endif
  37657. #ifdef __LITTLE_ENDIAN__
  37658. __ai uint16x8_t vreinterpretq_u16_s32(int32x4_t __p0) {
  37659. uint16x8_t __ret;
  37660. __ret = (uint16x8_t)(__p0);
  37661. return __ret;
  37662. }
  37663. #else
  37664. __ai uint16x8_t vreinterpretq_u16_s32(int32x4_t __p0) {
  37665. uint16x8_t __ret;
  37666. __ret = (uint16x8_t)(__p0);
  37667. return __ret;
  37668. }
  37669. #endif
  37670. #ifdef __LITTLE_ENDIAN__
  37671. __ai uint16x8_t vreinterpretq_u16_s64(int64x2_t __p0) {
  37672. uint16x8_t __ret;
  37673. __ret = (uint16x8_t)(__p0);
  37674. return __ret;
  37675. }
  37676. #else
  37677. __ai uint16x8_t vreinterpretq_u16_s64(int64x2_t __p0) {
  37678. uint16x8_t __ret;
  37679. __ret = (uint16x8_t)(__p0);
  37680. return __ret;
  37681. }
  37682. #endif
  37683. #ifdef __LITTLE_ENDIAN__
  37684. __ai uint16x8_t vreinterpretq_u16_s16(int16x8_t __p0) {
  37685. uint16x8_t __ret;
  37686. __ret = (uint16x8_t)(__p0);
  37687. return __ret;
  37688. }
  37689. #else
  37690. __ai uint16x8_t vreinterpretq_u16_s16(int16x8_t __p0) {
  37691. uint16x8_t __ret;
  37692. __ret = (uint16x8_t)(__p0);
  37693. return __ret;
  37694. }
  37695. #endif
  37696. #ifdef __LITTLE_ENDIAN__
  37697. __ai int8x16_t vreinterpretq_s8_p8(poly8x16_t __p0) {
  37698. int8x16_t __ret;
  37699. __ret = (int8x16_t)(__p0);
  37700. return __ret;
  37701. }
  37702. #else
  37703. __ai int8x16_t vreinterpretq_s8_p8(poly8x16_t __p0) {
  37704. int8x16_t __ret;
  37705. __ret = (int8x16_t)(__p0);
  37706. return __ret;
  37707. }
  37708. #endif
  37709. #ifdef __LITTLE_ENDIAN__
  37710. __ai int8x16_t vreinterpretq_s8_p128(poly128_t __p0) {
  37711. int8x16_t __ret;
  37712. __ret = (int8x16_t)(__p0);
  37713. return __ret;
  37714. }
  37715. #else
  37716. __ai int8x16_t vreinterpretq_s8_p128(poly128_t __p0) {
  37717. int8x16_t __ret;
  37718. __ret = (int8x16_t)(__p0);
  37719. return __ret;
  37720. }
  37721. #endif
  37722. #ifdef __LITTLE_ENDIAN__
  37723. __ai int8x16_t vreinterpretq_s8_p64(poly64x2_t __p0) {
  37724. int8x16_t __ret;
  37725. __ret = (int8x16_t)(__p0);
  37726. return __ret;
  37727. }
  37728. #else
  37729. __ai int8x16_t vreinterpretq_s8_p64(poly64x2_t __p0) {
  37730. int8x16_t __ret;
  37731. __ret = (int8x16_t)(__p0);
  37732. return __ret;
  37733. }
  37734. #endif
  37735. #ifdef __LITTLE_ENDIAN__
  37736. __ai int8x16_t vreinterpretq_s8_p16(poly16x8_t __p0) {
  37737. int8x16_t __ret;
  37738. __ret = (int8x16_t)(__p0);
  37739. return __ret;
  37740. }
  37741. #else
  37742. __ai int8x16_t vreinterpretq_s8_p16(poly16x8_t __p0) {
  37743. int8x16_t __ret;
  37744. __ret = (int8x16_t)(__p0);
  37745. return __ret;
  37746. }
  37747. #endif
  37748. #ifdef __LITTLE_ENDIAN__
  37749. __ai int8x16_t vreinterpretq_s8_u8(uint8x16_t __p0) {
  37750. int8x16_t __ret;
  37751. __ret = (int8x16_t)(__p0);
  37752. return __ret;
  37753. }
  37754. #else
  37755. __ai int8x16_t vreinterpretq_s8_u8(uint8x16_t __p0) {
  37756. int8x16_t __ret;
  37757. __ret = (int8x16_t)(__p0);
  37758. return __ret;
  37759. }
  37760. #endif
  37761. #ifdef __LITTLE_ENDIAN__
  37762. __ai int8x16_t vreinterpretq_s8_u32(uint32x4_t __p0) {
  37763. int8x16_t __ret;
  37764. __ret = (int8x16_t)(__p0);
  37765. return __ret;
  37766. }
  37767. #else
  37768. __ai int8x16_t vreinterpretq_s8_u32(uint32x4_t __p0) {
  37769. int8x16_t __ret;
  37770. __ret = (int8x16_t)(__p0);
  37771. return __ret;
  37772. }
  37773. #endif
  37774. #ifdef __LITTLE_ENDIAN__
  37775. __ai int8x16_t vreinterpretq_s8_u64(uint64x2_t __p0) {
  37776. int8x16_t __ret;
  37777. __ret = (int8x16_t)(__p0);
  37778. return __ret;
  37779. }
  37780. #else
  37781. __ai int8x16_t vreinterpretq_s8_u64(uint64x2_t __p0) {
  37782. int8x16_t __ret;
  37783. __ret = (int8x16_t)(__p0);
  37784. return __ret;
  37785. }
  37786. #endif
  37787. #ifdef __LITTLE_ENDIAN__
  37788. __ai int8x16_t vreinterpretq_s8_u16(uint16x8_t __p0) {
  37789. int8x16_t __ret;
  37790. __ret = (int8x16_t)(__p0);
  37791. return __ret;
  37792. }
  37793. #else
  37794. __ai int8x16_t vreinterpretq_s8_u16(uint16x8_t __p0) {
  37795. int8x16_t __ret;
  37796. __ret = (int8x16_t)(__p0);
  37797. return __ret;
  37798. }
  37799. #endif
  37800. #ifdef __LITTLE_ENDIAN__
  37801. __ai int8x16_t vreinterpretq_s8_f64(float64x2_t __p0) {
  37802. int8x16_t __ret;
  37803. __ret = (int8x16_t)(__p0);
  37804. return __ret;
  37805. }
  37806. #else
  37807. __ai int8x16_t vreinterpretq_s8_f64(float64x2_t __p0) {
  37808. int8x16_t __ret;
  37809. __ret = (int8x16_t)(__p0);
  37810. return __ret;
  37811. }
  37812. #endif
  37813. #ifdef __LITTLE_ENDIAN__
  37814. __ai int8x16_t vreinterpretq_s8_f32(float32x4_t __p0) {
  37815. int8x16_t __ret;
  37816. __ret = (int8x16_t)(__p0);
  37817. return __ret;
  37818. }
  37819. #else
  37820. __ai int8x16_t vreinterpretq_s8_f32(float32x4_t __p0) {
  37821. int8x16_t __ret;
  37822. __ret = (int8x16_t)(__p0);
  37823. return __ret;
  37824. }
  37825. #endif
  37826. #ifdef __LITTLE_ENDIAN__
  37827. __ai int8x16_t vreinterpretq_s8_f16(float16x8_t __p0) {
  37828. int8x16_t __ret;
  37829. __ret = (int8x16_t)(__p0);
  37830. return __ret;
  37831. }
  37832. #else
  37833. __ai int8x16_t vreinterpretq_s8_f16(float16x8_t __p0) {
  37834. int8x16_t __ret;
  37835. __ret = (int8x16_t)(__p0);
  37836. return __ret;
  37837. }
  37838. #endif
  37839. #ifdef __LITTLE_ENDIAN__
  37840. __ai int8x16_t vreinterpretq_s8_s32(int32x4_t __p0) {
  37841. int8x16_t __ret;
  37842. __ret = (int8x16_t)(__p0);
  37843. return __ret;
  37844. }
  37845. #else
  37846. __ai int8x16_t vreinterpretq_s8_s32(int32x4_t __p0) {
  37847. int8x16_t __ret;
  37848. __ret = (int8x16_t)(__p0);
  37849. return __ret;
  37850. }
  37851. #endif
  37852. #ifdef __LITTLE_ENDIAN__
  37853. __ai int8x16_t vreinterpretq_s8_s64(int64x2_t __p0) {
  37854. int8x16_t __ret;
  37855. __ret = (int8x16_t)(__p0);
  37856. return __ret;
  37857. }
  37858. #else
  37859. __ai int8x16_t vreinterpretq_s8_s64(int64x2_t __p0) {
  37860. int8x16_t __ret;
  37861. __ret = (int8x16_t)(__p0);
  37862. return __ret;
  37863. }
  37864. #endif
  37865. #ifdef __LITTLE_ENDIAN__
  37866. __ai int8x16_t vreinterpretq_s8_s16(int16x8_t __p0) {
  37867. int8x16_t __ret;
  37868. __ret = (int8x16_t)(__p0);
  37869. return __ret;
  37870. }
  37871. #else
  37872. __ai int8x16_t vreinterpretq_s8_s16(int16x8_t __p0) {
  37873. int8x16_t __ret;
  37874. __ret = (int8x16_t)(__p0);
  37875. return __ret;
  37876. }
  37877. #endif
  37878. #ifdef __LITTLE_ENDIAN__
  37879. __ai float64x2_t vreinterpretq_f64_p8(poly8x16_t __p0) {
  37880. float64x2_t __ret;
  37881. __ret = (float64x2_t)(__p0);
  37882. return __ret;
  37883. }
  37884. #else
  37885. __ai float64x2_t vreinterpretq_f64_p8(poly8x16_t __p0) {
  37886. float64x2_t __ret;
  37887. __ret = (float64x2_t)(__p0);
  37888. return __ret;
  37889. }
  37890. #endif
  37891. #ifdef __LITTLE_ENDIAN__
  37892. __ai float64x2_t vreinterpretq_f64_p128(poly128_t __p0) {
  37893. float64x2_t __ret;
  37894. __ret = (float64x2_t)(__p0);
  37895. return __ret;
  37896. }
  37897. #else
  37898. __ai float64x2_t vreinterpretq_f64_p128(poly128_t __p0) {
  37899. float64x2_t __ret;
  37900. __ret = (float64x2_t)(__p0);
  37901. return __ret;
  37902. }
  37903. #endif
  37904. #ifdef __LITTLE_ENDIAN__
  37905. __ai float64x2_t vreinterpretq_f64_p64(poly64x2_t __p0) {
  37906. float64x2_t __ret;
  37907. __ret = (float64x2_t)(__p0);
  37908. return __ret;
  37909. }
  37910. #else
  37911. __ai float64x2_t vreinterpretq_f64_p64(poly64x2_t __p0) {
  37912. float64x2_t __ret;
  37913. __ret = (float64x2_t)(__p0);
  37914. return __ret;
  37915. }
  37916. #endif
  37917. #ifdef __LITTLE_ENDIAN__
  37918. __ai float64x2_t vreinterpretq_f64_p16(poly16x8_t __p0) {
  37919. float64x2_t __ret;
  37920. __ret = (float64x2_t)(__p0);
  37921. return __ret;
  37922. }
  37923. #else
  37924. __ai float64x2_t vreinterpretq_f64_p16(poly16x8_t __p0) {
  37925. float64x2_t __ret;
  37926. __ret = (float64x2_t)(__p0);
  37927. return __ret;
  37928. }
  37929. #endif
  37930. #ifdef __LITTLE_ENDIAN__
  37931. __ai float64x2_t vreinterpretq_f64_u8(uint8x16_t __p0) {
  37932. float64x2_t __ret;
  37933. __ret = (float64x2_t)(__p0);
  37934. return __ret;
  37935. }
  37936. #else
  37937. __ai float64x2_t vreinterpretq_f64_u8(uint8x16_t __p0) {
  37938. float64x2_t __ret;
  37939. __ret = (float64x2_t)(__p0);
  37940. return __ret;
  37941. }
  37942. #endif
  37943. #ifdef __LITTLE_ENDIAN__
  37944. __ai float64x2_t vreinterpretq_f64_u32(uint32x4_t __p0) {
  37945. float64x2_t __ret;
  37946. __ret = (float64x2_t)(__p0);
  37947. return __ret;
  37948. }
  37949. #else
  37950. __ai float64x2_t vreinterpretq_f64_u32(uint32x4_t __p0) {
  37951. float64x2_t __ret;
  37952. __ret = (float64x2_t)(__p0);
  37953. return __ret;
  37954. }
  37955. #endif
  37956. #ifdef __LITTLE_ENDIAN__
  37957. __ai float64x2_t vreinterpretq_f64_u64(uint64x2_t __p0) {
  37958. float64x2_t __ret;
  37959. __ret = (float64x2_t)(__p0);
  37960. return __ret;
  37961. }
  37962. #else
  37963. __ai float64x2_t vreinterpretq_f64_u64(uint64x2_t __p0) {
  37964. float64x2_t __ret;
  37965. __ret = (float64x2_t)(__p0);
  37966. return __ret;
  37967. }
  37968. #endif
  37969. #ifdef __LITTLE_ENDIAN__
  37970. __ai float64x2_t vreinterpretq_f64_u16(uint16x8_t __p0) {
  37971. float64x2_t __ret;
  37972. __ret = (float64x2_t)(__p0);
  37973. return __ret;
  37974. }
  37975. #else
  37976. __ai float64x2_t vreinterpretq_f64_u16(uint16x8_t __p0) {
  37977. float64x2_t __ret;
  37978. __ret = (float64x2_t)(__p0);
  37979. return __ret;
  37980. }
  37981. #endif
  37982. #ifdef __LITTLE_ENDIAN__
  37983. __ai float64x2_t vreinterpretq_f64_s8(int8x16_t __p0) {
  37984. float64x2_t __ret;
  37985. __ret = (float64x2_t)(__p0);
  37986. return __ret;
  37987. }
  37988. #else
  37989. __ai float64x2_t vreinterpretq_f64_s8(int8x16_t __p0) {
  37990. float64x2_t __ret;
  37991. __ret = (float64x2_t)(__p0);
  37992. return __ret;
  37993. }
  37994. #endif
  37995. #ifdef __LITTLE_ENDIAN__
  37996. __ai float64x2_t vreinterpretq_f64_f32(float32x4_t __p0) {
  37997. float64x2_t __ret;
  37998. __ret = (float64x2_t)(__p0);
  37999. return __ret;
  38000. }
  38001. #else
  38002. __ai float64x2_t vreinterpretq_f64_f32(float32x4_t __p0) {
  38003. float64x2_t __ret;
  38004. __ret = (float64x2_t)(__p0);
  38005. return __ret;
  38006. }
  38007. #endif
  38008. #ifdef __LITTLE_ENDIAN__
  38009. __ai float64x2_t vreinterpretq_f64_f16(float16x8_t __p0) {
  38010. float64x2_t __ret;
  38011. __ret = (float64x2_t)(__p0);
  38012. return __ret;
  38013. }
  38014. #else
  38015. __ai float64x2_t vreinterpretq_f64_f16(float16x8_t __p0) {
  38016. float64x2_t __ret;
  38017. __ret = (float64x2_t)(__p0);
  38018. return __ret;
  38019. }
  38020. #endif
  38021. #ifdef __LITTLE_ENDIAN__
  38022. __ai float64x2_t vreinterpretq_f64_s32(int32x4_t __p0) {
  38023. float64x2_t __ret;
  38024. __ret = (float64x2_t)(__p0);
  38025. return __ret;
  38026. }
  38027. #else
  38028. __ai float64x2_t vreinterpretq_f64_s32(int32x4_t __p0) {
  38029. float64x2_t __ret;
  38030. __ret = (float64x2_t)(__p0);
  38031. return __ret;
  38032. }
  38033. #endif
  38034. #ifdef __LITTLE_ENDIAN__
  38035. __ai float64x2_t vreinterpretq_f64_s64(int64x2_t __p0) {
  38036. float64x2_t __ret;
  38037. __ret = (float64x2_t)(__p0);
  38038. return __ret;
  38039. }
  38040. #else
  38041. __ai float64x2_t vreinterpretq_f64_s64(int64x2_t __p0) {
  38042. float64x2_t __ret;
  38043. __ret = (float64x2_t)(__p0);
  38044. return __ret;
  38045. }
  38046. #endif
  38047. #ifdef __LITTLE_ENDIAN__
  38048. __ai float64x2_t vreinterpretq_f64_s16(int16x8_t __p0) {
  38049. float64x2_t __ret;
  38050. __ret = (float64x2_t)(__p0);
  38051. return __ret;
  38052. }
  38053. #else
  38054. __ai float64x2_t vreinterpretq_f64_s16(int16x8_t __p0) {
  38055. float64x2_t __ret;
  38056. __ret = (float64x2_t)(__p0);
  38057. return __ret;
  38058. }
  38059. #endif
  38060. #ifdef __LITTLE_ENDIAN__
  38061. __ai float32x4_t vreinterpretq_f32_p8(poly8x16_t __p0) {
  38062. float32x4_t __ret;
  38063. __ret = (float32x4_t)(__p0);
  38064. return __ret;
  38065. }
  38066. #else
  38067. __ai float32x4_t vreinterpretq_f32_p8(poly8x16_t __p0) {
  38068. float32x4_t __ret;
  38069. __ret = (float32x4_t)(__p0);
  38070. return __ret;
  38071. }
  38072. #endif
  38073. #ifdef __LITTLE_ENDIAN__
  38074. __ai float32x4_t vreinterpretq_f32_p128(poly128_t __p0) {
  38075. float32x4_t __ret;
  38076. __ret = (float32x4_t)(__p0);
  38077. return __ret;
  38078. }
  38079. #else
  38080. __ai float32x4_t vreinterpretq_f32_p128(poly128_t __p0) {
  38081. float32x4_t __ret;
  38082. __ret = (float32x4_t)(__p0);
  38083. return __ret;
  38084. }
  38085. #endif
  38086. #ifdef __LITTLE_ENDIAN__
  38087. __ai float32x4_t vreinterpretq_f32_p64(poly64x2_t __p0) {
  38088. float32x4_t __ret;
  38089. __ret = (float32x4_t)(__p0);
  38090. return __ret;
  38091. }
  38092. #else
  38093. __ai float32x4_t vreinterpretq_f32_p64(poly64x2_t __p0) {
  38094. float32x4_t __ret;
  38095. __ret = (float32x4_t)(__p0);
  38096. return __ret;
  38097. }
  38098. #endif
  38099. #ifdef __LITTLE_ENDIAN__
  38100. __ai float32x4_t vreinterpretq_f32_p16(poly16x8_t __p0) {
  38101. float32x4_t __ret;
  38102. __ret = (float32x4_t)(__p0);
  38103. return __ret;
  38104. }
  38105. #else
  38106. __ai float32x4_t vreinterpretq_f32_p16(poly16x8_t __p0) {
  38107. float32x4_t __ret;
  38108. __ret = (float32x4_t)(__p0);
  38109. return __ret;
  38110. }
  38111. #endif
  38112. #ifdef __LITTLE_ENDIAN__
  38113. __ai float32x4_t vreinterpretq_f32_u8(uint8x16_t __p0) {
  38114. float32x4_t __ret;
  38115. __ret = (float32x4_t)(__p0);
  38116. return __ret;
  38117. }
  38118. #else
  38119. __ai float32x4_t vreinterpretq_f32_u8(uint8x16_t __p0) {
  38120. float32x4_t __ret;
  38121. __ret = (float32x4_t)(__p0);
  38122. return __ret;
  38123. }
  38124. #endif
  38125. #ifdef __LITTLE_ENDIAN__
  38126. __ai float32x4_t vreinterpretq_f32_u32(uint32x4_t __p0) {
  38127. float32x4_t __ret;
  38128. __ret = (float32x4_t)(__p0);
  38129. return __ret;
  38130. }
  38131. #else
  38132. __ai float32x4_t vreinterpretq_f32_u32(uint32x4_t __p0) {
  38133. float32x4_t __ret;
  38134. __ret = (float32x4_t)(__p0);
  38135. return __ret;
  38136. }
  38137. #endif
  38138. #ifdef __LITTLE_ENDIAN__
  38139. __ai float32x4_t vreinterpretq_f32_u64(uint64x2_t __p0) {
  38140. float32x4_t __ret;
  38141. __ret = (float32x4_t)(__p0);
  38142. return __ret;
  38143. }
  38144. #else
  38145. __ai float32x4_t vreinterpretq_f32_u64(uint64x2_t __p0) {
  38146. float32x4_t __ret;
  38147. __ret = (float32x4_t)(__p0);
  38148. return __ret;
  38149. }
  38150. #endif
  38151. #ifdef __LITTLE_ENDIAN__
  38152. __ai float32x4_t vreinterpretq_f32_u16(uint16x8_t __p0) {
  38153. float32x4_t __ret;
  38154. __ret = (float32x4_t)(__p0);
  38155. return __ret;
  38156. }
  38157. #else
  38158. __ai float32x4_t vreinterpretq_f32_u16(uint16x8_t __p0) {
  38159. float32x4_t __ret;
  38160. __ret = (float32x4_t)(__p0);
  38161. return __ret;
  38162. }
  38163. #endif
  38164. #ifdef __LITTLE_ENDIAN__
  38165. __ai float32x4_t vreinterpretq_f32_s8(int8x16_t __p0) {
  38166. float32x4_t __ret;
  38167. __ret = (float32x4_t)(__p0);
  38168. return __ret;
  38169. }
  38170. #else
  38171. __ai float32x4_t vreinterpretq_f32_s8(int8x16_t __p0) {
  38172. float32x4_t __ret;
  38173. __ret = (float32x4_t)(__p0);
  38174. return __ret;
  38175. }
  38176. #endif
  38177. #ifdef __LITTLE_ENDIAN__
  38178. __ai float32x4_t vreinterpretq_f32_f64(float64x2_t __p0) {
  38179. float32x4_t __ret;
  38180. __ret = (float32x4_t)(__p0);
  38181. return __ret;
  38182. }
  38183. #else
  38184. __ai float32x4_t vreinterpretq_f32_f64(float64x2_t __p0) {
  38185. float32x4_t __ret;
  38186. __ret = (float32x4_t)(__p0);
  38187. return __ret;
  38188. }
  38189. #endif
  38190. #ifdef __LITTLE_ENDIAN__
  38191. __ai float32x4_t vreinterpretq_f32_f16(float16x8_t __p0) {
  38192. float32x4_t __ret;
  38193. __ret = (float32x4_t)(__p0);
  38194. return __ret;
  38195. }
  38196. #else
  38197. __ai float32x4_t vreinterpretq_f32_f16(float16x8_t __p0) {
  38198. float32x4_t __ret;
  38199. __ret = (float32x4_t)(__p0);
  38200. return __ret;
  38201. }
  38202. #endif
  38203. #ifdef __LITTLE_ENDIAN__
  38204. __ai float32x4_t vreinterpretq_f32_s32(int32x4_t __p0) {
  38205. float32x4_t __ret;
  38206. __ret = (float32x4_t)(__p0);
  38207. return __ret;
  38208. }
  38209. #else
  38210. __ai float32x4_t vreinterpretq_f32_s32(int32x4_t __p0) {
  38211. float32x4_t __ret;
  38212. __ret = (float32x4_t)(__p0);
  38213. return __ret;
  38214. }
  38215. #endif
  38216. #ifdef __LITTLE_ENDIAN__
  38217. __ai float32x4_t vreinterpretq_f32_s64(int64x2_t __p0) {
  38218. float32x4_t __ret;
  38219. __ret = (float32x4_t)(__p0);
  38220. return __ret;
  38221. }
  38222. #else
  38223. __ai float32x4_t vreinterpretq_f32_s64(int64x2_t __p0) {
  38224. float32x4_t __ret;
  38225. __ret = (float32x4_t)(__p0);
  38226. return __ret;
  38227. }
  38228. #endif
  38229. #ifdef __LITTLE_ENDIAN__
  38230. __ai float32x4_t vreinterpretq_f32_s16(int16x8_t __p0) {
  38231. float32x4_t __ret;
  38232. __ret = (float32x4_t)(__p0);
  38233. return __ret;
  38234. }
  38235. #else
  38236. __ai float32x4_t vreinterpretq_f32_s16(int16x8_t __p0) {
  38237. float32x4_t __ret;
  38238. __ret = (float32x4_t)(__p0);
  38239. return __ret;
  38240. }
  38241. #endif
  38242. #ifdef __LITTLE_ENDIAN__
  38243. __ai float16x8_t vreinterpretq_f16_p8(poly8x16_t __p0) {
  38244. float16x8_t __ret;
  38245. __ret = (float16x8_t)(__p0);
  38246. return __ret;
  38247. }
  38248. #else
  38249. __ai float16x8_t vreinterpretq_f16_p8(poly8x16_t __p0) {
  38250. float16x8_t __ret;
  38251. __ret = (float16x8_t)(__p0);
  38252. return __ret;
  38253. }
  38254. #endif
  38255. #ifdef __LITTLE_ENDIAN__
  38256. __ai float16x8_t vreinterpretq_f16_p128(poly128_t __p0) {
  38257. float16x8_t __ret;
  38258. __ret = (float16x8_t)(__p0);
  38259. return __ret;
  38260. }
  38261. #else
  38262. __ai float16x8_t vreinterpretq_f16_p128(poly128_t __p0) {
  38263. float16x8_t __ret;
  38264. __ret = (float16x8_t)(__p0);
  38265. return __ret;
  38266. }
  38267. #endif
  38268. #ifdef __LITTLE_ENDIAN__
  38269. __ai float16x8_t vreinterpretq_f16_p64(poly64x2_t __p0) {
  38270. float16x8_t __ret;
  38271. __ret = (float16x8_t)(__p0);
  38272. return __ret;
  38273. }
  38274. #else
  38275. __ai float16x8_t vreinterpretq_f16_p64(poly64x2_t __p0) {
  38276. float16x8_t __ret;
  38277. __ret = (float16x8_t)(__p0);
  38278. return __ret;
  38279. }
  38280. #endif
  38281. #ifdef __LITTLE_ENDIAN__
  38282. __ai float16x8_t vreinterpretq_f16_p16(poly16x8_t __p0) {
  38283. float16x8_t __ret;
  38284. __ret = (float16x8_t)(__p0);
  38285. return __ret;
  38286. }
  38287. #else
  38288. __ai float16x8_t vreinterpretq_f16_p16(poly16x8_t __p0) {
  38289. float16x8_t __ret;
  38290. __ret = (float16x8_t)(__p0);
  38291. return __ret;
  38292. }
  38293. #endif
  38294. #ifdef __LITTLE_ENDIAN__
  38295. __ai float16x8_t vreinterpretq_f16_u8(uint8x16_t __p0) {
  38296. float16x8_t __ret;
  38297. __ret = (float16x8_t)(__p0);
  38298. return __ret;
  38299. }
  38300. #else
  38301. __ai float16x8_t vreinterpretq_f16_u8(uint8x16_t __p0) {
  38302. float16x8_t __ret;
  38303. __ret = (float16x8_t)(__p0);
  38304. return __ret;
  38305. }
  38306. #endif
  38307. #ifdef __LITTLE_ENDIAN__
  38308. __ai float16x8_t vreinterpretq_f16_u32(uint32x4_t __p0) {
  38309. float16x8_t __ret;
  38310. __ret = (float16x8_t)(__p0);
  38311. return __ret;
  38312. }
  38313. #else
  38314. __ai float16x8_t vreinterpretq_f16_u32(uint32x4_t __p0) {
  38315. float16x8_t __ret;
  38316. __ret = (float16x8_t)(__p0);
  38317. return __ret;
  38318. }
  38319. #endif
  38320. #ifdef __LITTLE_ENDIAN__
  38321. __ai float16x8_t vreinterpretq_f16_u64(uint64x2_t __p0) {
  38322. float16x8_t __ret;
  38323. __ret = (float16x8_t)(__p0);
  38324. return __ret;
  38325. }
  38326. #else
  38327. __ai float16x8_t vreinterpretq_f16_u64(uint64x2_t __p0) {
  38328. float16x8_t __ret;
  38329. __ret = (float16x8_t)(__p0);
  38330. return __ret;
  38331. }
  38332. #endif
  38333. #ifdef __LITTLE_ENDIAN__
  38334. __ai float16x8_t vreinterpretq_f16_u16(uint16x8_t __p0) {
  38335. float16x8_t __ret;
  38336. __ret = (float16x8_t)(__p0);
  38337. return __ret;
  38338. }
  38339. #else
  38340. __ai float16x8_t vreinterpretq_f16_u16(uint16x8_t __p0) {
  38341. float16x8_t __ret;
  38342. __ret = (float16x8_t)(__p0);
  38343. return __ret;
  38344. }
  38345. #endif
  38346. #ifdef __LITTLE_ENDIAN__
  38347. __ai float16x8_t vreinterpretq_f16_s8(int8x16_t __p0) {
  38348. float16x8_t __ret;
  38349. __ret = (float16x8_t)(__p0);
  38350. return __ret;
  38351. }
  38352. #else
  38353. __ai float16x8_t vreinterpretq_f16_s8(int8x16_t __p0) {
  38354. float16x8_t __ret;
  38355. __ret = (float16x8_t)(__p0);
  38356. return __ret;
  38357. }
  38358. #endif
  38359. #ifdef __LITTLE_ENDIAN__
  38360. __ai float16x8_t vreinterpretq_f16_f64(float64x2_t __p0) {
  38361. float16x8_t __ret;
  38362. __ret = (float16x8_t)(__p0);
  38363. return __ret;
  38364. }
  38365. #else
  38366. __ai float16x8_t vreinterpretq_f16_f64(float64x2_t __p0) {
  38367. float16x8_t __ret;
  38368. __ret = (float16x8_t)(__p0);
  38369. return __ret;
  38370. }
  38371. #endif
  38372. #ifdef __LITTLE_ENDIAN__
  38373. __ai float16x8_t vreinterpretq_f16_f32(float32x4_t __p0) {
  38374. float16x8_t __ret;
  38375. __ret = (float16x8_t)(__p0);
  38376. return __ret;
  38377. }
  38378. #else
  38379. __ai float16x8_t vreinterpretq_f16_f32(float32x4_t __p0) {
  38380. float16x8_t __ret;
  38381. __ret = (float16x8_t)(__p0);
  38382. return __ret;
  38383. }
  38384. #endif
  38385. #ifdef __LITTLE_ENDIAN__
  38386. __ai float16x8_t vreinterpretq_f16_s32(int32x4_t __p0) {
  38387. float16x8_t __ret;
  38388. __ret = (float16x8_t)(__p0);
  38389. return __ret;
  38390. }
  38391. #else
  38392. __ai float16x8_t vreinterpretq_f16_s32(int32x4_t __p0) {
  38393. float16x8_t __ret;
  38394. __ret = (float16x8_t)(__p0);
  38395. return __ret;
  38396. }
  38397. #endif
  38398. #ifdef __LITTLE_ENDIAN__
  38399. __ai float16x8_t vreinterpretq_f16_s64(int64x2_t __p0) {
  38400. float16x8_t __ret;
  38401. __ret = (float16x8_t)(__p0);
  38402. return __ret;
  38403. }
  38404. #else
  38405. __ai float16x8_t vreinterpretq_f16_s64(int64x2_t __p0) {
  38406. float16x8_t __ret;
  38407. __ret = (float16x8_t)(__p0);
  38408. return __ret;
  38409. }
  38410. #endif
  38411. #ifdef __LITTLE_ENDIAN__
  38412. __ai float16x8_t vreinterpretq_f16_s16(int16x8_t __p0) {
  38413. float16x8_t __ret;
  38414. __ret = (float16x8_t)(__p0);
  38415. return __ret;
  38416. }
  38417. #else
  38418. __ai float16x8_t vreinterpretq_f16_s16(int16x8_t __p0) {
  38419. float16x8_t __ret;
  38420. __ret = (float16x8_t)(__p0);
  38421. return __ret;
  38422. }
  38423. #endif
  38424. #ifdef __LITTLE_ENDIAN__
  38425. __ai int32x4_t vreinterpretq_s32_p8(poly8x16_t __p0) {
  38426. int32x4_t __ret;
  38427. __ret = (int32x4_t)(__p0);
  38428. return __ret;
  38429. }
  38430. #else
  38431. __ai int32x4_t vreinterpretq_s32_p8(poly8x16_t __p0) {
  38432. int32x4_t __ret;
  38433. __ret = (int32x4_t)(__p0);
  38434. return __ret;
  38435. }
  38436. #endif
  38437. #ifdef __LITTLE_ENDIAN__
  38438. __ai int32x4_t vreinterpretq_s32_p128(poly128_t __p0) {
  38439. int32x4_t __ret;
  38440. __ret = (int32x4_t)(__p0);
  38441. return __ret;
  38442. }
  38443. #else
  38444. __ai int32x4_t vreinterpretq_s32_p128(poly128_t __p0) {
  38445. int32x4_t __ret;
  38446. __ret = (int32x4_t)(__p0);
  38447. return __ret;
  38448. }
  38449. #endif
  38450. #ifdef __LITTLE_ENDIAN__
  38451. __ai int32x4_t vreinterpretq_s32_p64(poly64x2_t __p0) {
  38452. int32x4_t __ret;
  38453. __ret = (int32x4_t)(__p0);
  38454. return __ret;
  38455. }
  38456. #else
  38457. __ai int32x4_t vreinterpretq_s32_p64(poly64x2_t __p0) {
  38458. int32x4_t __ret;
  38459. __ret = (int32x4_t)(__p0);
  38460. return __ret;
  38461. }
  38462. #endif
  38463. #ifdef __LITTLE_ENDIAN__
  38464. __ai int32x4_t vreinterpretq_s32_p16(poly16x8_t __p0) {
  38465. int32x4_t __ret;
  38466. __ret = (int32x4_t)(__p0);
  38467. return __ret;
  38468. }
  38469. #else
  38470. __ai int32x4_t vreinterpretq_s32_p16(poly16x8_t __p0) {
  38471. int32x4_t __ret;
  38472. __ret = (int32x4_t)(__p0);
  38473. return __ret;
  38474. }
  38475. #endif
  38476. #ifdef __LITTLE_ENDIAN__
  38477. __ai int32x4_t vreinterpretq_s32_u8(uint8x16_t __p0) {
  38478. int32x4_t __ret;
  38479. __ret = (int32x4_t)(__p0);
  38480. return __ret;
  38481. }
  38482. #else
  38483. __ai int32x4_t vreinterpretq_s32_u8(uint8x16_t __p0) {
  38484. int32x4_t __ret;
  38485. __ret = (int32x4_t)(__p0);
  38486. return __ret;
  38487. }
  38488. #endif
  38489. #ifdef __LITTLE_ENDIAN__
  38490. __ai int32x4_t vreinterpretq_s32_u32(uint32x4_t __p0) {
  38491. int32x4_t __ret;
  38492. __ret = (int32x4_t)(__p0);
  38493. return __ret;
  38494. }
  38495. #else
  38496. __ai int32x4_t vreinterpretq_s32_u32(uint32x4_t __p0) {
  38497. int32x4_t __ret;
  38498. __ret = (int32x4_t)(__p0);
  38499. return __ret;
  38500. }
  38501. #endif
  38502. #ifdef __LITTLE_ENDIAN__
  38503. __ai int32x4_t vreinterpretq_s32_u64(uint64x2_t __p0) {
  38504. int32x4_t __ret;
  38505. __ret = (int32x4_t)(__p0);
  38506. return __ret;
  38507. }
  38508. #else
  38509. __ai int32x4_t vreinterpretq_s32_u64(uint64x2_t __p0) {
  38510. int32x4_t __ret;
  38511. __ret = (int32x4_t)(__p0);
  38512. return __ret;
  38513. }
  38514. #endif
  38515. #ifdef __LITTLE_ENDIAN__
  38516. __ai int32x4_t vreinterpretq_s32_u16(uint16x8_t __p0) {
  38517. int32x4_t __ret;
  38518. __ret = (int32x4_t)(__p0);
  38519. return __ret;
  38520. }
  38521. #else
  38522. __ai int32x4_t vreinterpretq_s32_u16(uint16x8_t __p0) {
  38523. int32x4_t __ret;
  38524. __ret = (int32x4_t)(__p0);
  38525. return __ret;
  38526. }
  38527. #endif
  38528. #ifdef __LITTLE_ENDIAN__
  38529. __ai int32x4_t vreinterpretq_s32_s8(int8x16_t __p0) {
  38530. int32x4_t __ret;
  38531. __ret = (int32x4_t)(__p0);
  38532. return __ret;
  38533. }
  38534. #else
  38535. __ai int32x4_t vreinterpretq_s32_s8(int8x16_t __p0) {
  38536. int32x4_t __ret;
  38537. __ret = (int32x4_t)(__p0);
  38538. return __ret;
  38539. }
  38540. #endif
  38541. #ifdef __LITTLE_ENDIAN__
  38542. __ai int32x4_t vreinterpretq_s32_f64(float64x2_t __p0) {
  38543. int32x4_t __ret;
  38544. __ret = (int32x4_t)(__p0);
  38545. return __ret;
  38546. }
  38547. #else
  38548. __ai int32x4_t vreinterpretq_s32_f64(float64x2_t __p0) {
  38549. int32x4_t __ret;
  38550. __ret = (int32x4_t)(__p0);
  38551. return __ret;
  38552. }
  38553. #endif
  38554. #ifdef __LITTLE_ENDIAN__
  38555. __ai int32x4_t vreinterpretq_s32_f32(float32x4_t __p0) {
  38556. int32x4_t __ret;
  38557. __ret = (int32x4_t)(__p0);
  38558. return __ret;
  38559. }
  38560. #else
  38561. __ai int32x4_t vreinterpretq_s32_f32(float32x4_t __p0) {
  38562. int32x4_t __ret;
  38563. __ret = (int32x4_t)(__p0);
  38564. return __ret;
  38565. }
  38566. #endif
  38567. #ifdef __LITTLE_ENDIAN__
  38568. __ai int32x4_t vreinterpretq_s32_f16(float16x8_t __p0) {
  38569. int32x4_t __ret;
  38570. __ret = (int32x4_t)(__p0);
  38571. return __ret;
  38572. }
  38573. #else
  38574. __ai int32x4_t vreinterpretq_s32_f16(float16x8_t __p0) {
  38575. int32x4_t __ret;
  38576. __ret = (int32x4_t)(__p0);
  38577. return __ret;
  38578. }
  38579. #endif
  38580. #ifdef __LITTLE_ENDIAN__
  38581. __ai int32x4_t vreinterpretq_s32_s64(int64x2_t __p0) {
  38582. int32x4_t __ret;
  38583. __ret = (int32x4_t)(__p0);
  38584. return __ret;
  38585. }
  38586. #else
  38587. __ai int32x4_t vreinterpretq_s32_s64(int64x2_t __p0) {
  38588. int32x4_t __ret;
  38589. __ret = (int32x4_t)(__p0);
  38590. return __ret;
  38591. }
  38592. #endif
  38593. #ifdef __LITTLE_ENDIAN__
  38594. __ai int32x4_t vreinterpretq_s32_s16(int16x8_t __p0) {
  38595. int32x4_t __ret;
  38596. __ret = (int32x4_t)(__p0);
  38597. return __ret;
  38598. }
  38599. #else
  38600. __ai int32x4_t vreinterpretq_s32_s16(int16x8_t __p0) {
  38601. int32x4_t __ret;
  38602. __ret = (int32x4_t)(__p0);
  38603. return __ret;
  38604. }
  38605. #endif
  38606. #ifdef __LITTLE_ENDIAN__
  38607. __ai int64x2_t vreinterpretq_s64_p8(poly8x16_t __p0) {
  38608. int64x2_t __ret;
  38609. __ret = (int64x2_t)(__p0);
  38610. return __ret;
  38611. }
  38612. #else
  38613. __ai int64x2_t vreinterpretq_s64_p8(poly8x16_t __p0) {
  38614. int64x2_t __ret;
  38615. __ret = (int64x2_t)(__p0);
  38616. return __ret;
  38617. }
  38618. #endif
  38619. #ifdef __LITTLE_ENDIAN__
  38620. __ai int64x2_t vreinterpretq_s64_p128(poly128_t __p0) {
  38621. int64x2_t __ret;
  38622. __ret = (int64x2_t)(__p0);
  38623. return __ret;
  38624. }
  38625. #else
  38626. __ai int64x2_t vreinterpretq_s64_p128(poly128_t __p0) {
  38627. int64x2_t __ret;
  38628. __ret = (int64x2_t)(__p0);
  38629. return __ret;
  38630. }
  38631. #endif
  38632. #ifdef __LITTLE_ENDIAN__
  38633. __ai int64x2_t vreinterpretq_s64_p64(poly64x2_t __p0) {
  38634. int64x2_t __ret;
  38635. __ret = (int64x2_t)(__p0);
  38636. return __ret;
  38637. }
  38638. #else
  38639. __ai int64x2_t vreinterpretq_s64_p64(poly64x2_t __p0) {
  38640. int64x2_t __ret;
  38641. __ret = (int64x2_t)(__p0);
  38642. return __ret;
  38643. }
  38644. #endif
  38645. #ifdef __LITTLE_ENDIAN__
  38646. __ai int64x2_t vreinterpretq_s64_p16(poly16x8_t __p0) {
  38647. int64x2_t __ret;
  38648. __ret = (int64x2_t)(__p0);
  38649. return __ret;
  38650. }
  38651. #else
  38652. __ai int64x2_t vreinterpretq_s64_p16(poly16x8_t __p0) {
  38653. int64x2_t __ret;
  38654. __ret = (int64x2_t)(__p0);
  38655. return __ret;
  38656. }
  38657. #endif
  38658. #ifdef __LITTLE_ENDIAN__
  38659. __ai int64x2_t vreinterpretq_s64_u8(uint8x16_t __p0) {
  38660. int64x2_t __ret;
  38661. __ret = (int64x2_t)(__p0);
  38662. return __ret;
  38663. }
  38664. #else
  38665. __ai int64x2_t vreinterpretq_s64_u8(uint8x16_t __p0) {
  38666. int64x2_t __ret;
  38667. __ret = (int64x2_t)(__p0);
  38668. return __ret;
  38669. }
  38670. #endif
  38671. #ifdef __LITTLE_ENDIAN__
  38672. __ai int64x2_t vreinterpretq_s64_u32(uint32x4_t __p0) {
  38673. int64x2_t __ret;
  38674. __ret = (int64x2_t)(__p0);
  38675. return __ret;
  38676. }
  38677. #else
  38678. __ai int64x2_t vreinterpretq_s64_u32(uint32x4_t __p0) {
  38679. int64x2_t __ret;
  38680. __ret = (int64x2_t)(__p0);
  38681. return __ret;
  38682. }
  38683. #endif
  38684. #ifdef __LITTLE_ENDIAN__
  38685. __ai int64x2_t vreinterpretq_s64_u64(uint64x2_t __p0) {
  38686. int64x2_t __ret;
  38687. __ret = (int64x2_t)(__p0);
  38688. return __ret;
  38689. }
  38690. #else
  38691. __ai int64x2_t vreinterpretq_s64_u64(uint64x2_t __p0) {
  38692. int64x2_t __ret;
  38693. __ret = (int64x2_t)(__p0);
  38694. return __ret;
  38695. }
  38696. #endif
  38697. #ifdef __LITTLE_ENDIAN__
  38698. __ai int64x2_t vreinterpretq_s64_u16(uint16x8_t __p0) {
  38699. int64x2_t __ret;
  38700. __ret = (int64x2_t)(__p0);
  38701. return __ret;
  38702. }
  38703. #else
  38704. __ai int64x2_t vreinterpretq_s64_u16(uint16x8_t __p0) {
  38705. int64x2_t __ret;
  38706. __ret = (int64x2_t)(__p0);
  38707. return __ret;
  38708. }
  38709. #endif
  38710. #ifdef __LITTLE_ENDIAN__
  38711. __ai int64x2_t vreinterpretq_s64_s8(int8x16_t __p0) {
  38712. int64x2_t __ret;
  38713. __ret = (int64x2_t)(__p0);
  38714. return __ret;
  38715. }
  38716. #else
  38717. __ai int64x2_t vreinterpretq_s64_s8(int8x16_t __p0) {
  38718. int64x2_t __ret;
  38719. __ret = (int64x2_t)(__p0);
  38720. return __ret;
  38721. }
  38722. #endif
  38723. #ifdef __LITTLE_ENDIAN__
  38724. __ai int64x2_t vreinterpretq_s64_f64(float64x2_t __p0) {
  38725. int64x2_t __ret;
  38726. __ret = (int64x2_t)(__p0);
  38727. return __ret;
  38728. }
  38729. #else
  38730. __ai int64x2_t vreinterpretq_s64_f64(float64x2_t __p0) {
  38731. int64x2_t __ret;
  38732. __ret = (int64x2_t)(__p0);
  38733. return __ret;
  38734. }
  38735. #endif
  38736. #ifdef __LITTLE_ENDIAN__
  38737. __ai int64x2_t vreinterpretq_s64_f32(float32x4_t __p0) {
  38738. int64x2_t __ret;
  38739. __ret = (int64x2_t)(__p0);
  38740. return __ret;
  38741. }
  38742. #else
  38743. __ai int64x2_t vreinterpretq_s64_f32(float32x4_t __p0) {
  38744. int64x2_t __ret;
  38745. __ret = (int64x2_t)(__p0);
  38746. return __ret;
  38747. }
  38748. #endif
  38749. #ifdef __LITTLE_ENDIAN__
  38750. __ai int64x2_t vreinterpretq_s64_f16(float16x8_t __p0) {
  38751. int64x2_t __ret;
  38752. __ret = (int64x2_t)(__p0);
  38753. return __ret;
  38754. }
  38755. #else
  38756. __ai int64x2_t vreinterpretq_s64_f16(float16x8_t __p0) {
  38757. int64x2_t __ret;
  38758. __ret = (int64x2_t)(__p0);
  38759. return __ret;
  38760. }
  38761. #endif
  38762. #ifdef __LITTLE_ENDIAN__
  38763. __ai int64x2_t vreinterpretq_s64_s32(int32x4_t __p0) {
  38764. int64x2_t __ret;
  38765. __ret = (int64x2_t)(__p0);
  38766. return __ret;
  38767. }
  38768. #else
  38769. __ai int64x2_t vreinterpretq_s64_s32(int32x4_t __p0) {
  38770. int64x2_t __ret;
  38771. __ret = (int64x2_t)(__p0);
  38772. return __ret;
  38773. }
  38774. #endif
  38775. #ifdef __LITTLE_ENDIAN__
  38776. __ai int64x2_t vreinterpretq_s64_s16(int16x8_t __p0) {
  38777. int64x2_t __ret;
  38778. __ret = (int64x2_t)(__p0);
  38779. return __ret;
  38780. }
  38781. #else
  38782. __ai int64x2_t vreinterpretq_s64_s16(int16x8_t __p0) {
  38783. int64x2_t __ret;
  38784. __ret = (int64x2_t)(__p0);
  38785. return __ret;
  38786. }
  38787. #endif
  38788. #ifdef __LITTLE_ENDIAN__
  38789. __ai int16x8_t vreinterpretq_s16_p8(poly8x16_t __p0) {
  38790. int16x8_t __ret;
  38791. __ret = (int16x8_t)(__p0);
  38792. return __ret;
  38793. }
  38794. #else
  38795. __ai int16x8_t vreinterpretq_s16_p8(poly8x16_t __p0) {
  38796. int16x8_t __ret;
  38797. __ret = (int16x8_t)(__p0);
  38798. return __ret;
  38799. }
  38800. #endif
  38801. #ifdef __LITTLE_ENDIAN__
  38802. __ai int16x8_t vreinterpretq_s16_p128(poly128_t __p0) {
  38803. int16x8_t __ret;
  38804. __ret = (int16x8_t)(__p0);
  38805. return __ret;
  38806. }
  38807. #else
  38808. __ai int16x8_t vreinterpretq_s16_p128(poly128_t __p0) {
  38809. int16x8_t __ret;
  38810. __ret = (int16x8_t)(__p0);
  38811. return __ret;
  38812. }
  38813. #endif
  38814. #ifdef __LITTLE_ENDIAN__
  38815. __ai int16x8_t vreinterpretq_s16_p64(poly64x2_t __p0) {
  38816. int16x8_t __ret;
  38817. __ret = (int16x8_t)(__p0);
  38818. return __ret;
  38819. }
  38820. #else
  38821. __ai int16x8_t vreinterpretq_s16_p64(poly64x2_t __p0) {
  38822. int16x8_t __ret;
  38823. __ret = (int16x8_t)(__p0);
  38824. return __ret;
  38825. }
  38826. #endif
  38827. #ifdef __LITTLE_ENDIAN__
  38828. __ai int16x8_t vreinterpretq_s16_p16(poly16x8_t __p0) {
  38829. int16x8_t __ret;
  38830. __ret = (int16x8_t)(__p0);
  38831. return __ret;
  38832. }
  38833. #else
  38834. __ai int16x8_t vreinterpretq_s16_p16(poly16x8_t __p0) {
  38835. int16x8_t __ret;
  38836. __ret = (int16x8_t)(__p0);
  38837. return __ret;
  38838. }
  38839. #endif
  38840. #ifdef __LITTLE_ENDIAN__
  38841. __ai int16x8_t vreinterpretq_s16_u8(uint8x16_t __p0) {
  38842. int16x8_t __ret;
  38843. __ret = (int16x8_t)(__p0);
  38844. return __ret;
  38845. }
  38846. #else
  38847. __ai int16x8_t vreinterpretq_s16_u8(uint8x16_t __p0) {
  38848. int16x8_t __ret;
  38849. __ret = (int16x8_t)(__p0);
  38850. return __ret;
  38851. }
  38852. #endif
  38853. #ifdef __LITTLE_ENDIAN__
  38854. __ai int16x8_t vreinterpretq_s16_u32(uint32x4_t __p0) {
  38855. int16x8_t __ret;
  38856. __ret = (int16x8_t)(__p0);
  38857. return __ret;
  38858. }
  38859. #else
  38860. __ai int16x8_t vreinterpretq_s16_u32(uint32x4_t __p0) {
  38861. int16x8_t __ret;
  38862. __ret = (int16x8_t)(__p0);
  38863. return __ret;
  38864. }
  38865. #endif
  38866. #ifdef __LITTLE_ENDIAN__
  38867. __ai int16x8_t vreinterpretq_s16_u64(uint64x2_t __p0) {
  38868. int16x8_t __ret;
  38869. __ret = (int16x8_t)(__p0);
  38870. return __ret;
  38871. }
  38872. #else
  38873. __ai int16x8_t vreinterpretq_s16_u64(uint64x2_t __p0) {
  38874. int16x8_t __ret;
  38875. __ret = (int16x8_t)(__p0);
  38876. return __ret;
  38877. }
  38878. #endif
  38879. #ifdef __LITTLE_ENDIAN__
  38880. __ai int16x8_t vreinterpretq_s16_u16(uint16x8_t __p0) {
  38881. int16x8_t __ret;
  38882. __ret = (int16x8_t)(__p0);
  38883. return __ret;
  38884. }
  38885. #else
  38886. __ai int16x8_t vreinterpretq_s16_u16(uint16x8_t __p0) {
  38887. int16x8_t __ret;
  38888. __ret = (int16x8_t)(__p0);
  38889. return __ret;
  38890. }
  38891. #endif
  38892. #ifdef __LITTLE_ENDIAN__
  38893. __ai int16x8_t vreinterpretq_s16_s8(int8x16_t __p0) {
  38894. int16x8_t __ret;
  38895. __ret = (int16x8_t)(__p0);
  38896. return __ret;
  38897. }
  38898. #else
  38899. __ai int16x8_t vreinterpretq_s16_s8(int8x16_t __p0) {
  38900. int16x8_t __ret;
  38901. __ret = (int16x8_t)(__p0);
  38902. return __ret;
  38903. }
  38904. #endif
  38905. #ifdef __LITTLE_ENDIAN__
  38906. __ai int16x8_t vreinterpretq_s16_f64(float64x2_t __p0) {
  38907. int16x8_t __ret;
  38908. __ret = (int16x8_t)(__p0);
  38909. return __ret;
  38910. }
  38911. #else
  38912. __ai int16x8_t vreinterpretq_s16_f64(float64x2_t __p0) {
  38913. int16x8_t __ret;
  38914. __ret = (int16x8_t)(__p0);
  38915. return __ret;
  38916. }
  38917. #endif
  38918. #ifdef __LITTLE_ENDIAN__
  38919. __ai int16x8_t vreinterpretq_s16_f32(float32x4_t __p0) {
  38920. int16x8_t __ret;
  38921. __ret = (int16x8_t)(__p0);
  38922. return __ret;
  38923. }
  38924. #else
  38925. __ai int16x8_t vreinterpretq_s16_f32(float32x4_t __p0) {
  38926. int16x8_t __ret;
  38927. __ret = (int16x8_t)(__p0);
  38928. return __ret;
  38929. }
  38930. #endif
  38931. #ifdef __LITTLE_ENDIAN__
  38932. __ai int16x8_t vreinterpretq_s16_f16(float16x8_t __p0) {
  38933. int16x8_t __ret;
  38934. __ret = (int16x8_t)(__p0);
  38935. return __ret;
  38936. }
  38937. #else
  38938. __ai int16x8_t vreinterpretq_s16_f16(float16x8_t __p0) {
  38939. int16x8_t __ret;
  38940. __ret = (int16x8_t)(__p0);
  38941. return __ret;
  38942. }
  38943. #endif
  38944. #ifdef __LITTLE_ENDIAN__
  38945. __ai int16x8_t vreinterpretq_s16_s32(int32x4_t __p0) {
  38946. int16x8_t __ret;
  38947. __ret = (int16x8_t)(__p0);
  38948. return __ret;
  38949. }
  38950. #else
  38951. __ai int16x8_t vreinterpretq_s16_s32(int32x4_t __p0) {
  38952. int16x8_t __ret;
  38953. __ret = (int16x8_t)(__p0);
  38954. return __ret;
  38955. }
  38956. #endif
  38957. #ifdef __LITTLE_ENDIAN__
  38958. __ai int16x8_t vreinterpretq_s16_s64(int64x2_t __p0) {
  38959. int16x8_t __ret;
  38960. __ret = (int16x8_t)(__p0);
  38961. return __ret;
  38962. }
  38963. #else
  38964. __ai int16x8_t vreinterpretq_s16_s64(int64x2_t __p0) {
  38965. int16x8_t __ret;
  38966. __ret = (int16x8_t)(__p0);
  38967. return __ret;
  38968. }
  38969. #endif
  38970. #ifdef __LITTLE_ENDIAN__
  38971. __ai uint8x8_t vreinterpret_u8_p8(poly8x8_t __p0) {
  38972. uint8x8_t __ret;
  38973. __ret = (uint8x8_t)(__p0);
  38974. return __ret;
  38975. }
  38976. #else
  38977. __ai uint8x8_t vreinterpret_u8_p8(poly8x8_t __p0) {
  38978. uint8x8_t __ret;
  38979. __ret = (uint8x8_t)(__p0);
  38980. return __ret;
  38981. }
  38982. #endif
  38983. #ifdef __LITTLE_ENDIAN__
  38984. __ai uint8x8_t vreinterpret_u8_p64(poly64x1_t __p0) {
  38985. uint8x8_t __ret;
  38986. __ret = (uint8x8_t)(__p0);
  38987. return __ret;
  38988. }
  38989. #else
  38990. __ai uint8x8_t vreinterpret_u8_p64(poly64x1_t __p0) {
  38991. uint8x8_t __ret;
  38992. __ret = (uint8x8_t)(__p0);
  38993. return __ret;
  38994. }
  38995. #endif
  38996. #ifdef __LITTLE_ENDIAN__
  38997. __ai uint8x8_t vreinterpret_u8_p16(poly16x4_t __p0) {
  38998. uint8x8_t __ret;
  38999. __ret = (uint8x8_t)(__p0);
  39000. return __ret;
  39001. }
  39002. #else
  39003. __ai uint8x8_t vreinterpret_u8_p16(poly16x4_t __p0) {
  39004. uint8x8_t __ret;
  39005. __ret = (uint8x8_t)(__p0);
  39006. return __ret;
  39007. }
  39008. #endif
  39009. #ifdef __LITTLE_ENDIAN__
  39010. __ai uint8x8_t vreinterpret_u8_u32(uint32x2_t __p0) {
  39011. uint8x8_t __ret;
  39012. __ret = (uint8x8_t)(__p0);
  39013. return __ret;
  39014. }
  39015. #else
  39016. __ai uint8x8_t vreinterpret_u8_u32(uint32x2_t __p0) {
  39017. uint8x8_t __ret;
  39018. __ret = (uint8x8_t)(__p0);
  39019. return __ret;
  39020. }
  39021. #endif
  39022. #ifdef __LITTLE_ENDIAN__
  39023. __ai uint8x8_t vreinterpret_u8_u64(uint64x1_t __p0) {
  39024. uint8x8_t __ret;
  39025. __ret = (uint8x8_t)(__p0);
  39026. return __ret;
  39027. }
  39028. #else
  39029. __ai uint8x8_t vreinterpret_u8_u64(uint64x1_t __p0) {
  39030. uint8x8_t __ret;
  39031. __ret = (uint8x8_t)(__p0);
  39032. return __ret;
  39033. }
  39034. #endif
  39035. #ifdef __LITTLE_ENDIAN__
  39036. __ai uint8x8_t vreinterpret_u8_u16(uint16x4_t __p0) {
  39037. uint8x8_t __ret;
  39038. __ret = (uint8x8_t)(__p0);
  39039. return __ret;
  39040. }
  39041. #else
  39042. __ai uint8x8_t vreinterpret_u8_u16(uint16x4_t __p0) {
  39043. uint8x8_t __ret;
  39044. __ret = (uint8x8_t)(__p0);
  39045. return __ret;
  39046. }
  39047. #endif
  39048. #ifdef __LITTLE_ENDIAN__
  39049. __ai uint8x8_t vreinterpret_u8_s8(int8x8_t __p0) {
  39050. uint8x8_t __ret;
  39051. __ret = (uint8x8_t)(__p0);
  39052. return __ret;
  39053. }
  39054. #else
  39055. __ai uint8x8_t vreinterpret_u8_s8(int8x8_t __p0) {
  39056. uint8x8_t __ret;
  39057. __ret = (uint8x8_t)(__p0);
  39058. return __ret;
  39059. }
  39060. #endif
  39061. #ifdef __LITTLE_ENDIAN__
  39062. __ai uint8x8_t vreinterpret_u8_f64(float64x1_t __p0) {
  39063. uint8x8_t __ret;
  39064. __ret = (uint8x8_t)(__p0);
  39065. return __ret;
  39066. }
  39067. #else
  39068. __ai uint8x8_t vreinterpret_u8_f64(float64x1_t __p0) {
  39069. uint8x8_t __ret;
  39070. __ret = (uint8x8_t)(__p0);
  39071. return __ret;
  39072. }
  39073. #endif
  39074. #ifdef __LITTLE_ENDIAN__
  39075. __ai uint8x8_t vreinterpret_u8_f32(float32x2_t __p0) {
  39076. uint8x8_t __ret;
  39077. __ret = (uint8x8_t)(__p0);
  39078. return __ret;
  39079. }
  39080. #else
  39081. __ai uint8x8_t vreinterpret_u8_f32(float32x2_t __p0) {
  39082. uint8x8_t __ret;
  39083. __ret = (uint8x8_t)(__p0);
  39084. return __ret;
  39085. }
  39086. #endif
  39087. #ifdef __LITTLE_ENDIAN__
  39088. __ai uint8x8_t vreinterpret_u8_f16(float16x4_t __p0) {
  39089. uint8x8_t __ret;
  39090. __ret = (uint8x8_t)(__p0);
  39091. return __ret;
  39092. }
  39093. #else
  39094. __ai uint8x8_t vreinterpret_u8_f16(float16x4_t __p0) {
  39095. uint8x8_t __ret;
  39096. __ret = (uint8x8_t)(__p0);
  39097. return __ret;
  39098. }
  39099. #endif
  39100. #ifdef __LITTLE_ENDIAN__
  39101. __ai uint8x8_t vreinterpret_u8_s32(int32x2_t __p0) {
  39102. uint8x8_t __ret;
  39103. __ret = (uint8x8_t)(__p0);
  39104. return __ret;
  39105. }
  39106. #else
  39107. __ai uint8x8_t vreinterpret_u8_s32(int32x2_t __p0) {
  39108. uint8x8_t __ret;
  39109. __ret = (uint8x8_t)(__p0);
  39110. return __ret;
  39111. }
  39112. #endif
  39113. #ifdef __LITTLE_ENDIAN__
  39114. __ai uint8x8_t vreinterpret_u8_s64(int64x1_t __p0) {
  39115. uint8x8_t __ret;
  39116. __ret = (uint8x8_t)(__p0);
  39117. return __ret;
  39118. }
  39119. #else
  39120. __ai uint8x8_t vreinterpret_u8_s64(int64x1_t __p0) {
  39121. uint8x8_t __ret;
  39122. __ret = (uint8x8_t)(__p0);
  39123. return __ret;
  39124. }
  39125. #endif
  39126. #ifdef __LITTLE_ENDIAN__
  39127. __ai uint8x8_t vreinterpret_u8_s16(int16x4_t __p0) {
  39128. uint8x8_t __ret;
  39129. __ret = (uint8x8_t)(__p0);
  39130. return __ret;
  39131. }
  39132. #else
  39133. __ai uint8x8_t vreinterpret_u8_s16(int16x4_t __p0) {
  39134. uint8x8_t __ret;
  39135. __ret = (uint8x8_t)(__p0);
  39136. return __ret;
  39137. }
  39138. #endif
  39139. #ifdef __LITTLE_ENDIAN__
  39140. __ai uint32x2_t vreinterpret_u32_p8(poly8x8_t __p0) {
  39141. uint32x2_t __ret;
  39142. __ret = (uint32x2_t)(__p0);
  39143. return __ret;
  39144. }
  39145. #else
  39146. __ai uint32x2_t vreinterpret_u32_p8(poly8x8_t __p0) {
  39147. uint32x2_t __ret;
  39148. __ret = (uint32x2_t)(__p0);
  39149. return __ret;
  39150. }
  39151. #endif
  39152. #ifdef __LITTLE_ENDIAN__
  39153. __ai uint32x2_t vreinterpret_u32_p64(poly64x1_t __p0) {
  39154. uint32x2_t __ret;
  39155. __ret = (uint32x2_t)(__p0);
  39156. return __ret;
  39157. }
  39158. #else
  39159. __ai uint32x2_t vreinterpret_u32_p64(poly64x1_t __p0) {
  39160. uint32x2_t __ret;
  39161. __ret = (uint32x2_t)(__p0);
  39162. return __ret;
  39163. }
  39164. #endif
  39165. #ifdef __LITTLE_ENDIAN__
  39166. __ai uint32x2_t vreinterpret_u32_p16(poly16x4_t __p0) {
  39167. uint32x2_t __ret;
  39168. __ret = (uint32x2_t)(__p0);
  39169. return __ret;
  39170. }
  39171. #else
  39172. __ai uint32x2_t vreinterpret_u32_p16(poly16x4_t __p0) {
  39173. uint32x2_t __ret;
  39174. __ret = (uint32x2_t)(__p0);
  39175. return __ret;
  39176. }
  39177. #endif
  39178. #ifdef __LITTLE_ENDIAN__
  39179. __ai uint32x2_t vreinterpret_u32_u8(uint8x8_t __p0) {
  39180. uint32x2_t __ret;
  39181. __ret = (uint32x2_t)(__p0);
  39182. return __ret;
  39183. }
  39184. #else
  39185. __ai uint32x2_t vreinterpret_u32_u8(uint8x8_t __p0) {
  39186. uint32x2_t __ret;
  39187. __ret = (uint32x2_t)(__p0);
  39188. return __ret;
  39189. }
  39190. #endif
  39191. #ifdef __LITTLE_ENDIAN__
  39192. __ai uint32x2_t vreinterpret_u32_u64(uint64x1_t __p0) {
  39193. uint32x2_t __ret;
  39194. __ret = (uint32x2_t)(__p0);
  39195. return __ret;
  39196. }
  39197. #else
  39198. __ai uint32x2_t vreinterpret_u32_u64(uint64x1_t __p0) {
  39199. uint32x2_t __ret;
  39200. __ret = (uint32x2_t)(__p0);
  39201. return __ret;
  39202. }
  39203. #endif
  39204. #ifdef __LITTLE_ENDIAN__
  39205. __ai uint32x2_t vreinterpret_u32_u16(uint16x4_t __p0) {
  39206. uint32x2_t __ret;
  39207. __ret = (uint32x2_t)(__p0);
  39208. return __ret;
  39209. }
  39210. #else
  39211. __ai uint32x2_t vreinterpret_u32_u16(uint16x4_t __p0) {
  39212. uint32x2_t __ret;
  39213. __ret = (uint32x2_t)(__p0);
  39214. return __ret;
  39215. }
  39216. #endif
  39217. #ifdef __LITTLE_ENDIAN__
  39218. __ai uint32x2_t vreinterpret_u32_s8(int8x8_t __p0) {
  39219. uint32x2_t __ret;
  39220. __ret = (uint32x2_t)(__p0);
  39221. return __ret;
  39222. }
  39223. #else
  39224. __ai uint32x2_t vreinterpret_u32_s8(int8x8_t __p0) {
  39225. uint32x2_t __ret;
  39226. __ret = (uint32x2_t)(__p0);
  39227. return __ret;
  39228. }
  39229. #endif
  39230. #ifdef __LITTLE_ENDIAN__
  39231. __ai uint32x2_t vreinterpret_u32_f64(float64x1_t __p0) {
  39232. uint32x2_t __ret;
  39233. __ret = (uint32x2_t)(__p0);
  39234. return __ret;
  39235. }
  39236. #else
  39237. __ai uint32x2_t vreinterpret_u32_f64(float64x1_t __p0) {
  39238. uint32x2_t __ret;
  39239. __ret = (uint32x2_t)(__p0);
  39240. return __ret;
  39241. }
  39242. #endif
  39243. #ifdef __LITTLE_ENDIAN__
  39244. __ai uint32x2_t vreinterpret_u32_f32(float32x2_t __p0) {
  39245. uint32x2_t __ret;
  39246. __ret = (uint32x2_t)(__p0);
  39247. return __ret;
  39248. }
  39249. #else
  39250. __ai uint32x2_t vreinterpret_u32_f32(float32x2_t __p0) {
  39251. uint32x2_t __ret;
  39252. __ret = (uint32x2_t)(__p0);
  39253. return __ret;
  39254. }
  39255. #endif
  39256. #ifdef __LITTLE_ENDIAN__
  39257. __ai uint32x2_t vreinterpret_u32_f16(float16x4_t __p0) {
  39258. uint32x2_t __ret;
  39259. __ret = (uint32x2_t)(__p0);
  39260. return __ret;
  39261. }
  39262. #else
  39263. __ai uint32x2_t vreinterpret_u32_f16(float16x4_t __p0) {
  39264. uint32x2_t __ret;
  39265. __ret = (uint32x2_t)(__p0);
  39266. return __ret;
  39267. }
  39268. #endif
  39269. #ifdef __LITTLE_ENDIAN__
  39270. __ai uint32x2_t vreinterpret_u32_s32(int32x2_t __p0) {
  39271. uint32x2_t __ret;
  39272. __ret = (uint32x2_t)(__p0);
  39273. return __ret;
  39274. }
  39275. #else
  39276. __ai uint32x2_t vreinterpret_u32_s32(int32x2_t __p0) {
  39277. uint32x2_t __ret;
  39278. __ret = (uint32x2_t)(__p0);
  39279. return __ret;
  39280. }
  39281. #endif
  39282. #ifdef __LITTLE_ENDIAN__
  39283. __ai uint32x2_t vreinterpret_u32_s64(int64x1_t __p0) {
  39284. uint32x2_t __ret;
  39285. __ret = (uint32x2_t)(__p0);
  39286. return __ret;
  39287. }
  39288. #else
  39289. __ai uint32x2_t vreinterpret_u32_s64(int64x1_t __p0) {
  39290. uint32x2_t __ret;
  39291. __ret = (uint32x2_t)(__p0);
  39292. return __ret;
  39293. }
  39294. #endif
  39295. #ifdef __LITTLE_ENDIAN__
  39296. __ai uint32x2_t vreinterpret_u32_s16(int16x4_t __p0) {
  39297. uint32x2_t __ret;
  39298. __ret = (uint32x2_t)(__p0);
  39299. return __ret;
  39300. }
  39301. #else
  39302. __ai uint32x2_t vreinterpret_u32_s16(int16x4_t __p0) {
  39303. uint32x2_t __ret;
  39304. __ret = (uint32x2_t)(__p0);
  39305. return __ret;
  39306. }
  39307. #endif
  39308. #ifdef __LITTLE_ENDIAN__
  39309. __ai uint64x1_t vreinterpret_u64_p8(poly8x8_t __p0) {
  39310. uint64x1_t __ret;
  39311. __ret = (uint64x1_t)(__p0);
  39312. return __ret;
  39313. }
  39314. #else
  39315. __ai uint64x1_t vreinterpret_u64_p8(poly8x8_t __p0) {
  39316. uint64x1_t __ret;
  39317. __ret = (uint64x1_t)(__p0);
  39318. return __ret;
  39319. }
  39320. #endif
  39321. #ifdef __LITTLE_ENDIAN__
  39322. __ai uint64x1_t vreinterpret_u64_p64(poly64x1_t __p0) {
  39323. uint64x1_t __ret;
  39324. __ret = (uint64x1_t)(__p0);
  39325. return __ret;
  39326. }
  39327. #else
  39328. __ai uint64x1_t vreinterpret_u64_p64(poly64x1_t __p0) {
  39329. uint64x1_t __ret;
  39330. __ret = (uint64x1_t)(__p0);
  39331. return __ret;
  39332. }
  39333. #endif
  39334. #ifdef __LITTLE_ENDIAN__
  39335. __ai uint64x1_t vreinterpret_u64_p16(poly16x4_t __p0) {
  39336. uint64x1_t __ret;
  39337. __ret = (uint64x1_t)(__p0);
  39338. return __ret;
  39339. }
  39340. #else
  39341. __ai uint64x1_t vreinterpret_u64_p16(poly16x4_t __p0) {
  39342. uint64x1_t __ret;
  39343. __ret = (uint64x1_t)(__p0);
  39344. return __ret;
  39345. }
  39346. #endif
  39347. #ifdef __LITTLE_ENDIAN__
  39348. __ai uint64x1_t vreinterpret_u64_u8(uint8x8_t __p0) {
  39349. uint64x1_t __ret;
  39350. __ret = (uint64x1_t)(__p0);
  39351. return __ret;
  39352. }
  39353. #else
  39354. __ai uint64x1_t vreinterpret_u64_u8(uint8x8_t __p0) {
  39355. uint64x1_t __ret;
  39356. __ret = (uint64x1_t)(__p0);
  39357. return __ret;
  39358. }
  39359. #endif
  39360. #ifdef __LITTLE_ENDIAN__
  39361. __ai uint64x1_t vreinterpret_u64_u32(uint32x2_t __p0) {
  39362. uint64x1_t __ret;
  39363. __ret = (uint64x1_t)(__p0);
  39364. return __ret;
  39365. }
  39366. #else
  39367. __ai uint64x1_t vreinterpret_u64_u32(uint32x2_t __p0) {
  39368. uint64x1_t __ret;
  39369. __ret = (uint64x1_t)(__p0);
  39370. return __ret;
  39371. }
  39372. #endif
  39373. #ifdef __LITTLE_ENDIAN__
  39374. __ai uint64x1_t vreinterpret_u64_u16(uint16x4_t __p0) {
  39375. uint64x1_t __ret;
  39376. __ret = (uint64x1_t)(__p0);
  39377. return __ret;
  39378. }
  39379. #else
  39380. __ai uint64x1_t vreinterpret_u64_u16(uint16x4_t __p0) {
  39381. uint64x1_t __ret;
  39382. __ret = (uint64x1_t)(__p0);
  39383. return __ret;
  39384. }
  39385. #endif
  39386. #ifdef __LITTLE_ENDIAN__
  39387. __ai uint64x1_t vreinterpret_u64_s8(int8x8_t __p0) {
  39388. uint64x1_t __ret;
  39389. __ret = (uint64x1_t)(__p0);
  39390. return __ret;
  39391. }
  39392. #else
  39393. __ai uint64x1_t vreinterpret_u64_s8(int8x8_t __p0) {
  39394. uint64x1_t __ret;
  39395. __ret = (uint64x1_t)(__p0);
  39396. return __ret;
  39397. }
  39398. #endif
  39399. #ifdef __LITTLE_ENDIAN__
  39400. __ai uint64x1_t vreinterpret_u64_f64(float64x1_t __p0) {
  39401. uint64x1_t __ret;
  39402. __ret = (uint64x1_t)(__p0);
  39403. return __ret;
  39404. }
  39405. #else
  39406. __ai uint64x1_t vreinterpret_u64_f64(float64x1_t __p0) {
  39407. uint64x1_t __ret;
  39408. __ret = (uint64x1_t)(__p0);
  39409. return __ret;
  39410. }
  39411. #endif
  39412. #ifdef __LITTLE_ENDIAN__
  39413. __ai uint64x1_t vreinterpret_u64_f32(float32x2_t __p0) {
  39414. uint64x1_t __ret;
  39415. __ret = (uint64x1_t)(__p0);
  39416. return __ret;
  39417. }
  39418. #else
  39419. __ai uint64x1_t vreinterpret_u64_f32(float32x2_t __p0) {
  39420. uint64x1_t __ret;
  39421. __ret = (uint64x1_t)(__p0);
  39422. return __ret;
  39423. }
  39424. #endif
  39425. #ifdef __LITTLE_ENDIAN__
  39426. __ai uint64x1_t vreinterpret_u64_f16(float16x4_t __p0) {
  39427. uint64x1_t __ret;
  39428. __ret = (uint64x1_t)(__p0);
  39429. return __ret;
  39430. }
  39431. #else
  39432. __ai uint64x1_t vreinterpret_u64_f16(float16x4_t __p0) {
  39433. uint64x1_t __ret;
  39434. __ret = (uint64x1_t)(__p0);
  39435. return __ret;
  39436. }
  39437. #endif
  39438. #ifdef __LITTLE_ENDIAN__
  39439. __ai uint64x1_t vreinterpret_u64_s32(int32x2_t __p0) {
  39440. uint64x1_t __ret;
  39441. __ret = (uint64x1_t)(__p0);
  39442. return __ret;
  39443. }
  39444. #else
  39445. __ai uint64x1_t vreinterpret_u64_s32(int32x2_t __p0) {
  39446. uint64x1_t __ret;
  39447. __ret = (uint64x1_t)(__p0);
  39448. return __ret;
  39449. }
  39450. #endif
  39451. #ifdef __LITTLE_ENDIAN__
  39452. __ai uint64x1_t vreinterpret_u64_s64(int64x1_t __p0) {
  39453. uint64x1_t __ret;
  39454. __ret = (uint64x1_t)(__p0);
  39455. return __ret;
  39456. }
  39457. #else
  39458. __ai uint64x1_t vreinterpret_u64_s64(int64x1_t __p0) {
  39459. uint64x1_t __ret;
  39460. __ret = (uint64x1_t)(__p0);
  39461. return __ret;
  39462. }
  39463. #endif
  39464. #ifdef __LITTLE_ENDIAN__
  39465. __ai uint64x1_t vreinterpret_u64_s16(int16x4_t __p0) {
  39466. uint64x1_t __ret;
  39467. __ret = (uint64x1_t)(__p0);
  39468. return __ret;
  39469. }
  39470. #else
  39471. __ai uint64x1_t vreinterpret_u64_s16(int16x4_t __p0) {
  39472. uint64x1_t __ret;
  39473. __ret = (uint64x1_t)(__p0);
  39474. return __ret;
  39475. }
  39476. #endif
  39477. #ifdef __LITTLE_ENDIAN__
  39478. __ai uint16x4_t vreinterpret_u16_p8(poly8x8_t __p0) {
  39479. uint16x4_t __ret;
  39480. __ret = (uint16x4_t)(__p0);
  39481. return __ret;
  39482. }
  39483. #else
  39484. __ai uint16x4_t vreinterpret_u16_p8(poly8x8_t __p0) {
  39485. uint16x4_t __ret;
  39486. __ret = (uint16x4_t)(__p0);
  39487. return __ret;
  39488. }
  39489. #endif
  39490. #ifdef __LITTLE_ENDIAN__
  39491. __ai uint16x4_t vreinterpret_u16_p64(poly64x1_t __p0) {
  39492. uint16x4_t __ret;
  39493. __ret = (uint16x4_t)(__p0);
  39494. return __ret;
  39495. }
  39496. #else
  39497. __ai uint16x4_t vreinterpret_u16_p64(poly64x1_t __p0) {
  39498. uint16x4_t __ret;
  39499. __ret = (uint16x4_t)(__p0);
  39500. return __ret;
  39501. }
  39502. #endif
  39503. #ifdef __LITTLE_ENDIAN__
  39504. __ai uint16x4_t vreinterpret_u16_p16(poly16x4_t __p0) {
  39505. uint16x4_t __ret;
  39506. __ret = (uint16x4_t)(__p0);
  39507. return __ret;
  39508. }
  39509. #else
  39510. __ai uint16x4_t vreinterpret_u16_p16(poly16x4_t __p0) {
  39511. uint16x4_t __ret;
  39512. __ret = (uint16x4_t)(__p0);
  39513. return __ret;
  39514. }
  39515. #endif
  39516. #ifdef __LITTLE_ENDIAN__
  39517. __ai uint16x4_t vreinterpret_u16_u8(uint8x8_t __p0) {
  39518. uint16x4_t __ret;
  39519. __ret = (uint16x4_t)(__p0);
  39520. return __ret;
  39521. }
  39522. #else
  39523. __ai uint16x4_t vreinterpret_u16_u8(uint8x8_t __p0) {
  39524. uint16x4_t __ret;
  39525. __ret = (uint16x4_t)(__p0);
  39526. return __ret;
  39527. }
  39528. #endif
  39529. #ifdef __LITTLE_ENDIAN__
  39530. __ai uint16x4_t vreinterpret_u16_u32(uint32x2_t __p0) {
  39531. uint16x4_t __ret;
  39532. __ret = (uint16x4_t)(__p0);
  39533. return __ret;
  39534. }
  39535. #else
  39536. __ai uint16x4_t vreinterpret_u16_u32(uint32x2_t __p0) {
  39537. uint16x4_t __ret;
  39538. __ret = (uint16x4_t)(__p0);
  39539. return __ret;
  39540. }
  39541. #endif
  39542. #ifdef __LITTLE_ENDIAN__
  39543. __ai uint16x4_t vreinterpret_u16_u64(uint64x1_t __p0) {
  39544. uint16x4_t __ret;
  39545. __ret = (uint16x4_t)(__p0);
  39546. return __ret;
  39547. }
  39548. #else
  39549. __ai uint16x4_t vreinterpret_u16_u64(uint64x1_t __p0) {
  39550. uint16x4_t __ret;
  39551. __ret = (uint16x4_t)(__p0);
  39552. return __ret;
  39553. }
  39554. #endif
  39555. #ifdef __LITTLE_ENDIAN__
  39556. __ai uint16x4_t vreinterpret_u16_s8(int8x8_t __p0) {
  39557. uint16x4_t __ret;
  39558. __ret = (uint16x4_t)(__p0);
  39559. return __ret;
  39560. }
  39561. #else
  39562. __ai uint16x4_t vreinterpret_u16_s8(int8x8_t __p0) {
  39563. uint16x4_t __ret;
  39564. __ret = (uint16x4_t)(__p0);
  39565. return __ret;
  39566. }
  39567. #endif
  39568. #ifdef __LITTLE_ENDIAN__
  39569. __ai uint16x4_t vreinterpret_u16_f64(float64x1_t __p0) {
  39570. uint16x4_t __ret;
  39571. __ret = (uint16x4_t)(__p0);
  39572. return __ret;
  39573. }
  39574. #else
  39575. __ai uint16x4_t vreinterpret_u16_f64(float64x1_t __p0) {
  39576. uint16x4_t __ret;
  39577. __ret = (uint16x4_t)(__p0);
  39578. return __ret;
  39579. }
  39580. #endif
  39581. #ifdef __LITTLE_ENDIAN__
  39582. __ai uint16x4_t vreinterpret_u16_f32(float32x2_t __p0) {
  39583. uint16x4_t __ret;
  39584. __ret = (uint16x4_t)(__p0);
  39585. return __ret;
  39586. }
  39587. #else
  39588. __ai uint16x4_t vreinterpret_u16_f32(float32x2_t __p0) {
  39589. uint16x4_t __ret;
  39590. __ret = (uint16x4_t)(__p0);
  39591. return __ret;
  39592. }
  39593. #endif
  39594. #ifdef __LITTLE_ENDIAN__
  39595. __ai uint16x4_t vreinterpret_u16_f16(float16x4_t __p0) {
  39596. uint16x4_t __ret;
  39597. __ret = (uint16x4_t)(__p0);
  39598. return __ret;
  39599. }
  39600. #else
  39601. __ai uint16x4_t vreinterpret_u16_f16(float16x4_t __p0) {
  39602. uint16x4_t __ret;
  39603. __ret = (uint16x4_t)(__p0);
  39604. return __ret;
  39605. }
  39606. #endif
  39607. #ifdef __LITTLE_ENDIAN__
  39608. __ai uint16x4_t vreinterpret_u16_s32(int32x2_t __p0) {
  39609. uint16x4_t __ret;
  39610. __ret = (uint16x4_t)(__p0);
  39611. return __ret;
  39612. }
  39613. #else
  39614. __ai uint16x4_t vreinterpret_u16_s32(int32x2_t __p0) {
  39615. uint16x4_t __ret;
  39616. __ret = (uint16x4_t)(__p0);
  39617. return __ret;
  39618. }
  39619. #endif
  39620. #ifdef __LITTLE_ENDIAN__
  39621. __ai uint16x4_t vreinterpret_u16_s64(int64x1_t __p0) {
  39622. uint16x4_t __ret;
  39623. __ret = (uint16x4_t)(__p0);
  39624. return __ret;
  39625. }
  39626. #else
  39627. __ai uint16x4_t vreinterpret_u16_s64(int64x1_t __p0) {
  39628. uint16x4_t __ret;
  39629. __ret = (uint16x4_t)(__p0);
  39630. return __ret;
  39631. }
  39632. #endif
  39633. #ifdef __LITTLE_ENDIAN__
  39634. __ai uint16x4_t vreinterpret_u16_s16(int16x4_t __p0) {
  39635. uint16x4_t __ret;
  39636. __ret = (uint16x4_t)(__p0);
  39637. return __ret;
  39638. }
  39639. #else
  39640. __ai uint16x4_t vreinterpret_u16_s16(int16x4_t __p0) {
  39641. uint16x4_t __ret;
  39642. __ret = (uint16x4_t)(__p0);
  39643. return __ret;
  39644. }
  39645. #endif
  39646. #ifdef __LITTLE_ENDIAN__
  39647. __ai int8x8_t vreinterpret_s8_p8(poly8x8_t __p0) {
  39648. int8x8_t __ret;
  39649. __ret = (int8x8_t)(__p0);
  39650. return __ret;
  39651. }
  39652. #else
  39653. __ai int8x8_t vreinterpret_s8_p8(poly8x8_t __p0) {
  39654. int8x8_t __ret;
  39655. __ret = (int8x8_t)(__p0);
  39656. return __ret;
  39657. }
  39658. #endif
  39659. #ifdef __LITTLE_ENDIAN__
  39660. __ai int8x8_t vreinterpret_s8_p64(poly64x1_t __p0) {
  39661. int8x8_t __ret;
  39662. __ret = (int8x8_t)(__p0);
  39663. return __ret;
  39664. }
  39665. #else
  39666. __ai int8x8_t vreinterpret_s8_p64(poly64x1_t __p0) {
  39667. int8x8_t __ret;
  39668. __ret = (int8x8_t)(__p0);
  39669. return __ret;
  39670. }
  39671. #endif
  39672. #ifdef __LITTLE_ENDIAN__
  39673. __ai int8x8_t vreinterpret_s8_p16(poly16x4_t __p0) {
  39674. int8x8_t __ret;
  39675. __ret = (int8x8_t)(__p0);
  39676. return __ret;
  39677. }
  39678. #else
  39679. __ai int8x8_t vreinterpret_s8_p16(poly16x4_t __p0) {
  39680. int8x8_t __ret;
  39681. __ret = (int8x8_t)(__p0);
  39682. return __ret;
  39683. }
  39684. #endif
  39685. #ifdef __LITTLE_ENDIAN__
  39686. __ai int8x8_t vreinterpret_s8_u8(uint8x8_t __p0) {
  39687. int8x8_t __ret;
  39688. __ret = (int8x8_t)(__p0);
  39689. return __ret;
  39690. }
  39691. #else
  39692. __ai int8x8_t vreinterpret_s8_u8(uint8x8_t __p0) {
  39693. int8x8_t __ret;
  39694. __ret = (int8x8_t)(__p0);
  39695. return __ret;
  39696. }
  39697. #endif
  39698. #ifdef __LITTLE_ENDIAN__
  39699. __ai int8x8_t vreinterpret_s8_u32(uint32x2_t __p0) {
  39700. int8x8_t __ret;
  39701. __ret = (int8x8_t)(__p0);
  39702. return __ret;
  39703. }
  39704. #else
  39705. __ai int8x8_t vreinterpret_s8_u32(uint32x2_t __p0) {
  39706. int8x8_t __ret;
  39707. __ret = (int8x8_t)(__p0);
  39708. return __ret;
  39709. }
  39710. #endif
  39711. #ifdef __LITTLE_ENDIAN__
  39712. __ai int8x8_t vreinterpret_s8_u64(uint64x1_t __p0) {
  39713. int8x8_t __ret;
  39714. __ret = (int8x8_t)(__p0);
  39715. return __ret;
  39716. }
  39717. #else
  39718. __ai int8x8_t vreinterpret_s8_u64(uint64x1_t __p0) {
  39719. int8x8_t __ret;
  39720. __ret = (int8x8_t)(__p0);
  39721. return __ret;
  39722. }
  39723. #endif
  39724. #ifdef __LITTLE_ENDIAN__
  39725. __ai int8x8_t vreinterpret_s8_u16(uint16x4_t __p0) {
  39726. int8x8_t __ret;
  39727. __ret = (int8x8_t)(__p0);
  39728. return __ret;
  39729. }
  39730. #else
  39731. __ai int8x8_t vreinterpret_s8_u16(uint16x4_t __p0) {
  39732. int8x8_t __ret;
  39733. __ret = (int8x8_t)(__p0);
  39734. return __ret;
  39735. }
  39736. #endif
  39737. #ifdef __LITTLE_ENDIAN__
  39738. __ai int8x8_t vreinterpret_s8_f64(float64x1_t __p0) {
  39739. int8x8_t __ret;
  39740. __ret = (int8x8_t)(__p0);
  39741. return __ret;
  39742. }
  39743. #else
  39744. __ai int8x8_t vreinterpret_s8_f64(float64x1_t __p0) {
  39745. int8x8_t __ret;
  39746. __ret = (int8x8_t)(__p0);
  39747. return __ret;
  39748. }
  39749. #endif
  39750. #ifdef __LITTLE_ENDIAN__
  39751. __ai int8x8_t vreinterpret_s8_f32(float32x2_t __p0) {
  39752. int8x8_t __ret;
  39753. __ret = (int8x8_t)(__p0);
  39754. return __ret;
  39755. }
  39756. #else
  39757. __ai int8x8_t vreinterpret_s8_f32(float32x2_t __p0) {
  39758. int8x8_t __ret;
  39759. __ret = (int8x8_t)(__p0);
  39760. return __ret;
  39761. }
  39762. #endif
  39763. #ifdef __LITTLE_ENDIAN__
  39764. __ai int8x8_t vreinterpret_s8_f16(float16x4_t __p0) {
  39765. int8x8_t __ret;
  39766. __ret = (int8x8_t)(__p0);
  39767. return __ret;
  39768. }
  39769. #else
  39770. __ai int8x8_t vreinterpret_s8_f16(float16x4_t __p0) {
  39771. int8x8_t __ret;
  39772. __ret = (int8x8_t)(__p0);
  39773. return __ret;
  39774. }
  39775. #endif
  39776. #ifdef __LITTLE_ENDIAN__
  39777. __ai int8x8_t vreinterpret_s8_s32(int32x2_t __p0) {
  39778. int8x8_t __ret;
  39779. __ret = (int8x8_t)(__p0);
  39780. return __ret;
  39781. }
  39782. #else
  39783. __ai int8x8_t vreinterpret_s8_s32(int32x2_t __p0) {
  39784. int8x8_t __ret;
  39785. __ret = (int8x8_t)(__p0);
  39786. return __ret;
  39787. }
  39788. #endif
  39789. #ifdef __LITTLE_ENDIAN__
  39790. __ai int8x8_t vreinterpret_s8_s64(int64x1_t __p0) {
  39791. int8x8_t __ret;
  39792. __ret = (int8x8_t)(__p0);
  39793. return __ret;
  39794. }
  39795. #else
  39796. __ai int8x8_t vreinterpret_s8_s64(int64x1_t __p0) {
  39797. int8x8_t __ret;
  39798. __ret = (int8x8_t)(__p0);
  39799. return __ret;
  39800. }
  39801. #endif
  39802. #ifdef __LITTLE_ENDIAN__
  39803. __ai int8x8_t vreinterpret_s8_s16(int16x4_t __p0) {
  39804. int8x8_t __ret;
  39805. __ret = (int8x8_t)(__p0);
  39806. return __ret;
  39807. }
  39808. #else
  39809. __ai int8x8_t vreinterpret_s8_s16(int16x4_t __p0) {
  39810. int8x8_t __ret;
  39811. __ret = (int8x8_t)(__p0);
  39812. return __ret;
  39813. }
  39814. #endif
  39815. #ifdef __LITTLE_ENDIAN__
  39816. __ai float64x1_t vreinterpret_f64_p8(poly8x8_t __p0) {
  39817. float64x1_t __ret;
  39818. __ret = (float64x1_t)(__p0);
  39819. return __ret;
  39820. }
  39821. #else
  39822. __ai float64x1_t vreinterpret_f64_p8(poly8x8_t __p0) {
  39823. float64x1_t __ret;
  39824. __ret = (float64x1_t)(__p0);
  39825. return __ret;
  39826. }
  39827. #endif
  39828. #ifdef __LITTLE_ENDIAN__
  39829. __ai float64x1_t vreinterpret_f64_p64(poly64x1_t __p0) {
  39830. float64x1_t __ret;
  39831. __ret = (float64x1_t)(__p0);
  39832. return __ret;
  39833. }
  39834. #else
  39835. __ai float64x1_t vreinterpret_f64_p64(poly64x1_t __p0) {
  39836. float64x1_t __ret;
  39837. __ret = (float64x1_t)(__p0);
  39838. return __ret;
  39839. }
  39840. #endif
  39841. #ifdef __LITTLE_ENDIAN__
  39842. __ai float64x1_t vreinterpret_f64_p16(poly16x4_t __p0) {
  39843. float64x1_t __ret;
  39844. __ret = (float64x1_t)(__p0);
  39845. return __ret;
  39846. }
  39847. #else
  39848. __ai float64x1_t vreinterpret_f64_p16(poly16x4_t __p0) {
  39849. float64x1_t __ret;
  39850. __ret = (float64x1_t)(__p0);
  39851. return __ret;
  39852. }
  39853. #endif
  39854. #ifdef __LITTLE_ENDIAN__
  39855. __ai float64x1_t vreinterpret_f64_u8(uint8x8_t __p0) {
  39856. float64x1_t __ret;
  39857. __ret = (float64x1_t)(__p0);
  39858. return __ret;
  39859. }
  39860. #else
  39861. __ai float64x1_t vreinterpret_f64_u8(uint8x8_t __p0) {
  39862. float64x1_t __ret;
  39863. __ret = (float64x1_t)(__p0);
  39864. return __ret;
  39865. }
  39866. #endif
  39867. #ifdef __LITTLE_ENDIAN__
  39868. __ai float64x1_t vreinterpret_f64_u32(uint32x2_t __p0) {
  39869. float64x1_t __ret;
  39870. __ret = (float64x1_t)(__p0);
  39871. return __ret;
  39872. }
  39873. #else
  39874. __ai float64x1_t vreinterpret_f64_u32(uint32x2_t __p0) {
  39875. float64x1_t __ret;
  39876. __ret = (float64x1_t)(__p0);
  39877. return __ret;
  39878. }
  39879. #endif
  39880. #ifdef __LITTLE_ENDIAN__
  39881. __ai float64x1_t vreinterpret_f64_u64(uint64x1_t __p0) {
  39882. float64x1_t __ret;
  39883. __ret = (float64x1_t)(__p0);
  39884. return __ret;
  39885. }
  39886. #else
  39887. __ai float64x1_t vreinterpret_f64_u64(uint64x1_t __p0) {
  39888. float64x1_t __ret;
  39889. __ret = (float64x1_t)(__p0);
  39890. return __ret;
  39891. }
  39892. #endif
  39893. #ifdef __LITTLE_ENDIAN__
  39894. __ai float64x1_t vreinterpret_f64_u16(uint16x4_t __p0) {
  39895. float64x1_t __ret;
  39896. __ret = (float64x1_t)(__p0);
  39897. return __ret;
  39898. }
  39899. #else
  39900. __ai float64x1_t vreinterpret_f64_u16(uint16x4_t __p0) {
  39901. float64x1_t __ret;
  39902. __ret = (float64x1_t)(__p0);
  39903. return __ret;
  39904. }
  39905. #endif
  39906. #ifdef __LITTLE_ENDIAN__
  39907. __ai float64x1_t vreinterpret_f64_s8(int8x8_t __p0) {
  39908. float64x1_t __ret;
  39909. __ret = (float64x1_t)(__p0);
  39910. return __ret;
  39911. }
  39912. #else
  39913. __ai float64x1_t vreinterpret_f64_s8(int8x8_t __p0) {
  39914. float64x1_t __ret;
  39915. __ret = (float64x1_t)(__p0);
  39916. return __ret;
  39917. }
  39918. #endif
  39919. #ifdef __LITTLE_ENDIAN__
  39920. __ai float64x1_t vreinterpret_f64_f32(float32x2_t __p0) {
  39921. float64x1_t __ret;
  39922. __ret = (float64x1_t)(__p0);
  39923. return __ret;
  39924. }
  39925. #else
  39926. __ai float64x1_t vreinterpret_f64_f32(float32x2_t __p0) {
  39927. float64x1_t __ret;
  39928. __ret = (float64x1_t)(__p0);
  39929. return __ret;
  39930. }
  39931. #endif
  39932. #ifdef __LITTLE_ENDIAN__
  39933. __ai float64x1_t vreinterpret_f64_f16(float16x4_t __p0) {
  39934. float64x1_t __ret;
  39935. __ret = (float64x1_t)(__p0);
  39936. return __ret;
  39937. }
  39938. #else
  39939. __ai float64x1_t vreinterpret_f64_f16(float16x4_t __p0) {
  39940. float64x1_t __ret;
  39941. __ret = (float64x1_t)(__p0);
  39942. return __ret;
  39943. }
  39944. #endif
  39945. #ifdef __LITTLE_ENDIAN__
  39946. __ai float64x1_t vreinterpret_f64_s32(int32x2_t __p0) {
  39947. float64x1_t __ret;
  39948. __ret = (float64x1_t)(__p0);
  39949. return __ret;
  39950. }
  39951. #else
  39952. __ai float64x1_t vreinterpret_f64_s32(int32x2_t __p0) {
  39953. float64x1_t __ret;
  39954. __ret = (float64x1_t)(__p0);
  39955. return __ret;
  39956. }
  39957. #endif
  39958. #ifdef __LITTLE_ENDIAN__
  39959. __ai float64x1_t vreinterpret_f64_s64(int64x1_t __p0) {
  39960. float64x1_t __ret;
  39961. __ret = (float64x1_t)(__p0);
  39962. return __ret;
  39963. }
  39964. #else
  39965. __ai float64x1_t vreinterpret_f64_s64(int64x1_t __p0) {
  39966. float64x1_t __ret;
  39967. __ret = (float64x1_t)(__p0);
  39968. return __ret;
  39969. }
  39970. #endif
  39971. #ifdef __LITTLE_ENDIAN__
  39972. __ai float64x1_t vreinterpret_f64_s16(int16x4_t __p0) {
  39973. float64x1_t __ret;
  39974. __ret = (float64x1_t)(__p0);
  39975. return __ret;
  39976. }
  39977. #else
  39978. __ai float64x1_t vreinterpret_f64_s16(int16x4_t __p0) {
  39979. float64x1_t __ret;
  39980. __ret = (float64x1_t)(__p0);
  39981. return __ret;
  39982. }
  39983. #endif
  39984. #ifdef __LITTLE_ENDIAN__
  39985. __ai float32x2_t vreinterpret_f32_p8(poly8x8_t __p0) {
  39986. float32x2_t __ret;
  39987. __ret = (float32x2_t)(__p0);
  39988. return __ret;
  39989. }
  39990. #else
  39991. __ai float32x2_t vreinterpret_f32_p8(poly8x8_t __p0) {
  39992. float32x2_t __ret;
  39993. __ret = (float32x2_t)(__p0);
  39994. return __ret;
  39995. }
  39996. #endif
  39997. #ifdef __LITTLE_ENDIAN__
  39998. __ai float32x2_t vreinterpret_f32_p64(poly64x1_t __p0) {
  39999. float32x2_t __ret;
  40000. __ret = (float32x2_t)(__p0);
  40001. return __ret;
  40002. }
  40003. #else
  40004. __ai float32x2_t vreinterpret_f32_p64(poly64x1_t __p0) {
  40005. float32x2_t __ret;
  40006. __ret = (float32x2_t)(__p0);
  40007. return __ret;
  40008. }
  40009. #endif
  40010. #ifdef __LITTLE_ENDIAN__
  40011. __ai float32x2_t vreinterpret_f32_p16(poly16x4_t __p0) {
  40012. float32x2_t __ret;
  40013. __ret = (float32x2_t)(__p0);
  40014. return __ret;
  40015. }
  40016. #else
  40017. __ai float32x2_t vreinterpret_f32_p16(poly16x4_t __p0) {
  40018. float32x2_t __ret;
  40019. __ret = (float32x2_t)(__p0);
  40020. return __ret;
  40021. }
  40022. #endif
  40023. #ifdef __LITTLE_ENDIAN__
  40024. __ai float32x2_t vreinterpret_f32_u8(uint8x8_t __p0) {
  40025. float32x2_t __ret;
  40026. __ret = (float32x2_t)(__p0);
  40027. return __ret;
  40028. }
  40029. #else
  40030. __ai float32x2_t vreinterpret_f32_u8(uint8x8_t __p0) {
  40031. float32x2_t __ret;
  40032. __ret = (float32x2_t)(__p0);
  40033. return __ret;
  40034. }
  40035. #endif
  40036. #ifdef __LITTLE_ENDIAN__
  40037. __ai float32x2_t vreinterpret_f32_u32(uint32x2_t __p0) {
  40038. float32x2_t __ret;
  40039. __ret = (float32x2_t)(__p0);
  40040. return __ret;
  40041. }
  40042. #else
  40043. __ai float32x2_t vreinterpret_f32_u32(uint32x2_t __p0) {
  40044. float32x2_t __ret;
  40045. __ret = (float32x2_t)(__p0);
  40046. return __ret;
  40047. }
  40048. #endif
  40049. #ifdef __LITTLE_ENDIAN__
  40050. __ai float32x2_t vreinterpret_f32_u64(uint64x1_t __p0) {
  40051. float32x2_t __ret;
  40052. __ret = (float32x2_t)(__p0);
  40053. return __ret;
  40054. }
  40055. #else
  40056. __ai float32x2_t vreinterpret_f32_u64(uint64x1_t __p0) {
  40057. float32x2_t __ret;
  40058. __ret = (float32x2_t)(__p0);
  40059. return __ret;
  40060. }
  40061. #endif
  40062. #ifdef __LITTLE_ENDIAN__
  40063. __ai float32x2_t vreinterpret_f32_u16(uint16x4_t __p0) {
  40064. float32x2_t __ret;
  40065. __ret = (float32x2_t)(__p0);
  40066. return __ret;
  40067. }
  40068. #else
  40069. __ai float32x2_t vreinterpret_f32_u16(uint16x4_t __p0) {
  40070. float32x2_t __ret;
  40071. __ret = (float32x2_t)(__p0);
  40072. return __ret;
  40073. }
  40074. #endif
  40075. #ifdef __LITTLE_ENDIAN__
  40076. __ai float32x2_t vreinterpret_f32_s8(int8x8_t __p0) {
  40077. float32x2_t __ret;
  40078. __ret = (float32x2_t)(__p0);
  40079. return __ret;
  40080. }
  40081. #else
  40082. __ai float32x2_t vreinterpret_f32_s8(int8x8_t __p0) {
  40083. float32x2_t __ret;
  40084. __ret = (float32x2_t)(__p0);
  40085. return __ret;
  40086. }
  40087. #endif
  40088. #ifdef __LITTLE_ENDIAN__
  40089. __ai float32x2_t vreinterpret_f32_f64(float64x1_t __p0) {
  40090. float32x2_t __ret;
  40091. __ret = (float32x2_t)(__p0);
  40092. return __ret;
  40093. }
  40094. #else
  40095. __ai float32x2_t vreinterpret_f32_f64(float64x1_t __p0) {
  40096. float32x2_t __ret;
  40097. __ret = (float32x2_t)(__p0);
  40098. return __ret;
  40099. }
  40100. #endif
  40101. #ifdef __LITTLE_ENDIAN__
  40102. __ai float32x2_t vreinterpret_f32_f16(float16x4_t __p0) {
  40103. float32x2_t __ret;
  40104. __ret = (float32x2_t)(__p0);
  40105. return __ret;
  40106. }
  40107. #else
  40108. __ai float32x2_t vreinterpret_f32_f16(float16x4_t __p0) {
  40109. float32x2_t __ret;
  40110. __ret = (float32x2_t)(__p0);
  40111. return __ret;
  40112. }
  40113. #endif
  40114. #ifdef __LITTLE_ENDIAN__
  40115. __ai float32x2_t vreinterpret_f32_s32(int32x2_t __p0) {
  40116. float32x2_t __ret;
  40117. __ret = (float32x2_t)(__p0);
  40118. return __ret;
  40119. }
  40120. #else
  40121. __ai float32x2_t vreinterpret_f32_s32(int32x2_t __p0) {
  40122. float32x2_t __ret;
  40123. __ret = (float32x2_t)(__p0);
  40124. return __ret;
  40125. }
  40126. #endif
  40127. #ifdef __LITTLE_ENDIAN__
  40128. __ai float32x2_t vreinterpret_f32_s64(int64x1_t __p0) {
  40129. float32x2_t __ret;
  40130. __ret = (float32x2_t)(__p0);
  40131. return __ret;
  40132. }
  40133. #else
  40134. __ai float32x2_t vreinterpret_f32_s64(int64x1_t __p0) {
  40135. float32x2_t __ret;
  40136. __ret = (float32x2_t)(__p0);
  40137. return __ret;
  40138. }
  40139. #endif
  40140. #ifdef __LITTLE_ENDIAN__
  40141. __ai float32x2_t vreinterpret_f32_s16(int16x4_t __p0) {
  40142. float32x2_t __ret;
  40143. __ret = (float32x2_t)(__p0);
  40144. return __ret;
  40145. }
  40146. #else
  40147. __ai float32x2_t vreinterpret_f32_s16(int16x4_t __p0) {
  40148. float32x2_t __ret;
  40149. __ret = (float32x2_t)(__p0);
  40150. return __ret;
  40151. }
  40152. #endif
  40153. #ifdef __LITTLE_ENDIAN__
  40154. __ai float16x4_t vreinterpret_f16_p8(poly8x8_t __p0) {
  40155. float16x4_t __ret;
  40156. __ret = (float16x4_t)(__p0);
  40157. return __ret;
  40158. }
  40159. #else
  40160. __ai float16x4_t vreinterpret_f16_p8(poly8x8_t __p0) {
  40161. float16x4_t __ret;
  40162. __ret = (float16x4_t)(__p0);
  40163. return __ret;
  40164. }
  40165. #endif
  40166. #ifdef __LITTLE_ENDIAN__
  40167. __ai float16x4_t vreinterpret_f16_p64(poly64x1_t __p0) {
  40168. float16x4_t __ret;
  40169. __ret = (float16x4_t)(__p0);
  40170. return __ret;
  40171. }
  40172. #else
  40173. __ai float16x4_t vreinterpret_f16_p64(poly64x1_t __p0) {
  40174. float16x4_t __ret;
  40175. __ret = (float16x4_t)(__p0);
  40176. return __ret;
  40177. }
  40178. #endif
  40179. #ifdef __LITTLE_ENDIAN__
  40180. __ai float16x4_t vreinterpret_f16_p16(poly16x4_t __p0) {
  40181. float16x4_t __ret;
  40182. __ret = (float16x4_t)(__p0);
  40183. return __ret;
  40184. }
  40185. #else
  40186. __ai float16x4_t vreinterpret_f16_p16(poly16x4_t __p0) {
  40187. float16x4_t __ret;
  40188. __ret = (float16x4_t)(__p0);
  40189. return __ret;
  40190. }
  40191. #endif
  40192. #ifdef __LITTLE_ENDIAN__
  40193. __ai float16x4_t vreinterpret_f16_u8(uint8x8_t __p0) {
  40194. float16x4_t __ret;
  40195. __ret = (float16x4_t)(__p0);
  40196. return __ret;
  40197. }
  40198. #else
  40199. __ai float16x4_t vreinterpret_f16_u8(uint8x8_t __p0) {
  40200. float16x4_t __ret;
  40201. __ret = (float16x4_t)(__p0);
  40202. return __ret;
  40203. }
  40204. #endif
  40205. #ifdef __LITTLE_ENDIAN__
  40206. __ai float16x4_t vreinterpret_f16_u32(uint32x2_t __p0) {
  40207. float16x4_t __ret;
  40208. __ret = (float16x4_t)(__p0);
  40209. return __ret;
  40210. }
  40211. #else
  40212. __ai float16x4_t vreinterpret_f16_u32(uint32x2_t __p0) {
  40213. float16x4_t __ret;
  40214. __ret = (float16x4_t)(__p0);
  40215. return __ret;
  40216. }
  40217. #endif
  40218. #ifdef __LITTLE_ENDIAN__
  40219. __ai float16x4_t vreinterpret_f16_u64(uint64x1_t __p0) {
  40220. float16x4_t __ret;
  40221. __ret = (float16x4_t)(__p0);
  40222. return __ret;
  40223. }
  40224. #else
  40225. __ai float16x4_t vreinterpret_f16_u64(uint64x1_t __p0) {
  40226. float16x4_t __ret;
  40227. __ret = (float16x4_t)(__p0);
  40228. return __ret;
  40229. }
  40230. #endif
  40231. #ifdef __LITTLE_ENDIAN__
  40232. __ai float16x4_t vreinterpret_f16_u16(uint16x4_t __p0) {
  40233. float16x4_t __ret;
  40234. __ret = (float16x4_t)(__p0);
  40235. return __ret;
  40236. }
  40237. #else
  40238. __ai float16x4_t vreinterpret_f16_u16(uint16x4_t __p0) {
  40239. float16x4_t __ret;
  40240. __ret = (float16x4_t)(__p0);
  40241. return __ret;
  40242. }
  40243. #endif
  40244. #ifdef __LITTLE_ENDIAN__
  40245. __ai float16x4_t vreinterpret_f16_s8(int8x8_t __p0) {
  40246. float16x4_t __ret;
  40247. __ret = (float16x4_t)(__p0);
  40248. return __ret;
  40249. }
  40250. #else
  40251. __ai float16x4_t vreinterpret_f16_s8(int8x8_t __p0) {
  40252. float16x4_t __ret;
  40253. __ret = (float16x4_t)(__p0);
  40254. return __ret;
  40255. }
  40256. #endif
  40257. #ifdef __LITTLE_ENDIAN__
  40258. __ai float16x4_t vreinterpret_f16_f64(float64x1_t __p0) {
  40259. float16x4_t __ret;
  40260. __ret = (float16x4_t)(__p0);
  40261. return __ret;
  40262. }
  40263. #else
  40264. __ai float16x4_t vreinterpret_f16_f64(float64x1_t __p0) {
  40265. float16x4_t __ret;
  40266. __ret = (float16x4_t)(__p0);
  40267. return __ret;
  40268. }
  40269. #endif
  40270. #ifdef __LITTLE_ENDIAN__
  40271. __ai float16x4_t vreinterpret_f16_f32(float32x2_t __p0) {
  40272. float16x4_t __ret;
  40273. __ret = (float16x4_t)(__p0);
  40274. return __ret;
  40275. }
  40276. #else
  40277. __ai float16x4_t vreinterpret_f16_f32(float32x2_t __p0) {
  40278. float16x4_t __ret;
  40279. __ret = (float16x4_t)(__p0);
  40280. return __ret;
  40281. }
  40282. #endif
  40283. #ifdef __LITTLE_ENDIAN__
  40284. __ai float16x4_t vreinterpret_f16_s32(int32x2_t __p0) {
  40285. float16x4_t __ret;
  40286. __ret = (float16x4_t)(__p0);
  40287. return __ret;
  40288. }
  40289. #else
  40290. __ai float16x4_t vreinterpret_f16_s32(int32x2_t __p0) {
  40291. float16x4_t __ret;
  40292. __ret = (float16x4_t)(__p0);
  40293. return __ret;
  40294. }
  40295. #endif
  40296. #ifdef __LITTLE_ENDIAN__
  40297. __ai float16x4_t vreinterpret_f16_s64(int64x1_t __p0) {
  40298. float16x4_t __ret;
  40299. __ret = (float16x4_t)(__p0);
  40300. return __ret;
  40301. }
  40302. #else
  40303. __ai float16x4_t vreinterpret_f16_s64(int64x1_t __p0) {
  40304. float16x4_t __ret;
  40305. __ret = (float16x4_t)(__p0);
  40306. return __ret;
  40307. }
  40308. #endif
  40309. #ifdef __LITTLE_ENDIAN__
  40310. __ai float16x4_t vreinterpret_f16_s16(int16x4_t __p0) {
  40311. float16x4_t __ret;
  40312. __ret = (float16x4_t)(__p0);
  40313. return __ret;
  40314. }
  40315. #else
  40316. __ai float16x4_t vreinterpret_f16_s16(int16x4_t __p0) {
  40317. float16x4_t __ret;
  40318. __ret = (float16x4_t)(__p0);
  40319. return __ret;
  40320. }
  40321. #endif
  40322. #ifdef __LITTLE_ENDIAN__
  40323. __ai int32x2_t vreinterpret_s32_p8(poly8x8_t __p0) {
  40324. int32x2_t __ret;
  40325. __ret = (int32x2_t)(__p0);
  40326. return __ret;
  40327. }
  40328. #else
  40329. __ai int32x2_t vreinterpret_s32_p8(poly8x8_t __p0) {
  40330. int32x2_t __ret;
  40331. __ret = (int32x2_t)(__p0);
  40332. return __ret;
  40333. }
  40334. #endif
  40335. #ifdef __LITTLE_ENDIAN__
  40336. __ai int32x2_t vreinterpret_s32_p64(poly64x1_t __p0) {
  40337. int32x2_t __ret;
  40338. __ret = (int32x2_t)(__p0);
  40339. return __ret;
  40340. }
  40341. #else
  40342. __ai int32x2_t vreinterpret_s32_p64(poly64x1_t __p0) {
  40343. int32x2_t __ret;
  40344. __ret = (int32x2_t)(__p0);
  40345. return __ret;
  40346. }
  40347. #endif
  40348. #ifdef __LITTLE_ENDIAN__
  40349. __ai int32x2_t vreinterpret_s32_p16(poly16x4_t __p0) {
  40350. int32x2_t __ret;
  40351. __ret = (int32x2_t)(__p0);
  40352. return __ret;
  40353. }
  40354. #else
  40355. __ai int32x2_t vreinterpret_s32_p16(poly16x4_t __p0) {
  40356. int32x2_t __ret;
  40357. __ret = (int32x2_t)(__p0);
  40358. return __ret;
  40359. }
  40360. #endif
  40361. #ifdef __LITTLE_ENDIAN__
  40362. __ai int32x2_t vreinterpret_s32_u8(uint8x8_t __p0) {
  40363. int32x2_t __ret;
  40364. __ret = (int32x2_t)(__p0);
  40365. return __ret;
  40366. }
  40367. #else
  40368. __ai int32x2_t vreinterpret_s32_u8(uint8x8_t __p0) {
  40369. int32x2_t __ret;
  40370. __ret = (int32x2_t)(__p0);
  40371. return __ret;
  40372. }
  40373. #endif
  40374. #ifdef __LITTLE_ENDIAN__
  40375. __ai int32x2_t vreinterpret_s32_u32(uint32x2_t __p0) {
  40376. int32x2_t __ret;
  40377. __ret = (int32x2_t)(__p0);
  40378. return __ret;
  40379. }
  40380. #else
  40381. __ai int32x2_t vreinterpret_s32_u32(uint32x2_t __p0) {
  40382. int32x2_t __ret;
  40383. __ret = (int32x2_t)(__p0);
  40384. return __ret;
  40385. }
  40386. #endif
  40387. #ifdef __LITTLE_ENDIAN__
  40388. __ai int32x2_t vreinterpret_s32_u64(uint64x1_t __p0) {
  40389. int32x2_t __ret;
  40390. __ret = (int32x2_t)(__p0);
  40391. return __ret;
  40392. }
  40393. #else
  40394. __ai int32x2_t vreinterpret_s32_u64(uint64x1_t __p0) {
  40395. int32x2_t __ret;
  40396. __ret = (int32x2_t)(__p0);
  40397. return __ret;
  40398. }
  40399. #endif
  40400. #ifdef __LITTLE_ENDIAN__
  40401. __ai int32x2_t vreinterpret_s32_u16(uint16x4_t __p0) {
  40402. int32x2_t __ret;
  40403. __ret = (int32x2_t)(__p0);
  40404. return __ret;
  40405. }
  40406. #else
  40407. __ai int32x2_t vreinterpret_s32_u16(uint16x4_t __p0) {
  40408. int32x2_t __ret;
  40409. __ret = (int32x2_t)(__p0);
  40410. return __ret;
  40411. }
  40412. #endif
  40413. #ifdef __LITTLE_ENDIAN__
  40414. __ai int32x2_t vreinterpret_s32_s8(int8x8_t __p0) {
  40415. int32x2_t __ret;
  40416. __ret = (int32x2_t)(__p0);
  40417. return __ret;
  40418. }
  40419. #else
  40420. __ai int32x2_t vreinterpret_s32_s8(int8x8_t __p0) {
  40421. int32x2_t __ret;
  40422. __ret = (int32x2_t)(__p0);
  40423. return __ret;
  40424. }
  40425. #endif
  40426. #ifdef __LITTLE_ENDIAN__
  40427. __ai int32x2_t vreinterpret_s32_f64(float64x1_t __p0) {
  40428. int32x2_t __ret;
  40429. __ret = (int32x2_t)(__p0);
  40430. return __ret;
  40431. }
  40432. #else
  40433. __ai int32x2_t vreinterpret_s32_f64(float64x1_t __p0) {
  40434. int32x2_t __ret;
  40435. __ret = (int32x2_t)(__p0);
  40436. return __ret;
  40437. }
  40438. #endif
  40439. #ifdef __LITTLE_ENDIAN__
  40440. __ai int32x2_t vreinterpret_s32_f32(float32x2_t __p0) {
  40441. int32x2_t __ret;
  40442. __ret = (int32x2_t)(__p0);
  40443. return __ret;
  40444. }
  40445. #else
  40446. __ai int32x2_t vreinterpret_s32_f32(float32x2_t __p0) {
  40447. int32x2_t __ret;
  40448. __ret = (int32x2_t)(__p0);
  40449. return __ret;
  40450. }
  40451. #endif
  40452. #ifdef __LITTLE_ENDIAN__
  40453. __ai int32x2_t vreinterpret_s32_f16(float16x4_t __p0) {
  40454. int32x2_t __ret;
  40455. __ret = (int32x2_t)(__p0);
  40456. return __ret;
  40457. }
  40458. #else
  40459. __ai int32x2_t vreinterpret_s32_f16(float16x4_t __p0) {
  40460. int32x2_t __ret;
  40461. __ret = (int32x2_t)(__p0);
  40462. return __ret;
  40463. }
  40464. #endif
  40465. #ifdef __LITTLE_ENDIAN__
  40466. __ai int32x2_t vreinterpret_s32_s64(int64x1_t __p0) {
  40467. int32x2_t __ret;
  40468. __ret = (int32x2_t)(__p0);
  40469. return __ret;
  40470. }
  40471. #else
  40472. __ai int32x2_t vreinterpret_s32_s64(int64x1_t __p0) {
  40473. int32x2_t __ret;
  40474. __ret = (int32x2_t)(__p0);
  40475. return __ret;
  40476. }
  40477. #endif
  40478. #ifdef __LITTLE_ENDIAN__
  40479. __ai int32x2_t vreinterpret_s32_s16(int16x4_t __p0) {
  40480. int32x2_t __ret;
  40481. __ret = (int32x2_t)(__p0);
  40482. return __ret;
  40483. }
  40484. #else
  40485. __ai int32x2_t vreinterpret_s32_s16(int16x4_t __p0) {
  40486. int32x2_t __ret;
  40487. __ret = (int32x2_t)(__p0);
  40488. return __ret;
  40489. }
  40490. #endif
  40491. #ifdef __LITTLE_ENDIAN__
  40492. __ai int64x1_t vreinterpret_s64_p8(poly8x8_t __p0) {
  40493. int64x1_t __ret;
  40494. __ret = (int64x1_t)(__p0);
  40495. return __ret;
  40496. }
  40497. #else
  40498. __ai int64x1_t vreinterpret_s64_p8(poly8x8_t __p0) {
  40499. int64x1_t __ret;
  40500. __ret = (int64x1_t)(__p0);
  40501. return __ret;
  40502. }
  40503. #endif
  40504. #ifdef __LITTLE_ENDIAN__
  40505. __ai int64x1_t vreinterpret_s64_p64(poly64x1_t __p0) {
  40506. int64x1_t __ret;
  40507. __ret = (int64x1_t)(__p0);
  40508. return __ret;
  40509. }
  40510. #else
  40511. __ai int64x1_t vreinterpret_s64_p64(poly64x1_t __p0) {
  40512. int64x1_t __ret;
  40513. __ret = (int64x1_t)(__p0);
  40514. return __ret;
  40515. }
  40516. #endif
  40517. #ifdef __LITTLE_ENDIAN__
  40518. __ai int64x1_t vreinterpret_s64_p16(poly16x4_t __p0) {
  40519. int64x1_t __ret;
  40520. __ret = (int64x1_t)(__p0);
  40521. return __ret;
  40522. }
  40523. #else
  40524. __ai int64x1_t vreinterpret_s64_p16(poly16x4_t __p0) {
  40525. int64x1_t __ret;
  40526. __ret = (int64x1_t)(__p0);
  40527. return __ret;
  40528. }
  40529. #endif
  40530. #ifdef __LITTLE_ENDIAN__
  40531. __ai int64x1_t vreinterpret_s64_u8(uint8x8_t __p0) {
  40532. int64x1_t __ret;
  40533. __ret = (int64x1_t)(__p0);
  40534. return __ret;
  40535. }
  40536. #else
  40537. __ai int64x1_t vreinterpret_s64_u8(uint8x8_t __p0) {
  40538. int64x1_t __ret;
  40539. __ret = (int64x1_t)(__p0);
  40540. return __ret;
  40541. }
  40542. #endif
  40543. #ifdef __LITTLE_ENDIAN__
  40544. __ai int64x1_t vreinterpret_s64_u32(uint32x2_t __p0) {
  40545. int64x1_t __ret;
  40546. __ret = (int64x1_t)(__p0);
  40547. return __ret;
  40548. }
  40549. #else
  40550. __ai int64x1_t vreinterpret_s64_u32(uint32x2_t __p0) {
  40551. int64x1_t __ret;
  40552. __ret = (int64x1_t)(__p0);
  40553. return __ret;
  40554. }
  40555. #endif
  40556. #ifdef __LITTLE_ENDIAN__
  40557. __ai int64x1_t vreinterpret_s64_u64(uint64x1_t __p0) {
  40558. int64x1_t __ret;
  40559. __ret = (int64x1_t)(__p0);
  40560. return __ret;
  40561. }
  40562. #else
  40563. __ai int64x1_t vreinterpret_s64_u64(uint64x1_t __p0) {
  40564. int64x1_t __ret;
  40565. __ret = (int64x1_t)(__p0);
  40566. return __ret;
  40567. }
  40568. #endif
  40569. #ifdef __LITTLE_ENDIAN__
  40570. __ai int64x1_t vreinterpret_s64_u16(uint16x4_t __p0) {
  40571. int64x1_t __ret;
  40572. __ret = (int64x1_t)(__p0);
  40573. return __ret;
  40574. }
  40575. #else
  40576. __ai int64x1_t vreinterpret_s64_u16(uint16x4_t __p0) {
  40577. int64x1_t __ret;
  40578. __ret = (int64x1_t)(__p0);
  40579. return __ret;
  40580. }
  40581. #endif
  40582. #ifdef __LITTLE_ENDIAN__
  40583. __ai int64x1_t vreinterpret_s64_s8(int8x8_t __p0) {
  40584. int64x1_t __ret;
  40585. __ret = (int64x1_t)(__p0);
  40586. return __ret;
  40587. }
  40588. #else
  40589. __ai int64x1_t vreinterpret_s64_s8(int8x8_t __p0) {
  40590. int64x1_t __ret;
  40591. __ret = (int64x1_t)(__p0);
  40592. return __ret;
  40593. }
  40594. #endif
  40595. #ifdef __LITTLE_ENDIAN__
  40596. __ai int64x1_t vreinterpret_s64_f64(float64x1_t __p0) {
  40597. int64x1_t __ret;
  40598. __ret = (int64x1_t)(__p0);
  40599. return __ret;
  40600. }
  40601. #else
  40602. __ai int64x1_t vreinterpret_s64_f64(float64x1_t __p0) {
  40603. int64x1_t __ret;
  40604. __ret = (int64x1_t)(__p0);
  40605. return __ret;
  40606. }
  40607. #endif
  40608. #ifdef __LITTLE_ENDIAN__
  40609. __ai int64x1_t vreinterpret_s64_f32(float32x2_t __p0) {
  40610. int64x1_t __ret;
  40611. __ret = (int64x1_t)(__p0);
  40612. return __ret;
  40613. }
  40614. #else
  40615. __ai int64x1_t vreinterpret_s64_f32(float32x2_t __p0) {
  40616. int64x1_t __ret;
  40617. __ret = (int64x1_t)(__p0);
  40618. return __ret;
  40619. }
  40620. #endif
  40621. #ifdef __LITTLE_ENDIAN__
  40622. __ai int64x1_t vreinterpret_s64_f16(float16x4_t __p0) {
  40623. int64x1_t __ret;
  40624. __ret = (int64x1_t)(__p0);
  40625. return __ret;
  40626. }
  40627. #else
  40628. __ai int64x1_t vreinterpret_s64_f16(float16x4_t __p0) {
  40629. int64x1_t __ret;
  40630. __ret = (int64x1_t)(__p0);
  40631. return __ret;
  40632. }
  40633. #endif
  40634. #ifdef __LITTLE_ENDIAN__
  40635. __ai int64x1_t vreinterpret_s64_s32(int32x2_t __p0) {
  40636. int64x1_t __ret;
  40637. __ret = (int64x1_t)(__p0);
  40638. return __ret;
  40639. }
  40640. #else
  40641. __ai int64x1_t vreinterpret_s64_s32(int32x2_t __p0) {
  40642. int64x1_t __ret;
  40643. __ret = (int64x1_t)(__p0);
  40644. return __ret;
  40645. }
  40646. #endif
  40647. #ifdef __LITTLE_ENDIAN__
  40648. __ai int64x1_t vreinterpret_s64_s16(int16x4_t __p0) {
  40649. int64x1_t __ret;
  40650. __ret = (int64x1_t)(__p0);
  40651. return __ret;
  40652. }
  40653. #else
  40654. __ai int64x1_t vreinterpret_s64_s16(int16x4_t __p0) {
  40655. int64x1_t __ret;
  40656. __ret = (int64x1_t)(__p0);
  40657. return __ret;
  40658. }
  40659. #endif
  40660. #ifdef __LITTLE_ENDIAN__
  40661. __ai int16x4_t vreinterpret_s16_p8(poly8x8_t __p0) {
  40662. int16x4_t __ret;
  40663. __ret = (int16x4_t)(__p0);
  40664. return __ret;
  40665. }
  40666. #else
  40667. __ai int16x4_t vreinterpret_s16_p8(poly8x8_t __p0) {
  40668. int16x4_t __ret;
  40669. __ret = (int16x4_t)(__p0);
  40670. return __ret;
  40671. }
  40672. #endif
  40673. #ifdef __LITTLE_ENDIAN__
  40674. __ai int16x4_t vreinterpret_s16_p64(poly64x1_t __p0) {
  40675. int16x4_t __ret;
  40676. __ret = (int16x4_t)(__p0);
  40677. return __ret;
  40678. }
  40679. #else
  40680. __ai int16x4_t vreinterpret_s16_p64(poly64x1_t __p0) {
  40681. int16x4_t __ret;
  40682. __ret = (int16x4_t)(__p0);
  40683. return __ret;
  40684. }
  40685. #endif
  40686. #ifdef __LITTLE_ENDIAN__
  40687. __ai int16x4_t vreinterpret_s16_p16(poly16x4_t __p0) {
  40688. int16x4_t __ret;
  40689. __ret = (int16x4_t)(__p0);
  40690. return __ret;
  40691. }
  40692. #else
  40693. __ai int16x4_t vreinterpret_s16_p16(poly16x4_t __p0) {
  40694. int16x4_t __ret;
  40695. __ret = (int16x4_t)(__p0);
  40696. return __ret;
  40697. }
  40698. #endif
  40699. #ifdef __LITTLE_ENDIAN__
  40700. __ai int16x4_t vreinterpret_s16_u8(uint8x8_t __p0) {
  40701. int16x4_t __ret;
  40702. __ret = (int16x4_t)(__p0);
  40703. return __ret;
  40704. }
  40705. #else
  40706. __ai int16x4_t vreinterpret_s16_u8(uint8x8_t __p0) {
  40707. int16x4_t __ret;
  40708. __ret = (int16x4_t)(__p0);
  40709. return __ret;
  40710. }
  40711. #endif
  40712. #ifdef __LITTLE_ENDIAN__
  40713. __ai int16x4_t vreinterpret_s16_u32(uint32x2_t __p0) {
  40714. int16x4_t __ret;
  40715. __ret = (int16x4_t)(__p0);
  40716. return __ret;
  40717. }
  40718. #else
  40719. __ai int16x4_t vreinterpret_s16_u32(uint32x2_t __p0) {
  40720. int16x4_t __ret;
  40721. __ret = (int16x4_t)(__p0);
  40722. return __ret;
  40723. }
  40724. #endif
  40725. #ifdef __LITTLE_ENDIAN__
  40726. __ai int16x4_t vreinterpret_s16_u64(uint64x1_t __p0) {
  40727. int16x4_t __ret;
  40728. __ret = (int16x4_t)(__p0);
  40729. return __ret;
  40730. }
  40731. #else
  40732. __ai int16x4_t vreinterpret_s16_u64(uint64x1_t __p0) {
  40733. int16x4_t __ret;
  40734. __ret = (int16x4_t)(__p0);
  40735. return __ret;
  40736. }
  40737. #endif
  40738. #ifdef __LITTLE_ENDIAN__
  40739. __ai int16x4_t vreinterpret_s16_u16(uint16x4_t __p0) {
  40740. int16x4_t __ret;
  40741. __ret = (int16x4_t)(__p0);
  40742. return __ret;
  40743. }
  40744. #else
  40745. __ai int16x4_t vreinterpret_s16_u16(uint16x4_t __p0) {
  40746. int16x4_t __ret;
  40747. __ret = (int16x4_t)(__p0);
  40748. return __ret;
  40749. }
  40750. #endif
  40751. #ifdef __LITTLE_ENDIAN__
  40752. __ai int16x4_t vreinterpret_s16_s8(int8x8_t __p0) {
  40753. int16x4_t __ret;
  40754. __ret = (int16x4_t)(__p0);
  40755. return __ret;
  40756. }
  40757. #else
  40758. __ai int16x4_t vreinterpret_s16_s8(int8x8_t __p0) {
  40759. int16x4_t __ret;
  40760. __ret = (int16x4_t)(__p0);
  40761. return __ret;
  40762. }
  40763. #endif
  40764. #ifdef __LITTLE_ENDIAN__
  40765. __ai int16x4_t vreinterpret_s16_f64(float64x1_t __p0) {
  40766. int16x4_t __ret;
  40767. __ret = (int16x4_t)(__p0);
  40768. return __ret;
  40769. }
  40770. #else
  40771. __ai int16x4_t vreinterpret_s16_f64(float64x1_t __p0) {
  40772. int16x4_t __ret;
  40773. __ret = (int16x4_t)(__p0);
  40774. return __ret;
  40775. }
  40776. #endif
  40777. #ifdef __LITTLE_ENDIAN__
  40778. __ai int16x4_t vreinterpret_s16_f32(float32x2_t __p0) {
  40779. int16x4_t __ret;
  40780. __ret = (int16x4_t)(__p0);
  40781. return __ret;
  40782. }
  40783. #else
  40784. __ai int16x4_t vreinterpret_s16_f32(float32x2_t __p0) {
  40785. int16x4_t __ret;
  40786. __ret = (int16x4_t)(__p0);
  40787. return __ret;
  40788. }
  40789. #endif
  40790. #ifdef __LITTLE_ENDIAN__
  40791. __ai int16x4_t vreinterpret_s16_f16(float16x4_t __p0) {
  40792. int16x4_t __ret;
  40793. __ret = (int16x4_t)(__p0);
  40794. return __ret;
  40795. }
  40796. #else
  40797. __ai int16x4_t vreinterpret_s16_f16(float16x4_t __p0) {
  40798. int16x4_t __ret;
  40799. __ret = (int16x4_t)(__p0);
  40800. return __ret;
  40801. }
  40802. #endif
  40803. #ifdef __LITTLE_ENDIAN__
  40804. __ai int16x4_t vreinterpret_s16_s32(int32x2_t __p0) {
  40805. int16x4_t __ret;
  40806. __ret = (int16x4_t)(__p0);
  40807. return __ret;
  40808. }
  40809. #else
  40810. __ai int16x4_t vreinterpret_s16_s32(int32x2_t __p0) {
  40811. int16x4_t __ret;
  40812. __ret = (int16x4_t)(__p0);
  40813. return __ret;
  40814. }
  40815. #endif
  40816. #ifdef __LITTLE_ENDIAN__
  40817. __ai int16x4_t vreinterpret_s16_s64(int64x1_t __p0) {
  40818. int16x4_t __ret;
  40819. __ret = (int16x4_t)(__p0);
  40820. return __ret;
  40821. }
  40822. #else
  40823. __ai int16x4_t vreinterpret_s16_s64(int64x1_t __p0) {
  40824. int16x4_t __ret;
  40825. __ret = (int16x4_t)(__p0);
  40826. return __ret;
  40827. }
  40828. #endif
  40829. #endif
  40830. #if __ARM_ARCH >= 8 && defined(__aarch64__) && defined(__ARM_FEATURE_DIRECTED_ROUNDING)
  40831. #ifdef __LITTLE_ENDIAN__
  40832. __ai float64x2_t vrndq_f64(float64x2_t __p0) {
  40833. float64x2_t __ret;
  40834. __ret = (float64x2_t) __builtin_neon_vrndq_v((int8x16_t)__p0, 42);
  40835. return __ret;
  40836. }
  40837. #else
  40838. __ai float64x2_t vrndq_f64(float64x2_t __p0) {
  40839. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  40840. float64x2_t __ret;
  40841. __ret = (float64x2_t) __builtin_neon_vrndq_v((int8x16_t)__rev0, 42);
  40842. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  40843. return __ret;
  40844. }
  40845. #endif
  40846. #ifdef __LITTLE_ENDIAN__
  40847. __ai float64x1_t vrnd_f64(float64x1_t __p0) {
  40848. float64x1_t __ret;
  40849. __ret = (float64x1_t) __builtin_neon_vrnd_v((int8x8_t)__p0, 10);
  40850. return __ret;
  40851. }
  40852. #else
  40853. __ai float64x1_t vrnd_f64(float64x1_t __p0) {
  40854. float64x1_t __ret;
  40855. __ret = (float64x1_t) __builtin_neon_vrnd_v((int8x8_t)__p0, 10);
  40856. return __ret;
  40857. }
  40858. #endif
  40859. #ifdef __LITTLE_ENDIAN__
  40860. __ai float64x2_t vrndaq_f64(float64x2_t __p0) {
  40861. float64x2_t __ret;
  40862. __ret = (float64x2_t) __builtin_neon_vrndaq_v((int8x16_t)__p0, 42);
  40863. return __ret;
  40864. }
  40865. #else
  40866. __ai float64x2_t vrndaq_f64(float64x2_t __p0) {
  40867. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  40868. float64x2_t __ret;
  40869. __ret = (float64x2_t) __builtin_neon_vrndaq_v((int8x16_t)__rev0, 42);
  40870. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  40871. return __ret;
  40872. }
  40873. #endif
  40874. #ifdef __LITTLE_ENDIAN__
  40875. __ai float64x1_t vrnda_f64(float64x1_t __p0) {
  40876. float64x1_t __ret;
  40877. __ret = (float64x1_t) __builtin_neon_vrnda_v((int8x8_t)__p0, 10);
  40878. return __ret;
  40879. }
  40880. #else
  40881. __ai float64x1_t vrnda_f64(float64x1_t __p0) {
  40882. float64x1_t __ret;
  40883. __ret = (float64x1_t) __builtin_neon_vrnda_v((int8x8_t)__p0, 10);
  40884. return __ret;
  40885. }
  40886. #endif
  40887. #ifdef __LITTLE_ENDIAN__
  40888. __ai float64x2_t vrndiq_f64(float64x2_t __p0) {
  40889. float64x2_t __ret;
  40890. __ret = (float64x2_t) __builtin_neon_vrndiq_v((int8x16_t)__p0, 42);
  40891. return __ret;
  40892. }
  40893. #else
  40894. __ai float64x2_t vrndiq_f64(float64x2_t __p0) {
  40895. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  40896. float64x2_t __ret;
  40897. __ret = (float64x2_t) __builtin_neon_vrndiq_v((int8x16_t)__rev0, 42);
  40898. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  40899. return __ret;
  40900. }
  40901. #endif
  40902. #ifdef __LITTLE_ENDIAN__
  40903. __ai float64x1_t vrndi_f64(float64x1_t __p0) {
  40904. float64x1_t __ret;
  40905. __ret = (float64x1_t) __builtin_neon_vrndi_v((int8x8_t)__p0, 10);
  40906. return __ret;
  40907. }
  40908. #else
  40909. __ai float64x1_t vrndi_f64(float64x1_t __p0) {
  40910. float64x1_t __ret;
  40911. __ret = (float64x1_t) __builtin_neon_vrndi_v((int8x8_t)__p0, 10);
  40912. return __ret;
  40913. }
  40914. #endif
  40915. #ifdef __LITTLE_ENDIAN__
  40916. __ai float64x2_t vrndmq_f64(float64x2_t __p0) {
  40917. float64x2_t __ret;
  40918. __ret = (float64x2_t) __builtin_neon_vrndmq_v((int8x16_t)__p0, 42);
  40919. return __ret;
  40920. }
  40921. #else
  40922. __ai float64x2_t vrndmq_f64(float64x2_t __p0) {
  40923. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  40924. float64x2_t __ret;
  40925. __ret = (float64x2_t) __builtin_neon_vrndmq_v((int8x16_t)__rev0, 42);
  40926. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  40927. return __ret;
  40928. }
  40929. #endif
  40930. #ifdef __LITTLE_ENDIAN__
  40931. __ai float64x1_t vrndm_f64(float64x1_t __p0) {
  40932. float64x1_t __ret;
  40933. __ret = (float64x1_t) __builtin_neon_vrndm_v((int8x8_t)__p0, 10);
  40934. return __ret;
  40935. }
  40936. #else
  40937. __ai float64x1_t vrndm_f64(float64x1_t __p0) {
  40938. float64x1_t __ret;
  40939. __ret = (float64x1_t) __builtin_neon_vrndm_v((int8x8_t)__p0, 10);
  40940. return __ret;
  40941. }
  40942. #endif
  40943. #ifdef __LITTLE_ENDIAN__
  40944. __ai float64x2_t vrndnq_f64(float64x2_t __p0) {
  40945. float64x2_t __ret;
  40946. __ret = (float64x2_t) __builtin_neon_vrndnq_v((int8x16_t)__p0, 42);
  40947. return __ret;
  40948. }
  40949. #else
  40950. __ai float64x2_t vrndnq_f64(float64x2_t __p0) {
  40951. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  40952. float64x2_t __ret;
  40953. __ret = (float64x2_t) __builtin_neon_vrndnq_v((int8x16_t)__rev0, 42);
  40954. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  40955. return __ret;
  40956. }
  40957. #endif
  40958. #ifdef __LITTLE_ENDIAN__
  40959. __ai float64x1_t vrndn_f64(float64x1_t __p0) {
  40960. float64x1_t __ret;
  40961. __ret = (float64x1_t) __builtin_neon_vrndn_v((int8x8_t)__p0, 10);
  40962. return __ret;
  40963. }
  40964. #else
  40965. __ai float64x1_t vrndn_f64(float64x1_t __p0) {
  40966. float64x1_t __ret;
  40967. __ret = (float64x1_t) __builtin_neon_vrndn_v((int8x8_t)__p0, 10);
  40968. return __ret;
  40969. }
  40970. #endif
  40971. #ifdef __LITTLE_ENDIAN__
  40972. __ai float64x2_t vrndpq_f64(float64x2_t __p0) {
  40973. float64x2_t __ret;
  40974. __ret = (float64x2_t) __builtin_neon_vrndpq_v((int8x16_t)__p0, 42);
  40975. return __ret;
  40976. }
  40977. #else
  40978. __ai float64x2_t vrndpq_f64(float64x2_t __p0) {
  40979. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  40980. float64x2_t __ret;
  40981. __ret = (float64x2_t) __builtin_neon_vrndpq_v((int8x16_t)__rev0, 42);
  40982. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  40983. return __ret;
  40984. }
  40985. #endif
  40986. #ifdef __LITTLE_ENDIAN__
  40987. __ai float64x1_t vrndp_f64(float64x1_t __p0) {
  40988. float64x1_t __ret;
  40989. __ret = (float64x1_t) __builtin_neon_vrndp_v((int8x8_t)__p0, 10);
  40990. return __ret;
  40991. }
  40992. #else
  40993. __ai float64x1_t vrndp_f64(float64x1_t __p0) {
  40994. float64x1_t __ret;
  40995. __ret = (float64x1_t) __builtin_neon_vrndp_v((int8x8_t)__p0, 10);
  40996. return __ret;
  40997. }
  40998. #endif
  40999. #ifdef __LITTLE_ENDIAN__
  41000. __ai float64x2_t vrndxq_f64(float64x2_t __p0) {
  41001. float64x2_t __ret;
  41002. __ret = (float64x2_t) __builtin_neon_vrndxq_v((int8x16_t)__p0, 42);
  41003. return __ret;
  41004. }
  41005. #else
  41006. __ai float64x2_t vrndxq_f64(float64x2_t __p0) {
  41007. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  41008. float64x2_t __ret;
  41009. __ret = (float64x2_t) __builtin_neon_vrndxq_v((int8x16_t)__rev0, 42);
  41010. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  41011. return __ret;
  41012. }
  41013. #endif
  41014. #ifdef __LITTLE_ENDIAN__
  41015. __ai float64x1_t vrndx_f64(float64x1_t __p0) {
  41016. float64x1_t __ret;
  41017. __ret = (float64x1_t) __builtin_neon_vrndx_v((int8x8_t)__p0, 10);
  41018. return __ret;
  41019. }
  41020. #else
  41021. __ai float64x1_t vrndx_f64(float64x1_t __p0) {
  41022. float64x1_t __ret;
  41023. __ret = (float64x1_t) __builtin_neon_vrndx_v((int8x8_t)__p0, 10);
  41024. return __ret;
  41025. }
  41026. #endif
  41027. #endif
  41028. #if __ARM_ARCH >= 8 && defined(__aarch64__) && defined(__ARM_FEATURE_NUMERIC_MAXMIN)
  41029. #ifdef __LITTLE_ENDIAN__
  41030. __ai float64x2_t vmaxnmq_f64(float64x2_t __p0, float64x2_t __p1) {
  41031. float64x2_t __ret;
  41032. __ret = (float64x2_t) __builtin_neon_vmaxnmq_v((int8x16_t)__p0, (int8x16_t)__p1, 42);
  41033. return __ret;
  41034. }
  41035. #else
  41036. __ai float64x2_t vmaxnmq_f64(float64x2_t __p0, float64x2_t __p1) {
  41037. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  41038. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  41039. float64x2_t __ret;
  41040. __ret = (float64x2_t) __builtin_neon_vmaxnmq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 42);
  41041. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  41042. return __ret;
  41043. }
  41044. #endif
  41045. #ifdef __LITTLE_ENDIAN__
  41046. __ai float64x1_t vmaxnm_f64(float64x1_t __p0, float64x1_t __p1) {
  41047. float64x1_t __ret;
  41048. __ret = (float64x1_t) __builtin_neon_vmaxnm_v((int8x8_t)__p0, (int8x8_t)__p1, 10);
  41049. return __ret;
  41050. }
  41051. #else
  41052. __ai float64x1_t vmaxnm_f64(float64x1_t __p0, float64x1_t __p1) {
  41053. float64x1_t __ret;
  41054. __ret = (float64x1_t) __builtin_neon_vmaxnm_v((int8x8_t)__p0, (int8x8_t)__p1, 10);
  41055. return __ret;
  41056. }
  41057. #endif
  41058. #ifdef __LITTLE_ENDIAN__
  41059. __ai float64x2_t vminnmq_f64(float64x2_t __p0, float64x2_t __p1) {
  41060. float64x2_t __ret;
  41061. __ret = (float64x2_t) __builtin_neon_vminnmq_v((int8x16_t)__p0, (int8x16_t)__p1, 42);
  41062. return __ret;
  41063. }
  41064. #else
  41065. __ai float64x2_t vminnmq_f64(float64x2_t __p0, float64x2_t __p1) {
  41066. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  41067. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  41068. float64x2_t __ret;
  41069. __ret = (float64x2_t) __builtin_neon_vminnmq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 42);
  41070. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  41071. return __ret;
  41072. }
  41073. #endif
  41074. #ifdef __LITTLE_ENDIAN__
  41075. __ai float64x1_t vminnm_f64(float64x1_t __p0, float64x1_t __p1) {
  41076. float64x1_t __ret;
  41077. __ret = (float64x1_t) __builtin_neon_vminnm_v((int8x8_t)__p0, (int8x8_t)__p1, 10);
  41078. return __ret;
  41079. }
  41080. #else
  41081. __ai float64x1_t vminnm_f64(float64x1_t __p0, float64x1_t __p1) {
  41082. float64x1_t __ret;
  41083. __ret = (float64x1_t) __builtin_neon_vminnm_v((int8x8_t)__p0, (int8x8_t)__p1, 10);
  41084. return __ret;
  41085. }
  41086. #endif
  41087. #endif
  41088. #if defined(__ARM_FEATURE_DOTPROD)
  41089. #ifdef __LITTLE_ENDIAN__
  41090. __ai uint32x4_t vdotq_u32(uint32x4_t __p0, uint8x16_t __p1, uint8x16_t __p2) {
  41091. uint32x4_t __ret;
  41092. __ret = (uint32x4_t) __builtin_neon_vdotq_v((int8x16_t)__p0, (int8x16_t)__p1, (int8x16_t)__p2, 50);
  41093. return __ret;
  41094. }
  41095. #else
  41096. __ai uint32x4_t vdotq_u32(uint32x4_t __p0, uint8x16_t __p1, uint8x16_t __p2) {
  41097. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  41098. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  41099. uint8x16_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  41100. uint32x4_t __ret;
  41101. __ret = (uint32x4_t) __builtin_neon_vdotq_v((int8x16_t)__rev0, (int8x16_t)__rev1, (int8x16_t)__rev2, 50);
  41102. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  41103. return __ret;
  41104. }
  41105. __ai uint32x4_t __noswap_vdotq_u32(uint32x4_t __p0, uint8x16_t __p1, uint8x16_t __p2) {
  41106. uint32x4_t __ret;
  41107. __ret = (uint32x4_t) __builtin_neon_vdotq_v((int8x16_t)__p0, (int8x16_t)__p1, (int8x16_t)__p2, 50);
  41108. return __ret;
  41109. }
  41110. #endif
  41111. #ifdef __LITTLE_ENDIAN__
  41112. __ai int32x4_t vdotq_s32(int32x4_t __p0, int8x16_t __p1, int8x16_t __p2) {
  41113. int32x4_t __ret;
  41114. __ret = (int32x4_t) __builtin_neon_vdotq_v((int8x16_t)__p0, (int8x16_t)__p1, (int8x16_t)__p2, 34);
  41115. return __ret;
  41116. }
  41117. #else
  41118. __ai int32x4_t vdotq_s32(int32x4_t __p0, int8x16_t __p1, int8x16_t __p2) {
  41119. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  41120. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  41121. int8x16_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  41122. int32x4_t __ret;
  41123. __ret = (int32x4_t) __builtin_neon_vdotq_v((int8x16_t)__rev0, (int8x16_t)__rev1, (int8x16_t)__rev2, 34);
  41124. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  41125. return __ret;
  41126. }
  41127. __ai int32x4_t __noswap_vdotq_s32(int32x4_t __p0, int8x16_t __p1, int8x16_t __p2) {
  41128. int32x4_t __ret;
  41129. __ret = (int32x4_t) __builtin_neon_vdotq_v((int8x16_t)__p0, (int8x16_t)__p1, (int8x16_t)__p2, 34);
  41130. return __ret;
  41131. }
  41132. #endif
  41133. #ifdef __LITTLE_ENDIAN__
  41134. __ai uint32x2_t vdot_u32(uint32x2_t __p0, uint8x8_t __p1, uint8x8_t __p2) {
  41135. uint32x2_t __ret;
  41136. __ret = (uint32x2_t) __builtin_neon_vdot_v((int8x8_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 18);
  41137. return __ret;
  41138. }
  41139. #else
  41140. __ai uint32x2_t vdot_u32(uint32x2_t __p0, uint8x8_t __p1, uint8x8_t __p2) {
  41141. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  41142. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  41143. uint8x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  41144. uint32x2_t __ret;
  41145. __ret = (uint32x2_t) __builtin_neon_vdot_v((int8x8_t)__rev0, (int8x8_t)__rev1, (int8x8_t)__rev2, 18);
  41146. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  41147. return __ret;
  41148. }
  41149. __ai uint32x2_t __noswap_vdot_u32(uint32x2_t __p0, uint8x8_t __p1, uint8x8_t __p2) {
  41150. uint32x2_t __ret;
  41151. __ret = (uint32x2_t) __builtin_neon_vdot_v((int8x8_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 18);
  41152. return __ret;
  41153. }
  41154. #endif
  41155. #ifdef __LITTLE_ENDIAN__
  41156. __ai int32x2_t vdot_s32(int32x2_t __p0, int8x8_t __p1, int8x8_t __p2) {
  41157. int32x2_t __ret;
  41158. __ret = (int32x2_t) __builtin_neon_vdot_v((int8x8_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 2);
  41159. return __ret;
  41160. }
  41161. #else
  41162. __ai int32x2_t vdot_s32(int32x2_t __p0, int8x8_t __p1, int8x8_t __p2) {
  41163. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  41164. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  41165. int8x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  41166. int32x2_t __ret;
  41167. __ret = (int32x2_t) __builtin_neon_vdot_v((int8x8_t)__rev0, (int8x8_t)__rev1, (int8x8_t)__rev2, 2);
  41168. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  41169. return __ret;
  41170. }
  41171. __ai int32x2_t __noswap_vdot_s32(int32x2_t __p0, int8x8_t __p1, int8x8_t __p2) {
  41172. int32x2_t __ret;
  41173. __ret = (int32x2_t) __builtin_neon_vdot_v((int8x8_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 2);
  41174. return __ret;
  41175. }
  41176. #endif
  41177. #ifdef __LITTLE_ENDIAN__
  41178. #define vdotq_lane_u32(__p0, __p1, __p2, __p3) __extension__ ({ \
  41179. uint32x4_t __s0 = __p0; \
  41180. uint8x16_t __s1 = __p1; \
  41181. uint8x8_t __s2 = __p2; \
  41182. uint32x4_t __ret; \
  41183. uint8x8_t __reint = __s2; \
  41184. uint32x4_t __reint1 = __builtin_shufflevector(*(uint32x2_t *) &__reint, *(uint32x2_t *) &__reint, __p3, __p3, __p3, __p3); \
  41185. __ret = vdotq_u32(__s0, __s1, *(uint8x16_t *) &__reint1); \
  41186. __ret; \
  41187. })
  41188. #else
  41189. #define vdotq_lane_u32(__p0, __p1, __p2, __p3) __extension__ ({ \
  41190. uint32x4_t __s0 = __p0; \
  41191. uint8x16_t __s1 = __p1; \
  41192. uint8x8_t __s2 = __p2; \
  41193. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  41194. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  41195. uint8x8_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 7, 6, 5, 4, 3, 2, 1, 0); \
  41196. uint32x4_t __ret; \
  41197. uint8x8_t __reint = __rev2; \
  41198. uint32x4_t __reint1 = __builtin_shufflevector(*(uint32x2_t *) &__reint, *(uint32x2_t *) &__reint, __p3, __p3, __p3, __p3); \
  41199. __ret = __noswap_vdotq_u32(__rev0, __rev1, *(uint8x16_t *) &__reint1); \
  41200. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  41201. __ret; \
  41202. })
  41203. #endif
  41204. #ifdef __LITTLE_ENDIAN__
  41205. #define vdotq_lane_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  41206. int32x4_t __s0 = __p0; \
  41207. int8x16_t __s1 = __p1; \
  41208. int8x8_t __s2 = __p2; \
  41209. int32x4_t __ret; \
  41210. int8x8_t __reint = __s2; \
  41211. int32x4_t __reint1 = __builtin_shufflevector(*(uint32x2_t *) &__reint, *(uint32x2_t *) &__reint, __p3, __p3, __p3, __p3); \
  41212. __ret = vdotq_s32(__s0, __s1, *(int8x16_t *) &__reint1); \
  41213. __ret; \
  41214. })
  41215. #else
  41216. #define vdotq_lane_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  41217. int32x4_t __s0 = __p0; \
  41218. int8x16_t __s1 = __p1; \
  41219. int8x8_t __s2 = __p2; \
  41220. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  41221. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  41222. int8x8_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 7, 6, 5, 4, 3, 2, 1, 0); \
  41223. int32x4_t __ret; \
  41224. int8x8_t __reint = __rev2; \
  41225. int32x4_t __reint1 = __builtin_shufflevector(*(uint32x2_t *) &__reint, *(uint32x2_t *) &__reint, __p3, __p3, __p3, __p3); \
  41226. __ret = __noswap_vdotq_s32(__rev0, __rev1, *(int8x16_t *) &__reint1); \
  41227. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  41228. __ret; \
  41229. })
  41230. #endif
  41231. #ifdef __LITTLE_ENDIAN__
  41232. #define vdot_lane_u32(__p0, __p1, __p2, __p3) __extension__ ({ \
  41233. uint32x2_t __s0 = __p0; \
  41234. uint8x8_t __s1 = __p1; \
  41235. uint8x8_t __s2 = __p2; \
  41236. uint32x2_t __ret; \
  41237. uint8x8_t __reint = __s2; \
  41238. uint32x2_t __reint1 = __builtin_shufflevector(*(uint32x2_t *) &__reint, *(uint32x2_t *) &__reint, __p3, __p3); \
  41239. __ret = vdot_u32(__s0, __s1, *(uint8x8_t *) &__reint1); \
  41240. __ret; \
  41241. })
  41242. #else
  41243. #define vdot_lane_u32(__p0, __p1, __p2, __p3) __extension__ ({ \
  41244. uint32x2_t __s0 = __p0; \
  41245. uint8x8_t __s1 = __p1; \
  41246. uint8x8_t __s2 = __p2; \
  41247. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  41248. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  41249. uint8x8_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 7, 6, 5, 4, 3, 2, 1, 0); \
  41250. uint32x2_t __ret; \
  41251. uint8x8_t __reint = __rev2; \
  41252. uint32x2_t __reint1 = __builtin_shufflevector(*(uint32x2_t *) &__reint, *(uint32x2_t *) &__reint, __p3, __p3); \
  41253. __ret = __noswap_vdot_u32(__rev0, __rev1, *(uint8x8_t *) &__reint1); \
  41254. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  41255. __ret; \
  41256. })
  41257. #endif
  41258. #ifdef __LITTLE_ENDIAN__
  41259. #define vdot_lane_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  41260. int32x2_t __s0 = __p0; \
  41261. int8x8_t __s1 = __p1; \
  41262. int8x8_t __s2 = __p2; \
  41263. int32x2_t __ret; \
  41264. int8x8_t __reint = __s2; \
  41265. int32x2_t __reint1 = __builtin_shufflevector(*(uint32x2_t *) &__reint, *(uint32x2_t *) &__reint, __p3, __p3); \
  41266. __ret = vdot_s32(__s0, __s1, *(int8x8_t *) &__reint1); \
  41267. __ret; \
  41268. })
  41269. #else
  41270. #define vdot_lane_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  41271. int32x2_t __s0 = __p0; \
  41272. int8x8_t __s1 = __p1; \
  41273. int8x8_t __s2 = __p2; \
  41274. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  41275. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  41276. int8x8_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 7, 6, 5, 4, 3, 2, 1, 0); \
  41277. int32x2_t __ret; \
  41278. int8x8_t __reint = __rev2; \
  41279. int32x2_t __reint1 = __builtin_shufflevector(*(uint32x2_t *) &__reint, *(uint32x2_t *) &__reint, __p3, __p3); \
  41280. __ret = __noswap_vdot_s32(__rev0, __rev1, *(int8x8_t *) &__reint1); \
  41281. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  41282. __ret; \
  41283. })
  41284. #endif
  41285. #endif
  41286. #if defined(__ARM_FEATURE_DOTPROD) && defined(__aarch64__)
  41287. #ifdef __LITTLE_ENDIAN__
  41288. #define vdotq_laneq_u32(__p0, __p1, __p2, __p3) __extension__ ({ \
  41289. uint32x4_t __s0 = __p0; \
  41290. uint8x16_t __s1 = __p1; \
  41291. uint8x16_t __s2 = __p2; \
  41292. uint32x4_t __ret; \
  41293. uint8x16_t __reint = __s2; \
  41294. uint32x4_t __reint1 = __builtin_shufflevector(*(uint32x4_t *) &__reint, *(uint32x4_t *) &__reint, __p3, __p3, __p3, __p3); \
  41295. __ret = vdotq_u32(__s0, __s1, *(uint8x16_t *) &__reint1); \
  41296. __ret; \
  41297. })
  41298. #else
  41299. #define vdotq_laneq_u32(__p0, __p1, __p2, __p3) __extension__ ({ \
  41300. uint32x4_t __s0 = __p0; \
  41301. uint8x16_t __s1 = __p1; \
  41302. uint8x16_t __s2 = __p2; \
  41303. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  41304. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  41305. uint8x16_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  41306. uint32x4_t __ret; \
  41307. uint8x16_t __reint = __rev2; \
  41308. uint32x4_t __reint1 = __builtin_shufflevector(*(uint32x4_t *) &__reint, *(uint32x4_t *) &__reint, __p3, __p3, __p3, __p3); \
  41309. __ret = __noswap_vdotq_u32(__rev0, __rev1, *(uint8x16_t *) &__reint1); \
  41310. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  41311. __ret; \
  41312. })
  41313. #endif
  41314. #ifdef __LITTLE_ENDIAN__
  41315. #define vdotq_laneq_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  41316. int32x4_t __s0 = __p0; \
  41317. int8x16_t __s1 = __p1; \
  41318. int8x16_t __s2 = __p2; \
  41319. int32x4_t __ret; \
  41320. int8x16_t __reint = __s2; \
  41321. int32x4_t __reint1 = __builtin_shufflevector(*(uint32x4_t *) &__reint, *(uint32x4_t *) &__reint, __p3, __p3, __p3, __p3); \
  41322. __ret = vdotq_s32(__s0, __s1, *(int8x16_t *) &__reint1); \
  41323. __ret; \
  41324. })
  41325. #else
  41326. #define vdotq_laneq_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  41327. int32x4_t __s0 = __p0; \
  41328. int8x16_t __s1 = __p1; \
  41329. int8x16_t __s2 = __p2; \
  41330. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  41331. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  41332. int8x16_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  41333. int32x4_t __ret; \
  41334. int8x16_t __reint = __rev2; \
  41335. int32x4_t __reint1 = __builtin_shufflevector(*(uint32x4_t *) &__reint, *(uint32x4_t *) &__reint, __p3, __p3, __p3, __p3); \
  41336. __ret = __noswap_vdotq_s32(__rev0, __rev1, *(int8x16_t *) &__reint1); \
  41337. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  41338. __ret; \
  41339. })
  41340. #endif
  41341. #ifdef __LITTLE_ENDIAN__
  41342. #define vdot_laneq_u32(__p0, __p1, __p2, __p3) __extension__ ({ \
  41343. uint32x2_t __s0 = __p0; \
  41344. uint8x8_t __s1 = __p1; \
  41345. uint8x16_t __s2 = __p2; \
  41346. uint32x2_t __ret; \
  41347. uint8x16_t __reint = __s2; \
  41348. uint32x2_t __reint1 = __builtin_shufflevector(*(uint32x4_t *) &__reint, *(uint32x4_t *) &__reint, __p3, __p3); \
  41349. __ret = vdot_u32(__s0, __s1, *(uint8x8_t *) &__reint1); \
  41350. __ret; \
  41351. })
  41352. #else
  41353. #define vdot_laneq_u32(__p0, __p1, __p2, __p3) __extension__ ({ \
  41354. uint32x2_t __s0 = __p0; \
  41355. uint8x8_t __s1 = __p1; \
  41356. uint8x16_t __s2 = __p2; \
  41357. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  41358. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  41359. uint8x16_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  41360. uint32x2_t __ret; \
  41361. uint8x16_t __reint = __rev2; \
  41362. uint32x2_t __reint1 = __builtin_shufflevector(*(uint32x4_t *) &__reint, *(uint32x4_t *) &__reint, __p3, __p3); \
  41363. __ret = __noswap_vdot_u32(__rev0, __rev1, *(uint8x8_t *) &__reint1); \
  41364. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  41365. __ret; \
  41366. })
  41367. #endif
  41368. #ifdef __LITTLE_ENDIAN__
  41369. #define vdot_laneq_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  41370. int32x2_t __s0 = __p0; \
  41371. int8x8_t __s1 = __p1; \
  41372. int8x16_t __s2 = __p2; \
  41373. int32x2_t __ret; \
  41374. int8x16_t __reint = __s2; \
  41375. int32x2_t __reint1 = __builtin_shufflevector(*(uint32x4_t *) &__reint, *(uint32x4_t *) &__reint, __p3, __p3); \
  41376. __ret = vdot_s32(__s0, __s1, *(int8x8_t *) &__reint1); \
  41377. __ret; \
  41378. })
  41379. #else
  41380. #define vdot_laneq_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  41381. int32x2_t __s0 = __p0; \
  41382. int8x8_t __s1 = __p1; \
  41383. int8x16_t __s2 = __p2; \
  41384. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  41385. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  41386. int8x16_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  41387. int32x2_t __ret; \
  41388. int8x16_t __reint = __rev2; \
  41389. int32x2_t __reint1 = __builtin_shufflevector(*(uint32x4_t *) &__reint, *(uint32x4_t *) &__reint, __p3, __p3); \
  41390. __ret = __noswap_vdot_s32(__rev0, __rev1, *(int8x8_t *) &__reint1); \
  41391. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  41392. __ret; \
  41393. })
  41394. #endif
  41395. #endif
  41396. #if defined(__ARM_FEATURE_FMA)
  41397. #ifdef __LITTLE_ENDIAN__
  41398. __ai float32x4_t vfmaq_f32(float32x4_t __p0, float32x4_t __p1, float32x4_t __p2) {
  41399. float32x4_t __ret;
  41400. __ret = (float32x4_t) __builtin_neon_vfmaq_v((int8x16_t)__p0, (int8x16_t)__p1, (int8x16_t)__p2, 41);
  41401. return __ret;
  41402. }
  41403. #else
  41404. __ai float32x4_t vfmaq_f32(float32x4_t __p0, float32x4_t __p1, float32x4_t __p2) {
  41405. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  41406. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  41407. float32x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  41408. float32x4_t __ret;
  41409. __ret = (float32x4_t) __builtin_neon_vfmaq_v((int8x16_t)__rev0, (int8x16_t)__rev1, (int8x16_t)__rev2, 41);
  41410. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  41411. return __ret;
  41412. }
  41413. __ai float32x4_t __noswap_vfmaq_f32(float32x4_t __p0, float32x4_t __p1, float32x4_t __p2) {
  41414. float32x4_t __ret;
  41415. __ret = (float32x4_t) __builtin_neon_vfmaq_v((int8x16_t)__p0, (int8x16_t)__p1, (int8x16_t)__p2, 41);
  41416. return __ret;
  41417. }
  41418. #endif
  41419. #ifdef __LITTLE_ENDIAN__
  41420. __ai float32x2_t vfma_f32(float32x2_t __p0, float32x2_t __p1, float32x2_t __p2) {
  41421. float32x2_t __ret;
  41422. __ret = (float32x2_t) __builtin_neon_vfma_v((int8x8_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 9);
  41423. return __ret;
  41424. }
  41425. #else
  41426. __ai float32x2_t vfma_f32(float32x2_t __p0, float32x2_t __p1, float32x2_t __p2) {
  41427. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  41428. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  41429. float32x2_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 1, 0);
  41430. float32x2_t __ret;
  41431. __ret = (float32x2_t) __builtin_neon_vfma_v((int8x8_t)__rev0, (int8x8_t)__rev1, (int8x8_t)__rev2, 9);
  41432. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  41433. return __ret;
  41434. }
  41435. __ai float32x2_t __noswap_vfma_f32(float32x2_t __p0, float32x2_t __p1, float32x2_t __p2) {
  41436. float32x2_t __ret;
  41437. __ret = (float32x2_t) __builtin_neon_vfma_v((int8x8_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 9);
  41438. return __ret;
  41439. }
  41440. #endif
  41441. #ifdef __LITTLE_ENDIAN__
  41442. __ai float32x4_t vfmaq_n_f32(float32x4_t __p0, float32x4_t __p1, float32_t __p2) {
  41443. float32x4_t __ret;
  41444. __ret = vfmaq_f32(__p0, __p1, (float32x4_t) {__p2, __p2, __p2, __p2});
  41445. return __ret;
  41446. }
  41447. #else
  41448. __ai float32x4_t vfmaq_n_f32(float32x4_t __p0, float32x4_t __p1, float32_t __p2) {
  41449. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  41450. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  41451. float32x4_t __ret;
  41452. __ret = __noswap_vfmaq_f32(__rev0, __rev1, (float32x4_t) {__p2, __p2, __p2, __p2});
  41453. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  41454. return __ret;
  41455. }
  41456. #endif
  41457. #ifdef __LITTLE_ENDIAN__
  41458. __ai float32x2_t vfma_n_f32(float32x2_t __p0, float32x2_t __p1, float32_t __p2) {
  41459. float32x2_t __ret;
  41460. __ret = vfma_f32(__p0, __p1, (float32x2_t) {__p2, __p2});
  41461. return __ret;
  41462. }
  41463. #else
  41464. __ai float32x2_t vfma_n_f32(float32x2_t __p0, float32x2_t __p1, float32_t __p2) {
  41465. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  41466. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  41467. float32x2_t __ret;
  41468. __ret = __noswap_vfma_f32(__rev0, __rev1, (float32x2_t) {__p2, __p2});
  41469. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  41470. return __ret;
  41471. }
  41472. #endif
  41473. #ifdef __LITTLE_ENDIAN__
  41474. __ai float32x4_t vfmsq_f32(float32x4_t __p0, float32x4_t __p1, float32x4_t __p2) {
  41475. float32x4_t __ret;
  41476. __ret = vfmaq_f32(__p0, -__p1, __p2);
  41477. return __ret;
  41478. }
  41479. #else
  41480. __ai float32x4_t vfmsq_f32(float32x4_t __p0, float32x4_t __p1, float32x4_t __p2) {
  41481. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  41482. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  41483. float32x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  41484. float32x4_t __ret;
  41485. __ret = __noswap_vfmaq_f32(__rev0, -__rev1, __rev2);
  41486. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  41487. return __ret;
  41488. }
  41489. #endif
  41490. #ifdef __LITTLE_ENDIAN__
  41491. __ai float32x2_t vfms_f32(float32x2_t __p0, float32x2_t __p1, float32x2_t __p2) {
  41492. float32x2_t __ret;
  41493. __ret = vfma_f32(__p0, -__p1, __p2);
  41494. return __ret;
  41495. }
  41496. #else
  41497. __ai float32x2_t vfms_f32(float32x2_t __p0, float32x2_t __p1, float32x2_t __p2) {
  41498. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  41499. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  41500. float32x2_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 1, 0);
  41501. float32x2_t __ret;
  41502. __ret = __noswap_vfma_f32(__rev0, -__rev1, __rev2);
  41503. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  41504. return __ret;
  41505. }
  41506. #endif
  41507. #endif
  41508. #if defined(__ARM_FEATURE_FP16FML) && defined(__aarch64__)
  41509. #ifdef __LITTLE_ENDIAN__
  41510. __ai float32x4_t vfmlalq_high_u32(float32x4_t __p0, float16x8_t __p1, float16x8_t __p2) {
  41511. float32x4_t __ret;
  41512. __ret = (float32x4_t) __builtin_neon_vfmlalq_high_v((int8x16_t)__p0, (int8x16_t)__p1, (int8x16_t)__p2, 41);
  41513. return __ret;
  41514. }
  41515. #else
  41516. __ai float32x4_t vfmlalq_high_u32(float32x4_t __p0, float16x8_t __p1, float16x8_t __p2) {
  41517. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  41518. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  41519. float16x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  41520. float32x4_t __ret;
  41521. __ret = (float32x4_t) __builtin_neon_vfmlalq_high_v((int8x16_t)__rev0, (int8x16_t)__rev1, (int8x16_t)__rev2, 41);
  41522. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  41523. return __ret;
  41524. }
  41525. __ai float32x4_t __noswap_vfmlalq_high_u32(float32x4_t __p0, float16x8_t __p1, float16x8_t __p2) {
  41526. float32x4_t __ret;
  41527. __ret = (float32x4_t) __builtin_neon_vfmlalq_high_v((int8x16_t)__p0, (int8x16_t)__p1, (int8x16_t)__p2, 41);
  41528. return __ret;
  41529. }
  41530. #endif
  41531. #ifdef __LITTLE_ENDIAN__
  41532. __ai float32x2_t vfmlal_high_u32(float32x2_t __p0, float16x4_t __p1, float16x4_t __p2) {
  41533. float32x2_t __ret;
  41534. __ret = (float32x2_t) __builtin_neon_vfmlal_high_v((int8x8_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 9);
  41535. return __ret;
  41536. }
  41537. #else
  41538. __ai float32x2_t vfmlal_high_u32(float32x2_t __p0, float16x4_t __p1, float16x4_t __p2) {
  41539. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  41540. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  41541. float16x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  41542. float32x2_t __ret;
  41543. __ret = (float32x2_t) __builtin_neon_vfmlal_high_v((int8x8_t)__rev0, (int8x8_t)__rev1, (int8x8_t)__rev2, 9);
  41544. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  41545. return __ret;
  41546. }
  41547. __ai float32x2_t __noswap_vfmlal_high_u32(float32x2_t __p0, float16x4_t __p1, float16x4_t __p2) {
  41548. float32x2_t __ret;
  41549. __ret = (float32x2_t) __builtin_neon_vfmlal_high_v((int8x8_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 9);
  41550. return __ret;
  41551. }
  41552. #endif
  41553. #ifdef __LITTLE_ENDIAN__
  41554. __ai float32x4_t vfmlalq_low_u32(float32x4_t __p0, float16x8_t __p1, float16x8_t __p2) {
  41555. float32x4_t __ret;
  41556. __ret = (float32x4_t) __builtin_neon_vfmlalq_low_v((int8x16_t)__p0, (int8x16_t)__p1, (int8x16_t)__p2, 41);
  41557. return __ret;
  41558. }
  41559. #else
  41560. __ai float32x4_t vfmlalq_low_u32(float32x4_t __p0, float16x8_t __p1, float16x8_t __p2) {
  41561. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  41562. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  41563. float16x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  41564. float32x4_t __ret;
  41565. __ret = (float32x4_t) __builtin_neon_vfmlalq_low_v((int8x16_t)__rev0, (int8x16_t)__rev1, (int8x16_t)__rev2, 41);
  41566. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  41567. return __ret;
  41568. }
  41569. __ai float32x4_t __noswap_vfmlalq_low_u32(float32x4_t __p0, float16x8_t __p1, float16x8_t __p2) {
  41570. float32x4_t __ret;
  41571. __ret = (float32x4_t) __builtin_neon_vfmlalq_low_v((int8x16_t)__p0, (int8x16_t)__p1, (int8x16_t)__p2, 41);
  41572. return __ret;
  41573. }
  41574. #endif
  41575. #ifdef __LITTLE_ENDIAN__
  41576. __ai float32x2_t vfmlal_low_u32(float32x2_t __p0, float16x4_t __p1, float16x4_t __p2) {
  41577. float32x2_t __ret;
  41578. __ret = (float32x2_t) __builtin_neon_vfmlal_low_v((int8x8_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 9);
  41579. return __ret;
  41580. }
  41581. #else
  41582. __ai float32x2_t vfmlal_low_u32(float32x2_t __p0, float16x4_t __p1, float16x4_t __p2) {
  41583. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  41584. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  41585. float16x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  41586. float32x2_t __ret;
  41587. __ret = (float32x2_t) __builtin_neon_vfmlal_low_v((int8x8_t)__rev0, (int8x8_t)__rev1, (int8x8_t)__rev2, 9);
  41588. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  41589. return __ret;
  41590. }
  41591. __ai float32x2_t __noswap_vfmlal_low_u32(float32x2_t __p0, float16x4_t __p1, float16x4_t __p2) {
  41592. float32x2_t __ret;
  41593. __ret = (float32x2_t) __builtin_neon_vfmlal_low_v((int8x8_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 9);
  41594. return __ret;
  41595. }
  41596. #endif
  41597. #ifdef __LITTLE_ENDIAN__
  41598. __ai float32x4_t vfmlslq_high_u32(float32x4_t __p0, float16x8_t __p1, float16x8_t __p2) {
  41599. float32x4_t __ret;
  41600. __ret = (float32x4_t) __builtin_neon_vfmlslq_high_v((int8x16_t)__p0, (int8x16_t)__p1, (int8x16_t)__p2, 41);
  41601. return __ret;
  41602. }
  41603. #else
  41604. __ai float32x4_t vfmlslq_high_u32(float32x4_t __p0, float16x8_t __p1, float16x8_t __p2) {
  41605. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  41606. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  41607. float16x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  41608. float32x4_t __ret;
  41609. __ret = (float32x4_t) __builtin_neon_vfmlslq_high_v((int8x16_t)__rev0, (int8x16_t)__rev1, (int8x16_t)__rev2, 41);
  41610. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  41611. return __ret;
  41612. }
  41613. __ai float32x4_t __noswap_vfmlslq_high_u32(float32x4_t __p0, float16x8_t __p1, float16x8_t __p2) {
  41614. float32x4_t __ret;
  41615. __ret = (float32x4_t) __builtin_neon_vfmlslq_high_v((int8x16_t)__p0, (int8x16_t)__p1, (int8x16_t)__p2, 41);
  41616. return __ret;
  41617. }
  41618. #endif
  41619. #ifdef __LITTLE_ENDIAN__
  41620. __ai float32x2_t vfmlsl_high_u32(float32x2_t __p0, float16x4_t __p1, float16x4_t __p2) {
  41621. float32x2_t __ret;
  41622. __ret = (float32x2_t) __builtin_neon_vfmlsl_high_v((int8x8_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 9);
  41623. return __ret;
  41624. }
  41625. #else
  41626. __ai float32x2_t vfmlsl_high_u32(float32x2_t __p0, float16x4_t __p1, float16x4_t __p2) {
  41627. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  41628. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  41629. float16x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  41630. float32x2_t __ret;
  41631. __ret = (float32x2_t) __builtin_neon_vfmlsl_high_v((int8x8_t)__rev0, (int8x8_t)__rev1, (int8x8_t)__rev2, 9);
  41632. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  41633. return __ret;
  41634. }
  41635. __ai float32x2_t __noswap_vfmlsl_high_u32(float32x2_t __p0, float16x4_t __p1, float16x4_t __p2) {
  41636. float32x2_t __ret;
  41637. __ret = (float32x2_t) __builtin_neon_vfmlsl_high_v((int8x8_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 9);
  41638. return __ret;
  41639. }
  41640. #endif
  41641. #ifdef __LITTLE_ENDIAN__
  41642. __ai float32x4_t vfmlslq_low_u32(float32x4_t __p0, float16x8_t __p1, float16x8_t __p2) {
  41643. float32x4_t __ret;
  41644. __ret = (float32x4_t) __builtin_neon_vfmlslq_low_v((int8x16_t)__p0, (int8x16_t)__p1, (int8x16_t)__p2, 41);
  41645. return __ret;
  41646. }
  41647. #else
  41648. __ai float32x4_t vfmlslq_low_u32(float32x4_t __p0, float16x8_t __p1, float16x8_t __p2) {
  41649. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  41650. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  41651. float16x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  41652. float32x4_t __ret;
  41653. __ret = (float32x4_t) __builtin_neon_vfmlslq_low_v((int8x16_t)__rev0, (int8x16_t)__rev1, (int8x16_t)__rev2, 41);
  41654. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  41655. return __ret;
  41656. }
  41657. __ai float32x4_t __noswap_vfmlslq_low_u32(float32x4_t __p0, float16x8_t __p1, float16x8_t __p2) {
  41658. float32x4_t __ret;
  41659. __ret = (float32x4_t) __builtin_neon_vfmlslq_low_v((int8x16_t)__p0, (int8x16_t)__p1, (int8x16_t)__p2, 41);
  41660. return __ret;
  41661. }
  41662. #endif
  41663. #ifdef __LITTLE_ENDIAN__
  41664. __ai float32x2_t vfmlsl_low_u32(float32x2_t __p0, float16x4_t __p1, float16x4_t __p2) {
  41665. float32x2_t __ret;
  41666. __ret = (float32x2_t) __builtin_neon_vfmlsl_low_v((int8x8_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 9);
  41667. return __ret;
  41668. }
  41669. #else
  41670. __ai float32x2_t vfmlsl_low_u32(float32x2_t __p0, float16x4_t __p1, float16x4_t __p2) {
  41671. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  41672. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  41673. float16x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  41674. float32x2_t __ret;
  41675. __ret = (float32x2_t) __builtin_neon_vfmlsl_low_v((int8x8_t)__rev0, (int8x8_t)__rev1, (int8x8_t)__rev2, 9);
  41676. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  41677. return __ret;
  41678. }
  41679. __ai float32x2_t __noswap_vfmlsl_low_u32(float32x2_t __p0, float16x4_t __p1, float16x4_t __p2) {
  41680. float32x2_t __ret;
  41681. __ret = (float32x2_t) __builtin_neon_vfmlsl_low_v((int8x8_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 9);
  41682. return __ret;
  41683. }
  41684. #endif
  41685. #endif
  41686. #if defined(__ARM_FEATURE_FP16_VECTOR_ARITHMETIC)
  41687. #ifdef __LITTLE_ENDIAN__
  41688. __ai float16x8_t vabdq_f16(float16x8_t __p0, float16x8_t __p1) {
  41689. float16x8_t __ret;
  41690. __ret = (float16x8_t) __builtin_neon_vabdq_v((int8x16_t)__p0, (int8x16_t)__p1, 40);
  41691. return __ret;
  41692. }
  41693. #else
  41694. __ai float16x8_t vabdq_f16(float16x8_t __p0, float16x8_t __p1) {
  41695. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  41696. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  41697. float16x8_t __ret;
  41698. __ret = (float16x8_t) __builtin_neon_vabdq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 40);
  41699. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  41700. return __ret;
  41701. }
  41702. #endif
  41703. #ifdef __LITTLE_ENDIAN__
  41704. __ai float16x4_t vabd_f16(float16x4_t __p0, float16x4_t __p1) {
  41705. float16x4_t __ret;
  41706. __ret = (float16x4_t) __builtin_neon_vabd_v((int8x8_t)__p0, (int8x8_t)__p1, 8);
  41707. return __ret;
  41708. }
  41709. #else
  41710. __ai float16x4_t vabd_f16(float16x4_t __p0, float16x4_t __p1) {
  41711. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  41712. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  41713. float16x4_t __ret;
  41714. __ret = (float16x4_t) __builtin_neon_vabd_v((int8x8_t)__rev0, (int8x8_t)__rev1, 8);
  41715. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  41716. return __ret;
  41717. }
  41718. #endif
  41719. #ifdef __LITTLE_ENDIAN__
  41720. __ai float16x8_t vabsq_f16(float16x8_t __p0) {
  41721. float16x8_t __ret;
  41722. __ret = (float16x8_t) __builtin_neon_vabsq_v((int8x16_t)__p0, 40);
  41723. return __ret;
  41724. }
  41725. #else
  41726. __ai float16x8_t vabsq_f16(float16x8_t __p0) {
  41727. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  41728. float16x8_t __ret;
  41729. __ret = (float16x8_t) __builtin_neon_vabsq_v((int8x16_t)__rev0, 40);
  41730. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  41731. return __ret;
  41732. }
  41733. #endif
  41734. #ifdef __LITTLE_ENDIAN__
  41735. __ai float16x4_t vabs_f16(float16x4_t __p0) {
  41736. float16x4_t __ret;
  41737. __ret = (float16x4_t) __builtin_neon_vabs_v((int8x8_t)__p0, 8);
  41738. return __ret;
  41739. }
  41740. #else
  41741. __ai float16x4_t vabs_f16(float16x4_t __p0) {
  41742. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  41743. float16x4_t __ret;
  41744. __ret = (float16x4_t) __builtin_neon_vabs_v((int8x8_t)__rev0, 8);
  41745. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  41746. return __ret;
  41747. }
  41748. #endif
  41749. #ifdef __LITTLE_ENDIAN__
  41750. __ai float16x8_t vaddq_f16(float16x8_t __p0, float16x8_t __p1) {
  41751. float16x8_t __ret;
  41752. __ret = __p0 + __p1;
  41753. return __ret;
  41754. }
  41755. #else
  41756. __ai float16x8_t vaddq_f16(float16x8_t __p0, float16x8_t __p1) {
  41757. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  41758. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  41759. float16x8_t __ret;
  41760. __ret = __rev0 + __rev1;
  41761. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  41762. return __ret;
  41763. }
  41764. #endif
  41765. #ifdef __LITTLE_ENDIAN__
  41766. __ai float16x4_t vadd_f16(float16x4_t __p0, float16x4_t __p1) {
  41767. float16x4_t __ret;
  41768. __ret = __p0 + __p1;
  41769. return __ret;
  41770. }
  41771. #else
  41772. __ai float16x4_t vadd_f16(float16x4_t __p0, float16x4_t __p1) {
  41773. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  41774. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  41775. float16x4_t __ret;
  41776. __ret = __rev0 + __rev1;
  41777. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  41778. return __ret;
  41779. }
  41780. #endif
  41781. #ifdef __LITTLE_ENDIAN__
  41782. __ai float16x8_t vbslq_f16(uint16x8_t __p0, float16x8_t __p1, float16x8_t __p2) {
  41783. float16x8_t __ret;
  41784. __ret = (float16x8_t) __builtin_neon_vbslq_v((int8x16_t)__p0, (int8x16_t)__p1, (int8x16_t)__p2, 40);
  41785. return __ret;
  41786. }
  41787. #else
  41788. __ai float16x8_t vbslq_f16(uint16x8_t __p0, float16x8_t __p1, float16x8_t __p2) {
  41789. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  41790. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  41791. float16x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  41792. float16x8_t __ret;
  41793. __ret = (float16x8_t) __builtin_neon_vbslq_v((int8x16_t)__rev0, (int8x16_t)__rev1, (int8x16_t)__rev2, 40);
  41794. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  41795. return __ret;
  41796. }
  41797. #endif
  41798. #ifdef __LITTLE_ENDIAN__
  41799. __ai float16x4_t vbsl_f16(uint16x4_t __p0, float16x4_t __p1, float16x4_t __p2) {
  41800. float16x4_t __ret;
  41801. __ret = (float16x4_t) __builtin_neon_vbsl_v((int8x8_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 8);
  41802. return __ret;
  41803. }
  41804. #else
  41805. __ai float16x4_t vbsl_f16(uint16x4_t __p0, float16x4_t __p1, float16x4_t __p2) {
  41806. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  41807. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  41808. float16x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  41809. float16x4_t __ret;
  41810. __ret = (float16x4_t) __builtin_neon_vbsl_v((int8x8_t)__rev0, (int8x8_t)__rev1, (int8x8_t)__rev2, 8);
  41811. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  41812. return __ret;
  41813. }
  41814. #endif
  41815. #ifdef __LITTLE_ENDIAN__
  41816. __ai uint16x8_t vcageq_f16(float16x8_t __p0, float16x8_t __p1) {
  41817. uint16x8_t __ret;
  41818. __ret = (uint16x8_t) __builtin_neon_vcageq_v((int8x16_t)__p0, (int8x16_t)__p1, 49);
  41819. return __ret;
  41820. }
  41821. #else
  41822. __ai uint16x8_t vcageq_f16(float16x8_t __p0, float16x8_t __p1) {
  41823. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  41824. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  41825. uint16x8_t __ret;
  41826. __ret = (uint16x8_t) __builtin_neon_vcageq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 49);
  41827. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  41828. return __ret;
  41829. }
  41830. #endif
  41831. #ifdef __LITTLE_ENDIAN__
  41832. __ai uint16x4_t vcage_f16(float16x4_t __p0, float16x4_t __p1) {
  41833. uint16x4_t __ret;
  41834. __ret = (uint16x4_t) __builtin_neon_vcage_v((int8x8_t)__p0, (int8x8_t)__p1, 17);
  41835. return __ret;
  41836. }
  41837. #else
  41838. __ai uint16x4_t vcage_f16(float16x4_t __p0, float16x4_t __p1) {
  41839. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  41840. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  41841. uint16x4_t __ret;
  41842. __ret = (uint16x4_t) __builtin_neon_vcage_v((int8x8_t)__rev0, (int8x8_t)__rev1, 17);
  41843. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  41844. return __ret;
  41845. }
  41846. #endif
  41847. #ifdef __LITTLE_ENDIAN__
  41848. __ai uint16x8_t vcagtq_f16(float16x8_t __p0, float16x8_t __p1) {
  41849. uint16x8_t __ret;
  41850. __ret = (uint16x8_t) __builtin_neon_vcagtq_v((int8x16_t)__p0, (int8x16_t)__p1, 49);
  41851. return __ret;
  41852. }
  41853. #else
  41854. __ai uint16x8_t vcagtq_f16(float16x8_t __p0, float16x8_t __p1) {
  41855. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  41856. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  41857. uint16x8_t __ret;
  41858. __ret = (uint16x8_t) __builtin_neon_vcagtq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 49);
  41859. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  41860. return __ret;
  41861. }
  41862. #endif
  41863. #ifdef __LITTLE_ENDIAN__
  41864. __ai uint16x4_t vcagt_f16(float16x4_t __p0, float16x4_t __p1) {
  41865. uint16x4_t __ret;
  41866. __ret = (uint16x4_t) __builtin_neon_vcagt_v((int8x8_t)__p0, (int8x8_t)__p1, 17);
  41867. return __ret;
  41868. }
  41869. #else
  41870. __ai uint16x4_t vcagt_f16(float16x4_t __p0, float16x4_t __p1) {
  41871. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  41872. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  41873. uint16x4_t __ret;
  41874. __ret = (uint16x4_t) __builtin_neon_vcagt_v((int8x8_t)__rev0, (int8x8_t)__rev1, 17);
  41875. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  41876. return __ret;
  41877. }
  41878. #endif
  41879. #ifdef __LITTLE_ENDIAN__
  41880. __ai uint16x8_t vcaleq_f16(float16x8_t __p0, float16x8_t __p1) {
  41881. uint16x8_t __ret;
  41882. __ret = (uint16x8_t) __builtin_neon_vcaleq_v((int8x16_t)__p0, (int8x16_t)__p1, 49);
  41883. return __ret;
  41884. }
  41885. #else
  41886. __ai uint16x8_t vcaleq_f16(float16x8_t __p0, float16x8_t __p1) {
  41887. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  41888. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  41889. uint16x8_t __ret;
  41890. __ret = (uint16x8_t) __builtin_neon_vcaleq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 49);
  41891. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  41892. return __ret;
  41893. }
  41894. #endif
  41895. #ifdef __LITTLE_ENDIAN__
  41896. __ai uint16x4_t vcale_f16(float16x4_t __p0, float16x4_t __p1) {
  41897. uint16x4_t __ret;
  41898. __ret = (uint16x4_t) __builtin_neon_vcale_v((int8x8_t)__p0, (int8x8_t)__p1, 17);
  41899. return __ret;
  41900. }
  41901. #else
  41902. __ai uint16x4_t vcale_f16(float16x4_t __p0, float16x4_t __p1) {
  41903. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  41904. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  41905. uint16x4_t __ret;
  41906. __ret = (uint16x4_t) __builtin_neon_vcale_v((int8x8_t)__rev0, (int8x8_t)__rev1, 17);
  41907. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  41908. return __ret;
  41909. }
  41910. #endif
  41911. #ifdef __LITTLE_ENDIAN__
  41912. __ai uint16x8_t vcaltq_f16(float16x8_t __p0, float16x8_t __p1) {
  41913. uint16x8_t __ret;
  41914. __ret = (uint16x8_t) __builtin_neon_vcaltq_v((int8x16_t)__p0, (int8x16_t)__p1, 49);
  41915. return __ret;
  41916. }
  41917. #else
  41918. __ai uint16x8_t vcaltq_f16(float16x8_t __p0, float16x8_t __p1) {
  41919. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  41920. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  41921. uint16x8_t __ret;
  41922. __ret = (uint16x8_t) __builtin_neon_vcaltq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 49);
  41923. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  41924. return __ret;
  41925. }
  41926. #endif
  41927. #ifdef __LITTLE_ENDIAN__
  41928. __ai uint16x4_t vcalt_f16(float16x4_t __p0, float16x4_t __p1) {
  41929. uint16x4_t __ret;
  41930. __ret = (uint16x4_t) __builtin_neon_vcalt_v((int8x8_t)__p0, (int8x8_t)__p1, 17);
  41931. return __ret;
  41932. }
  41933. #else
  41934. __ai uint16x4_t vcalt_f16(float16x4_t __p0, float16x4_t __p1) {
  41935. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  41936. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  41937. uint16x4_t __ret;
  41938. __ret = (uint16x4_t) __builtin_neon_vcalt_v((int8x8_t)__rev0, (int8x8_t)__rev1, 17);
  41939. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  41940. return __ret;
  41941. }
  41942. #endif
  41943. #ifdef __LITTLE_ENDIAN__
  41944. __ai uint16x8_t vceqq_f16(float16x8_t __p0, float16x8_t __p1) {
  41945. uint16x8_t __ret;
  41946. __ret = (uint16x8_t)(__p0 == __p1);
  41947. return __ret;
  41948. }
  41949. #else
  41950. __ai uint16x8_t vceqq_f16(float16x8_t __p0, float16x8_t __p1) {
  41951. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  41952. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  41953. uint16x8_t __ret;
  41954. __ret = (uint16x8_t)(__rev0 == __rev1);
  41955. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  41956. return __ret;
  41957. }
  41958. #endif
  41959. #ifdef __LITTLE_ENDIAN__
  41960. __ai uint16x4_t vceq_f16(float16x4_t __p0, float16x4_t __p1) {
  41961. uint16x4_t __ret;
  41962. __ret = (uint16x4_t)(__p0 == __p1);
  41963. return __ret;
  41964. }
  41965. #else
  41966. __ai uint16x4_t vceq_f16(float16x4_t __p0, float16x4_t __p1) {
  41967. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  41968. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  41969. uint16x4_t __ret;
  41970. __ret = (uint16x4_t)(__rev0 == __rev1);
  41971. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  41972. return __ret;
  41973. }
  41974. #endif
  41975. #ifdef __LITTLE_ENDIAN__
  41976. __ai uint16x8_t vceqzq_f16(float16x8_t __p0) {
  41977. uint16x8_t __ret;
  41978. __ret = (uint16x8_t) __builtin_neon_vceqzq_v((int8x16_t)__p0, 49);
  41979. return __ret;
  41980. }
  41981. #else
  41982. __ai uint16x8_t vceqzq_f16(float16x8_t __p0) {
  41983. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  41984. uint16x8_t __ret;
  41985. __ret = (uint16x8_t) __builtin_neon_vceqzq_v((int8x16_t)__rev0, 49);
  41986. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  41987. return __ret;
  41988. }
  41989. #endif
  41990. #ifdef __LITTLE_ENDIAN__
  41991. __ai uint16x4_t vceqz_f16(float16x4_t __p0) {
  41992. uint16x4_t __ret;
  41993. __ret = (uint16x4_t) __builtin_neon_vceqz_v((int8x8_t)__p0, 17);
  41994. return __ret;
  41995. }
  41996. #else
  41997. __ai uint16x4_t vceqz_f16(float16x4_t __p0) {
  41998. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  41999. uint16x4_t __ret;
  42000. __ret = (uint16x4_t) __builtin_neon_vceqz_v((int8x8_t)__rev0, 17);
  42001. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  42002. return __ret;
  42003. }
  42004. #endif
  42005. #ifdef __LITTLE_ENDIAN__
  42006. __ai uint16x8_t vcgeq_f16(float16x8_t __p0, float16x8_t __p1) {
  42007. uint16x8_t __ret;
  42008. __ret = (uint16x8_t)(__p0 >= __p1);
  42009. return __ret;
  42010. }
  42011. #else
  42012. __ai uint16x8_t vcgeq_f16(float16x8_t __p0, float16x8_t __p1) {
  42013. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  42014. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  42015. uint16x8_t __ret;
  42016. __ret = (uint16x8_t)(__rev0 >= __rev1);
  42017. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  42018. return __ret;
  42019. }
  42020. #endif
  42021. #ifdef __LITTLE_ENDIAN__
  42022. __ai uint16x4_t vcge_f16(float16x4_t __p0, float16x4_t __p1) {
  42023. uint16x4_t __ret;
  42024. __ret = (uint16x4_t)(__p0 >= __p1);
  42025. return __ret;
  42026. }
  42027. #else
  42028. __ai uint16x4_t vcge_f16(float16x4_t __p0, float16x4_t __p1) {
  42029. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  42030. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  42031. uint16x4_t __ret;
  42032. __ret = (uint16x4_t)(__rev0 >= __rev1);
  42033. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  42034. return __ret;
  42035. }
  42036. #endif
  42037. #ifdef __LITTLE_ENDIAN__
  42038. __ai uint16x8_t vcgezq_f16(float16x8_t __p0) {
  42039. uint16x8_t __ret;
  42040. __ret = (uint16x8_t) __builtin_neon_vcgezq_v((int8x16_t)__p0, 49);
  42041. return __ret;
  42042. }
  42043. #else
  42044. __ai uint16x8_t vcgezq_f16(float16x8_t __p0) {
  42045. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  42046. uint16x8_t __ret;
  42047. __ret = (uint16x8_t) __builtin_neon_vcgezq_v((int8x16_t)__rev0, 49);
  42048. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  42049. return __ret;
  42050. }
  42051. #endif
  42052. #ifdef __LITTLE_ENDIAN__
  42053. __ai uint16x4_t vcgez_f16(float16x4_t __p0) {
  42054. uint16x4_t __ret;
  42055. __ret = (uint16x4_t) __builtin_neon_vcgez_v((int8x8_t)__p0, 17);
  42056. return __ret;
  42057. }
  42058. #else
  42059. __ai uint16x4_t vcgez_f16(float16x4_t __p0) {
  42060. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  42061. uint16x4_t __ret;
  42062. __ret = (uint16x4_t) __builtin_neon_vcgez_v((int8x8_t)__rev0, 17);
  42063. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  42064. return __ret;
  42065. }
  42066. #endif
  42067. #ifdef __LITTLE_ENDIAN__
  42068. __ai uint16x8_t vcgtq_f16(float16x8_t __p0, float16x8_t __p1) {
  42069. uint16x8_t __ret;
  42070. __ret = (uint16x8_t)(__p0 > __p1);
  42071. return __ret;
  42072. }
  42073. #else
  42074. __ai uint16x8_t vcgtq_f16(float16x8_t __p0, float16x8_t __p1) {
  42075. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  42076. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  42077. uint16x8_t __ret;
  42078. __ret = (uint16x8_t)(__rev0 > __rev1);
  42079. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  42080. return __ret;
  42081. }
  42082. #endif
  42083. #ifdef __LITTLE_ENDIAN__
  42084. __ai uint16x4_t vcgt_f16(float16x4_t __p0, float16x4_t __p1) {
  42085. uint16x4_t __ret;
  42086. __ret = (uint16x4_t)(__p0 > __p1);
  42087. return __ret;
  42088. }
  42089. #else
  42090. __ai uint16x4_t vcgt_f16(float16x4_t __p0, float16x4_t __p1) {
  42091. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  42092. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  42093. uint16x4_t __ret;
  42094. __ret = (uint16x4_t)(__rev0 > __rev1);
  42095. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  42096. return __ret;
  42097. }
  42098. #endif
  42099. #ifdef __LITTLE_ENDIAN__
  42100. __ai uint16x8_t vcgtzq_f16(float16x8_t __p0) {
  42101. uint16x8_t __ret;
  42102. __ret = (uint16x8_t) __builtin_neon_vcgtzq_v((int8x16_t)__p0, 49);
  42103. return __ret;
  42104. }
  42105. #else
  42106. __ai uint16x8_t vcgtzq_f16(float16x8_t __p0) {
  42107. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  42108. uint16x8_t __ret;
  42109. __ret = (uint16x8_t) __builtin_neon_vcgtzq_v((int8x16_t)__rev0, 49);
  42110. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  42111. return __ret;
  42112. }
  42113. #endif
  42114. #ifdef __LITTLE_ENDIAN__
  42115. __ai uint16x4_t vcgtz_f16(float16x4_t __p0) {
  42116. uint16x4_t __ret;
  42117. __ret = (uint16x4_t) __builtin_neon_vcgtz_v((int8x8_t)__p0, 17);
  42118. return __ret;
  42119. }
  42120. #else
  42121. __ai uint16x4_t vcgtz_f16(float16x4_t __p0) {
  42122. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  42123. uint16x4_t __ret;
  42124. __ret = (uint16x4_t) __builtin_neon_vcgtz_v((int8x8_t)__rev0, 17);
  42125. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  42126. return __ret;
  42127. }
  42128. #endif
  42129. #ifdef __LITTLE_ENDIAN__
  42130. __ai uint16x8_t vcleq_f16(float16x8_t __p0, float16x8_t __p1) {
  42131. uint16x8_t __ret;
  42132. __ret = (uint16x8_t)(__p0 <= __p1);
  42133. return __ret;
  42134. }
  42135. #else
  42136. __ai uint16x8_t vcleq_f16(float16x8_t __p0, float16x8_t __p1) {
  42137. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  42138. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  42139. uint16x8_t __ret;
  42140. __ret = (uint16x8_t)(__rev0 <= __rev1);
  42141. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  42142. return __ret;
  42143. }
  42144. #endif
  42145. #ifdef __LITTLE_ENDIAN__
  42146. __ai uint16x4_t vcle_f16(float16x4_t __p0, float16x4_t __p1) {
  42147. uint16x4_t __ret;
  42148. __ret = (uint16x4_t)(__p0 <= __p1);
  42149. return __ret;
  42150. }
  42151. #else
  42152. __ai uint16x4_t vcle_f16(float16x4_t __p0, float16x4_t __p1) {
  42153. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  42154. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  42155. uint16x4_t __ret;
  42156. __ret = (uint16x4_t)(__rev0 <= __rev1);
  42157. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  42158. return __ret;
  42159. }
  42160. #endif
  42161. #ifdef __LITTLE_ENDIAN__
  42162. __ai uint16x8_t vclezq_f16(float16x8_t __p0) {
  42163. uint16x8_t __ret;
  42164. __ret = (uint16x8_t) __builtin_neon_vclezq_v((int8x16_t)__p0, 49);
  42165. return __ret;
  42166. }
  42167. #else
  42168. __ai uint16x8_t vclezq_f16(float16x8_t __p0) {
  42169. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  42170. uint16x8_t __ret;
  42171. __ret = (uint16x8_t) __builtin_neon_vclezq_v((int8x16_t)__rev0, 49);
  42172. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  42173. return __ret;
  42174. }
  42175. #endif
  42176. #ifdef __LITTLE_ENDIAN__
  42177. __ai uint16x4_t vclez_f16(float16x4_t __p0) {
  42178. uint16x4_t __ret;
  42179. __ret = (uint16x4_t) __builtin_neon_vclez_v((int8x8_t)__p0, 17);
  42180. return __ret;
  42181. }
  42182. #else
  42183. __ai uint16x4_t vclez_f16(float16x4_t __p0) {
  42184. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  42185. uint16x4_t __ret;
  42186. __ret = (uint16x4_t) __builtin_neon_vclez_v((int8x8_t)__rev0, 17);
  42187. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  42188. return __ret;
  42189. }
  42190. #endif
  42191. #ifdef __LITTLE_ENDIAN__
  42192. __ai uint16x8_t vcltq_f16(float16x8_t __p0, float16x8_t __p1) {
  42193. uint16x8_t __ret;
  42194. __ret = (uint16x8_t)(__p0 < __p1);
  42195. return __ret;
  42196. }
  42197. #else
  42198. __ai uint16x8_t vcltq_f16(float16x8_t __p0, float16x8_t __p1) {
  42199. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  42200. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  42201. uint16x8_t __ret;
  42202. __ret = (uint16x8_t)(__rev0 < __rev1);
  42203. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  42204. return __ret;
  42205. }
  42206. #endif
  42207. #ifdef __LITTLE_ENDIAN__
  42208. __ai uint16x4_t vclt_f16(float16x4_t __p0, float16x4_t __p1) {
  42209. uint16x4_t __ret;
  42210. __ret = (uint16x4_t)(__p0 < __p1);
  42211. return __ret;
  42212. }
  42213. #else
  42214. __ai uint16x4_t vclt_f16(float16x4_t __p0, float16x4_t __p1) {
  42215. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  42216. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  42217. uint16x4_t __ret;
  42218. __ret = (uint16x4_t)(__rev0 < __rev1);
  42219. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  42220. return __ret;
  42221. }
  42222. #endif
  42223. #ifdef __LITTLE_ENDIAN__
  42224. __ai uint16x8_t vcltzq_f16(float16x8_t __p0) {
  42225. uint16x8_t __ret;
  42226. __ret = (uint16x8_t) __builtin_neon_vcltzq_v((int8x16_t)__p0, 49);
  42227. return __ret;
  42228. }
  42229. #else
  42230. __ai uint16x8_t vcltzq_f16(float16x8_t __p0) {
  42231. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  42232. uint16x8_t __ret;
  42233. __ret = (uint16x8_t) __builtin_neon_vcltzq_v((int8x16_t)__rev0, 49);
  42234. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  42235. return __ret;
  42236. }
  42237. #endif
  42238. #ifdef __LITTLE_ENDIAN__
  42239. __ai uint16x4_t vcltz_f16(float16x4_t __p0) {
  42240. uint16x4_t __ret;
  42241. __ret = (uint16x4_t) __builtin_neon_vcltz_v((int8x8_t)__p0, 17);
  42242. return __ret;
  42243. }
  42244. #else
  42245. __ai uint16x4_t vcltz_f16(float16x4_t __p0) {
  42246. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  42247. uint16x4_t __ret;
  42248. __ret = (uint16x4_t) __builtin_neon_vcltz_v((int8x8_t)__rev0, 17);
  42249. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  42250. return __ret;
  42251. }
  42252. #endif
  42253. #ifdef __LITTLE_ENDIAN__
  42254. __ai float16x8_t vcvtq_f16_u16(uint16x8_t __p0) {
  42255. float16x8_t __ret;
  42256. __ret = (float16x8_t) __builtin_neon_vcvtq_f16_v((int8x16_t)__p0, 49);
  42257. return __ret;
  42258. }
  42259. #else
  42260. __ai float16x8_t vcvtq_f16_u16(uint16x8_t __p0) {
  42261. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  42262. float16x8_t __ret;
  42263. __ret = (float16x8_t) __builtin_neon_vcvtq_f16_v((int8x16_t)__rev0, 49);
  42264. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  42265. return __ret;
  42266. }
  42267. #endif
  42268. #ifdef __LITTLE_ENDIAN__
  42269. __ai float16x8_t vcvtq_f16_s16(int16x8_t __p0) {
  42270. float16x8_t __ret;
  42271. __ret = (float16x8_t) __builtin_neon_vcvtq_f16_v((int8x16_t)__p0, 33);
  42272. return __ret;
  42273. }
  42274. #else
  42275. __ai float16x8_t vcvtq_f16_s16(int16x8_t __p0) {
  42276. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  42277. float16x8_t __ret;
  42278. __ret = (float16x8_t) __builtin_neon_vcvtq_f16_v((int8x16_t)__rev0, 33);
  42279. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  42280. return __ret;
  42281. }
  42282. #endif
  42283. #ifdef __LITTLE_ENDIAN__
  42284. __ai float16x4_t vcvt_f16_u16(uint16x4_t __p0) {
  42285. float16x4_t __ret;
  42286. __ret = (float16x4_t) __builtin_neon_vcvt_f16_v((int8x8_t)__p0, 17);
  42287. return __ret;
  42288. }
  42289. #else
  42290. __ai float16x4_t vcvt_f16_u16(uint16x4_t __p0) {
  42291. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  42292. float16x4_t __ret;
  42293. __ret = (float16x4_t) __builtin_neon_vcvt_f16_v((int8x8_t)__rev0, 17);
  42294. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  42295. return __ret;
  42296. }
  42297. #endif
  42298. #ifdef __LITTLE_ENDIAN__
  42299. __ai float16x4_t vcvt_f16_s16(int16x4_t __p0) {
  42300. float16x4_t __ret;
  42301. __ret = (float16x4_t) __builtin_neon_vcvt_f16_v((int8x8_t)__p0, 1);
  42302. return __ret;
  42303. }
  42304. #else
  42305. __ai float16x4_t vcvt_f16_s16(int16x4_t __p0) {
  42306. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  42307. float16x4_t __ret;
  42308. __ret = (float16x4_t) __builtin_neon_vcvt_f16_v((int8x8_t)__rev0, 1);
  42309. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  42310. return __ret;
  42311. }
  42312. #endif
  42313. #ifdef __LITTLE_ENDIAN__
  42314. #define vcvtq_n_f16_u16(__p0, __p1) __extension__ ({ \
  42315. uint16x8_t __s0 = __p0; \
  42316. float16x8_t __ret; \
  42317. __ret = (float16x8_t) __builtin_neon_vcvtq_n_f16_v((int8x16_t)__s0, __p1, 49); \
  42318. __ret; \
  42319. })
  42320. #else
  42321. #define vcvtq_n_f16_u16(__p0, __p1) __extension__ ({ \
  42322. uint16x8_t __s0 = __p0; \
  42323. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  42324. float16x8_t __ret; \
  42325. __ret = (float16x8_t) __builtin_neon_vcvtq_n_f16_v((int8x16_t)__rev0, __p1, 49); \
  42326. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  42327. __ret; \
  42328. })
  42329. #endif
  42330. #ifdef __LITTLE_ENDIAN__
  42331. #define vcvtq_n_f16_s16(__p0, __p1) __extension__ ({ \
  42332. int16x8_t __s0 = __p0; \
  42333. float16x8_t __ret; \
  42334. __ret = (float16x8_t) __builtin_neon_vcvtq_n_f16_v((int8x16_t)__s0, __p1, 33); \
  42335. __ret; \
  42336. })
  42337. #else
  42338. #define vcvtq_n_f16_s16(__p0, __p1) __extension__ ({ \
  42339. int16x8_t __s0 = __p0; \
  42340. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  42341. float16x8_t __ret; \
  42342. __ret = (float16x8_t) __builtin_neon_vcvtq_n_f16_v((int8x16_t)__rev0, __p1, 33); \
  42343. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  42344. __ret; \
  42345. })
  42346. #endif
  42347. #ifdef __LITTLE_ENDIAN__
  42348. #define vcvt_n_f16_u16(__p0, __p1) __extension__ ({ \
  42349. uint16x4_t __s0 = __p0; \
  42350. float16x4_t __ret; \
  42351. __ret = (float16x4_t) __builtin_neon_vcvt_n_f16_v((int8x8_t)__s0, __p1, 17); \
  42352. __ret; \
  42353. })
  42354. #else
  42355. #define vcvt_n_f16_u16(__p0, __p1) __extension__ ({ \
  42356. uint16x4_t __s0 = __p0; \
  42357. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  42358. float16x4_t __ret; \
  42359. __ret = (float16x4_t) __builtin_neon_vcvt_n_f16_v((int8x8_t)__rev0, __p1, 17); \
  42360. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  42361. __ret; \
  42362. })
  42363. #endif
  42364. #ifdef __LITTLE_ENDIAN__
  42365. #define vcvt_n_f16_s16(__p0, __p1) __extension__ ({ \
  42366. int16x4_t __s0 = __p0; \
  42367. float16x4_t __ret; \
  42368. __ret = (float16x4_t) __builtin_neon_vcvt_n_f16_v((int8x8_t)__s0, __p1, 1); \
  42369. __ret; \
  42370. })
  42371. #else
  42372. #define vcvt_n_f16_s16(__p0, __p1) __extension__ ({ \
  42373. int16x4_t __s0 = __p0; \
  42374. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  42375. float16x4_t __ret; \
  42376. __ret = (float16x4_t) __builtin_neon_vcvt_n_f16_v((int8x8_t)__rev0, __p1, 1); \
  42377. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  42378. __ret; \
  42379. })
  42380. #endif
  42381. #ifdef __LITTLE_ENDIAN__
  42382. #define vcvtq_n_s16_f16(__p0, __p1) __extension__ ({ \
  42383. float16x8_t __s0 = __p0; \
  42384. int16x8_t __ret; \
  42385. __ret = (int16x8_t) __builtin_neon_vcvtq_n_s16_v((int8x16_t)__s0, __p1, 33); \
  42386. __ret; \
  42387. })
  42388. #else
  42389. #define vcvtq_n_s16_f16(__p0, __p1) __extension__ ({ \
  42390. float16x8_t __s0 = __p0; \
  42391. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  42392. int16x8_t __ret; \
  42393. __ret = (int16x8_t) __builtin_neon_vcvtq_n_s16_v((int8x16_t)__rev0, __p1, 33); \
  42394. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  42395. __ret; \
  42396. })
  42397. #endif
  42398. #ifdef __LITTLE_ENDIAN__
  42399. #define vcvt_n_s16_f16(__p0, __p1) __extension__ ({ \
  42400. float16x4_t __s0 = __p0; \
  42401. int16x4_t __ret; \
  42402. __ret = (int16x4_t) __builtin_neon_vcvt_n_s16_v((int8x8_t)__s0, __p1, 1); \
  42403. __ret; \
  42404. })
  42405. #else
  42406. #define vcvt_n_s16_f16(__p0, __p1) __extension__ ({ \
  42407. float16x4_t __s0 = __p0; \
  42408. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  42409. int16x4_t __ret; \
  42410. __ret = (int16x4_t) __builtin_neon_vcvt_n_s16_v((int8x8_t)__rev0, __p1, 1); \
  42411. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  42412. __ret; \
  42413. })
  42414. #endif
  42415. #ifdef __LITTLE_ENDIAN__
  42416. #define vcvtq_n_u16_f16(__p0, __p1) __extension__ ({ \
  42417. float16x8_t __s0 = __p0; \
  42418. uint16x8_t __ret; \
  42419. __ret = (uint16x8_t) __builtin_neon_vcvtq_n_u16_v((int8x16_t)__s0, __p1, 49); \
  42420. __ret; \
  42421. })
  42422. #else
  42423. #define vcvtq_n_u16_f16(__p0, __p1) __extension__ ({ \
  42424. float16x8_t __s0 = __p0; \
  42425. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  42426. uint16x8_t __ret; \
  42427. __ret = (uint16x8_t) __builtin_neon_vcvtq_n_u16_v((int8x16_t)__rev0, __p1, 49); \
  42428. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  42429. __ret; \
  42430. })
  42431. #endif
  42432. #ifdef __LITTLE_ENDIAN__
  42433. #define vcvt_n_u16_f16(__p0, __p1) __extension__ ({ \
  42434. float16x4_t __s0 = __p0; \
  42435. uint16x4_t __ret; \
  42436. __ret = (uint16x4_t) __builtin_neon_vcvt_n_u16_v((int8x8_t)__s0, __p1, 17); \
  42437. __ret; \
  42438. })
  42439. #else
  42440. #define vcvt_n_u16_f16(__p0, __p1) __extension__ ({ \
  42441. float16x4_t __s0 = __p0; \
  42442. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  42443. uint16x4_t __ret; \
  42444. __ret = (uint16x4_t) __builtin_neon_vcvt_n_u16_v((int8x8_t)__rev0, __p1, 17); \
  42445. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  42446. __ret; \
  42447. })
  42448. #endif
  42449. #ifdef __LITTLE_ENDIAN__
  42450. __ai int16x8_t vcvtq_s16_f16(float16x8_t __p0) {
  42451. int16x8_t __ret;
  42452. __ret = (int16x8_t) __builtin_neon_vcvtq_s16_v((int8x16_t)__p0, 33);
  42453. return __ret;
  42454. }
  42455. #else
  42456. __ai int16x8_t vcvtq_s16_f16(float16x8_t __p0) {
  42457. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  42458. int16x8_t __ret;
  42459. __ret = (int16x8_t) __builtin_neon_vcvtq_s16_v((int8x16_t)__rev0, 33);
  42460. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  42461. return __ret;
  42462. }
  42463. #endif
  42464. #ifdef __LITTLE_ENDIAN__
  42465. __ai int16x4_t vcvt_s16_f16(float16x4_t __p0) {
  42466. int16x4_t __ret;
  42467. __ret = (int16x4_t) __builtin_neon_vcvt_s16_v((int8x8_t)__p0, 1);
  42468. return __ret;
  42469. }
  42470. #else
  42471. __ai int16x4_t vcvt_s16_f16(float16x4_t __p0) {
  42472. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  42473. int16x4_t __ret;
  42474. __ret = (int16x4_t) __builtin_neon_vcvt_s16_v((int8x8_t)__rev0, 1);
  42475. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  42476. return __ret;
  42477. }
  42478. #endif
  42479. #ifdef __LITTLE_ENDIAN__
  42480. __ai uint16x8_t vcvtq_u16_f16(float16x8_t __p0) {
  42481. uint16x8_t __ret;
  42482. __ret = (uint16x8_t) __builtin_neon_vcvtq_u16_v((int8x16_t)__p0, 49);
  42483. return __ret;
  42484. }
  42485. #else
  42486. __ai uint16x8_t vcvtq_u16_f16(float16x8_t __p0) {
  42487. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  42488. uint16x8_t __ret;
  42489. __ret = (uint16x8_t) __builtin_neon_vcvtq_u16_v((int8x16_t)__rev0, 49);
  42490. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  42491. return __ret;
  42492. }
  42493. #endif
  42494. #ifdef __LITTLE_ENDIAN__
  42495. __ai uint16x4_t vcvt_u16_f16(float16x4_t __p0) {
  42496. uint16x4_t __ret;
  42497. __ret = (uint16x4_t) __builtin_neon_vcvt_u16_v((int8x8_t)__p0, 17);
  42498. return __ret;
  42499. }
  42500. #else
  42501. __ai uint16x4_t vcvt_u16_f16(float16x4_t __p0) {
  42502. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  42503. uint16x4_t __ret;
  42504. __ret = (uint16x4_t) __builtin_neon_vcvt_u16_v((int8x8_t)__rev0, 17);
  42505. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  42506. return __ret;
  42507. }
  42508. #endif
  42509. #ifdef __LITTLE_ENDIAN__
  42510. __ai int16x8_t vcvtaq_s16_f16(float16x8_t __p0) {
  42511. int16x8_t __ret;
  42512. __ret = (int16x8_t) __builtin_neon_vcvtaq_s16_v((int8x16_t)__p0, 33);
  42513. return __ret;
  42514. }
  42515. #else
  42516. __ai int16x8_t vcvtaq_s16_f16(float16x8_t __p0) {
  42517. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  42518. int16x8_t __ret;
  42519. __ret = (int16x8_t) __builtin_neon_vcvtaq_s16_v((int8x16_t)__rev0, 33);
  42520. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  42521. return __ret;
  42522. }
  42523. #endif
  42524. #ifdef __LITTLE_ENDIAN__
  42525. __ai int16x4_t vcvta_s16_f16(float16x4_t __p0) {
  42526. int16x4_t __ret;
  42527. __ret = (int16x4_t) __builtin_neon_vcvta_s16_v((int8x8_t)__p0, 1);
  42528. return __ret;
  42529. }
  42530. #else
  42531. __ai int16x4_t vcvta_s16_f16(float16x4_t __p0) {
  42532. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  42533. int16x4_t __ret;
  42534. __ret = (int16x4_t) __builtin_neon_vcvta_s16_v((int8x8_t)__rev0, 1);
  42535. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  42536. return __ret;
  42537. }
  42538. #endif
  42539. #ifdef __LITTLE_ENDIAN__
  42540. __ai uint16x8_t vcvtaq_u16_f16(float16x8_t __p0) {
  42541. uint16x8_t __ret;
  42542. __ret = (uint16x8_t) __builtin_neon_vcvtaq_u16_v((int8x16_t)__p0, 49);
  42543. return __ret;
  42544. }
  42545. #else
  42546. __ai uint16x8_t vcvtaq_u16_f16(float16x8_t __p0) {
  42547. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  42548. uint16x8_t __ret;
  42549. __ret = (uint16x8_t) __builtin_neon_vcvtaq_u16_v((int8x16_t)__rev0, 49);
  42550. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  42551. return __ret;
  42552. }
  42553. #endif
  42554. #ifdef __LITTLE_ENDIAN__
  42555. __ai uint16x4_t vcvta_u16_f16(float16x4_t __p0) {
  42556. uint16x4_t __ret;
  42557. __ret = (uint16x4_t) __builtin_neon_vcvta_u16_v((int8x8_t)__p0, 17);
  42558. return __ret;
  42559. }
  42560. #else
  42561. __ai uint16x4_t vcvta_u16_f16(float16x4_t __p0) {
  42562. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  42563. uint16x4_t __ret;
  42564. __ret = (uint16x4_t) __builtin_neon_vcvta_u16_v((int8x8_t)__rev0, 17);
  42565. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  42566. return __ret;
  42567. }
  42568. #endif
  42569. #ifdef __LITTLE_ENDIAN__
  42570. __ai int16x8_t vcvtmq_s16_f16(float16x8_t __p0) {
  42571. int16x8_t __ret;
  42572. __ret = (int16x8_t) __builtin_neon_vcvtmq_s16_v((int8x16_t)__p0, 33);
  42573. return __ret;
  42574. }
  42575. #else
  42576. __ai int16x8_t vcvtmq_s16_f16(float16x8_t __p0) {
  42577. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  42578. int16x8_t __ret;
  42579. __ret = (int16x8_t) __builtin_neon_vcvtmq_s16_v((int8x16_t)__rev0, 33);
  42580. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  42581. return __ret;
  42582. }
  42583. #endif
  42584. #ifdef __LITTLE_ENDIAN__
  42585. __ai int16x4_t vcvtm_s16_f16(float16x4_t __p0) {
  42586. int16x4_t __ret;
  42587. __ret = (int16x4_t) __builtin_neon_vcvtm_s16_v((int8x8_t)__p0, 1);
  42588. return __ret;
  42589. }
  42590. #else
  42591. __ai int16x4_t vcvtm_s16_f16(float16x4_t __p0) {
  42592. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  42593. int16x4_t __ret;
  42594. __ret = (int16x4_t) __builtin_neon_vcvtm_s16_v((int8x8_t)__rev0, 1);
  42595. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  42596. return __ret;
  42597. }
  42598. #endif
  42599. #ifdef __LITTLE_ENDIAN__
  42600. __ai uint16x8_t vcvtmq_u16_f16(float16x8_t __p0) {
  42601. uint16x8_t __ret;
  42602. __ret = (uint16x8_t) __builtin_neon_vcvtmq_u16_v((int8x16_t)__p0, 49);
  42603. return __ret;
  42604. }
  42605. #else
  42606. __ai uint16x8_t vcvtmq_u16_f16(float16x8_t __p0) {
  42607. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  42608. uint16x8_t __ret;
  42609. __ret = (uint16x8_t) __builtin_neon_vcvtmq_u16_v((int8x16_t)__rev0, 49);
  42610. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  42611. return __ret;
  42612. }
  42613. #endif
  42614. #ifdef __LITTLE_ENDIAN__
  42615. __ai uint16x4_t vcvtm_u16_f16(float16x4_t __p0) {
  42616. uint16x4_t __ret;
  42617. __ret = (uint16x4_t) __builtin_neon_vcvtm_u16_v((int8x8_t)__p0, 17);
  42618. return __ret;
  42619. }
  42620. #else
  42621. __ai uint16x4_t vcvtm_u16_f16(float16x4_t __p0) {
  42622. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  42623. uint16x4_t __ret;
  42624. __ret = (uint16x4_t) __builtin_neon_vcvtm_u16_v((int8x8_t)__rev0, 17);
  42625. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  42626. return __ret;
  42627. }
  42628. #endif
  42629. #ifdef __LITTLE_ENDIAN__
  42630. __ai int16x8_t vcvtnq_s16_f16(float16x8_t __p0) {
  42631. int16x8_t __ret;
  42632. __ret = (int16x8_t) __builtin_neon_vcvtnq_s16_v((int8x16_t)__p0, 33);
  42633. return __ret;
  42634. }
  42635. #else
  42636. __ai int16x8_t vcvtnq_s16_f16(float16x8_t __p0) {
  42637. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  42638. int16x8_t __ret;
  42639. __ret = (int16x8_t) __builtin_neon_vcvtnq_s16_v((int8x16_t)__rev0, 33);
  42640. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  42641. return __ret;
  42642. }
  42643. #endif
  42644. #ifdef __LITTLE_ENDIAN__
  42645. __ai int16x4_t vcvtn_s16_f16(float16x4_t __p0) {
  42646. int16x4_t __ret;
  42647. __ret = (int16x4_t) __builtin_neon_vcvtn_s16_v((int8x8_t)__p0, 1);
  42648. return __ret;
  42649. }
  42650. #else
  42651. __ai int16x4_t vcvtn_s16_f16(float16x4_t __p0) {
  42652. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  42653. int16x4_t __ret;
  42654. __ret = (int16x4_t) __builtin_neon_vcvtn_s16_v((int8x8_t)__rev0, 1);
  42655. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  42656. return __ret;
  42657. }
  42658. #endif
  42659. #ifdef __LITTLE_ENDIAN__
  42660. __ai uint16x8_t vcvtnq_u16_f16(float16x8_t __p0) {
  42661. uint16x8_t __ret;
  42662. __ret = (uint16x8_t) __builtin_neon_vcvtnq_u16_v((int8x16_t)__p0, 49);
  42663. return __ret;
  42664. }
  42665. #else
  42666. __ai uint16x8_t vcvtnq_u16_f16(float16x8_t __p0) {
  42667. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  42668. uint16x8_t __ret;
  42669. __ret = (uint16x8_t) __builtin_neon_vcvtnq_u16_v((int8x16_t)__rev0, 49);
  42670. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  42671. return __ret;
  42672. }
  42673. #endif
  42674. #ifdef __LITTLE_ENDIAN__
  42675. __ai uint16x4_t vcvtn_u16_f16(float16x4_t __p0) {
  42676. uint16x4_t __ret;
  42677. __ret = (uint16x4_t) __builtin_neon_vcvtn_u16_v((int8x8_t)__p0, 17);
  42678. return __ret;
  42679. }
  42680. #else
  42681. __ai uint16x4_t vcvtn_u16_f16(float16x4_t __p0) {
  42682. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  42683. uint16x4_t __ret;
  42684. __ret = (uint16x4_t) __builtin_neon_vcvtn_u16_v((int8x8_t)__rev0, 17);
  42685. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  42686. return __ret;
  42687. }
  42688. #endif
  42689. #ifdef __LITTLE_ENDIAN__
  42690. __ai int16x8_t vcvtpq_s16_f16(float16x8_t __p0) {
  42691. int16x8_t __ret;
  42692. __ret = (int16x8_t) __builtin_neon_vcvtpq_s16_v((int8x16_t)__p0, 33);
  42693. return __ret;
  42694. }
  42695. #else
  42696. __ai int16x8_t vcvtpq_s16_f16(float16x8_t __p0) {
  42697. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  42698. int16x8_t __ret;
  42699. __ret = (int16x8_t) __builtin_neon_vcvtpq_s16_v((int8x16_t)__rev0, 33);
  42700. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  42701. return __ret;
  42702. }
  42703. #endif
  42704. #ifdef __LITTLE_ENDIAN__
  42705. __ai int16x4_t vcvtp_s16_f16(float16x4_t __p0) {
  42706. int16x4_t __ret;
  42707. __ret = (int16x4_t) __builtin_neon_vcvtp_s16_v((int8x8_t)__p0, 1);
  42708. return __ret;
  42709. }
  42710. #else
  42711. __ai int16x4_t vcvtp_s16_f16(float16x4_t __p0) {
  42712. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  42713. int16x4_t __ret;
  42714. __ret = (int16x4_t) __builtin_neon_vcvtp_s16_v((int8x8_t)__rev0, 1);
  42715. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  42716. return __ret;
  42717. }
  42718. #endif
  42719. #ifdef __LITTLE_ENDIAN__
  42720. __ai uint16x8_t vcvtpq_u16_f16(float16x8_t __p0) {
  42721. uint16x8_t __ret;
  42722. __ret = (uint16x8_t) __builtin_neon_vcvtpq_u16_v((int8x16_t)__p0, 49);
  42723. return __ret;
  42724. }
  42725. #else
  42726. __ai uint16x8_t vcvtpq_u16_f16(float16x8_t __p0) {
  42727. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  42728. uint16x8_t __ret;
  42729. __ret = (uint16x8_t) __builtin_neon_vcvtpq_u16_v((int8x16_t)__rev0, 49);
  42730. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  42731. return __ret;
  42732. }
  42733. #endif
  42734. #ifdef __LITTLE_ENDIAN__
  42735. __ai uint16x4_t vcvtp_u16_f16(float16x4_t __p0) {
  42736. uint16x4_t __ret;
  42737. __ret = (uint16x4_t) __builtin_neon_vcvtp_u16_v((int8x8_t)__p0, 17);
  42738. return __ret;
  42739. }
  42740. #else
  42741. __ai uint16x4_t vcvtp_u16_f16(float16x4_t __p0) {
  42742. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  42743. uint16x4_t __ret;
  42744. __ret = (uint16x4_t) __builtin_neon_vcvtp_u16_v((int8x8_t)__rev0, 17);
  42745. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  42746. return __ret;
  42747. }
  42748. #endif
  42749. #ifdef __LITTLE_ENDIAN__
  42750. #define vextq_f16(__p0, __p1, __p2) __extension__ ({ \
  42751. float16x8_t __s0 = __p0; \
  42752. float16x8_t __s1 = __p1; \
  42753. float16x8_t __ret; \
  42754. __ret = (float16x8_t) __builtin_neon_vextq_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 40); \
  42755. __ret; \
  42756. })
  42757. #else
  42758. #define vextq_f16(__p0, __p1, __p2) __extension__ ({ \
  42759. float16x8_t __s0 = __p0; \
  42760. float16x8_t __s1 = __p1; \
  42761. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  42762. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  42763. float16x8_t __ret; \
  42764. __ret = (float16x8_t) __builtin_neon_vextq_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 40); \
  42765. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  42766. __ret; \
  42767. })
  42768. #endif
  42769. #ifdef __LITTLE_ENDIAN__
  42770. #define vext_f16(__p0, __p1, __p2) __extension__ ({ \
  42771. float16x4_t __s0 = __p0; \
  42772. float16x4_t __s1 = __p1; \
  42773. float16x4_t __ret; \
  42774. __ret = (float16x4_t) __builtin_neon_vext_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 8); \
  42775. __ret; \
  42776. })
  42777. #else
  42778. #define vext_f16(__p0, __p1, __p2) __extension__ ({ \
  42779. float16x4_t __s0 = __p0; \
  42780. float16x4_t __s1 = __p1; \
  42781. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  42782. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  42783. float16x4_t __ret; \
  42784. __ret = (float16x4_t) __builtin_neon_vext_v((int8x8_t)__rev0, (int8x8_t)__rev1, __p2, 8); \
  42785. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  42786. __ret; \
  42787. })
  42788. #endif
  42789. #ifdef __LITTLE_ENDIAN__
  42790. __ai float16x8_t vfmaq_f16(float16x8_t __p0, float16x8_t __p1, float16x8_t __p2) {
  42791. float16x8_t __ret;
  42792. __ret = (float16x8_t) __builtin_neon_vfmaq_v((int8x16_t)__p0, (int8x16_t)__p1, (int8x16_t)__p2, 40);
  42793. return __ret;
  42794. }
  42795. #else
  42796. __ai float16x8_t vfmaq_f16(float16x8_t __p0, float16x8_t __p1, float16x8_t __p2) {
  42797. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  42798. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  42799. float16x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  42800. float16x8_t __ret;
  42801. __ret = (float16x8_t) __builtin_neon_vfmaq_v((int8x16_t)__rev0, (int8x16_t)__rev1, (int8x16_t)__rev2, 40);
  42802. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  42803. return __ret;
  42804. }
  42805. __ai float16x8_t __noswap_vfmaq_f16(float16x8_t __p0, float16x8_t __p1, float16x8_t __p2) {
  42806. float16x8_t __ret;
  42807. __ret = (float16x8_t) __builtin_neon_vfmaq_v((int8x16_t)__p0, (int8x16_t)__p1, (int8x16_t)__p2, 40);
  42808. return __ret;
  42809. }
  42810. #endif
  42811. #ifdef __LITTLE_ENDIAN__
  42812. __ai float16x4_t vfma_f16(float16x4_t __p0, float16x4_t __p1, float16x4_t __p2) {
  42813. float16x4_t __ret;
  42814. __ret = (float16x4_t) __builtin_neon_vfma_v((int8x8_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 8);
  42815. return __ret;
  42816. }
  42817. #else
  42818. __ai float16x4_t vfma_f16(float16x4_t __p0, float16x4_t __p1, float16x4_t __p2) {
  42819. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  42820. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  42821. float16x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  42822. float16x4_t __ret;
  42823. __ret = (float16x4_t) __builtin_neon_vfma_v((int8x8_t)__rev0, (int8x8_t)__rev1, (int8x8_t)__rev2, 8);
  42824. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  42825. return __ret;
  42826. }
  42827. __ai float16x4_t __noswap_vfma_f16(float16x4_t __p0, float16x4_t __p1, float16x4_t __p2) {
  42828. float16x4_t __ret;
  42829. __ret = (float16x4_t) __builtin_neon_vfma_v((int8x8_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 8);
  42830. return __ret;
  42831. }
  42832. #endif
  42833. #ifdef __LITTLE_ENDIAN__
  42834. __ai float16x8_t vfmsq_f16(float16x8_t __p0, float16x8_t __p1, float16x8_t __p2) {
  42835. float16x8_t __ret;
  42836. __ret = vfmaq_f16(__p0, -__p1, __p2);
  42837. return __ret;
  42838. }
  42839. #else
  42840. __ai float16x8_t vfmsq_f16(float16x8_t __p0, float16x8_t __p1, float16x8_t __p2) {
  42841. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  42842. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  42843. float16x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  42844. float16x8_t __ret;
  42845. __ret = __noswap_vfmaq_f16(__rev0, -__rev1, __rev2);
  42846. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  42847. return __ret;
  42848. }
  42849. #endif
  42850. #ifdef __LITTLE_ENDIAN__
  42851. __ai float16x4_t vfms_f16(float16x4_t __p0, float16x4_t __p1, float16x4_t __p2) {
  42852. float16x4_t __ret;
  42853. __ret = vfma_f16(__p0, -__p1, __p2);
  42854. return __ret;
  42855. }
  42856. #else
  42857. __ai float16x4_t vfms_f16(float16x4_t __p0, float16x4_t __p1, float16x4_t __p2) {
  42858. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  42859. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  42860. float16x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  42861. float16x4_t __ret;
  42862. __ret = __noswap_vfma_f16(__rev0, -__rev1, __rev2);
  42863. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  42864. return __ret;
  42865. }
  42866. #endif
  42867. #ifdef __LITTLE_ENDIAN__
  42868. __ai float16x8_t vmaxq_f16(float16x8_t __p0, float16x8_t __p1) {
  42869. float16x8_t __ret;
  42870. __ret = (float16x8_t) __builtin_neon_vmaxq_v((int8x16_t)__p0, (int8x16_t)__p1, 40);
  42871. return __ret;
  42872. }
  42873. #else
  42874. __ai float16x8_t vmaxq_f16(float16x8_t __p0, float16x8_t __p1) {
  42875. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  42876. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  42877. float16x8_t __ret;
  42878. __ret = (float16x8_t) __builtin_neon_vmaxq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 40);
  42879. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  42880. return __ret;
  42881. }
  42882. #endif
  42883. #ifdef __LITTLE_ENDIAN__
  42884. __ai float16x4_t vmax_f16(float16x4_t __p0, float16x4_t __p1) {
  42885. float16x4_t __ret;
  42886. __ret = (float16x4_t) __builtin_neon_vmax_v((int8x8_t)__p0, (int8x8_t)__p1, 8);
  42887. return __ret;
  42888. }
  42889. #else
  42890. __ai float16x4_t vmax_f16(float16x4_t __p0, float16x4_t __p1) {
  42891. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  42892. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  42893. float16x4_t __ret;
  42894. __ret = (float16x4_t) __builtin_neon_vmax_v((int8x8_t)__rev0, (int8x8_t)__rev1, 8);
  42895. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  42896. return __ret;
  42897. }
  42898. #endif
  42899. #ifdef __LITTLE_ENDIAN__
  42900. __ai float16x8_t vminq_f16(float16x8_t __p0, float16x8_t __p1) {
  42901. float16x8_t __ret;
  42902. __ret = (float16x8_t) __builtin_neon_vminq_v((int8x16_t)__p0, (int8x16_t)__p1, 40);
  42903. return __ret;
  42904. }
  42905. #else
  42906. __ai float16x8_t vminq_f16(float16x8_t __p0, float16x8_t __p1) {
  42907. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  42908. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  42909. float16x8_t __ret;
  42910. __ret = (float16x8_t) __builtin_neon_vminq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 40);
  42911. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  42912. return __ret;
  42913. }
  42914. #endif
  42915. #ifdef __LITTLE_ENDIAN__
  42916. __ai float16x4_t vmin_f16(float16x4_t __p0, float16x4_t __p1) {
  42917. float16x4_t __ret;
  42918. __ret = (float16x4_t) __builtin_neon_vmin_v((int8x8_t)__p0, (int8x8_t)__p1, 8);
  42919. return __ret;
  42920. }
  42921. #else
  42922. __ai float16x4_t vmin_f16(float16x4_t __p0, float16x4_t __p1) {
  42923. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  42924. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  42925. float16x4_t __ret;
  42926. __ret = (float16x4_t) __builtin_neon_vmin_v((int8x8_t)__rev0, (int8x8_t)__rev1, 8);
  42927. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  42928. return __ret;
  42929. }
  42930. #endif
  42931. #ifdef __LITTLE_ENDIAN__
  42932. __ai float16x8_t vmulq_f16(float16x8_t __p0, float16x8_t __p1) {
  42933. float16x8_t __ret;
  42934. __ret = __p0 * __p1;
  42935. return __ret;
  42936. }
  42937. #else
  42938. __ai float16x8_t vmulq_f16(float16x8_t __p0, float16x8_t __p1) {
  42939. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  42940. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  42941. float16x8_t __ret;
  42942. __ret = __rev0 * __rev1;
  42943. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  42944. return __ret;
  42945. }
  42946. #endif
  42947. #ifdef __LITTLE_ENDIAN__
  42948. __ai float16x4_t vmul_f16(float16x4_t __p0, float16x4_t __p1) {
  42949. float16x4_t __ret;
  42950. __ret = __p0 * __p1;
  42951. return __ret;
  42952. }
  42953. #else
  42954. __ai float16x4_t vmul_f16(float16x4_t __p0, float16x4_t __p1) {
  42955. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  42956. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  42957. float16x4_t __ret;
  42958. __ret = __rev0 * __rev1;
  42959. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  42960. return __ret;
  42961. }
  42962. #endif
  42963. #ifdef __LITTLE_ENDIAN__
  42964. #define vmulq_lane_f16(__p0, __p1, __p2) __extension__ ({ \
  42965. float16x8_t __s0 = __p0; \
  42966. float16x4_t __s1 = __p1; \
  42967. float16x8_t __ret; \
  42968. __ret = __s0 * __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2, __p2, __p2, __p2, __p2); \
  42969. __ret; \
  42970. })
  42971. #else
  42972. #define vmulq_lane_f16(__p0, __p1, __p2) __extension__ ({ \
  42973. float16x8_t __s0 = __p0; \
  42974. float16x4_t __s1 = __p1; \
  42975. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  42976. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  42977. float16x8_t __ret; \
  42978. __ret = __rev0 * __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2, __p2, __p2, __p2, __p2); \
  42979. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  42980. __ret; \
  42981. })
  42982. #endif
  42983. #ifdef __LITTLE_ENDIAN__
  42984. #define vmul_lane_f16(__p0, __p1, __p2) __extension__ ({ \
  42985. float16x4_t __s0 = __p0; \
  42986. float16x4_t __s1 = __p1; \
  42987. float16x4_t __ret; \
  42988. __ret = __s0 * __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2); \
  42989. __ret; \
  42990. })
  42991. #else
  42992. #define vmul_lane_f16(__p0, __p1, __p2) __extension__ ({ \
  42993. float16x4_t __s0 = __p0; \
  42994. float16x4_t __s1 = __p1; \
  42995. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  42996. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  42997. float16x4_t __ret; \
  42998. __ret = __rev0 * __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2); \
  42999. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  43000. __ret; \
  43001. })
  43002. #endif
  43003. #ifdef __LITTLE_ENDIAN__
  43004. #define vmulq_n_f16(__p0, __p1) __extension__ ({ \
  43005. float16x8_t __s0 = __p0; \
  43006. float16_t __s1 = __p1; \
  43007. float16x8_t __ret; \
  43008. __ret = __s0 * (float16x8_t) {__s1, __s1, __s1, __s1, __s1, __s1, __s1, __s1}; \
  43009. __ret; \
  43010. })
  43011. #else
  43012. #define vmulq_n_f16(__p0, __p1) __extension__ ({ \
  43013. float16x8_t __s0 = __p0; \
  43014. float16_t __s1 = __p1; \
  43015. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  43016. float16x8_t __ret; \
  43017. __ret = __rev0 * (float16x8_t) {__s1, __s1, __s1, __s1, __s1, __s1, __s1, __s1}; \
  43018. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  43019. __ret; \
  43020. })
  43021. #endif
  43022. #ifdef __LITTLE_ENDIAN__
  43023. #define vmul_n_f16(__p0, __p1) __extension__ ({ \
  43024. float16x4_t __s0 = __p0; \
  43025. float16_t __s1 = __p1; \
  43026. float16x4_t __ret; \
  43027. __ret = __s0 * (float16x4_t) {__s1, __s1, __s1, __s1}; \
  43028. __ret; \
  43029. })
  43030. #else
  43031. #define vmul_n_f16(__p0, __p1) __extension__ ({ \
  43032. float16x4_t __s0 = __p0; \
  43033. float16_t __s1 = __p1; \
  43034. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  43035. float16x4_t __ret; \
  43036. __ret = __rev0 * (float16x4_t) {__s1, __s1, __s1, __s1}; \
  43037. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  43038. __ret; \
  43039. })
  43040. #endif
  43041. #ifdef __LITTLE_ENDIAN__
  43042. __ai float16x8_t vnegq_f16(float16x8_t __p0) {
  43043. float16x8_t __ret;
  43044. __ret = -__p0;
  43045. return __ret;
  43046. }
  43047. #else
  43048. __ai float16x8_t vnegq_f16(float16x8_t __p0) {
  43049. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  43050. float16x8_t __ret;
  43051. __ret = -__rev0;
  43052. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  43053. return __ret;
  43054. }
  43055. #endif
  43056. #ifdef __LITTLE_ENDIAN__
  43057. __ai float16x4_t vneg_f16(float16x4_t __p0) {
  43058. float16x4_t __ret;
  43059. __ret = -__p0;
  43060. return __ret;
  43061. }
  43062. #else
  43063. __ai float16x4_t vneg_f16(float16x4_t __p0) {
  43064. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  43065. float16x4_t __ret;
  43066. __ret = -__rev0;
  43067. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  43068. return __ret;
  43069. }
  43070. #endif
  43071. #ifdef __LITTLE_ENDIAN__
  43072. __ai float16x4_t vpadd_f16(float16x4_t __p0, float16x4_t __p1) {
  43073. float16x4_t __ret;
  43074. __ret = (float16x4_t) __builtin_neon_vpadd_v((int8x8_t)__p0, (int8x8_t)__p1, 8);
  43075. return __ret;
  43076. }
  43077. #else
  43078. __ai float16x4_t vpadd_f16(float16x4_t __p0, float16x4_t __p1) {
  43079. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  43080. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  43081. float16x4_t __ret;
  43082. __ret = (float16x4_t) __builtin_neon_vpadd_v((int8x8_t)__rev0, (int8x8_t)__rev1, 8);
  43083. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  43084. return __ret;
  43085. }
  43086. #endif
  43087. #ifdef __LITTLE_ENDIAN__
  43088. __ai float16x4_t vpmax_f16(float16x4_t __p0, float16x4_t __p1) {
  43089. float16x4_t __ret;
  43090. __ret = (float16x4_t) __builtin_neon_vpmax_v((int8x8_t)__p0, (int8x8_t)__p1, 8);
  43091. return __ret;
  43092. }
  43093. #else
  43094. __ai float16x4_t vpmax_f16(float16x4_t __p0, float16x4_t __p1) {
  43095. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  43096. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  43097. float16x4_t __ret;
  43098. __ret = (float16x4_t) __builtin_neon_vpmax_v((int8x8_t)__rev0, (int8x8_t)__rev1, 8);
  43099. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  43100. return __ret;
  43101. }
  43102. #endif
  43103. #ifdef __LITTLE_ENDIAN__
  43104. __ai float16x4_t vpmin_f16(float16x4_t __p0, float16x4_t __p1) {
  43105. float16x4_t __ret;
  43106. __ret = (float16x4_t) __builtin_neon_vpmin_v((int8x8_t)__p0, (int8x8_t)__p1, 8);
  43107. return __ret;
  43108. }
  43109. #else
  43110. __ai float16x4_t vpmin_f16(float16x4_t __p0, float16x4_t __p1) {
  43111. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  43112. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  43113. float16x4_t __ret;
  43114. __ret = (float16x4_t) __builtin_neon_vpmin_v((int8x8_t)__rev0, (int8x8_t)__rev1, 8);
  43115. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  43116. return __ret;
  43117. }
  43118. #endif
  43119. #ifdef __LITTLE_ENDIAN__
  43120. __ai float16x8_t vrecpeq_f16(float16x8_t __p0) {
  43121. float16x8_t __ret;
  43122. __ret = (float16x8_t) __builtin_neon_vrecpeq_v((int8x16_t)__p0, 40);
  43123. return __ret;
  43124. }
  43125. #else
  43126. __ai float16x8_t vrecpeq_f16(float16x8_t __p0) {
  43127. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  43128. float16x8_t __ret;
  43129. __ret = (float16x8_t) __builtin_neon_vrecpeq_v((int8x16_t)__rev0, 40);
  43130. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  43131. return __ret;
  43132. }
  43133. #endif
  43134. #ifdef __LITTLE_ENDIAN__
  43135. __ai float16x4_t vrecpe_f16(float16x4_t __p0) {
  43136. float16x4_t __ret;
  43137. __ret = (float16x4_t) __builtin_neon_vrecpe_v((int8x8_t)__p0, 8);
  43138. return __ret;
  43139. }
  43140. #else
  43141. __ai float16x4_t vrecpe_f16(float16x4_t __p0) {
  43142. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  43143. float16x4_t __ret;
  43144. __ret = (float16x4_t) __builtin_neon_vrecpe_v((int8x8_t)__rev0, 8);
  43145. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  43146. return __ret;
  43147. }
  43148. #endif
  43149. #ifdef __LITTLE_ENDIAN__
  43150. __ai float16x8_t vrecpsq_f16(float16x8_t __p0, float16x8_t __p1) {
  43151. float16x8_t __ret;
  43152. __ret = (float16x8_t) __builtin_neon_vrecpsq_v((int8x16_t)__p0, (int8x16_t)__p1, 40);
  43153. return __ret;
  43154. }
  43155. #else
  43156. __ai float16x8_t vrecpsq_f16(float16x8_t __p0, float16x8_t __p1) {
  43157. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  43158. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  43159. float16x8_t __ret;
  43160. __ret = (float16x8_t) __builtin_neon_vrecpsq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 40);
  43161. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  43162. return __ret;
  43163. }
  43164. #endif
  43165. #ifdef __LITTLE_ENDIAN__
  43166. __ai float16x4_t vrecps_f16(float16x4_t __p0, float16x4_t __p1) {
  43167. float16x4_t __ret;
  43168. __ret = (float16x4_t) __builtin_neon_vrecps_v((int8x8_t)__p0, (int8x8_t)__p1, 8);
  43169. return __ret;
  43170. }
  43171. #else
  43172. __ai float16x4_t vrecps_f16(float16x4_t __p0, float16x4_t __p1) {
  43173. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  43174. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  43175. float16x4_t __ret;
  43176. __ret = (float16x4_t) __builtin_neon_vrecps_v((int8x8_t)__rev0, (int8x8_t)__rev1, 8);
  43177. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  43178. return __ret;
  43179. }
  43180. #endif
  43181. #ifdef __LITTLE_ENDIAN__
  43182. __ai float16x8_t vrev64q_f16(float16x8_t __p0) {
  43183. float16x8_t __ret;
  43184. __ret = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0, 7, 6, 5, 4);
  43185. return __ret;
  43186. }
  43187. #else
  43188. __ai float16x8_t vrev64q_f16(float16x8_t __p0) {
  43189. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  43190. float16x8_t __ret;
  43191. __ret = __builtin_shufflevector(__rev0, __rev0, 3, 2, 1, 0, 7, 6, 5, 4);
  43192. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  43193. return __ret;
  43194. }
  43195. #endif
  43196. #ifdef __LITTLE_ENDIAN__
  43197. __ai float16x4_t vrev64_f16(float16x4_t __p0) {
  43198. float16x4_t __ret;
  43199. __ret = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  43200. return __ret;
  43201. }
  43202. #else
  43203. __ai float16x4_t vrev64_f16(float16x4_t __p0) {
  43204. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  43205. float16x4_t __ret;
  43206. __ret = __builtin_shufflevector(__rev0, __rev0, 3, 2, 1, 0);
  43207. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  43208. return __ret;
  43209. }
  43210. #endif
  43211. #ifdef __LITTLE_ENDIAN__
  43212. __ai float16x8_t vrsqrteq_f16(float16x8_t __p0) {
  43213. float16x8_t __ret;
  43214. __ret = (float16x8_t) __builtin_neon_vrsqrteq_v((int8x16_t)__p0, 40);
  43215. return __ret;
  43216. }
  43217. #else
  43218. __ai float16x8_t vrsqrteq_f16(float16x8_t __p0) {
  43219. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  43220. float16x8_t __ret;
  43221. __ret = (float16x8_t) __builtin_neon_vrsqrteq_v((int8x16_t)__rev0, 40);
  43222. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  43223. return __ret;
  43224. }
  43225. #endif
  43226. #ifdef __LITTLE_ENDIAN__
  43227. __ai float16x4_t vrsqrte_f16(float16x4_t __p0) {
  43228. float16x4_t __ret;
  43229. __ret = (float16x4_t) __builtin_neon_vrsqrte_v((int8x8_t)__p0, 8);
  43230. return __ret;
  43231. }
  43232. #else
  43233. __ai float16x4_t vrsqrte_f16(float16x4_t __p0) {
  43234. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  43235. float16x4_t __ret;
  43236. __ret = (float16x4_t) __builtin_neon_vrsqrte_v((int8x8_t)__rev0, 8);
  43237. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  43238. return __ret;
  43239. }
  43240. #endif
  43241. #ifdef __LITTLE_ENDIAN__
  43242. __ai float16x8_t vrsqrtsq_f16(float16x8_t __p0, float16x8_t __p1) {
  43243. float16x8_t __ret;
  43244. __ret = (float16x8_t) __builtin_neon_vrsqrtsq_v((int8x16_t)__p0, (int8x16_t)__p1, 40);
  43245. return __ret;
  43246. }
  43247. #else
  43248. __ai float16x8_t vrsqrtsq_f16(float16x8_t __p0, float16x8_t __p1) {
  43249. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  43250. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  43251. float16x8_t __ret;
  43252. __ret = (float16x8_t) __builtin_neon_vrsqrtsq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 40);
  43253. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  43254. return __ret;
  43255. }
  43256. #endif
  43257. #ifdef __LITTLE_ENDIAN__
  43258. __ai float16x4_t vrsqrts_f16(float16x4_t __p0, float16x4_t __p1) {
  43259. float16x4_t __ret;
  43260. __ret = (float16x4_t) __builtin_neon_vrsqrts_v((int8x8_t)__p0, (int8x8_t)__p1, 8);
  43261. return __ret;
  43262. }
  43263. #else
  43264. __ai float16x4_t vrsqrts_f16(float16x4_t __p0, float16x4_t __p1) {
  43265. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  43266. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  43267. float16x4_t __ret;
  43268. __ret = (float16x4_t) __builtin_neon_vrsqrts_v((int8x8_t)__rev0, (int8x8_t)__rev1, 8);
  43269. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  43270. return __ret;
  43271. }
  43272. #endif
  43273. #ifdef __LITTLE_ENDIAN__
  43274. __ai float16x8_t vsubq_f16(float16x8_t __p0, float16x8_t __p1) {
  43275. float16x8_t __ret;
  43276. __ret = __p0 - __p1;
  43277. return __ret;
  43278. }
  43279. #else
  43280. __ai float16x8_t vsubq_f16(float16x8_t __p0, float16x8_t __p1) {
  43281. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  43282. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  43283. float16x8_t __ret;
  43284. __ret = __rev0 - __rev1;
  43285. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  43286. return __ret;
  43287. }
  43288. #endif
  43289. #ifdef __LITTLE_ENDIAN__
  43290. __ai float16x4_t vsub_f16(float16x4_t __p0, float16x4_t __p1) {
  43291. float16x4_t __ret;
  43292. __ret = __p0 - __p1;
  43293. return __ret;
  43294. }
  43295. #else
  43296. __ai float16x4_t vsub_f16(float16x4_t __p0, float16x4_t __p1) {
  43297. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  43298. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  43299. float16x4_t __ret;
  43300. __ret = __rev0 - __rev1;
  43301. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  43302. return __ret;
  43303. }
  43304. #endif
  43305. #ifdef __LITTLE_ENDIAN__
  43306. __ai float16x8x2_t vtrnq_f16(float16x8_t __p0, float16x8_t __p1) {
  43307. float16x8x2_t __ret;
  43308. __builtin_neon_vtrnq_v(&__ret, (int8x16_t)__p0, (int8x16_t)__p1, 40);
  43309. return __ret;
  43310. }
  43311. #else
  43312. __ai float16x8x2_t vtrnq_f16(float16x8_t __p0, float16x8_t __p1) {
  43313. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  43314. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  43315. float16x8x2_t __ret;
  43316. __builtin_neon_vtrnq_v(&__ret, (int8x16_t)__rev0, (int8x16_t)__rev1, 40);
  43317. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0);
  43318. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0);
  43319. return __ret;
  43320. }
  43321. #endif
  43322. #ifdef __LITTLE_ENDIAN__
  43323. __ai float16x4x2_t vtrn_f16(float16x4_t __p0, float16x4_t __p1) {
  43324. float16x4x2_t __ret;
  43325. __builtin_neon_vtrn_v(&__ret, (int8x8_t)__p0, (int8x8_t)__p1, 8);
  43326. return __ret;
  43327. }
  43328. #else
  43329. __ai float16x4x2_t vtrn_f16(float16x4_t __p0, float16x4_t __p1) {
  43330. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  43331. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  43332. float16x4x2_t __ret;
  43333. __builtin_neon_vtrn_v(&__ret, (int8x8_t)__rev0, (int8x8_t)__rev1, 8);
  43334. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0);
  43335. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0);
  43336. return __ret;
  43337. }
  43338. #endif
  43339. #ifdef __LITTLE_ENDIAN__
  43340. __ai float16x8x2_t vuzpq_f16(float16x8_t __p0, float16x8_t __p1) {
  43341. float16x8x2_t __ret;
  43342. __builtin_neon_vuzpq_v(&__ret, (int8x16_t)__p0, (int8x16_t)__p1, 40);
  43343. return __ret;
  43344. }
  43345. #else
  43346. __ai float16x8x2_t vuzpq_f16(float16x8_t __p0, float16x8_t __p1) {
  43347. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  43348. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  43349. float16x8x2_t __ret;
  43350. __builtin_neon_vuzpq_v(&__ret, (int8x16_t)__rev0, (int8x16_t)__rev1, 40);
  43351. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0);
  43352. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0);
  43353. return __ret;
  43354. }
  43355. #endif
  43356. #ifdef __LITTLE_ENDIAN__
  43357. __ai float16x4x2_t vuzp_f16(float16x4_t __p0, float16x4_t __p1) {
  43358. float16x4x2_t __ret;
  43359. __builtin_neon_vuzp_v(&__ret, (int8x8_t)__p0, (int8x8_t)__p1, 8);
  43360. return __ret;
  43361. }
  43362. #else
  43363. __ai float16x4x2_t vuzp_f16(float16x4_t __p0, float16x4_t __p1) {
  43364. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  43365. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  43366. float16x4x2_t __ret;
  43367. __builtin_neon_vuzp_v(&__ret, (int8x8_t)__rev0, (int8x8_t)__rev1, 8);
  43368. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0);
  43369. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0);
  43370. return __ret;
  43371. }
  43372. #endif
  43373. #ifdef __LITTLE_ENDIAN__
  43374. __ai float16x8x2_t vzipq_f16(float16x8_t __p0, float16x8_t __p1) {
  43375. float16x8x2_t __ret;
  43376. __builtin_neon_vzipq_v(&__ret, (int8x16_t)__p0, (int8x16_t)__p1, 40);
  43377. return __ret;
  43378. }
  43379. #else
  43380. __ai float16x8x2_t vzipq_f16(float16x8_t __p0, float16x8_t __p1) {
  43381. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  43382. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  43383. float16x8x2_t __ret;
  43384. __builtin_neon_vzipq_v(&__ret, (int8x16_t)__rev0, (int8x16_t)__rev1, 40);
  43385. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 7, 6, 5, 4, 3, 2, 1, 0);
  43386. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 7, 6, 5, 4, 3, 2, 1, 0);
  43387. return __ret;
  43388. }
  43389. #endif
  43390. #ifdef __LITTLE_ENDIAN__
  43391. __ai float16x4x2_t vzip_f16(float16x4_t __p0, float16x4_t __p1) {
  43392. float16x4x2_t __ret;
  43393. __builtin_neon_vzip_v(&__ret, (int8x8_t)__p0, (int8x8_t)__p1, 8);
  43394. return __ret;
  43395. }
  43396. #else
  43397. __ai float16x4x2_t vzip_f16(float16x4_t __p0, float16x4_t __p1) {
  43398. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  43399. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  43400. float16x4x2_t __ret;
  43401. __builtin_neon_vzip_v(&__ret, (int8x8_t)__rev0, (int8x8_t)__rev1, 8);
  43402. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 3, 2, 1, 0);
  43403. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 3, 2, 1, 0);
  43404. return __ret;
  43405. }
  43406. #endif
  43407. #endif
  43408. #if defined(__ARM_FEATURE_FP16_VECTOR_ARITHMETIC) && defined(__aarch64__)
  43409. #ifdef __LITTLE_ENDIAN__
  43410. __ai float16x8_t vdivq_f16(float16x8_t __p0, float16x8_t __p1) {
  43411. float16x8_t __ret;
  43412. __ret = __p0 / __p1;
  43413. return __ret;
  43414. }
  43415. #else
  43416. __ai float16x8_t vdivq_f16(float16x8_t __p0, float16x8_t __p1) {
  43417. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  43418. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  43419. float16x8_t __ret;
  43420. __ret = __rev0 / __rev1;
  43421. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  43422. return __ret;
  43423. }
  43424. #endif
  43425. #ifdef __LITTLE_ENDIAN__
  43426. __ai float16x4_t vdiv_f16(float16x4_t __p0, float16x4_t __p1) {
  43427. float16x4_t __ret;
  43428. __ret = __p0 / __p1;
  43429. return __ret;
  43430. }
  43431. #else
  43432. __ai float16x4_t vdiv_f16(float16x4_t __p0, float16x4_t __p1) {
  43433. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  43434. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  43435. float16x4_t __ret;
  43436. __ret = __rev0 / __rev1;
  43437. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  43438. return __ret;
  43439. }
  43440. #endif
  43441. #ifdef __LITTLE_ENDIAN__
  43442. #define vduph_lane_f16(__p0, __p1) __extension__ ({ \
  43443. float16x4_t __s0 = __p0; \
  43444. float16_t __ret; \
  43445. __ret = (float16_t) __builtin_neon_vduph_lane_f16((int8x8_t)__s0, __p1); \
  43446. __ret; \
  43447. })
  43448. #else
  43449. #define vduph_lane_f16(__p0, __p1) __extension__ ({ \
  43450. float16x4_t __s0 = __p0; \
  43451. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  43452. float16_t __ret; \
  43453. __ret = (float16_t) __builtin_neon_vduph_lane_f16((int8x8_t)__rev0, __p1); \
  43454. __ret; \
  43455. })
  43456. #endif
  43457. #ifdef __LITTLE_ENDIAN__
  43458. #define vduph_laneq_f16(__p0, __p1) __extension__ ({ \
  43459. float16x8_t __s0 = __p0; \
  43460. float16_t __ret; \
  43461. __ret = (float16_t) __builtin_neon_vduph_laneq_f16((int8x16_t)__s0, __p1); \
  43462. __ret; \
  43463. })
  43464. #else
  43465. #define vduph_laneq_f16(__p0, __p1) __extension__ ({ \
  43466. float16x8_t __s0 = __p0; \
  43467. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  43468. float16_t __ret; \
  43469. __ret = (float16_t) __builtin_neon_vduph_laneq_f16((int8x16_t)__rev0, __p1); \
  43470. __ret; \
  43471. })
  43472. #endif
  43473. #ifdef __LITTLE_ENDIAN__
  43474. #define vfmah_lane_f16(__p0, __p1, __p2, __p3) __extension__ ({ \
  43475. float16_t __s0 = __p0; \
  43476. float16_t __s1 = __p1; \
  43477. float16x4_t __s2 = __p2; \
  43478. float16_t __ret; \
  43479. __ret = (float16_t) __builtin_neon_vfmah_lane_f16(__s0, __s1, (int8x8_t)__s2, __p3); \
  43480. __ret; \
  43481. })
  43482. #else
  43483. #define vfmah_lane_f16(__p0, __p1, __p2, __p3) __extension__ ({ \
  43484. float16_t __s0 = __p0; \
  43485. float16_t __s1 = __p1; \
  43486. float16x4_t __s2 = __p2; \
  43487. float16x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  43488. float16_t __ret; \
  43489. __ret = (float16_t) __builtin_neon_vfmah_lane_f16(__s0, __s1, (int8x8_t)__rev2, __p3); \
  43490. __ret; \
  43491. })
  43492. #define __noswap_vfmah_lane_f16(__p0, __p1, __p2, __p3) __extension__ ({ \
  43493. float16_t __s0 = __p0; \
  43494. float16_t __s1 = __p1; \
  43495. float16x4_t __s2 = __p2; \
  43496. float16_t __ret; \
  43497. __ret = (float16_t) __builtin_neon_vfmah_lane_f16(__s0, __s1, (int8x8_t)__s2, __p3); \
  43498. __ret; \
  43499. })
  43500. #endif
  43501. #ifdef __LITTLE_ENDIAN__
  43502. #define vfmaq_lane_f16(__p0, __p1, __p2, __p3) __extension__ ({ \
  43503. float16x8_t __s0 = __p0; \
  43504. float16x8_t __s1 = __p1; \
  43505. float16x4_t __s2 = __p2; \
  43506. float16x8_t __ret; \
  43507. __ret = (float16x8_t) __builtin_neon_vfmaq_lane_v((int8x16_t)__s0, (int8x16_t)__s1, (int8x8_t)__s2, __p3, 40); \
  43508. __ret; \
  43509. })
  43510. #else
  43511. #define vfmaq_lane_f16(__p0, __p1, __p2, __p3) __extension__ ({ \
  43512. float16x8_t __s0 = __p0; \
  43513. float16x8_t __s1 = __p1; \
  43514. float16x4_t __s2 = __p2; \
  43515. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  43516. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  43517. float16x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  43518. float16x8_t __ret; \
  43519. __ret = (float16x8_t) __builtin_neon_vfmaq_lane_v((int8x16_t)__rev0, (int8x16_t)__rev1, (int8x8_t)__rev2, __p3, 40); \
  43520. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  43521. __ret; \
  43522. })
  43523. #define __noswap_vfmaq_lane_f16(__p0, __p1, __p2, __p3) __extension__ ({ \
  43524. float16x8_t __s0 = __p0; \
  43525. float16x8_t __s1 = __p1; \
  43526. float16x4_t __s2 = __p2; \
  43527. float16x8_t __ret; \
  43528. __ret = (float16x8_t) __builtin_neon_vfmaq_lane_v((int8x16_t)__s0, (int8x16_t)__s1, (int8x8_t)__s2, __p3, 40); \
  43529. __ret; \
  43530. })
  43531. #endif
  43532. #ifdef __LITTLE_ENDIAN__
  43533. #define vfma_lane_f16(__p0, __p1, __p2, __p3) __extension__ ({ \
  43534. float16x4_t __s0 = __p0; \
  43535. float16x4_t __s1 = __p1; \
  43536. float16x4_t __s2 = __p2; \
  43537. float16x4_t __ret; \
  43538. __ret = (float16x4_t) __builtin_neon_vfma_lane_v((int8x8_t)__s0, (int8x8_t)__s1, (int8x8_t)__s2, __p3, 8); \
  43539. __ret; \
  43540. })
  43541. #else
  43542. #define vfma_lane_f16(__p0, __p1, __p2, __p3) __extension__ ({ \
  43543. float16x4_t __s0 = __p0; \
  43544. float16x4_t __s1 = __p1; \
  43545. float16x4_t __s2 = __p2; \
  43546. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  43547. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  43548. float16x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  43549. float16x4_t __ret; \
  43550. __ret = (float16x4_t) __builtin_neon_vfma_lane_v((int8x8_t)__rev0, (int8x8_t)__rev1, (int8x8_t)__rev2, __p3, 8); \
  43551. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  43552. __ret; \
  43553. })
  43554. #define __noswap_vfma_lane_f16(__p0, __p1, __p2, __p3) __extension__ ({ \
  43555. float16x4_t __s0 = __p0; \
  43556. float16x4_t __s1 = __p1; \
  43557. float16x4_t __s2 = __p2; \
  43558. float16x4_t __ret; \
  43559. __ret = (float16x4_t) __builtin_neon_vfma_lane_v((int8x8_t)__s0, (int8x8_t)__s1, (int8x8_t)__s2, __p3, 8); \
  43560. __ret; \
  43561. })
  43562. #endif
  43563. #ifdef __LITTLE_ENDIAN__
  43564. #define vfmah_laneq_f16(__p0, __p1, __p2, __p3) __extension__ ({ \
  43565. float16_t __s0 = __p0; \
  43566. float16_t __s1 = __p1; \
  43567. float16x8_t __s2 = __p2; \
  43568. float16_t __ret; \
  43569. __ret = (float16_t) __builtin_neon_vfmah_laneq_f16(__s0, __s1, (int8x16_t)__s2, __p3); \
  43570. __ret; \
  43571. })
  43572. #else
  43573. #define vfmah_laneq_f16(__p0, __p1, __p2, __p3) __extension__ ({ \
  43574. float16_t __s0 = __p0; \
  43575. float16_t __s1 = __p1; \
  43576. float16x8_t __s2 = __p2; \
  43577. float16x8_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 7, 6, 5, 4, 3, 2, 1, 0); \
  43578. float16_t __ret; \
  43579. __ret = (float16_t) __builtin_neon_vfmah_laneq_f16(__s0, __s1, (int8x16_t)__rev2, __p3); \
  43580. __ret; \
  43581. })
  43582. #define __noswap_vfmah_laneq_f16(__p0, __p1, __p2, __p3) __extension__ ({ \
  43583. float16_t __s0 = __p0; \
  43584. float16_t __s1 = __p1; \
  43585. float16x8_t __s2 = __p2; \
  43586. float16_t __ret; \
  43587. __ret = (float16_t) __builtin_neon_vfmah_laneq_f16(__s0, __s1, (int8x16_t)__s2, __p3); \
  43588. __ret; \
  43589. })
  43590. #endif
  43591. #ifdef __LITTLE_ENDIAN__
  43592. #define vfmaq_laneq_f16(__p0, __p1, __p2, __p3) __extension__ ({ \
  43593. float16x8_t __s0 = __p0; \
  43594. float16x8_t __s1 = __p1; \
  43595. float16x8_t __s2 = __p2; \
  43596. float16x8_t __ret; \
  43597. __ret = (float16x8_t) __builtin_neon_vfmaq_laneq_v((int8x16_t)__s0, (int8x16_t)__s1, (int8x16_t)__s2, __p3, 40); \
  43598. __ret; \
  43599. })
  43600. #else
  43601. #define vfmaq_laneq_f16(__p0, __p1, __p2, __p3) __extension__ ({ \
  43602. float16x8_t __s0 = __p0; \
  43603. float16x8_t __s1 = __p1; \
  43604. float16x8_t __s2 = __p2; \
  43605. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  43606. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  43607. float16x8_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 7, 6, 5, 4, 3, 2, 1, 0); \
  43608. float16x8_t __ret; \
  43609. __ret = (float16x8_t) __builtin_neon_vfmaq_laneq_v((int8x16_t)__rev0, (int8x16_t)__rev1, (int8x16_t)__rev2, __p3, 40); \
  43610. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  43611. __ret; \
  43612. })
  43613. #define __noswap_vfmaq_laneq_f16(__p0, __p1, __p2, __p3) __extension__ ({ \
  43614. float16x8_t __s0 = __p0; \
  43615. float16x8_t __s1 = __p1; \
  43616. float16x8_t __s2 = __p2; \
  43617. float16x8_t __ret; \
  43618. __ret = (float16x8_t) __builtin_neon_vfmaq_laneq_v((int8x16_t)__s0, (int8x16_t)__s1, (int8x16_t)__s2, __p3, 40); \
  43619. __ret; \
  43620. })
  43621. #endif
  43622. #ifdef __LITTLE_ENDIAN__
  43623. #define vfma_laneq_f16(__p0, __p1, __p2, __p3) __extension__ ({ \
  43624. float16x4_t __s0 = __p0; \
  43625. float16x4_t __s1 = __p1; \
  43626. float16x8_t __s2 = __p2; \
  43627. float16x4_t __ret; \
  43628. __ret = (float16x4_t) __builtin_neon_vfma_laneq_v((int8x8_t)__s0, (int8x8_t)__s1, (int8x16_t)__s2, __p3, 8); \
  43629. __ret; \
  43630. })
  43631. #else
  43632. #define vfma_laneq_f16(__p0, __p1, __p2, __p3) __extension__ ({ \
  43633. float16x4_t __s0 = __p0; \
  43634. float16x4_t __s1 = __p1; \
  43635. float16x8_t __s2 = __p2; \
  43636. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  43637. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  43638. float16x8_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 7, 6, 5, 4, 3, 2, 1, 0); \
  43639. float16x4_t __ret; \
  43640. __ret = (float16x4_t) __builtin_neon_vfma_laneq_v((int8x8_t)__rev0, (int8x8_t)__rev1, (int8x16_t)__rev2, __p3, 8); \
  43641. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  43642. __ret; \
  43643. })
  43644. #define __noswap_vfma_laneq_f16(__p0, __p1, __p2, __p3) __extension__ ({ \
  43645. float16x4_t __s0 = __p0; \
  43646. float16x4_t __s1 = __p1; \
  43647. float16x8_t __s2 = __p2; \
  43648. float16x4_t __ret; \
  43649. __ret = (float16x4_t) __builtin_neon_vfma_laneq_v((int8x8_t)__s0, (int8x8_t)__s1, (int8x16_t)__s2, __p3, 8); \
  43650. __ret; \
  43651. })
  43652. #endif
  43653. #ifdef __LITTLE_ENDIAN__
  43654. #define vfmaq_n_f16(__p0, __p1, __p2) __extension__ ({ \
  43655. float16x8_t __s0 = __p0; \
  43656. float16x8_t __s1 = __p1; \
  43657. float16_t __s2 = __p2; \
  43658. float16x8_t __ret; \
  43659. __ret = vfmaq_f16(__s0, __s1, (float16x8_t) {__s2, __s2, __s2, __s2, __s2, __s2, __s2, __s2}); \
  43660. __ret; \
  43661. })
  43662. #else
  43663. #define vfmaq_n_f16(__p0, __p1, __p2) __extension__ ({ \
  43664. float16x8_t __s0 = __p0; \
  43665. float16x8_t __s1 = __p1; \
  43666. float16_t __s2 = __p2; \
  43667. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  43668. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  43669. float16x8_t __ret; \
  43670. __ret = __noswap_vfmaq_f16(__rev0, __rev1, (float16x8_t) {__s2, __s2, __s2, __s2, __s2, __s2, __s2, __s2}); \
  43671. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  43672. __ret; \
  43673. })
  43674. #endif
  43675. #ifdef __LITTLE_ENDIAN__
  43676. #define vfma_n_f16(__p0, __p1, __p2) __extension__ ({ \
  43677. float16x4_t __s0 = __p0; \
  43678. float16x4_t __s1 = __p1; \
  43679. float16_t __s2 = __p2; \
  43680. float16x4_t __ret; \
  43681. __ret = vfma_f16(__s0, __s1, (float16x4_t) {__s2, __s2, __s2, __s2}); \
  43682. __ret; \
  43683. })
  43684. #else
  43685. #define vfma_n_f16(__p0, __p1, __p2) __extension__ ({ \
  43686. float16x4_t __s0 = __p0; \
  43687. float16x4_t __s1 = __p1; \
  43688. float16_t __s2 = __p2; \
  43689. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  43690. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  43691. float16x4_t __ret; \
  43692. __ret = __noswap_vfma_f16(__rev0, __rev1, (float16x4_t) {__s2, __s2, __s2, __s2}); \
  43693. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  43694. __ret; \
  43695. })
  43696. #endif
  43697. #ifdef __LITTLE_ENDIAN__
  43698. #define vfmsh_lane_f16(__p0_0, __p1_0, __p2_0, __p3_0) __extension__ ({ \
  43699. float16_t __s0_0 = __p0_0; \
  43700. float16_t __s1_0 = __p1_0; \
  43701. float16x4_t __s2_0 = __p2_0; \
  43702. float16_t __ret_0; \
  43703. __ret_0 = vfmah_lane_f16(__s0_0, -__s1_0, __s2_0, __p3_0); \
  43704. __ret_0; \
  43705. })
  43706. #else
  43707. #define vfmsh_lane_f16(__p0_1, __p1_1, __p2_1, __p3_1) __extension__ ({ \
  43708. float16_t __s0_1 = __p0_1; \
  43709. float16_t __s1_1 = __p1_1; \
  43710. float16x4_t __s2_1 = __p2_1; \
  43711. float16x4_t __rev2_1; __rev2_1 = __builtin_shufflevector(__s2_1, __s2_1, 3, 2, 1, 0); \
  43712. float16_t __ret_1; \
  43713. __ret_1 = __noswap_vfmah_lane_f16(__s0_1, -__s1_1, __rev2_1, __p3_1); \
  43714. __ret_1; \
  43715. })
  43716. #endif
  43717. #ifdef __LITTLE_ENDIAN__
  43718. #define vfmsq_lane_f16(__p0_2, __p1_2, __p2_2, __p3_2) __extension__ ({ \
  43719. float16x8_t __s0_2 = __p0_2; \
  43720. float16x8_t __s1_2 = __p1_2; \
  43721. float16x4_t __s2_2 = __p2_2; \
  43722. float16x8_t __ret_2; \
  43723. __ret_2 = vfmaq_lane_f16(__s0_2, -__s1_2, __s2_2, __p3_2); \
  43724. __ret_2; \
  43725. })
  43726. #else
  43727. #define vfmsq_lane_f16(__p0_3, __p1_3, __p2_3, __p3_3) __extension__ ({ \
  43728. float16x8_t __s0_3 = __p0_3; \
  43729. float16x8_t __s1_3 = __p1_3; \
  43730. float16x4_t __s2_3 = __p2_3; \
  43731. float16x8_t __rev0_3; __rev0_3 = __builtin_shufflevector(__s0_3, __s0_3, 7, 6, 5, 4, 3, 2, 1, 0); \
  43732. float16x8_t __rev1_3; __rev1_3 = __builtin_shufflevector(__s1_3, __s1_3, 7, 6, 5, 4, 3, 2, 1, 0); \
  43733. float16x4_t __rev2_3; __rev2_3 = __builtin_shufflevector(__s2_3, __s2_3, 3, 2, 1, 0); \
  43734. float16x8_t __ret_3; \
  43735. __ret_3 = __noswap_vfmaq_lane_f16(__rev0_3, -__rev1_3, __rev2_3, __p3_3); \
  43736. __ret_3 = __builtin_shufflevector(__ret_3, __ret_3, 7, 6, 5, 4, 3, 2, 1, 0); \
  43737. __ret_3; \
  43738. })
  43739. #endif
  43740. #ifdef __LITTLE_ENDIAN__
  43741. #define vfms_lane_f16(__p0_4, __p1_4, __p2_4, __p3_4) __extension__ ({ \
  43742. float16x4_t __s0_4 = __p0_4; \
  43743. float16x4_t __s1_4 = __p1_4; \
  43744. float16x4_t __s2_4 = __p2_4; \
  43745. float16x4_t __ret_4; \
  43746. __ret_4 = vfma_lane_f16(__s0_4, -__s1_4, __s2_4, __p3_4); \
  43747. __ret_4; \
  43748. })
  43749. #else
  43750. #define vfms_lane_f16(__p0_5, __p1_5, __p2_5, __p3_5) __extension__ ({ \
  43751. float16x4_t __s0_5 = __p0_5; \
  43752. float16x4_t __s1_5 = __p1_5; \
  43753. float16x4_t __s2_5 = __p2_5; \
  43754. float16x4_t __rev0_5; __rev0_5 = __builtin_shufflevector(__s0_5, __s0_5, 3, 2, 1, 0); \
  43755. float16x4_t __rev1_5; __rev1_5 = __builtin_shufflevector(__s1_5, __s1_5, 3, 2, 1, 0); \
  43756. float16x4_t __rev2_5; __rev2_5 = __builtin_shufflevector(__s2_5, __s2_5, 3, 2, 1, 0); \
  43757. float16x4_t __ret_5; \
  43758. __ret_5 = __noswap_vfma_lane_f16(__rev0_5, -__rev1_5, __rev2_5, __p3_5); \
  43759. __ret_5 = __builtin_shufflevector(__ret_5, __ret_5, 3, 2, 1, 0); \
  43760. __ret_5; \
  43761. })
  43762. #endif
  43763. #ifdef __LITTLE_ENDIAN__
  43764. #define vfmsh_laneq_f16(__p0_6, __p1_6, __p2_6, __p3_6) __extension__ ({ \
  43765. float16_t __s0_6 = __p0_6; \
  43766. float16_t __s1_6 = __p1_6; \
  43767. float16x8_t __s2_6 = __p2_6; \
  43768. float16_t __ret_6; \
  43769. __ret_6 = vfmah_laneq_f16(__s0_6, -__s1_6, __s2_6, __p3_6); \
  43770. __ret_6; \
  43771. })
  43772. #else
  43773. #define vfmsh_laneq_f16(__p0_7, __p1_7, __p2_7, __p3_7) __extension__ ({ \
  43774. float16_t __s0_7 = __p0_7; \
  43775. float16_t __s1_7 = __p1_7; \
  43776. float16x8_t __s2_7 = __p2_7; \
  43777. float16x8_t __rev2_7; __rev2_7 = __builtin_shufflevector(__s2_7, __s2_7, 7, 6, 5, 4, 3, 2, 1, 0); \
  43778. float16_t __ret_7; \
  43779. __ret_7 = __noswap_vfmah_laneq_f16(__s0_7, -__s1_7, __rev2_7, __p3_7); \
  43780. __ret_7; \
  43781. })
  43782. #endif
  43783. #ifdef __LITTLE_ENDIAN__
  43784. #define vfmsq_laneq_f16(__p0_8, __p1_8, __p2_8, __p3_8) __extension__ ({ \
  43785. float16x8_t __s0_8 = __p0_8; \
  43786. float16x8_t __s1_8 = __p1_8; \
  43787. float16x8_t __s2_8 = __p2_8; \
  43788. float16x8_t __ret_8; \
  43789. __ret_8 = vfmaq_laneq_f16(__s0_8, -__s1_8, __s2_8, __p3_8); \
  43790. __ret_8; \
  43791. })
  43792. #else
  43793. #define vfmsq_laneq_f16(__p0_9, __p1_9, __p2_9, __p3_9) __extension__ ({ \
  43794. float16x8_t __s0_9 = __p0_9; \
  43795. float16x8_t __s1_9 = __p1_9; \
  43796. float16x8_t __s2_9 = __p2_9; \
  43797. float16x8_t __rev0_9; __rev0_9 = __builtin_shufflevector(__s0_9, __s0_9, 7, 6, 5, 4, 3, 2, 1, 0); \
  43798. float16x8_t __rev1_9; __rev1_9 = __builtin_shufflevector(__s1_9, __s1_9, 7, 6, 5, 4, 3, 2, 1, 0); \
  43799. float16x8_t __rev2_9; __rev2_9 = __builtin_shufflevector(__s2_9, __s2_9, 7, 6, 5, 4, 3, 2, 1, 0); \
  43800. float16x8_t __ret_9; \
  43801. __ret_9 = __noswap_vfmaq_laneq_f16(__rev0_9, -__rev1_9, __rev2_9, __p3_9); \
  43802. __ret_9 = __builtin_shufflevector(__ret_9, __ret_9, 7, 6, 5, 4, 3, 2, 1, 0); \
  43803. __ret_9; \
  43804. })
  43805. #endif
  43806. #ifdef __LITTLE_ENDIAN__
  43807. #define vfms_laneq_f16(__p0_10, __p1_10, __p2_10, __p3_10) __extension__ ({ \
  43808. float16x4_t __s0_10 = __p0_10; \
  43809. float16x4_t __s1_10 = __p1_10; \
  43810. float16x8_t __s2_10 = __p2_10; \
  43811. float16x4_t __ret_10; \
  43812. __ret_10 = vfma_laneq_f16(__s0_10, -__s1_10, __s2_10, __p3_10); \
  43813. __ret_10; \
  43814. })
  43815. #else
  43816. #define vfms_laneq_f16(__p0_11, __p1_11, __p2_11, __p3_11) __extension__ ({ \
  43817. float16x4_t __s0_11 = __p0_11; \
  43818. float16x4_t __s1_11 = __p1_11; \
  43819. float16x8_t __s2_11 = __p2_11; \
  43820. float16x4_t __rev0_11; __rev0_11 = __builtin_shufflevector(__s0_11, __s0_11, 3, 2, 1, 0); \
  43821. float16x4_t __rev1_11; __rev1_11 = __builtin_shufflevector(__s1_11, __s1_11, 3, 2, 1, 0); \
  43822. float16x8_t __rev2_11; __rev2_11 = __builtin_shufflevector(__s2_11, __s2_11, 7, 6, 5, 4, 3, 2, 1, 0); \
  43823. float16x4_t __ret_11; \
  43824. __ret_11 = __noswap_vfma_laneq_f16(__rev0_11, -__rev1_11, __rev2_11, __p3_11); \
  43825. __ret_11 = __builtin_shufflevector(__ret_11, __ret_11, 3, 2, 1, 0); \
  43826. __ret_11; \
  43827. })
  43828. #endif
  43829. #ifdef __LITTLE_ENDIAN__
  43830. #define vfmsq_n_f16(__p0, __p1, __p2) __extension__ ({ \
  43831. float16x8_t __s0 = __p0; \
  43832. float16x8_t __s1 = __p1; \
  43833. float16_t __s2 = __p2; \
  43834. float16x8_t __ret; \
  43835. __ret = vfmaq_f16(__s0, -__s1, (float16x8_t) {__s2, __s2, __s2, __s2, __s2, __s2, __s2, __s2}); \
  43836. __ret; \
  43837. })
  43838. #else
  43839. #define vfmsq_n_f16(__p0, __p1, __p2) __extension__ ({ \
  43840. float16x8_t __s0 = __p0; \
  43841. float16x8_t __s1 = __p1; \
  43842. float16_t __s2 = __p2; \
  43843. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  43844. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  43845. float16x8_t __ret; \
  43846. __ret = __noswap_vfmaq_f16(__rev0, -__rev1, (float16x8_t) {__s2, __s2, __s2, __s2, __s2, __s2, __s2, __s2}); \
  43847. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  43848. __ret; \
  43849. })
  43850. #endif
  43851. #ifdef __LITTLE_ENDIAN__
  43852. #define vfms_n_f16(__p0, __p1, __p2) __extension__ ({ \
  43853. float16x4_t __s0 = __p0; \
  43854. float16x4_t __s1 = __p1; \
  43855. float16_t __s2 = __p2; \
  43856. float16x4_t __ret; \
  43857. __ret = vfma_f16(__s0, -__s1, (float16x4_t) {__s2, __s2, __s2, __s2}); \
  43858. __ret; \
  43859. })
  43860. #else
  43861. #define vfms_n_f16(__p0, __p1, __p2) __extension__ ({ \
  43862. float16x4_t __s0 = __p0; \
  43863. float16x4_t __s1 = __p1; \
  43864. float16_t __s2 = __p2; \
  43865. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  43866. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  43867. float16x4_t __ret; \
  43868. __ret = __noswap_vfma_f16(__rev0, -__rev1, (float16x4_t) {__s2, __s2, __s2, __s2}); \
  43869. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  43870. __ret; \
  43871. })
  43872. #endif
  43873. #ifdef __LITTLE_ENDIAN__
  43874. #define vmaxnmvq_f16(__p0) __extension__ ({ \
  43875. float16x8_t __s0 = __p0; \
  43876. float16_t __ret; \
  43877. __ret = (float16_t) __builtin_neon_vmaxnmvq_f16((int8x16_t)__s0); \
  43878. __ret; \
  43879. })
  43880. #else
  43881. #define vmaxnmvq_f16(__p0) __extension__ ({ \
  43882. float16x8_t __s0 = __p0; \
  43883. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  43884. float16_t __ret; \
  43885. __ret = (float16_t) __builtin_neon_vmaxnmvq_f16((int8x16_t)__rev0); \
  43886. __ret; \
  43887. })
  43888. #endif
  43889. #ifdef __LITTLE_ENDIAN__
  43890. #define vmaxnmv_f16(__p0) __extension__ ({ \
  43891. float16x4_t __s0 = __p0; \
  43892. float16_t __ret; \
  43893. __ret = (float16_t) __builtin_neon_vmaxnmv_f16((int8x8_t)__s0); \
  43894. __ret; \
  43895. })
  43896. #else
  43897. #define vmaxnmv_f16(__p0) __extension__ ({ \
  43898. float16x4_t __s0 = __p0; \
  43899. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  43900. float16_t __ret; \
  43901. __ret = (float16_t) __builtin_neon_vmaxnmv_f16((int8x8_t)__rev0); \
  43902. __ret; \
  43903. })
  43904. #endif
  43905. #ifdef __LITTLE_ENDIAN__
  43906. #define vmaxvq_f16(__p0) __extension__ ({ \
  43907. float16x8_t __s0 = __p0; \
  43908. float16_t __ret; \
  43909. __ret = (float16_t) __builtin_neon_vmaxvq_f16((int8x16_t)__s0); \
  43910. __ret; \
  43911. })
  43912. #else
  43913. #define vmaxvq_f16(__p0) __extension__ ({ \
  43914. float16x8_t __s0 = __p0; \
  43915. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  43916. float16_t __ret; \
  43917. __ret = (float16_t) __builtin_neon_vmaxvq_f16((int8x16_t)__rev0); \
  43918. __ret; \
  43919. })
  43920. #endif
  43921. #ifdef __LITTLE_ENDIAN__
  43922. #define vmaxv_f16(__p0) __extension__ ({ \
  43923. float16x4_t __s0 = __p0; \
  43924. float16_t __ret; \
  43925. __ret = (float16_t) __builtin_neon_vmaxv_f16((int8x8_t)__s0); \
  43926. __ret; \
  43927. })
  43928. #else
  43929. #define vmaxv_f16(__p0) __extension__ ({ \
  43930. float16x4_t __s0 = __p0; \
  43931. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  43932. float16_t __ret; \
  43933. __ret = (float16_t) __builtin_neon_vmaxv_f16((int8x8_t)__rev0); \
  43934. __ret; \
  43935. })
  43936. #endif
  43937. #ifdef __LITTLE_ENDIAN__
  43938. #define vminnmvq_f16(__p0) __extension__ ({ \
  43939. float16x8_t __s0 = __p0; \
  43940. float16_t __ret; \
  43941. __ret = (float16_t) __builtin_neon_vminnmvq_f16((int8x16_t)__s0); \
  43942. __ret; \
  43943. })
  43944. #else
  43945. #define vminnmvq_f16(__p0) __extension__ ({ \
  43946. float16x8_t __s0 = __p0; \
  43947. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  43948. float16_t __ret; \
  43949. __ret = (float16_t) __builtin_neon_vminnmvq_f16((int8x16_t)__rev0); \
  43950. __ret; \
  43951. })
  43952. #endif
  43953. #ifdef __LITTLE_ENDIAN__
  43954. #define vminnmv_f16(__p0) __extension__ ({ \
  43955. float16x4_t __s0 = __p0; \
  43956. float16_t __ret; \
  43957. __ret = (float16_t) __builtin_neon_vminnmv_f16((int8x8_t)__s0); \
  43958. __ret; \
  43959. })
  43960. #else
  43961. #define vminnmv_f16(__p0) __extension__ ({ \
  43962. float16x4_t __s0 = __p0; \
  43963. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  43964. float16_t __ret; \
  43965. __ret = (float16_t) __builtin_neon_vminnmv_f16((int8x8_t)__rev0); \
  43966. __ret; \
  43967. })
  43968. #endif
  43969. #ifdef __LITTLE_ENDIAN__
  43970. #define vminvq_f16(__p0) __extension__ ({ \
  43971. float16x8_t __s0 = __p0; \
  43972. float16_t __ret; \
  43973. __ret = (float16_t) __builtin_neon_vminvq_f16((int8x16_t)__s0); \
  43974. __ret; \
  43975. })
  43976. #else
  43977. #define vminvq_f16(__p0) __extension__ ({ \
  43978. float16x8_t __s0 = __p0; \
  43979. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  43980. float16_t __ret; \
  43981. __ret = (float16_t) __builtin_neon_vminvq_f16((int8x16_t)__rev0); \
  43982. __ret; \
  43983. })
  43984. #endif
  43985. #ifdef __LITTLE_ENDIAN__
  43986. #define vminv_f16(__p0) __extension__ ({ \
  43987. float16x4_t __s0 = __p0; \
  43988. float16_t __ret; \
  43989. __ret = (float16_t) __builtin_neon_vminv_f16((int8x8_t)__s0); \
  43990. __ret; \
  43991. })
  43992. #else
  43993. #define vminv_f16(__p0) __extension__ ({ \
  43994. float16x4_t __s0 = __p0; \
  43995. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  43996. float16_t __ret; \
  43997. __ret = (float16_t) __builtin_neon_vminv_f16((int8x8_t)__rev0); \
  43998. __ret; \
  43999. })
  44000. #endif
  44001. #ifdef __LITTLE_ENDIAN__
  44002. #define vmulq_laneq_f16(__p0, __p1, __p2) __extension__ ({ \
  44003. float16x8_t __s0 = __p0; \
  44004. float16x8_t __s1 = __p1; \
  44005. float16x8_t __ret; \
  44006. __ret = __s0 * __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2, __p2, __p2, __p2, __p2); \
  44007. __ret; \
  44008. })
  44009. #else
  44010. #define vmulq_laneq_f16(__p0, __p1, __p2) __extension__ ({ \
  44011. float16x8_t __s0 = __p0; \
  44012. float16x8_t __s1 = __p1; \
  44013. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  44014. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  44015. float16x8_t __ret; \
  44016. __ret = __rev0 * __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2, __p2, __p2, __p2, __p2); \
  44017. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  44018. __ret; \
  44019. })
  44020. #endif
  44021. #ifdef __LITTLE_ENDIAN__
  44022. #define vmul_laneq_f16(__p0, __p1, __p2) __extension__ ({ \
  44023. float16x4_t __s0 = __p0; \
  44024. float16x8_t __s1 = __p1; \
  44025. float16x4_t __ret; \
  44026. __ret = __s0 * __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2); \
  44027. __ret; \
  44028. })
  44029. #else
  44030. #define vmul_laneq_f16(__p0, __p1, __p2) __extension__ ({ \
  44031. float16x4_t __s0 = __p0; \
  44032. float16x8_t __s1 = __p1; \
  44033. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  44034. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  44035. float16x4_t __ret; \
  44036. __ret = __rev0 * __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2); \
  44037. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  44038. __ret; \
  44039. })
  44040. #endif
  44041. #ifdef __LITTLE_ENDIAN__
  44042. __ai float16x8_t vmulxq_f16(float16x8_t __p0, float16x8_t __p1) {
  44043. float16x8_t __ret;
  44044. __ret = (float16x8_t) __builtin_neon_vmulxq_v((int8x16_t)__p0, (int8x16_t)__p1, 40);
  44045. return __ret;
  44046. }
  44047. #else
  44048. __ai float16x8_t vmulxq_f16(float16x8_t __p0, float16x8_t __p1) {
  44049. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  44050. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  44051. float16x8_t __ret;
  44052. __ret = (float16x8_t) __builtin_neon_vmulxq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 40);
  44053. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  44054. return __ret;
  44055. }
  44056. __ai float16x8_t __noswap_vmulxq_f16(float16x8_t __p0, float16x8_t __p1) {
  44057. float16x8_t __ret;
  44058. __ret = (float16x8_t) __builtin_neon_vmulxq_v((int8x16_t)__p0, (int8x16_t)__p1, 40);
  44059. return __ret;
  44060. }
  44061. #endif
  44062. #ifdef __LITTLE_ENDIAN__
  44063. __ai float16x4_t vmulx_f16(float16x4_t __p0, float16x4_t __p1) {
  44064. float16x4_t __ret;
  44065. __ret = (float16x4_t) __builtin_neon_vmulx_v((int8x8_t)__p0, (int8x8_t)__p1, 8);
  44066. return __ret;
  44067. }
  44068. #else
  44069. __ai float16x4_t vmulx_f16(float16x4_t __p0, float16x4_t __p1) {
  44070. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  44071. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  44072. float16x4_t __ret;
  44073. __ret = (float16x4_t) __builtin_neon_vmulx_v((int8x8_t)__rev0, (int8x8_t)__rev1, 8);
  44074. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  44075. return __ret;
  44076. }
  44077. __ai float16x4_t __noswap_vmulx_f16(float16x4_t __p0, float16x4_t __p1) {
  44078. float16x4_t __ret;
  44079. __ret = (float16x4_t) __builtin_neon_vmulx_v((int8x8_t)__p0, (int8x8_t)__p1, 8);
  44080. return __ret;
  44081. }
  44082. #endif
  44083. #ifdef __LITTLE_ENDIAN__
  44084. #define vmulxh_lane_f16(__p0, __p1, __p2) __extension__ ({ \
  44085. float16_t __s0 = __p0; \
  44086. float16x4_t __s1 = __p1; \
  44087. float16_t __ret; \
  44088. __ret = (float16_t) __builtin_neon_vmulxh_lane_f16(__s0, (int8x8_t)__s1, __p2); \
  44089. __ret; \
  44090. })
  44091. #else
  44092. #define vmulxh_lane_f16(__p0, __p1, __p2) __extension__ ({ \
  44093. float16_t __s0 = __p0; \
  44094. float16x4_t __s1 = __p1; \
  44095. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  44096. float16_t __ret; \
  44097. __ret = (float16_t) __builtin_neon_vmulxh_lane_f16(__s0, (int8x8_t)__rev1, __p2); \
  44098. __ret; \
  44099. })
  44100. #endif
  44101. #ifdef __LITTLE_ENDIAN__
  44102. #define vmulxq_lane_f16(__p0, __p1, __p2) __extension__ ({ \
  44103. float16x8_t __s0 = __p0; \
  44104. float16x4_t __s1 = __p1; \
  44105. float16x8_t __ret; \
  44106. __ret = vmulxq_f16(__s0, __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2, __p2, __p2, __p2, __p2)); \
  44107. __ret; \
  44108. })
  44109. #else
  44110. #define vmulxq_lane_f16(__p0, __p1, __p2) __extension__ ({ \
  44111. float16x8_t __s0 = __p0; \
  44112. float16x4_t __s1 = __p1; \
  44113. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  44114. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  44115. float16x8_t __ret; \
  44116. __ret = __noswap_vmulxq_f16(__rev0, __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2, __p2, __p2, __p2, __p2)); \
  44117. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  44118. __ret; \
  44119. })
  44120. #endif
  44121. #ifdef __LITTLE_ENDIAN__
  44122. #define vmulx_lane_f16(__p0, __p1, __p2) __extension__ ({ \
  44123. float16x4_t __s0 = __p0; \
  44124. float16x4_t __s1 = __p1; \
  44125. float16x4_t __ret; \
  44126. __ret = vmulx_f16(__s0, __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2)); \
  44127. __ret; \
  44128. })
  44129. #else
  44130. #define vmulx_lane_f16(__p0, __p1, __p2) __extension__ ({ \
  44131. float16x4_t __s0 = __p0; \
  44132. float16x4_t __s1 = __p1; \
  44133. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  44134. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  44135. float16x4_t __ret; \
  44136. __ret = __noswap_vmulx_f16(__rev0, __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2)); \
  44137. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  44138. __ret; \
  44139. })
  44140. #endif
  44141. #ifdef __LITTLE_ENDIAN__
  44142. #define vmulxh_laneq_f16(__p0, __p1, __p2) __extension__ ({ \
  44143. float16_t __s0 = __p0; \
  44144. float16x8_t __s1 = __p1; \
  44145. float16_t __ret; \
  44146. __ret = (float16_t) __builtin_neon_vmulxh_laneq_f16(__s0, (int8x16_t)__s1, __p2); \
  44147. __ret; \
  44148. })
  44149. #else
  44150. #define vmulxh_laneq_f16(__p0, __p1, __p2) __extension__ ({ \
  44151. float16_t __s0 = __p0; \
  44152. float16x8_t __s1 = __p1; \
  44153. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  44154. float16_t __ret; \
  44155. __ret = (float16_t) __builtin_neon_vmulxh_laneq_f16(__s0, (int8x16_t)__rev1, __p2); \
  44156. __ret; \
  44157. })
  44158. #endif
  44159. #ifdef __LITTLE_ENDIAN__
  44160. #define vmulxq_laneq_f16(__p0, __p1, __p2) __extension__ ({ \
  44161. float16x8_t __s0 = __p0; \
  44162. float16x8_t __s1 = __p1; \
  44163. float16x8_t __ret; \
  44164. __ret = vmulxq_f16(__s0, __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2, __p2, __p2, __p2, __p2)); \
  44165. __ret; \
  44166. })
  44167. #else
  44168. #define vmulxq_laneq_f16(__p0, __p1, __p2) __extension__ ({ \
  44169. float16x8_t __s0 = __p0; \
  44170. float16x8_t __s1 = __p1; \
  44171. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  44172. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  44173. float16x8_t __ret; \
  44174. __ret = __noswap_vmulxq_f16(__rev0, __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2, __p2, __p2, __p2, __p2)); \
  44175. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  44176. __ret; \
  44177. })
  44178. #endif
  44179. #ifdef __LITTLE_ENDIAN__
  44180. #define vmulx_laneq_f16(__p0, __p1, __p2) __extension__ ({ \
  44181. float16x4_t __s0 = __p0; \
  44182. float16x8_t __s1 = __p1; \
  44183. float16x4_t __ret; \
  44184. __ret = vmulx_f16(__s0, __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2)); \
  44185. __ret; \
  44186. })
  44187. #else
  44188. #define vmulx_laneq_f16(__p0, __p1, __p2) __extension__ ({ \
  44189. float16x4_t __s0 = __p0; \
  44190. float16x8_t __s1 = __p1; \
  44191. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  44192. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  44193. float16x4_t __ret; \
  44194. __ret = __noswap_vmulx_f16(__rev0, __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2)); \
  44195. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  44196. __ret; \
  44197. })
  44198. #endif
  44199. #ifdef __LITTLE_ENDIAN__
  44200. #define vmulxq_n_f16(__p0, __p1) __extension__ ({ \
  44201. float16x8_t __s0 = __p0; \
  44202. float16_t __s1 = __p1; \
  44203. float16x8_t __ret; \
  44204. __ret = vmulxq_f16(__s0, (float16x8_t) {__s1, __s1, __s1, __s1, __s1, __s1, __s1, __s1}); \
  44205. __ret; \
  44206. })
  44207. #else
  44208. #define vmulxq_n_f16(__p0, __p1) __extension__ ({ \
  44209. float16x8_t __s0 = __p0; \
  44210. float16_t __s1 = __p1; \
  44211. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  44212. float16x8_t __ret; \
  44213. __ret = __noswap_vmulxq_f16(__rev0, (float16x8_t) {__s1, __s1, __s1, __s1, __s1, __s1, __s1, __s1}); \
  44214. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  44215. __ret; \
  44216. })
  44217. #endif
  44218. #ifdef __LITTLE_ENDIAN__
  44219. #define vmulx_n_f16(__p0, __p1) __extension__ ({ \
  44220. float16x4_t __s0 = __p0; \
  44221. float16_t __s1 = __p1; \
  44222. float16x4_t __ret; \
  44223. __ret = vmulx_f16(__s0, (float16x4_t) {__s1, __s1, __s1, __s1}); \
  44224. __ret; \
  44225. })
  44226. #else
  44227. #define vmulx_n_f16(__p0, __p1) __extension__ ({ \
  44228. float16x4_t __s0 = __p0; \
  44229. float16_t __s1 = __p1; \
  44230. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  44231. float16x4_t __ret; \
  44232. __ret = __noswap_vmulx_f16(__rev0, (float16x4_t) {__s1, __s1, __s1, __s1}); \
  44233. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  44234. __ret; \
  44235. })
  44236. #endif
  44237. #ifdef __LITTLE_ENDIAN__
  44238. __ai float16x8_t vpaddq_f16(float16x8_t __p0, float16x8_t __p1) {
  44239. float16x8_t __ret;
  44240. __ret = (float16x8_t) __builtin_neon_vpaddq_v((int8x16_t)__p0, (int8x16_t)__p1, 40);
  44241. return __ret;
  44242. }
  44243. #else
  44244. __ai float16x8_t vpaddq_f16(float16x8_t __p0, float16x8_t __p1) {
  44245. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  44246. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  44247. float16x8_t __ret;
  44248. __ret = (float16x8_t) __builtin_neon_vpaddq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 40);
  44249. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  44250. return __ret;
  44251. }
  44252. #endif
  44253. #ifdef __LITTLE_ENDIAN__
  44254. __ai float16x8_t vpmaxq_f16(float16x8_t __p0, float16x8_t __p1) {
  44255. float16x8_t __ret;
  44256. __ret = (float16x8_t) __builtin_neon_vpmaxq_v((int8x16_t)__p0, (int8x16_t)__p1, 40);
  44257. return __ret;
  44258. }
  44259. #else
  44260. __ai float16x8_t vpmaxq_f16(float16x8_t __p0, float16x8_t __p1) {
  44261. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  44262. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  44263. float16x8_t __ret;
  44264. __ret = (float16x8_t) __builtin_neon_vpmaxq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 40);
  44265. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  44266. return __ret;
  44267. }
  44268. #endif
  44269. #ifdef __LITTLE_ENDIAN__
  44270. __ai float16x8_t vpmaxnmq_f16(float16x8_t __p0, float16x8_t __p1) {
  44271. float16x8_t __ret;
  44272. __ret = (float16x8_t) __builtin_neon_vpmaxnmq_v((int8x16_t)__p0, (int8x16_t)__p1, 40);
  44273. return __ret;
  44274. }
  44275. #else
  44276. __ai float16x8_t vpmaxnmq_f16(float16x8_t __p0, float16x8_t __p1) {
  44277. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  44278. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  44279. float16x8_t __ret;
  44280. __ret = (float16x8_t) __builtin_neon_vpmaxnmq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 40);
  44281. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  44282. return __ret;
  44283. }
  44284. #endif
  44285. #ifdef __LITTLE_ENDIAN__
  44286. __ai float16x4_t vpmaxnm_f16(float16x4_t __p0, float16x4_t __p1) {
  44287. float16x4_t __ret;
  44288. __ret = (float16x4_t) __builtin_neon_vpmaxnm_v((int8x8_t)__p0, (int8x8_t)__p1, 8);
  44289. return __ret;
  44290. }
  44291. #else
  44292. __ai float16x4_t vpmaxnm_f16(float16x4_t __p0, float16x4_t __p1) {
  44293. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  44294. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  44295. float16x4_t __ret;
  44296. __ret = (float16x4_t) __builtin_neon_vpmaxnm_v((int8x8_t)__rev0, (int8x8_t)__rev1, 8);
  44297. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  44298. return __ret;
  44299. }
  44300. #endif
  44301. #ifdef __LITTLE_ENDIAN__
  44302. __ai float16x8_t vpminq_f16(float16x8_t __p0, float16x8_t __p1) {
  44303. float16x8_t __ret;
  44304. __ret = (float16x8_t) __builtin_neon_vpminq_v((int8x16_t)__p0, (int8x16_t)__p1, 40);
  44305. return __ret;
  44306. }
  44307. #else
  44308. __ai float16x8_t vpminq_f16(float16x8_t __p0, float16x8_t __p1) {
  44309. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  44310. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  44311. float16x8_t __ret;
  44312. __ret = (float16x8_t) __builtin_neon_vpminq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 40);
  44313. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  44314. return __ret;
  44315. }
  44316. #endif
  44317. #ifdef __LITTLE_ENDIAN__
  44318. __ai float16x8_t vpminnmq_f16(float16x8_t __p0, float16x8_t __p1) {
  44319. float16x8_t __ret;
  44320. __ret = (float16x8_t) __builtin_neon_vpminnmq_v((int8x16_t)__p0, (int8x16_t)__p1, 40);
  44321. return __ret;
  44322. }
  44323. #else
  44324. __ai float16x8_t vpminnmq_f16(float16x8_t __p0, float16x8_t __p1) {
  44325. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  44326. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  44327. float16x8_t __ret;
  44328. __ret = (float16x8_t) __builtin_neon_vpminnmq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 40);
  44329. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  44330. return __ret;
  44331. }
  44332. #endif
  44333. #ifdef __LITTLE_ENDIAN__
  44334. __ai float16x4_t vpminnm_f16(float16x4_t __p0, float16x4_t __p1) {
  44335. float16x4_t __ret;
  44336. __ret = (float16x4_t) __builtin_neon_vpminnm_v((int8x8_t)__p0, (int8x8_t)__p1, 8);
  44337. return __ret;
  44338. }
  44339. #else
  44340. __ai float16x4_t vpminnm_f16(float16x4_t __p0, float16x4_t __p1) {
  44341. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  44342. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  44343. float16x4_t __ret;
  44344. __ret = (float16x4_t) __builtin_neon_vpminnm_v((int8x8_t)__rev0, (int8x8_t)__rev1, 8);
  44345. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  44346. return __ret;
  44347. }
  44348. #endif
  44349. #ifdef __LITTLE_ENDIAN__
  44350. __ai float16x8_t vrndiq_f16(float16x8_t __p0) {
  44351. float16x8_t __ret;
  44352. __ret = (float16x8_t) __builtin_neon_vrndiq_v((int8x16_t)__p0, 40);
  44353. return __ret;
  44354. }
  44355. #else
  44356. __ai float16x8_t vrndiq_f16(float16x8_t __p0) {
  44357. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  44358. float16x8_t __ret;
  44359. __ret = (float16x8_t) __builtin_neon_vrndiq_v((int8x16_t)__rev0, 40);
  44360. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  44361. return __ret;
  44362. }
  44363. #endif
  44364. #ifdef __LITTLE_ENDIAN__
  44365. __ai float16x4_t vrndi_f16(float16x4_t __p0) {
  44366. float16x4_t __ret;
  44367. __ret = (float16x4_t) __builtin_neon_vrndi_v((int8x8_t)__p0, 8);
  44368. return __ret;
  44369. }
  44370. #else
  44371. __ai float16x4_t vrndi_f16(float16x4_t __p0) {
  44372. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  44373. float16x4_t __ret;
  44374. __ret = (float16x4_t) __builtin_neon_vrndi_v((int8x8_t)__rev0, 8);
  44375. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  44376. return __ret;
  44377. }
  44378. #endif
  44379. #ifdef __LITTLE_ENDIAN__
  44380. __ai float16x8_t vsqrtq_f16(float16x8_t __p0) {
  44381. float16x8_t __ret;
  44382. __ret = (float16x8_t) __builtin_neon_vsqrtq_v((int8x16_t)__p0, 40);
  44383. return __ret;
  44384. }
  44385. #else
  44386. __ai float16x8_t vsqrtq_f16(float16x8_t __p0) {
  44387. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  44388. float16x8_t __ret;
  44389. __ret = (float16x8_t) __builtin_neon_vsqrtq_v((int8x16_t)__rev0, 40);
  44390. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  44391. return __ret;
  44392. }
  44393. #endif
  44394. #ifdef __LITTLE_ENDIAN__
  44395. __ai float16x4_t vsqrt_f16(float16x4_t __p0) {
  44396. float16x4_t __ret;
  44397. __ret = (float16x4_t) __builtin_neon_vsqrt_v((int8x8_t)__p0, 8);
  44398. return __ret;
  44399. }
  44400. #else
  44401. __ai float16x4_t vsqrt_f16(float16x4_t __p0) {
  44402. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  44403. float16x4_t __ret;
  44404. __ret = (float16x4_t) __builtin_neon_vsqrt_v((int8x8_t)__rev0, 8);
  44405. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  44406. return __ret;
  44407. }
  44408. #endif
  44409. #ifdef __LITTLE_ENDIAN__
  44410. __ai float16x8_t vtrn1q_f16(float16x8_t __p0, float16x8_t __p1) {
  44411. float16x8_t __ret;
  44412. __ret = __builtin_shufflevector(__p0, __p1, 0, 8, 2, 10, 4, 12, 6, 14);
  44413. return __ret;
  44414. }
  44415. #else
  44416. __ai float16x8_t vtrn1q_f16(float16x8_t __p0, float16x8_t __p1) {
  44417. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  44418. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  44419. float16x8_t __ret;
  44420. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 8, 2, 10, 4, 12, 6, 14);
  44421. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  44422. return __ret;
  44423. }
  44424. #endif
  44425. #ifdef __LITTLE_ENDIAN__
  44426. __ai float16x4_t vtrn1_f16(float16x4_t __p0, float16x4_t __p1) {
  44427. float16x4_t __ret;
  44428. __ret = __builtin_shufflevector(__p0, __p1, 0, 4, 2, 6);
  44429. return __ret;
  44430. }
  44431. #else
  44432. __ai float16x4_t vtrn1_f16(float16x4_t __p0, float16x4_t __p1) {
  44433. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  44434. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  44435. float16x4_t __ret;
  44436. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 4, 2, 6);
  44437. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  44438. return __ret;
  44439. }
  44440. #endif
  44441. #ifdef __LITTLE_ENDIAN__
  44442. __ai float16x8_t vtrn2q_f16(float16x8_t __p0, float16x8_t __p1) {
  44443. float16x8_t __ret;
  44444. __ret = __builtin_shufflevector(__p0, __p1, 1, 9, 3, 11, 5, 13, 7, 15);
  44445. return __ret;
  44446. }
  44447. #else
  44448. __ai float16x8_t vtrn2q_f16(float16x8_t __p0, float16x8_t __p1) {
  44449. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  44450. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  44451. float16x8_t __ret;
  44452. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 9, 3, 11, 5, 13, 7, 15);
  44453. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  44454. return __ret;
  44455. }
  44456. #endif
  44457. #ifdef __LITTLE_ENDIAN__
  44458. __ai float16x4_t vtrn2_f16(float16x4_t __p0, float16x4_t __p1) {
  44459. float16x4_t __ret;
  44460. __ret = __builtin_shufflevector(__p0, __p1, 1, 5, 3, 7);
  44461. return __ret;
  44462. }
  44463. #else
  44464. __ai float16x4_t vtrn2_f16(float16x4_t __p0, float16x4_t __p1) {
  44465. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  44466. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  44467. float16x4_t __ret;
  44468. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 5, 3, 7);
  44469. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  44470. return __ret;
  44471. }
  44472. #endif
  44473. #ifdef __LITTLE_ENDIAN__
  44474. __ai float16x8_t vuzp1q_f16(float16x8_t __p0, float16x8_t __p1) {
  44475. float16x8_t __ret;
  44476. __ret = __builtin_shufflevector(__p0, __p1, 0, 2, 4, 6, 8, 10, 12, 14);
  44477. return __ret;
  44478. }
  44479. #else
  44480. __ai float16x8_t vuzp1q_f16(float16x8_t __p0, float16x8_t __p1) {
  44481. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  44482. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  44483. float16x8_t __ret;
  44484. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 2, 4, 6, 8, 10, 12, 14);
  44485. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  44486. return __ret;
  44487. }
  44488. #endif
  44489. #ifdef __LITTLE_ENDIAN__
  44490. __ai float16x4_t vuzp1_f16(float16x4_t __p0, float16x4_t __p1) {
  44491. float16x4_t __ret;
  44492. __ret = __builtin_shufflevector(__p0, __p1, 0, 2, 4, 6);
  44493. return __ret;
  44494. }
  44495. #else
  44496. __ai float16x4_t vuzp1_f16(float16x4_t __p0, float16x4_t __p1) {
  44497. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  44498. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  44499. float16x4_t __ret;
  44500. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 2, 4, 6);
  44501. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  44502. return __ret;
  44503. }
  44504. #endif
  44505. #ifdef __LITTLE_ENDIAN__
  44506. __ai float16x8_t vuzp2q_f16(float16x8_t __p0, float16x8_t __p1) {
  44507. float16x8_t __ret;
  44508. __ret = __builtin_shufflevector(__p0, __p1, 1, 3, 5, 7, 9, 11, 13, 15);
  44509. return __ret;
  44510. }
  44511. #else
  44512. __ai float16x8_t vuzp2q_f16(float16x8_t __p0, float16x8_t __p1) {
  44513. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  44514. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  44515. float16x8_t __ret;
  44516. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 3, 5, 7, 9, 11, 13, 15);
  44517. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  44518. return __ret;
  44519. }
  44520. #endif
  44521. #ifdef __LITTLE_ENDIAN__
  44522. __ai float16x4_t vuzp2_f16(float16x4_t __p0, float16x4_t __p1) {
  44523. float16x4_t __ret;
  44524. __ret = __builtin_shufflevector(__p0, __p1, 1, 3, 5, 7);
  44525. return __ret;
  44526. }
  44527. #else
  44528. __ai float16x4_t vuzp2_f16(float16x4_t __p0, float16x4_t __p1) {
  44529. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  44530. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  44531. float16x4_t __ret;
  44532. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 3, 5, 7);
  44533. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  44534. return __ret;
  44535. }
  44536. #endif
  44537. #ifdef __LITTLE_ENDIAN__
  44538. __ai float16x8_t vzip1q_f16(float16x8_t __p0, float16x8_t __p1) {
  44539. float16x8_t __ret;
  44540. __ret = __builtin_shufflevector(__p0, __p1, 0, 8, 1, 9, 2, 10, 3, 11);
  44541. return __ret;
  44542. }
  44543. #else
  44544. __ai float16x8_t vzip1q_f16(float16x8_t __p0, float16x8_t __p1) {
  44545. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  44546. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  44547. float16x8_t __ret;
  44548. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 8, 1, 9, 2, 10, 3, 11);
  44549. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  44550. return __ret;
  44551. }
  44552. #endif
  44553. #ifdef __LITTLE_ENDIAN__
  44554. __ai float16x4_t vzip1_f16(float16x4_t __p0, float16x4_t __p1) {
  44555. float16x4_t __ret;
  44556. __ret = __builtin_shufflevector(__p0, __p1, 0, 4, 1, 5);
  44557. return __ret;
  44558. }
  44559. #else
  44560. __ai float16x4_t vzip1_f16(float16x4_t __p0, float16x4_t __p1) {
  44561. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  44562. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  44563. float16x4_t __ret;
  44564. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 4, 1, 5);
  44565. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  44566. return __ret;
  44567. }
  44568. #endif
  44569. #ifdef __LITTLE_ENDIAN__
  44570. __ai float16x8_t vzip2q_f16(float16x8_t __p0, float16x8_t __p1) {
  44571. float16x8_t __ret;
  44572. __ret = __builtin_shufflevector(__p0, __p1, 4, 12, 5, 13, 6, 14, 7, 15);
  44573. return __ret;
  44574. }
  44575. #else
  44576. __ai float16x8_t vzip2q_f16(float16x8_t __p0, float16x8_t __p1) {
  44577. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  44578. float16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  44579. float16x8_t __ret;
  44580. __ret = __builtin_shufflevector(__rev0, __rev1, 4, 12, 5, 13, 6, 14, 7, 15);
  44581. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  44582. return __ret;
  44583. }
  44584. #endif
  44585. #ifdef __LITTLE_ENDIAN__
  44586. __ai float16x4_t vzip2_f16(float16x4_t __p0, float16x4_t __p1) {
  44587. float16x4_t __ret;
  44588. __ret = __builtin_shufflevector(__p0, __p1, 2, 6, 3, 7);
  44589. return __ret;
  44590. }
  44591. #else
  44592. __ai float16x4_t vzip2_f16(float16x4_t __p0, float16x4_t __p1) {
  44593. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  44594. float16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  44595. float16x4_t __ret;
  44596. __ret = __builtin_shufflevector(__rev0, __rev1, 2, 6, 3, 7);
  44597. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  44598. return __ret;
  44599. }
  44600. #endif
  44601. #endif
  44602. #if defined(__ARM_FEATURE_QRDMX)
  44603. #ifdef __LITTLE_ENDIAN__
  44604. __ai int32x4_t vqrdmlahq_s32(int32x4_t __p0, int32x4_t __p1, int32x4_t __p2) {
  44605. int32x4_t __ret;
  44606. __ret = vqaddq_s32(__p0, vqrdmulhq_s32(__p1, __p2));
  44607. return __ret;
  44608. }
  44609. #else
  44610. __ai int32x4_t vqrdmlahq_s32(int32x4_t __p0, int32x4_t __p1, int32x4_t __p2) {
  44611. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  44612. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  44613. int32x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  44614. int32x4_t __ret;
  44615. __ret = __noswap_vqaddq_s32(__rev0, __noswap_vqrdmulhq_s32(__rev1, __rev2));
  44616. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  44617. return __ret;
  44618. }
  44619. #endif
  44620. #ifdef __LITTLE_ENDIAN__
  44621. __ai int16x8_t vqrdmlahq_s16(int16x8_t __p0, int16x8_t __p1, int16x8_t __p2) {
  44622. int16x8_t __ret;
  44623. __ret = vqaddq_s16(__p0, vqrdmulhq_s16(__p1, __p2));
  44624. return __ret;
  44625. }
  44626. #else
  44627. __ai int16x8_t vqrdmlahq_s16(int16x8_t __p0, int16x8_t __p1, int16x8_t __p2) {
  44628. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  44629. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  44630. int16x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  44631. int16x8_t __ret;
  44632. __ret = __noswap_vqaddq_s16(__rev0, __noswap_vqrdmulhq_s16(__rev1, __rev2));
  44633. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  44634. return __ret;
  44635. }
  44636. #endif
  44637. #ifdef __LITTLE_ENDIAN__
  44638. __ai int32x2_t vqrdmlah_s32(int32x2_t __p0, int32x2_t __p1, int32x2_t __p2) {
  44639. int32x2_t __ret;
  44640. __ret = vqadd_s32(__p0, vqrdmulh_s32(__p1, __p2));
  44641. return __ret;
  44642. }
  44643. #else
  44644. __ai int32x2_t vqrdmlah_s32(int32x2_t __p0, int32x2_t __p1, int32x2_t __p2) {
  44645. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  44646. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  44647. int32x2_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 1, 0);
  44648. int32x2_t __ret;
  44649. __ret = __noswap_vqadd_s32(__rev0, __noswap_vqrdmulh_s32(__rev1, __rev2));
  44650. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  44651. return __ret;
  44652. }
  44653. #endif
  44654. #ifdef __LITTLE_ENDIAN__
  44655. __ai int16x4_t vqrdmlah_s16(int16x4_t __p0, int16x4_t __p1, int16x4_t __p2) {
  44656. int16x4_t __ret;
  44657. __ret = vqadd_s16(__p0, vqrdmulh_s16(__p1, __p2));
  44658. return __ret;
  44659. }
  44660. #else
  44661. __ai int16x4_t vqrdmlah_s16(int16x4_t __p0, int16x4_t __p1, int16x4_t __p2) {
  44662. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  44663. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  44664. int16x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  44665. int16x4_t __ret;
  44666. __ret = __noswap_vqadd_s16(__rev0, __noswap_vqrdmulh_s16(__rev1, __rev2));
  44667. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  44668. return __ret;
  44669. }
  44670. #endif
  44671. #ifdef __LITTLE_ENDIAN__
  44672. #define vqrdmlahq_lane_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  44673. int32x4_t __s0 = __p0; \
  44674. int32x4_t __s1 = __p1; \
  44675. int32x2_t __s2 = __p2; \
  44676. int32x4_t __ret; \
  44677. __ret = vqaddq_s32(__s0, vqrdmulhq_s32(__s1, __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3))); \
  44678. __ret; \
  44679. })
  44680. #else
  44681. #define vqrdmlahq_lane_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  44682. int32x4_t __s0 = __p0; \
  44683. int32x4_t __s1 = __p1; \
  44684. int32x2_t __s2 = __p2; \
  44685. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  44686. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  44687. int32x2_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 1, 0); \
  44688. int32x4_t __ret; \
  44689. __ret = __noswap_vqaddq_s32(__rev0, __noswap_vqrdmulhq_s32(__rev1, __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3))); \
  44690. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  44691. __ret; \
  44692. })
  44693. #endif
  44694. #ifdef __LITTLE_ENDIAN__
  44695. #define vqrdmlahq_lane_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  44696. int16x8_t __s0 = __p0; \
  44697. int16x8_t __s1 = __p1; \
  44698. int16x4_t __s2 = __p2; \
  44699. int16x8_t __ret; \
  44700. __ret = vqaddq_s16(__s0, vqrdmulhq_s16(__s1, __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3, __p3, __p3, __p3, __p3))); \
  44701. __ret; \
  44702. })
  44703. #else
  44704. #define vqrdmlahq_lane_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  44705. int16x8_t __s0 = __p0; \
  44706. int16x8_t __s1 = __p1; \
  44707. int16x4_t __s2 = __p2; \
  44708. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  44709. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  44710. int16x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  44711. int16x8_t __ret; \
  44712. __ret = __noswap_vqaddq_s16(__rev0, __noswap_vqrdmulhq_s16(__rev1, __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3, __p3, __p3, __p3, __p3))); \
  44713. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  44714. __ret; \
  44715. })
  44716. #endif
  44717. #ifdef __LITTLE_ENDIAN__
  44718. #define vqrdmlah_lane_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  44719. int32x2_t __s0 = __p0; \
  44720. int32x2_t __s1 = __p1; \
  44721. int32x2_t __s2 = __p2; \
  44722. int32x2_t __ret; \
  44723. __ret = vqadd_s32(__s0, vqrdmulh_s32(__s1, __builtin_shufflevector(__s2, __s2, __p3, __p3))); \
  44724. __ret; \
  44725. })
  44726. #else
  44727. #define vqrdmlah_lane_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  44728. int32x2_t __s0 = __p0; \
  44729. int32x2_t __s1 = __p1; \
  44730. int32x2_t __s2 = __p2; \
  44731. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  44732. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  44733. int32x2_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 1, 0); \
  44734. int32x2_t __ret; \
  44735. __ret = __noswap_vqadd_s32(__rev0, __noswap_vqrdmulh_s32(__rev1, __builtin_shufflevector(__rev2, __rev2, __p3, __p3))); \
  44736. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  44737. __ret; \
  44738. })
  44739. #endif
  44740. #ifdef __LITTLE_ENDIAN__
  44741. #define vqrdmlah_lane_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  44742. int16x4_t __s0 = __p0; \
  44743. int16x4_t __s1 = __p1; \
  44744. int16x4_t __s2 = __p2; \
  44745. int16x4_t __ret; \
  44746. __ret = vqadd_s16(__s0, vqrdmulh_s16(__s1, __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3))); \
  44747. __ret; \
  44748. })
  44749. #else
  44750. #define vqrdmlah_lane_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  44751. int16x4_t __s0 = __p0; \
  44752. int16x4_t __s1 = __p1; \
  44753. int16x4_t __s2 = __p2; \
  44754. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  44755. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  44756. int16x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  44757. int16x4_t __ret; \
  44758. __ret = __noswap_vqadd_s16(__rev0, __noswap_vqrdmulh_s16(__rev1, __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3))); \
  44759. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  44760. __ret; \
  44761. })
  44762. #endif
  44763. #ifdef __LITTLE_ENDIAN__
  44764. __ai int32x4_t vqrdmlshq_s32(int32x4_t __p0, int32x4_t __p1, int32x4_t __p2) {
  44765. int32x4_t __ret;
  44766. __ret = vqsubq_s32(__p0, vqrdmulhq_s32(__p1, __p2));
  44767. return __ret;
  44768. }
  44769. #else
  44770. __ai int32x4_t vqrdmlshq_s32(int32x4_t __p0, int32x4_t __p1, int32x4_t __p2) {
  44771. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  44772. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  44773. int32x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  44774. int32x4_t __ret;
  44775. __ret = __noswap_vqsubq_s32(__rev0, __noswap_vqrdmulhq_s32(__rev1, __rev2));
  44776. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  44777. return __ret;
  44778. }
  44779. #endif
  44780. #ifdef __LITTLE_ENDIAN__
  44781. __ai int16x8_t vqrdmlshq_s16(int16x8_t __p0, int16x8_t __p1, int16x8_t __p2) {
  44782. int16x8_t __ret;
  44783. __ret = vqsubq_s16(__p0, vqrdmulhq_s16(__p1, __p2));
  44784. return __ret;
  44785. }
  44786. #else
  44787. __ai int16x8_t vqrdmlshq_s16(int16x8_t __p0, int16x8_t __p1, int16x8_t __p2) {
  44788. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  44789. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  44790. int16x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  44791. int16x8_t __ret;
  44792. __ret = __noswap_vqsubq_s16(__rev0, __noswap_vqrdmulhq_s16(__rev1, __rev2));
  44793. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  44794. return __ret;
  44795. }
  44796. #endif
  44797. #ifdef __LITTLE_ENDIAN__
  44798. __ai int32x2_t vqrdmlsh_s32(int32x2_t __p0, int32x2_t __p1, int32x2_t __p2) {
  44799. int32x2_t __ret;
  44800. __ret = vqsub_s32(__p0, vqrdmulh_s32(__p1, __p2));
  44801. return __ret;
  44802. }
  44803. #else
  44804. __ai int32x2_t vqrdmlsh_s32(int32x2_t __p0, int32x2_t __p1, int32x2_t __p2) {
  44805. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  44806. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  44807. int32x2_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 1, 0);
  44808. int32x2_t __ret;
  44809. __ret = __noswap_vqsub_s32(__rev0, __noswap_vqrdmulh_s32(__rev1, __rev2));
  44810. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  44811. return __ret;
  44812. }
  44813. #endif
  44814. #ifdef __LITTLE_ENDIAN__
  44815. __ai int16x4_t vqrdmlsh_s16(int16x4_t __p0, int16x4_t __p1, int16x4_t __p2) {
  44816. int16x4_t __ret;
  44817. __ret = vqsub_s16(__p0, vqrdmulh_s16(__p1, __p2));
  44818. return __ret;
  44819. }
  44820. #else
  44821. __ai int16x4_t vqrdmlsh_s16(int16x4_t __p0, int16x4_t __p1, int16x4_t __p2) {
  44822. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  44823. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  44824. int16x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  44825. int16x4_t __ret;
  44826. __ret = __noswap_vqsub_s16(__rev0, __noswap_vqrdmulh_s16(__rev1, __rev2));
  44827. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  44828. return __ret;
  44829. }
  44830. #endif
  44831. #ifdef __LITTLE_ENDIAN__
  44832. #define vqrdmlshq_lane_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  44833. int32x4_t __s0 = __p0; \
  44834. int32x4_t __s1 = __p1; \
  44835. int32x2_t __s2 = __p2; \
  44836. int32x4_t __ret; \
  44837. __ret = vqsubq_s32(__s0, vqrdmulhq_s32(__s1, __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3))); \
  44838. __ret; \
  44839. })
  44840. #else
  44841. #define vqrdmlshq_lane_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  44842. int32x4_t __s0 = __p0; \
  44843. int32x4_t __s1 = __p1; \
  44844. int32x2_t __s2 = __p2; \
  44845. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  44846. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  44847. int32x2_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 1, 0); \
  44848. int32x4_t __ret; \
  44849. __ret = __noswap_vqsubq_s32(__rev0, __noswap_vqrdmulhq_s32(__rev1, __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3))); \
  44850. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  44851. __ret; \
  44852. })
  44853. #endif
  44854. #ifdef __LITTLE_ENDIAN__
  44855. #define vqrdmlshq_lane_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  44856. int16x8_t __s0 = __p0; \
  44857. int16x8_t __s1 = __p1; \
  44858. int16x4_t __s2 = __p2; \
  44859. int16x8_t __ret; \
  44860. __ret = vqsubq_s16(__s0, vqrdmulhq_s16(__s1, __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3, __p3, __p3, __p3, __p3))); \
  44861. __ret; \
  44862. })
  44863. #else
  44864. #define vqrdmlshq_lane_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  44865. int16x8_t __s0 = __p0; \
  44866. int16x8_t __s1 = __p1; \
  44867. int16x4_t __s2 = __p2; \
  44868. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  44869. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  44870. int16x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  44871. int16x8_t __ret; \
  44872. __ret = __noswap_vqsubq_s16(__rev0, __noswap_vqrdmulhq_s16(__rev1, __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3, __p3, __p3, __p3, __p3))); \
  44873. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  44874. __ret; \
  44875. })
  44876. #endif
  44877. #ifdef __LITTLE_ENDIAN__
  44878. #define vqrdmlsh_lane_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  44879. int32x2_t __s0 = __p0; \
  44880. int32x2_t __s1 = __p1; \
  44881. int32x2_t __s2 = __p2; \
  44882. int32x2_t __ret; \
  44883. __ret = vqsub_s32(__s0, vqrdmulh_s32(__s1, __builtin_shufflevector(__s2, __s2, __p3, __p3))); \
  44884. __ret; \
  44885. })
  44886. #else
  44887. #define vqrdmlsh_lane_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  44888. int32x2_t __s0 = __p0; \
  44889. int32x2_t __s1 = __p1; \
  44890. int32x2_t __s2 = __p2; \
  44891. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  44892. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  44893. int32x2_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 1, 0); \
  44894. int32x2_t __ret; \
  44895. __ret = __noswap_vqsub_s32(__rev0, __noswap_vqrdmulh_s32(__rev1, __builtin_shufflevector(__rev2, __rev2, __p3, __p3))); \
  44896. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  44897. __ret; \
  44898. })
  44899. #endif
  44900. #ifdef __LITTLE_ENDIAN__
  44901. #define vqrdmlsh_lane_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  44902. int16x4_t __s0 = __p0; \
  44903. int16x4_t __s1 = __p1; \
  44904. int16x4_t __s2 = __p2; \
  44905. int16x4_t __ret; \
  44906. __ret = vqsub_s16(__s0, vqrdmulh_s16(__s1, __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3))); \
  44907. __ret; \
  44908. })
  44909. #else
  44910. #define vqrdmlsh_lane_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  44911. int16x4_t __s0 = __p0; \
  44912. int16x4_t __s1 = __p1; \
  44913. int16x4_t __s2 = __p2; \
  44914. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  44915. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  44916. int16x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  44917. int16x4_t __ret; \
  44918. __ret = __noswap_vqsub_s16(__rev0, __noswap_vqrdmulh_s16(__rev1, __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3))); \
  44919. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  44920. __ret; \
  44921. })
  44922. #endif
  44923. #endif
  44924. #if defined(__ARM_FEATURE_QRDMX) && defined(__aarch64__)
  44925. #ifdef __LITTLE_ENDIAN__
  44926. #define vqrdmlahq_laneq_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  44927. int32x4_t __s0 = __p0; \
  44928. int32x4_t __s1 = __p1; \
  44929. int32x4_t __s2 = __p2; \
  44930. int32x4_t __ret; \
  44931. __ret = vqaddq_s32(__s0, vqrdmulhq_s32(__s1, __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3))); \
  44932. __ret; \
  44933. })
  44934. #else
  44935. #define vqrdmlahq_laneq_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  44936. int32x4_t __s0 = __p0; \
  44937. int32x4_t __s1 = __p1; \
  44938. int32x4_t __s2 = __p2; \
  44939. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  44940. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  44941. int32x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  44942. int32x4_t __ret; \
  44943. __ret = __noswap_vqaddq_s32(__rev0, __noswap_vqrdmulhq_s32(__rev1, __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3))); \
  44944. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  44945. __ret; \
  44946. })
  44947. #endif
  44948. #ifdef __LITTLE_ENDIAN__
  44949. #define vqrdmlahq_laneq_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  44950. int16x8_t __s0 = __p0; \
  44951. int16x8_t __s1 = __p1; \
  44952. int16x8_t __s2 = __p2; \
  44953. int16x8_t __ret; \
  44954. __ret = vqaddq_s16(__s0, vqrdmulhq_s16(__s1, __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3, __p3, __p3, __p3, __p3))); \
  44955. __ret; \
  44956. })
  44957. #else
  44958. #define vqrdmlahq_laneq_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  44959. int16x8_t __s0 = __p0; \
  44960. int16x8_t __s1 = __p1; \
  44961. int16x8_t __s2 = __p2; \
  44962. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  44963. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  44964. int16x8_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 7, 6, 5, 4, 3, 2, 1, 0); \
  44965. int16x8_t __ret; \
  44966. __ret = __noswap_vqaddq_s16(__rev0, __noswap_vqrdmulhq_s16(__rev1, __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3, __p3, __p3, __p3, __p3))); \
  44967. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  44968. __ret; \
  44969. })
  44970. #endif
  44971. #ifdef __LITTLE_ENDIAN__
  44972. #define vqrdmlah_laneq_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  44973. int32x2_t __s0 = __p0; \
  44974. int32x2_t __s1 = __p1; \
  44975. int32x4_t __s2 = __p2; \
  44976. int32x2_t __ret; \
  44977. __ret = vqadd_s32(__s0, vqrdmulh_s32(__s1, __builtin_shufflevector(__s2, __s2, __p3, __p3))); \
  44978. __ret; \
  44979. })
  44980. #else
  44981. #define vqrdmlah_laneq_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  44982. int32x2_t __s0 = __p0; \
  44983. int32x2_t __s1 = __p1; \
  44984. int32x4_t __s2 = __p2; \
  44985. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  44986. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  44987. int32x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  44988. int32x2_t __ret; \
  44989. __ret = __noswap_vqadd_s32(__rev0, __noswap_vqrdmulh_s32(__rev1, __builtin_shufflevector(__rev2, __rev2, __p3, __p3))); \
  44990. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  44991. __ret; \
  44992. })
  44993. #endif
  44994. #ifdef __LITTLE_ENDIAN__
  44995. #define vqrdmlah_laneq_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  44996. int16x4_t __s0 = __p0; \
  44997. int16x4_t __s1 = __p1; \
  44998. int16x8_t __s2 = __p2; \
  44999. int16x4_t __ret; \
  45000. __ret = vqadd_s16(__s0, vqrdmulh_s16(__s1, __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3))); \
  45001. __ret; \
  45002. })
  45003. #else
  45004. #define vqrdmlah_laneq_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  45005. int16x4_t __s0 = __p0; \
  45006. int16x4_t __s1 = __p1; \
  45007. int16x8_t __s2 = __p2; \
  45008. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  45009. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  45010. int16x8_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 7, 6, 5, 4, 3, 2, 1, 0); \
  45011. int16x4_t __ret; \
  45012. __ret = __noswap_vqadd_s16(__rev0, __noswap_vqrdmulh_s16(__rev1, __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3))); \
  45013. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  45014. __ret; \
  45015. })
  45016. #endif
  45017. #ifdef __LITTLE_ENDIAN__
  45018. #define vqrdmlshq_laneq_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  45019. int32x4_t __s0 = __p0; \
  45020. int32x4_t __s1 = __p1; \
  45021. int32x4_t __s2 = __p2; \
  45022. int32x4_t __ret; \
  45023. __ret = vqsubq_s32(__s0, vqrdmulhq_s32(__s1, __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3))); \
  45024. __ret; \
  45025. })
  45026. #else
  45027. #define vqrdmlshq_laneq_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  45028. int32x4_t __s0 = __p0; \
  45029. int32x4_t __s1 = __p1; \
  45030. int32x4_t __s2 = __p2; \
  45031. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  45032. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  45033. int32x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  45034. int32x4_t __ret; \
  45035. __ret = __noswap_vqsubq_s32(__rev0, __noswap_vqrdmulhq_s32(__rev1, __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3))); \
  45036. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  45037. __ret; \
  45038. })
  45039. #endif
  45040. #ifdef __LITTLE_ENDIAN__
  45041. #define vqrdmlshq_laneq_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  45042. int16x8_t __s0 = __p0; \
  45043. int16x8_t __s1 = __p1; \
  45044. int16x8_t __s2 = __p2; \
  45045. int16x8_t __ret; \
  45046. __ret = vqsubq_s16(__s0, vqrdmulhq_s16(__s1, __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3, __p3, __p3, __p3, __p3))); \
  45047. __ret; \
  45048. })
  45049. #else
  45050. #define vqrdmlshq_laneq_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  45051. int16x8_t __s0 = __p0; \
  45052. int16x8_t __s1 = __p1; \
  45053. int16x8_t __s2 = __p2; \
  45054. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  45055. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  45056. int16x8_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 7, 6, 5, 4, 3, 2, 1, 0); \
  45057. int16x8_t __ret; \
  45058. __ret = __noswap_vqsubq_s16(__rev0, __noswap_vqrdmulhq_s16(__rev1, __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3, __p3, __p3, __p3, __p3))); \
  45059. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  45060. __ret; \
  45061. })
  45062. #endif
  45063. #ifdef __LITTLE_ENDIAN__
  45064. #define vqrdmlsh_laneq_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  45065. int32x2_t __s0 = __p0; \
  45066. int32x2_t __s1 = __p1; \
  45067. int32x4_t __s2 = __p2; \
  45068. int32x2_t __ret; \
  45069. __ret = vqsub_s32(__s0, vqrdmulh_s32(__s1, __builtin_shufflevector(__s2, __s2, __p3, __p3))); \
  45070. __ret; \
  45071. })
  45072. #else
  45073. #define vqrdmlsh_laneq_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  45074. int32x2_t __s0 = __p0; \
  45075. int32x2_t __s1 = __p1; \
  45076. int32x4_t __s2 = __p2; \
  45077. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  45078. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  45079. int32x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  45080. int32x2_t __ret; \
  45081. __ret = __noswap_vqsub_s32(__rev0, __noswap_vqrdmulh_s32(__rev1, __builtin_shufflevector(__rev2, __rev2, __p3, __p3))); \
  45082. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  45083. __ret; \
  45084. })
  45085. #endif
  45086. #ifdef __LITTLE_ENDIAN__
  45087. #define vqrdmlsh_laneq_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  45088. int16x4_t __s0 = __p0; \
  45089. int16x4_t __s1 = __p1; \
  45090. int16x8_t __s2 = __p2; \
  45091. int16x4_t __ret; \
  45092. __ret = vqsub_s16(__s0, vqrdmulh_s16(__s1, __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3))); \
  45093. __ret; \
  45094. })
  45095. #else
  45096. #define vqrdmlsh_laneq_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  45097. int16x4_t __s0 = __p0; \
  45098. int16x4_t __s1 = __p1; \
  45099. int16x8_t __s2 = __p2; \
  45100. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  45101. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  45102. int16x8_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 7, 6, 5, 4, 3, 2, 1, 0); \
  45103. int16x4_t __ret; \
  45104. __ret = __noswap_vqsub_s16(__rev0, __noswap_vqrdmulh_s16(__rev1, __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3))); \
  45105. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  45106. __ret; \
  45107. })
  45108. #endif
  45109. #endif
  45110. #if defined(__aarch64__)
  45111. #ifdef __LITTLE_ENDIAN__
  45112. __ai float64x2_t vabdq_f64(float64x2_t __p0, float64x2_t __p1) {
  45113. float64x2_t __ret;
  45114. __ret = (float64x2_t) __builtin_neon_vabdq_v((int8x16_t)__p0, (int8x16_t)__p1, 42);
  45115. return __ret;
  45116. }
  45117. #else
  45118. __ai float64x2_t vabdq_f64(float64x2_t __p0, float64x2_t __p1) {
  45119. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  45120. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  45121. float64x2_t __ret;
  45122. __ret = (float64x2_t) __builtin_neon_vabdq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 42);
  45123. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  45124. return __ret;
  45125. }
  45126. #endif
  45127. #ifdef __LITTLE_ENDIAN__
  45128. __ai float64x1_t vabd_f64(float64x1_t __p0, float64x1_t __p1) {
  45129. float64x1_t __ret;
  45130. __ret = (float64x1_t) __builtin_neon_vabd_v((int8x8_t)__p0, (int8x8_t)__p1, 10);
  45131. return __ret;
  45132. }
  45133. #else
  45134. __ai float64x1_t vabd_f64(float64x1_t __p0, float64x1_t __p1) {
  45135. float64x1_t __ret;
  45136. __ret = (float64x1_t) __builtin_neon_vabd_v((int8x8_t)__p0, (int8x8_t)__p1, 10);
  45137. return __ret;
  45138. }
  45139. #endif
  45140. #ifdef __LITTLE_ENDIAN__
  45141. __ai float64_t vabdd_f64(float64_t __p0, float64_t __p1) {
  45142. float64_t __ret;
  45143. __ret = (float64_t) __builtin_neon_vabdd_f64(__p0, __p1);
  45144. return __ret;
  45145. }
  45146. #else
  45147. __ai float64_t vabdd_f64(float64_t __p0, float64_t __p1) {
  45148. float64_t __ret;
  45149. __ret = (float64_t) __builtin_neon_vabdd_f64(__p0, __p1);
  45150. return __ret;
  45151. }
  45152. #endif
  45153. #ifdef __LITTLE_ENDIAN__
  45154. __ai float32_t vabds_f32(float32_t __p0, float32_t __p1) {
  45155. float32_t __ret;
  45156. __ret = (float32_t) __builtin_neon_vabds_f32(__p0, __p1);
  45157. return __ret;
  45158. }
  45159. #else
  45160. __ai float32_t vabds_f32(float32_t __p0, float32_t __p1) {
  45161. float32_t __ret;
  45162. __ret = (float32_t) __builtin_neon_vabds_f32(__p0, __p1);
  45163. return __ret;
  45164. }
  45165. #endif
  45166. #ifdef __LITTLE_ENDIAN__
  45167. __ai float64x2_t vabsq_f64(float64x2_t __p0) {
  45168. float64x2_t __ret;
  45169. __ret = (float64x2_t) __builtin_neon_vabsq_v((int8x16_t)__p0, 42);
  45170. return __ret;
  45171. }
  45172. #else
  45173. __ai float64x2_t vabsq_f64(float64x2_t __p0) {
  45174. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  45175. float64x2_t __ret;
  45176. __ret = (float64x2_t) __builtin_neon_vabsq_v((int8x16_t)__rev0, 42);
  45177. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  45178. return __ret;
  45179. }
  45180. #endif
  45181. #ifdef __LITTLE_ENDIAN__
  45182. __ai int64x2_t vabsq_s64(int64x2_t __p0) {
  45183. int64x2_t __ret;
  45184. __ret = (int64x2_t) __builtin_neon_vabsq_v((int8x16_t)__p0, 35);
  45185. return __ret;
  45186. }
  45187. #else
  45188. __ai int64x2_t vabsq_s64(int64x2_t __p0) {
  45189. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  45190. int64x2_t __ret;
  45191. __ret = (int64x2_t) __builtin_neon_vabsq_v((int8x16_t)__rev0, 35);
  45192. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  45193. return __ret;
  45194. }
  45195. #endif
  45196. #ifdef __LITTLE_ENDIAN__
  45197. __ai float64x1_t vabs_f64(float64x1_t __p0) {
  45198. float64x1_t __ret;
  45199. __ret = (float64x1_t) __builtin_neon_vabs_v((int8x8_t)__p0, 10);
  45200. return __ret;
  45201. }
  45202. #else
  45203. __ai float64x1_t vabs_f64(float64x1_t __p0) {
  45204. float64x1_t __ret;
  45205. __ret = (float64x1_t) __builtin_neon_vabs_v((int8x8_t)__p0, 10);
  45206. return __ret;
  45207. }
  45208. #endif
  45209. #ifdef __LITTLE_ENDIAN__
  45210. __ai int64x1_t vabs_s64(int64x1_t __p0) {
  45211. int64x1_t __ret;
  45212. __ret = (int64x1_t) __builtin_neon_vabs_v((int8x8_t)__p0, 3);
  45213. return __ret;
  45214. }
  45215. #else
  45216. __ai int64x1_t vabs_s64(int64x1_t __p0) {
  45217. int64x1_t __ret;
  45218. __ret = (int64x1_t) __builtin_neon_vabs_v((int8x8_t)__p0, 3);
  45219. return __ret;
  45220. }
  45221. #endif
  45222. #ifdef __LITTLE_ENDIAN__
  45223. __ai int64_t vabsd_s64(int64_t __p0) {
  45224. int64_t __ret;
  45225. __ret = (int64_t) __builtin_neon_vabsd_s64(__p0);
  45226. return __ret;
  45227. }
  45228. #else
  45229. __ai int64_t vabsd_s64(int64_t __p0) {
  45230. int64_t __ret;
  45231. __ret = (int64_t) __builtin_neon_vabsd_s64(__p0);
  45232. return __ret;
  45233. }
  45234. #endif
  45235. #ifdef __LITTLE_ENDIAN__
  45236. __ai float64x2_t vaddq_f64(float64x2_t __p0, float64x2_t __p1) {
  45237. float64x2_t __ret;
  45238. __ret = __p0 + __p1;
  45239. return __ret;
  45240. }
  45241. #else
  45242. __ai float64x2_t vaddq_f64(float64x2_t __p0, float64x2_t __p1) {
  45243. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  45244. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  45245. float64x2_t __ret;
  45246. __ret = __rev0 + __rev1;
  45247. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  45248. return __ret;
  45249. }
  45250. #endif
  45251. #ifdef __LITTLE_ENDIAN__
  45252. __ai float64x1_t vadd_f64(float64x1_t __p0, float64x1_t __p1) {
  45253. float64x1_t __ret;
  45254. __ret = __p0 + __p1;
  45255. return __ret;
  45256. }
  45257. #else
  45258. __ai float64x1_t vadd_f64(float64x1_t __p0, float64x1_t __p1) {
  45259. float64x1_t __ret;
  45260. __ret = __p0 + __p1;
  45261. return __ret;
  45262. }
  45263. #endif
  45264. #ifdef __LITTLE_ENDIAN__
  45265. __ai uint64_t vaddd_u64(uint64_t __p0, uint64_t __p1) {
  45266. uint64_t __ret;
  45267. __ret = (uint64_t) __builtin_neon_vaddd_u64(__p0, __p1);
  45268. return __ret;
  45269. }
  45270. #else
  45271. __ai uint64_t vaddd_u64(uint64_t __p0, uint64_t __p1) {
  45272. uint64_t __ret;
  45273. __ret = (uint64_t) __builtin_neon_vaddd_u64(__p0, __p1);
  45274. return __ret;
  45275. }
  45276. #endif
  45277. #ifdef __LITTLE_ENDIAN__
  45278. __ai int64_t vaddd_s64(int64_t __p0, int64_t __p1) {
  45279. int64_t __ret;
  45280. __ret = (int64_t) __builtin_neon_vaddd_s64(__p0, __p1);
  45281. return __ret;
  45282. }
  45283. #else
  45284. __ai int64_t vaddd_s64(int64_t __p0, int64_t __p1) {
  45285. int64_t __ret;
  45286. __ret = (int64_t) __builtin_neon_vaddd_s64(__p0, __p1);
  45287. return __ret;
  45288. }
  45289. #endif
  45290. #ifdef __LITTLE_ENDIAN__
  45291. __ai uint16x8_t vaddhn_high_u32(uint16x4_t __p0, uint32x4_t __p1, uint32x4_t __p2) {
  45292. uint16x8_t __ret;
  45293. __ret = vcombine_u16(__p0, vaddhn_u32(__p1, __p2));
  45294. return __ret;
  45295. }
  45296. #else
  45297. __ai uint16x8_t vaddhn_high_u32(uint16x4_t __p0, uint32x4_t __p1, uint32x4_t __p2) {
  45298. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  45299. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  45300. uint32x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  45301. uint16x8_t __ret;
  45302. __ret = __noswap_vcombine_u16(__rev0, __noswap_vaddhn_u32(__rev1, __rev2));
  45303. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  45304. return __ret;
  45305. }
  45306. #endif
  45307. #ifdef __LITTLE_ENDIAN__
  45308. __ai uint32x4_t vaddhn_high_u64(uint32x2_t __p0, uint64x2_t __p1, uint64x2_t __p2) {
  45309. uint32x4_t __ret;
  45310. __ret = vcombine_u32(__p0, vaddhn_u64(__p1, __p2));
  45311. return __ret;
  45312. }
  45313. #else
  45314. __ai uint32x4_t vaddhn_high_u64(uint32x2_t __p0, uint64x2_t __p1, uint64x2_t __p2) {
  45315. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  45316. uint64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  45317. uint64x2_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 1, 0);
  45318. uint32x4_t __ret;
  45319. __ret = __noswap_vcombine_u32(__rev0, __noswap_vaddhn_u64(__rev1, __rev2));
  45320. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  45321. return __ret;
  45322. }
  45323. #endif
  45324. #ifdef __LITTLE_ENDIAN__
  45325. __ai uint8x16_t vaddhn_high_u16(uint8x8_t __p0, uint16x8_t __p1, uint16x8_t __p2) {
  45326. uint8x16_t __ret;
  45327. __ret = vcombine_u8(__p0, vaddhn_u16(__p1, __p2));
  45328. return __ret;
  45329. }
  45330. #else
  45331. __ai uint8x16_t vaddhn_high_u16(uint8x8_t __p0, uint16x8_t __p1, uint16x8_t __p2) {
  45332. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  45333. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  45334. uint16x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  45335. uint8x16_t __ret;
  45336. __ret = __noswap_vcombine_u8(__rev0, __noswap_vaddhn_u16(__rev1, __rev2));
  45337. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  45338. return __ret;
  45339. }
  45340. #endif
  45341. #ifdef __LITTLE_ENDIAN__
  45342. __ai int16x8_t vaddhn_high_s32(int16x4_t __p0, int32x4_t __p1, int32x4_t __p2) {
  45343. int16x8_t __ret;
  45344. __ret = vcombine_s16(__p0, vaddhn_s32(__p1, __p2));
  45345. return __ret;
  45346. }
  45347. #else
  45348. __ai int16x8_t vaddhn_high_s32(int16x4_t __p0, int32x4_t __p1, int32x4_t __p2) {
  45349. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  45350. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  45351. int32x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  45352. int16x8_t __ret;
  45353. __ret = __noswap_vcombine_s16(__rev0, __noswap_vaddhn_s32(__rev1, __rev2));
  45354. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  45355. return __ret;
  45356. }
  45357. #endif
  45358. #ifdef __LITTLE_ENDIAN__
  45359. __ai int32x4_t vaddhn_high_s64(int32x2_t __p0, int64x2_t __p1, int64x2_t __p2) {
  45360. int32x4_t __ret;
  45361. __ret = vcombine_s32(__p0, vaddhn_s64(__p1, __p2));
  45362. return __ret;
  45363. }
  45364. #else
  45365. __ai int32x4_t vaddhn_high_s64(int32x2_t __p0, int64x2_t __p1, int64x2_t __p2) {
  45366. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  45367. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  45368. int64x2_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 1, 0);
  45369. int32x4_t __ret;
  45370. __ret = __noswap_vcombine_s32(__rev0, __noswap_vaddhn_s64(__rev1, __rev2));
  45371. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  45372. return __ret;
  45373. }
  45374. #endif
  45375. #ifdef __LITTLE_ENDIAN__
  45376. __ai int8x16_t vaddhn_high_s16(int8x8_t __p0, int16x8_t __p1, int16x8_t __p2) {
  45377. int8x16_t __ret;
  45378. __ret = vcombine_s8(__p0, vaddhn_s16(__p1, __p2));
  45379. return __ret;
  45380. }
  45381. #else
  45382. __ai int8x16_t vaddhn_high_s16(int8x8_t __p0, int16x8_t __p1, int16x8_t __p2) {
  45383. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  45384. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  45385. int16x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  45386. int8x16_t __ret;
  45387. __ret = __noswap_vcombine_s8(__rev0, __noswap_vaddhn_s16(__rev1, __rev2));
  45388. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  45389. return __ret;
  45390. }
  45391. #endif
  45392. #ifdef __LITTLE_ENDIAN__
  45393. __ai uint16_t vaddlvq_u8(uint8x16_t __p0) {
  45394. uint16_t __ret;
  45395. __ret = (uint16_t) __builtin_neon_vaddlvq_u8((int8x16_t)__p0);
  45396. return __ret;
  45397. }
  45398. #else
  45399. __ai uint16_t vaddlvq_u8(uint8x16_t __p0) {
  45400. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  45401. uint16_t __ret;
  45402. __ret = (uint16_t) __builtin_neon_vaddlvq_u8((int8x16_t)__rev0);
  45403. return __ret;
  45404. }
  45405. #endif
  45406. #ifdef __LITTLE_ENDIAN__
  45407. __ai uint64_t vaddlvq_u32(uint32x4_t __p0) {
  45408. uint64_t __ret;
  45409. __ret = (uint64_t) __builtin_neon_vaddlvq_u32((int8x16_t)__p0);
  45410. return __ret;
  45411. }
  45412. #else
  45413. __ai uint64_t vaddlvq_u32(uint32x4_t __p0) {
  45414. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  45415. uint64_t __ret;
  45416. __ret = (uint64_t) __builtin_neon_vaddlvq_u32((int8x16_t)__rev0);
  45417. return __ret;
  45418. }
  45419. #endif
  45420. #ifdef __LITTLE_ENDIAN__
  45421. __ai uint32_t vaddlvq_u16(uint16x8_t __p0) {
  45422. uint32_t __ret;
  45423. __ret = (uint32_t) __builtin_neon_vaddlvq_u16((int8x16_t)__p0);
  45424. return __ret;
  45425. }
  45426. #else
  45427. __ai uint32_t vaddlvq_u16(uint16x8_t __p0) {
  45428. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  45429. uint32_t __ret;
  45430. __ret = (uint32_t) __builtin_neon_vaddlvq_u16((int8x16_t)__rev0);
  45431. return __ret;
  45432. }
  45433. #endif
  45434. #ifdef __LITTLE_ENDIAN__
  45435. __ai int16_t vaddlvq_s8(int8x16_t __p0) {
  45436. int16_t __ret;
  45437. __ret = (int16_t) __builtin_neon_vaddlvq_s8((int8x16_t)__p0);
  45438. return __ret;
  45439. }
  45440. #else
  45441. __ai int16_t vaddlvq_s8(int8x16_t __p0) {
  45442. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  45443. int16_t __ret;
  45444. __ret = (int16_t) __builtin_neon_vaddlvq_s8((int8x16_t)__rev0);
  45445. return __ret;
  45446. }
  45447. #endif
  45448. #ifdef __LITTLE_ENDIAN__
  45449. __ai int64_t vaddlvq_s32(int32x4_t __p0) {
  45450. int64_t __ret;
  45451. __ret = (int64_t) __builtin_neon_vaddlvq_s32((int8x16_t)__p0);
  45452. return __ret;
  45453. }
  45454. #else
  45455. __ai int64_t vaddlvq_s32(int32x4_t __p0) {
  45456. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  45457. int64_t __ret;
  45458. __ret = (int64_t) __builtin_neon_vaddlvq_s32((int8x16_t)__rev0);
  45459. return __ret;
  45460. }
  45461. #endif
  45462. #ifdef __LITTLE_ENDIAN__
  45463. __ai int32_t vaddlvq_s16(int16x8_t __p0) {
  45464. int32_t __ret;
  45465. __ret = (int32_t) __builtin_neon_vaddlvq_s16((int8x16_t)__p0);
  45466. return __ret;
  45467. }
  45468. #else
  45469. __ai int32_t vaddlvq_s16(int16x8_t __p0) {
  45470. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  45471. int32_t __ret;
  45472. __ret = (int32_t) __builtin_neon_vaddlvq_s16((int8x16_t)__rev0);
  45473. return __ret;
  45474. }
  45475. #endif
  45476. #ifdef __LITTLE_ENDIAN__
  45477. __ai uint16_t vaddlv_u8(uint8x8_t __p0) {
  45478. uint16_t __ret;
  45479. __ret = (uint16_t) __builtin_neon_vaddlv_u8((int8x8_t)__p0);
  45480. return __ret;
  45481. }
  45482. #else
  45483. __ai uint16_t vaddlv_u8(uint8x8_t __p0) {
  45484. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  45485. uint16_t __ret;
  45486. __ret = (uint16_t) __builtin_neon_vaddlv_u8((int8x8_t)__rev0);
  45487. return __ret;
  45488. }
  45489. #endif
  45490. #ifdef __LITTLE_ENDIAN__
  45491. __ai uint64_t vaddlv_u32(uint32x2_t __p0) {
  45492. uint64_t __ret;
  45493. __ret = (uint64_t) __builtin_neon_vaddlv_u32((int8x8_t)__p0);
  45494. return __ret;
  45495. }
  45496. #else
  45497. __ai uint64_t vaddlv_u32(uint32x2_t __p0) {
  45498. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  45499. uint64_t __ret;
  45500. __ret = (uint64_t) __builtin_neon_vaddlv_u32((int8x8_t)__rev0);
  45501. return __ret;
  45502. }
  45503. #endif
  45504. #ifdef __LITTLE_ENDIAN__
  45505. __ai uint32_t vaddlv_u16(uint16x4_t __p0) {
  45506. uint32_t __ret;
  45507. __ret = (uint32_t) __builtin_neon_vaddlv_u16((int8x8_t)__p0);
  45508. return __ret;
  45509. }
  45510. #else
  45511. __ai uint32_t vaddlv_u16(uint16x4_t __p0) {
  45512. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  45513. uint32_t __ret;
  45514. __ret = (uint32_t) __builtin_neon_vaddlv_u16((int8x8_t)__rev0);
  45515. return __ret;
  45516. }
  45517. #endif
  45518. #ifdef __LITTLE_ENDIAN__
  45519. __ai int16_t vaddlv_s8(int8x8_t __p0) {
  45520. int16_t __ret;
  45521. __ret = (int16_t) __builtin_neon_vaddlv_s8((int8x8_t)__p0);
  45522. return __ret;
  45523. }
  45524. #else
  45525. __ai int16_t vaddlv_s8(int8x8_t __p0) {
  45526. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  45527. int16_t __ret;
  45528. __ret = (int16_t) __builtin_neon_vaddlv_s8((int8x8_t)__rev0);
  45529. return __ret;
  45530. }
  45531. #endif
  45532. #ifdef __LITTLE_ENDIAN__
  45533. __ai int64_t vaddlv_s32(int32x2_t __p0) {
  45534. int64_t __ret;
  45535. __ret = (int64_t) __builtin_neon_vaddlv_s32((int8x8_t)__p0);
  45536. return __ret;
  45537. }
  45538. #else
  45539. __ai int64_t vaddlv_s32(int32x2_t __p0) {
  45540. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  45541. int64_t __ret;
  45542. __ret = (int64_t) __builtin_neon_vaddlv_s32((int8x8_t)__rev0);
  45543. return __ret;
  45544. }
  45545. #endif
  45546. #ifdef __LITTLE_ENDIAN__
  45547. __ai int32_t vaddlv_s16(int16x4_t __p0) {
  45548. int32_t __ret;
  45549. __ret = (int32_t) __builtin_neon_vaddlv_s16((int8x8_t)__p0);
  45550. return __ret;
  45551. }
  45552. #else
  45553. __ai int32_t vaddlv_s16(int16x4_t __p0) {
  45554. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  45555. int32_t __ret;
  45556. __ret = (int32_t) __builtin_neon_vaddlv_s16((int8x8_t)__rev0);
  45557. return __ret;
  45558. }
  45559. #endif
  45560. #ifdef __LITTLE_ENDIAN__
  45561. __ai uint8_t vaddvq_u8(uint8x16_t __p0) {
  45562. uint8_t __ret;
  45563. __ret = (uint8_t) __builtin_neon_vaddvq_u8((int8x16_t)__p0);
  45564. return __ret;
  45565. }
  45566. #else
  45567. __ai uint8_t vaddvq_u8(uint8x16_t __p0) {
  45568. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  45569. uint8_t __ret;
  45570. __ret = (uint8_t) __builtin_neon_vaddvq_u8((int8x16_t)__rev0);
  45571. return __ret;
  45572. }
  45573. #endif
  45574. #ifdef __LITTLE_ENDIAN__
  45575. __ai uint32_t vaddvq_u32(uint32x4_t __p0) {
  45576. uint32_t __ret;
  45577. __ret = (uint32_t) __builtin_neon_vaddvq_u32((int8x16_t)__p0);
  45578. return __ret;
  45579. }
  45580. #else
  45581. __ai uint32_t vaddvq_u32(uint32x4_t __p0) {
  45582. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  45583. uint32_t __ret;
  45584. __ret = (uint32_t) __builtin_neon_vaddvq_u32((int8x16_t)__rev0);
  45585. return __ret;
  45586. }
  45587. #endif
  45588. #ifdef __LITTLE_ENDIAN__
  45589. __ai uint64_t vaddvq_u64(uint64x2_t __p0) {
  45590. uint64_t __ret;
  45591. __ret = (uint64_t) __builtin_neon_vaddvq_u64((int8x16_t)__p0);
  45592. return __ret;
  45593. }
  45594. #else
  45595. __ai uint64_t vaddvq_u64(uint64x2_t __p0) {
  45596. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  45597. uint64_t __ret;
  45598. __ret = (uint64_t) __builtin_neon_vaddvq_u64((int8x16_t)__rev0);
  45599. return __ret;
  45600. }
  45601. #endif
  45602. #ifdef __LITTLE_ENDIAN__
  45603. __ai uint16_t vaddvq_u16(uint16x8_t __p0) {
  45604. uint16_t __ret;
  45605. __ret = (uint16_t) __builtin_neon_vaddvq_u16((int8x16_t)__p0);
  45606. return __ret;
  45607. }
  45608. #else
  45609. __ai uint16_t vaddvq_u16(uint16x8_t __p0) {
  45610. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  45611. uint16_t __ret;
  45612. __ret = (uint16_t) __builtin_neon_vaddvq_u16((int8x16_t)__rev0);
  45613. return __ret;
  45614. }
  45615. #endif
  45616. #ifdef __LITTLE_ENDIAN__
  45617. __ai int8_t vaddvq_s8(int8x16_t __p0) {
  45618. int8_t __ret;
  45619. __ret = (int8_t) __builtin_neon_vaddvq_s8((int8x16_t)__p0);
  45620. return __ret;
  45621. }
  45622. #else
  45623. __ai int8_t vaddvq_s8(int8x16_t __p0) {
  45624. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  45625. int8_t __ret;
  45626. __ret = (int8_t) __builtin_neon_vaddvq_s8((int8x16_t)__rev0);
  45627. return __ret;
  45628. }
  45629. #endif
  45630. #ifdef __LITTLE_ENDIAN__
  45631. __ai float64_t vaddvq_f64(float64x2_t __p0) {
  45632. float64_t __ret;
  45633. __ret = (float64_t) __builtin_neon_vaddvq_f64((int8x16_t)__p0);
  45634. return __ret;
  45635. }
  45636. #else
  45637. __ai float64_t vaddvq_f64(float64x2_t __p0) {
  45638. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  45639. float64_t __ret;
  45640. __ret = (float64_t) __builtin_neon_vaddvq_f64((int8x16_t)__rev0);
  45641. return __ret;
  45642. }
  45643. #endif
  45644. #ifdef __LITTLE_ENDIAN__
  45645. __ai float32_t vaddvq_f32(float32x4_t __p0) {
  45646. float32_t __ret;
  45647. __ret = (float32_t) __builtin_neon_vaddvq_f32((int8x16_t)__p0);
  45648. return __ret;
  45649. }
  45650. #else
  45651. __ai float32_t vaddvq_f32(float32x4_t __p0) {
  45652. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  45653. float32_t __ret;
  45654. __ret = (float32_t) __builtin_neon_vaddvq_f32((int8x16_t)__rev0);
  45655. return __ret;
  45656. }
  45657. #endif
  45658. #ifdef __LITTLE_ENDIAN__
  45659. __ai int32_t vaddvq_s32(int32x4_t __p0) {
  45660. int32_t __ret;
  45661. __ret = (int32_t) __builtin_neon_vaddvq_s32((int8x16_t)__p0);
  45662. return __ret;
  45663. }
  45664. #else
  45665. __ai int32_t vaddvq_s32(int32x4_t __p0) {
  45666. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  45667. int32_t __ret;
  45668. __ret = (int32_t) __builtin_neon_vaddvq_s32((int8x16_t)__rev0);
  45669. return __ret;
  45670. }
  45671. #endif
  45672. #ifdef __LITTLE_ENDIAN__
  45673. __ai int64_t vaddvq_s64(int64x2_t __p0) {
  45674. int64_t __ret;
  45675. __ret = (int64_t) __builtin_neon_vaddvq_s64((int8x16_t)__p0);
  45676. return __ret;
  45677. }
  45678. #else
  45679. __ai int64_t vaddvq_s64(int64x2_t __p0) {
  45680. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  45681. int64_t __ret;
  45682. __ret = (int64_t) __builtin_neon_vaddvq_s64((int8x16_t)__rev0);
  45683. return __ret;
  45684. }
  45685. #endif
  45686. #ifdef __LITTLE_ENDIAN__
  45687. __ai int16_t vaddvq_s16(int16x8_t __p0) {
  45688. int16_t __ret;
  45689. __ret = (int16_t) __builtin_neon_vaddvq_s16((int8x16_t)__p0);
  45690. return __ret;
  45691. }
  45692. #else
  45693. __ai int16_t vaddvq_s16(int16x8_t __p0) {
  45694. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  45695. int16_t __ret;
  45696. __ret = (int16_t) __builtin_neon_vaddvq_s16((int8x16_t)__rev0);
  45697. return __ret;
  45698. }
  45699. #endif
  45700. #ifdef __LITTLE_ENDIAN__
  45701. __ai uint8_t vaddv_u8(uint8x8_t __p0) {
  45702. uint8_t __ret;
  45703. __ret = (uint8_t) __builtin_neon_vaddv_u8((int8x8_t)__p0);
  45704. return __ret;
  45705. }
  45706. #else
  45707. __ai uint8_t vaddv_u8(uint8x8_t __p0) {
  45708. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  45709. uint8_t __ret;
  45710. __ret = (uint8_t) __builtin_neon_vaddv_u8((int8x8_t)__rev0);
  45711. return __ret;
  45712. }
  45713. #endif
  45714. #ifdef __LITTLE_ENDIAN__
  45715. __ai uint32_t vaddv_u32(uint32x2_t __p0) {
  45716. uint32_t __ret;
  45717. __ret = (uint32_t) __builtin_neon_vaddv_u32((int8x8_t)__p0);
  45718. return __ret;
  45719. }
  45720. #else
  45721. __ai uint32_t vaddv_u32(uint32x2_t __p0) {
  45722. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  45723. uint32_t __ret;
  45724. __ret = (uint32_t) __builtin_neon_vaddv_u32((int8x8_t)__rev0);
  45725. return __ret;
  45726. }
  45727. #endif
  45728. #ifdef __LITTLE_ENDIAN__
  45729. __ai uint16_t vaddv_u16(uint16x4_t __p0) {
  45730. uint16_t __ret;
  45731. __ret = (uint16_t) __builtin_neon_vaddv_u16((int8x8_t)__p0);
  45732. return __ret;
  45733. }
  45734. #else
  45735. __ai uint16_t vaddv_u16(uint16x4_t __p0) {
  45736. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  45737. uint16_t __ret;
  45738. __ret = (uint16_t) __builtin_neon_vaddv_u16((int8x8_t)__rev0);
  45739. return __ret;
  45740. }
  45741. #endif
  45742. #ifdef __LITTLE_ENDIAN__
  45743. __ai int8_t vaddv_s8(int8x8_t __p0) {
  45744. int8_t __ret;
  45745. __ret = (int8_t) __builtin_neon_vaddv_s8((int8x8_t)__p0);
  45746. return __ret;
  45747. }
  45748. #else
  45749. __ai int8_t vaddv_s8(int8x8_t __p0) {
  45750. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  45751. int8_t __ret;
  45752. __ret = (int8_t) __builtin_neon_vaddv_s8((int8x8_t)__rev0);
  45753. return __ret;
  45754. }
  45755. #endif
  45756. #ifdef __LITTLE_ENDIAN__
  45757. __ai float32_t vaddv_f32(float32x2_t __p0) {
  45758. float32_t __ret;
  45759. __ret = (float32_t) __builtin_neon_vaddv_f32((int8x8_t)__p0);
  45760. return __ret;
  45761. }
  45762. #else
  45763. __ai float32_t vaddv_f32(float32x2_t __p0) {
  45764. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  45765. float32_t __ret;
  45766. __ret = (float32_t) __builtin_neon_vaddv_f32((int8x8_t)__rev0);
  45767. return __ret;
  45768. }
  45769. #endif
  45770. #ifdef __LITTLE_ENDIAN__
  45771. __ai int32_t vaddv_s32(int32x2_t __p0) {
  45772. int32_t __ret;
  45773. __ret = (int32_t) __builtin_neon_vaddv_s32((int8x8_t)__p0);
  45774. return __ret;
  45775. }
  45776. #else
  45777. __ai int32_t vaddv_s32(int32x2_t __p0) {
  45778. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  45779. int32_t __ret;
  45780. __ret = (int32_t) __builtin_neon_vaddv_s32((int8x8_t)__rev0);
  45781. return __ret;
  45782. }
  45783. #endif
  45784. #ifdef __LITTLE_ENDIAN__
  45785. __ai int16_t vaddv_s16(int16x4_t __p0) {
  45786. int16_t __ret;
  45787. __ret = (int16_t) __builtin_neon_vaddv_s16((int8x8_t)__p0);
  45788. return __ret;
  45789. }
  45790. #else
  45791. __ai int16_t vaddv_s16(int16x4_t __p0) {
  45792. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  45793. int16_t __ret;
  45794. __ret = (int16_t) __builtin_neon_vaddv_s16((int8x8_t)__rev0);
  45795. return __ret;
  45796. }
  45797. #endif
  45798. #ifdef __LITTLE_ENDIAN__
  45799. __ai poly64x1_t vbsl_p64(uint64x1_t __p0, poly64x1_t __p1, poly64x1_t __p2) {
  45800. poly64x1_t __ret;
  45801. __ret = (poly64x1_t) __builtin_neon_vbsl_v((int8x8_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 6);
  45802. return __ret;
  45803. }
  45804. #else
  45805. __ai poly64x1_t vbsl_p64(uint64x1_t __p0, poly64x1_t __p1, poly64x1_t __p2) {
  45806. poly64x1_t __ret;
  45807. __ret = (poly64x1_t) __builtin_neon_vbsl_v((int8x8_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 6);
  45808. return __ret;
  45809. }
  45810. #endif
  45811. #ifdef __LITTLE_ENDIAN__
  45812. __ai poly64x2_t vbslq_p64(uint64x2_t __p0, poly64x2_t __p1, poly64x2_t __p2) {
  45813. poly64x2_t __ret;
  45814. __ret = (poly64x2_t) __builtin_neon_vbslq_v((int8x16_t)__p0, (int8x16_t)__p1, (int8x16_t)__p2, 38);
  45815. return __ret;
  45816. }
  45817. #else
  45818. __ai poly64x2_t vbslq_p64(uint64x2_t __p0, poly64x2_t __p1, poly64x2_t __p2) {
  45819. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  45820. poly64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  45821. poly64x2_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 1, 0);
  45822. poly64x2_t __ret;
  45823. __ret = (poly64x2_t) __builtin_neon_vbslq_v((int8x16_t)__rev0, (int8x16_t)__rev1, (int8x16_t)__rev2, 38);
  45824. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  45825. return __ret;
  45826. }
  45827. #endif
  45828. #ifdef __LITTLE_ENDIAN__
  45829. __ai float64x2_t vbslq_f64(uint64x2_t __p0, float64x2_t __p1, float64x2_t __p2) {
  45830. float64x2_t __ret;
  45831. __ret = (float64x2_t) __builtin_neon_vbslq_v((int8x16_t)__p0, (int8x16_t)__p1, (int8x16_t)__p2, 42);
  45832. return __ret;
  45833. }
  45834. #else
  45835. __ai float64x2_t vbslq_f64(uint64x2_t __p0, float64x2_t __p1, float64x2_t __p2) {
  45836. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  45837. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  45838. float64x2_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 1, 0);
  45839. float64x2_t __ret;
  45840. __ret = (float64x2_t) __builtin_neon_vbslq_v((int8x16_t)__rev0, (int8x16_t)__rev1, (int8x16_t)__rev2, 42);
  45841. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  45842. return __ret;
  45843. }
  45844. #endif
  45845. #ifdef __LITTLE_ENDIAN__
  45846. __ai float64x1_t vbsl_f64(uint64x1_t __p0, float64x1_t __p1, float64x1_t __p2) {
  45847. float64x1_t __ret;
  45848. __ret = (float64x1_t) __builtin_neon_vbsl_v((int8x8_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 10);
  45849. return __ret;
  45850. }
  45851. #else
  45852. __ai float64x1_t vbsl_f64(uint64x1_t __p0, float64x1_t __p1, float64x1_t __p2) {
  45853. float64x1_t __ret;
  45854. __ret = (float64x1_t) __builtin_neon_vbsl_v((int8x8_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 10);
  45855. return __ret;
  45856. }
  45857. #endif
  45858. #ifdef __LITTLE_ENDIAN__
  45859. __ai uint64x2_t vcageq_f64(float64x2_t __p0, float64x2_t __p1) {
  45860. uint64x2_t __ret;
  45861. __ret = (uint64x2_t) __builtin_neon_vcageq_v((int8x16_t)__p0, (int8x16_t)__p1, 51);
  45862. return __ret;
  45863. }
  45864. #else
  45865. __ai uint64x2_t vcageq_f64(float64x2_t __p0, float64x2_t __p1) {
  45866. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  45867. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  45868. uint64x2_t __ret;
  45869. __ret = (uint64x2_t) __builtin_neon_vcageq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 51);
  45870. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  45871. return __ret;
  45872. }
  45873. #endif
  45874. #ifdef __LITTLE_ENDIAN__
  45875. __ai uint64x1_t vcage_f64(float64x1_t __p0, float64x1_t __p1) {
  45876. uint64x1_t __ret;
  45877. __ret = (uint64x1_t) __builtin_neon_vcage_v((int8x8_t)__p0, (int8x8_t)__p1, 19);
  45878. return __ret;
  45879. }
  45880. #else
  45881. __ai uint64x1_t vcage_f64(float64x1_t __p0, float64x1_t __p1) {
  45882. uint64x1_t __ret;
  45883. __ret = (uint64x1_t) __builtin_neon_vcage_v((int8x8_t)__p0, (int8x8_t)__p1, 19);
  45884. return __ret;
  45885. }
  45886. #endif
  45887. #ifdef __LITTLE_ENDIAN__
  45888. __ai uint64_t vcaged_f64(float64_t __p0, float64_t __p1) {
  45889. uint64_t __ret;
  45890. __ret = (uint64_t) __builtin_neon_vcaged_f64(__p0, __p1);
  45891. return __ret;
  45892. }
  45893. #else
  45894. __ai uint64_t vcaged_f64(float64_t __p0, float64_t __p1) {
  45895. uint64_t __ret;
  45896. __ret = (uint64_t) __builtin_neon_vcaged_f64(__p0, __p1);
  45897. return __ret;
  45898. }
  45899. #endif
  45900. #ifdef __LITTLE_ENDIAN__
  45901. __ai uint32_t vcages_f32(float32_t __p0, float32_t __p1) {
  45902. uint32_t __ret;
  45903. __ret = (uint32_t) __builtin_neon_vcages_f32(__p0, __p1);
  45904. return __ret;
  45905. }
  45906. #else
  45907. __ai uint32_t vcages_f32(float32_t __p0, float32_t __p1) {
  45908. uint32_t __ret;
  45909. __ret = (uint32_t) __builtin_neon_vcages_f32(__p0, __p1);
  45910. return __ret;
  45911. }
  45912. #endif
  45913. #ifdef __LITTLE_ENDIAN__
  45914. __ai uint64x2_t vcagtq_f64(float64x2_t __p0, float64x2_t __p1) {
  45915. uint64x2_t __ret;
  45916. __ret = (uint64x2_t) __builtin_neon_vcagtq_v((int8x16_t)__p0, (int8x16_t)__p1, 51);
  45917. return __ret;
  45918. }
  45919. #else
  45920. __ai uint64x2_t vcagtq_f64(float64x2_t __p0, float64x2_t __p1) {
  45921. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  45922. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  45923. uint64x2_t __ret;
  45924. __ret = (uint64x2_t) __builtin_neon_vcagtq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 51);
  45925. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  45926. return __ret;
  45927. }
  45928. #endif
  45929. #ifdef __LITTLE_ENDIAN__
  45930. __ai uint64x1_t vcagt_f64(float64x1_t __p0, float64x1_t __p1) {
  45931. uint64x1_t __ret;
  45932. __ret = (uint64x1_t) __builtin_neon_vcagt_v((int8x8_t)__p0, (int8x8_t)__p1, 19);
  45933. return __ret;
  45934. }
  45935. #else
  45936. __ai uint64x1_t vcagt_f64(float64x1_t __p0, float64x1_t __p1) {
  45937. uint64x1_t __ret;
  45938. __ret = (uint64x1_t) __builtin_neon_vcagt_v((int8x8_t)__p0, (int8x8_t)__p1, 19);
  45939. return __ret;
  45940. }
  45941. #endif
  45942. #ifdef __LITTLE_ENDIAN__
  45943. __ai uint64_t vcagtd_f64(float64_t __p0, float64_t __p1) {
  45944. uint64_t __ret;
  45945. __ret = (uint64_t) __builtin_neon_vcagtd_f64(__p0, __p1);
  45946. return __ret;
  45947. }
  45948. #else
  45949. __ai uint64_t vcagtd_f64(float64_t __p0, float64_t __p1) {
  45950. uint64_t __ret;
  45951. __ret = (uint64_t) __builtin_neon_vcagtd_f64(__p0, __p1);
  45952. return __ret;
  45953. }
  45954. #endif
  45955. #ifdef __LITTLE_ENDIAN__
  45956. __ai uint32_t vcagts_f32(float32_t __p0, float32_t __p1) {
  45957. uint32_t __ret;
  45958. __ret = (uint32_t) __builtin_neon_vcagts_f32(__p0, __p1);
  45959. return __ret;
  45960. }
  45961. #else
  45962. __ai uint32_t vcagts_f32(float32_t __p0, float32_t __p1) {
  45963. uint32_t __ret;
  45964. __ret = (uint32_t) __builtin_neon_vcagts_f32(__p0, __p1);
  45965. return __ret;
  45966. }
  45967. #endif
  45968. #ifdef __LITTLE_ENDIAN__
  45969. __ai uint64x2_t vcaleq_f64(float64x2_t __p0, float64x2_t __p1) {
  45970. uint64x2_t __ret;
  45971. __ret = (uint64x2_t) __builtin_neon_vcaleq_v((int8x16_t)__p0, (int8x16_t)__p1, 51);
  45972. return __ret;
  45973. }
  45974. #else
  45975. __ai uint64x2_t vcaleq_f64(float64x2_t __p0, float64x2_t __p1) {
  45976. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  45977. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  45978. uint64x2_t __ret;
  45979. __ret = (uint64x2_t) __builtin_neon_vcaleq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 51);
  45980. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  45981. return __ret;
  45982. }
  45983. #endif
  45984. #ifdef __LITTLE_ENDIAN__
  45985. __ai uint64x1_t vcale_f64(float64x1_t __p0, float64x1_t __p1) {
  45986. uint64x1_t __ret;
  45987. __ret = (uint64x1_t) __builtin_neon_vcale_v((int8x8_t)__p0, (int8x8_t)__p1, 19);
  45988. return __ret;
  45989. }
  45990. #else
  45991. __ai uint64x1_t vcale_f64(float64x1_t __p0, float64x1_t __p1) {
  45992. uint64x1_t __ret;
  45993. __ret = (uint64x1_t) __builtin_neon_vcale_v((int8x8_t)__p0, (int8x8_t)__p1, 19);
  45994. return __ret;
  45995. }
  45996. #endif
  45997. #ifdef __LITTLE_ENDIAN__
  45998. __ai uint64_t vcaled_f64(float64_t __p0, float64_t __p1) {
  45999. uint64_t __ret;
  46000. __ret = (uint64_t) __builtin_neon_vcaled_f64(__p0, __p1);
  46001. return __ret;
  46002. }
  46003. #else
  46004. __ai uint64_t vcaled_f64(float64_t __p0, float64_t __p1) {
  46005. uint64_t __ret;
  46006. __ret = (uint64_t) __builtin_neon_vcaled_f64(__p0, __p1);
  46007. return __ret;
  46008. }
  46009. #endif
  46010. #ifdef __LITTLE_ENDIAN__
  46011. __ai uint32_t vcales_f32(float32_t __p0, float32_t __p1) {
  46012. uint32_t __ret;
  46013. __ret = (uint32_t) __builtin_neon_vcales_f32(__p0, __p1);
  46014. return __ret;
  46015. }
  46016. #else
  46017. __ai uint32_t vcales_f32(float32_t __p0, float32_t __p1) {
  46018. uint32_t __ret;
  46019. __ret = (uint32_t) __builtin_neon_vcales_f32(__p0, __p1);
  46020. return __ret;
  46021. }
  46022. #endif
  46023. #ifdef __LITTLE_ENDIAN__
  46024. __ai uint64x2_t vcaltq_f64(float64x2_t __p0, float64x2_t __p1) {
  46025. uint64x2_t __ret;
  46026. __ret = (uint64x2_t) __builtin_neon_vcaltq_v((int8x16_t)__p0, (int8x16_t)__p1, 51);
  46027. return __ret;
  46028. }
  46029. #else
  46030. __ai uint64x2_t vcaltq_f64(float64x2_t __p0, float64x2_t __p1) {
  46031. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  46032. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  46033. uint64x2_t __ret;
  46034. __ret = (uint64x2_t) __builtin_neon_vcaltq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 51);
  46035. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  46036. return __ret;
  46037. }
  46038. #endif
  46039. #ifdef __LITTLE_ENDIAN__
  46040. __ai uint64x1_t vcalt_f64(float64x1_t __p0, float64x1_t __p1) {
  46041. uint64x1_t __ret;
  46042. __ret = (uint64x1_t) __builtin_neon_vcalt_v((int8x8_t)__p0, (int8x8_t)__p1, 19);
  46043. return __ret;
  46044. }
  46045. #else
  46046. __ai uint64x1_t vcalt_f64(float64x1_t __p0, float64x1_t __p1) {
  46047. uint64x1_t __ret;
  46048. __ret = (uint64x1_t) __builtin_neon_vcalt_v((int8x8_t)__p0, (int8x8_t)__p1, 19);
  46049. return __ret;
  46050. }
  46051. #endif
  46052. #ifdef __LITTLE_ENDIAN__
  46053. __ai uint64_t vcaltd_f64(float64_t __p0, float64_t __p1) {
  46054. uint64_t __ret;
  46055. __ret = (uint64_t) __builtin_neon_vcaltd_f64(__p0, __p1);
  46056. return __ret;
  46057. }
  46058. #else
  46059. __ai uint64_t vcaltd_f64(float64_t __p0, float64_t __p1) {
  46060. uint64_t __ret;
  46061. __ret = (uint64_t) __builtin_neon_vcaltd_f64(__p0, __p1);
  46062. return __ret;
  46063. }
  46064. #endif
  46065. #ifdef __LITTLE_ENDIAN__
  46066. __ai uint32_t vcalts_f32(float32_t __p0, float32_t __p1) {
  46067. uint32_t __ret;
  46068. __ret = (uint32_t) __builtin_neon_vcalts_f32(__p0, __p1);
  46069. return __ret;
  46070. }
  46071. #else
  46072. __ai uint32_t vcalts_f32(float32_t __p0, float32_t __p1) {
  46073. uint32_t __ret;
  46074. __ret = (uint32_t) __builtin_neon_vcalts_f32(__p0, __p1);
  46075. return __ret;
  46076. }
  46077. #endif
  46078. #ifdef __LITTLE_ENDIAN__
  46079. __ai uint64x1_t vceq_p64(poly64x1_t __p0, poly64x1_t __p1) {
  46080. uint64x1_t __ret;
  46081. __ret = (uint64x1_t)(__p0 == __p1);
  46082. return __ret;
  46083. }
  46084. #else
  46085. __ai uint64x1_t vceq_p64(poly64x1_t __p0, poly64x1_t __p1) {
  46086. uint64x1_t __ret;
  46087. __ret = (uint64x1_t)(__p0 == __p1);
  46088. return __ret;
  46089. }
  46090. #endif
  46091. #ifdef __LITTLE_ENDIAN__
  46092. __ai uint64x2_t vceqq_p64(poly64x2_t __p0, poly64x2_t __p1) {
  46093. uint64x2_t __ret;
  46094. __ret = (uint64x2_t)(__p0 == __p1);
  46095. return __ret;
  46096. }
  46097. #else
  46098. __ai uint64x2_t vceqq_p64(poly64x2_t __p0, poly64x2_t __p1) {
  46099. poly64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  46100. poly64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  46101. uint64x2_t __ret;
  46102. __ret = (uint64x2_t)(__rev0 == __rev1);
  46103. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  46104. return __ret;
  46105. }
  46106. #endif
  46107. #ifdef __LITTLE_ENDIAN__
  46108. __ai uint64x2_t vceqq_u64(uint64x2_t __p0, uint64x2_t __p1) {
  46109. uint64x2_t __ret;
  46110. __ret = (uint64x2_t)(__p0 == __p1);
  46111. return __ret;
  46112. }
  46113. #else
  46114. __ai uint64x2_t vceqq_u64(uint64x2_t __p0, uint64x2_t __p1) {
  46115. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  46116. uint64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  46117. uint64x2_t __ret;
  46118. __ret = (uint64x2_t)(__rev0 == __rev1);
  46119. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  46120. return __ret;
  46121. }
  46122. #endif
  46123. #ifdef __LITTLE_ENDIAN__
  46124. __ai uint64x2_t vceqq_f64(float64x2_t __p0, float64x2_t __p1) {
  46125. uint64x2_t __ret;
  46126. __ret = (uint64x2_t)(__p0 == __p1);
  46127. return __ret;
  46128. }
  46129. #else
  46130. __ai uint64x2_t vceqq_f64(float64x2_t __p0, float64x2_t __p1) {
  46131. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  46132. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  46133. uint64x2_t __ret;
  46134. __ret = (uint64x2_t)(__rev0 == __rev1);
  46135. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  46136. return __ret;
  46137. }
  46138. #endif
  46139. #ifdef __LITTLE_ENDIAN__
  46140. __ai uint64x2_t vceqq_s64(int64x2_t __p0, int64x2_t __p1) {
  46141. uint64x2_t __ret;
  46142. __ret = (uint64x2_t)(__p0 == __p1);
  46143. return __ret;
  46144. }
  46145. #else
  46146. __ai uint64x2_t vceqq_s64(int64x2_t __p0, int64x2_t __p1) {
  46147. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  46148. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  46149. uint64x2_t __ret;
  46150. __ret = (uint64x2_t)(__rev0 == __rev1);
  46151. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  46152. return __ret;
  46153. }
  46154. #endif
  46155. #ifdef __LITTLE_ENDIAN__
  46156. __ai uint64x1_t vceq_u64(uint64x1_t __p0, uint64x1_t __p1) {
  46157. uint64x1_t __ret;
  46158. __ret = (uint64x1_t)(__p0 == __p1);
  46159. return __ret;
  46160. }
  46161. #else
  46162. __ai uint64x1_t vceq_u64(uint64x1_t __p0, uint64x1_t __p1) {
  46163. uint64x1_t __ret;
  46164. __ret = (uint64x1_t)(__p0 == __p1);
  46165. return __ret;
  46166. }
  46167. #endif
  46168. #ifdef __LITTLE_ENDIAN__
  46169. __ai uint64x1_t vceq_f64(float64x1_t __p0, float64x1_t __p1) {
  46170. uint64x1_t __ret;
  46171. __ret = (uint64x1_t)(__p0 == __p1);
  46172. return __ret;
  46173. }
  46174. #else
  46175. __ai uint64x1_t vceq_f64(float64x1_t __p0, float64x1_t __p1) {
  46176. uint64x1_t __ret;
  46177. __ret = (uint64x1_t)(__p0 == __p1);
  46178. return __ret;
  46179. }
  46180. #endif
  46181. #ifdef __LITTLE_ENDIAN__
  46182. __ai uint64x1_t vceq_s64(int64x1_t __p0, int64x1_t __p1) {
  46183. uint64x1_t __ret;
  46184. __ret = (uint64x1_t)(__p0 == __p1);
  46185. return __ret;
  46186. }
  46187. #else
  46188. __ai uint64x1_t vceq_s64(int64x1_t __p0, int64x1_t __p1) {
  46189. uint64x1_t __ret;
  46190. __ret = (uint64x1_t)(__p0 == __p1);
  46191. return __ret;
  46192. }
  46193. #endif
  46194. #ifdef __LITTLE_ENDIAN__
  46195. __ai uint64_t vceqd_u64(uint64_t __p0, uint64_t __p1) {
  46196. uint64_t __ret;
  46197. __ret = (uint64_t) __builtin_neon_vceqd_u64(__p0, __p1);
  46198. return __ret;
  46199. }
  46200. #else
  46201. __ai uint64_t vceqd_u64(uint64_t __p0, uint64_t __p1) {
  46202. uint64_t __ret;
  46203. __ret = (uint64_t) __builtin_neon_vceqd_u64(__p0, __p1);
  46204. return __ret;
  46205. }
  46206. #endif
  46207. #ifdef __LITTLE_ENDIAN__
  46208. __ai int64_t vceqd_s64(int64_t __p0, int64_t __p1) {
  46209. int64_t __ret;
  46210. __ret = (int64_t) __builtin_neon_vceqd_s64(__p0, __p1);
  46211. return __ret;
  46212. }
  46213. #else
  46214. __ai int64_t vceqd_s64(int64_t __p0, int64_t __p1) {
  46215. int64_t __ret;
  46216. __ret = (int64_t) __builtin_neon_vceqd_s64(__p0, __p1);
  46217. return __ret;
  46218. }
  46219. #endif
  46220. #ifdef __LITTLE_ENDIAN__
  46221. __ai uint64_t vceqd_f64(float64_t __p0, float64_t __p1) {
  46222. uint64_t __ret;
  46223. __ret = (uint64_t) __builtin_neon_vceqd_f64(__p0, __p1);
  46224. return __ret;
  46225. }
  46226. #else
  46227. __ai uint64_t vceqd_f64(float64_t __p0, float64_t __p1) {
  46228. uint64_t __ret;
  46229. __ret = (uint64_t) __builtin_neon_vceqd_f64(__p0, __p1);
  46230. return __ret;
  46231. }
  46232. #endif
  46233. #ifdef __LITTLE_ENDIAN__
  46234. __ai uint32_t vceqs_f32(float32_t __p0, float32_t __p1) {
  46235. uint32_t __ret;
  46236. __ret = (uint32_t) __builtin_neon_vceqs_f32(__p0, __p1);
  46237. return __ret;
  46238. }
  46239. #else
  46240. __ai uint32_t vceqs_f32(float32_t __p0, float32_t __p1) {
  46241. uint32_t __ret;
  46242. __ret = (uint32_t) __builtin_neon_vceqs_f32(__p0, __p1);
  46243. return __ret;
  46244. }
  46245. #endif
  46246. #ifdef __LITTLE_ENDIAN__
  46247. __ai uint8x8_t vceqz_p8(poly8x8_t __p0) {
  46248. uint8x8_t __ret;
  46249. __ret = (uint8x8_t) __builtin_neon_vceqz_v((int8x8_t)__p0, 16);
  46250. return __ret;
  46251. }
  46252. #else
  46253. __ai uint8x8_t vceqz_p8(poly8x8_t __p0) {
  46254. poly8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  46255. uint8x8_t __ret;
  46256. __ret = (uint8x8_t) __builtin_neon_vceqz_v((int8x8_t)__rev0, 16);
  46257. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  46258. return __ret;
  46259. }
  46260. #endif
  46261. #ifdef __LITTLE_ENDIAN__
  46262. __ai uint64x1_t vceqz_p64(poly64x1_t __p0) {
  46263. uint64x1_t __ret;
  46264. __ret = (uint64x1_t) __builtin_neon_vceqz_v((int8x8_t)__p0, 19);
  46265. return __ret;
  46266. }
  46267. #else
  46268. __ai uint64x1_t vceqz_p64(poly64x1_t __p0) {
  46269. uint64x1_t __ret;
  46270. __ret = (uint64x1_t) __builtin_neon_vceqz_v((int8x8_t)__p0, 19);
  46271. return __ret;
  46272. }
  46273. #endif
  46274. #ifdef __LITTLE_ENDIAN__
  46275. __ai uint16x4_t vceqz_p16(poly16x4_t __p0) {
  46276. uint16x4_t __ret;
  46277. __ret = (uint16x4_t) __builtin_neon_vceqz_v((int8x8_t)__p0, 17);
  46278. return __ret;
  46279. }
  46280. #else
  46281. __ai uint16x4_t vceqz_p16(poly16x4_t __p0) {
  46282. poly16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  46283. uint16x4_t __ret;
  46284. __ret = (uint16x4_t) __builtin_neon_vceqz_v((int8x8_t)__rev0, 17);
  46285. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  46286. return __ret;
  46287. }
  46288. #endif
  46289. #ifdef __LITTLE_ENDIAN__
  46290. __ai uint8x16_t vceqzq_p8(poly8x16_t __p0) {
  46291. uint8x16_t __ret;
  46292. __ret = (uint8x16_t) __builtin_neon_vceqzq_v((int8x16_t)__p0, 48);
  46293. return __ret;
  46294. }
  46295. #else
  46296. __ai uint8x16_t vceqzq_p8(poly8x16_t __p0) {
  46297. poly8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  46298. uint8x16_t __ret;
  46299. __ret = (uint8x16_t) __builtin_neon_vceqzq_v((int8x16_t)__rev0, 48);
  46300. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  46301. return __ret;
  46302. }
  46303. #endif
  46304. #ifdef __LITTLE_ENDIAN__
  46305. __ai uint64x2_t vceqzq_p64(poly64x2_t __p0) {
  46306. uint64x2_t __ret;
  46307. __ret = (uint64x2_t) __builtin_neon_vceqzq_v((int8x16_t)__p0, 51);
  46308. return __ret;
  46309. }
  46310. #else
  46311. __ai uint64x2_t vceqzq_p64(poly64x2_t __p0) {
  46312. poly64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  46313. uint64x2_t __ret;
  46314. __ret = (uint64x2_t) __builtin_neon_vceqzq_v((int8x16_t)__rev0, 51);
  46315. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  46316. return __ret;
  46317. }
  46318. #endif
  46319. #ifdef __LITTLE_ENDIAN__
  46320. __ai uint16x8_t vceqzq_p16(poly16x8_t __p0) {
  46321. uint16x8_t __ret;
  46322. __ret = (uint16x8_t) __builtin_neon_vceqzq_v((int8x16_t)__p0, 49);
  46323. return __ret;
  46324. }
  46325. #else
  46326. __ai uint16x8_t vceqzq_p16(poly16x8_t __p0) {
  46327. poly16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  46328. uint16x8_t __ret;
  46329. __ret = (uint16x8_t) __builtin_neon_vceqzq_v((int8x16_t)__rev0, 49);
  46330. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  46331. return __ret;
  46332. }
  46333. #endif
  46334. #ifdef __LITTLE_ENDIAN__
  46335. __ai uint8x16_t vceqzq_u8(uint8x16_t __p0) {
  46336. uint8x16_t __ret;
  46337. __ret = (uint8x16_t) __builtin_neon_vceqzq_v((int8x16_t)__p0, 48);
  46338. return __ret;
  46339. }
  46340. #else
  46341. __ai uint8x16_t vceqzq_u8(uint8x16_t __p0) {
  46342. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  46343. uint8x16_t __ret;
  46344. __ret = (uint8x16_t) __builtin_neon_vceqzq_v((int8x16_t)__rev0, 48);
  46345. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  46346. return __ret;
  46347. }
  46348. #endif
  46349. #ifdef __LITTLE_ENDIAN__
  46350. __ai uint32x4_t vceqzq_u32(uint32x4_t __p0) {
  46351. uint32x4_t __ret;
  46352. __ret = (uint32x4_t) __builtin_neon_vceqzq_v((int8x16_t)__p0, 50);
  46353. return __ret;
  46354. }
  46355. #else
  46356. __ai uint32x4_t vceqzq_u32(uint32x4_t __p0) {
  46357. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  46358. uint32x4_t __ret;
  46359. __ret = (uint32x4_t) __builtin_neon_vceqzq_v((int8x16_t)__rev0, 50);
  46360. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  46361. return __ret;
  46362. }
  46363. #endif
  46364. #ifdef __LITTLE_ENDIAN__
  46365. __ai uint64x2_t vceqzq_u64(uint64x2_t __p0) {
  46366. uint64x2_t __ret;
  46367. __ret = (uint64x2_t) __builtin_neon_vceqzq_v((int8x16_t)__p0, 51);
  46368. return __ret;
  46369. }
  46370. #else
  46371. __ai uint64x2_t vceqzq_u64(uint64x2_t __p0) {
  46372. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  46373. uint64x2_t __ret;
  46374. __ret = (uint64x2_t) __builtin_neon_vceqzq_v((int8x16_t)__rev0, 51);
  46375. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  46376. return __ret;
  46377. }
  46378. #endif
  46379. #ifdef __LITTLE_ENDIAN__
  46380. __ai uint16x8_t vceqzq_u16(uint16x8_t __p0) {
  46381. uint16x8_t __ret;
  46382. __ret = (uint16x8_t) __builtin_neon_vceqzq_v((int8x16_t)__p0, 49);
  46383. return __ret;
  46384. }
  46385. #else
  46386. __ai uint16x8_t vceqzq_u16(uint16x8_t __p0) {
  46387. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  46388. uint16x8_t __ret;
  46389. __ret = (uint16x8_t) __builtin_neon_vceqzq_v((int8x16_t)__rev0, 49);
  46390. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  46391. return __ret;
  46392. }
  46393. #endif
  46394. #ifdef __LITTLE_ENDIAN__
  46395. __ai uint8x16_t vceqzq_s8(int8x16_t __p0) {
  46396. uint8x16_t __ret;
  46397. __ret = (uint8x16_t) __builtin_neon_vceqzq_v((int8x16_t)__p0, 48);
  46398. return __ret;
  46399. }
  46400. #else
  46401. __ai uint8x16_t vceqzq_s8(int8x16_t __p0) {
  46402. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  46403. uint8x16_t __ret;
  46404. __ret = (uint8x16_t) __builtin_neon_vceqzq_v((int8x16_t)__rev0, 48);
  46405. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  46406. return __ret;
  46407. }
  46408. #endif
  46409. #ifdef __LITTLE_ENDIAN__
  46410. __ai uint64x2_t vceqzq_f64(float64x2_t __p0) {
  46411. uint64x2_t __ret;
  46412. __ret = (uint64x2_t) __builtin_neon_vceqzq_v((int8x16_t)__p0, 51);
  46413. return __ret;
  46414. }
  46415. #else
  46416. __ai uint64x2_t vceqzq_f64(float64x2_t __p0) {
  46417. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  46418. uint64x2_t __ret;
  46419. __ret = (uint64x2_t) __builtin_neon_vceqzq_v((int8x16_t)__rev0, 51);
  46420. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  46421. return __ret;
  46422. }
  46423. #endif
  46424. #ifdef __LITTLE_ENDIAN__
  46425. __ai uint32x4_t vceqzq_f32(float32x4_t __p0) {
  46426. uint32x4_t __ret;
  46427. __ret = (uint32x4_t) __builtin_neon_vceqzq_v((int8x16_t)__p0, 50);
  46428. return __ret;
  46429. }
  46430. #else
  46431. __ai uint32x4_t vceqzq_f32(float32x4_t __p0) {
  46432. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  46433. uint32x4_t __ret;
  46434. __ret = (uint32x4_t) __builtin_neon_vceqzq_v((int8x16_t)__rev0, 50);
  46435. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  46436. return __ret;
  46437. }
  46438. #endif
  46439. #ifdef __LITTLE_ENDIAN__
  46440. __ai uint32x4_t vceqzq_s32(int32x4_t __p0) {
  46441. uint32x4_t __ret;
  46442. __ret = (uint32x4_t) __builtin_neon_vceqzq_v((int8x16_t)__p0, 50);
  46443. return __ret;
  46444. }
  46445. #else
  46446. __ai uint32x4_t vceqzq_s32(int32x4_t __p0) {
  46447. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  46448. uint32x4_t __ret;
  46449. __ret = (uint32x4_t) __builtin_neon_vceqzq_v((int8x16_t)__rev0, 50);
  46450. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  46451. return __ret;
  46452. }
  46453. #endif
  46454. #ifdef __LITTLE_ENDIAN__
  46455. __ai uint64x2_t vceqzq_s64(int64x2_t __p0) {
  46456. uint64x2_t __ret;
  46457. __ret = (uint64x2_t) __builtin_neon_vceqzq_v((int8x16_t)__p0, 51);
  46458. return __ret;
  46459. }
  46460. #else
  46461. __ai uint64x2_t vceqzq_s64(int64x2_t __p0) {
  46462. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  46463. uint64x2_t __ret;
  46464. __ret = (uint64x2_t) __builtin_neon_vceqzq_v((int8x16_t)__rev0, 51);
  46465. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  46466. return __ret;
  46467. }
  46468. #endif
  46469. #ifdef __LITTLE_ENDIAN__
  46470. __ai uint16x8_t vceqzq_s16(int16x8_t __p0) {
  46471. uint16x8_t __ret;
  46472. __ret = (uint16x8_t) __builtin_neon_vceqzq_v((int8x16_t)__p0, 49);
  46473. return __ret;
  46474. }
  46475. #else
  46476. __ai uint16x8_t vceqzq_s16(int16x8_t __p0) {
  46477. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  46478. uint16x8_t __ret;
  46479. __ret = (uint16x8_t) __builtin_neon_vceqzq_v((int8x16_t)__rev0, 49);
  46480. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  46481. return __ret;
  46482. }
  46483. #endif
  46484. #ifdef __LITTLE_ENDIAN__
  46485. __ai uint8x8_t vceqz_u8(uint8x8_t __p0) {
  46486. uint8x8_t __ret;
  46487. __ret = (uint8x8_t) __builtin_neon_vceqz_v((int8x8_t)__p0, 16);
  46488. return __ret;
  46489. }
  46490. #else
  46491. __ai uint8x8_t vceqz_u8(uint8x8_t __p0) {
  46492. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  46493. uint8x8_t __ret;
  46494. __ret = (uint8x8_t) __builtin_neon_vceqz_v((int8x8_t)__rev0, 16);
  46495. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  46496. return __ret;
  46497. }
  46498. #endif
  46499. #ifdef __LITTLE_ENDIAN__
  46500. __ai uint32x2_t vceqz_u32(uint32x2_t __p0) {
  46501. uint32x2_t __ret;
  46502. __ret = (uint32x2_t) __builtin_neon_vceqz_v((int8x8_t)__p0, 18);
  46503. return __ret;
  46504. }
  46505. #else
  46506. __ai uint32x2_t vceqz_u32(uint32x2_t __p0) {
  46507. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  46508. uint32x2_t __ret;
  46509. __ret = (uint32x2_t) __builtin_neon_vceqz_v((int8x8_t)__rev0, 18);
  46510. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  46511. return __ret;
  46512. }
  46513. #endif
  46514. #ifdef __LITTLE_ENDIAN__
  46515. __ai uint64x1_t vceqz_u64(uint64x1_t __p0) {
  46516. uint64x1_t __ret;
  46517. __ret = (uint64x1_t) __builtin_neon_vceqz_v((int8x8_t)__p0, 19);
  46518. return __ret;
  46519. }
  46520. #else
  46521. __ai uint64x1_t vceqz_u64(uint64x1_t __p0) {
  46522. uint64x1_t __ret;
  46523. __ret = (uint64x1_t) __builtin_neon_vceqz_v((int8x8_t)__p0, 19);
  46524. return __ret;
  46525. }
  46526. #endif
  46527. #ifdef __LITTLE_ENDIAN__
  46528. __ai uint16x4_t vceqz_u16(uint16x4_t __p0) {
  46529. uint16x4_t __ret;
  46530. __ret = (uint16x4_t) __builtin_neon_vceqz_v((int8x8_t)__p0, 17);
  46531. return __ret;
  46532. }
  46533. #else
  46534. __ai uint16x4_t vceqz_u16(uint16x4_t __p0) {
  46535. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  46536. uint16x4_t __ret;
  46537. __ret = (uint16x4_t) __builtin_neon_vceqz_v((int8x8_t)__rev0, 17);
  46538. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  46539. return __ret;
  46540. }
  46541. #endif
  46542. #ifdef __LITTLE_ENDIAN__
  46543. __ai uint8x8_t vceqz_s8(int8x8_t __p0) {
  46544. uint8x8_t __ret;
  46545. __ret = (uint8x8_t) __builtin_neon_vceqz_v((int8x8_t)__p0, 16);
  46546. return __ret;
  46547. }
  46548. #else
  46549. __ai uint8x8_t vceqz_s8(int8x8_t __p0) {
  46550. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  46551. uint8x8_t __ret;
  46552. __ret = (uint8x8_t) __builtin_neon_vceqz_v((int8x8_t)__rev0, 16);
  46553. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  46554. return __ret;
  46555. }
  46556. #endif
  46557. #ifdef __LITTLE_ENDIAN__
  46558. __ai uint64x1_t vceqz_f64(float64x1_t __p0) {
  46559. uint64x1_t __ret;
  46560. __ret = (uint64x1_t) __builtin_neon_vceqz_v((int8x8_t)__p0, 19);
  46561. return __ret;
  46562. }
  46563. #else
  46564. __ai uint64x1_t vceqz_f64(float64x1_t __p0) {
  46565. uint64x1_t __ret;
  46566. __ret = (uint64x1_t) __builtin_neon_vceqz_v((int8x8_t)__p0, 19);
  46567. return __ret;
  46568. }
  46569. #endif
  46570. #ifdef __LITTLE_ENDIAN__
  46571. __ai uint32x2_t vceqz_f32(float32x2_t __p0) {
  46572. uint32x2_t __ret;
  46573. __ret = (uint32x2_t) __builtin_neon_vceqz_v((int8x8_t)__p0, 18);
  46574. return __ret;
  46575. }
  46576. #else
  46577. __ai uint32x2_t vceqz_f32(float32x2_t __p0) {
  46578. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  46579. uint32x2_t __ret;
  46580. __ret = (uint32x2_t) __builtin_neon_vceqz_v((int8x8_t)__rev0, 18);
  46581. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  46582. return __ret;
  46583. }
  46584. #endif
  46585. #ifdef __LITTLE_ENDIAN__
  46586. __ai uint32x2_t vceqz_s32(int32x2_t __p0) {
  46587. uint32x2_t __ret;
  46588. __ret = (uint32x2_t) __builtin_neon_vceqz_v((int8x8_t)__p0, 18);
  46589. return __ret;
  46590. }
  46591. #else
  46592. __ai uint32x2_t vceqz_s32(int32x2_t __p0) {
  46593. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  46594. uint32x2_t __ret;
  46595. __ret = (uint32x2_t) __builtin_neon_vceqz_v((int8x8_t)__rev0, 18);
  46596. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  46597. return __ret;
  46598. }
  46599. #endif
  46600. #ifdef __LITTLE_ENDIAN__
  46601. __ai uint64x1_t vceqz_s64(int64x1_t __p0) {
  46602. uint64x1_t __ret;
  46603. __ret = (uint64x1_t) __builtin_neon_vceqz_v((int8x8_t)__p0, 19);
  46604. return __ret;
  46605. }
  46606. #else
  46607. __ai uint64x1_t vceqz_s64(int64x1_t __p0) {
  46608. uint64x1_t __ret;
  46609. __ret = (uint64x1_t) __builtin_neon_vceqz_v((int8x8_t)__p0, 19);
  46610. return __ret;
  46611. }
  46612. #endif
  46613. #ifdef __LITTLE_ENDIAN__
  46614. __ai uint16x4_t vceqz_s16(int16x4_t __p0) {
  46615. uint16x4_t __ret;
  46616. __ret = (uint16x4_t) __builtin_neon_vceqz_v((int8x8_t)__p0, 17);
  46617. return __ret;
  46618. }
  46619. #else
  46620. __ai uint16x4_t vceqz_s16(int16x4_t __p0) {
  46621. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  46622. uint16x4_t __ret;
  46623. __ret = (uint16x4_t) __builtin_neon_vceqz_v((int8x8_t)__rev0, 17);
  46624. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  46625. return __ret;
  46626. }
  46627. #endif
  46628. #ifdef __LITTLE_ENDIAN__
  46629. __ai uint64_t vceqzd_u64(uint64_t __p0) {
  46630. uint64_t __ret;
  46631. __ret = (uint64_t) __builtin_neon_vceqzd_u64(__p0);
  46632. return __ret;
  46633. }
  46634. #else
  46635. __ai uint64_t vceqzd_u64(uint64_t __p0) {
  46636. uint64_t __ret;
  46637. __ret = (uint64_t) __builtin_neon_vceqzd_u64(__p0);
  46638. return __ret;
  46639. }
  46640. #endif
  46641. #ifdef __LITTLE_ENDIAN__
  46642. __ai int64_t vceqzd_s64(int64_t __p0) {
  46643. int64_t __ret;
  46644. __ret = (int64_t) __builtin_neon_vceqzd_s64(__p0);
  46645. return __ret;
  46646. }
  46647. #else
  46648. __ai int64_t vceqzd_s64(int64_t __p0) {
  46649. int64_t __ret;
  46650. __ret = (int64_t) __builtin_neon_vceqzd_s64(__p0);
  46651. return __ret;
  46652. }
  46653. #endif
  46654. #ifdef __LITTLE_ENDIAN__
  46655. __ai uint64_t vceqzd_f64(float64_t __p0) {
  46656. uint64_t __ret;
  46657. __ret = (uint64_t) __builtin_neon_vceqzd_f64(__p0);
  46658. return __ret;
  46659. }
  46660. #else
  46661. __ai uint64_t vceqzd_f64(float64_t __p0) {
  46662. uint64_t __ret;
  46663. __ret = (uint64_t) __builtin_neon_vceqzd_f64(__p0);
  46664. return __ret;
  46665. }
  46666. #endif
  46667. #ifdef __LITTLE_ENDIAN__
  46668. __ai uint32_t vceqzs_f32(float32_t __p0) {
  46669. uint32_t __ret;
  46670. __ret = (uint32_t) __builtin_neon_vceqzs_f32(__p0);
  46671. return __ret;
  46672. }
  46673. #else
  46674. __ai uint32_t vceqzs_f32(float32_t __p0) {
  46675. uint32_t __ret;
  46676. __ret = (uint32_t) __builtin_neon_vceqzs_f32(__p0);
  46677. return __ret;
  46678. }
  46679. #endif
  46680. #ifdef __LITTLE_ENDIAN__
  46681. __ai uint64x2_t vcgeq_u64(uint64x2_t __p0, uint64x2_t __p1) {
  46682. uint64x2_t __ret;
  46683. __ret = (uint64x2_t)(__p0 >= __p1);
  46684. return __ret;
  46685. }
  46686. #else
  46687. __ai uint64x2_t vcgeq_u64(uint64x2_t __p0, uint64x2_t __p1) {
  46688. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  46689. uint64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  46690. uint64x2_t __ret;
  46691. __ret = (uint64x2_t)(__rev0 >= __rev1);
  46692. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  46693. return __ret;
  46694. }
  46695. #endif
  46696. #ifdef __LITTLE_ENDIAN__
  46697. __ai uint64x2_t vcgeq_f64(float64x2_t __p0, float64x2_t __p1) {
  46698. uint64x2_t __ret;
  46699. __ret = (uint64x2_t)(__p0 >= __p1);
  46700. return __ret;
  46701. }
  46702. #else
  46703. __ai uint64x2_t vcgeq_f64(float64x2_t __p0, float64x2_t __p1) {
  46704. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  46705. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  46706. uint64x2_t __ret;
  46707. __ret = (uint64x2_t)(__rev0 >= __rev1);
  46708. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  46709. return __ret;
  46710. }
  46711. #endif
  46712. #ifdef __LITTLE_ENDIAN__
  46713. __ai uint64x2_t vcgeq_s64(int64x2_t __p0, int64x2_t __p1) {
  46714. uint64x2_t __ret;
  46715. __ret = (uint64x2_t)(__p0 >= __p1);
  46716. return __ret;
  46717. }
  46718. #else
  46719. __ai uint64x2_t vcgeq_s64(int64x2_t __p0, int64x2_t __p1) {
  46720. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  46721. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  46722. uint64x2_t __ret;
  46723. __ret = (uint64x2_t)(__rev0 >= __rev1);
  46724. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  46725. return __ret;
  46726. }
  46727. #endif
  46728. #ifdef __LITTLE_ENDIAN__
  46729. __ai uint64x1_t vcge_u64(uint64x1_t __p0, uint64x1_t __p1) {
  46730. uint64x1_t __ret;
  46731. __ret = (uint64x1_t)(__p0 >= __p1);
  46732. return __ret;
  46733. }
  46734. #else
  46735. __ai uint64x1_t vcge_u64(uint64x1_t __p0, uint64x1_t __p1) {
  46736. uint64x1_t __ret;
  46737. __ret = (uint64x1_t)(__p0 >= __p1);
  46738. return __ret;
  46739. }
  46740. #endif
  46741. #ifdef __LITTLE_ENDIAN__
  46742. __ai uint64x1_t vcge_f64(float64x1_t __p0, float64x1_t __p1) {
  46743. uint64x1_t __ret;
  46744. __ret = (uint64x1_t)(__p0 >= __p1);
  46745. return __ret;
  46746. }
  46747. #else
  46748. __ai uint64x1_t vcge_f64(float64x1_t __p0, float64x1_t __p1) {
  46749. uint64x1_t __ret;
  46750. __ret = (uint64x1_t)(__p0 >= __p1);
  46751. return __ret;
  46752. }
  46753. #endif
  46754. #ifdef __LITTLE_ENDIAN__
  46755. __ai uint64x1_t vcge_s64(int64x1_t __p0, int64x1_t __p1) {
  46756. uint64x1_t __ret;
  46757. __ret = (uint64x1_t)(__p0 >= __p1);
  46758. return __ret;
  46759. }
  46760. #else
  46761. __ai uint64x1_t vcge_s64(int64x1_t __p0, int64x1_t __p1) {
  46762. uint64x1_t __ret;
  46763. __ret = (uint64x1_t)(__p0 >= __p1);
  46764. return __ret;
  46765. }
  46766. #endif
  46767. #ifdef __LITTLE_ENDIAN__
  46768. __ai int64_t vcged_s64(int64_t __p0, int64_t __p1) {
  46769. int64_t __ret;
  46770. __ret = (int64_t) __builtin_neon_vcged_s64(__p0, __p1);
  46771. return __ret;
  46772. }
  46773. #else
  46774. __ai int64_t vcged_s64(int64_t __p0, int64_t __p1) {
  46775. int64_t __ret;
  46776. __ret = (int64_t) __builtin_neon_vcged_s64(__p0, __p1);
  46777. return __ret;
  46778. }
  46779. #endif
  46780. #ifdef __LITTLE_ENDIAN__
  46781. __ai uint64_t vcged_u64(uint64_t __p0, uint64_t __p1) {
  46782. uint64_t __ret;
  46783. __ret = (uint64_t) __builtin_neon_vcged_u64(__p0, __p1);
  46784. return __ret;
  46785. }
  46786. #else
  46787. __ai uint64_t vcged_u64(uint64_t __p0, uint64_t __p1) {
  46788. uint64_t __ret;
  46789. __ret = (uint64_t) __builtin_neon_vcged_u64(__p0, __p1);
  46790. return __ret;
  46791. }
  46792. #endif
  46793. #ifdef __LITTLE_ENDIAN__
  46794. __ai uint64_t vcged_f64(float64_t __p0, float64_t __p1) {
  46795. uint64_t __ret;
  46796. __ret = (uint64_t) __builtin_neon_vcged_f64(__p0, __p1);
  46797. return __ret;
  46798. }
  46799. #else
  46800. __ai uint64_t vcged_f64(float64_t __p0, float64_t __p1) {
  46801. uint64_t __ret;
  46802. __ret = (uint64_t) __builtin_neon_vcged_f64(__p0, __p1);
  46803. return __ret;
  46804. }
  46805. #endif
  46806. #ifdef __LITTLE_ENDIAN__
  46807. __ai uint32_t vcges_f32(float32_t __p0, float32_t __p1) {
  46808. uint32_t __ret;
  46809. __ret = (uint32_t) __builtin_neon_vcges_f32(__p0, __p1);
  46810. return __ret;
  46811. }
  46812. #else
  46813. __ai uint32_t vcges_f32(float32_t __p0, float32_t __p1) {
  46814. uint32_t __ret;
  46815. __ret = (uint32_t) __builtin_neon_vcges_f32(__p0, __p1);
  46816. return __ret;
  46817. }
  46818. #endif
  46819. #ifdef __LITTLE_ENDIAN__
  46820. __ai uint8x16_t vcgezq_s8(int8x16_t __p0) {
  46821. uint8x16_t __ret;
  46822. __ret = (uint8x16_t) __builtin_neon_vcgezq_v((int8x16_t)__p0, 48);
  46823. return __ret;
  46824. }
  46825. #else
  46826. __ai uint8x16_t vcgezq_s8(int8x16_t __p0) {
  46827. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  46828. uint8x16_t __ret;
  46829. __ret = (uint8x16_t) __builtin_neon_vcgezq_v((int8x16_t)__rev0, 48);
  46830. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  46831. return __ret;
  46832. }
  46833. #endif
  46834. #ifdef __LITTLE_ENDIAN__
  46835. __ai uint64x2_t vcgezq_f64(float64x2_t __p0) {
  46836. uint64x2_t __ret;
  46837. __ret = (uint64x2_t) __builtin_neon_vcgezq_v((int8x16_t)__p0, 51);
  46838. return __ret;
  46839. }
  46840. #else
  46841. __ai uint64x2_t vcgezq_f64(float64x2_t __p0) {
  46842. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  46843. uint64x2_t __ret;
  46844. __ret = (uint64x2_t) __builtin_neon_vcgezq_v((int8x16_t)__rev0, 51);
  46845. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  46846. return __ret;
  46847. }
  46848. #endif
  46849. #ifdef __LITTLE_ENDIAN__
  46850. __ai uint32x4_t vcgezq_f32(float32x4_t __p0) {
  46851. uint32x4_t __ret;
  46852. __ret = (uint32x4_t) __builtin_neon_vcgezq_v((int8x16_t)__p0, 50);
  46853. return __ret;
  46854. }
  46855. #else
  46856. __ai uint32x4_t vcgezq_f32(float32x4_t __p0) {
  46857. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  46858. uint32x4_t __ret;
  46859. __ret = (uint32x4_t) __builtin_neon_vcgezq_v((int8x16_t)__rev0, 50);
  46860. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  46861. return __ret;
  46862. }
  46863. #endif
  46864. #ifdef __LITTLE_ENDIAN__
  46865. __ai uint32x4_t vcgezq_s32(int32x4_t __p0) {
  46866. uint32x4_t __ret;
  46867. __ret = (uint32x4_t) __builtin_neon_vcgezq_v((int8x16_t)__p0, 50);
  46868. return __ret;
  46869. }
  46870. #else
  46871. __ai uint32x4_t vcgezq_s32(int32x4_t __p0) {
  46872. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  46873. uint32x4_t __ret;
  46874. __ret = (uint32x4_t) __builtin_neon_vcgezq_v((int8x16_t)__rev0, 50);
  46875. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  46876. return __ret;
  46877. }
  46878. #endif
  46879. #ifdef __LITTLE_ENDIAN__
  46880. __ai uint64x2_t vcgezq_s64(int64x2_t __p0) {
  46881. uint64x2_t __ret;
  46882. __ret = (uint64x2_t) __builtin_neon_vcgezq_v((int8x16_t)__p0, 51);
  46883. return __ret;
  46884. }
  46885. #else
  46886. __ai uint64x2_t vcgezq_s64(int64x2_t __p0) {
  46887. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  46888. uint64x2_t __ret;
  46889. __ret = (uint64x2_t) __builtin_neon_vcgezq_v((int8x16_t)__rev0, 51);
  46890. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  46891. return __ret;
  46892. }
  46893. #endif
  46894. #ifdef __LITTLE_ENDIAN__
  46895. __ai uint16x8_t vcgezq_s16(int16x8_t __p0) {
  46896. uint16x8_t __ret;
  46897. __ret = (uint16x8_t) __builtin_neon_vcgezq_v((int8x16_t)__p0, 49);
  46898. return __ret;
  46899. }
  46900. #else
  46901. __ai uint16x8_t vcgezq_s16(int16x8_t __p0) {
  46902. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  46903. uint16x8_t __ret;
  46904. __ret = (uint16x8_t) __builtin_neon_vcgezq_v((int8x16_t)__rev0, 49);
  46905. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  46906. return __ret;
  46907. }
  46908. #endif
  46909. #ifdef __LITTLE_ENDIAN__
  46910. __ai uint8x8_t vcgez_s8(int8x8_t __p0) {
  46911. uint8x8_t __ret;
  46912. __ret = (uint8x8_t) __builtin_neon_vcgez_v((int8x8_t)__p0, 16);
  46913. return __ret;
  46914. }
  46915. #else
  46916. __ai uint8x8_t vcgez_s8(int8x8_t __p0) {
  46917. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  46918. uint8x8_t __ret;
  46919. __ret = (uint8x8_t) __builtin_neon_vcgez_v((int8x8_t)__rev0, 16);
  46920. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  46921. return __ret;
  46922. }
  46923. #endif
  46924. #ifdef __LITTLE_ENDIAN__
  46925. __ai uint64x1_t vcgez_f64(float64x1_t __p0) {
  46926. uint64x1_t __ret;
  46927. __ret = (uint64x1_t) __builtin_neon_vcgez_v((int8x8_t)__p0, 19);
  46928. return __ret;
  46929. }
  46930. #else
  46931. __ai uint64x1_t vcgez_f64(float64x1_t __p0) {
  46932. uint64x1_t __ret;
  46933. __ret = (uint64x1_t) __builtin_neon_vcgez_v((int8x8_t)__p0, 19);
  46934. return __ret;
  46935. }
  46936. #endif
  46937. #ifdef __LITTLE_ENDIAN__
  46938. __ai uint32x2_t vcgez_f32(float32x2_t __p0) {
  46939. uint32x2_t __ret;
  46940. __ret = (uint32x2_t) __builtin_neon_vcgez_v((int8x8_t)__p0, 18);
  46941. return __ret;
  46942. }
  46943. #else
  46944. __ai uint32x2_t vcgez_f32(float32x2_t __p0) {
  46945. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  46946. uint32x2_t __ret;
  46947. __ret = (uint32x2_t) __builtin_neon_vcgez_v((int8x8_t)__rev0, 18);
  46948. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  46949. return __ret;
  46950. }
  46951. #endif
  46952. #ifdef __LITTLE_ENDIAN__
  46953. __ai uint32x2_t vcgez_s32(int32x2_t __p0) {
  46954. uint32x2_t __ret;
  46955. __ret = (uint32x2_t) __builtin_neon_vcgez_v((int8x8_t)__p0, 18);
  46956. return __ret;
  46957. }
  46958. #else
  46959. __ai uint32x2_t vcgez_s32(int32x2_t __p0) {
  46960. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  46961. uint32x2_t __ret;
  46962. __ret = (uint32x2_t) __builtin_neon_vcgez_v((int8x8_t)__rev0, 18);
  46963. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  46964. return __ret;
  46965. }
  46966. #endif
  46967. #ifdef __LITTLE_ENDIAN__
  46968. __ai uint64x1_t vcgez_s64(int64x1_t __p0) {
  46969. uint64x1_t __ret;
  46970. __ret = (uint64x1_t) __builtin_neon_vcgez_v((int8x8_t)__p0, 19);
  46971. return __ret;
  46972. }
  46973. #else
  46974. __ai uint64x1_t vcgez_s64(int64x1_t __p0) {
  46975. uint64x1_t __ret;
  46976. __ret = (uint64x1_t) __builtin_neon_vcgez_v((int8x8_t)__p0, 19);
  46977. return __ret;
  46978. }
  46979. #endif
  46980. #ifdef __LITTLE_ENDIAN__
  46981. __ai uint16x4_t vcgez_s16(int16x4_t __p0) {
  46982. uint16x4_t __ret;
  46983. __ret = (uint16x4_t) __builtin_neon_vcgez_v((int8x8_t)__p0, 17);
  46984. return __ret;
  46985. }
  46986. #else
  46987. __ai uint16x4_t vcgez_s16(int16x4_t __p0) {
  46988. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  46989. uint16x4_t __ret;
  46990. __ret = (uint16x4_t) __builtin_neon_vcgez_v((int8x8_t)__rev0, 17);
  46991. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  46992. return __ret;
  46993. }
  46994. #endif
  46995. #ifdef __LITTLE_ENDIAN__
  46996. __ai int64_t vcgezd_s64(int64_t __p0) {
  46997. int64_t __ret;
  46998. __ret = (int64_t) __builtin_neon_vcgezd_s64(__p0);
  46999. return __ret;
  47000. }
  47001. #else
  47002. __ai int64_t vcgezd_s64(int64_t __p0) {
  47003. int64_t __ret;
  47004. __ret = (int64_t) __builtin_neon_vcgezd_s64(__p0);
  47005. return __ret;
  47006. }
  47007. #endif
  47008. #ifdef __LITTLE_ENDIAN__
  47009. __ai uint64_t vcgezd_f64(float64_t __p0) {
  47010. uint64_t __ret;
  47011. __ret = (uint64_t) __builtin_neon_vcgezd_f64(__p0);
  47012. return __ret;
  47013. }
  47014. #else
  47015. __ai uint64_t vcgezd_f64(float64_t __p0) {
  47016. uint64_t __ret;
  47017. __ret = (uint64_t) __builtin_neon_vcgezd_f64(__p0);
  47018. return __ret;
  47019. }
  47020. #endif
  47021. #ifdef __LITTLE_ENDIAN__
  47022. __ai uint32_t vcgezs_f32(float32_t __p0) {
  47023. uint32_t __ret;
  47024. __ret = (uint32_t) __builtin_neon_vcgezs_f32(__p0);
  47025. return __ret;
  47026. }
  47027. #else
  47028. __ai uint32_t vcgezs_f32(float32_t __p0) {
  47029. uint32_t __ret;
  47030. __ret = (uint32_t) __builtin_neon_vcgezs_f32(__p0);
  47031. return __ret;
  47032. }
  47033. #endif
  47034. #ifdef __LITTLE_ENDIAN__
  47035. __ai uint64x2_t vcgtq_u64(uint64x2_t __p0, uint64x2_t __p1) {
  47036. uint64x2_t __ret;
  47037. __ret = (uint64x2_t)(__p0 > __p1);
  47038. return __ret;
  47039. }
  47040. #else
  47041. __ai uint64x2_t vcgtq_u64(uint64x2_t __p0, uint64x2_t __p1) {
  47042. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  47043. uint64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  47044. uint64x2_t __ret;
  47045. __ret = (uint64x2_t)(__rev0 > __rev1);
  47046. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  47047. return __ret;
  47048. }
  47049. #endif
  47050. #ifdef __LITTLE_ENDIAN__
  47051. __ai uint64x2_t vcgtq_f64(float64x2_t __p0, float64x2_t __p1) {
  47052. uint64x2_t __ret;
  47053. __ret = (uint64x2_t)(__p0 > __p1);
  47054. return __ret;
  47055. }
  47056. #else
  47057. __ai uint64x2_t vcgtq_f64(float64x2_t __p0, float64x2_t __p1) {
  47058. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  47059. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  47060. uint64x2_t __ret;
  47061. __ret = (uint64x2_t)(__rev0 > __rev1);
  47062. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  47063. return __ret;
  47064. }
  47065. #endif
  47066. #ifdef __LITTLE_ENDIAN__
  47067. __ai uint64x2_t vcgtq_s64(int64x2_t __p0, int64x2_t __p1) {
  47068. uint64x2_t __ret;
  47069. __ret = (uint64x2_t)(__p0 > __p1);
  47070. return __ret;
  47071. }
  47072. #else
  47073. __ai uint64x2_t vcgtq_s64(int64x2_t __p0, int64x2_t __p1) {
  47074. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  47075. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  47076. uint64x2_t __ret;
  47077. __ret = (uint64x2_t)(__rev0 > __rev1);
  47078. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  47079. return __ret;
  47080. }
  47081. #endif
  47082. #ifdef __LITTLE_ENDIAN__
  47083. __ai uint64x1_t vcgt_u64(uint64x1_t __p0, uint64x1_t __p1) {
  47084. uint64x1_t __ret;
  47085. __ret = (uint64x1_t)(__p0 > __p1);
  47086. return __ret;
  47087. }
  47088. #else
  47089. __ai uint64x1_t vcgt_u64(uint64x1_t __p0, uint64x1_t __p1) {
  47090. uint64x1_t __ret;
  47091. __ret = (uint64x1_t)(__p0 > __p1);
  47092. return __ret;
  47093. }
  47094. #endif
  47095. #ifdef __LITTLE_ENDIAN__
  47096. __ai uint64x1_t vcgt_f64(float64x1_t __p0, float64x1_t __p1) {
  47097. uint64x1_t __ret;
  47098. __ret = (uint64x1_t)(__p0 > __p1);
  47099. return __ret;
  47100. }
  47101. #else
  47102. __ai uint64x1_t vcgt_f64(float64x1_t __p0, float64x1_t __p1) {
  47103. uint64x1_t __ret;
  47104. __ret = (uint64x1_t)(__p0 > __p1);
  47105. return __ret;
  47106. }
  47107. #endif
  47108. #ifdef __LITTLE_ENDIAN__
  47109. __ai uint64x1_t vcgt_s64(int64x1_t __p0, int64x1_t __p1) {
  47110. uint64x1_t __ret;
  47111. __ret = (uint64x1_t)(__p0 > __p1);
  47112. return __ret;
  47113. }
  47114. #else
  47115. __ai uint64x1_t vcgt_s64(int64x1_t __p0, int64x1_t __p1) {
  47116. uint64x1_t __ret;
  47117. __ret = (uint64x1_t)(__p0 > __p1);
  47118. return __ret;
  47119. }
  47120. #endif
  47121. #ifdef __LITTLE_ENDIAN__
  47122. __ai int64_t vcgtd_s64(int64_t __p0, int64_t __p1) {
  47123. int64_t __ret;
  47124. __ret = (int64_t) __builtin_neon_vcgtd_s64(__p0, __p1);
  47125. return __ret;
  47126. }
  47127. #else
  47128. __ai int64_t vcgtd_s64(int64_t __p0, int64_t __p1) {
  47129. int64_t __ret;
  47130. __ret = (int64_t) __builtin_neon_vcgtd_s64(__p0, __p1);
  47131. return __ret;
  47132. }
  47133. #endif
  47134. #ifdef __LITTLE_ENDIAN__
  47135. __ai uint64_t vcgtd_u64(uint64_t __p0, uint64_t __p1) {
  47136. uint64_t __ret;
  47137. __ret = (uint64_t) __builtin_neon_vcgtd_u64(__p0, __p1);
  47138. return __ret;
  47139. }
  47140. #else
  47141. __ai uint64_t vcgtd_u64(uint64_t __p0, uint64_t __p1) {
  47142. uint64_t __ret;
  47143. __ret = (uint64_t) __builtin_neon_vcgtd_u64(__p0, __p1);
  47144. return __ret;
  47145. }
  47146. #endif
  47147. #ifdef __LITTLE_ENDIAN__
  47148. __ai uint64_t vcgtd_f64(float64_t __p0, float64_t __p1) {
  47149. uint64_t __ret;
  47150. __ret = (uint64_t) __builtin_neon_vcgtd_f64(__p0, __p1);
  47151. return __ret;
  47152. }
  47153. #else
  47154. __ai uint64_t vcgtd_f64(float64_t __p0, float64_t __p1) {
  47155. uint64_t __ret;
  47156. __ret = (uint64_t) __builtin_neon_vcgtd_f64(__p0, __p1);
  47157. return __ret;
  47158. }
  47159. #endif
  47160. #ifdef __LITTLE_ENDIAN__
  47161. __ai uint32_t vcgts_f32(float32_t __p0, float32_t __p1) {
  47162. uint32_t __ret;
  47163. __ret = (uint32_t) __builtin_neon_vcgts_f32(__p0, __p1);
  47164. return __ret;
  47165. }
  47166. #else
  47167. __ai uint32_t vcgts_f32(float32_t __p0, float32_t __p1) {
  47168. uint32_t __ret;
  47169. __ret = (uint32_t) __builtin_neon_vcgts_f32(__p0, __p1);
  47170. return __ret;
  47171. }
  47172. #endif
  47173. #ifdef __LITTLE_ENDIAN__
  47174. __ai uint8x16_t vcgtzq_s8(int8x16_t __p0) {
  47175. uint8x16_t __ret;
  47176. __ret = (uint8x16_t) __builtin_neon_vcgtzq_v((int8x16_t)__p0, 48);
  47177. return __ret;
  47178. }
  47179. #else
  47180. __ai uint8x16_t vcgtzq_s8(int8x16_t __p0) {
  47181. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  47182. uint8x16_t __ret;
  47183. __ret = (uint8x16_t) __builtin_neon_vcgtzq_v((int8x16_t)__rev0, 48);
  47184. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  47185. return __ret;
  47186. }
  47187. #endif
  47188. #ifdef __LITTLE_ENDIAN__
  47189. __ai uint64x2_t vcgtzq_f64(float64x2_t __p0) {
  47190. uint64x2_t __ret;
  47191. __ret = (uint64x2_t) __builtin_neon_vcgtzq_v((int8x16_t)__p0, 51);
  47192. return __ret;
  47193. }
  47194. #else
  47195. __ai uint64x2_t vcgtzq_f64(float64x2_t __p0) {
  47196. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  47197. uint64x2_t __ret;
  47198. __ret = (uint64x2_t) __builtin_neon_vcgtzq_v((int8x16_t)__rev0, 51);
  47199. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  47200. return __ret;
  47201. }
  47202. #endif
  47203. #ifdef __LITTLE_ENDIAN__
  47204. __ai uint32x4_t vcgtzq_f32(float32x4_t __p0) {
  47205. uint32x4_t __ret;
  47206. __ret = (uint32x4_t) __builtin_neon_vcgtzq_v((int8x16_t)__p0, 50);
  47207. return __ret;
  47208. }
  47209. #else
  47210. __ai uint32x4_t vcgtzq_f32(float32x4_t __p0) {
  47211. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  47212. uint32x4_t __ret;
  47213. __ret = (uint32x4_t) __builtin_neon_vcgtzq_v((int8x16_t)__rev0, 50);
  47214. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  47215. return __ret;
  47216. }
  47217. #endif
  47218. #ifdef __LITTLE_ENDIAN__
  47219. __ai uint32x4_t vcgtzq_s32(int32x4_t __p0) {
  47220. uint32x4_t __ret;
  47221. __ret = (uint32x4_t) __builtin_neon_vcgtzq_v((int8x16_t)__p0, 50);
  47222. return __ret;
  47223. }
  47224. #else
  47225. __ai uint32x4_t vcgtzq_s32(int32x4_t __p0) {
  47226. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  47227. uint32x4_t __ret;
  47228. __ret = (uint32x4_t) __builtin_neon_vcgtzq_v((int8x16_t)__rev0, 50);
  47229. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  47230. return __ret;
  47231. }
  47232. #endif
  47233. #ifdef __LITTLE_ENDIAN__
  47234. __ai uint64x2_t vcgtzq_s64(int64x2_t __p0) {
  47235. uint64x2_t __ret;
  47236. __ret = (uint64x2_t) __builtin_neon_vcgtzq_v((int8x16_t)__p0, 51);
  47237. return __ret;
  47238. }
  47239. #else
  47240. __ai uint64x2_t vcgtzq_s64(int64x2_t __p0) {
  47241. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  47242. uint64x2_t __ret;
  47243. __ret = (uint64x2_t) __builtin_neon_vcgtzq_v((int8x16_t)__rev0, 51);
  47244. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  47245. return __ret;
  47246. }
  47247. #endif
  47248. #ifdef __LITTLE_ENDIAN__
  47249. __ai uint16x8_t vcgtzq_s16(int16x8_t __p0) {
  47250. uint16x8_t __ret;
  47251. __ret = (uint16x8_t) __builtin_neon_vcgtzq_v((int8x16_t)__p0, 49);
  47252. return __ret;
  47253. }
  47254. #else
  47255. __ai uint16x8_t vcgtzq_s16(int16x8_t __p0) {
  47256. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  47257. uint16x8_t __ret;
  47258. __ret = (uint16x8_t) __builtin_neon_vcgtzq_v((int8x16_t)__rev0, 49);
  47259. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  47260. return __ret;
  47261. }
  47262. #endif
  47263. #ifdef __LITTLE_ENDIAN__
  47264. __ai uint8x8_t vcgtz_s8(int8x8_t __p0) {
  47265. uint8x8_t __ret;
  47266. __ret = (uint8x8_t) __builtin_neon_vcgtz_v((int8x8_t)__p0, 16);
  47267. return __ret;
  47268. }
  47269. #else
  47270. __ai uint8x8_t vcgtz_s8(int8x8_t __p0) {
  47271. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  47272. uint8x8_t __ret;
  47273. __ret = (uint8x8_t) __builtin_neon_vcgtz_v((int8x8_t)__rev0, 16);
  47274. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  47275. return __ret;
  47276. }
  47277. #endif
  47278. #ifdef __LITTLE_ENDIAN__
  47279. __ai uint64x1_t vcgtz_f64(float64x1_t __p0) {
  47280. uint64x1_t __ret;
  47281. __ret = (uint64x1_t) __builtin_neon_vcgtz_v((int8x8_t)__p0, 19);
  47282. return __ret;
  47283. }
  47284. #else
  47285. __ai uint64x1_t vcgtz_f64(float64x1_t __p0) {
  47286. uint64x1_t __ret;
  47287. __ret = (uint64x1_t) __builtin_neon_vcgtz_v((int8x8_t)__p0, 19);
  47288. return __ret;
  47289. }
  47290. #endif
  47291. #ifdef __LITTLE_ENDIAN__
  47292. __ai uint32x2_t vcgtz_f32(float32x2_t __p0) {
  47293. uint32x2_t __ret;
  47294. __ret = (uint32x2_t) __builtin_neon_vcgtz_v((int8x8_t)__p0, 18);
  47295. return __ret;
  47296. }
  47297. #else
  47298. __ai uint32x2_t vcgtz_f32(float32x2_t __p0) {
  47299. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  47300. uint32x2_t __ret;
  47301. __ret = (uint32x2_t) __builtin_neon_vcgtz_v((int8x8_t)__rev0, 18);
  47302. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  47303. return __ret;
  47304. }
  47305. #endif
  47306. #ifdef __LITTLE_ENDIAN__
  47307. __ai uint32x2_t vcgtz_s32(int32x2_t __p0) {
  47308. uint32x2_t __ret;
  47309. __ret = (uint32x2_t) __builtin_neon_vcgtz_v((int8x8_t)__p0, 18);
  47310. return __ret;
  47311. }
  47312. #else
  47313. __ai uint32x2_t vcgtz_s32(int32x2_t __p0) {
  47314. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  47315. uint32x2_t __ret;
  47316. __ret = (uint32x2_t) __builtin_neon_vcgtz_v((int8x8_t)__rev0, 18);
  47317. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  47318. return __ret;
  47319. }
  47320. #endif
  47321. #ifdef __LITTLE_ENDIAN__
  47322. __ai uint64x1_t vcgtz_s64(int64x1_t __p0) {
  47323. uint64x1_t __ret;
  47324. __ret = (uint64x1_t) __builtin_neon_vcgtz_v((int8x8_t)__p0, 19);
  47325. return __ret;
  47326. }
  47327. #else
  47328. __ai uint64x1_t vcgtz_s64(int64x1_t __p0) {
  47329. uint64x1_t __ret;
  47330. __ret = (uint64x1_t) __builtin_neon_vcgtz_v((int8x8_t)__p0, 19);
  47331. return __ret;
  47332. }
  47333. #endif
  47334. #ifdef __LITTLE_ENDIAN__
  47335. __ai uint16x4_t vcgtz_s16(int16x4_t __p0) {
  47336. uint16x4_t __ret;
  47337. __ret = (uint16x4_t) __builtin_neon_vcgtz_v((int8x8_t)__p0, 17);
  47338. return __ret;
  47339. }
  47340. #else
  47341. __ai uint16x4_t vcgtz_s16(int16x4_t __p0) {
  47342. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  47343. uint16x4_t __ret;
  47344. __ret = (uint16x4_t) __builtin_neon_vcgtz_v((int8x8_t)__rev0, 17);
  47345. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  47346. return __ret;
  47347. }
  47348. #endif
  47349. #ifdef __LITTLE_ENDIAN__
  47350. __ai int64_t vcgtzd_s64(int64_t __p0) {
  47351. int64_t __ret;
  47352. __ret = (int64_t) __builtin_neon_vcgtzd_s64(__p0);
  47353. return __ret;
  47354. }
  47355. #else
  47356. __ai int64_t vcgtzd_s64(int64_t __p0) {
  47357. int64_t __ret;
  47358. __ret = (int64_t) __builtin_neon_vcgtzd_s64(__p0);
  47359. return __ret;
  47360. }
  47361. #endif
  47362. #ifdef __LITTLE_ENDIAN__
  47363. __ai uint64_t vcgtzd_f64(float64_t __p0) {
  47364. uint64_t __ret;
  47365. __ret = (uint64_t) __builtin_neon_vcgtzd_f64(__p0);
  47366. return __ret;
  47367. }
  47368. #else
  47369. __ai uint64_t vcgtzd_f64(float64_t __p0) {
  47370. uint64_t __ret;
  47371. __ret = (uint64_t) __builtin_neon_vcgtzd_f64(__p0);
  47372. return __ret;
  47373. }
  47374. #endif
  47375. #ifdef __LITTLE_ENDIAN__
  47376. __ai uint32_t vcgtzs_f32(float32_t __p0) {
  47377. uint32_t __ret;
  47378. __ret = (uint32_t) __builtin_neon_vcgtzs_f32(__p0);
  47379. return __ret;
  47380. }
  47381. #else
  47382. __ai uint32_t vcgtzs_f32(float32_t __p0) {
  47383. uint32_t __ret;
  47384. __ret = (uint32_t) __builtin_neon_vcgtzs_f32(__p0);
  47385. return __ret;
  47386. }
  47387. #endif
  47388. #ifdef __LITTLE_ENDIAN__
  47389. __ai uint64x2_t vcleq_u64(uint64x2_t __p0, uint64x2_t __p1) {
  47390. uint64x2_t __ret;
  47391. __ret = (uint64x2_t)(__p0 <= __p1);
  47392. return __ret;
  47393. }
  47394. #else
  47395. __ai uint64x2_t vcleq_u64(uint64x2_t __p0, uint64x2_t __p1) {
  47396. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  47397. uint64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  47398. uint64x2_t __ret;
  47399. __ret = (uint64x2_t)(__rev0 <= __rev1);
  47400. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  47401. return __ret;
  47402. }
  47403. #endif
  47404. #ifdef __LITTLE_ENDIAN__
  47405. __ai uint64x2_t vcleq_f64(float64x2_t __p0, float64x2_t __p1) {
  47406. uint64x2_t __ret;
  47407. __ret = (uint64x2_t)(__p0 <= __p1);
  47408. return __ret;
  47409. }
  47410. #else
  47411. __ai uint64x2_t vcleq_f64(float64x2_t __p0, float64x2_t __p1) {
  47412. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  47413. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  47414. uint64x2_t __ret;
  47415. __ret = (uint64x2_t)(__rev0 <= __rev1);
  47416. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  47417. return __ret;
  47418. }
  47419. #endif
  47420. #ifdef __LITTLE_ENDIAN__
  47421. __ai uint64x2_t vcleq_s64(int64x2_t __p0, int64x2_t __p1) {
  47422. uint64x2_t __ret;
  47423. __ret = (uint64x2_t)(__p0 <= __p1);
  47424. return __ret;
  47425. }
  47426. #else
  47427. __ai uint64x2_t vcleq_s64(int64x2_t __p0, int64x2_t __p1) {
  47428. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  47429. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  47430. uint64x2_t __ret;
  47431. __ret = (uint64x2_t)(__rev0 <= __rev1);
  47432. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  47433. return __ret;
  47434. }
  47435. #endif
  47436. #ifdef __LITTLE_ENDIAN__
  47437. __ai uint64x1_t vcle_u64(uint64x1_t __p0, uint64x1_t __p1) {
  47438. uint64x1_t __ret;
  47439. __ret = (uint64x1_t)(__p0 <= __p1);
  47440. return __ret;
  47441. }
  47442. #else
  47443. __ai uint64x1_t vcle_u64(uint64x1_t __p0, uint64x1_t __p1) {
  47444. uint64x1_t __ret;
  47445. __ret = (uint64x1_t)(__p0 <= __p1);
  47446. return __ret;
  47447. }
  47448. #endif
  47449. #ifdef __LITTLE_ENDIAN__
  47450. __ai uint64x1_t vcle_f64(float64x1_t __p0, float64x1_t __p1) {
  47451. uint64x1_t __ret;
  47452. __ret = (uint64x1_t)(__p0 <= __p1);
  47453. return __ret;
  47454. }
  47455. #else
  47456. __ai uint64x1_t vcle_f64(float64x1_t __p0, float64x1_t __p1) {
  47457. uint64x1_t __ret;
  47458. __ret = (uint64x1_t)(__p0 <= __p1);
  47459. return __ret;
  47460. }
  47461. #endif
  47462. #ifdef __LITTLE_ENDIAN__
  47463. __ai uint64x1_t vcle_s64(int64x1_t __p0, int64x1_t __p1) {
  47464. uint64x1_t __ret;
  47465. __ret = (uint64x1_t)(__p0 <= __p1);
  47466. return __ret;
  47467. }
  47468. #else
  47469. __ai uint64x1_t vcle_s64(int64x1_t __p0, int64x1_t __p1) {
  47470. uint64x1_t __ret;
  47471. __ret = (uint64x1_t)(__p0 <= __p1);
  47472. return __ret;
  47473. }
  47474. #endif
  47475. #ifdef __LITTLE_ENDIAN__
  47476. __ai uint64_t vcled_u64(uint64_t __p0, uint64_t __p1) {
  47477. uint64_t __ret;
  47478. __ret = (uint64_t) __builtin_neon_vcled_u64(__p0, __p1);
  47479. return __ret;
  47480. }
  47481. #else
  47482. __ai uint64_t vcled_u64(uint64_t __p0, uint64_t __p1) {
  47483. uint64_t __ret;
  47484. __ret = (uint64_t) __builtin_neon_vcled_u64(__p0, __p1);
  47485. return __ret;
  47486. }
  47487. #endif
  47488. #ifdef __LITTLE_ENDIAN__
  47489. __ai int64_t vcled_s64(int64_t __p0, int64_t __p1) {
  47490. int64_t __ret;
  47491. __ret = (int64_t) __builtin_neon_vcled_s64(__p0, __p1);
  47492. return __ret;
  47493. }
  47494. #else
  47495. __ai int64_t vcled_s64(int64_t __p0, int64_t __p1) {
  47496. int64_t __ret;
  47497. __ret = (int64_t) __builtin_neon_vcled_s64(__p0, __p1);
  47498. return __ret;
  47499. }
  47500. #endif
  47501. #ifdef __LITTLE_ENDIAN__
  47502. __ai uint64_t vcled_f64(float64_t __p0, float64_t __p1) {
  47503. uint64_t __ret;
  47504. __ret = (uint64_t) __builtin_neon_vcled_f64(__p0, __p1);
  47505. return __ret;
  47506. }
  47507. #else
  47508. __ai uint64_t vcled_f64(float64_t __p0, float64_t __p1) {
  47509. uint64_t __ret;
  47510. __ret = (uint64_t) __builtin_neon_vcled_f64(__p0, __p1);
  47511. return __ret;
  47512. }
  47513. #endif
  47514. #ifdef __LITTLE_ENDIAN__
  47515. __ai uint32_t vcles_f32(float32_t __p0, float32_t __p1) {
  47516. uint32_t __ret;
  47517. __ret = (uint32_t) __builtin_neon_vcles_f32(__p0, __p1);
  47518. return __ret;
  47519. }
  47520. #else
  47521. __ai uint32_t vcles_f32(float32_t __p0, float32_t __p1) {
  47522. uint32_t __ret;
  47523. __ret = (uint32_t) __builtin_neon_vcles_f32(__p0, __p1);
  47524. return __ret;
  47525. }
  47526. #endif
  47527. #ifdef __LITTLE_ENDIAN__
  47528. __ai uint8x16_t vclezq_s8(int8x16_t __p0) {
  47529. uint8x16_t __ret;
  47530. __ret = (uint8x16_t) __builtin_neon_vclezq_v((int8x16_t)__p0, 48);
  47531. return __ret;
  47532. }
  47533. #else
  47534. __ai uint8x16_t vclezq_s8(int8x16_t __p0) {
  47535. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  47536. uint8x16_t __ret;
  47537. __ret = (uint8x16_t) __builtin_neon_vclezq_v((int8x16_t)__rev0, 48);
  47538. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  47539. return __ret;
  47540. }
  47541. #endif
  47542. #ifdef __LITTLE_ENDIAN__
  47543. __ai uint64x2_t vclezq_f64(float64x2_t __p0) {
  47544. uint64x2_t __ret;
  47545. __ret = (uint64x2_t) __builtin_neon_vclezq_v((int8x16_t)__p0, 51);
  47546. return __ret;
  47547. }
  47548. #else
  47549. __ai uint64x2_t vclezq_f64(float64x2_t __p0) {
  47550. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  47551. uint64x2_t __ret;
  47552. __ret = (uint64x2_t) __builtin_neon_vclezq_v((int8x16_t)__rev0, 51);
  47553. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  47554. return __ret;
  47555. }
  47556. #endif
  47557. #ifdef __LITTLE_ENDIAN__
  47558. __ai uint32x4_t vclezq_f32(float32x4_t __p0) {
  47559. uint32x4_t __ret;
  47560. __ret = (uint32x4_t) __builtin_neon_vclezq_v((int8x16_t)__p0, 50);
  47561. return __ret;
  47562. }
  47563. #else
  47564. __ai uint32x4_t vclezq_f32(float32x4_t __p0) {
  47565. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  47566. uint32x4_t __ret;
  47567. __ret = (uint32x4_t) __builtin_neon_vclezq_v((int8x16_t)__rev0, 50);
  47568. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  47569. return __ret;
  47570. }
  47571. #endif
  47572. #ifdef __LITTLE_ENDIAN__
  47573. __ai uint32x4_t vclezq_s32(int32x4_t __p0) {
  47574. uint32x4_t __ret;
  47575. __ret = (uint32x4_t) __builtin_neon_vclezq_v((int8x16_t)__p0, 50);
  47576. return __ret;
  47577. }
  47578. #else
  47579. __ai uint32x4_t vclezq_s32(int32x4_t __p0) {
  47580. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  47581. uint32x4_t __ret;
  47582. __ret = (uint32x4_t) __builtin_neon_vclezq_v((int8x16_t)__rev0, 50);
  47583. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  47584. return __ret;
  47585. }
  47586. #endif
  47587. #ifdef __LITTLE_ENDIAN__
  47588. __ai uint64x2_t vclezq_s64(int64x2_t __p0) {
  47589. uint64x2_t __ret;
  47590. __ret = (uint64x2_t) __builtin_neon_vclezq_v((int8x16_t)__p0, 51);
  47591. return __ret;
  47592. }
  47593. #else
  47594. __ai uint64x2_t vclezq_s64(int64x2_t __p0) {
  47595. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  47596. uint64x2_t __ret;
  47597. __ret = (uint64x2_t) __builtin_neon_vclezq_v((int8x16_t)__rev0, 51);
  47598. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  47599. return __ret;
  47600. }
  47601. #endif
  47602. #ifdef __LITTLE_ENDIAN__
  47603. __ai uint16x8_t vclezq_s16(int16x8_t __p0) {
  47604. uint16x8_t __ret;
  47605. __ret = (uint16x8_t) __builtin_neon_vclezq_v((int8x16_t)__p0, 49);
  47606. return __ret;
  47607. }
  47608. #else
  47609. __ai uint16x8_t vclezq_s16(int16x8_t __p0) {
  47610. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  47611. uint16x8_t __ret;
  47612. __ret = (uint16x8_t) __builtin_neon_vclezq_v((int8x16_t)__rev0, 49);
  47613. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  47614. return __ret;
  47615. }
  47616. #endif
  47617. #ifdef __LITTLE_ENDIAN__
  47618. __ai uint8x8_t vclez_s8(int8x8_t __p0) {
  47619. uint8x8_t __ret;
  47620. __ret = (uint8x8_t) __builtin_neon_vclez_v((int8x8_t)__p0, 16);
  47621. return __ret;
  47622. }
  47623. #else
  47624. __ai uint8x8_t vclez_s8(int8x8_t __p0) {
  47625. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  47626. uint8x8_t __ret;
  47627. __ret = (uint8x8_t) __builtin_neon_vclez_v((int8x8_t)__rev0, 16);
  47628. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  47629. return __ret;
  47630. }
  47631. #endif
  47632. #ifdef __LITTLE_ENDIAN__
  47633. __ai uint64x1_t vclez_f64(float64x1_t __p0) {
  47634. uint64x1_t __ret;
  47635. __ret = (uint64x1_t) __builtin_neon_vclez_v((int8x8_t)__p0, 19);
  47636. return __ret;
  47637. }
  47638. #else
  47639. __ai uint64x1_t vclez_f64(float64x1_t __p0) {
  47640. uint64x1_t __ret;
  47641. __ret = (uint64x1_t) __builtin_neon_vclez_v((int8x8_t)__p0, 19);
  47642. return __ret;
  47643. }
  47644. #endif
  47645. #ifdef __LITTLE_ENDIAN__
  47646. __ai uint32x2_t vclez_f32(float32x2_t __p0) {
  47647. uint32x2_t __ret;
  47648. __ret = (uint32x2_t) __builtin_neon_vclez_v((int8x8_t)__p0, 18);
  47649. return __ret;
  47650. }
  47651. #else
  47652. __ai uint32x2_t vclez_f32(float32x2_t __p0) {
  47653. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  47654. uint32x2_t __ret;
  47655. __ret = (uint32x2_t) __builtin_neon_vclez_v((int8x8_t)__rev0, 18);
  47656. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  47657. return __ret;
  47658. }
  47659. #endif
  47660. #ifdef __LITTLE_ENDIAN__
  47661. __ai uint32x2_t vclez_s32(int32x2_t __p0) {
  47662. uint32x2_t __ret;
  47663. __ret = (uint32x2_t) __builtin_neon_vclez_v((int8x8_t)__p0, 18);
  47664. return __ret;
  47665. }
  47666. #else
  47667. __ai uint32x2_t vclez_s32(int32x2_t __p0) {
  47668. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  47669. uint32x2_t __ret;
  47670. __ret = (uint32x2_t) __builtin_neon_vclez_v((int8x8_t)__rev0, 18);
  47671. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  47672. return __ret;
  47673. }
  47674. #endif
  47675. #ifdef __LITTLE_ENDIAN__
  47676. __ai uint64x1_t vclez_s64(int64x1_t __p0) {
  47677. uint64x1_t __ret;
  47678. __ret = (uint64x1_t) __builtin_neon_vclez_v((int8x8_t)__p0, 19);
  47679. return __ret;
  47680. }
  47681. #else
  47682. __ai uint64x1_t vclez_s64(int64x1_t __p0) {
  47683. uint64x1_t __ret;
  47684. __ret = (uint64x1_t) __builtin_neon_vclez_v((int8x8_t)__p0, 19);
  47685. return __ret;
  47686. }
  47687. #endif
  47688. #ifdef __LITTLE_ENDIAN__
  47689. __ai uint16x4_t vclez_s16(int16x4_t __p0) {
  47690. uint16x4_t __ret;
  47691. __ret = (uint16x4_t) __builtin_neon_vclez_v((int8x8_t)__p0, 17);
  47692. return __ret;
  47693. }
  47694. #else
  47695. __ai uint16x4_t vclez_s16(int16x4_t __p0) {
  47696. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  47697. uint16x4_t __ret;
  47698. __ret = (uint16x4_t) __builtin_neon_vclez_v((int8x8_t)__rev0, 17);
  47699. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  47700. return __ret;
  47701. }
  47702. #endif
  47703. #ifdef __LITTLE_ENDIAN__
  47704. __ai int64_t vclezd_s64(int64_t __p0) {
  47705. int64_t __ret;
  47706. __ret = (int64_t) __builtin_neon_vclezd_s64(__p0);
  47707. return __ret;
  47708. }
  47709. #else
  47710. __ai int64_t vclezd_s64(int64_t __p0) {
  47711. int64_t __ret;
  47712. __ret = (int64_t) __builtin_neon_vclezd_s64(__p0);
  47713. return __ret;
  47714. }
  47715. #endif
  47716. #ifdef __LITTLE_ENDIAN__
  47717. __ai uint64_t vclezd_f64(float64_t __p0) {
  47718. uint64_t __ret;
  47719. __ret = (uint64_t) __builtin_neon_vclezd_f64(__p0);
  47720. return __ret;
  47721. }
  47722. #else
  47723. __ai uint64_t vclezd_f64(float64_t __p0) {
  47724. uint64_t __ret;
  47725. __ret = (uint64_t) __builtin_neon_vclezd_f64(__p0);
  47726. return __ret;
  47727. }
  47728. #endif
  47729. #ifdef __LITTLE_ENDIAN__
  47730. __ai uint32_t vclezs_f32(float32_t __p0) {
  47731. uint32_t __ret;
  47732. __ret = (uint32_t) __builtin_neon_vclezs_f32(__p0);
  47733. return __ret;
  47734. }
  47735. #else
  47736. __ai uint32_t vclezs_f32(float32_t __p0) {
  47737. uint32_t __ret;
  47738. __ret = (uint32_t) __builtin_neon_vclezs_f32(__p0);
  47739. return __ret;
  47740. }
  47741. #endif
  47742. #ifdef __LITTLE_ENDIAN__
  47743. __ai uint64x2_t vcltq_u64(uint64x2_t __p0, uint64x2_t __p1) {
  47744. uint64x2_t __ret;
  47745. __ret = (uint64x2_t)(__p0 < __p1);
  47746. return __ret;
  47747. }
  47748. #else
  47749. __ai uint64x2_t vcltq_u64(uint64x2_t __p0, uint64x2_t __p1) {
  47750. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  47751. uint64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  47752. uint64x2_t __ret;
  47753. __ret = (uint64x2_t)(__rev0 < __rev1);
  47754. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  47755. return __ret;
  47756. }
  47757. #endif
  47758. #ifdef __LITTLE_ENDIAN__
  47759. __ai uint64x2_t vcltq_f64(float64x2_t __p0, float64x2_t __p1) {
  47760. uint64x2_t __ret;
  47761. __ret = (uint64x2_t)(__p0 < __p1);
  47762. return __ret;
  47763. }
  47764. #else
  47765. __ai uint64x2_t vcltq_f64(float64x2_t __p0, float64x2_t __p1) {
  47766. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  47767. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  47768. uint64x2_t __ret;
  47769. __ret = (uint64x2_t)(__rev0 < __rev1);
  47770. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  47771. return __ret;
  47772. }
  47773. #endif
  47774. #ifdef __LITTLE_ENDIAN__
  47775. __ai uint64x2_t vcltq_s64(int64x2_t __p0, int64x2_t __p1) {
  47776. uint64x2_t __ret;
  47777. __ret = (uint64x2_t)(__p0 < __p1);
  47778. return __ret;
  47779. }
  47780. #else
  47781. __ai uint64x2_t vcltq_s64(int64x2_t __p0, int64x2_t __p1) {
  47782. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  47783. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  47784. uint64x2_t __ret;
  47785. __ret = (uint64x2_t)(__rev0 < __rev1);
  47786. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  47787. return __ret;
  47788. }
  47789. #endif
  47790. #ifdef __LITTLE_ENDIAN__
  47791. __ai uint64x1_t vclt_u64(uint64x1_t __p0, uint64x1_t __p1) {
  47792. uint64x1_t __ret;
  47793. __ret = (uint64x1_t)(__p0 < __p1);
  47794. return __ret;
  47795. }
  47796. #else
  47797. __ai uint64x1_t vclt_u64(uint64x1_t __p0, uint64x1_t __p1) {
  47798. uint64x1_t __ret;
  47799. __ret = (uint64x1_t)(__p0 < __p1);
  47800. return __ret;
  47801. }
  47802. #endif
  47803. #ifdef __LITTLE_ENDIAN__
  47804. __ai uint64x1_t vclt_f64(float64x1_t __p0, float64x1_t __p1) {
  47805. uint64x1_t __ret;
  47806. __ret = (uint64x1_t)(__p0 < __p1);
  47807. return __ret;
  47808. }
  47809. #else
  47810. __ai uint64x1_t vclt_f64(float64x1_t __p0, float64x1_t __p1) {
  47811. uint64x1_t __ret;
  47812. __ret = (uint64x1_t)(__p0 < __p1);
  47813. return __ret;
  47814. }
  47815. #endif
  47816. #ifdef __LITTLE_ENDIAN__
  47817. __ai uint64x1_t vclt_s64(int64x1_t __p0, int64x1_t __p1) {
  47818. uint64x1_t __ret;
  47819. __ret = (uint64x1_t)(__p0 < __p1);
  47820. return __ret;
  47821. }
  47822. #else
  47823. __ai uint64x1_t vclt_s64(int64x1_t __p0, int64x1_t __p1) {
  47824. uint64x1_t __ret;
  47825. __ret = (uint64x1_t)(__p0 < __p1);
  47826. return __ret;
  47827. }
  47828. #endif
  47829. #ifdef __LITTLE_ENDIAN__
  47830. __ai uint64_t vcltd_u64(uint64_t __p0, uint64_t __p1) {
  47831. uint64_t __ret;
  47832. __ret = (uint64_t) __builtin_neon_vcltd_u64(__p0, __p1);
  47833. return __ret;
  47834. }
  47835. #else
  47836. __ai uint64_t vcltd_u64(uint64_t __p0, uint64_t __p1) {
  47837. uint64_t __ret;
  47838. __ret = (uint64_t) __builtin_neon_vcltd_u64(__p0, __p1);
  47839. return __ret;
  47840. }
  47841. #endif
  47842. #ifdef __LITTLE_ENDIAN__
  47843. __ai int64_t vcltd_s64(int64_t __p0, int64_t __p1) {
  47844. int64_t __ret;
  47845. __ret = (int64_t) __builtin_neon_vcltd_s64(__p0, __p1);
  47846. return __ret;
  47847. }
  47848. #else
  47849. __ai int64_t vcltd_s64(int64_t __p0, int64_t __p1) {
  47850. int64_t __ret;
  47851. __ret = (int64_t) __builtin_neon_vcltd_s64(__p0, __p1);
  47852. return __ret;
  47853. }
  47854. #endif
  47855. #ifdef __LITTLE_ENDIAN__
  47856. __ai uint64_t vcltd_f64(float64_t __p0, float64_t __p1) {
  47857. uint64_t __ret;
  47858. __ret = (uint64_t) __builtin_neon_vcltd_f64(__p0, __p1);
  47859. return __ret;
  47860. }
  47861. #else
  47862. __ai uint64_t vcltd_f64(float64_t __p0, float64_t __p1) {
  47863. uint64_t __ret;
  47864. __ret = (uint64_t) __builtin_neon_vcltd_f64(__p0, __p1);
  47865. return __ret;
  47866. }
  47867. #endif
  47868. #ifdef __LITTLE_ENDIAN__
  47869. __ai uint32_t vclts_f32(float32_t __p0, float32_t __p1) {
  47870. uint32_t __ret;
  47871. __ret = (uint32_t) __builtin_neon_vclts_f32(__p0, __p1);
  47872. return __ret;
  47873. }
  47874. #else
  47875. __ai uint32_t vclts_f32(float32_t __p0, float32_t __p1) {
  47876. uint32_t __ret;
  47877. __ret = (uint32_t) __builtin_neon_vclts_f32(__p0, __p1);
  47878. return __ret;
  47879. }
  47880. #endif
  47881. #ifdef __LITTLE_ENDIAN__
  47882. __ai uint8x16_t vcltzq_s8(int8x16_t __p0) {
  47883. uint8x16_t __ret;
  47884. __ret = (uint8x16_t) __builtin_neon_vcltzq_v((int8x16_t)__p0, 48);
  47885. return __ret;
  47886. }
  47887. #else
  47888. __ai uint8x16_t vcltzq_s8(int8x16_t __p0) {
  47889. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  47890. uint8x16_t __ret;
  47891. __ret = (uint8x16_t) __builtin_neon_vcltzq_v((int8x16_t)__rev0, 48);
  47892. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  47893. return __ret;
  47894. }
  47895. #endif
  47896. #ifdef __LITTLE_ENDIAN__
  47897. __ai uint64x2_t vcltzq_f64(float64x2_t __p0) {
  47898. uint64x2_t __ret;
  47899. __ret = (uint64x2_t) __builtin_neon_vcltzq_v((int8x16_t)__p0, 51);
  47900. return __ret;
  47901. }
  47902. #else
  47903. __ai uint64x2_t vcltzq_f64(float64x2_t __p0) {
  47904. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  47905. uint64x2_t __ret;
  47906. __ret = (uint64x2_t) __builtin_neon_vcltzq_v((int8x16_t)__rev0, 51);
  47907. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  47908. return __ret;
  47909. }
  47910. #endif
  47911. #ifdef __LITTLE_ENDIAN__
  47912. __ai uint32x4_t vcltzq_f32(float32x4_t __p0) {
  47913. uint32x4_t __ret;
  47914. __ret = (uint32x4_t) __builtin_neon_vcltzq_v((int8x16_t)__p0, 50);
  47915. return __ret;
  47916. }
  47917. #else
  47918. __ai uint32x4_t vcltzq_f32(float32x4_t __p0) {
  47919. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  47920. uint32x4_t __ret;
  47921. __ret = (uint32x4_t) __builtin_neon_vcltzq_v((int8x16_t)__rev0, 50);
  47922. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  47923. return __ret;
  47924. }
  47925. #endif
  47926. #ifdef __LITTLE_ENDIAN__
  47927. __ai uint32x4_t vcltzq_s32(int32x4_t __p0) {
  47928. uint32x4_t __ret;
  47929. __ret = (uint32x4_t) __builtin_neon_vcltzq_v((int8x16_t)__p0, 50);
  47930. return __ret;
  47931. }
  47932. #else
  47933. __ai uint32x4_t vcltzq_s32(int32x4_t __p0) {
  47934. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  47935. uint32x4_t __ret;
  47936. __ret = (uint32x4_t) __builtin_neon_vcltzq_v((int8x16_t)__rev0, 50);
  47937. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  47938. return __ret;
  47939. }
  47940. #endif
  47941. #ifdef __LITTLE_ENDIAN__
  47942. __ai uint64x2_t vcltzq_s64(int64x2_t __p0) {
  47943. uint64x2_t __ret;
  47944. __ret = (uint64x2_t) __builtin_neon_vcltzq_v((int8x16_t)__p0, 51);
  47945. return __ret;
  47946. }
  47947. #else
  47948. __ai uint64x2_t vcltzq_s64(int64x2_t __p0) {
  47949. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  47950. uint64x2_t __ret;
  47951. __ret = (uint64x2_t) __builtin_neon_vcltzq_v((int8x16_t)__rev0, 51);
  47952. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  47953. return __ret;
  47954. }
  47955. #endif
  47956. #ifdef __LITTLE_ENDIAN__
  47957. __ai uint16x8_t vcltzq_s16(int16x8_t __p0) {
  47958. uint16x8_t __ret;
  47959. __ret = (uint16x8_t) __builtin_neon_vcltzq_v((int8x16_t)__p0, 49);
  47960. return __ret;
  47961. }
  47962. #else
  47963. __ai uint16x8_t vcltzq_s16(int16x8_t __p0) {
  47964. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  47965. uint16x8_t __ret;
  47966. __ret = (uint16x8_t) __builtin_neon_vcltzq_v((int8x16_t)__rev0, 49);
  47967. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  47968. return __ret;
  47969. }
  47970. #endif
  47971. #ifdef __LITTLE_ENDIAN__
  47972. __ai uint8x8_t vcltz_s8(int8x8_t __p0) {
  47973. uint8x8_t __ret;
  47974. __ret = (uint8x8_t) __builtin_neon_vcltz_v((int8x8_t)__p0, 16);
  47975. return __ret;
  47976. }
  47977. #else
  47978. __ai uint8x8_t vcltz_s8(int8x8_t __p0) {
  47979. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  47980. uint8x8_t __ret;
  47981. __ret = (uint8x8_t) __builtin_neon_vcltz_v((int8x8_t)__rev0, 16);
  47982. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  47983. return __ret;
  47984. }
  47985. #endif
  47986. #ifdef __LITTLE_ENDIAN__
  47987. __ai uint64x1_t vcltz_f64(float64x1_t __p0) {
  47988. uint64x1_t __ret;
  47989. __ret = (uint64x1_t) __builtin_neon_vcltz_v((int8x8_t)__p0, 19);
  47990. return __ret;
  47991. }
  47992. #else
  47993. __ai uint64x1_t vcltz_f64(float64x1_t __p0) {
  47994. uint64x1_t __ret;
  47995. __ret = (uint64x1_t) __builtin_neon_vcltz_v((int8x8_t)__p0, 19);
  47996. return __ret;
  47997. }
  47998. #endif
  47999. #ifdef __LITTLE_ENDIAN__
  48000. __ai uint32x2_t vcltz_f32(float32x2_t __p0) {
  48001. uint32x2_t __ret;
  48002. __ret = (uint32x2_t) __builtin_neon_vcltz_v((int8x8_t)__p0, 18);
  48003. return __ret;
  48004. }
  48005. #else
  48006. __ai uint32x2_t vcltz_f32(float32x2_t __p0) {
  48007. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  48008. uint32x2_t __ret;
  48009. __ret = (uint32x2_t) __builtin_neon_vcltz_v((int8x8_t)__rev0, 18);
  48010. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  48011. return __ret;
  48012. }
  48013. #endif
  48014. #ifdef __LITTLE_ENDIAN__
  48015. __ai uint32x2_t vcltz_s32(int32x2_t __p0) {
  48016. uint32x2_t __ret;
  48017. __ret = (uint32x2_t) __builtin_neon_vcltz_v((int8x8_t)__p0, 18);
  48018. return __ret;
  48019. }
  48020. #else
  48021. __ai uint32x2_t vcltz_s32(int32x2_t __p0) {
  48022. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  48023. uint32x2_t __ret;
  48024. __ret = (uint32x2_t) __builtin_neon_vcltz_v((int8x8_t)__rev0, 18);
  48025. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  48026. return __ret;
  48027. }
  48028. #endif
  48029. #ifdef __LITTLE_ENDIAN__
  48030. __ai uint64x1_t vcltz_s64(int64x1_t __p0) {
  48031. uint64x1_t __ret;
  48032. __ret = (uint64x1_t) __builtin_neon_vcltz_v((int8x8_t)__p0, 19);
  48033. return __ret;
  48034. }
  48035. #else
  48036. __ai uint64x1_t vcltz_s64(int64x1_t __p0) {
  48037. uint64x1_t __ret;
  48038. __ret = (uint64x1_t) __builtin_neon_vcltz_v((int8x8_t)__p0, 19);
  48039. return __ret;
  48040. }
  48041. #endif
  48042. #ifdef __LITTLE_ENDIAN__
  48043. __ai uint16x4_t vcltz_s16(int16x4_t __p0) {
  48044. uint16x4_t __ret;
  48045. __ret = (uint16x4_t) __builtin_neon_vcltz_v((int8x8_t)__p0, 17);
  48046. return __ret;
  48047. }
  48048. #else
  48049. __ai uint16x4_t vcltz_s16(int16x4_t __p0) {
  48050. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  48051. uint16x4_t __ret;
  48052. __ret = (uint16x4_t) __builtin_neon_vcltz_v((int8x8_t)__rev0, 17);
  48053. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  48054. return __ret;
  48055. }
  48056. #endif
  48057. #ifdef __LITTLE_ENDIAN__
  48058. __ai int64_t vcltzd_s64(int64_t __p0) {
  48059. int64_t __ret;
  48060. __ret = (int64_t) __builtin_neon_vcltzd_s64(__p0);
  48061. return __ret;
  48062. }
  48063. #else
  48064. __ai int64_t vcltzd_s64(int64_t __p0) {
  48065. int64_t __ret;
  48066. __ret = (int64_t) __builtin_neon_vcltzd_s64(__p0);
  48067. return __ret;
  48068. }
  48069. #endif
  48070. #ifdef __LITTLE_ENDIAN__
  48071. __ai uint64_t vcltzd_f64(float64_t __p0) {
  48072. uint64_t __ret;
  48073. __ret = (uint64_t) __builtin_neon_vcltzd_f64(__p0);
  48074. return __ret;
  48075. }
  48076. #else
  48077. __ai uint64_t vcltzd_f64(float64_t __p0) {
  48078. uint64_t __ret;
  48079. __ret = (uint64_t) __builtin_neon_vcltzd_f64(__p0);
  48080. return __ret;
  48081. }
  48082. #endif
  48083. #ifdef __LITTLE_ENDIAN__
  48084. __ai uint32_t vcltzs_f32(float32_t __p0) {
  48085. uint32_t __ret;
  48086. __ret = (uint32_t) __builtin_neon_vcltzs_f32(__p0);
  48087. return __ret;
  48088. }
  48089. #else
  48090. __ai uint32_t vcltzs_f32(float32_t __p0) {
  48091. uint32_t __ret;
  48092. __ret = (uint32_t) __builtin_neon_vcltzs_f32(__p0);
  48093. return __ret;
  48094. }
  48095. #endif
  48096. #ifdef __LITTLE_ENDIAN__
  48097. __ai poly64x2_t vcombine_p64(poly64x1_t __p0, poly64x1_t __p1) {
  48098. poly64x2_t __ret;
  48099. __ret = __builtin_shufflevector(__p0, __p1, 0, 1);
  48100. return __ret;
  48101. }
  48102. #else
  48103. __ai poly64x2_t vcombine_p64(poly64x1_t __p0, poly64x1_t __p1) {
  48104. poly64x2_t __ret;
  48105. __ret = __builtin_shufflevector(__p0, __p1, 0, 1);
  48106. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  48107. return __ret;
  48108. }
  48109. #endif
  48110. #ifdef __LITTLE_ENDIAN__
  48111. __ai float64x2_t vcombine_f64(float64x1_t __p0, float64x1_t __p1) {
  48112. float64x2_t __ret;
  48113. __ret = __builtin_shufflevector(__p0, __p1, 0, 1);
  48114. return __ret;
  48115. }
  48116. #else
  48117. __ai float64x2_t vcombine_f64(float64x1_t __p0, float64x1_t __p1) {
  48118. float64x2_t __ret;
  48119. __ret = __builtin_shufflevector(__p0, __p1, 0, 1);
  48120. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  48121. return __ret;
  48122. }
  48123. #endif
  48124. #ifdef __LITTLE_ENDIAN__
  48125. #define vcopyq_lane_p8(__p0_12, __p1_12, __p2_12, __p3_12) __extension__ ({ \
  48126. poly8x16_t __s0_12 = __p0_12; \
  48127. poly8x8_t __s2_12 = __p2_12; \
  48128. poly8x16_t __ret_12; \
  48129. __ret_12 = vsetq_lane_p8(vget_lane_p8(__s2_12, __p3_12), __s0_12, __p1_12); \
  48130. __ret_12; \
  48131. })
  48132. #else
  48133. #define vcopyq_lane_p8(__p0_13, __p1_13, __p2_13, __p3_13) __extension__ ({ \
  48134. poly8x16_t __s0_13 = __p0_13; \
  48135. poly8x8_t __s2_13 = __p2_13; \
  48136. poly8x16_t __rev0_13; __rev0_13 = __builtin_shufflevector(__s0_13, __s0_13, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  48137. poly8x8_t __rev2_13; __rev2_13 = __builtin_shufflevector(__s2_13, __s2_13, 7, 6, 5, 4, 3, 2, 1, 0); \
  48138. poly8x16_t __ret_13; \
  48139. __ret_13 = __noswap_vsetq_lane_p8(__noswap_vget_lane_p8(__rev2_13, __p3_13), __rev0_13, __p1_13); \
  48140. __ret_13 = __builtin_shufflevector(__ret_13, __ret_13, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  48141. __ret_13; \
  48142. })
  48143. #endif
  48144. #ifdef __LITTLE_ENDIAN__
  48145. #define vcopyq_lane_p16(__p0_14, __p1_14, __p2_14, __p3_14) __extension__ ({ \
  48146. poly16x8_t __s0_14 = __p0_14; \
  48147. poly16x4_t __s2_14 = __p2_14; \
  48148. poly16x8_t __ret_14; \
  48149. __ret_14 = vsetq_lane_p16(vget_lane_p16(__s2_14, __p3_14), __s0_14, __p1_14); \
  48150. __ret_14; \
  48151. })
  48152. #else
  48153. #define vcopyq_lane_p16(__p0_15, __p1_15, __p2_15, __p3_15) __extension__ ({ \
  48154. poly16x8_t __s0_15 = __p0_15; \
  48155. poly16x4_t __s2_15 = __p2_15; \
  48156. poly16x8_t __rev0_15; __rev0_15 = __builtin_shufflevector(__s0_15, __s0_15, 7, 6, 5, 4, 3, 2, 1, 0); \
  48157. poly16x4_t __rev2_15; __rev2_15 = __builtin_shufflevector(__s2_15, __s2_15, 3, 2, 1, 0); \
  48158. poly16x8_t __ret_15; \
  48159. __ret_15 = __noswap_vsetq_lane_p16(__noswap_vget_lane_p16(__rev2_15, __p3_15), __rev0_15, __p1_15); \
  48160. __ret_15 = __builtin_shufflevector(__ret_15, __ret_15, 7, 6, 5, 4, 3, 2, 1, 0); \
  48161. __ret_15; \
  48162. })
  48163. #endif
  48164. #ifdef __LITTLE_ENDIAN__
  48165. #define vcopyq_lane_u8(__p0_16, __p1_16, __p2_16, __p3_16) __extension__ ({ \
  48166. uint8x16_t __s0_16 = __p0_16; \
  48167. uint8x8_t __s2_16 = __p2_16; \
  48168. uint8x16_t __ret_16; \
  48169. __ret_16 = vsetq_lane_u8(vget_lane_u8(__s2_16, __p3_16), __s0_16, __p1_16); \
  48170. __ret_16; \
  48171. })
  48172. #else
  48173. #define vcopyq_lane_u8(__p0_17, __p1_17, __p2_17, __p3_17) __extension__ ({ \
  48174. uint8x16_t __s0_17 = __p0_17; \
  48175. uint8x8_t __s2_17 = __p2_17; \
  48176. uint8x16_t __rev0_17; __rev0_17 = __builtin_shufflevector(__s0_17, __s0_17, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  48177. uint8x8_t __rev2_17; __rev2_17 = __builtin_shufflevector(__s2_17, __s2_17, 7, 6, 5, 4, 3, 2, 1, 0); \
  48178. uint8x16_t __ret_17; \
  48179. __ret_17 = __noswap_vsetq_lane_u8(__noswap_vget_lane_u8(__rev2_17, __p3_17), __rev0_17, __p1_17); \
  48180. __ret_17 = __builtin_shufflevector(__ret_17, __ret_17, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  48181. __ret_17; \
  48182. })
  48183. #endif
  48184. #ifdef __LITTLE_ENDIAN__
  48185. #define vcopyq_lane_u32(__p0_18, __p1_18, __p2_18, __p3_18) __extension__ ({ \
  48186. uint32x4_t __s0_18 = __p0_18; \
  48187. uint32x2_t __s2_18 = __p2_18; \
  48188. uint32x4_t __ret_18; \
  48189. __ret_18 = vsetq_lane_u32(vget_lane_u32(__s2_18, __p3_18), __s0_18, __p1_18); \
  48190. __ret_18; \
  48191. })
  48192. #else
  48193. #define vcopyq_lane_u32(__p0_19, __p1_19, __p2_19, __p3_19) __extension__ ({ \
  48194. uint32x4_t __s0_19 = __p0_19; \
  48195. uint32x2_t __s2_19 = __p2_19; \
  48196. uint32x4_t __rev0_19; __rev0_19 = __builtin_shufflevector(__s0_19, __s0_19, 3, 2, 1, 0); \
  48197. uint32x2_t __rev2_19; __rev2_19 = __builtin_shufflevector(__s2_19, __s2_19, 1, 0); \
  48198. uint32x4_t __ret_19; \
  48199. __ret_19 = __noswap_vsetq_lane_u32(__noswap_vget_lane_u32(__rev2_19, __p3_19), __rev0_19, __p1_19); \
  48200. __ret_19 = __builtin_shufflevector(__ret_19, __ret_19, 3, 2, 1, 0); \
  48201. __ret_19; \
  48202. })
  48203. #endif
  48204. #ifdef __LITTLE_ENDIAN__
  48205. #define vcopyq_lane_u64(__p0_20, __p1_20, __p2_20, __p3_20) __extension__ ({ \
  48206. uint64x2_t __s0_20 = __p0_20; \
  48207. uint64x1_t __s2_20 = __p2_20; \
  48208. uint64x2_t __ret_20; \
  48209. __ret_20 = vsetq_lane_u64(vget_lane_u64(__s2_20, __p3_20), __s0_20, __p1_20); \
  48210. __ret_20; \
  48211. })
  48212. #else
  48213. #define vcopyq_lane_u64(__p0_21, __p1_21, __p2_21, __p3_21) __extension__ ({ \
  48214. uint64x2_t __s0_21 = __p0_21; \
  48215. uint64x1_t __s2_21 = __p2_21; \
  48216. uint64x2_t __rev0_21; __rev0_21 = __builtin_shufflevector(__s0_21, __s0_21, 1, 0); \
  48217. uint64x2_t __ret_21; \
  48218. __ret_21 = __noswap_vsetq_lane_u64(__noswap_vget_lane_u64(__s2_21, __p3_21), __rev0_21, __p1_21); \
  48219. __ret_21 = __builtin_shufflevector(__ret_21, __ret_21, 1, 0); \
  48220. __ret_21; \
  48221. })
  48222. #endif
  48223. #ifdef __LITTLE_ENDIAN__
  48224. #define vcopyq_lane_u16(__p0_22, __p1_22, __p2_22, __p3_22) __extension__ ({ \
  48225. uint16x8_t __s0_22 = __p0_22; \
  48226. uint16x4_t __s2_22 = __p2_22; \
  48227. uint16x8_t __ret_22; \
  48228. __ret_22 = vsetq_lane_u16(vget_lane_u16(__s2_22, __p3_22), __s0_22, __p1_22); \
  48229. __ret_22; \
  48230. })
  48231. #else
  48232. #define vcopyq_lane_u16(__p0_23, __p1_23, __p2_23, __p3_23) __extension__ ({ \
  48233. uint16x8_t __s0_23 = __p0_23; \
  48234. uint16x4_t __s2_23 = __p2_23; \
  48235. uint16x8_t __rev0_23; __rev0_23 = __builtin_shufflevector(__s0_23, __s0_23, 7, 6, 5, 4, 3, 2, 1, 0); \
  48236. uint16x4_t __rev2_23; __rev2_23 = __builtin_shufflevector(__s2_23, __s2_23, 3, 2, 1, 0); \
  48237. uint16x8_t __ret_23; \
  48238. __ret_23 = __noswap_vsetq_lane_u16(__noswap_vget_lane_u16(__rev2_23, __p3_23), __rev0_23, __p1_23); \
  48239. __ret_23 = __builtin_shufflevector(__ret_23, __ret_23, 7, 6, 5, 4, 3, 2, 1, 0); \
  48240. __ret_23; \
  48241. })
  48242. #endif
  48243. #ifdef __LITTLE_ENDIAN__
  48244. #define vcopyq_lane_s8(__p0_24, __p1_24, __p2_24, __p3_24) __extension__ ({ \
  48245. int8x16_t __s0_24 = __p0_24; \
  48246. int8x8_t __s2_24 = __p2_24; \
  48247. int8x16_t __ret_24; \
  48248. __ret_24 = vsetq_lane_s8(vget_lane_s8(__s2_24, __p3_24), __s0_24, __p1_24); \
  48249. __ret_24; \
  48250. })
  48251. #else
  48252. #define vcopyq_lane_s8(__p0_25, __p1_25, __p2_25, __p3_25) __extension__ ({ \
  48253. int8x16_t __s0_25 = __p0_25; \
  48254. int8x8_t __s2_25 = __p2_25; \
  48255. int8x16_t __rev0_25; __rev0_25 = __builtin_shufflevector(__s0_25, __s0_25, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  48256. int8x8_t __rev2_25; __rev2_25 = __builtin_shufflevector(__s2_25, __s2_25, 7, 6, 5, 4, 3, 2, 1, 0); \
  48257. int8x16_t __ret_25; \
  48258. __ret_25 = __noswap_vsetq_lane_s8(__noswap_vget_lane_s8(__rev2_25, __p3_25), __rev0_25, __p1_25); \
  48259. __ret_25 = __builtin_shufflevector(__ret_25, __ret_25, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  48260. __ret_25; \
  48261. })
  48262. #endif
  48263. #ifdef __LITTLE_ENDIAN__
  48264. #define vcopyq_lane_f32(__p0_26, __p1_26, __p2_26, __p3_26) __extension__ ({ \
  48265. float32x4_t __s0_26 = __p0_26; \
  48266. float32x2_t __s2_26 = __p2_26; \
  48267. float32x4_t __ret_26; \
  48268. __ret_26 = vsetq_lane_f32(vget_lane_f32(__s2_26, __p3_26), __s0_26, __p1_26); \
  48269. __ret_26; \
  48270. })
  48271. #else
  48272. #define vcopyq_lane_f32(__p0_27, __p1_27, __p2_27, __p3_27) __extension__ ({ \
  48273. float32x4_t __s0_27 = __p0_27; \
  48274. float32x2_t __s2_27 = __p2_27; \
  48275. float32x4_t __rev0_27; __rev0_27 = __builtin_shufflevector(__s0_27, __s0_27, 3, 2, 1, 0); \
  48276. float32x2_t __rev2_27; __rev2_27 = __builtin_shufflevector(__s2_27, __s2_27, 1, 0); \
  48277. float32x4_t __ret_27; \
  48278. __ret_27 = __noswap_vsetq_lane_f32(__noswap_vget_lane_f32(__rev2_27, __p3_27), __rev0_27, __p1_27); \
  48279. __ret_27 = __builtin_shufflevector(__ret_27, __ret_27, 3, 2, 1, 0); \
  48280. __ret_27; \
  48281. })
  48282. #endif
  48283. #ifdef __LITTLE_ENDIAN__
  48284. #define vcopyq_lane_s32(__p0_28, __p1_28, __p2_28, __p3_28) __extension__ ({ \
  48285. int32x4_t __s0_28 = __p0_28; \
  48286. int32x2_t __s2_28 = __p2_28; \
  48287. int32x4_t __ret_28; \
  48288. __ret_28 = vsetq_lane_s32(vget_lane_s32(__s2_28, __p3_28), __s0_28, __p1_28); \
  48289. __ret_28; \
  48290. })
  48291. #else
  48292. #define vcopyq_lane_s32(__p0_29, __p1_29, __p2_29, __p3_29) __extension__ ({ \
  48293. int32x4_t __s0_29 = __p0_29; \
  48294. int32x2_t __s2_29 = __p2_29; \
  48295. int32x4_t __rev0_29; __rev0_29 = __builtin_shufflevector(__s0_29, __s0_29, 3, 2, 1, 0); \
  48296. int32x2_t __rev2_29; __rev2_29 = __builtin_shufflevector(__s2_29, __s2_29, 1, 0); \
  48297. int32x4_t __ret_29; \
  48298. __ret_29 = __noswap_vsetq_lane_s32(__noswap_vget_lane_s32(__rev2_29, __p3_29), __rev0_29, __p1_29); \
  48299. __ret_29 = __builtin_shufflevector(__ret_29, __ret_29, 3, 2, 1, 0); \
  48300. __ret_29; \
  48301. })
  48302. #endif
  48303. #ifdef __LITTLE_ENDIAN__
  48304. #define vcopyq_lane_s64(__p0_30, __p1_30, __p2_30, __p3_30) __extension__ ({ \
  48305. int64x2_t __s0_30 = __p0_30; \
  48306. int64x1_t __s2_30 = __p2_30; \
  48307. int64x2_t __ret_30; \
  48308. __ret_30 = vsetq_lane_s64(vget_lane_s64(__s2_30, __p3_30), __s0_30, __p1_30); \
  48309. __ret_30; \
  48310. })
  48311. #else
  48312. #define vcopyq_lane_s64(__p0_31, __p1_31, __p2_31, __p3_31) __extension__ ({ \
  48313. int64x2_t __s0_31 = __p0_31; \
  48314. int64x1_t __s2_31 = __p2_31; \
  48315. int64x2_t __rev0_31; __rev0_31 = __builtin_shufflevector(__s0_31, __s0_31, 1, 0); \
  48316. int64x2_t __ret_31; \
  48317. __ret_31 = __noswap_vsetq_lane_s64(__noswap_vget_lane_s64(__s2_31, __p3_31), __rev0_31, __p1_31); \
  48318. __ret_31 = __builtin_shufflevector(__ret_31, __ret_31, 1, 0); \
  48319. __ret_31; \
  48320. })
  48321. #endif
  48322. #ifdef __LITTLE_ENDIAN__
  48323. #define vcopyq_lane_s16(__p0_32, __p1_32, __p2_32, __p3_32) __extension__ ({ \
  48324. int16x8_t __s0_32 = __p0_32; \
  48325. int16x4_t __s2_32 = __p2_32; \
  48326. int16x8_t __ret_32; \
  48327. __ret_32 = vsetq_lane_s16(vget_lane_s16(__s2_32, __p3_32), __s0_32, __p1_32); \
  48328. __ret_32; \
  48329. })
  48330. #else
  48331. #define vcopyq_lane_s16(__p0_33, __p1_33, __p2_33, __p3_33) __extension__ ({ \
  48332. int16x8_t __s0_33 = __p0_33; \
  48333. int16x4_t __s2_33 = __p2_33; \
  48334. int16x8_t __rev0_33; __rev0_33 = __builtin_shufflevector(__s0_33, __s0_33, 7, 6, 5, 4, 3, 2, 1, 0); \
  48335. int16x4_t __rev2_33; __rev2_33 = __builtin_shufflevector(__s2_33, __s2_33, 3, 2, 1, 0); \
  48336. int16x8_t __ret_33; \
  48337. __ret_33 = __noswap_vsetq_lane_s16(__noswap_vget_lane_s16(__rev2_33, __p3_33), __rev0_33, __p1_33); \
  48338. __ret_33 = __builtin_shufflevector(__ret_33, __ret_33, 7, 6, 5, 4, 3, 2, 1, 0); \
  48339. __ret_33; \
  48340. })
  48341. #endif
  48342. #ifdef __LITTLE_ENDIAN__
  48343. #define vcopy_lane_p8(__p0_34, __p1_34, __p2_34, __p3_34) __extension__ ({ \
  48344. poly8x8_t __s0_34 = __p0_34; \
  48345. poly8x8_t __s2_34 = __p2_34; \
  48346. poly8x8_t __ret_34; \
  48347. __ret_34 = vset_lane_p8(vget_lane_p8(__s2_34, __p3_34), __s0_34, __p1_34); \
  48348. __ret_34; \
  48349. })
  48350. #else
  48351. #define vcopy_lane_p8(__p0_35, __p1_35, __p2_35, __p3_35) __extension__ ({ \
  48352. poly8x8_t __s0_35 = __p0_35; \
  48353. poly8x8_t __s2_35 = __p2_35; \
  48354. poly8x8_t __rev0_35; __rev0_35 = __builtin_shufflevector(__s0_35, __s0_35, 7, 6, 5, 4, 3, 2, 1, 0); \
  48355. poly8x8_t __rev2_35; __rev2_35 = __builtin_shufflevector(__s2_35, __s2_35, 7, 6, 5, 4, 3, 2, 1, 0); \
  48356. poly8x8_t __ret_35; \
  48357. __ret_35 = __noswap_vset_lane_p8(__noswap_vget_lane_p8(__rev2_35, __p3_35), __rev0_35, __p1_35); \
  48358. __ret_35 = __builtin_shufflevector(__ret_35, __ret_35, 7, 6, 5, 4, 3, 2, 1, 0); \
  48359. __ret_35; \
  48360. })
  48361. #endif
  48362. #ifdef __LITTLE_ENDIAN__
  48363. #define vcopy_lane_p16(__p0_36, __p1_36, __p2_36, __p3_36) __extension__ ({ \
  48364. poly16x4_t __s0_36 = __p0_36; \
  48365. poly16x4_t __s2_36 = __p2_36; \
  48366. poly16x4_t __ret_36; \
  48367. __ret_36 = vset_lane_p16(vget_lane_p16(__s2_36, __p3_36), __s0_36, __p1_36); \
  48368. __ret_36; \
  48369. })
  48370. #else
  48371. #define vcopy_lane_p16(__p0_37, __p1_37, __p2_37, __p3_37) __extension__ ({ \
  48372. poly16x4_t __s0_37 = __p0_37; \
  48373. poly16x4_t __s2_37 = __p2_37; \
  48374. poly16x4_t __rev0_37; __rev0_37 = __builtin_shufflevector(__s0_37, __s0_37, 3, 2, 1, 0); \
  48375. poly16x4_t __rev2_37; __rev2_37 = __builtin_shufflevector(__s2_37, __s2_37, 3, 2, 1, 0); \
  48376. poly16x4_t __ret_37; \
  48377. __ret_37 = __noswap_vset_lane_p16(__noswap_vget_lane_p16(__rev2_37, __p3_37), __rev0_37, __p1_37); \
  48378. __ret_37 = __builtin_shufflevector(__ret_37, __ret_37, 3, 2, 1, 0); \
  48379. __ret_37; \
  48380. })
  48381. #endif
  48382. #ifdef __LITTLE_ENDIAN__
  48383. #define vcopy_lane_u8(__p0_38, __p1_38, __p2_38, __p3_38) __extension__ ({ \
  48384. uint8x8_t __s0_38 = __p0_38; \
  48385. uint8x8_t __s2_38 = __p2_38; \
  48386. uint8x8_t __ret_38; \
  48387. __ret_38 = vset_lane_u8(vget_lane_u8(__s2_38, __p3_38), __s0_38, __p1_38); \
  48388. __ret_38; \
  48389. })
  48390. #else
  48391. #define vcopy_lane_u8(__p0_39, __p1_39, __p2_39, __p3_39) __extension__ ({ \
  48392. uint8x8_t __s0_39 = __p0_39; \
  48393. uint8x8_t __s2_39 = __p2_39; \
  48394. uint8x8_t __rev0_39; __rev0_39 = __builtin_shufflevector(__s0_39, __s0_39, 7, 6, 5, 4, 3, 2, 1, 0); \
  48395. uint8x8_t __rev2_39; __rev2_39 = __builtin_shufflevector(__s2_39, __s2_39, 7, 6, 5, 4, 3, 2, 1, 0); \
  48396. uint8x8_t __ret_39; \
  48397. __ret_39 = __noswap_vset_lane_u8(__noswap_vget_lane_u8(__rev2_39, __p3_39), __rev0_39, __p1_39); \
  48398. __ret_39 = __builtin_shufflevector(__ret_39, __ret_39, 7, 6, 5, 4, 3, 2, 1, 0); \
  48399. __ret_39; \
  48400. })
  48401. #endif
  48402. #ifdef __LITTLE_ENDIAN__
  48403. #define vcopy_lane_u32(__p0_40, __p1_40, __p2_40, __p3_40) __extension__ ({ \
  48404. uint32x2_t __s0_40 = __p0_40; \
  48405. uint32x2_t __s2_40 = __p2_40; \
  48406. uint32x2_t __ret_40; \
  48407. __ret_40 = vset_lane_u32(vget_lane_u32(__s2_40, __p3_40), __s0_40, __p1_40); \
  48408. __ret_40; \
  48409. })
  48410. #else
  48411. #define vcopy_lane_u32(__p0_41, __p1_41, __p2_41, __p3_41) __extension__ ({ \
  48412. uint32x2_t __s0_41 = __p0_41; \
  48413. uint32x2_t __s2_41 = __p2_41; \
  48414. uint32x2_t __rev0_41; __rev0_41 = __builtin_shufflevector(__s0_41, __s0_41, 1, 0); \
  48415. uint32x2_t __rev2_41; __rev2_41 = __builtin_shufflevector(__s2_41, __s2_41, 1, 0); \
  48416. uint32x2_t __ret_41; \
  48417. __ret_41 = __noswap_vset_lane_u32(__noswap_vget_lane_u32(__rev2_41, __p3_41), __rev0_41, __p1_41); \
  48418. __ret_41 = __builtin_shufflevector(__ret_41, __ret_41, 1, 0); \
  48419. __ret_41; \
  48420. })
  48421. #endif
  48422. #ifdef __LITTLE_ENDIAN__
  48423. #define vcopy_lane_u64(__p0_42, __p1_42, __p2_42, __p3_42) __extension__ ({ \
  48424. uint64x1_t __s0_42 = __p0_42; \
  48425. uint64x1_t __s2_42 = __p2_42; \
  48426. uint64x1_t __ret_42; \
  48427. __ret_42 = vset_lane_u64(vget_lane_u64(__s2_42, __p3_42), __s0_42, __p1_42); \
  48428. __ret_42; \
  48429. })
  48430. #else
  48431. #define vcopy_lane_u64(__p0_43, __p1_43, __p2_43, __p3_43) __extension__ ({ \
  48432. uint64x1_t __s0_43 = __p0_43; \
  48433. uint64x1_t __s2_43 = __p2_43; \
  48434. uint64x1_t __ret_43; \
  48435. __ret_43 = __noswap_vset_lane_u64(__noswap_vget_lane_u64(__s2_43, __p3_43), __s0_43, __p1_43); \
  48436. __ret_43; \
  48437. })
  48438. #endif
  48439. #ifdef __LITTLE_ENDIAN__
  48440. #define vcopy_lane_u16(__p0_44, __p1_44, __p2_44, __p3_44) __extension__ ({ \
  48441. uint16x4_t __s0_44 = __p0_44; \
  48442. uint16x4_t __s2_44 = __p2_44; \
  48443. uint16x4_t __ret_44; \
  48444. __ret_44 = vset_lane_u16(vget_lane_u16(__s2_44, __p3_44), __s0_44, __p1_44); \
  48445. __ret_44; \
  48446. })
  48447. #else
  48448. #define vcopy_lane_u16(__p0_45, __p1_45, __p2_45, __p3_45) __extension__ ({ \
  48449. uint16x4_t __s0_45 = __p0_45; \
  48450. uint16x4_t __s2_45 = __p2_45; \
  48451. uint16x4_t __rev0_45; __rev0_45 = __builtin_shufflevector(__s0_45, __s0_45, 3, 2, 1, 0); \
  48452. uint16x4_t __rev2_45; __rev2_45 = __builtin_shufflevector(__s2_45, __s2_45, 3, 2, 1, 0); \
  48453. uint16x4_t __ret_45; \
  48454. __ret_45 = __noswap_vset_lane_u16(__noswap_vget_lane_u16(__rev2_45, __p3_45), __rev0_45, __p1_45); \
  48455. __ret_45 = __builtin_shufflevector(__ret_45, __ret_45, 3, 2, 1, 0); \
  48456. __ret_45; \
  48457. })
  48458. #endif
  48459. #ifdef __LITTLE_ENDIAN__
  48460. #define vcopy_lane_s8(__p0_46, __p1_46, __p2_46, __p3_46) __extension__ ({ \
  48461. int8x8_t __s0_46 = __p0_46; \
  48462. int8x8_t __s2_46 = __p2_46; \
  48463. int8x8_t __ret_46; \
  48464. __ret_46 = vset_lane_s8(vget_lane_s8(__s2_46, __p3_46), __s0_46, __p1_46); \
  48465. __ret_46; \
  48466. })
  48467. #else
  48468. #define vcopy_lane_s8(__p0_47, __p1_47, __p2_47, __p3_47) __extension__ ({ \
  48469. int8x8_t __s0_47 = __p0_47; \
  48470. int8x8_t __s2_47 = __p2_47; \
  48471. int8x8_t __rev0_47; __rev0_47 = __builtin_shufflevector(__s0_47, __s0_47, 7, 6, 5, 4, 3, 2, 1, 0); \
  48472. int8x8_t __rev2_47; __rev2_47 = __builtin_shufflevector(__s2_47, __s2_47, 7, 6, 5, 4, 3, 2, 1, 0); \
  48473. int8x8_t __ret_47; \
  48474. __ret_47 = __noswap_vset_lane_s8(__noswap_vget_lane_s8(__rev2_47, __p3_47), __rev0_47, __p1_47); \
  48475. __ret_47 = __builtin_shufflevector(__ret_47, __ret_47, 7, 6, 5, 4, 3, 2, 1, 0); \
  48476. __ret_47; \
  48477. })
  48478. #endif
  48479. #ifdef __LITTLE_ENDIAN__
  48480. #define vcopy_lane_f32(__p0_48, __p1_48, __p2_48, __p3_48) __extension__ ({ \
  48481. float32x2_t __s0_48 = __p0_48; \
  48482. float32x2_t __s2_48 = __p2_48; \
  48483. float32x2_t __ret_48; \
  48484. __ret_48 = vset_lane_f32(vget_lane_f32(__s2_48, __p3_48), __s0_48, __p1_48); \
  48485. __ret_48; \
  48486. })
  48487. #else
  48488. #define vcopy_lane_f32(__p0_49, __p1_49, __p2_49, __p3_49) __extension__ ({ \
  48489. float32x2_t __s0_49 = __p0_49; \
  48490. float32x2_t __s2_49 = __p2_49; \
  48491. float32x2_t __rev0_49; __rev0_49 = __builtin_shufflevector(__s0_49, __s0_49, 1, 0); \
  48492. float32x2_t __rev2_49; __rev2_49 = __builtin_shufflevector(__s2_49, __s2_49, 1, 0); \
  48493. float32x2_t __ret_49; \
  48494. __ret_49 = __noswap_vset_lane_f32(__noswap_vget_lane_f32(__rev2_49, __p3_49), __rev0_49, __p1_49); \
  48495. __ret_49 = __builtin_shufflevector(__ret_49, __ret_49, 1, 0); \
  48496. __ret_49; \
  48497. })
  48498. #endif
  48499. #ifdef __LITTLE_ENDIAN__
  48500. #define vcopy_lane_s32(__p0_50, __p1_50, __p2_50, __p3_50) __extension__ ({ \
  48501. int32x2_t __s0_50 = __p0_50; \
  48502. int32x2_t __s2_50 = __p2_50; \
  48503. int32x2_t __ret_50; \
  48504. __ret_50 = vset_lane_s32(vget_lane_s32(__s2_50, __p3_50), __s0_50, __p1_50); \
  48505. __ret_50; \
  48506. })
  48507. #else
  48508. #define vcopy_lane_s32(__p0_51, __p1_51, __p2_51, __p3_51) __extension__ ({ \
  48509. int32x2_t __s0_51 = __p0_51; \
  48510. int32x2_t __s2_51 = __p2_51; \
  48511. int32x2_t __rev0_51; __rev0_51 = __builtin_shufflevector(__s0_51, __s0_51, 1, 0); \
  48512. int32x2_t __rev2_51; __rev2_51 = __builtin_shufflevector(__s2_51, __s2_51, 1, 0); \
  48513. int32x2_t __ret_51; \
  48514. __ret_51 = __noswap_vset_lane_s32(__noswap_vget_lane_s32(__rev2_51, __p3_51), __rev0_51, __p1_51); \
  48515. __ret_51 = __builtin_shufflevector(__ret_51, __ret_51, 1, 0); \
  48516. __ret_51; \
  48517. })
  48518. #endif
  48519. #ifdef __LITTLE_ENDIAN__
  48520. #define vcopy_lane_s64(__p0_52, __p1_52, __p2_52, __p3_52) __extension__ ({ \
  48521. int64x1_t __s0_52 = __p0_52; \
  48522. int64x1_t __s2_52 = __p2_52; \
  48523. int64x1_t __ret_52; \
  48524. __ret_52 = vset_lane_s64(vget_lane_s64(__s2_52, __p3_52), __s0_52, __p1_52); \
  48525. __ret_52; \
  48526. })
  48527. #else
  48528. #define vcopy_lane_s64(__p0_53, __p1_53, __p2_53, __p3_53) __extension__ ({ \
  48529. int64x1_t __s0_53 = __p0_53; \
  48530. int64x1_t __s2_53 = __p2_53; \
  48531. int64x1_t __ret_53; \
  48532. __ret_53 = __noswap_vset_lane_s64(__noswap_vget_lane_s64(__s2_53, __p3_53), __s0_53, __p1_53); \
  48533. __ret_53; \
  48534. })
  48535. #endif
  48536. #ifdef __LITTLE_ENDIAN__
  48537. #define vcopy_lane_s16(__p0_54, __p1_54, __p2_54, __p3_54) __extension__ ({ \
  48538. int16x4_t __s0_54 = __p0_54; \
  48539. int16x4_t __s2_54 = __p2_54; \
  48540. int16x4_t __ret_54; \
  48541. __ret_54 = vset_lane_s16(vget_lane_s16(__s2_54, __p3_54), __s0_54, __p1_54); \
  48542. __ret_54; \
  48543. })
  48544. #else
  48545. #define vcopy_lane_s16(__p0_55, __p1_55, __p2_55, __p3_55) __extension__ ({ \
  48546. int16x4_t __s0_55 = __p0_55; \
  48547. int16x4_t __s2_55 = __p2_55; \
  48548. int16x4_t __rev0_55; __rev0_55 = __builtin_shufflevector(__s0_55, __s0_55, 3, 2, 1, 0); \
  48549. int16x4_t __rev2_55; __rev2_55 = __builtin_shufflevector(__s2_55, __s2_55, 3, 2, 1, 0); \
  48550. int16x4_t __ret_55; \
  48551. __ret_55 = __noswap_vset_lane_s16(__noswap_vget_lane_s16(__rev2_55, __p3_55), __rev0_55, __p1_55); \
  48552. __ret_55 = __builtin_shufflevector(__ret_55, __ret_55, 3, 2, 1, 0); \
  48553. __ret_55; \
  48554. })
  48555. #endif
  48556. #ifdef __LITTLE_ENDIAN__
  48557. #define vcopyq_laneq_p8(__p0_56, __p1_56, __p2_56, __p3_56) __extension__ ({ \
  48558. poly8x16_t __s0_56 = __p0_56; \
  48559. poly8x16_t __s2_56 = __p2_56; \
  48560. poly8x16_t __ret_56; \
  48561. __ret_56 = vsetq_lane_p8(vgetq_lane_p8(__s2_56, __p3_56), __s0_56, __p1_56); \
  48562. __ret_56; \
  48563. })
  48564. #else
  48565. #define vcopyq_laneq_p8(__p0_57, __p1_57, __p2_57, __p3_57) __extension__ ({ \
  48566. poly8x16_t __s0_57 = __p0_57; \
  48567. poly8x16_t __s2_57 = __p2_57; \
  48568. poly8x16_t __rev0_57; __rev0_57 = __builtin_shufflevector(__s0_57, __s0_57, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  48569. poly8x16_t __rev2_57; __rev2_57 = __builtin_shufflevector(__s2_57, __s2_57, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  48570. poly8x16_t __ret_57; \
  48571. __ret_57 = __noswap_vsetq_lane_p8(__noswap_vgetq_lane_p8(__rev2_57, __p3_57), __rev0_57, __p1_57); \
  48572. __ret_57 = __builtin_shufflevector(__ret_57, __ret_57, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  48573. __ret_57; \
  48574. })
  48575. #endif
  48576. #ifdef __LITTLE_ENDIAN__
  48577. #define vcopyq_laneq_p16(__p0_58, __p1_58, __p2_58, __p3_58) __extension__ ({ \
  48578. poly16x8_t __s0_58 = __p0_58; \
  48579. poly16x8_t __s2_58 = __p2_58; \
  48580. poly16x8_t __ret_58; \
  48581. __ret_58 = vsetq_lane_p16(vgetq_lane_p16(__s2_58, __p3_58), __s0_58, __p1_58); \
  48582. __ret_58; \
  48583. })
  48584. #else
  48585. #define vcopyq_laneq_p16(__p0_59, __p1_59, __p2_59, __p3_59) __extension__ ({ \
  48586. poly16x8_t __s0_59 = __p0_59; \
  48587. poly16x8_t __s2_59 = __p2_59; \
  48588. poly16x8_t __rev0_59; __rev0_59 = __builtin_shufflevector(__s0_59, __s0_59, 7, 6, 5, 4, 3, 2, 1, 0); \
  48589. poly16x8_t __rev2_59; __rev2_59 = __builtin_shufflevector(__s2_59, __s2_59, 7, 6, 5, 4, 3, 2, 1, 0); \
  48590. poly16x8_t __ret_59; \
  48591. __ret_59 = __noswap_vsetq_lane_p16(__noswap_vgetq_lane_p16(__rev2_59, __p3_59), __rev0_59, __p1_59); \
  48592. __ret_59 = __builtin_shufflevector(__ret_59, __ret_59, 7, 6, 5, 4, 3, 2, 1, 0); \
  48593. __ret_59; \
  48594. })
  48595. #endif
  48596. #ifdef __LITTLE_ENDIAN__
  48597. #define vcopyq_laneq_u8(__p0_60, __p1_60, __p2_60, __p3_60) __extension__ ({ \
  48598. uint8x16_t __s0_60 = __p0_60; \
  48599. uint8x16_t __s2_60 = __p2_60; \
  48600. uint8x16_t __ret_60; \
  48601. __ret_60 = vsetq_lane_u8(vgetq_lane_u8(__s2_60, __p3_60), __s0_60, __p1_60); \
  48602. __ret_60; \
  48603. })
  48604. #else
  48605. #define vcopyq_laneq_u8(__p0_61, __p1_61, __p2_61, __p3_61) __extension__ ({ \
  48606. uint8x16_t __s0_61 = __p0_61; \
  48607. uint8x16_t __s2_61 = __p2_61; \
  48608. uint8x16_t __rev0_61; __rev0_61 = __builtin_shufflevector(__s0_61, __s0_61, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  48609. uint8x16_t __rev2_61; __rev2_61 = __builtin_shufflevector(__s2_61, __s2_61, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  48610. uint8x16_t __ret_61; \
  48611. __ret_61 = __noswap_vsetq_lane_u8(__noswap_vgetq_lane_u8(__rev2_61, __p3_61), __rev0_61, __p1_61); \
  48612. __ret_61 = __builtin_shufflevector(__ret_61, __ret_61, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  48613. __ret_61; \
  48614. })
  48615. #endif
  48616. #ifdef __LITTLE_ENDIAN__
  48617. #define vcopyq_laneq_u32(__p0_62, __p1_62, __p2_62, __p3_62) __extension__ ({ \
  48618. uint32x4_t __s0_62 = __p0_62; \
  48619. uint32x4_t __s2_62 = __p2_62; \
  48620. uint32x4_t __ret_62; \
  48621. __ret_62 = vsetq_lane_u32(vgetq_lane_u32(__s2_62, __p3_62), __s0_62, __p1_62); \
  48622. __ret_62; \
  48623. })
  48624. #else
  48625. #define vcopyq_laneq_u32(__p0_63, __p1_63, __p2_63, __p3_63) __extension__ ({ \
  48626. uint32x4_t __s0_63 = __p0_63; \
  48627. uint32x4_t __s2_63 = __p2_63; \
  48628. uint32x4_t __rev0_63; __rev0_63 = __builtin_shufflevector(__s0_63, __s0_63, 3, 2, 1, 0); \
  48629. uint32x4_t __rev2_63; __rev2_63 = __builtin_shufflevector(__s2_63, __s2_63, 3, 2, 1, 0); \
  48630. uint32x4_t __ret_63; \
  48631. __ret_63 = __noswap_vsetq_lane_u32(__noswap_vgetq_lane_u32(__rev2_63, __p3_63), __rev0_63, __p1_63); \
  48632. __ret_63 = __builtin_shufflevector(__ret_63, __ret_63, 3, 2, 1, 0); \
  48633. __ret_63; \
  48634. })
  48635. #endif
  48636. #ifdef __LITTLE_ENDIAN__
  48637. #define vcopyq_laneq_u64(__p0_64, __p1_64, __p2_64, __p3_64) __extension__ ({ \
  48638. uint64x2_t __s0_64 = __p0_64; \
  48639. uint64x2_t __s2_64 = __p2_64; \
  48640. uint64x2_t __ret_64; \
  48641. __ret_64 = vsetq_lane_u64(vgetq_lane_u64(__s2_64, __p3_64), __s0_64, __p1_64); \
  48642. __ret_64; \
  48643. })
  48644. #else
  48645. #define vcopyq_laneq_u64(__p0_65, __p1_65, __p2_65, __p3_65) __extension__ ({ \
  48646. uint64x2_t __s0_65 = __p0_65; \
  48647. uint64x2_t __s2_65 = __p2_65; \
  48648. uint64x2_t __rev0_65; __rev0_65 = __builtin_shufflevector(__s0_65, __s0_65, 1, 0); \
  48649. uint64x2_t __rev2_65; __rev2_65 = __builtin_shufflevector(__s2_65, __s2_65, 1, 0); \
  48650. uint64x2_t __ret_65; \
  48651. __ret_65 = __noswap_vsetq_lane_u64(__noswap_vgetq_lane_u64(__rev2_65, __p3_65), __rev0_65, __p1_65); \
  48652. __ret_65 = __builtin_shufflevector(__ret_65, __ret_65, 1, 0); \
  48653. __ret_65; \
  48654. })
  48655. #endif
  48656. #ifdef __LITTLE_ENDIAN__
  48657. #define vcopyq_laneq_u16(__p0_66, __p1_66, __p2_66, __p3_66) __extension__ ({ \
  48658. uint16x8_t __s0_66 = __p0_66; \
  48659. uint16x8_t __s2_66 = __p2_66; \
  48660. uint16x8_t __ret_66; \
  48661. __ret_66 = vsetq_lane_u16(vgetq_lane_u16(__s2_66, __p3_66), __s0_66, __p1_66); \
  48662. __ret_66; \
  48663. })
  48664. #else
  48665. #define vcopyq_laneq_u16(__p0_67, __p1_67, __p2_67, __p3_67) __extension__ ({ \
  48666. uint16x8_t __s0_67 = __p0_67; \
  48667. uint16x8_t __s2_67 = __p2_67; \
  48668. uint16x8_t __rev0_67; __rev0_67 = __builtin_shufflevector(__s0_67, __s0_67, 7, 6, 5, 4, 3, 2, 1, 0); \
  48669. uint16x8_t __rev2_67; __rev2_67 = __builtin_shufflevector(__s2_67, __s2_67, 7, 6, 5, 4, 3, 2, 1, 0); \
  48670. uint16x8_t __ret_67; \
  48671. __ret_67 = __noswap_vsetq_lane_u16(__noswap_vgetq_lane_u16(__rev2_67, __p3_67), __rev0_67, __p1_67); \
  48672. __ret_67 = __builtin_shufflevector(__ret_67, __ret_67, 7, 6, 5, 4, 3, 2, 1, 0); \
  48673. __ret_67; \
  48674. })
  48675. #endif
  48676. #ifdef __LITTLE_ENDIAN__
  48677. #define vcopyq_laneq_s8(__p0_68, __p1_68, __p2_68, __p3_68) __extension__ ({ \
  48678. int8x16_t __s0_68 = __p0_68; \
  48679. int8x16_t __s2_68 = __p2_68; \
  48680. int8x16_t __ret_68; \
  48681. __ret_68 = vsetq_lane_s8(vgetq_lane_s8(__s2_68, __p3_68), __s0_68, __p1_68); \
  48682. __ret_68; \
  48683. })
  48684. #else
  48685. #define vcopyq_laneq_s8(__p0_69, __p1_69, __p2_69, __p3_69) __extension__ ({ \
  48686. int8x16_t __s0_69 = __p0_69; \
  48687. int8x16_t __s2_69 = __p2_69; \
  48688. int8x16_t __rev0_69; __rev0_69 = __builtin_shufflevector(__s0_69, __s0_69, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  48689. int8x16_t __rev2_69; __rev2_69 = __builtin_shufflevector(__s2_69, __s2_69, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  48690. int8x16_t __ret_69; \
  48691. __ret_69 = __noswap_vsetq_lane_s8(__noswap_vgetq_lane_s8(__rev2_69, __p3_69), __rev0_69, __p1_69); \
  48692. __ret_69 = __builtin_shufflevector(__ret_69, __ret_69, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  48693. __ret_69; \
  48694. })
  48695. #endif
  48696. #ifdef __LITTLE_ENDIAN__
  48697. #define vcopyq_laneq_f32(__p0_70, __p1_70, __p2_70, __p3_70) __extension__ ({ \
  48698. float32x4_t __s0_70 = __p0_70; \
  48699. float32x4_t __s2_70 = __p2_70; \
  48700. float32x4_t __ret_70; \
  48701. __ret_70 = vsetq_lane_f32(vgetq_lane_f32(__s2_70, __p3_70), __s0_70, __p1_70); \
  48702. __ret_70; \
  48703. })
  48704. #else
  48705. #define vcopyq_laneq_f32(__p0_71, __p1_71, __p2_71, __p3_71) __extension__ ({ \
  48706. float32x4_t __s0_71 = __p0_71; \
  48707. float32x4_t __s2_71 = __p2_71; \
  48708. float32x4_t __rev0_71; __rev0_71 = __builtin_shufflevector(__s0_71, __s0_71, 3, 2, 1, 0); \
  48709. float32x4_t __rev2_71; __rev2_71 = __builtin_shufflevector(__s2_71, __s2_71, 3, 2, 1, 0); \
  48710. float32x4_t __ret_71; \
  48711. __ret_71 = __noswap_vsetq_lane_f32(__noswap_vgetq_lane_f32(__rev2_71, __p3_71), __rev0_71, __p1_71); \
  48712. __ret_71 = __builtin_shufflevector(__ret_71, __ret_71, 3, 2, 1, 0); \
  48713. __ret_71; \
  48714. })
  48715. #endif
  48716. #ifdef __LITTLE_ENDIAN__
  48717. #define vcopyq_laneq_s32(__p0_72, __p1_72, __p2_72, __p3_72) __extension__ ({ \
  48718. int32x4_t __s0_72 = __p0_72; \
  48719. int32x4_t __s2_72 = __p2_72; \
  48720. int32x4_t __ret_72; \
  48721. __ret_72 = vsetq_lane_s32(vgetq_lane_s32(__s2_72, __p3_72), __s0_72, __p1_72); \
  48722. __ret_72; \
  48723. })
  48724. #else
  48725. #define vcopyq_laneq_s32(__p0_73, __p1_73, __p2_73, __p3_73) __extension__ ({ \
  48726. int32x4_t __s0_73 = __p0_73; \
  48727. int32x4_t __s2_73 = __p2_73; \
  48728. int32x4_t __rev0_73; __rev0_73 = __builtin_shufflevector(__s0_73, __s0_73, 3, 2, 1, 0); \
  48729. int32x4_t __rev2_73; __rev2_73 = __builtin_shufflevector(__s2_73, __s2_73, 3, 2, 1, 0); \
  48730. int32x4_t __ret_73; \
  48731. __ret_73 = __noswap_vsetq_lane_s32(__noswap_vgetq_lane_s32(__rev2_73, __p3_73), __rev0_73, __p1_73); \
  48732. __ret_73 = __builtin_shufflevector(__ret_73, __ret_73, 3, 2, 1, 0); \
  48733. __ret_73; \
  48734. })
  48735. #endif
  48736. #ifdef __LITTLE_ENDIAN__
  48737. #define vcopyq_laneq_s64(__p0_74, __p1_74, __p2_74, __p3_74) __extension__ ({ \
  48738. int64x2_t __s0_74 = __p0_74; \
  48739. int64x2_t __s2_74 = __p2_74; \
  48740. int64x2_t __ret_74; \
  48741. __ret_74 = vsetq_lane_s64(vgetq_lane_s64(__s2_74, __p3_74), __s0_74, __p1_74); \
  48742. __ret_74; \
  48743. })
  48744. #else
  48745. #define vcopyq_laneq_s64(__p0_75, __p1_75, __p2_75, __p3_75) __extension__ ({ \
  48746. int64x2_t __s0_75 = __p0_75; \
  48747. int64x2_t __s2_75 = __p2_75; \
  48748. int64x2_t __rev0_75; __rev0_75 = __builtin_shufflevector(__s0_75, __s0_75, 1, 0); \
  48749. int64x2_t __rev2_75; __rev2_75 = __builtin_shufflevector(__s2_75, __s2_75, 1, 0); \
  48750. int64x2_t __ret_75; \
  48751. __ret_75 = __noswap_vsetq_lane_s64(__noswap_vgetq_lane_s64(__rev2_75, __p3_75), __rev0_75, __p1_75); \
  48752. __ret_75 = __builtin_shufflevector(__ret_75, __ret_75, 1, 0); \
  48753. __ret_75; \
  48754. })
  48755. #endif
  48756. #ifdef __LITTLE_ENDIAN__
  48757. #define vcopyq_laneq_s16(__p0_76, __p1_76, __p2_76, __p3_76) __extension__ ({ \
  48758. int16x8_t __s0_76 = __p0_76; \
  48759. int16x8_t __s2_76 = __p2_76; \
  48760. int16x8_t __ret_76; \
  48761. __ret_76 = vsetq_lane_s16(vgetq_lane_s16(__s2_76, __p3_76), __s0_76, __p1_76); \
  48762. __ret_76; \
  48763. })
  48764. #else
  48765. #define vcopyq_laneq_s16(__p0_77, __p1_77, __p2_77, __p3_77) __extension__ ({ \
  48766. int16x8_t __s0_77 = __p0_77; \
  48767. int16x8_t __s2_77 = __p2_77; \
  48768. int16x8_t __rev0_77; __rev0_77 = __builtin_shufflevector(__s0_77, __s0_77, 7, 6, 5, 4, 3, 2, 1, 0); \
  48769. int16x8_t __rev2_77; __rev2_77 = __builtin_shufflevector(__s2_77, __s2_77, 7, 6, 5, 4, 3, 2, 1, 0); \
  48770. int16x8_t __ret_77; \
  48771. __ret_77 = __noswap_vsetq_lane_s16(__noswap_vgetq_lane_s16(__rev2_77, __p3_77), __rev0_77, __p1_77); \
  48772. __ret_77 = __builtin_shufflevector(__ret_77, __ret_77, 7, 6, 5, 4, 3, 2, 1, 0); \
  48773. __ret_77; \
  48774. })
  48775. #endif
  48776. #ifdef __LITTLE_ENDIAN__
  48777. #define vcopy_laneq_p8(__p0_78, __p1_78, __p2_78, __p3_78) __extension__ ({ \
  48778. poly8x8_t __s0_78 = __p0_78; \
  48779. poly8x16_t __s2_78 = __p2_78; \
  48780. poly8x8_t __ret_78; \
  48781. __ret_78 = vset_lane_p8(vgetq_lane_p8(__s2_78, __p3_78), __s0_78, __p1_78); \
  48782. __ret_78; \
  48783. })
  48784. #else
  48785. #define vcopy_laneq_p8(__p0_79, __p1_79, __p2_79, __p3_79) __extension__ ({ \
  48786. poly8x8_t __s0_79 = __p0_79; \
  48787. poly8x16_t __s2_79 = __p2_79; \
  48788. poly8x8_t __rev0_79; __rev0_79 = __builtin_shufflevector(__s0_79, __s0_79, 7, 6, 5, 4, 3, 2, 1, 0); \
  48789. poly8x16_t __rev2_79; __rev2_79 = __builtin_shufflevector(__s2_79, __s2_79, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  48790. poly8x8_t __ret_79; \
  48791. __ret_79 = __noswap_vset_lane_p8(__noswap_vgetq_lane_p8(__rev2_79, __p3_79), __rev0_79, __p1_79); \
  48792. __ret_79 = __builtin_shufflevector(__ret_79, __ret_79, 7, 6, 5, 4, 3, 2, 1, 0); \
  48793. __ret_79; \
  48794. })
  48795. #endif
  48796. #ifdef __LITTLE_ENDIAN__
  48797. #define vcopy_laneq_p16(__p0_80, __p1_80, __p2_80, __p3_80) __extension__ ({ \
  48798. poly16x4_t __s0_80 = __p0_80; \
  48799. poly16x8_t __s2_80 = __p2_80; \
  48800. poly16x4_t __ret_80; \
  48801. __ret_80 = vset_lane_p16(vgetq_lane_p16(__s2_80, __p3_80), __s0_80, __p1_80); \
  48802. __ret_80; \
  48803. })
  48804. #else
  48805. #define vcopy_laneq_p16(__p0_81, __p1_81, __p2_81, __p3_81) __extension__ ({ \
  48806. poly16x4_t __s0_81 = __p0_81; \
  48807. poly16x8_t __s2_81 = __p2_81; \
  48808. poly16x4_t __rev0_81; __rev0_81 = __builtin_shufflevector(__s0_81, __s0_81, 3, 2, 1, 0); \
  48809. poly16x8_t __rev2_81; __rev2_81 = __builtin_shufflevector(__s2_81, __s2_81, 7, 6, 5, 4, 3, 2, 1, 0); \
  48810. poly16x4_t __ret_81; \
  48811. __ret_81 = __noswap_vset_lane_p16(__noswap_vgetq_lane_p16(__rev2_81, __p3_81), __rev0_81, __p1_81); \
  48812. __ret_81 = __builtin_shufflevector(__ret_81, __ret_81, 3, 2, 1, 0); \
  48813. __ret_81; \
  48814. })
  48815. #endif
  48816. #ifdef __LITTLE_ENDIAN__
  48817. #define vcopy_laneq_u8(__p0_82, __p1_82, __p2_82, __p3_82) __extension__ ({ \
  48818. uint8x8_t __s0_82 = __p0_82; \
  48819. uint8x16_t __s2_82 = __p2_82; \
  48820. uint8x8_t __ret_82; \
  48821. __ret_82 = vset_lane_u8(vgetq_lane_u8(__s2_82, __p3_82), __s0_82, __p1_82); \
  48822. __ret_82; \
  48823. })
  48824. #else
  48825. #define vcopy_laneq_u8(__p0_83, __p1_83, __p2_83, __p3_83) __extension__ ({ \
  48826. uint8x8_t __s0_83 = __p0_83; \
  48827. uint8x16_t __s2_83 = __p2_83; \
  48828. uint8x8_t __rev0_83; __rev0_83 = __builtin_shufflevector(__s0_83, __s0_83, 7, 6, 5, 4, 3, 2, 1, 0); \
  48829. uint8x16_t __rev2_83; __rev2_83 = __builtin_shufflevector(__s2_83, __s2_83, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  48830. uint8x8_t __ret_83; \
  48831. __ret_83 = __noswap_vset_lane_u8(__noswap_vgetq_lane_u8(__rev2_83, __p3_83), __rev0_83, __p1_83); \
  48832. __ret_83 = __builtin_shufflevector(__ret_83, __ret_83, 7, 6, 5, 4, 3, 2, 1, 0); \
  48833. __ret_83; \
  48834. })
  48835. #endif
  48836. #ifdef __LITTLE_ENDIAN__
  48837. #define vcopy_laneq_u32(__p0_84, __p1_84, __p2_84, __p3_84) __extension__ ({ \
  48838. uint32x2_t __s0_84 = __p0_84; \
  48839. uint32x4_t __s2_84 = __p2_84; \
  48840. uint32x2_t __ret_84; \
  48841. __ret_84 = vset_lane_u32(vgetq_lane_u32(__s2_84, __p3_84), __s0_84, __p1_84); \
  48842. __ret_84; \
  48843. })
  48844. #else
  48845. #define vcopy_laneq_u32(__p0_85, __p1_85, __p2_85, __p3_85) __extension__ ({ \
  48846. uint32x2_t __s0_85 = __p0_85; \
  48847. uint32x4_t __s2_85 = __p2_85; \
  48848. uint32x2_t __rev0_85; __rev0_85 = __builtin_shufflevector(__s0_85, __s0_85, 1, 0); \
  48849. uint32x4_t __rev2_85; __rev2_85 = __builtin_shufflevector(__s2_85, __s2_85, 3, 2, 1, 0); \
  48850. uint32x2_t __ret_85; \
  48851. __ret_85 = __noswap_vset_lane_u32(__noswap_vgetq_lane_u32(__rev2_85, __p3_85), __rev0_85, __p1_85); \
  48852. __ret_85 = __builtin_shufflevector(__ret_85, __ret_85, 1, 0); \
  48853. __ret_85; \
  48854. })
  48855. #endif
  48856. #ifdef __LITTLE_ENDIAN__
  48857. #define vcopy_laneq_u64(__p0_86, __p1_86, __p2_86, __p3_86) __extension__ ({ \
  48858. uint64x1_t __s0_86 = __p0_86; \
  48859. uint64x2_t __s2_86 = __p2_86; \
  48860. uint64x1_t __ret_86; \
  48861. __ret_86 = vset_lane_u64(vgetq_lane_u64(__s2_86, __p3_86), __s0_86, __p1_86); \
  48862. __ret_86; \
  48863. })
  48864. #else
  48865. #define vcopy_laneq_u64(__p0_87, __p1_87, __p2_87, __p3_87) __extension__ ({ \
  48866. uint64x1_t __s0_87 = __p0_87; \
  48867. uint64x2_t __s2_87 = __p2_87; \
  48868. uint64x2_t __rev2_87; __rev2_87 = __builtin_shufflevector(__s2_87, __s2_87, 1, 0); \
  48869. uint64x1_t __ret_87; \
  48870. __ret_87 = __noswap_vset_lane_u64(__noswap_vgetq_lane_u64(__rev2_87, __p3_87), __s0_87, __p1_87); \
  48871. __ret_87; \
  48872. })
  48873. #endif
  48874. #ifdef __LITTLE_ENDIAN__
  48875. #define vcopy_laneq_u16(__p0_88, __p1_88, __p2_88, __p3_88) __extension__ ({ \
  48876. uint16x4_t __s0_88 = __p0_88; \
  48877. uint16x8_t __s2_88 = __p2_88; \
  48878. uint16x4_t __ret_88; \
  48879. __ret_88 = vset_lane_u16(vgetq_lane_u16(__s2_88, __p3_88), __s0_88, __p1_88); \
  48880. __ret_88; \
  48881. })
  48882. #else
  48883. #define vcopy_laneq_u16(__p0_89, __p1_89, __p2_89, __p3_89) __extension__ ({ \
  48884. uint16x4_t __s0_89 = __p0_89; \
  48885. uint16x8_t __s2_89 = __p2_89; \
  48886. uint16x4_t __rev0_89; __rev0_89 = __builtin_shufflevector(__s0_89, __s0_89, 3, 2, 1, 0); \
  48887. uint16x8_t __rev2_89; __rev2_89 = __builtin_shufflevector(__s2_89, __s2_89, 7, 6, 5, 4, 3, 2, 1, 0); \
  48888. uint16x4_t __ret_89; \
  48889. __ret_89 = __noswap_vset_lane_u16(__noswap_vgetq_lane_u16(__rev2_89, __p3_89), __rev0_89, __p1_89); \
  48890. __ret_89 = __builtin_shufflevector(__ret_89, __ret_89, 3, 2, 1, 0); \
  48891. __ret_89; \
  48892. })
  48893. #endif
  48894. #ifdef __LITTLE_ENDIAN__
  48895. #define vcopy_laneq_s8(__p0_90, __p1_90, __p2_90, __p3_90) __extension__ ({ \
  48896. int8x8_t __s0_90 = __p0_90; \
  48897. int8x16_t __s2_90 = __p2_90; \
  48898. int8x8_t __ret_90; \
  48899. __ret_90 = vset_lane_s8(vgetq_lane_s8(__s2_90, __p3_90), __s0_90, __p1_90); \
  48900. __ret_90; \
  48901. })
  48902. #else
  48903. #define vcopy_laneq_s8(__p0_91, __p1_91, __p2_91, __p3_91) __extension__ ({ \
  48904. int8x8_t __s0_91 = __p0_91; \
  48905. int8x16_t __s2_91 = __p2_91; \
  48906. int8x8_t __rev0_91; __rev0_91 = __builtin_shufflevector(__s0_91, __s0_91, 7, 6, 5, 4, 3, 2, 1, 0); \
  48907. int8x16_t __rev2_91; __rev2_91 = __builtin_shufflevector(__s2_91, __s2_91, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  48908. int8x8_t __ret_91; \
  48909. __ret_91 = __noswap_vset_lane_s8(__noswap_vgetq_lane_s8(__rev2_91, __p3_91), __rev0_91, __p1_91); \
  48910. __ret_91 = __builtin_shufflevector(__ret_91, __ret_91, 7, 6, 5, 4, 3, 2, 1, 0); \
  48911. __ret_91; \
  48912. })
  48913. #endif
  48914. #ifdef __LITTLE_ENDIAN__
  48915. #define vcopy_laneq_f32(__p0_92, __p1_92, __p2_92, __p3_92) __extension__ ({ \
  48916. float32x2_t __s0_92 = __p0_92; \
  48917. float32x4_t __s2_92 = __p2_92; \
  48918. float32x2_t __ret_92; \
  48919. __ret_92 = vset_lane_f32(vgetq_lane_f32(__s2_92, __p3_92), __s0_92, __p1_92); \
  48920. __ret_92; \
  48921. })
  48922. #else
  48923. #define vcopy_laneq_f32(__p0_93, __p1_93, __p2_93, __p3_93) __extension__ ({ \
  48924. float32x2_t __s0_93 = __p0_93; \
  48925. float32x4_t __s2_93 = __p2_93; \
  48926. float32x2_t __rev0_93; __rev0_93 = __builtin_shufflevector(__s0_93, __s0_93, 1, 0); \
  48927. float32x4_t __rev2_93; __rev2_93 = __builtin_shufflevector(__s2_93, __s2_93, 3, 2, 1, 0); \
  48928. float32x2_t __ret_93; \
  48929. __ret_93 = __noswap_vset_lane_f32(__noswap_vgetq_lane_f32(__rev2_93, __p3_93), __rev0_93, __p1_93); \
  48930. __ret_93 = __builtin_shufflevector(__ret_93, __ret_93, 1, 0); \
  48931. __ret_93; \
  48932. })
  48933. #endif
  48934. #ifdef __LITTLE_ENDIAN__
  48935. #define vcopy_laneq_s32(__p0_94, __p1_94, __p2_94, __p3_94) __extension__ ({ \
  48936. int32x2_t __s0_94 = __p0_94; \
  48937. int32x4_t __s2_94 = __p2_94; \
  48938. int32x2_t __ret_94; \
  48939. __ret_94 = vset_lane_s32(vgetq_lane_s32(__s2_94, __p3_94), __s0_94, __p1_94); \
  48940. __ret_94; \
  48941. })
  48942. #else
  48943. #define vcopy_laneq_s32(__p0_95, __p1_95, __p2_95, __p3_95) __extension__ ({ \
  48944. int32x2_t __s0_95 = __p0_95; \
  48945. int32x4_t __s2_95 = __p2_95; \
  48946. int32x2_t __rev0_95; __rev0_95 = __builtin_shufflevector(__s0_95, __s0_95, 1, 0); \
  48947. int32x4_t __rev2_95; __rev2_95 = __builtin_shufflevector(__s2_95, __s2_95, 3, 2, 1, 0); \
  48948. int32x2_t __ret_95; \
  48949. __ret_95 = __noswap_vset_lane_s32(__noswap_vgetq_lane_s32(__rev2_95, __p3_95), __rev0_95, __p1_95); \
  48950. __ret_95 = __builtin_shufflevector(__ret_95, __ret_95, 1, 0); \
  48951. __ret_95; \
  48952. })
  48953. #endif
  48954. #ifdef __LITTLE_ENDIAN__
  48955. #define vcopy_laneq_s64(__p0_96, __p1_96, __p2_96, __p3_96) __extension__ ({ \
  48956. int64x1_t __s0_96 = __p0_96; \
  48957. int64x2_t __s2_96 = __p2_96; \
  48958. int64x1_t __ret_96; \
  48959. __ret_96 = vset_lane_s64(vgetq_lane_s64(__s2_96, __p3_96), __s0_96, __p1_96); \
  48960. __ret_96; \
  48961. })
  48962. #else
  48963. #define vcopy_laneq_s64(__p0_97, __p1_97, __p2_97, __p3_97) __extension__ ({ \
  48964. int64x1_t __s0_97 = __p0_97; \
  48965. int64x2_t __s2_97 = __p2_97; \
  48966. int64x2_t __rev2_97; __rev2_97 = __builtin_shufflevector(__s2_97, __s2_97, 1, 0); \
  48967. int64x1_t __ret_97; \
  48968. __ret_97 = __noswap_vset_lane_s64(__noswap_vgetq_lane_s64(__rev2_97, __p3_97), __s0_97, __p1_97); \
  48969. __ret_97; \
  48970. })
  48971. #endif
  48972. #ifdef __LITTLE_ENDIAN__
  48973. #define vcopy_laneq_s16(__p0_98, __p1_98, __p2_98, __p3_98) __extension__ ({ \
  48974. int16x4_t __s0_98 = __p0_98; \
  48975. int16x8_t __s2_98 = __p2_98; \
  48976. int16x4_t __ret_98; \
  48977. __ret_98 = vset_lane_s16(vgetq_lane_s16(__s2_98, __p3_98), __s0_98, __p1_98); \
  48978. __ret_98; \
  48979. })
  48980. #else
  48981. #define vcopy_laneq_s16(__p0_99, __p1_99, __p2_99, __p3_99) __extension__ ({ \
  48982. int16x4_t __s0_99 = __p0_99; \
  48983. int16x8_t __s2_99 = __p2_99; \
  48984. int16x4_t __rev0_99; __rev0_99 = __builtin_shufflevector(__s0_99, __s0_99, 3, 2, 1, 0); \
  48985. int16x8_t __rev2_99; __rev2_99 = __builtin_shufflevector(__s2_99, __s2_99, 7, 6, 5, 4, 3, 2, 1, 0); \
  48986. int16x4_t __ret_99; \
  48987. __ret_99 = __noswap_vset_lane_s16(__noswap_vgetq_lane_s16(__rev2_99, __p3_99), __rev0_99, __p1_99); \
  48988. __ret_99 = __builtin_shufflevector(__ret_99, __ret_99, 3, 2, 1, 0); \
  48989. __ret_99; \
  48990. })
  48991. #endif
  48992. #ifdef __LITTLE_ENDIAN__
  48993. __ai poly64x1_t vcreate_p64(uint64_t __p0) {
  48994. poly64x1_t __ret;
  48995. __ret = (poly64x1_t)(__p0);
  48996. return __ret;
  48997. }
  48998. #else
  48999. __ai poly64x1_t vcreate_p64(uint64_t __p0) {
  49000. poly64x1_t __ret;
  49001. __ret = (poly64x1_t)(__p0);
  49002. return __ret;
  49003. }
  49004. #endif
  49005. #ifdef __LITTLE_ENDIAN__
  49006. __ai float64x1_t vcreate_f64(uint64_t __p0) {
  49007. float64x1_t __ret;
  49008. __ret = (float64x1_t)(__p0);
  49009. return __ret;
  49010. }
  49011. #else
  49012. __ai float64x1_t vcreate_f64(uint64_t __p0) {
  49013. float64x1_t __ret;
  49014. __ret = (float64x1_t)(__p0);
  49015. return __ret;
  49016. }
  49017. #endif
  49018. #ifdef __LITTLE_ENDIAN__
  49019. __ai float32_t vcvts_f32_s32(int32_t __p0) {
  49020. float32_t __ret;
  49021. __ret = (float32_t) __builtin_neon_vcvts_f32_s32(__p0);
  49022. return __ret;
  49023. }
  49024. #else
  49025. __ai float32_t vcvts_f32_s32(int32_t __p0) {
  49026. float32_t __ret;
  49027. __ret = (float32_t) __builtin_neon_vcvts_f32_s32(__p0);
  49028. return __ret;
  49029. }
  49030. #endif
  49031. #ifdef __LITTLE_ENDIAN__
  49032. __ai float32_t vcvts_f32_u32(uint32_t __p0) {
  49033. float32_t __ret;
  49034. __ret = (float32_t) __builtin_neon_vcvts_f32_u32(__p0);
  49035. return __ret;
  49036. }
  49037. #else
  49038. __ai float32_t vcvts_f32_u32(uint32_t __p0) {
  49039. float32_t __ret;
  49040. __ret = (float32_t) __builtin_neon_vcvts_f32_u32(__p0);
  49041. return __ret;
  49042. }
  49043. #endif
  49044. #ifdef __LITTLE_ENDIAN__
  49045. __ai float32x2_t vcvt_f32_f64(float64x2_t __p0) {
  49046. float32x2_t __ret;
  49047. __ret = (float32x2_t) __builtin_neon_vcvt_f32_f64((int8x16_t)__p0, 9);
  49048. return __ret;
  49049. }
  49050. #else
  49051. __ai float32x2_t vcvt_f32_f64(float64x2_t __p0) {
  49052. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  49053. float32x2_t __ret;
  49054. __ret = (float32x2_t) __builtin_neon_vcvt_f32_f64((int8x16_t)__rev0, 9);
  49055. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  49056. return __ret;
  49057. }
  49058. __ai float32x2_t __noswap_vcvt_f32_f64(float64x2_t __p0) {
  49059. float32x2_t __ret;
  49060. __ret = (float32x2_t) __builtin_neon_vcvt_f32_f64((int8x16_t)__p0, 9);
  49061. return __ret;
  49062. }
  49063. #endif
  49064. #ifdef __LITTLE_ENDIAN__
  49065. __ai float64_t vcvtd_f64_s64(int64_t __p0) {
  49066. float64_t __ret;
  49067. __ret = (float64_t) __builtin_neon_vcvtd_f64_s64(__p0);
  49068. return __ret;
  49069. }
  49070. #else
  49071. __ai float64_t vcvtd_f64_s64(int64_t __p0) {
  49072. float64_t __ret;
  49073. __ret = (float64_t) __builtin_neon_vcvtd_f64_s64(__p0);
  49074. return __ret;
  49075. }
  49076. #endif
  49077. #ifdef __LITTLE_ENDIAN__
  49078. __ai float64_t vcvtd_f64_u64(uint64_t __p0) {
  49079. float64_t __ret;
  49080. __ret = (float64_t) __builtin_neon_vcvtd_f64_u64(__p0);
  49081. return __ret;
  49082. }
  49083. #else
  49084. __ai float64_t vcvtd_f64_u64(uint64_t __p0) {
  49085. float64_t __ret;
  49086. __ret = (float64_t) __builtin_neon_vcvtd_f64_u64(__p0);
  49087. return __ret;
  49088. }
  49089. #endif
  49090. #ifdef __LITTLE_ENDIAN__
  49091. __ai float64x2_t vcvtq_f64_u64(uint64x2_t __p0) {
  49092. float64x2_t __ret;
  49093. __ret = (float64x2_t) __builtin_neon_vcvtq_f64_v((int8x16_t)__p0, 51);
  49094. return __ret;
  49095. }
  49096. #else
  49097. __ai float64x2_t vcvtq_f64_u64(uint64x2_t __p0) {
  49098. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  49099. float64x2_t __ret;
  49100. __ret = (float64x2_t) __builtin_neon_vcvtq_f64_v((int8x16_t)__rev0, 51);
  49101. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  49102. return __ret;
  49103. }
  49104. #endif
  49105. #ifdef __LITTLE_ENDIAN__
  49106. __ai float64x2_t vcvtq_f64_s64(int64x2_t __p0) {
  49107. float64x2_t __ret;
  49108. __ret = (float64x2_t) __builtin_neon_vcvtq_f64_v((int8x16_t)__p0, 35);
  49109. return __ret;
  49110. }
  49111. #else
  49112. __ai float64x2_t vcvtq_f64_s64(int64x2_t __p0) {
  49113. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  49114. float64x2_t __ret;
  49115. __ret = (float64x2_t) __builtin_neon_vcvtq_f64_v((int8x16_t)__rev0, 35);
  49116. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  49117. return __ret;
  49118. }
  49119. #endif
  49120. #ifdef __LITTLE_ENDIAN__
  49121. __ai float64x1_t vcvt_f64_u64(uint64x1_t __p0) {
  49122. float64x1_t __ret;
  49123. __ret = (float64x1_t) __builtin_neon_vcvt_f64_v((int8x8_t)__p0, 19);
  49124. return __ret;
  49125. }
  49126. #else
  49127. __ai float64x1_t vcvt_f64_u64(uint64x1_t __p0) {
  49128. float64x1_t __ret;
  49129. __ret = (float64x1_t) __builtin_neon_vcvt_f64_v((int8x8_t)__p0, 19);
  49130. return __ret;
  49131. }
  49132. #endif
  49133. #ifdef __LITTLE_ENDIAN__
  49134. __ai float64x1_t vcvt_f64_s64(int64x1_t __p0) {
  49135. float64x1_t __ret;
  49136. __ret = (float64x1_t) __builtin_neon_vcvt_f64_v((int8x8_t)__p0, 3);
  49137. return __ret;
  49138. }
  49139. #else
  49140. __ai float64x1_t vcvt_f64_s64(int64x1_t __p0) {
  49141. float64x1_t __ret;
  49142. __ret = (float64x1_t) __builtin_neon_vcvt_f64_v((int8x8_t)__p0, 3);
  49143. return __ret;
  49144. }
  49145. #endif
  49146. #ifdef __LITTLE_ENDIAN__
  49147. __ai float64x2_t vcvt_f64_f32(float32x2_t __p0) {
  49148. float64x2_t __ret;
  49149. __ret = (float64x2_t) __builtin_neon_vcvt_f64_f32((int8x8_t)__p0, 42);
  49150. return __ret;
  49151. }
  49152. #else
  49153. __ai float64x2_t vcvt_f64_f32(float32x2_t __p0) {
  49154. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  49155. float64x2_t __ret;
  49156. __ret = (float64x2_t) __builtin_neon_vcvt_f64_f32((int8x8_t)__rev0, 42);
  49157. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  49158. return __ret;
  49159. }
  49160. __ai float64x2_t __noswap_vcvt_f64_f32(float32x2_t __p0) {
  49161. float64x2_t __ret;
  49162. __ret = (float64x2_t) __builtin_neon_vcvt_f64_f32((int8x8_t)__p0, 42);
  49163. return __ret;
  49164. }
  49165. #endif
  49166. #ifdef __LITTLE_ENDIAN__
  49167. __ai float16x8_t vcvt_high_f16_f32(float16x4_t __p0, float32x4_t __p1) {
  49168. float16x8_t __ret;
  49169. __ret = vcombine_f16(__p0, vcvt_f16_f32(__p1));
  49170. return __ret;
  49171. }
  49172. #else
  49173. __ai float16x8_t vcvt_high_f16_f32(float16x4_t __p0, float32x4_t __p1) {
  49174. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  49175. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  49176. float16x8_t __ret;
  49177. __ret = __noswap_vcombine_f16(__rev0, __noswap_vcvt_f16_f32(__rev1));
  49178. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  49179. return __ret;
  49180. }
  49181. #endif
  49182. #ifdef __LITTLE_ENDIAN__
  49183. __ai float32x4_t vcvt_high_f32_f16(float16x8_t __p0) {
  49184. float32x4_t __ret;
  49185. __ret = vcvt_f32_f16(vget_high_f16(__p0));
  49186. return __ret;
  49187. }
  49188. #else
  49189. __ai float32x4_t vcvt_high_f32_f16(float16x8_t __p0) {
  49190. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  49191. float32x4_t __ret;
  49192. __ret = __noswap_vcvt_f32_f16(__noswap_vget_high_f16(__rev0));
  49193. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  49194. return __ret;
  49195. }
  49196. #endif
  49197. #ifdef __LITTLE_ENDIAN__
  49198. __ai float32x4_t vcvt_high_f32_f64(float32x2_t __p0, float64x2_t __p1) {
  49199. float32x4_t __ret;
  49200. __ret = vcombine_f32(__p0, vcvt_f32_f64(__p1));
  49201. return __ret;
  49202. }
  49203. #else
  49204. __ai float32x4_t vcvt_high_f32_f64(float32x2_t __p0, float64x2_t __p1) {
  49205. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  49206. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  49207. float32x4_t __ret;
  49208. __ret = __noswap_vcombine_f32(__rev0, __noswap_vcvt_f32_f64(__rev1));
  49209. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  49210. return __ret;
  49211. }
  49212. #endif
  49213. #ifdef __LITTLE_ENDIAN__
  49214. __ai float64x2_t vcvt_high_f64_f32(float32x4_t __p0) {
  49215. float64x2_t __ret;
  49216. __ret = vcvt_f64_f32(vget_high_f32(__p0));
  49217. return __ret;
  49218. }
  49219. #else
  49220. __ai float64x2_t vcvt_high_f64_f32(float32x4_t __p0) {
  49221. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  49222. float64x2_t __ret;
  49223. __ret = __noswap_vcvt_f64_f32(__noswap_vget_high_f32(__rev0));
  49224. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  49225. return __ret;
  49226. }
  49227. #endif
  49228. #ifdef __LITTLE_ENDIAN__
  49229. #define vcvts_n_f32_u32(__p0, __p1) __extension__ ({ \
  49230. uint32_t __s0 = __p0; \
  49231. float32_t __ret; \
  49232. __ret = (float32_t) __builtin_neon_vcvts_n_f32_u32(__s0, __p1); \
  49233. __ret; \
  49234. })
  49235. #else
  49236. #define vcvts_n_f32_u32(__p0, __p1) __extension__ ({ \
  49237. uint32_t __s0 = __p0; \
  49238. float32_t __ret; \
  49239. __ret = (float32_t) __builtin_neon_vcvts_n_f32_u32(__s0, __p1); \
  49240. __ret; \
  49241. })
  49242. #endif
  49243. #ifdef __LITTLE_ENDIAN__
  49244. #define vcvts_n_f32_s32(__p0, __p1) __extension__ ({ \
  49245. int32_t __s0 = __p0; \
  49246. float32_t __ret; \
  49247. __ret = (float32_t) __builtin_neon_vcvts_n_f32_s32(__s0, __p1); \
  49248. __ret; \
  49249. })
  49250. #else
  49251. #define vcvts_n_f32_s32(__p0, __p1) __extension__ ({ \
  49252. int32_t __s0 = __p0; \
  49253. float32_t __ret; \
  49254. __ret = (float32_t) __builtin_neon_vcvts_n_f32_s32(__s0, __p1); \
  49255. __ret; \
  49256. })
  49257. #endif
  49258. #ifdef __LITTLE_ENDIAN__
  49259. #define vcvtq_n_f64_u64(__p0, __p1) __extension__ ({ \
  49260. uint64x2_t __s0 = __p0; \
  49261. float64x2_t __ret; \
  49262. __ret = (float64x2_t) __builtin_neon_vcvtq_n_f64_v((int8x16_t)__s0, __p1, 51); \
  49263. __ret; \
  49264. })
  49265. #else
  49266. #define vcvtq_n_f64_u64(__p0, __p1) __extension__ ({ \
  49267. uint64x2_t __s0 = __p0; \
  49268. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  49269. float64x2_t __ret; \
  49270. __ret = (float64x2_t) __builtin_neon_vcvtq_n_f64_v((int8x16_t)__rev0, __p1, 51); \
  49271. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  49272. __ret; \
  49273. })
  49274. #endif
  49275. #ifdef __LITTLE_ENDIAN__
  49276. #define vcvtq_n_f64_s64(__p0, __p1) __extension__ ({ \
  49277. int64x2_t __s0 = __p0; \
  49278. float64x2_t __ret; \
  49279. __ret = (float64x2_t) __builtin_neon_vcvtq_n_f64_v((int8x16_t)__s0, __p1, 35); \
  49280. __ret; \
  49281. })
  49282. #else
  49283. #define vcvtq_n_f64_s64(__p0, __p1) __extension__ ({ \
  49284. int64x2_t __s0 = __p0; \
  49285. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  49286. float64x2_t __ret; \
  49287. __ret = (float64x2_t) __builtin_neon_vcvtq_n_f64_v((int8x16_t)__rev0, __p1, 35); \
  49288. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  49289. __ret; \
  49290. })
  49291. #endif
  49292. #ifdef __LITTLE_ENDIAN__
  49293. #define vcvt_n_f64_u64(__p0, __p1) __extension__ ({ \
  49294. uint64x1_t __s0 = __p0; \
  49295. float64x1_t __ret; \
  49296. __ret = (float64x1_t) __builtin_neon_vcvt_n_f64_v((int8x8_t)__s0, __p1, 19); \
  49297. __ret; \
  49298. })
  49299. #else
  49300. #define vcvt_n_f64_u64(__p0, __p1) __extension__ ({ \
  49301. uint64x1_t __s0 = __p0; \
  49302. float64x1_t __ret; \
  49303. __ret = (float64x1_t) __builtin_neon_vcvt_n_f64_v((int8x8_t)__s0, __p1, 19); \
  49304. __ret; \
  49305. })
  49306. #endif
  49307. #ifdef __LITTLE_ENDIAN__
  49308. #define vcvt_n_f64_s64(__p0, __p1) __extension__ ({ \
  49309. int64x1_t __s0 = __p0; \
  49310. float64x1_t __ret; \
  49311. __ret = (float64x1_t) __builtin_neon_vcvt_n_f64_v((int8x8_t)__s0, __p1, 3); \
  49312. __ret; \
  49313. })
  49314. #else
  49315. #define vcvt_n_f64_s64(__p0, __p1) __extension__ ({ \
  49316. int64x1_t __s0 = __p0; \
  49317. float64x1_t __ret; \
  49318. __ret = (float64x1_t) __builtin_neon_vcvt_n_f64_v((int8x8_t)__s0, __p1, 3); \
  49319. __ret; \
  49320. })
  49321. #endif
  49322. #ifdef __LITTLE_ENDIAN__
  49323. #define vcvtd_n_f64_u64(__p0, __p1) __extension__ ({ \
  49324. uint64_t __s0 = __p0; \
  49325. float64_t __ret; \
  49326. __ret = (float64_t) __builtin_neon_vcvtd_n_f64_u64(__s0, __p1); \
  49327. __ret; \
  49328. })
  49329. #else
  49330. #define vcvtd_n_f64_u64(__p0, __p1) __extension__ ({ \
  49331. uint64_t __s0 = __p0; \
  49332. float64_t __ret; \
  49333. __ret = (float64_t) __builtin_neon_vcvtd_n_f64_u64(__s0, __p1); \
  49334. __ret; \
  49335. })
  49336. #endif
  49337. #ifdef __LITTLE_ENDIAN__
  49338. #define vcvtd_n_f64_s64(__p0, __p1) __extension__ ({ \
  49339. int64_t __s0 = __p0; \
  49340. float64_t __ret; \
  49341. __ret = (float64_t) __builtin_neon_vcvtd_n_f64_s64(__s0, __p1); \
  49342. __ret; \
  49343. })
  49344. #else
  49345. #define vcvtd_n_f64_s64(__p0, __p1) __extension__ ({ \
  49346. int64_t __s0 = __p0; \
  49347. float64_t __ret; \
  49348. __ret = (float64_t) __builtin_neon_vcvtd_n_f64_s64(__s0, __p1); \
  49349. __ret; \
  49350. })
  49351. #endif
  49352. #ifdef __LITTLE_ENDIAN__
  49353. #define vcvts_n_s32_f32(__p0, __p1) __extension__ ({ \
  49354. float32_t __s0 = __p0; \
  49355. int32_t __ret; \
  49356. __ret = (int32_t) __builtin_neon_vcvts_n_s32_f32(__s0, __p1); \
  49357. __ret; \
  49358. })
  49359. #else
  49360. #define vcvts_n_s32_f32(__p0, __p1) __extension__ ({ \
  49361. float32_t __s0 = __p0; \
  49362. int32_t __ret; \
  49363. __ret = (int32_t) __builtin_neon_vcvts_n_s32_f32(__s0, __p1); \
  49364. __ret; \
  49365. })
  49366. #endif
  49367. #ifdef __LITTLE_ENDIAN__
  49368. #define vcvtq_n_s64_f64(__p0, __p1) __extension__ ({ \
  49369. float64x2_t __s0 = __p0; \
  49370. int64x2_t __ret; \
  49371. __ret = (int64x2_t) __builtin_neon_vcvtq_n_s64_v((int8x16_t)__s0, __p1, 35); \
  49372. __ret; \
  49373. })
  49374. #else
  49375. #define vcvtq_n_s64_f64(__p0, __p1) __extension__ ({ \
  49376. float64x2_t __s0 = __p0; \
  49377. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  49378. int64x2_t __ret; \
  49379. __ret = (int64x2_t) __builtin_neon_vcvtq_n_s64_v((int8x16_t)__rev0, __p1, 35); \
  49380. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  49381. __ret; \
  49382. })
  49383. #endif
  49384. #ifdef __LITTLE_ENDIAN__
  49385. #define vcvt_n_s64_f64(__p0, __p1) __extension__ ({ \
  49386. float64x1_t __s0 = __p0; \
  49387. int64x1_t __ret; \
  49388. __ret = (int64x1_t) __builtin_neon_vcvt_n_s64_v((int8x8_t)__s0, __p1, 3); \
  49389. __ret; \
  49390. })
  49391. #else
  49392. #define vcvt_n_s64_f64(__p0, __p1) __extension__ ({ \
  49393. float64x1_t __s0 = __p0; \
  49394. int64x1_t __ret; \
  49395. __ret = (int64x1_t) __builtin_neon_vcvt_n_s64_v((int8x8_t)__s0, __p1, 3); \
  49396. __ret; \
  49397. })
  49398. #endif
  49399. #ifdef __LITTLE_ENDIAN__
  49400. #define vcvtd_n_s64_f64(__p0, __p1) __extension__ ({ \
  49401. float64_t __s0 = __p0; \
  49402. int64_t __ret; \
  49403. __ret = (int64_t) __builtin_neon_vcvtd_n_s64_f64(__s0, __p1); \
  49404. __ret; \
  49405. })
  49406. #else
  49407. #define vcvtd_n_s64_f64(__p0, __p1) __extension__ ({ \
  49408. float64_t __s0 = __p0; \
  49409. int64_t __ret; \
  49410. __ret = (int64_t) __builtin_neon_vcvtd_n_s64_f64(__s0, __p1); \
  49411. __ret; \
  49412. })
  49413. #endif
  49414. #ifdef __LITTLE_ENDIAN__
  49415. #define vcvts_n_u32_f32(__p0, __p1) __extension__ ({ \
  49416. float32_t __s0 = __p0; \
  49417. uint32_t __ret; \
  49418. __ret = (uint32_t) __builtin_neon_vcvts_n_u32_f32(__s0, __p1); \
  49419. __ret; \
  49420. })
  49421. #else
  49422. #define vcvts_n_u32_f32(__p0, __p1) __extension__ ({ \
  49423. float32_t __s0 = __p0; \
  49424. uint32_t __ret; \
  49425. __ret = (uint32_t) __builtin_neon_vcvts_n_u32_f32(__s0, __p1); \
  49426. __ret; \
  49427. })
  49428. #endif
  49429. #ifdef __LITTLE_ENDIAN__
  49430. #define vcvtq_n_u64_f64(__p0, __p1) __extension__ ({ \
  49431. float64x2_t __s0 = __p0; \
  49432. uint64x2_t __ret; \
  49433. __ret = (uint64x2_t) __builtin_neon_vcvtq_n_u64_v((int8x16_t)__s0, __p1, 51); \
  49434. __ret; \
  49435. })
  49436. #else
  49437. #define vcvtq_n_u64_f64(__p0, __p1) __extension__ ({ \
  49438. float64x2_t __s0 = __p0; \
  49439. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  49440. uint64x2_t __ret; \
  49441. __ret = (uint64x2_t) __builtin_neon_vcvtq_n_u64_v((int8x16_t)__rev0, __p1, 51); \
  49442. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  49443. __ret; \
  49444. })
  49445. #endif
  49446. #ifdef __LITTLE_ENDIAN__
  49447. #define vcvt_n_u64_f64(__p0, __p1) __extension__ ({ \
  49448. float64x1_t __s0 = __p0; \
  49449. uint64x1_t __ret; \
  49450. __ret = (uint64x1_t) __builtin_neon_vcvt_n_u64_v((int8x8_t)__s0, __p1, 19); \
  49451. __ret; \
  49452. })
  49453. #else
  49454. #define vcvt_n_u64_f64(__p0, __p1) __extension__ ({ \
  49455. float64x1_t __s0 = __p0; \
  49456. uint64x1_t __ret; \
  49457. __ret = (uint64x1_t) __builtin_neon_vcvt_n_u64_v((int8x8_t)__s0, __p1, 19); \
  49458. __ret; \
  49459. })
  49460. #endif
  49461. #ifdef __LITTLE_ENDIAN__
  49462. #define vcvtd_n_u64_f64(__p0, __p1) __extension__ ({ \
  49463. float64_t __s0 = __p0; \
  49464. uint64_t __ret; \
  49465. __ret = (uint64_t) __builtin_neon_vcvtd_n_u64_f64(__s0, __p1); \
  49466. __ret; \
  49467. })
  49468. #else
  49469. #define vcvtd_n_u64_f64(__p0, __p1) __extension__ ({ \
  49470. float64_t __s0 = __p0; \
  49471. uint64_t __ret; \
  49472. __ret = (uint64_t) __builtin_neon_vcvtd_n_u64_f64(__s0, __p1); \
  49473. __ret; \
  49474. })
  49475. #endif
  49476. #ifdef __LITTLE_ENDIAN__
  49477. __ai int32_t vcvts_s32_f32(float32_t __p0) {
  49478. int32_t __ret;
  49479. __ret = (int32_t) __builtin_neon_vcvts_s32_f32(__p0);
  49480. return __ret;
  49481. }
  49482. #else
  49483. __ai int32_t vcvts_s32_f32(float32_t __p0) {
  49484. int32_t __ret;
  49485. __ret = (int32_t) __builtin_neon_vcvts_s32_f32(__p0);
  49486. return __ret;
  49487. }
  49488. #endif
  49489. #ifdef __LITTLE_ENDIAN__
  49490. __ai int64_t vcvtd_s64_f64(float64_t __p0) {
  49491. int64_t __ret;
  49492. __ret = (int64_t) __builtin_neon_vcvtd_s64_f64(__p0);
  49493. return __ret;
  49494. }
  49495. #else
  49496. __ai int64_t vcvtd_s64_f64(float64_t __p0) {
  49497. int64_t __ret;
  49498. __ret = (int64_t) __builtin_neon_vcvtd_s64_f64(__p0);
  49499. return __ret;
  49500. }
  49501. #endif
  49502. #ifdef __LITTLE_ENDIAN__
  49503. __ai int64x2_t vcvtq_s64_f64(float64x2_t __p0) {
  49504. int64x2_t __ret;
  49505. __ret = (int64x2_t) __builtin_neon_vcvtq_s64_v((int8x16_t)__p0, 35);
  49506. return __ret;
  49507. }
  49508. #else
  49509. __ai int64x2_t vcvtq_s64_f64(float64x2_t __p0) {
  49510. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  49511. int64x2_t __ret;
  49512. __ret = (int64x2_t) __builtin_neon_vcvtq_s64_v((int8x16_t)__rev0, 35);
  49513. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  49514. return __ret;
  49515. }
  49516. #endif
  49517. #ifdef __LITTLE_ENDIAN__
  49518. __ai int64x1_t vcvt_s64_f64(float64x1_t __p0) {
  49519. int64x1_t __ret;
  49520. __ret = (int64x1_t) __builtin_neon_vcvt_s64_v((int8x8_t)__p0, 3);
  49521. return __ret;
  49522. }
  49523. #else
  49524. __ai int64x1_t vcvt_s64_f64(float64x1_t __p0) {
  49525. int64x1_t __ret;
  49526. __ret = (int64x1_t) __builtin_neon_vcvt_s64_v((int8x8_t)__p0, 3);
  49527. return __ret;
  49528. }
  49529. #endif
  49530. #ifdef __LITTLE_ENDIAN__
  49531. __ai uint32_t vcvts_u32_f32(float32_t __p0) {
  49532. uint32_t __ret;
  49533. __ret = (uint32_t) __builtin_neon_vcvts_u32_f32(__p0);
  49534. return __ret;
  49535. }
  49536. #else
  49537. __ai uint32_t vcvts_u32_f32(float32_t __p0) {
  49538. uint32_t __ret;
  49539. __ret = (uint32_t) __builtin_neon_vcvts_u32_f32(__p0);
  49540. return __ret;
  49541. }
  49542. #endif
  49543. #ifdef __LITTLE_ENDIAN__
  49544. __ai uint64_t vcvtd_u64_f64(float64_t __p0) {
  49545. uint64_t __ret;
  49546. __ret = (uint64_t) __builtin_neon_vcvtd_u64_f64(__p0);
  49547. return __ret;
  49548. }
  49549. #else
  49550. __ai uint64_t vcvtd_u64_f64(float64_t __p0) {
  49551. uint64_t __ret;
  49552. __ret = (uint64_t) __builtin_neon_vcvtd_u64_f64(__p0);
  49553. return __ret;
  49554. }
  49555. #endif
  49556. #ifdef __LITTLE_ENDIAN__
  49557. __ai uint64x2_t vcvtq_u64_f64(float64x2_t __p0) {
  49558. uint64x2_t __ret;
  49559. __ret = (uint64x2_t) __builtin_neon_vcvtq_u64_v((int8x16_t)__p0, 51);
  49560. return __ret;
  49561. }
  49562. #else
  49563. __ai uint64x2_t vcvtq_u64_f64(float64x2_t __p0) {
  49564. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  49565. uint64x2_t __ret;
  49566. __ret = (uint64x2_t) __builtin_neon_vcvtq_u64_v((int8x16_t)__rev0, 51);
  49567. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  49568. return __ret;
  49569. }
  49570. #endif
  49571. #ifdef __LITTLE_ENDIAN__
  49572. __ai uint64x1_t vcvt_u64_f64(float64x1_t __p0) {
  49573. uint64x1_t __ret;
  49574. __ret = (uint64x1_t) __builtin_neon_vcvt_u64_v((int8x8_t)__p0, 19);
  49575. return __ret;
  49576. }
  49577. #else
  49578. __ai uint64x1_t vcvt_u64_f64(float64x1_t __p0) {
  49579. uint64x1_t __ret;
  49580. __ret = (uint64x1_t) __builtin_neon_vcvt_u64_v((int8x8_t)__p0, 19);
  49581. return __ret;
  49582. }
  49583. #endif
  49584. #ifdef __LITTLE_ENDIAN__
  49585. __ai int32_t vcvtas_s32_f32(float32_t __p0) {
  49586. int32_t __ret;
  49587. __ret = (int32_t) __builtin_neon_vcvtas_s32_f32(__p0);
  49588. return __ret;
  49589. }
  49590. #else
  49591. __ai int32_t vcvtas_s32_f32(float32_t __p0) {
  49592. int32_t __ret;
  49593. __ret = (int32_t) __builtin_neon_vcvtas_s32_f32(__p0);
  49594. return __ret;
  49595. }
  49596. #endif
  49597. #ifdef __LITTLE_ENDIAN__
  49598. __ai int64_t vcvtad_s64_f64(float64_t __p0) {
  49599. int64_t __ret;
  49600. __ret = (int64_t) __builtin_neon_vcvtad_s64_f64(__p0);
  49601. return __ret;
  49602. }
  49603. #else
  49604. __ai int64_t vcvtad_s64_f64(float64_t __p0) {
  49605. int64_t __ret;
  49606. __ret = (int64_t) __builtin_neon_vcvtad_s64_f64(__p0);
  49607. return __ret;
  49608. }
  49609. #endif
  49610. #ifdef __LITTLE_ENDIAN__
  49611. __ai uint32_t vcvtas_u32_f32(float32_t __p0) {
  49612. uint32_t __ret;
  49613. __ret = (uint32_t) __builtin_neon_vcvtas_u32_f32(__p0);
  49614. return __ret;
  49615. }
  49616. #else
  49617. __ai uint32_t vcvtas_u32_f32(float32_t __p0) {
  49618. uint32_t __ret;
  49619. __ret = (uint32_t) __builtin_neon_vcvtas_u32_f32(__p0);
  49620. return __ret;
  49621. }
  49622. #endif
  49623. #ifdef __LITTLE_ENDIAN__
  49624. __ai uint64_t vcvtad_u64_f64(float64_t __p0) {
  49625. uint64_t __ret;
  49626. __ret = (uint64_t) __builtin_neon_vcvtad_u64_f64(__p0);
  49627. return __ret;
  49628. }
  49629. #else
  49630. __ai uint64_t vcvtad_u64_f64(float64_t __p0) {
  49631. uint64_t __ret;
  49632. __ret = (uint64_t) __builtin_neon_vcvtad_u64_f64(__p0);
  49633. return __ret;
  49634. }
  49635. #endif
  49636. #ifdef __LITTLE_ENDIAN__
  49637. __ai int32_t vcvtms_s32_f32(float32_t __p0) {
  49638. int32_t __ret;
  49639. __ret = (int32_t) __builtin_neon_vcvtms_s32_f32(__p0);
  49640. return __ret;
  49641. }
  49642. #else
  49643. __ai int32_t vcvtms_s32_f32(float32_t __p0) {
  49644. int32_t __ret;
  49645. __ret = (int32_t) __builtin_neon_vcvtms_s32_f32(__p0);
  49646. return __ret;
  49647. }
  49648. #endif
  49649. #ifdef __LITTLE_ENDIAN__
  49650. __ai int64_t vcvtmd_s64_f64(float64_t __p0) {
  49651. int64_t __ret;
  49652. __ret = (int64_t) __builtin_neon_vcvtmd_s64_f64(__p0);
  49653. return __ret;
  49654. }
  49655. #else
  49656. __ai int64_t vcvtmd_s64_f64(float64_t __p0) {
  49657. int64_t __ret;
  49658. __ret = (int64_t) __builtin_neon_vcvtmd_s64_f64(__p0);
  49659. return __ret;
  49660. }
  49661. #endif
  49662. #ifdef __LITTLE_ENDIAN__
  49663. __ai uint32_t vcvtms_u32_f32(float32_t __p0) {
  49664. uint32_t __ret;
  49665. __ret = (uint32_t) __builtin_neon_vcvtms_u32_f32(__p0);
  49666. return __ret;
  49667. }
  49668. #else
  49669. __ai uint32_t vcvtms_u32_f32(float32_t __p0) {
  49670. uint32_t __ret;
  49671. __ret = (uint32_t) __builtin_neon_vcvtms_u32_f32(__p0);
  49672. return __ret;
  49673. }
  49674. #endif
  49675. #ifdef __LITTLE_ENDIAN__
  49676. __ai uint64_t vcvtmd_u64_f64(float64_t __p0) {
  49677. uint64_t __ret;
  49678. __ret = (uint64_t) __builtin_neon_vcvtmd_u64_f64(__p0);
  49679. return __ret;
  49680. }
  49681. #else
  49682. __ai uint64_t vcvtmd_u64_f64(float64_t __p0) {
  49683. uint64_t __ret;
  49684. __ret = (uint64_t) __builtin_neon_vcvtmd_u64_f64(__p0);
  49685. return __ret;
  49686. }
  49687. #endif
  49688. #ifdef __LITTLE_ENDIAN__
  49689. __ai int32_t vcvtns_s32_f32(float32_t __p0) {
  49690. int32_t __ret;
  49691. __ret = (int32_t) __builtin_neon_vcvtns_s32_f32(__p0);
  49692. return __ret;
  49693. }
  49694. #else
  49695. __ai int32_t vcvtns_s32_f32(float32_t __p0) {
  49696. int32_t __ret;
  49697. __ret = (int32_t) __builtin_neon_vcvtns_s32_f32(__p0);
  49698. return __ret;
  49699. }
  49700. #endif
  49701. #ifdef __LITTLE_ENDIAN__
  49702. __ai int64_t vcvtnd_s64_f64(float64_t __p0) {
  49703. int64_t __ret;
  49704. __ret = (int64_t) __builtin_neon_vcvtnd_s64_f64(__p0);
  49705. return __ret;
  49706. }
  49707. #else
  49708. __ai int64_t vcvtnd_s64_f64(float64_t __p0) {
  49709. int64_t __ret;
  49710. __ret = (int64_t) __builtin_neon_vcvtnd_s64_f64(__p0);
  49711. return __ret;
  49712. }
  49713. #endif
  49714. #ifdef __LITTLE_ENDIAN__
  49715. __ai uint32_t vcvtns_u32_f32(float32_t __p0) {
  49716. uint32_t __ret;
  49717. __ret = (uint32_t) __builtin_neon_vcvtns_u32_f32(__p0);
  49718. return __ret;
  49719. }
  49720. #else
  49721. __ai uint32_t vcvtns_u32_f32(float32_t __p0) {
  49722. uint32_t __ret;
  49723. __ret = (uint32_t) __builtin_neon_vcvtns_u32_f32(__p0);
  49724. return __ret;
  49725. }
  49726. #endif
  49727. #ifdef __LITTLE_ENDIAN__
  49728. __ai uint64_t vcvtnd_u64_f64(float64_t __p0) {
  49729. uint64_t __ret;
  49730. __ret = (uint64_t) __builtin_neon_vcvtnd_u64_f64(__p0);
  49731. return __ret;
  49732. }
  49733. #else
  49734. __ai uint64_t vcvtnd_u64_f64(float64_t __p0) {
  49735. uint64_t __ret;
  49736. __ret = (uint64_t) __builtin_neon_vcvtnd_u64_f64(__p0);
  49737. return __ret;
  49738. }
  49739. #endif
  49740. #ifdef __LITTLE_ENDIAN__
  49741. __ai int32_t vcvtps_s32_f32(float32_t __p0) {
  49742. int32_t __ret;
  49743. __ret = (int32_t) __builtin_neon_vcvtps_s32_f32(__p0);
  49744. return __ret;
  49745. }
  49746. #else
  49747. __ai int32_t vcvtps_s32_f32(float32_t __p0) {
  49748. int32_t __ret;
  49749. __ret = (int32_t) __builtin_neon_vcvtps_s32_f32(__p0);
  49750. return __ret;
  49751. }
  49752. #endif
  49753. #ifdef __LITTLE_ENDIAN__
  49754. __ai int64_t vcvtpd_s64_f64(float64_t __p0) {
  49755. int64_t __ret;
  49756. __ret = (int64_t) __builtin_neon_vcvtpd_s64_f64(__p0);
  49757. return __ret;
  49758. }
  49759. #else
  49760. __ai int64_t vcvtpd_s64_f64(float64_t __p0) {
  49761. int64_t __ret;
  49762. __ret = (int64_t) __builtin_neon_vcvtpd_s64_f64(__p0);
  49763. return __ret;
  49764. }
  49765. #endif
  49766. #ifdef __LITTLE_ENDIAN__
  49767. __ai uint32_t vcvtps_u32_f32(float32_t __p0) {
  49768. uint32_t __ret;
  49769. __ret = (uint32_t) __builtin_neon_vcvtps_u32_f32(__p0);
  49770. return __ret;
  49771. }
  49772. #else
  49773. __ai uint32_t vcvtps_u32_f32(float32_t __p0) {
  49774. uint32_t __ret;
  49775. __ret = (uint32_t) __builtin_neon_vcvtps_u32_f32(__p0);
  49776. return __ret;
  49777. }
  49778. #endif
  49779. #ifdef __LITTLE_ENDIAN__
  49780. __ai uint64_t vcvtpd_u64_f64(float64_t __p0) {
  49781. uint64_t __ret;
  49782. __ret = (uint64_t) __builtin_neon_vcvtpd_u64_f64(__p0);
  49783. return __ret;
  49784. }
  49785. #else
  49786. __ai uint64_t vcvtpd_u64_f64(float64_t __p0) {
  49787. uint64_t __ret;
  49788. __ret = (uint64_t) __builtin_neon_vcvtpd_u64_f64(__p0);
  49789. return __ret;
  49790. }
  49791. #endif
  49792. #ifdef __LITTLE_ENDIAN__
  49793. __ai float32_t vcvtxd_f32_f64(float64_t __p0) {
  49794. float32_t __ret;
  49795. __ret = (float32_t) __builtin_neon_vcvtxd_f32_f64(__p0);
  49796. return __ret;
  49797. }
  49798. #else
  49799. __ai float32_t vcvtxd_f32_f64(float64_t __p0) {
  49800. float32_t __ret;
  49801. __ret = (float32_t) __builtin_neon_vcvtxd_f32_f64(__p0);
  49802. return __ret;
  49803. }
  49804. #endif
  49805. #ifdef __LITTLE_ENDIAN__
  49806. __ai float32x2_t vcvtx_f32_f64(float64x2_t __p0) {
  49807. float32x2_t __ret;
  49808. __ret = (float32x2_t) __builtin_neon_vcvtx_f32_v((int8x16_t)__p0, 42);
  49809. return __ret;
  49810. }
  49811. #else
  49812. __ai float32x2_t vcvtx_f32_f64(float64x2_t __p0) {
  49813. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  49814. float32x2_t __ret;
  49815. __ret = (float32x2_t) __builtin_neon_vcvtx_f32_v((int8x16_t)__rev0, 42);
  49816. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  49817. return __ret;
  49818. }
  49819. __ai float32x2_t __noswap_vcvtx_f32_f64(float64x2_t __p0) {
  49820. float32x2_t __ret;
  49821. __ret = (float32x2_t) __builtin_neon_vcvtx_f32_v((int8x16_t)__p0, 42);
  49822. return __ret;
  49823. }
  49824. #endif
  49825. #ifdef __LITTLE_ENDIAN__
  49826. __ai float32x4_t vcvtx_high_f32_f64(float32x2_t __p0, float64x2_t __p1) {
  49827. float32x4_t __ret;
  49828. __ret = vcombine_f32(__p0, vcvtx_f32_f64(__p1));
  49829. return __ret;
  49830. }
  49831. #else
  49832. __ai float32x4_t vcvtx_high_f32_f64(float32x2_t __p0, float64x2_t __p1) {
  49833. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  49834. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  49835. float32x4_t __ret;
  49836. __ret = __noswap_vcombine_f32(__rev0, __noswap_vcvtx_f32_f64(__rev1));
  49837. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  49838. return __ret;
  49839. }
  49840. #endif
  49841. #ifdef __LITTLE_ENDIAN__
  49842. __ai float64x2_t vdivq_f64(float64x2_t __p0, float64x2_t __p1) {
  49843. float64x2_t __ret;
  49844. __ret = __p0 / __p1;
  49845. return __ret;
  49846. }
  49847. #else
  49848. __ai float64x2_t vdivq_f64(float64x2_t __p0, float64x2_t __p1) {
  49849. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  49850. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  49851. float64x2_t __ret;
  49852. __ret = __rev0 / __rev1;
  49853. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  49854. return __ret;
  49855. }
  49856. #endif
  49857. #ifdef __LITTLE_ENDIAN__
  49858. __ai float32x4_t vdivq_f32(float32x4_t __p0, float32x4_t __p1) {
  49859. float32x4_t __ret;
  49860. __ret = __p0 / __p1;
  49861. return __ret;
  49862. }
  49863. #else
  49864. __ai float32x4_t vdivq_f32(float32x4_t __p0, float32x4_t __p1) {
  49865. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  49866. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  49867. float32x4_t __ret;
  49868. __ret = __rev0 / __rev1;
  49869. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  49870. return __ret;
  49871. }
  49872. #endif
  49873. #ifdef __LITTLE_ENDIAN__
  49874. __ai float64x1_t vdiv_f64(float64x1_t __p0, float64x1_t __p1) {
  49875. float64x1_t __ret;
  49876. __ret = __p0 / __p1;
  49877. return __ret;
  49878. }
  49879. #else
  49880. __ai float64x1_t vdiv_f64(float64x1_t __p0, float64x1_t __p1) {
  49881. float64x1_t __ret;
  49882. __ret = __p0 / __p1;
  49883. return __ret;
  49884. }
  49885. #endif
  49886. #ifdef __LITTLE_ENDIAN__
  49887. __ai float32x2_t vdiv_f32(float32x2_t __p0, float32x2_t __p1) {
  49888. float32x2_t __ret;
  49889. __ret = __p0 / __p1;
  49890. return __ret;
  49891. }
  49892. #else
  49893. __ai float32x2_t vdiv_f32(float32x2_t __p0, float32x2_t __p1) {
  49894. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  49895. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  49896. float32x2_t __ret;
  49897. __ret = __rev0 / __rev1;
  49898. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  49899. return __ret;
  49900. }
  49901. #endif
  49902. #ifdef __LITTLE_ENDIAN__
  49903. #define vdupb_lane_p8(__p0, __p1) __extension__ ({ \
  49904. poly8x8_t __s0 = __p0; \
  49905. poly8_t __ret; \
  49906. __ret = (poly8_t) __builtin_neon_vdupb_lane_i8((int8x8_t)__s0, __p1); \
  49907. __ret; \
  49908. })
  49909. #else
  49910. #define vdupb_lane_p8(__p0, __p1) __extension__ ({ \
  49911. poly8x8_t __s0 = __p0; \
  49912. poly8x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  49913. poly8_t __ret; \
  49914. __ret = (poly8_t) __builtin_neon_vdupb_lane_i8((int8x8_t)__rev0, __p1); \
  49915. __ret; \
  49916. })
  49917. #endif
  49918. #ifdef __LITTLE_ENDIAN__
  49919. #define vduph_lane_p16(__p0, __p1) __extension__ ({ \
  49920. poly16x4_t __s0 = __p0; \
  49921. poly16_t __ret; \
  49922. __ret = (poly16_t) __builtin_neon_vduph_lane_i16((int8x8_t)__s0, __p1); \
  49923. __ret; \
  49924. })
  49925. #else
  49926. #define vduph_lane_p16(__p0, __p1) __extension__ ({ \
  49927. poly16x4_t __s0 = __p0; \
  49928. poly16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  49929. poly16_t __ret; \
  49930. __ret = (poly16_t) __builtin_neon_vduph_lane_i16((int8x8_t)__rev0, __p1); \
  49931. __ret; \
  49932. })
  49933. #endif
  49934. #ifdef __LITTLE_ENDIAN__
  49935. #define vdupb_lane_u8(__p0, __p1) __extension__ ({ \
  49936. uint8x8_t __s0 = __p0; \
  49937. uint8_t __ret; \
  49938. __ret = (uint8_t) __builtin_neon_vdupb_lane_i8((int8x8_t)__s0, __p1); \
  49939. __ret; \
  49940. })
  49941. #else
  49942. #define vdupb_lane_u8(__p0, __p1) __extension__ ({ \
  49943. uint8x8_t __s0 = __p0; \
  49944. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  49945. uint8_t __ret; \
  49946. __ret = (uint8_t) __builtin_neon_vdupb_lane_i8((int8x8_t)__rev0, __p1); \
  49947. __ret; \
  49948. })
  49949. #endif
  49950. #ifdef __LITTLE_ENDIAN__
  49951. #define vdups_lane_u32(__p0, __p1) __extension__ ({ \
  49952. uint32x2_t __s0 = __p0; \
  49953. uint32_t __ret; \
  49954. __ret = (uint32_t) __builtin_neon_vdups_lane_i32((int8x8_t)__s0, __p1); \
  49955. __ret; \
  49956. })
  49957. #else
  49958. #define vdups_lane_u32(__p0, __p1) __extension__ ({ \
  49959. uint32x2_t __s0 = __p0; \
  49960. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  49961. uint32_t __ret; \
  49962. __ret = (uint32_t) __builtin_neon_vdups_lane_i32((int8x8_t)__rev0, __p1); \
  49963. __ret; \
  49964. })
  49965. #endif
  49966. #ifdef __LITTLE_ENDIAN__
  49967. #define vdupd_lane_u64(__p0, __p1) __extension__ ({ \
  49968. uint64x1_t __s0 = __p0; \
  49969. uint64_t __ret; \
  49970. __ret = (uint64_t) __builtin_neon_vdupd_lane_i64((int8x8_t)__s0, __p1); \
  49971. __ret; \
  49972. })
  49973. #else
  49974. #define vdupd_lane_u64(__p0, __p1) __extension__ ({ \
  49975. uint64x1_t __s0 = __p0; \
  49976. uint64_t __ret; \
  49977. __ret = (uint64_t) __builtin_neon_vdupd_lane_i64((int8x8_t)__s0, __p1); \
  49978. __ret; \
  49979. })
  49980. #endif
  49981. #ifdef __LITTLE_ENDIAN__
  49982. #define vduph_lane_u16(__p0, __p1) __extension__ ({ \
  49983. uint16x4_t __s0 = __p0; \
  49984. uint16_t __ret; \
  49985. __ret = (uint16_t) __builtin_neon_vduph_lane_i16((int8x8_t)__s0, __p1); \
  49986. __ret; \
  49987. })
  49988. #else
  49989. #define vduph_lane_u16(__p0, __p1) __extension__ ({ \
  49990. uint16x4_t __s0 = __p0; \
  49991. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  49992. uint16_t __ret; \
  49993. __ret = (uint16_t) __builtin_neon_vduph_lane_i16((int8x8_t)__rev0, __p1); \
  49994. __ret; \
  49995. })
  49996. #endif
  49997. #ifdef __LITTLE_ENDIAN__
  49998. #define vdupb_lane_s8(__p0, __p1) __extension__ ({ \
  49999. int8x8_t __s0 = __p0; \
  50000. int8_t __ret; \
  50001. __ret = (int8_t) __builtin_neon_vdupb_lane_i8((int8x8_t)__s0, __p1); \
  50002. __ret; \
  50003. })
  50004. #else
  50005. #define vdupb_lane_s8(__p0, __p1) __extension__ ({ \
  50006. int8x8_t __s0 = __p0; \
  50007. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  50008. int8_t __ret; \
  50009. __ret = (int8_t) __builtin_neon_vdupb_lane_i8((int8x8_t)__rev0, __p1); \
  50010. __ret; \
  50011. })
  50012. #endif
  50013. #ifdef __LITTLE_ENDIAN__
  50014. #define vdupd_lane_f64(__p0, __p1) __extension__ ({ \
  50015. float64x1_t __s0 = __p0; \
  50016. float64_t __ret; \
  50017. __ret = (float64_t) __builtin_neon_vdupd_lane_f64((int8x8_t)__s0, __p1); \
  50018. __ret; \
  50019. })
  50020. #else
  50021. #define vdupd_lane_f64(__p0, __p1) __extension__ ({ \
  50022. float64x1_t __s0 = __p0; \
  50023. float64_t __ret; \
  50024. __ret = (float64_t) __builtin_neon_vdupd_lane_f64((int8x8_t)__s0, __p1); \
  50025. __ret; \
  50026. })
  50027. #endif
  50028. #ifdef __LITTLE_ENDIAN__
  50029. #define vdups_lane_f32(__p0, __p1) __extension__ ({ \
  50030. float32x2_t __s0 = __p0; \
  50031. float32_t __ret; \
  50032. __ret = (float32_t) __builtin_neon_vdups_lane_f32((int8x8_t)__s0, __p1); \
  50033. __ret; \
  50034. })
  50035. #else
  50036. #define vdups_lane_f32(__p0, __p1) __extension__ ({ \
  50037. float32x2_t __s0 = __p0; \
  50038. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  50039. float32_t __ret; \
  50040. __ret = (float32_t) __builtin_neon_vdups_lane_f32((int8x8_t)__rev0, __p1); \
  50041. __ret; \
  50042. })
  50043. #endif
  50044. #ifdef __LITTLE_ENDIAN__
  50045. #define vdups_lane_s32(__p0, __p1) __extension__ ({ \
  50046. int32x2_t __s0 = __p0; \
  50047. int32_t __ret; \
  50048. __ret = (int32_t) __builtin_neon_vdups_lane_i32((int8x8_t)__s0, __p1); \
  50049. __ret; \
  50050. })
  50051. #else
  50052. #define vdups_lane_s32(__p0, __p1) __extension__ ({ \
  50053. int32x2_t __s0 = __p0; \
  50054. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  50055. int32_t __ret; \
  50056. __ret = (int32_t) __builtin_neon_vdups_lane_i32((int8x8_t)__rev0, __p1); \
  50057. __ret; \
  50058. })
  50059. #endif
  50060. #ifdef __LITTLE_ENDIAN__
  50061. #define vdupd_lane_s64(__p0, __p1) __extension__ ({ \
  50062. int64x1_t __s0 = __p0; \
  50063. int64_t __ret; \
  50064. __ret = (int64_t) __builtin_neon_vdupd_lane_i64((int8x8_t)__s0, __p1); \
  50065. __ret; \
  50066. })
  50067. #else
  50068. #define vdupd_lane_s64(__p0, __p1) __extension__ ({ \
  50069. int64x1_t __s0 = __p0; \
  50070. int64_t __ret; \
  50071. __ret = (int64_t) __builtin_neon_vdupd_lane_i64((int8x8_t)__s0, __p1); \
  50072. __ret; \
  50073. })
  50074. #endif
  50075. #ifdef __LITTLE_ENDIAN__
  50076. #define vduph_lane_s16(__p0, __p1) __extension__ ({ \
  50077. int16x4_t __s0 = __p0; \
  50078. int16_t __ret; \
  50079. __ret = (int16_t) __builtin_neon_vduph_lane_i16((int8x8_t)__s0, __p1); \
  50080. __ret; \
  50081. })
  50082. #else
  50083. #define vduph_lane_s16(__p0, __p1) __extension__ ({ \
  50084. int16x4_t __s0 = __p0; \
  50085. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  50086. int16_t __ret; \
  50087. __ret = (int16_t) __builtin_neon_vduph_lane_i16((int8x8_t)__rev0, __p1); \
  50088. __ret; \
  50089. })
  50090. #endif
  50091. #ifdef __LITTLE_ENDIAN__
  50092. #define vdup_lane_p64(__p0, __p1) __extension__ ({ \
  50093. poly64x1_t __s0 = __p0; \
  50094. poly64x1_t __ret; \
  50095. __ret = __builtin_shufflevector(__s0, __s0, __p1); \
  50096. __ret; \
  50097. })
  50098. #else
  50099. #define vdup_lane_p64(__p0, __p1) __extension__ ({ \
  50100. poly64x1_t __s0 = __p0; \
  50101. poly64x1_t __ret; \
  50102. __ret = __builtin_shufflevector(__s0, __s0, __p1); \
  50103. __ret; \
  50104. })
  50105. #endif
  50106. #ifdef __LITTLE_ENDIAN__
  50107. #define vdupq_lane_p64(__p0, __p1) __extension__ ({ \
  50108. poly64x1_t __s0 = __p0; \
  50109. poly64x2_t __ret; \
  50110. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1); \
  50111. __ret; \
  50112. })
  50113. #else
  50114. #define vdupq_lane_p64(__p0, __p1) __extension__ ({ \
  50115. poly64x1_t __s0 = __p0; \
  50116. poly64x2_t __ret; \
  50117. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1); \
  50118. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  50119. __ret; \
  50120. })
  50121. #endif
  50122. #ifdef __LITTLE_ENDIAN__
  50123. #define vdupq_lane_f64(__p0, __p1) __extension__ ({ \
  50124. float64x1_t __s0 = __p0; \
  50125. float64x2_t __ret; \
  50126. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1); \
  50127. __ret; \
  50128. })
  50129. #else
  50130. #define vdupq_lane_f64(__p0, __p1) __extension__ ({ \
  50131. float64x1_t __s0 = __p0; \
  50132. float64x2_t __ret; \
  50133. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1); \
  50134. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  50135. __ret; \
  50136. })
  50137. #endif
  50138. #ifdef __LITTLE_ENDIAN__
  50139. #define vdupq_lane_f16(__p0, __p1) __extension__ ({ \
  50140. float16x4_t __s0 = __p0; \
  50141. float16x8_t __ret; \
  50142. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1); \
  50143. __ret; \
  50144. })
  50145. #else
  50146. #define vdupq_lane_f16(__p0, __p1) __extension__ ({ \
  50147. float16x4_t __s0 = __p0; \
  50148. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  50149. float16x8_t __ret; \
  50150. __ret = __builtin_shufflevector(__rev0, __rev0, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1); \
  50151. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  50152. __ret; \
  50153. })
  50154. #endif
  50155. #ifdef __LITTLE_ENDIAN__
  50156. #define vdup_lane_f64(__p0, __p1) __extension__ ({ \
  50157. float64x1_t __s0 = __p0; \
  50158. float64x1_t __ret; \
  50159. __ret = __builtin_shufflevector(__s0, __s0, __p1); \
  50160. __ret; \
  50161. })
  50162. #else
  50163. #define vdup_lane_f64(__p0, __p1) __extension__ ({ \
  50164. float64x1_t __s0 = __p0; \
  50165. float64x1_t __ret; \
  50166. __ret = __builtin_shufflevector(__s0, __s0, __p1); \
  50167. __ret; \
  50168. })
  50169. #endif
  50170. #ifdef __LITTLE_ENDIAN__
  50171. #define vdup_lane_f16(__p0, __p1) __extension__ ({ \
  50172. float16x4_t __s0 = __p0; \
  50173. float16x4_t __ret; \
  50174. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1, __p1, __p1); \
  50175. __ret; \
  50176. })
  50177. #else
  50178. #define vdup_lane_f16(__p0, __p1) __extension__ ({ \
  50179. float16x4_t __s0 = __p0; \
  50180. float16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  50181. float16x4_t __ret; \
  50182. __ret = __builtin_shufflevector(__rev0, __rev0, __p1, __p1, __p1, __p1); \
  50183. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  50184. __ret; \
  50185. })
  50186. #endif
  50187. #ifdef __LITTLE_ENDIAN__
  50188. #define vdupb_laneq_p8(__p0, __p1) __extension__ ({ \
  50189. poly8x16_t __s0 = __p0; \
  50190. poly8_t __ret; \
  50191. __ret = (poly8_t) __builtin_neon_vdupb_laneq_i8((int8x16_t)__s0, __p1); \
  50192. __ret; \
  50193. })
  50194. #else
  50195. #define vdupb_laneq_p8(__p0, __p1) __extension__ ({ \
  50196. poly8x16_t __s0 = __p0; \
  50197. poly8x16_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  50198. poly8_t __ret; \
  50199. __ret = (poly8_t) __builtin_neon_vdupb_laneq_i8((int8x16_t)__rev0, __p1); \
  50200. __ret; \
  50201. })
  50202. #endif
  50203. #ifdef __LITTLE_ENDIAN__
  50204. #define vduph_laneq_p16(__p0, __p1) __extension__ ({ \
  50205. poly16x8_t __s0 = __p0; \
  50206. poly16_t __ret; \
  50207. __ret = (poly16_t) __builtin_neon_vduph_laneq_i16((int8x16_t)__s0, __p1); \
  50208. __ret; \
  50209. })
  50210. #else
  50211. #define vduph_laneq_p16(__p0, __p1) __extension__ ({ \
  50212. poly16x8_t __s0 = __p0; \
  50213. poly16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  50214. poly16_t __ret; \
  50215. __ret = (poly16_t) __builtin_neon_vduph_laneq_i16((int8x16_t)__rev0, __p1); \
  50216. __ret; \
  50217. })
  50218. #endif
  50219. #ifdef __LITTLE_ENDIAN__
  50220. #define vdupb_laneq_u8(__p0, __p1) __extension__ ({ \
  50221. uint8x16_t __s0 = __p0; \
  50222. uint8_t __ret; \
  50223. __ret = (uint8_t) __builtin_neon_vdupb_laneq_i8((int8x16_t)__s0, __p1); \
  50224. __ret; \
  50225. })
  50226. #else
  50227. #define vdupb_laneq_u8(__p0, __p1) __extension__ ({ \
  50228. uint8x16_t __s0 = __p0; \
  50229. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  50230. uint8_t __ret; \
  50231. __ret = (uint8_t) __builtin_neon_vdupb_laneq_i8((int8x16_t)__rev0, __p1); \
  50232. __ret; \
  50233. })
  50234. #endif
  50235. #ifdef __LITTLE_ENDIAN__
  50236. #define vdups_laneq_u32(__p0, __p1) __extension__ ({ \
  50237. uint32x4_t __s0 = __p0; \
  50238. uint32_t __ret; \
  50239. __ret = (uint32_t) __builtin_neon_vdups_laneq_i32((int8x16_t)__s0, __p1); \
  50240. __ret; \
  50241. })
  50242. #else
  50243. #define vdups_laneq_u32(__p0, __p1) __extension__ ({ \
  50244. uint32x4_t __s0 = __p0; \
  50245. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  50246. uint32_t __ret; \
  50247. __ret = (uint32_t) __builtin_neon_vdups_laneq_i32((int8x16_t)__rev0, __p1); \
  50248. __ret; \
  50249. })
  50250. #endif
  50251. #ifdef __LITTLE_ENDIAN__
  50252. #define vdupd_laneq_u64(__p0, __p1) __extension__ ({ \
  50253. uint64x2_t __s0 = __p0; \
  50254. uint64_t __ret; \
  50255. __ret = (uint64_t) __builtin_neon_vdupd_laneq_i64((int8x16_t)__s0, __p1); \
  50256. __ret; \
  50257. })
  50258. #else
  50259. #define vdupd_laneq_u64(__p0, __p1) __extension__ ({ \
  50260. uint64x2_t __s0 = __p0; \
  50261. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  50262. uint64_t __ret; \
  50263. __ret = (uint64_t) __builtin_neon_vdupd_laneq_i64((int8x16_t)__rev0, __p1); \
  50264. __ret; \
  50265. })
  50266. #endif
  50267. #ifdef __LITTLE_ENDIAN__
  50268. #define vduph_laneq_u16(__p0, __p1) __extension__ ({ \
  50269. uint16x8_t __s0 = __p0; \
  50270. uint16_t __ret; \
  50271. __ret = (uint16_t) __builtin_neon_vduph_laneq_i16((int8x16_t)__s0, __p1); \
  50272. __ret; \
  50273. })
  50274. #else
  50275. #define vduph_laneq_u16(__p0, __p1) __extension__ ({ \
  50276. uint16x8_t __s0 = __p0; \
  50277. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  50278. uint16_t __ret; \
  50279. __ret = (uint16_t) __builtin_neon_vduph_laneq_i16((int8x16_t)__rev0, __p1); \
  50280. __ret; \
  50281. })
  50282. #endif
  50283. #ifdef __LITTLE_ENDIAN__
  50284. #define vdupb_laneq_s8(__p0, __p1) __extension__ ({ \
  50285. int8x16_t __s0 = __p0; \
  50286. int8_t __ret; \
  50287. __ret = (int8_t) __builtin_neon_vdupb_laneq_i8((int8x16_t)__s0, __p1); \
  50288. __ret; \
  50289. })
  50290. #else
  50291. #define vdupb_laneq_s8(__p0, __p1) __extension__ ({ \
  50292. int8x16_t __s0 = __p0; \
  50293. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  50294. int8_t __ret; \
  50295. __ret = (int8_t) __builtin_neon_vdupb_laneq_i8((int8x16_t)__rev0, __p1); \
  50296. __ret; \
  50297. })
  50298. #endif
  50299. #ifdef __LITTLE_ENDIAN__
  50300. #define vdupd_laneq_f64(__p0, __p1) __extension__ ({ \
  50301. float64x2_t __s0 = __p0; \
  50302. float64_t __ret; \
  50303. __ret = (float64_t) __builtin_neon_vdupd_laneq_f64((int8x16_t)__s0, __p1); \
  50304. __ret; \
  50305. })
  50306. #else
  50307. #define vdupd_laneq_f64(__p0, __p1) __extension__ ({ \
  50308. float64x2_t __s0 = __p0; \
  50309. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  50310. float64_t __ret; \
  50311. __ret = (float64_t) __builtin_neon_vdupd_laneq_f64((int8x16_t)__rev0, __p1); \
  50312. __ret; \
  50313. })
  50314. #endif
  50315. #ifdef __LITTLE_ENDIAN__
  50316. #define vdups_laneq_f32(__p0, __p1) __extension__ ({ \
  50317. float32x4_t __s0 = __p0; \
  50318. float32_t __ret; \
  50319. __ret = (float32_t) __builtin_neon_vdups_laneq_f32((int8x16_t)__s0, __p1); \
  50320. __ret; \
  50321. })
  50322. #else
  50323. #define vdups_laneq_f32(__p0, __p1) __extension__ ({ \
  50324. float32x4_t __s0 = __p0; \
  50325. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  50326. float32_t __ret; \
  50327. __ret = (float32_t) __builtin_neon_vdups_laneq_f32((int8x16_t)__rev0, __p1); \
  50328. __ret; \
  50329. })
  50330. #endif
  50331. #ifdef __LITTLE_ENDIAN__
  50332. #define vdups_laneq_s32(__p0, __p1) __extension__ ({ \
  50333. int32x4_t __s0 = __p0; \
  50334. int32_t __ret; \
  50335. __ret = (int32_t) __builtin_neon_vdups_laneq_i32((int8x16_t)__s0, __p1); \
  50336. __ret; \
  50337. })
  50338. #else
  50339. #define vdups_laneq_s32(__p0, __p1) __extension__ ({ \
  50340. int32x4_t __s0 = __p0; \
  50341. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  50342. int32_t __ret; \
  50343. __ret = (int32_t) __builtin_neon_vdups_laneq_i32((int8x16_t)__rev0, __p1); \
  50344. __ret; \
  50345. })
  50346. #endif
  50347. #ifdef __LITTLE_ENDIAN__
  50348. #define vdupd_laneq_s64(__p0, __p1) __extension__ ({ \
  50349. int64x2_t __s0 = __p0; \
  50350. int64_t __ret; \
  50351. __ret = (int64_t) __builtin_neon_vdupd_laneq_i64((int8x16_t)__s0, __p1); \
  50352. __ret; \
  50353. })
  50354. #else
  50355. #define vdupd_laneq_s64(__p0, __p1) __extension__ ({ \
  50356. int64x2_t __s0 = __p0; \
  50357. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  50358. int64_t __ret; \
  50359. __ret = (int64_t) __builtin_neon_vdupd_laneq_i64((int8x16_t)__rev0, __p1); \
  50360. __ret; \
  50361. })
  50362. #endif
  50363. #ifdef __LITTLE_ENDIAN__
  50364. #define vduph_laneq_s16(__p0, __p1) __extension__ ({ \
  50365. int16x8_t __s0 = __p0; \
  50366. int16_t __ret; \
  50367. __ret = (int16_t) __builtin_neon_vduph_laneq_i16((int8x16_t)__s0, __p1); \
  50368. __ret; \
  50369. })
  50370. #else
  50371. #define vduph_laneq_s16(__p0, __p1) __extension__ ({ \
  50372. int16x8_t __s0 = __p0; \
  50373. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  50374. int16_t __ret; \
  50375. __ret = (int16_t) __builtin_neon_vduph_laneq_i16((int8x16_t)__rev0, __p1); \
  50376. __ret; \
  50377. })
  50378. #endif
  50379. #ifdef __LITTLE_ENDIAN__
  50380. #define vdup_laneq_p8(__p0, __p1) __extension__ ({ \
  50381. poly8x16_t __s0 = __p0; \
  50382. poly8x8_t __ret; \
  50383. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1); \
  50384. __ret; \
  50385. })
  50386. #else
  50387. #define vdup_laneq_p8(__p0, __p1) __extension__ ({ \
  50388. poly8x16_t __s0 = __p0; \
  50389. poly8x16_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  50390. poly8x8_t __ret; \
  50391. __ret = __builtin_shufflevector(__rev0, __rev0, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1); \
  50392. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  50393. __ret; \
  50394. })
  50395. #endif
  50396. #ifdef __LITTLE_ENDIAN__
  50397. #define vdup_laneq_p64(__p0, __p1) __extension__ ({ \
  50398. poly64x2_t __s0 = __p0; \
  50399. poly64x1_t __ret; \
  50400. __ret = __builtin_shufflevector(__s0, __s0, __p1); \
  50401. __ret; \
  50402. })
  50403. #else
  50404. #define vdup_laneq_p64(__p0, __p1) __extension__ ({ \
  50405. poly64x2_t __s0 = __p0; \
  50406. poly64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  50407. poly64x1_t __ret; \
  50408. __ret = __builtin_shufflevector(__rev0, __rev0, __p1); \
  50409. __ret; \
  50410. })
  50411. #endif
  50412. #ifdef __LITTLE_ENDIAN__
  50413. #define vdup_laneq_p16(__p0, __p1) __extension__ ({ \
  50414. poly16x8_t __s0 = __p0; \
  50415. poly16x4_t __ret; \
  50416. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1, __p1, __p1); \
  50417. __ret; \
  50418. })
  50419. #else
  50420. #define vdup_laneq_p16(__p0, __p1) __extension__ ({ \
  50421. poly16x8_t __s0 = __p0; \
  50422. poly16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  50423. poly16x4_t __ret; \
  50424. __ret = __builtin_shufflevector(__rev0, __rev0, __p1, __p1, __p1, __p1); \
  50425. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  50426. __ret; \
  50427. })
  50428. #endif
  50429. #ifdef __LITTLE_ENDIAN__
  50430. #define vdupq_laneq_p8(__p0, __p1) __extension__ ({ \
  50431. poly8x16_t __s0 = __p0; \
  50432. poly8x16_t __ret; \
  50433. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1); \
  50434. __ret; \
  50435. })
  50436. #else
  50437. #define vdupq_laneq_p8(__p0, __p1) __extension__ ({ \
  50438. poly8x16_t __s0 = __p0; \
  50439. poly8x16_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  50440. poly8x16_t __ret; \
  50441. __ret = __builtin_shufflevector(__rev0, __rev0, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1); \
  50442. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  50443. __ret; \
  50444. })
  50445. #endif
  50446. #ifdef __LITTLE_ENDIAN__
  50447. #define vdupq_laneq_p64(__p0, __p1) __extension__ ({ \
  50448. poly64x2_t __s0 = __p0; \
  50449. poly64x2_t __ret; \
  50450. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1); \
  50451. __ret; \
  50452. })
  50453. #else
  50454. #define vdupq_laneq_p64(__p0, __p1) __extension__ ({ \
  50455. poly64x2_t __s0 = __p0; \
  50456. poly64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  50457. poly64x2_t __ret; \
  50458. __ret = __builtin_shufflevector(__rev0, __rev0, __p1, __p1); \
  50459. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  50460. __ret; \
  50461. })
  50462. #endif
  50463. #ifdef __LITTLE_ENDIAN__
  50464. #define vdupq_laneq_p16(__p0, __p1) __extension__ ({ \
  50465. poly16x8_t __s0 = __p0; \
  50466. poly16x8_t __ret; \
  50467. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1); \
  50468. __ret; \
  50469. })
  50470. #else
  50471. #define vdupq_laneq_p16(__p0, __p1) __extension__ ({ \
  50472. poly16x8_t __s0 = __p0; \
  50473. poly16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  50474. poly16x8_t __ret; \
  50475. __ret = __builtin_shufflevector(__rev0, __rev0, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1); \
  50476. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  50477. __ret; \
  50478. })
  50479. #endif
  50480. #ifdef __LITTLE_ENDIAN__
  50481. #define vdupq_laneq_u8(__p0, __p1) __extension__ ({ \
  50482. uint8x16_t __s0 = __p0; \
  50483. uint8x16_t __ret; \
  50484. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1); \
  50485. __ret; \
  50486. })
  50487. #else
  50488. #define vdupq_laneq_u8(__p0, __p1) __extension__ ({ \
  50489. uint8x16_t __s0 = __p0; \
  50490. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  50491. uint8x16_t __ret; \
  50492. __ret = __builtin_shufflevector(__rev0, __rev0, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1); \
  50493. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  50494. __ret; \
  50495. })
  50496. #endif
  50497. #ifdef __LITTLE_ENDIAN__
  50498. #define vdupq_laneq_u32(__p0, __p1) __extension__ ({ \
  50499. uint32x4_t __s0 = __p0; \
  50500. uint32x4_t __ret; \
  50501. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1, __p1, __p1); \
  50502. __ret; \
  50503. })
  50504. #else
  50505. #define vdupq_laneq_u32(__p0, __p1) __extension__ ({ \
  50506. uint32x4_t __s0 = __p0; \
  50507. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  50508. uint32x4_t __ret; \
  50509. __ret = __builtin_shufflevector(__rev0, __rev0, __p1, __p1, __p1, __p1); \
  50510. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  50511. __ret; \
  50512. })
  50513. #endif
  50514. #ifdef __LITTLE_ENDIAN__
  50515. #define vdupq_laneq_u64(__p0, __p1) __extension__ ({ \
  50516. uint64x2_t __s0 = __p0; \
  50517. uint64x2_t __ret; \
  50518. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1); \
  50519. __ret; \
  50520. })
  50521. #else
  50522. #define vdupq_laneq_u64(__p0, __p1) __extension__ ({ \
  50523. uint64x2_t __s0 = __p0; \
  50524. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  50525. uint64x2_t __ret; \
  50526. __ret = __builtin_shufflevector(__rev0, __rev0, __p1, __p1); \
  50527. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  50528. __ret; \
  50529. })
  50530. #endif
  50531. #ifdef __LITTLE_ENDIAN__
  50532. #define vdupq_laneq_u16(__p0, __p1) __extension__ ({ \
  50533. uint16x8_t __s0 = __p0; \
  50534. uint16x8_t __ret; \
  50535. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1); \
  50536. __ret; \
  50537. })
  50538. #else
  50539. #define vdupq_laneq_u16(__p0, __p1) __extension__ ({ \
  50540. uint16x8_t __s0 = __p0; \
  50541. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  50542. uint16x8_t __ret; \
  50543. __ret = __builtin_shufflevector(__rev0, __rev0, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1); \
  50544. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  50545. __ret; \
  50546. })
  50547. #endif
  50548. #ifdef __LITTLE_ENDIAN__
  50549. #define vdupq_laneq_s8(__p0, __p1) __extension__ ({ \
  50550. int8x16_t __s0 = __p0; \
  50551. int8x16_t __ret; \
  50552. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1); \
  50553. __ret; \
  50554. })
  50555. #else
  50556. #define vdupq_laneq_s8(__p0, __p1) __extension__ ({ \
  50557. int8x16_t __s0 = __p0; \
  50558. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  50559. int8x16_t __ret; \
  50560. __ret = __builtin_shufflevector(__rev0, __rev0, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1); \
  50561. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  50562. __ret; \
  50563. })
  50564. #endif
  50565. #ifdef __LITTLE_ENDIAN__
  50566. #define vdupq_laneq_f64(__p0, __p1) __extension__ ({ \
  50567. float64x2_t __s0 = __p0; \
  50568. float64x2_t __ret; \
  50569. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1); \
  50570. __ret; \
  50571. })
  50572. #else
  50573. #define vdupq_laneq_f64(__p0, __p1) __extension__ ({ \
  50574. float64x2_t __s0 = __p0; \
  50575. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  50576. float64x2_t __ret; \
  50577. __ret = __builtin_shufflevector(__rev0, __rev0, __p1, __p1); \
  50578. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  50579. __ret; \
  50580. })
  50581. #endif
  50582. #ifdef __LITTLE_ENDIAN__
  50583. #define vdupq_laneq_f32(__p0, __p1) __extension__ ({ \
  50584. float32x4_t __s0 = __p0; \
  50585. float32x4_t __ret; \
  50586. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1, __p1, __p1); \
  50587. __ret; \
  50588. })
  50589. #else
  50590. #define vdupq_laneq_f32(__p0, __p1) __extension__ ({ \
  50591. float32x4_t __s0 = __p0; \
  50592. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  50593. float32x4_t __ret; \
  50594. __ret = __builtin_shufflevector(__rev0, __rev0, __p1, __p1, __p1, __p1); \
  50595. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  50596. __ret; \
  50597. })
  50598. #endif
  50599. #ifdef __LITTLE_ENDIAN__
  50600. #define vdupq_laneq_f16(__p0, __p1) __extension__ ({ \
  50601. float16x8_t __s0 = __p0; \
  50602. float16x8_t __ret; \
  50603. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1); \
  50604. __ret; \
  50605. })
  50606. #else
  50607. #define vdupq_laneq_f16(__p0, __p1) __extension__ ({ \
  50608. float16x8_t __s0 = __p0; \
  50609. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  50610. float16x8_t __ret; \
  50611. __ret = __builtin_shufflevector(__rev0, __rev0, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1); \
  50612. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  50613. __ret; \
  50614. })
  50615. #endif
  50616. #ifdef __LITTLE_ENDIAN__
  50617. #define vdupq_laneq_s32(__p0, __p1) __extension__ ({ \
  50618. int32x4_t __s0 = __p0; \
  50619. int32x4_t __ret; \
  50620. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1, __p1, __p1); \
  50621. __ret; \
  50622. })
  50623. #else
  50624. #define vdupq_laneq_s32(__p0, __p1) __extension__ ({ \
  50625. int32x4_t __s0 = __p0; \
  50626. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  50627. int32x4_t __ret; \
  50628. __ret = __builtin_shufflevector(__rev0, __rev0, __p1, __p1, __p1, __p1); \
  50629. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  50630. __ret; \
  50631. })
  50632. #endif
  50633. #ifdef __LITTLE_ENDIAN__
  50634. #define vdupq_laneq_s64(__p0, __p1) __extension__ ({ \
  50635. int64x2_t __s0 = __p0; \
  50636. int64x2_t __ret; \
  50637. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1); \
  50638. __ret; \
  50639. })
  50640. #else
  50641. #define vdupq_laneq_s64(__p0, __p1) __extension__ ({ \
  50642. int64x2_t __s0 = __p0; \
  50643. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  50644. int64x2_t __ret; \
  50645. __ret = __builtin_shufflevector(__rev0, __rev0, __p1, __p1); \
  50646. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  50647. __ret; \
  50648. })
  50649. #endif
  50650. #ifdef __LITTLE_ENDIAN__
  50651. #define vdupq_laneq_s16(__p0, __p1) __extension__ ({ \
  50652. int16x8_t __s0 = __p0; \
  50653. int16x8_t __ret; \
  50654. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1); \
  50655. __ret; \
  50656. })
  50657. #else
  50658. #define vdupq_laneq_s16(__p0, __p1) __extension__ ({ \
  50659. int16x8_t __s0 = __p0; \
  50660. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  50661. int16x8_t __ret; \
  50662. __ret = __builtin_shufflevector(__rev0, __rev0, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1); \
  50663. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  50664. __ret; \
  50665. })
  50666. #endif
  50667. #ifdef __LITTLE_ENDIAN__
  50668. #define vdup_laneq_u8(__p0, __p1) __extension__ ({ \
  50669. uint8x16_t __s0 = __p0; \
  50670. uint8x8_t __ret; \
  50671. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1); \
  50672. __ret; \
  50673. })
  50674. #else
  50675. #define vdup_laneq_u8(__p0, __p1) __extension__ ({ \
  50676. uint8x16_t __s0 = __p0; \
  50677. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  50678. uint8x8_t __ret; \
  50679. __ret = __builtin_shufflevector(__rev0, __rev0, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1); \
  50680. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  50681. __ret; \
  50682. })
  50683. #endif
  50684. #ifdef __LITTLE_ENDIAN__
  50685. #define vdup_laneq_u32(__p0, __p1) __extension__ ({ \
  50686. uint32x4_t __s0 = __p0; \
  50687. uint32x2_t __ret; \
  50688. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1); \
  50689. __ret; \
  50690. })
  50691. #else
  50692. #define vdup_laneq_u32(__p0, __p1) __extension__ ({ \
  50693. uint32x4_t __s0 = __p0; \
  50694. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  50695. uint32x2_t __ret; \
  50696. __ret = __builtin_shufflevector(__rev0, __rev0, __p1, __p1); \
  50697. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  50698. __ret; \
  50699. })
  50700. #endif
  50701. #ifdef __LITTLE_ENDIAN__
  50702. #define vdup_laneq_u64(__p0, __p1) __extension__ ({ \
  50703. uint64x2_t __s0 = __p0; \
  50704. uint64x1_t __ret; \
  50705. __ret = __builtin_shufflevector(__s0, __s0, __p1); \
  50706. __ret; \
  50707. })
  50708. #else
  50709. #define vdup_laneq_u64(__p0, __p1) __extension__ ({ \
  50710. uint64x2_t __s0 = __p0; \
  50711. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  50712. uint64x1_t __ret; \
  50713. __ret = __builtin_shufflevector(__rev0, __rev0, __p1); \
  50714. __ret; \
  50715. })
  50716. #endif
  50717. #ifdef __LITTLE_ENDIAN__
  50718. #define vdup_laneq_u16(__p0, __p1) __extension__ ({ \
  50719. uint16x8_t __s0 = __p0; \
  50720. uint16x4_t __ret; \
  50721. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1, __p1, __p1); \
  50722. __ret; \
  50723. })
  50724. #else
  50725. #define vdup_laneq_u16(__p0, __p1) __extension__ ({ \
  50726. uint16x8_t __s0 = __p0; \
  50727. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  50728. uint16x4_t __ret; \
  50729. __ret = __builtin_shufflevector(__rev0, __rev0, __p1, __p1, __p1, __p1); \
  50730. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  50731. __ret; \
  50732. })
  50733. #endif
  50734. #ifdef __LITTLE_ENDIAN__
  50735. #define vdup_laneq_s8(__p0, __p1) __extension__ ({ \
  50736. int8x16_t __s0 = __p0; \
  50737. int8x8_t __ret; \
  50738. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1); \
  50739. __ret; \
  50740. })
  50741. #else
  50742. #define vdup_laneq_s8(__p0, __p1) __extension__ ({ \
  50743. int8x16_t __s0 = __p0; \
  50744. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  50745. int8x8_t __ret; \
  50746. __ret = __builtin_shufflevector(__rev0, __rev0, __p1, __p1, __p1, __p1, __p1, __p1, __p1, __p1); \
  50747. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  50748. __ret; \
  50749. })
  50750. #endif
  50751. #ifdef __LITTLE_ENDIAN__
  50752. #define vdup_laneq_f64(__p0, __p1) __extension__ ({ \
  50753. float64x2_t __s0 = __p0; \
  50754. float64x1_t __ret; \
  50755. __ret = __builtin_shufflevector(__s0, __s0, __p1); \
  50756. __ret; \
  50757. })
  50758. #else
  50759. #define vdup_laneq_f64(__p0, __p1) __extension__ ({ \
  50760. float64x2_t __s0 = __p0; \
  50761. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  50762. float64x1_t __ret; \
  50763. __ret = __builtin_shufflevector(__rev0, __rev0, __p1); \
  50764. __ret; \
  50765. })
  50766. #endif
  50767. #ifdef __LITTLE_ENDIAN__
  50768. #define vdup_laneq_f32(__p0, __p1) __extension__ ({ \
  50769. float32x4_t __s0 = __p0; \
  50770. float32x2_t __ret; \
  50771. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1); \
  50772. __ret; \
  50773. })
  50774. #else
  50775. #define vdup_laneq_f32(__p0, __p1) __extension__ ({ \
  50776. float32x4_t __s0 = __p0; \
  50777. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  50778. float32x2_t __ret; \
  50779. __ret = __builtin_shufflevector(__rev0, __rev0, __p1, __p1); \
  50780. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  50781. __ret; \
  50782. })
  50783. #endif
  50784. #ifdef __LITTLE_ENDIAN__
  50785. #define vdup_laneq_f16(__p0, __p1) __extension__ ({ \
  50786. float16x8_t __s0 = __p0; \
  50787. float16x4_t __ret; \
  50788. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1, __p1, __p1); \
  50789. __ret; \
  50790. })
  50791. #else
  50792. #define vdup_laneq_f16(__p0, __p1) __extension__ ({ \
  50793. float16x8_t __s0 = __p0; \
  50794. float16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  50795. float16x4_t __ret; \
  50796. __ret = __builtin_shufflevector(__rev0, __rev0, __p1, __p1, __p1, __p1); \
  50797. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  50798. __ret; \
  50799. })
  50800. #endif
  50801. #ifdef __LITTLE_ENDIAN__
  50802. #define vdup_laneq_s32(__p0, __p1) __extension__ ({ \
  50803. int32x4_t __s0 = __p0; \
  50804. int32x2_t __ret; \
  50805. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1); \
  50806. __ret; \
  50807. })
  50808. #else
  50809. #define vdup_laneq_s32(__p0, __p1) __extension__ ({ \
  50810. int32x4_t __s0 = __p0; \
  50811. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  50812. int32x2_t __ret; \
  50813. __ret = __builtin_shufflevector(__rev0, __rev0, __p1, __p1); \
  50814. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  50815. __ret; \
  50816. })
  50817. #endif
  50818. #ifdef __LITTLE_ENDIAN__
  50819. #define vdup_laneq_s64(__p0, __p1) __extension__ ({ \
  50820. int64x2_t __s0 = __p0; \
  50821. int64x1_t __ret; \
  50822. __ret = __builtin_shufflevector(__s0, __s0, __p1); \
  50823. __ret; \
  50824. })
  50825. #else
  50826. #define vdup_laneq_s64(__p0, __p1) __extension__ ({ \
  50827. int64x2_t __s0 = __p0; \
  50828. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  50829. int64x1_t __ret; \
  50830. __ret = __builtin_shufflevector(__rev0, __rev0, __p1); \
  50831. __ret; \
  50832. })
  50833. #endif
  50834. #ifdef __LITTLE_ENDIAN__
  50835. #define vdup_laneq_s16(__p0, __p1) __extension__ ({ \
  50836. int16x8_t __s0 = __p0; \
  50837. int16x4_t __ret; \
  50838. __ret = __builtin_shufflevector(__s0, __s0, __p1, __p1, __p1, __p1); \
  50839. __ret; \
  50840. })
  50841. #else
  50842. #define vdup_laneq_s16(__p0, __p1) __extension__ ({ \
  50843. int16x8_t __s0 = __p0; \
  50844. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  50845. int16x4_t __ret; \
  50846. __ret = __builtin_shufflevector(__rev0, __rev0, __p1, __p1, __p1, __p1); \
  50847. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  50848. __ret; \
  50849. })
  50850. #endif
  50851. #ifdef __LITTLE_ENDIAN__
  50852. __ai poly64x1_t vdup_n_p64(poly64_t __p0) {
  50853. poly64x1_t __ret;
  50854. __ret = (poly64x1_t) {__p0};
  50855. return __ret;
  50856. }
  50857. #else
  50858. __ai poly64x1_t vdup_n_p64(poly64_t __p0) {
  50859. poly64x1_t __ret;
  50860. __ret = (poly64x1_t) {__p0};
  50861. return __ret;
  50862. }
  50863. #endif
  50864. #ifdef __LITTLE_ENDIAN__
  50865. __ai poly64x2_t vdupq_n_p64(poly64_t __p0) {
  50866. poly64x2_t __ret;
  50867. __ret = (poly64x2_t) {__p0, __p0};
  50868. return __ret;
  50869. }
  50870. #else
  50871. __ai poly64x2_t vdupq_n_p64(poly64_t __p0) {
  50872. poly64x2_t __ret;
  50873. __ret = (poly64x2_t) {__p0, __p0};
  50874. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  50875. return __ret;
  50876. }
  50877. #endif
  50878. #ifdef __LITTLE_ENDIAN__
  50879. __ai float64x2_t vdupq_n_f64(float64_t __p0) {
  50880. float64x2_t __ret;
  50881. __ret = (float64x2_t) {__p0, __p0};
  50882. return __ret;
  50883. }
  50884. #else
  50885. __ai float64x2_t vdupq_n_f64(float64_t __p0) {
  50886. float64x2_t __ret;
  50887. __ret = (float64x2_t) {__p0, __p0};
  50888. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  50889. return __ret;
  50890. }
  50891. #endif
  50892. #ifdef __LITTLE_ENDIAN__
  50893. __ai float64x1_t vdup_n_f64(float64_t __p0) {
  50894. float64x1_t __ret;
  50895. __ret = (float64x1_t) {__p0};
  50896. return __ret;
  50897. }
  50898. #else
  50899. __ai float64x1_t vdup_n_f64(float64_t __p0) {
  50900. float64x1_t __ret;
  50901. __ret = (float64x1_t) {__p0};
  50902. return __ret;
  50903. }
  50904. #endif
  50905. #ifdef __LITTLE_ENDIAN__
  50906. #define vext_p64(__p0, __p1, __p2) __extension__ ({ \
  50907. poly64x1_t __s0 = __p0; \
  50908. poly64x1_t __s1 = __p1; \
  50909. poly64x1_t __ret; \
  50910. __ret = (poly64x1_t) __builtin_neon_vext_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 6); \
  50911. __ret; \
  50912. })
  50913. #else
  50914. #define vext_p64(__p0, __p1, __p2) __extension__ ({ \
  50915. poly64x1_t __s0 = __p0; \
  50916. poly64x1_t __s1 = __p1; \
  50917. poly64x1_t __ret; \
  50918. __ret = (poly64x1_t) __builtin_neon_vext_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 6); \
  50919. __ret; \
  50920. })
  50921. #endif
  50922. #ifdef __LITTLE_ENDIAN__
  50923. #define vextq_p64(__p0, __p1, __p2) __extension__ ({ \
  50924. poly64x2_t __s0 = __p0; \
  50925. poly64x2_t __s1 = __p1; \
  50926. poly64x2_t __ret; \
  50927. __ret = (poly64x2_t) __builtin_neon_vextq_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 38); \
  50928. __ret; \
  50929. })
  50930. #else
  50931. #define vextq_p64(__p0, __p1, __p2) __extension__ ({ \
  50932. poly64x2_t __s0 = __p0; \
  50933. poly64x2_t __s1 = __p1; \
  50934. poly64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  50935. poly64x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  50936. poly64x2_t __ret; \
  50937. __ret = (poly64x2_t) __builtin_neon_vextq_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 38); \
  50938. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  50939. __ret; \
  50940. })
  50941. #endif
  50942. #ifdef __LITTLE_ENDIAN__
  50943. #define vextq_f64(__p0, __p1, __p2) __extension__ ({ \
  50944. float64x2_t __s0 = __p0; \
  50945. float64x2_t __s1 = __p1; \
  50946. float64x2_t __ret; \
  50947. __ret = (float64x2_t) __builtin_neon_vextq_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 42); \
  50948. __ret; \
  50949. })
  50950. #else
  50951. #define vextq_f64(__p0, __p1, __p2) __extension__ ({ \
  50952. float64x2_t __s0 = __p0; \
  50953. float64x2_t __s1 = __p1; \
  50954. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  50955. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  50956. float64x2_t __ret; \
  50957. __ret = (float64x2_t) __builtin_neon_vextq_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 42); \
  50958. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  50959. __ret; \
  50960. })
  50961. #endif
  50962. #ifdef __LITTLE_ENDIAN__
  50963. #define vext_f64(__p0, __p1, __p2) __extension__ ({ \
  50964. float64x1_t __s0 = __p0; \
  50965. float64x1_t __s1 = __p1; \
  50966. float64x1_t __ret; \
  50967. __ret = (float64x1_t) __builtin_neon_vext_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 10); \
  50968. __ret; \
  50969. })
  50970. #else
  50971. #define vext_f64(__p0, __p1, __p2) __extension__ ({ \
  50972. float64x1_t __s0 = __p0; \
  50973. float64x1_t __s1 = __p1; \
  50974. float64x1_t __ret; \
  50975. __ret = (float64x1_t) __builtin_neon_vext_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 10); \
  50976. __ret; \
  50977. })
  50978. #endif
  50979. #ifdef __LITTLE_ENDIAN__
  50980. __ai float64x2_t vfmaq_f64(float64x2_t __p0, float64x2_t __p1, float64x2_t __p2) {
  50981. float64x2_t __ret;
  50982. __ret = (float64x2_t) __builtin_neon_vfmaq_v((int8x16_t)__p0, (int8x16_t)__p1, (int8x16_t)__p2, 42);
  50983. return __ret;
  50984. }
  50985. #else
  50986. __ai float64x2_t vfmaq_f64(float64x2_t __p0, float64x2_t __p1, float64x2_t __p2) {
  50987. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  50988. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  50989. float64x2_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 1, 0);
  50990. float64x2_t __ret;
  50991. __ret = (float64x2_t) __builtin_neon_vfmaq_v((int8x16_t)__rev0, (int8x16_t)__rev1, (int8x16_t)__rev2, 42);
  50992. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  50993. return __ret;
  50994. }
  50995. __ai float64x2_t __noswap_vfmaq_f64(float64x2_t __p0, float64x2_t __p1, float64x2_t __p2) {
  50996. float64x2_t __ret;
  50997. __ret = (float64x2_t) __builtin_neon_vfmaq_v((int8x16_t)__p0, (int8x16_t)__p1, (int8x16_t)__p2, 42);
  50998. return __ret;
  50999. }
  51000. #endif
  51001. #ifdef __LITTLE_ENDIAN__
  51002. __ai float64x1_t vfma_f64(float64x1_t __p0, float64x1_t __p1, float64x1_t __p2) {
  51003. float64x1_t __ret;
  51004. __ret = (float64x1_t) __builtin_neon_vfma_v((int8x8_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 10);
  51005. return __ret;
  51006. }
  51007. #else
  51008. __ai float64x1_t vfma_f64(float64x1_t __p0, float64x1_t __p1, float64x1_t __p2) {
  51009. float64x1_t __ret;
  51010. __ret = (float64x1_t) __builtin_neon_vfma_v((int8x8_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 10);
  51011. return __ret;
  51012. }
  51013. __ai float64x1_t __noswap_vfma_f64(float64x1_t __p0, float64x1_t __p1, float64x1_t __p2) {
  51014. float64x1_t __ret;
  51015. __ret = (float64x1_t) __builtin_neon_vfma_v((int8x8_t)__p0, (int8x8_t)__p1, (int8x8_t)__p2, 10);
  51016. return __ret;
  51017. }
  51018. #endif
  51019. #ifdef __LITTLE_ENDIAN__
  51020. #define vfmad_lane_f64(__p0, __p1, __p2, __p3) __extension__ ({ \
  51021. float64_t __s0 = __p0; \
  51022. float64_t __s1 = __p1; \
  51023. float64x1_t __s2 = __p2; \
  51024. float64_t __ret; \
  51025. __ret = (float64_t) __builtin_neon_vfmad_lane_f64(__s0, __s1, (int8x8_t)__s2, __p3); \
  51026. __ret; \
  51027. })
  51028. #else
  51029. #define vfmad_lane_f64(__p0, __p1, __p2, __p3) __extension__ ({ \
  51030. float64_t __s0 = __p0; \
  51031. float64_t __s1 = __p1; \
  51032. float64x1_t __s2 = __p2; \
  51033. float64_t __ret; \
  51034. __ret = (float64_t) __builtin_neon_vfmad_lane_f64(__s0, __s1, (int8x8_t)__s2, __p3); \
  51035. __ret; \
  51036. })
  51037. #define __noswap_vfmad_lane_f64(__p0, __p1, __p2, __p3) __extension__ ({ \
  51038. float64_t __s0 = __p0; \
  51039. float64_t __s1 = __p1; \
  51040. float64x1_t __s2 = __p2; \
  51041. float64_t __ret; \
  51042. __ret = (float64_t) __builtin_neon_vfmad_lane_f64(__s0, __s1, (int8x8_t)__s2, __p3); \
  51043. __ret; \
  51044. })
  51045. #endif
  51046. #ifdef __LITTLE_ENDIAN__
  51047. #define vfmas_lane_f32(__p0, __p1, __p2, __p3) __extension__ ({ \
  51048. float32_t __s0 = __p0; \
  51049. float32_t __s1 = __p1; \
  51050. float32x2_t __s2 = __p2; \
  51051. float32_t __ret; \
  51052. __ret = (float32_t) __builtin_neon_vfmas_lane_f32(__s0, __s1, (int8x8_t)__s2, __p3); \
  51053. __ret; \
  51054. })
  51055. #else
  51056. #define vfmas_lane_f32(__p0, __p1, __p2, __p3) __extension__ ({ \
  51057. float32_t __s0 = __p0; \
  51058. float32_t __s1 = __p1; \
  51059. float32x2_t __s2 = __p2; \
  51060. float32x2_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 1, 0); \
  51061. float32_t __ret; \
  51062. __ret = (float32_t) __builtin_neon_vfmas_lane_f32(__s0, __s1, (int8x8_t)__rev2, __p3); \
  51063. __ret; \
  51064. })
  51065. #define __noswap_vfmas_lane_f32(__p0, __p1, __p2, __p3) __extension__ ({ \
  51066. float32_t __s0 = __p0; \
  51067. float32_t __s1 = __p1; \
  51068. float32x2_t __s2 = __p2; \
  51069. float32_t __ret; \
  51070. __ret = (float32_t) __builtin_neon_vfmas_lane_f32(__s0, __s1, (int8x8_t)__s2, __p3); \
  51071. __ret; \
  51072. })
  51073. #endif
  51074. #ifdef __LITTLE_ENDIAN__
  51075. #define vfmaq_lane_f64(__p0, __p1, __p2, __p3) __extension__ ({ \
  51076. float64x2_t __s0 = __p0; \
  51077. float64x2_t __s1 = __p1; \
  51078. float64x1_t __s2 = __p2; \
  51079. float64x2_t __ret; \
  51080. __ret = (float64x2_t) __builtin_neon_vfmaq_lane_v((int8x16_t)__s0, (int8x16_t)__s1, (int8x8_t)__s2, __p3, 42); \
  51081. __ret; \
  51082. })
  51083. #else
  51084. #define vfmaq_lane_f64(__p0, __p1, __p2, __p3) __extension__ ({ \
  51085. float64x2_t __s0 = __p0; \
  51086. float64x2_t __s1 = __p1; \
  51087. float64x1_t __s2 = __p2; \
  51088. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  51089. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  51090. float64x2_t __ret; \
  51091. __ret = (float64x2_t) __builtin_neon_vfmaq_lane_v((int8x16_t)__rev0, (int8x16_t)__rev1, (int8x8_t)__s2, __p3, 42); \
  51092. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  51093. __ret; \
  51094. })
  51095. #define __noswap_vfmaq_lane_f64(__p0, __p1, __p2, __p3) __extension__ ({ \
  51096. float64x2_t __s0 = __p0; \
  51097. float64x2_t __s1 = __p1; \
  51098. float64x1_t __s2 = __p2; \
  51099. float64x2_t __ret; \
  51100. __ret = (float64x2_t) __builtin_neon_vfmaq_lane_v((int8x16_t)__s0, (int8x16_t)__s1, (int8x8_t)__s2, __p3, 42); \
  51101. __ret; \
  51102. })
  51103. #endif
  51104. #ifdef __LITTLE_ENDIAN__
  51105. #define vfmaq_lane_f32(__p0, __p1, __p2, __p3) __extension__ ({ \
  51106. float32x4_t __s0 = __p0; \
  51107. float32x4_t __s1 = __p1; \
  51108. float32x2_t __s2 = __p2; \
  51109. float32x4_t __ret; \
  51110. __ret = (float32x4_t) __builtin_neon_vfmaq_lane_v((int8x16_t)__s0, (int8x16_t)__s1, (int8x8_t)__s2, __p3, 41); \
  51111. __ret; \
  51112. })
  51113. #else
  51114. #define vfmaq_lane_f32(__p0, __p1, __p2, __p3) __extension__ ({ \
  51115. float32x4_t __s0 = __p0; \
  51116. float32x4_t __s1 = __p1; \
  51117. float32x2_t __s2 = __p2; \
  51118. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  51119. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  51120. float32x2_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 1, 0); \
  51121. float32x4_t __ret; \
  51122. __ret = (float32x4_t) __builtin_neon_vfmaq_lane_v((int8x16_t)__rev0, (int8x16_t)__rev1, (int8x8_t)__rev2, __p3, 41); \
  51123. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  51124. __ret; \
  51125. })
  51126. #define __noswap_vfmaq_lane_f32(__p0, __p1, __p2, __p3) __extension__ ({ \
  51127. float32x4_t __s0 = __p0; \
  51128. float32x4_t __s1 = __p1; \
  51129. float32x2_t __s2 = __p2; \
  51130. float32x4_t __ret; \
  51131. __ret = (float32x4_t) __builtin_neon_vfmaq_lane_v((int8x16_t)__s0, (int8x16_t)__s1, (int8x8_t)__s2, __p3, 41); \
  51132. __ret; \
  51133. })
  51134. #endif
  51135. #ifdef __LITTLE_ENDIAN__
  51136. #define vfma_lane_f64(__p0, __p1, __p2, __p3) __extension__ ({ \
  51137. float64x1_t __s0 = __p0; \
  51138. float64x1_t __s1 = __p1; \
  51139. float64x1_t __s2 = __p2; \
  51140. float64x1_t __ret; \
  51141. __ret = (float64x1_t) __builtin_neon_vfma_lane_v((int8x8_t)__s0, (int8x8_t)__s1, (int8x8_t)__s2, __p3, 10); \
  51142. __ret; \
  51143. })
  51144. #else
  51145. #define vfma_lane_f64(__p0, __p1, __p2, __p3) __extension__ ({ \
  51146. float64x1_t __s0 = __p0; \
  51147. float64x1_t __s1 = __p1; \
  51148. float64x1_t __s2 = __p2; \
  51149. float64x1_t __ret; \
  51150. __ret = (float64x1_t) __builtin_neon_vfma_lane_v((int8x8_t)__s0, (int8x8_t)__s1, (int8x8_t)__s2, __p3, 10); \
  51151. __ret; \
  51152. })
  51153. #define __noswap_vfma_lane_f64(__p0, __p1, __p2, __p3) __extension__ ({ \
  51154. float64x1_t __s0 = __p0; \
  51155. float64x1_t __s1 = __p1; \
  51156. float64x1_t __s2 = __p2; \
  51157. float64x1_t __ret; \
  51158. __ret = (float64x1_t) __builtin_neon_vfma_lane_v((int8x8_t)__s0, (int8x8_t)__s1, (int8x8_t)__s2, __p3, 10); \
  51159. __ret; \
  51160. })
  51161. #endif
  51162. #ifdef __LITTLE_ENDIAN__
  51163. #define vfma_lane_f32(__p0, __p1, __p2, __p3) __extension__ ({ \
  51164. float32x2_t __s0 = __p0; \
  51165. float32x2_t __s1 = __p1; \
  51166. float32x2_t __s2 = __p2; \
  51167. float32x2_t __ret; \
  51168. __ret = (float32x2_t) __builtin_neon_vfma_lane_v((int8x8_t)__s0, (int8x8_t)__s1, (int8x8_t)__s2, __p3, 9); \
  51169. __ret; \
  51170. })
  51171. #else
  51172. #define vfma_lane_f32(__p0, __p1, __p2, __p3) __extension__ ({ \
  51173. float32x2_t __s0 = __p0; \
  51174. float32x2_t __s1 = __p1; \
  51175. float32x2_t __s2 = __p2; \
  51176. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  51177. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  51178. float32x2_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 1, 0); \
  51179. float32x2_t __ret; \
  51180. __ret = (float32x2_t) __builtin_neon_vfma_lane_v((int8x8_t)__rev0, (int8x8_t)__rev1, (int8x8_t)__rev2, __p3, 9); \
  51181. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  51182. __ret; \
  51183. })
  51184. #define __noswap_vfma_lane_f32(__p0, __p1, __p2, __p3) __extension__ ({ \
  51185. float32x2_t __s0 = __p0; \
  51186. float32x2_t __s1 = __p1; \
  51187. float32x2_t __s2 = __p2; \
  51188. float32x2_t __ret; \
  51189. __ret = (float32x2_t) __builtin_neon_vfma_lane_v((int8x8_t)__s0, (int8x8_t)__s1, (int8x8_t)__s2, __p3, 9); \
  51190. __ret; \
  51191. })
  51192. #endif
  51193. #ifdef __LITTLE_ENDIAN__
  51194. #define vfmad_laneq_f64(__p0, __p1, __p2, __p3) __extension__ ({ \
  51195. float64_t __s0 = __p0; \
  51196. float64_t __s1 = __p1; \
  51197. float64x2_t __s2 = __p2; \
  51198. float64_t __ret; \
  51199. __ret = (float64_t) __builtin_neon_vfmad_laneq_f64(__s0, __s1, (int8x16_t)__s2, __p3); \
  51200. __ret; \
  51201. })
  51202. #else
  51203. #define vfmad_laneq_f64(__p0, __p1, __p2, __p3) __extension__ ({ \
  51204. float64_t __s0 = __p0; \
  51205. float64_t __s1 = __p1; \
  51206. float64x2_t __s2 = __p2; \
  51207. float64x2_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 1, 0); \
  51208. float64_t __ret; \
  51209. __ret = (float64_t) __builtin_neon_vfmad_laneq_f64(__s0, __s1, (int8x16_t)__rev2, __p3); \
  51210. __ret; \
  51211. })
  51212. #define __noswap_vfmad_laneq_f64(__p0, __p1, __p2, __p3) __extension__ ({ \
  51213. float64_t __s0 = __p0; \
  51214. float64_t __s1 = __p1; \
  51215. float64x2_t __s2 = __p2; \
  51216. float64_t __ret; \
  51217. __ret = (float64_t) __builtin_neon_vfmad_laneq_f64(__s0, __s1, (int8x16_t)__s2, __p3); \
  51218. __ret; \
  51219. })
  51220. #endif
  51221. #ifdef __LITTLE_ENDIAN__
  51222. #define vfmas_laneq_f32(__p0, __p1, __p2, __p3) __extension__ ({ \
  51223. float32_t __s0 = __p0; \
  51224. float32_t __s1 = __p1; \
  51225. float32x4_t __s2 = __p2; \
  51226. float32_t __ret; \
  51227. __ret = (float32_t) __builtin_neon_vfmas_laneq_f32(__s0, __s1, (int8x16_t)__s2, __p3); \
  51228. __ret; \
  51229. })
  51230. #else
  51231. #define vfmas_laneq_f32(__p0, __p1, __p2, __p3) __extension__ ({ \
  51232. float32_t __s0 = __p0; \
  51233. float32_t __s1 = __p1; \
  51234. float32x4_t __s2 = __p2; \
  51235. float32x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  51236. float32_t __ret; \
  51237. __ret = (float32_t) __builtin_neon_vfmas_laneq_f32(__s0, __s1, (int8x16_t)__rev2, __p3); \
  51238. __ret; \
  51239. })
  51240. #define __noswap_vfmas_laneq_f32(__p0, __p1, __p2, __p3) __extension__ ({ \
  51241. float32_t __s0 = __p0; \
  51242. float32_t __s1 = __p1; \
  51243. float32x4_t __s2 = __p2; \
  51244. float32_t __ret; \
  51245. __ret = (float32_t) __builtin_neon_vfmas_laneq_f32(__s0, __s1, (int8x16_t)__s2, __p3); \
  51246. __ret; \
  51247. })
  51248. #endif
  51249. #ifdef __LITTLE_ENDIAN__
  51250. #define vfmaq_laneq_f64(__p0, __p1, __p2, __p3) __extension__ ({ \
  51251. float64x2_t __s0 = __p0; \
  51252. float64x2_t __s1 = __p1; \
  51253. float64x2_t __s2 = __p2; \
  51254. float64x2_t __ret; \
  51255. __ret = (float64x2_t) __builtin_neon_vfmaq_laneq_v((int8x16_t)__s0, (int8x16_t)__s1, (int8x16_t)__s2, __p3, 42); \
  51256. __ret; \
  51257. })
  51258. #else
  51259. #define vfmaq_laneq_f64(__p0, __p1, __p2, __p3) __extension__ ({ \
  51260. float64x2_t __s0 = __p0; \
  51261. float64x2_t __s1 = __p1; \
  51262. float64x2_t __s2 = __p2; \
  51263. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  51264. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  51265. float64x2_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 1, 0); \
  51266. float64x2_t __ret; \
  51267. __ret = (float64x2_t) __builtin_neon_vfmaq_laneq_v((int8x16_t)__rev0, (int8x16_t)__rev1, (int8x16_t)__rev2, __p3, 42); \
  51268. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  51269. __ret; \
  51270. })
  51271. #define __noswap_vfmaq_laneq_f64(__p0, __p1, __p2, __p3) __extension__ ({ \
  51272. float64x2_t __s0 = __p0; \
  51273. float64x2_t __s1 = __p1; \
  51274. float64x2_t __s2 = __p2; \
  51275. float64x2_t __ret; \
  51276. __ret = (float64x2_t) __builtin_neon_vfmaq_laneq_v((int8x16_t)__s0, (int8x16_t)__s1, (int8x16_t)__s2, __p3, 42); \
  51277. __ret; \
  51278. })
  51279. #endif
  51280. #ifdef __LITTLE_ENDIAN__
  51281. #define vfmaq_laneq_f32(__p0, __p1, __p2, __p3) __extension__ ({ \
  51282. float32x4_t __s0 = __p0; \
  51283. float32x4_t __s1 = __p1; \
  51284. float32x4_t __s2 = __p2; \
  51285. float32x4_t __ret; \
  51286. __ret = (float32x4_t) __builtin_neon_vfmaq_laneq_v((int8x16_t)__s0, (int8x16_t)__s1, (int8x16_t)__s2, __p3, 41); \
  51287. __ret; \
  51288. })
  51289. #else
  51290. #define vfmaq_laneq_f32(__p0, __p1, __p2, __p3) __extension__ ({ \
  51291. float32x4_t __s0 = __p0; \
  51292. float32x4_t __s1 = __p1; \
  51293. float32x4_t __s2 = __p2; \
  51294. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  51295. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  51296. float32x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  51297. float32x4_t __ret; \
  51298. __ret = (float32x4_t) __builtin_neon_vfmaq_laneq_v((int8x16_t)__rev0, (int8x16_t)__rev1, (int8x16_t)__rev2, __p3, 41); \
  51299. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  51300. __ret; \
  51301. })
  51302. #define __noswap_vfmaq_laneq_f32(__p0, __p1, __p2, __p3) __extension__ ({ \
  51303. float32x4_t __s0 = __p0; \
  51304. float32x4_t __s1 = __p1; \
  51305. float32x4_t __s2 = __p2; \
  51306. float32x4_t __ret; \
  51307. __ret = (float32x4_t) __builtin_neon_vfmaq_laneq_v((int8x16_t)__s0, (int8x16_t)__s1, (int8x16_t)__s2, __p3, 41); \
  51308. __ret; \
  51309. })
  51310. #endif
  51311. #ifdef __LITTLE_ENDIAN__
  51312. #define vfma_laneq_f64(__p0, __p1, __p2, __p3) __extension__ ({ \
  51313. float64x1_t __s0 = __p0; \
  51314. float64x1_t __s1 = __p1; \
  51315. float64x2_t __s2 = __p2; \
  51316. float64x1_t __ret; \
  51317. __ret = (float64x1_t) __builtin_neon_vfma_laneq_v((int8x8_t)__s0, (int8x8_t)__s1, (int8x16_t)__s2, __p3, 10); \
  51318. __ret; \
  51319. })
  51320. #else
  51321. #define vfma_laneq_f64(__p0, __p1, __p2, __p3) __extension__ ({ \
  51322. float64x1_t __s0 = __p0; \
  51323. float64x1_t __s1 = __p1; \
  51324. float64x2_t __s2 = __p2; \
  51325. float64x2_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 1, 0); \
  51326. float64x1_t __ret; \
  51327. __ret = (float64x1_t) __builtin_neon_vfma_laneq_v((int8x8_t)__s0, (int8x8_t)__s1, (int8x16_t)__rev2, __p3, 10); \
  51328. __ret; \
  51329. })
  51330. #define __noswap_vfma_laneq_f64(__p0, __p1, __p2, __p3) __extension__ ({ \
  51331. float64x1_t __s0 = __p0; \
  51332. float64x1_t __s1 = __p1; \
  51333. float64x2_t __s2 = __p2; \
  51334. float64x1_t __ret; \
  51335. __ret = (float64x1_t) __builtin_neon_vfma_laneq_v((int8x8_t)__s0, (int8x8_t)__s1, (int8x16_t)__s2, __p3, 10); \
  51336. __ret; \
  51337. })
  51338. #endif
  51339. #ifdef __LITTLE_ENDIAN__
  51340. #define vfma_laneq_f32(__p0, __p1, __p2, __p3) __extension__ ({ \
  51341. float32x2_t __s0 = __p0; \
  51342. float32x2_t __s1 = __p1; \
  51343. float32x4_t __s2 = __p2; \
  51344. float32x2_t __ret; \
  51345. __ret = (float32x2_t) __builtin_neon_vfma_laneq_v((int8x8_t)__s0, (int8x8_t)__s1, (int8x16_t)__s2, __p3, 9); \
  51346. __ret; \
  51347. })
  51348. #else
  51349. #define vfma_laneq_f32(__p0, __p1, __p2, __p3) __extension__ ({ \
  51350. float32x2_t __s0 = __p0; \
  51351. float32x2_t __s1 = __p1; \
  51352. float32x4_t __s2 = __p2; \
  51353. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  51354. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  51355. float32x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  51356. float32x2_t __ret; \
  51357. __ret = (float32x2_t) __builtin_neon_vfma_laneq_v((int8x8_t)__rev0, (int8x8_t)__rev1, (int8x16_t)__rev2, __p3, 9); \
  51358. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  51359. __ret; \
  51360. })
  51361. #define __noswap_vfma_laneq_f32(__p0, __p1, __p2, __p3) __extension__ ({ \
  51362. float32x2_t __s0 = __p0; \
  51363. float32x2_t __s1 = __p1; \
  51364. float32x4_t __s2 = __p2; \
  51365. float32x2_t __ret; \
  51366. __ret = (float32x2_t) __builtin_neon_vfma_laneq_v((int8x8_t)__s0, (int8x8_t)__s1, (int8x16_t)__s2, __p3, 9); \
  51367. __ret; \
  51368. })
  51369. #endif
  51370. #ifdef __LITTLE_ENDIAN__
  51371. __ai float64x2_t vfmaq_n_f64(float64x2_t __p0, float64x2_t __p1, float64_t __p2) {
  51372. float64x2_t __ret;
  51373. __ret = vfmaq_f64(__p0, __p1, (float64x2_t) {__p2, __p2});
  51374. return __ret;
  51375. }
  51376. #else
  51377. __ai float64x2_t vfmaq_n_f64(float64x2_t __p0, float64x2_t __p1, float64_t __p2) {
  51378. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  51379. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  51380. float64x2_t __ret;
  51381. __ret = __noswap_vfmaq_f64(__rev0, __rev1, (float64x2_t) {__p2, __p2});
  51382. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  51383. return __ret;
  51384. }
  51385. #endif
  51386. #ifdef __LITTLE_ENDIAN__
  51387. __ai float64x1_t vfma_n_f64(float64x1_t __p0, float64x1_t __p1, float64_t __p2) {
  51388. float64x1_t __ret;
  51389. __ret = vfma_f64(__p0, __p1, (float64x1_t) {__p2});
  51390. return __ret;
  51391. }
  51392. #else
  51393. __ai float64x1_t vfma_n_f64(float64x1_t __p0, float64x1_t __p1, float64_t __p2) {
  51394. float64x1_t __ret;
  51395. __ret = __noswap_vfma_f64(__p0, __p1, (float64x1_t) {__p2});
  51396. return __ret;
  51397. }
  51398. #endif
  51399. #ifdef __LITTLE_ENDIAN__
  51400. __ai float64x2_t vfmsq_f64(float64x2_t __p0, float64x2_t __p1, float64x2_t __p2) {
  51401. float64x2_t __ret;
  51402. __ret = vfmaq_f64(__p0, -__p1, __p2);
  51403. return __ret;
  51404. }
  51405. #else
  51406. __ai float64x2_t vfmsq_f64(float64x2_t __p0, float64x2_t __p1, float64x2_t __p2) {
  51407. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  51408. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  51409. float64x2_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 1, 0);
  51410. float64x2_t __ret;
  51411. __ret = __noswap_vfmaq_f64(__rev0, -__rev1, __rev2);
  51412. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  51413. return __ret;
  51414. }
  51415. #endif
  51416. #ifdef __LITTLE_ENDIAN__
  51417. __ai float64x1_t vfms_f64(float64x1_t __p0, float64x1_t __p1, float64x1_t __p2) {
  51418. float64x1_t __ret;
  51419. __ret = vfma_f64(__p0, -__p1, __p2);
  51420. return __ret;
  51421. }
  51422. #else
  51423. __ai float64x1_t vfms_f64(float64x1_t __p0, float64x1_t __p1, float64x1_t __p2) {
  51424. float64x1_t __ret;
  51425. __ret = __noswap_vfma_f64(__p0, -__p1, __p2);
  51426. return __ret;
  51427. }
  51428. #endif
  51429. #ifdef __LITTLE_ENDIAN__
  51430. #define vfmsd_lane_f64(__p0_100, __p1_100, __p2_100, __p3_100) __extension__ ({ \
  51431. float64_t __s0_100 = __p0_100; \
  51432. float64_t __s1_100 = __p1_100; \
  51433. float64x1_t __s2_100 = __p2_100; \
  51434. float64_t __ret_100; \
  51435. __ret_100 = vfmad_lane_f64(__s0_100, -__s1_100, __s2_100, __p3_100); \
  51436. __ret_100; \
  51437. })
  51438. #else
  51439. #define vfmsd_lane_f64(__p0_101, __p1_101, __p2_101, __p3_101) __extension__ ({ \
  51440. float64_t __s0_101 = __p0_101; \
  51441. float64_t __s1_101 = __p1_101; \
  51442. float64x1_t __s2_101 = __p2_101; \
  51443. float64_t __ret_101; \
  51444. __ret_101 = __noswap_vfmad_lane_f64(__s0_101, -__s1_101, __s2_101, __p3_101); \
  51445. __ret_101; \
  51446. })
  51447. #endif
  51448. #ifdef __LITTLE_ENDIAN__
  51449. #define vfmss_lane_f32(__p0_102, __p1_102, __p2_102, __p3_102) __extension__ ({ \
  51450. float32_t __s0_102 = __p0_102; \
  51451. float32_t __s1_102 = __p1_102; \
  51452. float32x2_t __s2_102 = __p2_102; \
  51453. float32_t __ret_102; \
  51454. __ret_102 = vfmas_lane_f32(__s0_102, -__s1_102, __s2_102, __p3_102); \
  51455. __ret_102; \
  51456. })
  51457. #else
  51458. #define vfmss_lane_f32(__p0_103, __p1_103, __p2_103, __p3_103) __extension__ ({ \
  51459. float32_t __s0_103 = __p0_103; \
  51460. float32_t __s1_103 = __p1_103; \
  51461. float32x2_t __s2_103 = __p2_103; \
  51462. float32x2_t __rev2_103; __rev2_103 = __builtin_shufflevector(__s2_103, __s2_103, 1, 0); \
  51463. float32_t __ret_103; \
  51464. __ret_103 = __noswap_vfmas_lane_f32(__s0_103, -__s1_103, __rev2_103, __p3_103); \
  51465. __ret_103; \
  51466. })
  51467. #endif
  51468. #ifdef __LITTLE_ENDIAN__
  51469. #define vfmsq_lane_f64(__p0_104, __p1_104, __p2_104, __p3_104) __extension__ ({ \
  51470. float64x2_t __s0_104 = __p0_104; \
  51471. float64x2_t __s1_104 = __p1_104; \
  51472. float64x1_t __s2_104 = __p2_104; \
  51473. float64x2_t __ret_104; \
  51474. __ret_104 = vfmaq_lane_f64(__s0_104, -__s1_104, __s2_104, __p3_104); \
  51475. __ret_104; \
  51476. })
  51477. #else
  51478. #define vfmsq_lane_f64(__p0_105, __p1_105, __p2_105, __p3_105) __extension__ ({ \
  51479. float64x2_t __s0_105 = __p0_105; \
  51480. float64x2_t __s1_105 = __p1_105; \
  51481. float64x1_t __s2_105 = __p2_105; \
  51482. float64x2_t __rev0_105; __rev0_105 = __builtin_shufflevector(__s0_105, __s0_105, 1, 0); \
  51483. float64x2_t __rev1_105; __rev1_105 = __builtin_shufflevector(__s1_105, __s1_105, 1, 0); \
  51484. float64x2_t __ret_105; \
  51485. __ret_105 = __noswap_vfmaq_lane_f64(__rev0_105, -__rev1_105, __s2_105, __p3_105); \
  51486. __ret_105 = __builtin_shufflevector(__ret_105, __ret_105, 1, 0); \
  51487. __ret_105; \
  51488. })
  51489. #endif
  51490. #ifdef __LITTLE_ENDIAN__
  51491. #define vfmsq_lane_f32(__p0_106, __p1_106, __p2_106, __p3_106) __extension__ ({ \
  51492. float32x4_t __s0_106 = __p0_106; \
  51493. float32x4_t __s1_106 = __p1_106; \
  51494. float32x2_t __s2_106 = __p2_106; \
  51495. float32x4_t __ret_106; \
  51496. __ret_106 = vfmaq_lane_f32(__s0_106, -__s1_106, __s2_106, __p3_106); \
  51497. __ret_106; \
  51498. })
  51499. #else
  51500. #define vfmsq_lane_f32(__p0_107, __p1_107, __p2_107, __p3_107) __extension__ ({ \
  51501. float32x4_t __s0_107 = __p0_107; \
  51502. float32x4_t __s1_107 = __p1_107; \
  51503. float32x2_t __s2_107 = __p2_107; \
  51504. float32x4_t __rev0_107; __rev0_107 = __builtin_shufflevector(__s0_107, __s0_107, 3, 2, 1, 0); \
  51505. float32x4_t __rev1_107; __rev1_107 = __builtin_shufflevector(__s1_107, __s1_107, 3, 2, 1, 0); \
  51506. float32x2_t __rev2_107; __rev2_107 = __builtin_shufflevector(__s2_107, __s2_107, 1, 0); \
  51507. float32x4_t __ret_107; \
  51508. __ret_107 = __noswap_vfmaq_lane_f32(__rev0_107, -__rev1_107, __rev2_107, __p3_107); \
  51509. __ret_107 = __builtin_shufflevector(__ret_107, __ret_107, 3, 2, 1, 0); \
  51510. __ret_107; \
  51511. })
  51512. #endif
  51513. #ifdef __LITTLE_ENDIAN__
  51514. #define vfms_lane_f64(__p0_108, __p1_108, __p2_108, __p3_108) __extension__ ({ \
  51515. float64x1_t __s0_108 = __p0_108; \
  51516. float64x1_t __s1_108 = __p1_108; \
  51517. float64x1_t __s2_108 = __p2_108; \
  51518. float64x1_t __ret_108; \
  51519. __ret_108 = vfma_lane_f64(__s0_108, -__s1_108, __s2_108, __p3_108); \
  51520. __ret_108; \
  51521. })
  51522. #else
  51523. #define vfms_lane_f64(__p0_109, __p1_109, __p2_109, __p3_109) __extension__ ({ \
  51524. float64x1_t __s0_109 = __p0_109; \
  51525. float64x1_t __s1_109 = __p1_109; \
  51526. float64x1_t __s2_109 = __p2_109; \
  51527. float64x1_t __ret_109; \
  51528. __ret_109 = __noswap_vfma_lane_f64(__s0_109, -__s1_109, __s2_109, __p3_109); \
  51529. __ret_109; \
  51530. })
  51531. #endif
  51532. #ifdef __LITTLE_ENDIAN__
  51533. #define vfms_lane_f32(__p0_110, __p1_110, __p2_110, __p3_110) __extension__ ({ \
  51534. float32x2_t __s0_110 = __p0_110; \
  51535. float32x2_t __s1_110 = __p1_110; \
  51536. float32x2_t __s2_110 = __p2_110; \
  51537. float32x2_t __ret_110; \
  51538. __ret_110 = vfma_lane_f32(__s0_110, -__s1_110, __s2_110, __p3_110); \
  51539. __ret_110; \
  51540. })
  51541. #else
  51542. #define vfms_lane_f32(__p0_111, __p1_111, __p2_111, __p3_111) __extension__ ({ \
  51543. float32x2_t __s0_111 = __p0_111; \
  51544. float32x2_t __s1_111 = __p1_111; \
  51545. float32x2_t __s2_111 = __p2_111; \
  51546. float32x2_t __rev0_111; __rev0_111 = __builtin_shufflevector(__s0_111, __s0_111, 1, 0); \
  51547. float32x2_t __rev1_111; __rev1_111 = __builtin_shufflevector(__s1_111, __s1_111, 1, 0); \
  51548. float32x2_t __rev2_111; __rev2_111 = __builtin_shufflevector(__s2_111, __s2_111, 1, 0); \
  51549. float32x2_t __ret_111; \
  51550. __ret_111 = __noswap_vfma_lane_f32(__rev0_111, -__rev1_111, __rev2_111, __p3_111); \
  51551. __ret_111 = __builtin_shufflevector(__ret_111, __ret_111, 1, 0); \
  51552. __ret_111; \
  51553. })
  51554. #endif
  51555. #ifdef __LITTLE_ENDIAN__
  51556. #define vfmsd_laneq_f64(__p0_112, __p1_112, __p2_112, __p3_112) __extension__ ({ \
  51557. float64_t __s0_112 = __p0_112; \
  51558. float64_t __s1_112 = __p1_112; \
  51559. float64x2_t __s2_112 = __p2_112; \
  51560. float64_t __ret_112; \
  51561. __ret_112 = vfmad_laneq_f64(__s0_112, -__s1_112, __s2_112, __p3_112); \
  51562. __ret_112; \
  51563. })
  51564. #else
  51565. #define vfmsd_laneq_f64(__p0_113, __p1_113, __p2_113, __p3_113) __extension__ ({ \
  51566. float64_t __s0_113 = __p0_113; \
  51567. float64_t __s1_113 = __p1_113; \
  51568. float64x2_t __s2_113 = __p2_113; \
  51569. float64x2_t __rev2_113; __rev2_113 = __builtin_shufflevector(__s2_113, __s2_113, 1, 0); \
  51570. float64_t __ret_113; \
  51571. __ret_113 = __noswap_vfmad_laneq_f64(__s0_113, -__s1_113, __rev2_113, __p3_113); \
  51572. __ret_113; \
  51573. })
  51574. #endif
  51575. #ifdef __LITTLE_ENDIAN__
  51576. #define vfmss_laneq_f32(__p0_114, __p1_114, __p2_114, __p3_114) __extension__ ({ \
  51577. float32_t __s0_114 = __p0_114; \
  51578. float32_t __s1_114 = __p1_114; \
  51579. float32x4_t __s2_114 = __p2_114; \
  51580. float32_t __ret_114; \
  51581. __ret_114 = vfmas_laneq_f32(__s0_114, -__s1_114, __s2_114, __p3_114); \
  51582. __ret_114; \
  51583. })
  51584. #else
  51585. #define vfmss_laneq_f32(__p0_115, __p1_115, __p2_115, __p3_115) __extension__ ({ \
  51586. float32_t __s0_115 = __p0_115; \
  51587. float32_t __s1_115 = __p1_115; \
  51588. float32x4_t __s2_115 = __p2_115; \
  51589. float32x4_t __rev2_115; __rev2_115 = __builtin_shufflevector(__s2_115, __s2_115, 3, 2, 1, 0); \
  51590. float32_t __ret_115; \
  51591. __ret_115 = __noswap_vfmas_laneq_f32(__s0_115, -__s1_115, __rev2_115, __p3_115); \
  51592. __ret_115; \
  51593. })
  51594. #endif
  51595. #ifdef __LITTLE_ENDIAN__
  51596. #define vfmsq_laneq_f64(__p0_116, __p1_116, __p2_116, __p3_116) __extension__ ({ \
  51597. float64x2_t __s0_116 = __p0_116; \
  51598. float64x2_t __s1_116 = __p1_116; \
  51599. float64x2_t __s2_116 = __p2_116; \
  51600. float64x2_t __ret_116; \
  51601. __ret_116 = vfmaq_laneq_f64(__s0_116, -__s1_116, __s2_116, __p3_116); \
  51602. __ret_116; \
  51603. })
  51604. #else
  51605. #define vfmsq_laneq_f64(__p0_117, __p1_117, __p2_117, __p3_117) __extension__ ({ \
  51606. float64x2_t __s0_117 = __p0_117; \
  51607. float64x2_t __s1_117 = __p1_117; \
  51608. float64x2_t __s2_117 = __p2_117; \
  51609. float64x2_t __rev0_117; __rev0_117 = __builtin_shufflevector(__s0_117, __s0_117, 1, 0); \
  51610. float64x2_t __rev1_117; __rev1_117 = __builtin_shufflevector(__s1_117, __s1_117, 1, 0); \
  51611. float64x2_t __rev2_117; __rev2_117 = __builtin_shufflevector(__s2_117, __s2_117, 1, 0); \
  51612. float64x2_t __ret_117; \
  51613. __ret_117 = __noswap_vfmaq_laneq_f64(__rev0_117, -__rev1_117, __rev2_117, __p3_117); \
  51614. __ret_117 = __builtin_shufflevector(__ret_117, __ret_117, 1, 0); \
  51615. __ret_117; \
  51616. })
  51617. #endif
  51618. #ifdef __LITTLE_ENDIAN__
  51619. #define vfmsq_laneq_f32(__p0_118, __p1_118, __p2_118, __p3_118) __extension__ ({ \
  51620. float32x4_t __s0_118 = __p0_118; \
  51621. float32x4_t __s1_118 = __p1_118; \
  51622. float32x4_t __s2_118 = __p2_118; \
  51623. float32x4_t __ret_118; \
  51624. __ret_118 = vfmaq_laneq_f32(__s0_118, -__s1_118, __s2_118, __p3_118); \
  51625. __ret_118; \
  51626. })
  51627. #else
  51628. #define vfmsq_laneq_f32(__p0_119, __p1_119, __p2_119, __p3_119) __extension__ ({ \
  51629. float32x4_t __s0_119 = __p0_119; \
  51630. float32x4_t __s1_119 = __p1_119; \
  51631. float32x4_t __s2_119 = __p2_119; \
  51632. float32x4_t __rev0_119; __rev0_119 = __builtin_shufflevector(__s0_119, __s0_119, 3, 2, 1, 0); \
  51633. float32x4_t __rev1_119; __rev1_119 = __builtin_shufflevector(__s1_119, __s1_119, 3, 2, 1, 0); \
  51634. float32x4_t __rev2_119; __rev2_119 = __builtin_shufflevector(__s2_119, __s2_119, 3, 2, 1, 0); \
  51635. float32x4_t __ret_119; \
  51636. __ret_119 = __noswap_vfmaq_laneq_f32(__rev0_119, -__rev1_119, __rev2_119, __p3_119); \
  51637. __ret_119 = __builtin_shufflevector(__ret_119, __ret_119, 3, 2, 1, 0); \
  51638. __ret_119; \
  51639. })
  51640. #endif
  51641. #ifdef __LITTLE_ENDIAN__
  51642. #define vfms_laneq_f64(__p0_120, __p1_120, __p2_120, __p3_120) __extension__ ({ \
  51643. float64x1_t __s0_120 = __p0_120; \
  51644. float64x1_t __s1_120 = __p1_120; \
  51645. float64x2_t __s2_120 = __p2_120; \
  51646. float64x1_t __ret_120; \
  51647. __ret_120 = vfma_laneq_f64(__s0_120, -__s1_120, __s2_120, __p3_120); \
  51648. __ret_120; \
  51649. })
  51650. #else
  51651. #define vfms_laneq_f64(__p0_121, __p1_121, __p2_121, __p3_121) __extension__ ({ \
  51652. float64x1_t __s0_121 = __p0_121; \
  51653. float64x1_t __s1_121 = __p1_121; \
  51654. float64x2_t __s2_121 = __p2_121; \
  51655. float64x2_t __rev2_121; __rev2_121 = __builtin_shufflevector(__s2_121, __s2_121, 1, 0); \
  51656. float64x1_t __ret_121; \
  51657. __ret_121 = __noswap_vfma_laneq_f64(__s0_121, -__s1_121, __rev2_121, __p3_121); \
  51658. __ret_121; \
  51659. })
  51660. #endif
  51661. #ifdef __LITTLE_ENDIAN__
  51662. #define vfms_laneq_f32(__p0_122, __p1_122, __p2_122, __p3_122) __extension__ ({ \
  51663. float32x2_t __s0_122 = __p0_122; \
  51664. float32x2_t __s1_122 = __p1_122; \
  51665. float32x4_t __s2_122 = __p2_122; \
  51666. float32x2_t __ret_122; \
  51667. __ret_122 = vfma_laneq_f32(__s0_122, -__s1_122, __s2_122, __p3_122); \
  51668. __ret_122; \
  51669. })
  51670. #else
  51671. #define vfms_laneq_f32(__p0_123, __p1_123, __p2_123, __p3_123) __extension__ ({ \
  51672. float32x2_t __s0_123 = __p0_123; \
  51673. float32x2_t __s1_123 = __p1_123; \
  51674. float32x4_t __s2_123 = __p2_123; \
  51675. float32x2_t __rev0_123; __rev0_123 = __builtin_shufflevector(__s0_123, __s0_123, 1, 0); \
  51676. float32x2_t __rev1_123; __rev1_123 = __builtin_shufflevector(__s1_123, __s1_123, 1, 0); \
  51677. float32x4_t __rev2_123; __rev2_123 = __builtin_shufflevector(__s2_123, __s2_123, 3, 2, 1, 0); \
  51678. float32x2_t __ret_123; \
  51679. __ret_123 = __noswap_vfma_laneq_f32(__rev0_123, -__rev1_123, __rev2_123, __p3_123); \
  51680. __ret_123 = __builtin_shufflevector(__ret_123, __ret_123, 1, 0); \
  51681. __ret_123; \
  51682. })
  51683. #endif
  51684. #ifdef __LITTLE_ENDIAN__
  51685. __ai float64x2_t vfmsq_n_f64(float64x2_t __p0, float64x2_t __p1, float64_t __p2) {
  51686. float64x2_t __ret;
  51687. __ret = vfmaq_f64(__p0, -__p1, (float64x2_t) {__p2, __p2});
  51688. return __ret;
  51689. }
  51690. #else
  51691. __ai float64x2_t vfmsq_n_f64(float64x2_t __p0, float64x2_t __p1, float64_t __p2) {
  51692. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  51693. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  51694. float64x2_t __ret;
  51695. __ret = __noswap_vfmaq_f64(__rev0, -__rev1, (float64x2_t) {__p2, __p2});
  51696. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  51697. return __ret;
  51698. }
  51699. #endif
  51700. #ifdef __LITTLE_ENDIAN__
  51701. __ai float32x4_t vfmsq_n_f32(float32x4_t __p0, float32x4_t __p1, float32_t __p2) {
  51702. float32x4_t __ret;
  51703. __ret = vfmaq_f32(__p0, -__p1, (float32x4_t) {__p2, __p2, __p2, __p2});
  51704. return __ret;
  51705. }
  51706. #else
  51707. __ai float32x4_t vfmsq_n_f32(float32x4_t __p0, float32x4_t __p1, float32_t __p2) {
  51708. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  51709. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  51710. float32x4_t __ret;
  51711. __ret = __noswap_vfmaq_f32(__rev0, -__rev1, (float32x4_t) {__p2, __p2, __p2, __p2});
  51712. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  51713. return __ret;
  51714. }
  51715. #endif
  51716. #ifdef __LITTLE_ENDIAN__
  51717. __ai float64x1_t vfms_n_f64(float64x1_t __p0, float64x1_t __p1, float64_t __p2) {
  51718. float64x1_t __ret;
  51719. __ret = vfma_f64(__p0, -__p1, (float64x1_t) {__p2});
  51720. return __ret;
  51721. }
  51722. #else
  51723. __ai float64x1_t vfms_n_f64(float64x1_t __p0, float64x1_t __p1, float64_t __p2) {
  51724. float64x1_t __ret;
  51725. __ret = __noswap_vfma_f64(__p0, -__p1, (float64x1_t) {__p2});
  51726. return __ret;
  51727. }
  51728. #endif
  51729. #ifdef __LITTLE_ENDIAN__
  51730. __ai float32x2_t vfms_n_f32(float32x2_t __p0, float32x2_t __p1, float32_t __p2) {
  51731. float32x2_t __ret;
  51732. __ret = vfma_f32(__p0, -__p1, (float32x2_t) {__p2, __p2});
  51733. return __ret;
  51734. }
  51735. #else
  51736. __ai float32x2_t vfms_n_f32(float32x2_t __p0, float32x2_t __p1, float32_t __p2) {
  51737. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  51738. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  51739. float32x2_t __ret;
  51740. __ret = __noswap_vfma_f32(__rev0, -__rev1, (float32x2_t) {__p2, __p2});
  51741. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  51742. return __ret;
  51743. }
  51744. #endif
  51745. #ifdef __LITTLE_ENDIAN__
  51746. __ai poly64x1_t vget_high_p64(poly64x2_t __p0) {
  51747. poly64x1_t __ret;
  51748. __ret = __builtin_shufflevector(__p0, __p0, 1);
  51749. return __ret;
  51750. }
  51751. #else
  51752. __ai poly64x1_t vget_high_p64(poly64x2_t __p0) {
  51753. poly64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  51754. poly64x1_t __ret;
  51755. __ret = __builtin_shufflevector(__rev0, __rev0, 1);
  51756. return __ret;
  51757. }
  51758. __ai poly64x1_t __noswap_vget_high_p64(poly64x2_t __p0) {
  51759. poly64x1_t __ret;
  51760. __ret = __builtin_shufflevector(__p0, __p0, 1);
  51761. return __ret;
  51762. }
  51763. #endif
  51764. #ifdef __LITTLE_ENDIAN__
  51765. __ai float64x1_t vget_high_f64(float64x2_t __p0) {
  51766. float64x1_t __ret;
  51767. __ret = __builtin_shufflevector(__p0, __p0, 1);
  51768. return __ret;
  51769. }
  51770. #else
  51771. __ai float64x1_t vget_high_f64(float64x2_t __p0) {
  51772. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  51773. float64x1_t __ret;
  51774. __ret = __builtin_shufflevector(__rev0, __rev0, 1);
  51775. return __ret;
  51776. }
  51777. #endif
  51778. #ifdef __LITTLE_ENDIAN__
  51779. #define vget_lane_p64(__p0, __p1) __extension__ ({ \
  51780. poly64x1_t __s0 = __p0; \
  51781. poly64_t __ret; \
  51782. __ret = (poly64_t) __builtin_neon_vget_lane_i64((int8x8_t)__s0, __p1); \
  51783. __ret; \
  51784. })
  51785. #else
  51786. #define vget_lane_p64(__p0, __p1) __extension__ ({ \
  51787. poly64x1_t __s0 = __p0; \
  51788. poly64_t __ret; \
  51789. __ret = (poly64_t) __builtin_neon_vget_lane_i64((int8x8_t)__s0, __p1); \
  51790. __ret; \
  51791. })
  51792. #define __noswap_vget_lane_p64(__p0, __p1) __extension__ ({ \
  51793. poly64x1_t __s0 = __p0; \
  51794. poly64_t __ret; \
  51795. __ret = (poly64_t) __builtin_neon_vget_lane_i64((int8x8_t)__s0, __p1); \
  51796. __ret; \
  51797. })
  51798. #endif
  51799. #ifdef __LITTLE_ENDIAN__
  51800. #define vgetq_lane_p64(__p0, __p1) __extension__ ({ \
  51801. poly64x2_t __s0 = __p0; \
  51802. poly64_t __ret; \
  51803. __ret = (poly64_t) __builtin_neon_vgetq_lane_i64((int8x16_t)__s0, __p1); \
  51804. __ret; \
  51805. })
  51806. #else
  51807. #define vgetq_lane_p64(__p0, __p1) __extension__ ({ \
  51808. poly64x2_t __s0 = __p0; \
  51809. poly64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  51810. poly64_t __ret; \
  51811. __ret = (poly64_t) __builtin_neon_vgetq_lane_i64((int8x16_t)__rev0, __p1); \
  51812. __ret; \
  51813. })
  51814. #define __noswap_vgetq_lane_p64(__p0, __p1) __extension__ ({ \
  51815. poly64x2_t __s0 = __p0; \
  51816. poly64_t __ret; \
  51817. __ret = (poly64_t) __builtin_neon_vgetq_lane_i64((int8x16_t)__s0, __p1); \
  51818. __ret; \
  51819. })
  51820. #endif
  51821. #ifdef __LITTLE_ENDIAN__
  51822. #define vgetq_lane_f64(__p0, __p1) __extension__ ({ \
  51823. float64x2_t __s0 = __p0; \
  51824. float64_t __ret; \
  51825. __ret = (float64_t) __builtin_neon_vgetq_lane_f64((int8x16_t)__s0, __p1); \
  51826. __ret; \
  51827. })
  51828. #else
  51829. #define vgetq_lane_f64(__p0, __p1) __extension__ ({ \
  51830. float64x2_t __s0 = __p0; \
  51831. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  51832. float64_t __ret; \
  51833. __ret = (float64_t) __builtin_neon_vgetq_lane_f64((int8x16_t)__rev0, __p1); \
  51834. __ret; \
  51835. })
  51836. #define __noswap_vgetq_lane_f64(__p0, __p1) __extension__ ({ \
  51837. float64x2_t __s0 = __p0; \
  51838. float64_t __ret; \
  51839. __ret = (float64_t) __builtin_neon_vgetq_lane_f64((int8x16_t)__s0, __p1); \
  51840. __ret; \
  51841. })
  51842. #endif
  51843. #ifdef __LITTLE_ENDIAN__
  51844. #define vget_lane_f64(__p0, __p1) __extension__ ({ \
  51845. float64x1_t __s0 = __p0; \
  51846. float64_t __ret; \
  51847. __ret = (float64_t) __builtin_neon_vget_lane_f64((int8x8_t)__s0, __p1); \
  51848. __ret; \
  51849. })
  51850. #else
  51851. #define vget_lane_f64(__p0, __p1) __extension__ ({ \
  51852. float64x1_t __s0 = __p0; \
  51853. float64_t __ret; \
  51854. __ret = (float64_t) __builtin_neon_vget_lane_f64((int8x8_t)__s0, __p1); \
  51855. __ret; \
  51856. })
  51857. #define __noswap_vget_lane_f64(__p0, __p1) __extension__ ({ \
  51858. float64x1_t __s0 = __p0; \
  51859. float64_t __ret; \
  51860. __ret = (float64_t) __builtin_neon_vget_lane_f64((int8x8_t)__s0, __p1); \
  51861. __ret; \
  51862. })
  51863. #endif
  51864. #ifdef __LITTLE_ENDIAN__
  51865. __ai poly64x1_t vget_low_p64(poly64x2_t __p0) {
  51866. poly64x1_t __ret;
  51867. __ret = __builtin_shufflevector(__p0, __p0, 0);
  51868. return __ret;
  51869. }
  51870. #else
  51871. __ai poly64x1_t vget_low_p64(poly64x2_t __p0) {
  51872. poly64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  51873. poly64x1_t __ret;
  51874. __ret = __builtin_shufflevector(__rev0, __rev0, 0);
  51875. return __ret;
  51876. }
  51877. #endif
  51878. #ifdef __LITTLE_ENDIAN__
  51879. __ai float64x1_t vget_low_f64(float64x2_t __p0) {
  51880. float64x1_t __ret;
  51881. __ret = __builtin_shufflevector(__p0, __p0, 0);
  51882. return __ret;
  51883. }
  51884. #else
  51885. __ai float64x1_t vget_low_f64(float64x2_t __p0) {
  51886. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  51887. float64x1_t __ret;
  51888. __ret = __builtin_shufflevector(__rev0, __rev0, 0);
  51889. return __ret;
  51890. }
  51891. #endif
  51892. #ifdef __LITTLE_ENDIAN__
  51893. #define vld1_p64(__p0) __extension__ ({ \
  51894. poly64x1_t __ret; \
  51895. __ret = (poly64x1_t) __builtin_neon_vld1_v(__p0, 6); \
  51896. __ret; \
  51897. })
  51898. #else
  51899. #define vld1_p64(__p0) __extension__ ({ \
  51900. poly64x1_t __ret; \
  51901. __ret = (poly64x1_t) __builtin_neon_vld1_v(__p0, 6); \
  51902. __ret; \
  51903. })
  51904. #endif
  51905. #ifdef __LITTLE_ENDIAN__
  51906. #define vld1q_p64(__p0) __extension__ ({ \
  51907. poly64x2_t __ret; \
  51908. __ret = (poly64x2_t) __builtin_neon_vld1q_v(__p0, 38); \
  51909. __ret; \
  51910. })
  51911. #else
  51912. #define vld1q_p64(__p0) __extension__ ({ \
  51913. poly64x2_t __ret; \
  51914. __ret = (poly64x2_t) __builtin_neon_vld1q_v(__p0, 38); \
  51915. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  51916. __ret; \
  51917. })
  51918. #endif
  51919. #ifdef __LITTLE_ENDIAN__
  51920. #define vld1q_f64(__p0) __extension__ ({ \
  51921. float64x2_t __ret; \
  51922. __ret = (float64x2_t) __builtin_neon_vld1q_v(__p0, 42); \
  51923. __ret; \
  51924. })
  51925. #else
  51926. #define vld1q_f64(__p0) __extension__ ({ \
  51927. float64x2_t __ret; \
  51928. __ret = (float64x2_t) __builtin_neon_vld1q_v(__p0, 42); \
  51929. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  51930. __ret; \
  51931. })
  51932. #endif
  51933. #ifdef __LITTLE_ENDIAN__
  51934. #define vld1_f64(__p0) __extension__ ({ \
  51935. float64x1_t __ret; \
  51936. __ret = (float64x1_t) __builtin_neon_vld1_v(__p0, 10); \
  51937. __ret; \
  51938. })
  51939. #else
  51940. #define vld1_f64(__p0) __extension__ ({ \
  51941. float64x1_t __ret; \
  51942. __ret = (float64x1_t) __builtin_neon_vld1_v(__p0, 10); \
  51943. __ret; \
  51944. })
  51945. #endif
  51946. #ifdef __LITTLE_ENDIAN__
  51947. #define vld1_dup_p64(__p0) __extension__ ({ \
  51948. poly64x1_t __ret; \
  51949. __ret = (poly64x1_t) __builtin_neon_vld1_dup_v(__p0, 6); \
  51950. __ret; \
  51951. })
  51952. #else
  51953. #define vld1_dup_p64(__p0) __extension__ ({ \
  51954. poly64x1_t __ret; \
  51955. __ret = (poly64x1_t) __builtin_neon_vld1_dup_v(__p0, 6); \
  51956. __ret; \
  51957. })
  51958. #endif
  51959. #ifdef __LITTLE_ENDIAN__
  51960. #define vld1q_dup_p64(__p0) __extension__ ({ \
  51961. poly64x2_t __ret; \
  51962. __ret = (poly64x2_t) __builtin_neon_vld1q_dup_v(__p0, 38); \
  51963. __ret; \
  51964. })
  51965. #else
  51966. #define vld1q_dup_p64(__p0) __extension__ ({ \
  51967. poly64x2_t __ret; \
  51968. __ret = (poly64x2_t) __builtin_neon_vld1q_dup_v(__p0, 38); \
  51969. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  51970. __ret; \
  51971. })
  51972. #endif
  51973. #ifdef __LITTLE_ENDIAN__
  51974. #define vld1q_dup_f64(__p0) __extension__ ({ \
  51975. float64x2_t __ret; \
  51976. __ret = (float64x2_t) __builtin_neon_vld1q_dup_v(__p0, 42); \
  51977. __ret; \
  51978. })
  51979. #else
  51980. #define vld1q_dup_f64(__p0) __extension__ ({ \
  51981. float64x2_t __ret; \
  51982. __ret = (float64x2_t) __builtin_neon_vld1q_dup_v(__p0, 42); \
  51983. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  51984. __ret; \
  51985. })
  51986. #endif
  51987. #ifdef __LITTLE_ENDIAN__
  51988. #define vld1_dup_f64(__p0) __extension__ ({ \
  51989. float64x1_t __ret; \
  51990. __ret = (float64x1_t) __builtin_neon_vld1_dup_v(__p0, 10); \
  51991. __ret; \
  51992. })
  51993. #else
  51994. #define vld1_dup_f64(__p0) __extension__ ({ \
  51995. float64x1_t __ret; \
  51996. __ret = (float64x1_t) __builtin_neon_vld1_dup_v(__p0, 10); \
  51997. __ret; \
  51998. })
  51999. #endif
  52000. #ifdef __LITTLE_ENDIAN__
  52001. #define vld1_lane_p64(__p0, __p1, __p2) __extension__ ({ \
  52002. poly64x1_t __s1 = __p1; \
  52003. poly64x1_t __ret; \
  52004. __ret = (poly64x1_t) __builtin_neon_vld1_lane_v(__p0, (int8x8_t)__s1, __p2, 6); \
  52005. __ret; \
  52006. })
  52007. #else
  52008. #define vld1_lane_p64(__p0, __p1, __p2) __extension__ ({ \
  52009. poly64x1_t __s1 = __p1; \
  52010. poly64x1_t __ret; \
  52011. __ret = (poly64x1_t) __builtin_neon_vld1_lane_v(__p0, (int8x8_t)__s1, __p2, 6); \
  52012. __ret; \
  52013. })
  52014. #endif
  52015. #ifdef __LITTLE_ENDIAN__
  52016. #define vld1q_lane_p64(__p0, __p1, __p2) __extension__ ({ \
  52017. poly64x2_t __s1 = __p1; \
  52018. poly64x2_t __ret; \
  52019. __ret = (poly64x2_t) __builtin_neon_vld1q_lane_v(__p0, (int8x16_t)__s1, __p2, 38); \
  52020. __ret; \
  52021. })
  52022. #else
  52023. #define vld1q_lane_p64(__p0, __p1, __p2) __extension__ ({ \
  52024. poly64x2_t __s1 = __p1; \
  52025. poly64x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  52026. poly64x2_t __ret; \
  52027. __ret = (poly64x2_t) __builtin_neon_vld1q_lane_v(__p0, (int8x16_t)__rev1, __p2, 38); \
  52028. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  52029. __ret; \
  52030. })
  52031. #endif
  52032. #ifdef __LITTLE_ENDIAN__
  52033. #define vld1q_lane_f64(__p0, __p1, __p2) __extension__ ({ \
  52034. float64x2_t __s1 = __p1; \
  52035. float64x2_t __ret; \
  52036. __ret = (float64x2_t) __builtin_neon_vld1q_lane_v(__p0, (int8x16_t)__s1, __p2, 42); \
  52037. __ret; \
  52038. })
  52039. #else
  52040. #define vld1q_lane_f64(__p0, __p1, __p2) __extension__ ({ \
  52041. float64x2_t __s1 = __p1; \
  52042. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  52043. float64x2_t __ret; \
  52044. __ret = (float64x2_t) __builtin_neon_vld1q_lane_v(__p0, (int8x16_t)__rev1, __p2, 42); \
  52045. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  52046. __ret; \
  52047. })
  52048. #endif
  52049. #ifdef __LITTLE_ENDIAN__
  52050. #define vld1_lane_f64(__p0, __p1, __p2) __extension__ ({ \
  52051. float64x1_t __s1 = __p1; \
  52052. float64x1_t __ret; \
  52053. __ret = (float64x1_t) __builtin_neon_vld1_lane_v(__p0, (int8x8_t)__s1, __p2, 10); \
  52054. __ret; \
  52055. })
  52056. #else
  52057. #define vld1_lane_f64(__p0, __p1, __p2) __extension__ ({ \
  52058. float64x1_t __s1 = __p1; \
  52059. float64x1_t __ret; \
  52060. __ret = (float64x1_t) __builtin_neon_vld1_lane_v(__p0, (int8x8_t)__s1, __p2, 10); \
  52061. __ret; \
  52062. })
  52063. #endif
  52064. #ifdef __LITTLE_ENDIAN__
  52065. #define vld1_p64_x2(__p0) __extension__ ({ \
  52066. poly64x1x2_t __ret; \
  52067. __builtin_neon_vld1_x2_v(&__ret, __p0, 6); \
  52068. __ret; \
  52069. })
  52070. #else
  52071. #define vld1_p64_x2(__p0) __extension__ ({ \
  52072. poly64x1x2_t __ret; \
  52073. __builtin_neon_vld1_x2_v(&__ret, __p0, 6); \
  52074. __ret; \
  52075. })
  52076. #endif
  52077. #ifdef __LITTLE_ENDIAN__
  52078. #define vld1q_p64_x2(__p0) __extension__ ({ \
  52079. poly64x2x2_t __ret; \
  52080. __builtin_neon_vld1q_x2_v(&__ret, __p0, 38); \
  52081. __ret; \
  52082. })
  52083. #else
  52084. #define vld1q_p64_x2(__p0) __extension__ ({ \
  52085. poly64x2x2_t __ret; \
  52086. __builtin_neon_vld1q_x2_v(&__ret, __p0, 38); \
  52087. \
  52088. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  52089. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  52090. __ret; \
  52091. })
  52092. #endif
  52093. #ifdef __LITTLE_ENDIAN__
  52094. #define vld1q_f64_x2(__p0) __extension__ ({ \
  52095. float64x2x2_t __ret; \
  52096. __builtin_neon_vld1q_x2_v(&__ret, __p0, 42); \
  52097. __ret; \
  52098. })
  52099. #else
  52100. #define vld1q_f64_x2(__p0) __extension__ ({ \
  52101. float64x2x2_t __ret; \
  52102. __builtin_neon_vld1q_x2_v(&__ret, __p0, 42); \
  52103. \
  52104. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  52105. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  52106. __ret; \
  52107. })
  52108. #endif
  52109. #ifdef __LITTLE_ENDIAN__
  52110. #define vld1_f64_x2(__p0) __extension__ ({ \
  52111. float64x1x2_t __ret; \
  52112. __builtin_neon_vld1_x2_v(&__ret, __p0, 10); \
  52113. __ret; \
  52114. })
  52115. #else
  52116. #define vld1_f64_x2(__p0) __extension__ ({ \
  52117. float64x1x2_t __ret; \
  52118. __builtin_neon_vld1_x2_v(&__ret, __p0, 10); \
  52119. __ret; \
  52120. })
  52121. #endif
  52122. #ifdef __LITTLE_ENDIAN__
  52123. #define vld1_p64_x3(__p0) __extension__ ({ \
  52124. poly64x1x3_t __ret; \
  52125. __builtin_neon_vld1_x3_v(&__ret, __p0, 6); \
  52126. __ret; \
  52127. })
  52128. #else
  52129. #define vld1_p64_x3(__p0) __extension__ ({ \
  52130. poly64x1x3_t __ret; \
  52131. __builtin_neon_vld1_x3_v(&__ret, __p0, 6); \
  52132. __ret; \
  52133. })
  52134. #endif
  52135. #ifdef __LITTLE_ENDIAN__
  52136. #define vld1q_p64_x3(__p0) __extension__ ({ \
  52137. poly64x2x3_t __ret; \
  52138. __builtin_neon_vld1q_x3_v(&__ret, __p0, 38); \
  52139. __ret; \
  52140. })
  52141. #else
  52142. #define vld1q_p64_x3(__p0) __extension__ ({ \
  52143. poly64x2x3_t __ret; \
  52144. __builtin_neon_vld1q_x3_v(&__ret, __p0, 38); \
  52145. \
  52146. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  52147. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  52148. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  52149. __ret; \
  52150. })
  52151. #endif
  52152. #ifdef __LITTLE_ENDIAN__
  52153. #define vld1q_f64_x3(__p0) __extension__ ({ \
  52154. float64x2x3_t __ret; \
  52155. __builtin_neon_vld1q_x3_v(&__ret, __p0, 42); \
  52156. __ret; \
  52157. })
  52158. #else
  52159. #define vld1q_f64_x3(__p0) __extension__ ({ \
  52160. float64x2x3_t __ret; \
  52161. __builtin_neon_vld1q_x3_v(&__ret, __p0, 42); \
  52162. \
  52163. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  52164. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  52165. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  52166. __ret; \
  52167. })
  52168. #endif
  52169. #ifdef __LITTLE_ENDIAN__
  52170. #define vld1_f64_x3(__p0) __extension__ ({ \
  52171. float64x1x3_t __ret; \
  52172. __builtin_neon_vld1_x3_v(&__ret, __p0, 10); \
  52173. __ret; \
  52174. })
  52175. #else
  52176. #define vld1_f64_x3(__p0) __extension__ ({ \
  52177. float64x1x3_t __ret; \
  52178. __builtin_neon_vld1_x3_v(&__ret, __p0, 10); \
  52179. __ret; \
  52180. })
  52181. #endif
  52182. #ifdef __LITTLE_ENDIAN__
  52183. #define vld1_p64_x4(__p0) __extension__ ({ \
  52184. poly64x1x4_t __ret; \
  52185. __builtin_neon_vld1_x4_v(&__ret, __p0, 6); \
  52186. __ret; \
  52187. })
  52188. #else
  52189. #define vld1_p64_x4(__p0) __extension__ ({ \
  52190. poly64x1x4_t __ret; \
  52191. __builtin_neon_vld1_x4_v(&__ret, __p0, 6); \
  52192. __ret; \
  52193. })
  52194. #endif
  52195. #ifdef __LITTLE_ENDIAN__
  52196. #define vld1q_p64_x4(__p0) __extension__ ({ \
  52197. poly64x2x4_t __ret; \
  52198. __builtin_neon_vld1q_x4_v(&__ret, __p0, 38); \
  52199. __ret; \
  52200. })
  52201. #else
  52202. #define vld1q_p64_x4(__p0) __extension__ ({ \
  52203. poly64x2x4_t __ret; \
  52204. __builtin_neon_vld1q_x4_v(&__ret, __p0, 38); \
  52205. \
  52206. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  52207. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  52208. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  52209. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 1, 0); \
  52210. __ret; \
  52211. })
  52212. #endif
  52213. #ifdef __LITTLE_ENDIAN__
  52214. #define vld1q_f64_x4(__p0) __extension__ ({ \
  52215. float64x2x4_t __ret; \
  52216. __builtin_neon_vld1q_x4_v(&__ret, __p0, 42); \
  52217. __ret; \
  52218. })
  52219. #else
  52220. #define vld1q_f64_x4(__p0) __extension__ ({ \
  52221. float64x2x4_t __ret; \
  52222. __builtin_neon_vld1q_x4_v(&__ret, __p0, 42); \
  52223. \
  52224. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  52225. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  52226. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  52227. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 1, 0); \
  52228. __ret; \
  52229. })
  52230. #endif
  52231. #ifdef __LITTLE_ENDIAN__
  52232. #define vld1_f64_x4(__p0) __extension__ ({ \
  52233. float64x1x4_t __ret; \
  52234. __builtin_neon_vld1_x4_v(&__ret, __p0, 10); \
  52235. __ret; \
  52236. })
  52237. #else
  52238. #define vld1_f64_x4(__p0) __extension__ ({ \
  52239. float64x1x4_t __ret; \
  52240. __builtin_neon_vld1_x4_v(&__ret, __p0, 10); \
  52241. __ret; \
  52242. })
  52243. #endif
  52244. #ifdef __LITTLE_ENDIAN__
  52245. #define vld2_p64(__p0) __extension__ ({ \
  52246. poly64x1x2_t __ret; \
  52247. __builtin_neon_vld2_v(&__ret, __p0, 6); \
  52248. __ret; \
  52249. })
  52250. #else
  52251. #define vld2_p64(__p0) __extension__ ({ \
  52252. poly64x1x2_t __ret; \
  52253. __builtin_neon_vld2_v(&__ret, __p0, 6); \
  52254. __ret; \
  52255. })
  52256. #endif
  52257. #ifdef __LITTLE_ENDIAN__
  52258. #define vld2q_p64(__p0) __extension__ ({ \
  52259. poly64x2x2_t __ret; \
  52260. __builtin_neon_vld2q_v(&__ret, __p0, 38); \
  52261. __ret; \
  52262. })
  52263. #else
  52264. #define vld2q_p64(__p0) __extension__ ({ \
  52265. poly64x2x2_t __ret; \
  52266. __builtin_neon_vld2q_v(&__ret, __p0, 38); \
  52267. \
  52268. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  52269. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  52270. __ret; \
  52271. })
  52272. #endif
  52273. #ifdef __LITTLE_ENDIAN__
  52274. #define vld2q_u64(__p0) __extension__ ({ \
  52275. uint64x2x2_t __ret; \
  52276. __builtin_neon_vld2q_v(&__ret, __p0, 51); \
  52277. __ret; \
  52278. })
  52279. #else
  52280. #define vld2q_u64(__p0) __extension__ ({ \
  52281. uint64x2x2_t __ret; \
  52282. __builtin_neon_vld2q_v(&__ret, __p0, 51); \
  52283. \
  52284. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  52285. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  52286. __ret; \
  52287. })
  52288. #endif
  52289. #ifdef __LITTLE_ENDIAN__
  52290. #define vld2q_f64(__p0) __extension__ ({ \
  52291. float64x2x2_t __ret; \
  52292. __builtin_neon_vld2q_v(&__ret, __p0, 42); \
  52293. __ret; \
  52294. })
  52295. #else
  52296. #define vld2q_f64(__p0) __extension__ ({ \
  52297. float64x2x2_t __ret; \
  52298. __builtin_neon_vld2q_v(&__ret, __p0, 42); \
  52299. \
  52300. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  52301. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  52302. __ret; \
  52303. })
  52304. #endif
  52305. #ifdef __LITTLE_ENDIAN__
  52306. #define vld2q_s64(__p0) __extension__ ({ \
  52307. int64x2x2_t __ret; \
  52308. __builtin_neon_vld2q_v(&__ret, __p0, 35); \
  52309. __ret; \
  52310. })
  52311. #else
  52312. #define vld2q_s64(__p0) __extension__ ({ \
  52313. int64x2x2_t __ret; \
  52314. __builtin_neon_vld2q_v(&__ret, __p0, 35); \
  52315. \
  52316. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  52317. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  52318. __ret; \
  52319. })
  52320. #endif
  52321. #ifdef __LITTLE_ENDIAN__
  52322. #define vld2_f64(__p0) __extension__ ({ \
  52323. float64x1x2_t __ret; \
  52324. __builtin_neon_vld2_v(&__ret, __p0, 10); \
  52325. __ret; \
  52326. })
  52327. #else
  52328. #define vld2_f64(__p0) __extension__ ({ \
  52329. float64x1x2_t __ret; \
  52330. __builtin_neon_vld2_v(&__ret, __p0, 10); \
  52331. __ret; \
  52332. })
  52333. #endif
  52334. #ifdef __LITTLE_ENDIAN__
  52335. #define vld2_dup_p64(__p0) __extension__ ({ \
  52336. poly64x1x2_t __ret; \
  52337. __builtin_neon_vld2_dup_v(&__ret, __p0, 6); \
  52338. __ret; \
  52339. })
  52340. #else
  52341. #define vld2_dup_p64(__p0) __extension__ ({ \
  52342. poly64x1x2_t __ret; \
  52343. __builtin_neon_vld2_dup_v(&__ret, __p0, 6); \
  52344. __ret; \
  52345. })
  52346. #endif
  52347. #ifdef __LITTLE_ENDIAN__
  52348. #define vld2q_dup_p64(__p0) __extension__ ({ \
  52349. poly64x2x2_t __ret; \
  52350. __builtin_neon_vld2q_dup_v(&__ret, __p0, 38); \
  52351. __ret; \
  52352. })
  52353. #else
  52354. #define vld2q_dup_p64(__p0) __extension__ ({ \
  52355. poly64x2x2_t __ret; \
  52356. __builtin_neon_vld2q_dup_v(&__ret, __p0, 38); \
  52357. \
  52358. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  52359. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  52360. __ret; \
  52361. })
  52362. #endif
  52363. #ifdef __LITTLE_ENDIAN__
  52364. #define vld2q_dup_f64(__p0) __extension__ ({ \
  52365. float64x2x2_t __ret; \
  52366. __builtin_neon_vld2q_dup_v(&__ret, __p0, 42); \
  52367. __ret; \
  52368. })
  52369. #else
  52370. #define vld2q_dup_f64(__p0) __extension__ ({ \
  52371. float64x2x2_t __ret; \
  52372. __builtin_neon_vld2q_dup_v(&__ret, __p0, 42); \
  52373. \
  52374. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  52375. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  52376. __ret; \
  52377. })
  52378. #endif
  52379. #ifdef __LITTLE_ENDIAN__
  52380. #define vld2_dup_f64(__p0) __extension__ ({ \
  52381. float64x1x2_t __ret; \
  52382. __builtin_neon_vld2_dup_v(&__ret, __p0, 10); \
  52383. __ret; \
  52384. })
  52385. #else
  52386. #define vld2_dup_f64(__p0) __extension__ ({ \
  52387. float64x1x2_t __ret; \
  52388. __builtin_neon_vld2_dup_v(&__ret, __p0, 10); \
  52389. __ret; \
  52390. })
  52391. #endif
  52392. #ifdef __LITTLE_ENDIAN__
  52393. #define vld2_lane_p64(__p0, __p1, __p2) __extension__ ({ \
  52394. poly64x1x2_t __s1 = __p1; \
  52395. poly64x1x2_t __ret; \
  52396. __builtin_neon_vld2_lane_v(&__ret, __p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], __p2, 6); \
  52397. __ret; \
  52398. })
  52399. #else
  52400. #define vld2_lane_p64(__p0, __p1, __p2) __extension__ ({ \
  52401. poly64x1x2_t __s1 = __p1; \
  52402. poly64x1x2_t __ret; \
  52403. __builtin_neon_vld2_lane_v(&__ret, __p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], __p2, 6); \
  52404. __ret; \
  52405. })
  52406. #endif
  52407. #ifdef __LITTLE_ENDIAN__
  52408. #define vld2q_lane_p8(__p0, __p1, __p2) __extension__ ({ \
  52409. poly8x16x2_t __s1 = __p1; \
  52410. poly8x16x2_t __ret; \
  52411. __builtin_neon_vld2q_lane_v(&__ret, __p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], __p2, 36); \
  52412. __ret; \
  52413. })
  52414. #else
  52415. #define vld2q_lane_p8(__p0, __p1, __p2) __extension__ ({ \
  52416. poly8x16x2_t __s1 = __p1; \
  52417. poly8x16x2_t __rev1; \
  52418. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  52419. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  52420. poly8x16x2_t __ret; \
  52421. __builtin_neon_vld2q_lane_v(&__ret, __p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], __p2, 36); \
  52422. \
  52423. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  52424. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  52425. __ret; \
  52426. })
  52427. #endif
  52428. #ifdef __LITTLE_ENDIAN__
  52429. #define vld2q_lane_p64(__p0, __p1, __p2) __extension__ ({ \
  52430. poly64x2x2_t __s1 = __p1; \
  52431. poly64x2x2_t __ret; \
  52432. __builtin_neon_vld2q_lane_v(&__ret, __p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], __p2, 38); \
  52433. __ret; \
  52434. })
  52435. #else
  52436. #define vld2q_lane_p64(__p0, __p1, __p2) __extension__ ({ \
  52437. poly64x2x2_t __s1 = __p1; \
  52438. poly64x2x2_t __rev1; \
  52439. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  52440. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  52441. poly64x2x2_t __ret; \
  52442. __builtin_neon_vld2q_lane_v(&__ret, __p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], __p2, 38); \
  52443. \
  52444. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  52445. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  52446. __ret; \
  52447. })
  52448. #endif
  52449. #ifdef __LITTLE_ENDIAN__
  52450. #define vld2q_lane_u8(__p0, __p1, __p2) __extension__ ({ \
  52451. uint8x16x2_t __s1 = __p1; \
  52452. uint8x16x2_t __ret; \
  52453. __builtin_neon_vld2q_lane_v(&__ret, __p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], __p2, 48); \
  52454. __ret; \
  52455. })
  52456. #else
  52457. #define vld2q_lane_u8(__p0, __p1, __p2) __extension__ ({ \
  52458. uint8x16x2_t __s1 = __p1; \
  52459. uint8x16x2_t __rev1; \
  52460. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  52461. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  52462. uint8x16x2_t __ret; \
  52463. __builtin_neon_vld2q_lane_v(&__ret, __p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], __p2, 48); \
  52464. \
  52465. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  52466. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  52467. __ret; \
  52468. })
  52469. #endif
  52470. #ifdef __LITTLE_ENDIAN__
  52471. #define vld2q_lane_u64(__p0, __p1, __p2) __extension__ ({ \
  52472. uint64x2x2_t __s1 = __p1; \
  52473. uint64x2x2_t __ret; \
  52474. __builtin_neon_vld2q_lane_v(&__ret, __p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], __p2, 51); \
  52475. __ret; \
  52476. })
  52477. #else
  52478. #define vld2q_lane_u64(__p0, __p1, __p2) __extension__ ({ \
  52479. uint64x2x2_t __s1 = __p1; \
  52480. uint64x2x2_t __rev1; \
  52481. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  52482. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  52483. uint64x2x2_t __ret; \
  52484. __builtin_neon_vld2q_lane_v(&__ret, __p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], __p2, 51); \
  52485. \
  52486. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  52487. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  52488. __ret; \
  52489. })
  52490. #endif
  52491. #ifdef __LITTLE_ENDIAN__
  52492. #define vld2q_lane_s8(__p0, __p1, __p2) __extension__ ({ \
  52493. int8x16x2_t __s1 = __p1; \
  52494. int8x16x2_t __ret; \
  52495. __builtin_neon_vld2q_lane_v(&__ret, __p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], __p2, 32); \
  52496. __ret; \
  52497. })
  52498. #else
  52499. #define vld2q_lane_s8(__p0, __p1, __p2) __extension__ ({ \
  52500. int8x16x2_t __s1 = __p1; \
  52501. int8x16x2_t __rev1; \
  52502. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  52503. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  52504. int8x16x2_t __ret; \
  52505. __builtin_neon_vld2q_lane_v(&__ret, __p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], __p2, 32); \
  52506. \
  52507. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  52508. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  52509. __ret; \
  52510. })
  52511. #endif
  52512. #ifdef __LITTLE_ENDIAN__
  52513. #define vld2q_lane_f64(__p0, __p1, __p2) __extension__ ({ \
  52514. float64x2x2_t __s1 = __p1; \
  52515. float64x2x2_t __ret; \
  52516. __builtin_neon_vld2q_lane_v(&__ret, __p0, __s1.val[0], __s1.val[1], __p2, 42); \
  52517. __ret; \
  52518. })
  52519. #else
  52520. #define vld2q_lane_f64(__p0, __p1, __p2) __extension__ ({ \
  52521. float64x2x2_t __s1 = __p1; \
  52522. float64x2x2_t __rev1; \
  52523. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  52524. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  52525. float64x2x2_t __ret; \
  52526. __builtin_neon_vld2q_lane_v(&__ret, __p0, __rev1.val[0], __rev1.val[1], __p2, 42); \
  52527. \
  52528. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  52529. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  52530. __ret; \
  52531. })
  52532. #endif
  52533. #ifdef __LITTLE_ENDIAN__
  52534. #define vld2q_lane_s64(__p0, __p1, __p2) __extension__ ({ \
  52535. int64x2x2_t __s1 = __p1; \
  52536. int64x2x2_t __ret; \
  52537. __builtin_neon_vld2q_lane_v(&__ret, __p0, __s1.val[0], __s1.val[1], __p2, 35); \
  52538. __ret; \
  52539. })
  52540. #else
  52541. #define vld2q_lane_s64(__p0, __p1, __p2) __extension__ ({ \
  52542. int64x2x2_t __s1 = __p1; \
  52543. int64x2x2_t __rev1; \
  52544. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  52545. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  52546. int64x2x2_t __ret; \
  52547. __builtin_neon_vld2q_lane_v(&__ret, __p0, __rev1.val[0], __rev1.val[1], __p2, 35); \
  52548. \
  52549. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  52550. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  52551. __ret; \
  52552. })
  52553. #endif
  52554. #ifdef __LITTLE_ENDIAN__
  52555. #define vld2_lane_u64(__p0, __p1, __p2) __extension__ ({ \
  52556. uint64x1x2_t __s1 = __p1; \
  52557. uint64x1x2_t __ret; \
  52558. __builtin_neon_vld2_lane_v(&__ret, __p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], __p2, 19); \
  52559. __ret; \
  52560. })
  52561. #else
  52562. #define vld2_lane_u64(__p0, __p1, __p2) __extension__ ({ \
  52563. uint64x1x2_t __s1 = __p1; \
  52564. uint64x1x2_t __ret; \
  52565. __builtin_neon_vld2_lane_v(&__ret, __p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], __p2, 19); \
  52566. __ret; \
  52567. })
  52568. #endif
  52569. #ifdef __LITTLE_ENDIAN__
  52570. #define vld2_lane_f64(__p0, __p1, __p2) __extension__ ({ \
  52571. float64x1x2_t __s1 = __p1; \
  52572. float64x1x2_t __ret; \
  52573. __builtin_neon_vld2_lane_v(&__ret, __p0, __s1.val[0], __s1.val[1], __p2, 10); \
  52574. __ret; \
  52575. })
  52576. #else
  52577. #define vld2_lane_f64(__p0, __p1, __p2) __extension__ ({ \
  52578. float64x1x2_t __s1 = __p1; \
  52579. float64x1x2_t __ret; \
  52580. __builtin_neon_vld2_lane_v(&__ret, __p0, __s1.val[0], __s1.val[1], __p2, 10); \
  52581. __ret; \
  52582. })
  52583. #endif
  52584. #ifdef __LITTLE_ENDIAN__
  52585. #define vld2_lane_s64(__p0, __p1, __p2) __extension__ ({ \
  52586. int64x1x2_t __s1 = __p1; \
  52587. int64x1x2_t __ret; \
  52588. __builtin_neon_vld2_lane_v(&__ret, __p0, __s1.val[0], __s1.val[1], __p2, 3); \
  52589. __ret; \
  52590. })
  52591. #else
  52592. #define vld2_lane_s64(__p0, __p1, __p2) __extension__ ({ \
  52593. int64x1x2_t __s1 = __p1; \
  52594. int64x1x2_t __ret; \
  52595. __builtin_neon_vld2_lane_v(&__ret, __p0, __s1.val[0], __s1.val[1], __p2, 3); \
  52596. __ret; \
  52597. })
  52598. #endif
  52599. #ifdef __LITTLE_ENDIAN__
  52600. #define vld3_p64(__p0) __extension__ ({ \
  52601. poly64x1x3_t __ret; \
  52602. __builtin_neon_vld3_v(&__ret, __p0, 6); \
  52603. __ret; \
  52604. })
  52605. #else
  52606. #define vld3_p64(__p0) __extension__ ({ \
  52607. poly64x1x3_t __ret; \
  52608. __builtin_neon_vld3_v(&__ret, __p0, 6); \
  52609. __ret; \
  52610. })
  52611. #endif
  52612. #ifdef __LITTLE_ENDIAN__
  52613. #define vld3q_p64(__p0) __extension__ ({ \
  52614. poly64x2x3_t __ret; \
  52615. __builtin_neon_vld3q_v(&__ret, __p0, 38); \
  52616. __ret; \
  52617. })
  52618. #else
  52619. #define vld3q_p64(__p0) __extension__ ({ \
  52620. poly64x2x3_t __ret; \
  52621. __builtin_neon_vld3q_v(&__ret, __p0, 38); \
  52622. \
  52623. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  52624. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  52625. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  52626. __ret; \
  52627. })
  52628. #endif
  52629. #ifdef __LITTLE_ENDIAN__
  52630. #define vld3q_u64(__p0) __extension__ ({ \
  52631. uint64x2x3_t __ret; \
  52632. __builtin_neon_vld3q_v(&__ret, __p0, 51); \
  52633. __ret; \
  52634. })
  52635. #else
  52636. #define vld3q_u64(__p0) __extension__ ({ \
  52637. uint64x2x3_t __ret; \
  52638. __builtin_neon_vld3q_v(&__ret, __p0, 51); \
  52639. \
  52640. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  52641. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  52642. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  52643. __ret; \
  52644. })
  52645. #endif
  52646. #ifdef __LITTLE_ENDIAN__
  52647. #define vld3q_f64(__p0) __extension__ ({ \
  52648. float64x2x3_t __ret; \
  52649. __builtin_neon_vld3q_v(&__ret, __p0, 42); \
  52650. __ret; \
  52651. })
  52652. #else
  52653. #define vld3q_f64(__p0) __extension__ ({ \
  52654. float64x2x3_t __ret; \
  52655. __builtin_neon_vld3q_v(&__ret, __p0, 42); \
  52656. \
  52657. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  52658. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  52659. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  52660. __ret; \
  52661. })
  52662. #endif
  52663. #ifdef __LITTLE_ENDIAN__
  52664. #define vld3q_s64(__p0) __extension__ ({ \
  52665. int64x2x3_t __ret; \
  52666. __builtin_neon_vld3q_v(&__ret, __p0, 35); \
  52667. __ret; \
  52668. })
  52669. #else
  52670. #define vld3q_s64(__p0) __extension__ ({ \
  52671. int64x2x3_t __ret; \
  52672. __builtin_neon_vld3q_v(&__ret, __p0, 35); \
  52673. \
  52674. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  52675. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  52676. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  52677. __ret; \
  52678. })
  52679. #endif
  52680. #ifdef __LITTLE_ENDIAN__
  52681. #define vld3_f64(__p0) __extension__ ({ \
  52682. float64x1x3_t __ret; \
  52683. __builtin_neon_vld3_v(&__ret, __p0, 10); \
  52684. __ret; \
  52685. })
  52686. #else
  52687. #define vld3_f64(__p0) __extension__ ({ \
  52688. float64x1x3_t __ret; \
  52689. __builtin_neon_vld3_v(&__ret, __p0, 10); \
  52690. __ret; \
  52691. })
  52692. #endif
  52693. #ifdef __LITTLE_ENDIAN__
  52694. #define vld3_dup_p64(__p0) __extension__ ({ \
  52695. poly64x1x3_t __ret; \
  52696. __builtin_neon_vld3_dup_v(&__ret, __p0, 6); \
  52697. __ret; \
  52698. })
  52699. #else
  52700. #define vld3_dup_p64(__p0) __extension__ ({ \
  52701. poly64x1x3_t __ret; \
  52702. __builtin_neon_vld3_dup_v(&__ret, __p0, 6); \
  52703. __ret; \
  52704. })
  52705. #endif
  52706. #ifdef __LITTLE_ENDIAN__
  52707. #define vld3q_dup_p64(__p0) __extension__ ({ \
  52708. poly64x2x3_t __ret; \
  52709. __builtin_neon_vld3q_dup_v(&__ret, __p0, 38); \
  52710. __ret; \
  52711. })
  52712. #else
  52713. #define vld3q_dup_p64(__p0) __extension__ ({ \
  52714. poly64x2x3_t __ret; \
  52715. __builtin_neon_vld3q_dup_v(&__ret, __p0, 38); \
  52716. \
  52717. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  52718. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  52719. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  52720. __ret; \
  52721. })
  52722. #endif
  52723. #ifdef __LITTLE_ENDIAN__
  52724. #define vld3q_dup_f64(__p0) __extension__ ({ \
  52725. float64x2x3_t __ret; \
  52726. __builtin_neon_vld3q_dup_v(&__ret, __p0, 42); \
  52727. __ret; \
  52728. })
  52729. #else
  52730. #define vld3q_dup_f64(__p0) __extension__ ({ \
  52731. float64x2x3_t __ret; \
  52732. __builtin_neon_vld3q_dup_v(&__ret, __p0, 42); \
  52733. \
  52734. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  52735. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  52736. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  52737. __ret; \
  52738. })
  52739. #endif
  52740. #ifdef __LITTLE_ENDIAN__
  52741. #define vld3_dup_f64(__p0) __extension__ ({ \
  52742. float64x1x3_t __ret; \
  52743. __builtin_neon_vld3_dup_v(&__ret, __p0, 10); \
  52744. __ret; \
  52745. })
  52746. #else
  52747. #define vld3_dup_f64(__p0) __extension__ ({ \
  52748. float64x1x3_t __ret; \
  52749. __builtin_neon_vld3_dup_v(&__ret, __p0, 10); \
  52750. __ret; \
  52751. })
  52752. #endif
  52753. #ifdef __LITTLE_ENDIAN__
  52754. #define vld3_lane_p64(__p0, __p1, __p2) __extension__ ({ \
  52755. poly64x1x3_t __s1 = __p1; \
  52756. poly64x1x3_t __ret; \
  52757. __builtin_neon_vld3_lane_v(&__ret, __p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], __p2, 6); \
  52758. __ret; \
  52759. })
  52760. #else
  52761. #define vld3_lane_p64(__p0, __p1, __p2) __extension__ ({ \
  52762. poly64x1x3_t __s1 = __p1; \
  52763. poly64x1x3_t __ret; \
  52764. __builtin_neon_vld3_lane_v(&__ret, __p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], __p2, 6); \
  52765. __ret; \
  52766. })
  52767. #endif
  52768. #ifdef __LITTLE_ENDIAN__
  52769. #define vld3q_lane_p8(__p0, __p1, __p2) __extension__ ({ \
  52770. poly8x16x3_t __s1 = __p1; \
  52771. poly8x16x3_t __ret; \
  52772. __builtin_neon_vld3q_lane_v(&__ret, __p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], __p2, 36); \
  52773. __ret; \
  52774. })
  52775. #else
  52776. #define vld3q_lane_p8(__p0, __p1, __p2) __extension__ ({ \
  52777. poly8x16x3_t __s1 = __p1; \
  52778. poly8x16x3_t __rev1; \
  52779. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  52780. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  52781. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  52782. poly8x16x3_t __ret; \
  52783. __builtin_neon_vld3q_lane_v(&__ret, __p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], __p2, 36); \
  52784. \
  52785. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  52786. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  52787. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  52788. __ret; \
  52789. })
  52790. #endif
  52791. #ifdef __LITTLE_ENDIAN__
  52792. #define vld3q_lane_p64(__p0, __p1, __p2) __extension__ ({ \
  52793. poly64x2x3_t __s1 = __p1; \
  52794. poly64x2x3_t __ret; \
  52795. __builtin_neon_vld3q_lane_v(&__ret, __p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], __p2, 38); \
  52796. __ret; \
  52797. })
  52798. #else
  52799. #define vld3q_lane_p64(__p0, __p1, __p2) __extension__ ({ \
  52800. poly64x2x3_t __s1 = __p1; \
  52801. poly64x2x3_t __rev1; \
  52802. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  52803. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  52804. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  52805. poly64x2x3_t __ret; \
  52806. __builtin_neon_vld3q_lane_v(&__ret, __p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], __p2, 38); \
  52807. \
  52808. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  52809. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  52810. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  52811. __ret; \
  52812. })
  52813. #endif
  52814. #ifdef __LITTLE_ENDIAN__
  52815. #define vld3q_lane_u8(__p0, __p1, __p2) __extension__ ({ \
  52816. uint8x16x3_t __s1 = __p1; \
  52817. uint8x16x3_t __ret; \
  52818. __builtin_neon_vld3q_lane_v(&__ret, __p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], __p2, 48); \
  52819. __ret; \
  52820. })
  52821. #else
  52822. #define vld3q_lane_u8(__p0, __p1, __p2) __extension__ ({ \
  52823. uint8x16x3_t __s1 = __p1; \
  52824. uint8x16x3_t __rev1; \
  52825. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  52826. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  52827. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  52828. uint8x16x3_t __ret; \
  52829. __builtin_neon_vld3q_lane_v(&__ret, __p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], __p2, 48); \
  52830. \
  52831. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  52832. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  52833. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  52834. __ret; \
  52835. })
  52836. #endif
  52837. #ifdef __LITTLE_ENDIAN__
  52838. #define vld3q_lane_u64(__p0, __p1, __p2) __extension__ ({ \
  52839. uint64x2x3_t __s1 = __p1; \
  52840. uint64x2x3_t __ret; \
  52841. __builtin_neon_vld3q_lane_v(&__ret, __p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], __p2, 51); \
  52842. __ret; \
  52843. })
  52844. #else
  52845. #define vld3q_lane_u64(__p0, __p1, __p2) __extension__ ({ \
  52846. uint64x2x3_t __s1 = __p1; \
  52847. uint64x2x3_t __rev1; \
  52848. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  52849. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  52850. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  52851. uint64x2x3_t __ret; \
  52852. __builtin_neon_vld3q_lane_v(&__ret, __p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], __p2, 51); \
  52853. \
  52854. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  52855. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  52856. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  52857. __ret; \
  52858. })
  52859. #endif
  52860. #ifdef __LITTLE_ENDIAN__
  52861. #define vld3q_lane_s8(__p0, __p1, __p2) __extension__ ({ \
  52862. int8x16x3_t __s1 = __p1; \
  52863. int8x16x3_t __ret; \
  52864. __builtin_neon_vld3q_lane_v(&__ret, __p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], __p2, 32); \
  52865. __ret; \
  52866. })
  52867. #else
  52868. #define vld3q_lane_s8(__p0, __p1, __p2) __extension__ ({ \
  52869. int8x16x3_t __s1 = __p1; \
  52870. int8x16x3_t __rev1; \
  52871. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  52872. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  52873. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  52874. int8x16x3_t __ret; \
  52875. __builtin_neon_vld3q_lane_v(&__ret, __p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], __p2, 32); \
  52876. \
  52877. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  52878. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  52879. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  52880. __ret; \
  52881. })
  52882. #endif
  52883. #ifdef __LITTLE_ENDIAN__
  52884. #define vld3q_lane_f64(__p0, __p1, __p2) __extension__ ({ \
  52885. float64x2x3_t __s1 = __p1; \
  52886. float64x2x3_t __ret; \
  52887. __builtin_neon_vld3q_lane_v(&__ret, __p0, __s1.val[0], __s1.val[1], __s1.val[2], __p2, 42); \
  52888. __ret; \
  52889. })
  52890. #else
  52891. #define vld3q_lane_f64(__p0, __p1, __p2) __extension__ ({ \
  52892. float64x2x3_t __s1 = __p1; \
  52893. float64x2x3_t __rev1; \
  52894. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  52895. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  52896. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  52897. float64x2x3_t __ret; \
  52898. __builtin_neon_vld3q_lane_v(&__ret, __p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __p2, 42); \
  52899. \
  52900. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  52901. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  52902. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  52903. __ret; \
  52904. })
  52905. #endif
  52906. #ifdef __LITTLE_ENDIAN__
  52907. #define vld3q_lane_s64(__p0, __p1, __p2) __extension__ ({ \
  52908. int64x2x3_t __s1 = __p1; \
  52909. int64x2x3_t __ret; \
  52910. __builtin_neon_vld3q_lane_v(&__ret, __p0, __s1.val[0], __s1.val[1], __s1.val[2], __p2, 35); \
  52911. __ret; \
  52912. })
  52913. #else
  52914. #define vld3q_lane_s64(__p0, __p1, __p2) __extension__ ({ \
  52915. int64x2x3_t __s1 = __p1; \
  52916. int64x2x3_t __rev1; \
  52917. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  52918. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  52919. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  52920. int64x2x3_t __ret; \
  52921. __builtin_neon_vld3q_lane_v(&__ret, __p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __p2, 35); \
  52922. \
  52923. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  52924. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  52925. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  52926. __ret; \
  52927. })
  52928. #endif
  52929. #ifdef __LITTLE_ENDIAN__
  52930. #define vld3_lane_u64(__p0, __p1, __p2) __extension__ ({ \
  52931. uint64x1x3_t __s1 = __p1; \
  52932. uint64x1x3_t __ret; \
  52933. __builtin_neon_vld3_lane_v(&__ret, __p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], __p2, 19); \
  52934. __ret; \
  52935. })
  52936. #else
  52937. #define vld3_lane_u64(__p0, __p1, __p2) __extension__ ({ \
  52938. uint64x1x3_t __s1 = __p1; \
  52939. uint64x1x3_t __ret; \
  52940. __builtin_neon_vld3_lane_v(&__ret, __p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], __p2, 19); \
  52941. __ret; \
  52942. })
  52943. #endif
  52944. #ifdef __LITTLE_ENDIAN__
  52945. #define vld3_lane_f64(__p0, __p1, __p2) __extension__ ({ \
  52946. float64x1x3_t __s1 = __p1; \
  52947. float64x1x3_t __ret; \
  52948. __builtin_neon_vld3_lane_v(&__ret, __p0, __s1.val[0], __s1.val[1], __s1.val[2], __p2, 10); \
  52949. __ret; \
  52950. })
  52951. #else
  52952. #define vld3_lane_f64(__p0, __p1, __p2) __extension__ ({ \
  52953. float64x1x3_t __s1 = __p1; \
  52954. float64x1x3_t __ret; \
  52955. __builtin_neon_vld3_lane_v(&__ret, __p0, __s1.val[0], __s1.val[1], __s1.val[2], __p2, 10); \
  52956. __ret; \
  52957. })
  52958. #endif
  52959. #ifdef __LITTLE_ENDIAN__
  52960. #define vld3_lane_s64(__p0, __p1, __p2) __extension__ ({ \
  52961. int64x1x3_t __s1 = __p1; \
  52962. int64x1x3_t __ret; \
  52963. __builtin_neon_vld3_lane_v(&__ret, __p0, __s1.val[0], __s1.val[1], __s1.val[2], __p2, 3); \
  52964. __ret; \
  52965. })
  52966. #else
  52967. #define vld3_lane_s64(__p0, __p1, __p2) __extension__ ({ \
  52968. int64x1x3_t __s1 = __p1; \
  52969. int64x1x3_t __ret; \
  52970. __builtin_neon_vld3_lane_v(&__ret, __p0, __s1.val[0], __s1.val[1], __s1.val[2], __p2, 3); \
  52971. __ret; \
  52972. })
  52973. #endif
  52974. #ifdef __LITTLE_ENDIAN__
  52975. #define vld4_p64(__p0) __extension__ ({ \
  52976. poly64x1x4_t __ret; \
  52977. __builtin_neon_vld4_v(&__ret, __p0, 6); \
  52978. __ret; \
  52979. })
  52980. #else
  52981. #define vld4_p64(__p0) __extension__ ({ \
  52982. poly64x1x4_t __ret; \
  52983. __builtin_neon_vld4_v(&__ret, __p0, 6); \
  52984. __ret; \
  52985. })
  52986. #endif
  52987. #ifdef __LITTLE_ENDIAN__
  52988. #define vld4q_p64(__p0) __extension__ ({ \
  52989. poly64x2x4_t __ret; \
  52990. __builtin_neon_vld4q_v(&__ret, __p0, 38); \
  52991. __ret; \
  52992. })
  52993. #else
  52994. #define vld4q_p64(__p0) __extension__ ({ \
  52995. poly64x2x4_t __ret; \
  52996. __builtin_neon_vld4q_v(&__ret, __p0, 38); \
  52997. \
  52998. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  52999. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  53000. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  53001. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 1, 0); \
  53002. __ret; \
  53003. })
  53004. #endif
  53005. #ifdef __LITTLE_ENDIAN__
  53006. #define vld4q_u64(__p0) __extension__ ({ \
  53007. uint64x2x4_t __ret; \
  53008. __builtin_neon_vld4q_v(&__ret, __p0, 51); \
  53009. __ret; \
  53010. })
  53011. #else
  53012. #define vld4q_u64(__p0) __extension__ ({ \
  53013. uint64x2x4_t __ret; \
  53014. __builtin_neon_vld4q_v(&__ret, __p0, 51); \
  53015. \
  53016. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  53017. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  53018. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  53019. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 1, 0); \
  53020. __ret; \
  53021. })
  53022. #endif
  53023. #ifdef __LITTLE_ENDIAN__
  53024. #define vld4q_f64(__p0) __extension__ ({ \
  53025. float64x2x4_t __ret; \
  53026. __builtin_neon_vld4q_v(&__ret, __p0, 42); \
  53027. __ret; \
  53028. })
  53029. #else
  53030. #define vld4q_f64(__p0) __extension__ ({ \
  53031. float64x2x4_t __ret; \
  53032. __builtin_neon_vld4q_v(&__ret, __p0, 42); \
  53033. \
  53034. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  53035. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  53036. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  53037. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 1, 0); \
  53038. __ret; \
  53039. })
  53040. #endif
  53041. #ifdef __LITTLE_ENDIAN__
  53042. #define vld4q_s64(__p0) __extension__ ({ \
  53043. int64x2x4_t __ret; \
  53044. __builtin_neon_vld4q_v(&__ret, __p0, 35); \
  53045. __ret; \
  53046. })
  53047. #else
  53048. #define vld4q_s64(__p0) __extension__ ({ \
  53049. int64x2x4_t __ret; \
  53050. __builtin_neon_vld4q_v(&__ret, __p0, 35); \
  53051. \
  53052. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  53053. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  53054. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  53055. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 1, 0); \
  53056. __ret; \
  53057. })
  53058. #endif
  53059. #ifdef __LITTLE_ENDIAN__
  53060. #define vld4_f64(__p0) __extension__ ({ \
  53061. float64x1x4_t __ret; \
  53062. __builtin_neon_vld4_v(&__ret, __p0, 10); \
  53063. __ret; \
  53064. })
  53065. #else
  53066. #define vld4_f64(__p0) __extension__ ({ \
  53067. float64x1x4_t __ret; \
  53068. __builtin_neon_vld4_v(&__ret, __p0, 10); \
  53069. __ret; \
  53070. })
  53071. #endif
  53072. #ifdef __LITTLE_ENDIAN__
  53073. #define vld4_dup_p64(__p0) __extension__ ({ \
  53074. poly64x1x4_t __ret; \
  53075. __builtin_neon_vld4_dup_v(&__ret, __p0, 6); \
  53076. __ret; \
  53077. })
  53078. #else
  53079. #define vld4_dup_p64(__p0) __extension__ ({ \
  53080. poly64x1x4_t __ret; \
  53081. __builtin_neon_vld4_dup_v(&__ret, __p0, 6); \
  53082. __ret; \
  53083. })
  53084. #endif
  53085. #ifdef __LITTLE_ENDIAN__
  53086. #define vld4q_dup_p64(__p0) __extension__ ({ \
  53087. poly64x2x4_t __ret; \
  53088. __builtin_neon_vld4q_dup_v(&__ret, __p0, 38); \
  53089. __ret; \
  53090. })
  53091. #else
  53092. #define vld4q_dup_p64(__p0) __extension__ ({ \
  53093. poly64x2x4_t __ret; \
  53094. __builtin_neon_vld4q_dup_v(&__ret, __p0, 38); \
  53095. \
  53096. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  53097. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  53098. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  53099. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 1, 0); \
  53100. __ret; \
  53101. })
  53102. #endif
  53103. #ifdef __LITTLE_ENDIAN__
  53104. #define vld4q_dup_f64(__p0) __extension__ ({ \
  53105. float64x2x4_t __ret; \
  53106. __builtin_neon_vld4q_dup_v(&__ret, __p0, 42); \
  53107. __ret; \
  53108. })
  53109. #else
  53110. #define vld4q_dup_f64(__p0) __extension__ ({ \
  53111. float64x2x4_t __ret; \
  53112. __builtin_neon_vld4q_dup_v(&__ret, __p0, 42); \
  53113. \
  53114. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  53115. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  53116. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  53117. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 1, 0); \
  53118. __ret; \
  53119. })
  53120. #endif
  53121. #ifdef __LITTLE_ENDIAN__
  53122. #define vld4_dup_f64(__p0) __extension__ ({ \
  53123. float64x1x4_t __ret; \
  53124. __builtin_neon_vld4_dup_v(&__ret, __p0, 10); \
  53125. __ret; \
  53126. })
  53127. #else
  53128. #define vld4_dup_f64(__p0) __extension__ ({ \
  53129. float64x1x4_t __ret; \
  53130. __builtin_neon_vld4_dup_v(&__ret, __p0, 10); \
  53131. __ret; \
  53132. })
  53133. #endif
  53134. #ifdef __LITTLE_ENDIAN__
  53135. #define vld4_lane_p64(__p0, __p1, __p2) __extension__ ({ \
  53136. poly64x1x4_t __s1 = __p1; \
  53137. poly64x1x4_t __ret; \
  53138. __builtin_neon_vld4_lane_v(&__ret, __p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], (int8x8_t)__s1.val[3], __p2, 6); \
  53139. __ret; \
  53140. })
  53141. #else
  53142. #define vld4_lane_p64(__p0, __p1, __p2) __extension__ ({ \
  53143. poly64x1x4_t __s1 = __p1; \
  53144. poly64x1x4_t __ret; \
  53145. __builtin_neon_vld4_lane_v(&__ret, __p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], (int8x8_t)__s1.val[3], __p2, 6); \
  53146. __ret; \
  53147. })
  53148. #endif
  53149. #ifdef __LITTLE_ENDIAN__
  53150. #define vld4q_lane_p8(__p0, __p1, __p2) __extension__ ({ \
  53151. poly8x16x4_t __s1 = __p1; \
  53152. poly8x16x4_t __ret; \
  53153. __builtin_neon_vld4q_lane_v(&__ret, __p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], (int8x16_t)__s1.val[3], __p2, 36); \
  53154. __ret; \
  53155. })
  53156. #else
  53157. #define vld4q_lane_p8(__p0, __p1, __p2) __extension__ ({ \
  53158. poly8x16x4_t __s1 = __p1; \
  53159. poly8x16x4_t __rev1; \
  53160. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  53161. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  53162. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  53163. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  53164. poly8x16x4_t __ret; \
  53165. __builtin_neon_vld4q_lane_v(&__ret, __p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], (int8x16_t)__rev1.val[3], __p2, 36); \
  53166. \
  53167. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  53168. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  53169. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  53170. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  53171. __ret; \
  53172. })
  53173. #endif
  53174. #ifdef __LITTLE_ENDIAN__
  53175. #define vld4q_lane_p64(__p0, __p1, __p2) __extension__ ({ \
  53176. poly64x2x4_t __s1 = __p1; \
  53177. poly64x2x4_t __ret; \
  53178. __builtin_neon_vld4q_lane_v(&__ret, __p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], (int8x16_t)__s1.val[3], __p2, 38); \
  53179. __ret; \
  53180. })
  53181. #else
  53182. #define vld4q_lane_p64(__p0, __p1, __p2) __extension__ ({ \
  53183. poly64x2x4_t __s1 = __p1; \
  53184. poly64x2x4_t __rev1; \
  53185. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  53186. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  53187. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  53188. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 1, 0); \
  53189. poly64x2x4_t __ret; \
  53190. __builtin_neon_vld4q_lane_v(&__ret, __p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], (int8x16_t)__rev1.val[3], __p2, 38); \
  53191. \
  53192. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  53193. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  53194. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  53195. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 1, 0); \
  53196. __ret; \
  53197. })
  53198. #endif
  53199. #ifdef __LITTLE_ENDIAN__
  53200. #define vld4q_lane_u8(__p0, __p1, __p2) __extension__ ({ \
  53201. uint8x16x4_t __s1 = __p1; \
  53202. uint8x16x4_t __ret; \
  53203. __builtin_neon_vld4q_lane_v(&__ret, __p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], (int8x16_t)__s1.val[3], __p2, 48); \
  53204. __ret; \
  53205. })
  53206. #else
  53207. #define vld4q_lane_u8(__p0, __p1, __p2) __extension__ ({ \
  53208. uint8x16x4_t __s1 = __p1; \
  53209. uint8x16x4_t __rev1; \
  53210. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  53211. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  53212. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  53213. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  53214. uint8x16x4_t __ret; \
  53215. __builtin_neon_vld4q_lane_v(&__ret, __p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], (int8x16_t)__rev1.val[3], __p2, 48); \
  53216. \
  53217. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  53218. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  53219. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  53220. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  53221. __ret; \
  53222. })
  53223. #endif
  53224. #ifdef __LITTLE_ENDIAN__
  53225. #define vld4q_lane_u64(__p0, __p1, __p2) __extension__ ({ \
  53226. uint64x2x4_t __s1 = __p1; \
  53227. uint64x2x4_t __ret; \
  53228. __builtin_neon_vld4q_lane_v(&__ret, __p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], (int8x16_t)__s1.val[3], __p2, 51); \
  53229. __ret; \
  53230. })
  53231. #else
  53232. #define vld4q_lane_u64(__p0, __p1, __p2) __extension__ ({ \
  53233. uint64x2x4_t __s1 = __p1; \
  53234. uint64x2x4_t __rev1; \
  53235. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  53236. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  53237. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  53238. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 1, 0); \
  53239. uint64x2x4_t __ret; \
  53240. __builtin_neon_vld4q_lane_v(&__ret, __p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], (int8x16_t)__rev1.val[3], __p2, 51); \
  53241. \
  53242. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  53243. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  53244. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  53245. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 1, 0); \
  53246. __ret; \
  53247. })
  53248. #endif
  53249. #ifdef __LITTLE_ENDIAN__
  53250. #define vld4q_lane_s8(__p0, __p1, __p2) __extension__ ({ \
  53251. int8x16x4_t __s1 = __p1; \
  53252. int8x16x4_t __ret; \
  53253. __builtin_neon_vld4q_lane_v(&__ret, __p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], (int8x16_t)__s1.val[3], __p2, 32); \
  53254. __ret; \
  53255. })
  53256. #else
  53257. #define vld4q_lane_s8(__p0, __p1, __p2) __extension__ ({ \
  53258. int8x16x4_t __s1 = __p1; \
  53259. int8x16x4_t __rev1; \
  53260. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  53261. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  53262. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  53263. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  53264. int8x16x4_t __ret; \
  53265. __builtin_neon_vld4q_lane_v(&__ret, __p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], (int8x16_t)__rev1.val[3], __p2, 32); \
  53266. \
  53267. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  53268. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  53269. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  53270. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  53271. __ret; \
  53272. })
  53273. #endif
  53274. #ifdef __LITTLE_ENDIAN__
  53275. #define vld4q_lane_f64(__p0, __p1, __p2) __extension__ ({ \
  53276. float64x2x4_t __s1 = __p1; \
  53277. float64x2x4_t __ret; \
  53278. __builtin_neon_vld4q_lane_v(&__ret, __p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], __p2, 42); \
  53279. __ret; \
  53280. })
  53281. #else
  53282. #define vld4q_lane_f64(__p0, __p1, __p2) __extension__ ({ \
  53283. float64x2x4_t __s1 = __p1; \
  53284. float64x2x4_t __rev1; \
  53285. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  53286. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  53287. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  53288. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 1, 0); \
  53289. float64x2x4_t __ret; \
  53290. __builtin_neon_vld4q_lane_v(&__ret, __p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __rev1.val[3], __p2, 42); \
  53291. \
  53292. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  53293. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  53294. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  53295. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 1, 0); \
  53296. __ret; \
  53297. })
  53298. #endif
  53299. #ifdef __LITTLE_ENDIAN__
  53300. #define vld4q_lane_s64(__p0, __p1, __p2) __extension__ ({ \
  53301. int64x2x4_t __s1 = __p1; \
  53302. int64x2x4_t __ret; \
  53303. __builtin_neon_vld4q_lane_v(&__ret, __p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], __p2, 35); \
  53304. __ret; \
  53305. })
  53306. #else
  53307. #define vld4q_lane_s64(__p0, __p1, __p2) __extension__ ({ \
  53308. int64x2x4_t __s1 = __p1; \
  53309. int64x2x4_t __rev1; \
  53310. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  53311. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  53312. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  53313. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 1, 0); \
  53314. int64x2x4_t __ret; \
  53315. __builtin_neon_vld4q_lane_v(&__ret, __p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __rev1.val[3], __p2, 35); \
  53316. \
  53317. __ret.val[0] = __builtin_shufflevector(__ret.val[0], __ret.val[0], 1, 0); \
  53318. __ret.val[1] = __builtin_shufflevector(__ret.val[1], __ret.val[1], 1, 0); \
  53319. __ret.val[2] = __builtin_shufflevector(__ret.val[2], __ret.val[2], 1, 0); \
  53320. __ret.val[3] = __builtin_shufflevector(__ret.val[3], __ret.val[3], 1, 0); \
  53321. __ret; \
  53322. })
  53323. #endif
  53324. #ifdef __LITTLE_ENDIAN__
  53325. #define vld4_lane_u64(__p0, __p1, __p2) __extension__ ({ \
  53326. uint64x1x4_t __s1 = __p1; \
  53327. uint64x1x4_t __ret; \
  53328. __builtin_neon_vld4_lane_v(&__ret, __p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], (int8x8_t)__s1.val[3], __p2, 19); \
  53329. __ret; \
  53330. })
  53331. #else
  53332. #define vld4_lane_u64(__p0, __p1, __p2) __extension__ ({ \
  53333. uint64x1x4_t __s1 = __p1; \
  53334. uint64x1x4_t __ret; \
  53335. __builtin_neon_vld4_lane_v(&__ret, __p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], (int8x8_t)__s1.val[3], __p2, 19); \
  53336. __ret; \
  53337. })
  53338. #endif
  53339. #ifdef __LITTLE_ENDIAN__
  53340. #define vld4_lane_f64(__p0, __p1, __p2) __extension__ ({ \
  53341. float64x1x4_t __s1 = __p1; \
  53342. float64x1x4_t __ret; \
  53343. __builtin_neon_vld4_lane_v(&__ret, __p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], __p2, 10); \
  53344. __ret; \
  53345. })
  53346. #else
  53347. #define vld4_lane_f64(__p0, __p1, __p2) __extension__ ({ \
  53348. float64x1x4_t __s1 = __p1; \
  53349. float64x1x4_t __ret; \
  53350. __builtin_neon_vld4_lane_v(&__ret, __p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], __p2, 10); \
  53351. __ret; \
  53352. })
  53353. #endif
  53354. #ifdef __LITTLE_ENDIAN__
  53355. #define vld4_lane_s64(__p0, __p1, __p2) __extension__ ({ \
  53356. int64x1x4_t __s1 = __p1; \
  53357. int64x1x4_t __ret; \
  53358. __builtin_neon_vld4_lane_v(&__ret, __p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], __p2, 3); \
  53359. __ret; \
  53360. })
  53361. #else
  53362. #define vld4_lane_s64(__p0, __p1, __p2) __extension__ ({ \
  53363. int64x1x4_t __s1 = __p1; \
  53364. int64x1x4_t __ret; \
  53365. __builtin_neon_vld4_lane_v(&__ret, __p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], __p2, 3); \
  53366. __ret; \
  53367. })
  53368. #endif
  53369. #ifdef __LITTLE_ENDIAN__
  53370. #define vldrq_p128(__p0) __extension__ ({ \
  53371. poly128_t __ret; \
  53372. __ret = (poly128_t) __builtin_neon_vldrq_p128(__p0); \
  53373. __ret; \
  53374. })
  53375. #else
  53376. #define vldrq_p128(__p0) __extension__ ({ \
  53377. poly128_t __ret; \
  53378. __ret = (poly128_t) __builtin_neon_vldrq_p128(__p0); \
  53379. __ret; \
  53380. })
  53381. #endif
  53382. #ifdef __LITTLE_ENDIAN__
  53383. __ai float64x2_t vmaxq_f64(float64x2_t __p0, float64x2_t __p1) {
  53384. float64x2_t __ret;
  53385. __ret = (float64x2_t) __builtin_neon_vmaxq_v((int8x16_t)__p0, (int8x16_t)__p1, 42);
  53386. return __ret;
  53387. }
  53388. #else
  53389. __ai float64x2_t vmaxq_f64(float64x2_t __p0, float64x2_t __p1) {
  53390. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  53391. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  53392. float64x2_t __ret;
  53393. __ret = (float64x2_t) __builtin_neon_vmaxq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 42);
  53394. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  53395. return __ret;
  53396. }
  53397. #endif
  53398. #ifdef __LITTLE_ENDIAN__
  53399. __ai float64x1_t vmax_f64(float64x1_t __p0, float64x1_t __p1) {
  53400. float64x1_t __ret;
  53401. __ret = (float64x1_t) __builtin_neon_vmax_v((int8x8_t)__p0, (int8x8_t)__p1, 10);
  53402. return __ret;
  53403. }
  53404. #else
  53405. __ai float64x1_t vmax_f64(float64x1_t __p0, float64x1_t __p1) {
  53406. float64x1_t __ret;
  53407. __ret = (float64x1_t) __builtin_neon_vmax_v((int8x8_t)__p0, (int8x8_t)__p1, 10);
  53408. return __ret;
  53409. }
  53410. #endif
  53411. #ifdef __LITTLE_ENDIAN__
  53412. __ai float64_t vmaxnmvq_f64(float64x2_t __p0) {
  53413. float64_t __ret;
  53414. __ret = (float64_t) __builtin_neon_vmaxnmvq_f64((int8x16_t)__p0);
  53415. return __ret;
  53416. }
  53417. #else
  53418. __ai float64_t vmaxnmvq_f64(float64x2_t __p0) {
  53419. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  53420. float64_t __ret;
  53421. __ret = (float64_t) __builtin_neon_vmaxnmvq_f64((int8x16_t)__rev0);
  53422. return __ret;
  53423. }
  53424. #endif
  53425. #ifdef __LITTLE_ENDIAN__
  53426. __ai float32_t vmaxnmvq_f32(float32x4_t __p0) {
  53427. float32_t __ret;
  53428. __ret = (float32_t) __builtin_neon_vmaxnmvq_f32((int8x16_t)__p0);
  53429. return __ret;
  53430. }
  53431. #else
  53432. __ai float32_t vmaxnmvq_f32(float32x4_t __p0) {
  53433. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  53434. float32_t __ret;
  53435. __ret = (float32_t) __builtin_neon_vmaxnmvq_f32((int8x16_t)__rev0);
  53436. return __ret;
  53437. }
  53438. #endif
  53439. #ifdef __LITTLE_ENDIAN__
  53440. __ai float32_t vmaxnmv_f32(float32x2_t __p0) {
  53441. float32_t __ret;
  53442. __ret = (float32_t) __builtin_neon_vmaxnmv_f32((int8x8_t)__p0);
  53443. return __ret;
  53444. }
  53445. #else
  53446. __ai float32_t vmaxnmv_f32(float32x2_t __p0) {
  53447. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  53448. float32_t __ret;
  53449. __ret = (float32_t) __builtin_neon_vmaxnmv_f32((int8x8_t)__rev0);
  53450. return __ret;
  53451. }
  53452. #endif
  53453. #ifdef __LITTLE_ENDIAN__
  53454. __ai uint8_t vmaxvq_u8(uint8x16_t __p0) {
  53455. uint8_t __ret;
  53456. __ret = (uint8_t) __builtin_neon_vmaxvq_u8((int8x16_t)__p0);
  53457. return __ret;
  53458. }
  53459. #else
  53460. __ai uint8_t vmaxvq_u8(uint8x16_t __p0) {
  53461. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  53462. uint8_t __ret;
  53463. __ret = (uint8_t) __builtin_neon_vmaxvq_u8((int8x16_t)__rev0);
  53464. return __ret;
  53465. }
  53466. #endif
  53467. #ifdef __LITTLE_ENDIAN__
  53468. __ai uint32_t vmaxvq_u32(uint32x4_t __p0) {
  53469. uint32_t __ret;
  53470. __ret = (uint32_t) __builtin_neon_vmaxvq_u32((int8x16_t)__p0);
  53471. return __ret;
  53472. }
  53473. #else
  53474. __ai uint32_t vmaxvq_u32(uint32x4_t __p0) {
  53475. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  53476. uint32_t __ret;
  53477. __ret = (uint32_t) __builtin_neon_vmaxvq_u32((int8x16_t)__rev0);
  53478. return __ret;
  53479. }
  53480. #endif
  53481. #ifdef __LITTLE_ENDIAN__
  53482. __ai uint16_t vmaxvq_u16(uint16x8_t __p0) {
  53483. uint16_t __ret;
  53484. __ret = (uint16_t) __builtin_neon_vmaxvq_u16((int8x16_t)__p0);
  53485. return __ret;
  53486. }
  53487. #else
  53488. __ai uint16_t vmaxvq_u16(uint16x8_t __p0) {
  53489. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  53490. uint16_t __ret;
  53491. __ret = (uint16_t) __builtin_neon_vmaxvq_u16((int8x16_t)__rev0);
  53492. return __ret;
  53493. }
  53494. #endif
  53495. #ifdef __LITTLE_ENDIAN__
  53496. __ai int8_t vmaxvq_s8(int8x16_t __p0) {
  53497. int8_t __ret;
  53498. __ret = (int8_t) __builtin_neon_vmaxvq_s8((int8x16_t)__p0);
  53499. return __ret;
  53500. }
  53501. #else
  53502. __ai int8_t vmaxvq_s8(int8x16_t __p0) {
  53503. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  53504. int8_t __ret;
  53505. __ret = (int8_t) __builtin_neon_vmaxvq_s8((int8x16_t)__rev0);
  53506. return __ret;
  53507. }
  53508. #endif
  53509. #ifdef __LITTLE_ENDIAN__
  53510. __ai float64_t vmaxvq_f64(float64x2_t __p0) {
  53511. float64_t __ret;
  53512. __ret = (float64_t) __builtin_neon_vmaxvq_f64((int8x16_t)__p0);
  53513. return __ret;
  53514. }
  53515. #else
  53516. __ai float64_t vmaxvq_f64(float64x2_t __p0) {
  53517. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  53518. float64_t __ret;
  53519. __ret = (float64_t) __builtin_neon_vmaxvq_f64((int8x16_t)__rev0);
  53520. return __ret;
  53521. }
  53522. #endif
  53523. #ifdef __LITTLE_ENDIAN__
  53524. __ai float32_t vmaxvq_f32(float32x4_t __p0) {
  53525. float32_t __ret;
  53526. __ret = (float32_t) __builtin_neon_vmaxvq_f32((int8x16_t)__p0);
  53527. return __ret;
  53528. }
  53529. #else
  53530. __ai float32_t vmaxvq_f32(float32x4_t __p0) {
  53531. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  53532. float32_t __ret;
  53533. __ret = (float32_t) __builtin_neon_vmaxvq_f32((int8x16_t)__rev0);
  53534. return __ret;
  53535. }
  53536. #endif
  53537. #ifdef __LITTLE_ENDIAN__
  53538. __ai int32_t vmaxvq_s32(int32x4_t __p0) {
  53539. int32_t __ret;
  53540. __ret = (int32_t) __builtin_neon_vmaxvq_s32((int8x16_t)__p0);
  53541. return __ret;
  53542. }
  53543. #else
  53544. __ai int32_t vmaxvq_s32(int32x4_t __p0) {
  53545. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  53546. int32_t __ret;
  53547. __ret = (int32_t) __builtin_neon_vmaxvq_s32((int8x16_t)__rev0);
  53548. return __ret;
  53549. }
  53550. #endif
  53551. #ifdef __LITTLE_ENDIAN__
  53552. __ai int16_t vmaxvq_s16(int16x8_t __p0) {
  53553. int16_t __ret;
  53554. __ret = (int16_t) __builtin_neon_vmaxvq_s16((int8x16_t)__p0);
  53555. return __ret;
  53556. }
  53557. #else
  53558. __ai int16_t vmaxvq_s16(int16x8_t __p0) {
  53559. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  53560. int16_t __ret;
  53561. __ret = (int16_t) __builtin_neon_vmaxvq_s16((int8x16_t)__rev0);
  53562. return __ret;
  53563. }
  53564. #endif
  53565. #ifdef __LITTLE_ENDIAN__
  53566. __ai uint8_t vmaxv_u8(uint8x8_t __p0) {
  53567. uint8_t __ret;
  53568. __ret = (uint8_t) __builtin_neon_vmaxv_u8((int8x8_t)__p0);
  53569. return __ret;
  53570. }
  53571. #else
  53572. __ai uint8_t vmaxv_u8(uint8x8_t __p0) {
  53573. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  53574. uint8_t __ret;
  53575. __ret = (uint8_t) __builtin_neon_vmaxv_u8((int8x8_t)__rev0);
  53576. return __ret;
  53577. }
  53578. #endif
  53579. #ifdef __LITTLE_ENDIAN__
  53580. __ai uint32_t vmaxv_u32(uint32x2_t __p0) {
  53581. uint32_t __ret;
  53582. __ret = (uint32_t) __builtin_neon_vmaxv_u32((int8x8_t)__p0);
  53583. return __ret;
  53584. }
  53585. #else
  53586. __ai uint32_t vmaxv_u32(uint32x2_t __p0) {
  53587. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  53588. uint32_t __ret;
  53589. __ret = (uint32_t) __builtin_neon_vmaxv_u32((int8x8_t)__rev0);
  53590. return __ret;
  53591. }
  53592. #endif
  53593. #ifdef __LITTLE_ENDIAN__
  53594. __ai uint16_t vmaxv_u16(uint16x4_t __p0) {
  53595. uint16_t __ret;
  53596. __ret = (uint16_t) __builtin_neon_vmaxv_u16((int8x8_t)__p0);
  53597. return __ret;
  53598. }
  53599. #else
  53600. __ai uint16_t vmaxv_u16(uint16x4_t __p0) {
  53601. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  53602. uint16_t __ret;
  53603. __ret = (uint16_t) __builtin_neon_vmaxv_u16((int8x8_t)__rev0);
  53604. return __ret;
  53605. }
  53606. #endif
  53607. #ifdef __LITTLE_ENDIAN__
  53608. __ai int8_t vmaxv_s8(int8x8_t __p0) {
  53609. int8_t __ret;
  53610. __ret = (int8_t) __builtin_neon_vmaxv_s8((int8x8_t)__p0);
  53611. return __ret;
  53612. }
  53613. #else
  53614. __ai int8_t vmaxv_s8(int8x8_t __p0) {
  53615. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  53616. int8_t __ret;
  53617. __ret = (int8_t) __builtin_neon_vmaxv_s8((int8x8_t)__rev0);
  53618. return __ret;
  53619. }
  53620. #endif
  53621. #ifdef __LITTLE_ENDIAN__
  53622. __ai float32_t vmaxv_f32(float32x2_t __p0) {
  53623. float32_t __ret;
  53624. __ret = (float32_t) __builtin_neon_vmaxv_f32((int8x8_t)__p0);
  53625. return __ret;
  53626. }
  53627. #else
  53628. __ai float32_t vmaxv_f32(float32x2_t __p0) {
  53629. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  53630. float32_t __ret;
  53631. __ret = (float32_t) __builtin_neon_vmaxv_f32((int8x8_t)__rev0);
  53632. return __ret;
  53633. }
  53634. #endif
  53635. #ifdef __LITTLE_ENDIAN__
  53636. __ai int32_t vmaxv_s32(int32x2_t __p0) {
  53637. int32_t __ret;
  53638. __ret = (int32_t) __builtin_neon_vmaxv_s32((int8x8_t)__p0);
  53639. return __ret;
  53640. }
  53641. #else
  53642. __ai int32_t vmaxv_s32(int32x2_t __p0) {
  53643. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  53644. int32_t __ret;
  53645. __ret = (int32_t) __builtin_neon_vmaxv_s32((int8x8_t)__rev0);
  53646. return __ret;
  53647. }
  53648. #endif
  53649. #ifdef __LITTLE_ENDIAN__
  53650. __ai int16_t vmaxv_s16(int16x4_t __p0) {
  53651. int16_t __ret;
  53652. __ret = (int16_t) __builtin_neon_vmaxv_s16((int8x8_t)__p0);
  53653. return __ret;
  53654. }
  53655. #else
  53656. __ai int16_t vmaxv_s16(int16x4_t __p0) {
  53657. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  53658. int16_t __ret;
  53659. __ret = (int16_t) __builtin_neon_vmaxv_s16((int8x8_t)__rev0);
  53660. return __ret;
  53661. }
  53662. #endif
  53663. #ifdef __LITTLE_ENDIAN__
  53664. __ai float64x2_t vminq_f64(float64x2_t __p0, float64x2_t __p1) {
  53665. float64x2_t __ret;
  53666. __ret = (float64x2_t) __builtin_neon_vminq_v((int8x16_t)__p0, (int8x16_t)__p1, 42);
  53667. return __ret;
  53668. }
  53669. #else
  53670. __ai float64x2_t vminq_f64(float64x2_t __p0, float64x2_t __p1) {
  53671. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  53672. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  53673. float64x2_t __ret;
  53674. __ret = (float64x2_t) __builtin_neon_vminq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 42);
  53675. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  53676. return __ret;
  53677. }
  53678. #endif
  53679. #ifdef __LITTLE_ENDIAN__
  53680. __ai float64x1_t vmin_f64(float64x1_t __p0, float64x1_t __p1) {
  53681. float64x1_t __ret;
  53682. __ret = (float64x1_t) __builtin_neon_vmin_v((int8x8_t)__p0, (int8x8_t)__p1, 10);
  53683. return __ret;
  53684. }
  53685. #else
  53686. __ai float64x1_t vmin_f64(float64x1_t __p0, float64x1_t __p1) {
  53687. float64x1_t __ret;
  53688. __ret = (float64x1_t) __builtin_neon_vmin_v((int8x8_t)__p0, (int8x8_t)__p1, 10);
  53689. return __ret;
  53690. }
  53691. #endif
  53692. #ifdef __LITTLE_ENDIAN__
  53693. __ai float64_t vminnmvq_f64(float64x2_t __p0) {
  53694. float64_t __ret;
  53695. __ret = (float64_t) __builtin_neon_vminnmvq_f64((int8x16_t)__p0);
  53696. return __ret;
  53697. }
  53698. #else
  53699. __ai float64_t vminnmvq_f64(float64x2_t __p0) {
  53700. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  53701. float64_t __ret;
  53702. __ret = (float64_t) __builtin_neon_vminnmvq_f64((int8x16_t)__rev0);
  53703. return __ret;
  53704. }
  53705. #endif
  53706. #ifdef __LITTLE_ENDIAN__
  53707. __ai float32_t vminnmvq_f32(float32x4_t __p0) {
  53708. float32_t __ret;
  53709. __ret = (float32_t) __builtin_neon_vminnmvq_f32((int8x16_t)__p0);
  53710. return __ret;
  53711. }
  53712. #else
  53713. __ai float32_t vminnmvq_f32(float32x4_t __p0) {
  53714. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  53715. float32_t __ret;
  53716. __ret = (float32_t) __builtin_neon_vminnmvq_f32((int8x16_t)__rev0);
  53717. return __ret;
  53718. }
  53719. #endif
  53720. #ifdef __LITTLE_ENDIAN__
  53721. __ai float32_t vminnmv_f32(float32x2_t __p0) {
  53722. float32_t __ret;
  53723. __ret = (float32_t) __builtin_neon_vminnmv_f32((int8x8_t)__p0);
  53724. return __ret;
  53725. }
  53726. #else
  53727. __ai float32_t vminnmv_f32(float32x2_t __p0) {
  53728. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  53729. float32_t __ret;
  53730. __ret = (float32_t) __builtin_neon_vminnmv_f32((int8x8_t)__rev0);
  53731. return __ret;
  53732. }
  53733. #endif
  53734. #ifdef __LITTLE_ENDIAN__
  53735. __ai uint8_t vminvq_u8(uint8x16_t __p0) {
  53736. uint8_t __ret;
  53737. __ret = (uint8_t) __builtin_neon_vminvq_u8((int8x16_t)__p0);
  53738. return __ret;
  53739. }
  53740. #else
  53741. __ai uint8_t vminvq_u8(uint8x16_t __p0) {
  53742. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  53743. uint8_t __ret;
  53744. __ret = (uint8_t) __builtin_neon_vminvq_u8((int8x16_t)__rev0);
  53745. return __ret;
  53746. }
  53747. #endif
  53748. #ifdef __LITTLE_ENDIAN__
  53749. __ai uint32_t vminvq_u32(uint32x4_t __p0) {
  53750. uint32_t __ret;
  53751. __ret = (uint32_t) __builtin_neon_vminvq_u32((int8x16_t)__p0);
  53752. return __ret;
  53753. }
  53754. #else
  53755. __ai uint32_t vminvq_u32(uint32x4_t __p0) {
  53756. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  53757. uint32_t __ret;
  53758. __ret = (uint32_t) __builtin_neon_vminvq_u32((int8x16_t)__rev0);
  53759. return __ret;
  53760. }
  53761. #endif
  53762. #ifdef __LITTLE_ENDIAN__
  53763. __ai uint16_t vminvq_u16(uint16x8_t __p0) {
  53764. uint16_t __ret;
  53765. __ret = (uint16_t) __builtin_neon_vminvq_u16((int8x16_t)__p0);
  53766. return __ret;
  53767. }
  53768. #else
  53769. __ai uint16_t vminvq_u16(uint16x8_t __p0) {
  53770. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  53771. uint16_t __ret;
  53772. __ret = (uint16_t) __builtin_neon_vminvq_u16((int8x16_t)__rev0);
  53773. return __ret;
  53774. }
  53775. #endif
  53776. #ifdef __LITTLE_ENDIAN__
  53777. __ai int8_t vminvq_s8(int8x16_t __p0) {
  53778. int8_t __ret;
  53779. __ret = (int8_t) __builtin_neon_vminvq_s8((int8x16_t)__p0);
  53780. return __ret;
  53781. }
  53782. #else
  53783. __ai int8_t vminvq_s8(int8x16_t __p0) {
  53784. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  53785. int8_t __ret;
  53786. __ret = (int8_t) __builtin_neon_vminvq_s8((int8x16_t)__rev0);
  53787. return __ret;
  53788. }
  53789. #endif
  53790. #ifdef __LITTLE_ENDIAN__
  53791. __ai float64_t vminvq_f64(float64x2_t __p0) {
  53792. float64_t __ret;
  53793. __ret = (float64_t) __builtin_neon_vminvq_f64((int8x16_t)__p0);
  53794. return __ret;
  53795. }
  53796. #else
  53797. __ai float64_t vminvq_f64(float64x2_t __p0) {
  53798. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  53799. float64_t __ret;
  53800. __ret = (float64_t) __builtin_neon_vminvq_f64((int8x16_t)__rev0);
  53801. return __ret;
  53802. }
  53803. #endif
  53804. #ifdef __LITTLE_ENDIAN__
  53805. __ai float32_t vminvq_f32(float32x4_t __p0) {
  53806. float32_t __ret;
  53807. __ret = (float32_t) __builtin_neon_vminvq_f32((int8x16_t)__p0);
  53808. return __ret;
  53809. }
  53810. #else
  53811. __ai float32_t vminvq_f32(float32x4_t __p0) {
  53812. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  53813. float32_t __ret;
  53814. __ret = (float32_t) __builtin_neon_vminvq_f32((int8x16_t)__rev0);
  53815. return __ret;
  53816. }
  53817. #endif
  53818. #ifdef __LITTLE_ENDIAN__
  53819. __ai int32_t vminvq_s32(int32x4_t __p0) {
  53820. int32_t __ret;
  53821. __ret = (int32_t) __builtin_neon_vminvq_s32((int8x16_t)__p0);
  53822. return __ret;
  53823. }
  53824. #else
  53825. __ai int32_t vminvq_s32(int32x4_t __p0) {
  53826. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  53827. int32_t __ret;
  53828. __ret = (int32_t) __builtin_neon_vminvq_s32((int8x16_t)__rev0);
  53829. return __ret;
  53830. }
  53831. #endif
  53832. #ifdef __LITTLE_ENDIAN__
  53833. __ai int16_t vminvq_s16(int16x8_t __p0) {
  53834. int16_t __ret;
  53835. __ret = (int16_t) __builtin_neon_vminvq_s16((int8x16_t)__p0);
  53836. return __ret;
  53837. }
  53838. #else
  53839. __ai int16_t vminvq_s16(int16x8_t __p0) {
  53840. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  53841. int16_t __ret;
  53842. __ret = (int16_t) __builtin_neon_vminvq_s16((int8x16_t)__rev0);
  53843. return __ret;
  53844. }
  53845. #endif
  53846. #ifdef __LITTLE_ENDIAN__
  53847. __ai uint8_t vminv_u8(uint8x8_t __p0) {
  53848. uint8_t __ret;
  53849. __ret = (uint8_t) __builtin_neon_vminv_u8((int8x8_t)__p0);
  53850. return __ret;
  53851. }
  53852. #else
  53853. __ai uint8_t vminv_u8(uint8x8_t __p0) {
  53854. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  53855. uint8_t __ret;
  53856. __ret = (uint8_t) __builtin_neon_vminv_u8((int8x8_t)__rev0);
  53857. return __ret;
  53858. }
  53859. #endif
  53860. #ifdef __LITTLE_ENDIAN__
  53861. __ai uint32_t vminv_u32(uint32x2_t __p0) {
  53862. uint32_t __ret;
  53863. __ret = (uint32_t) __builtin_neon_vminv_u32((int8x8_t)__p0);
  53864. return __ret;
  53865. }
  53866. #else
  53867. __ai uint32_t vminv_u32(uint32x2_t __p0) {
  53868. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  53869. uint32_t __ret;
  53870. __ret = (uint32_t) __builtin_neon_vminv_u32((int8x8_t)__rev0);
  53871. return __ret;
  53872. }
  53873. #endif
  53874. #ifdef __LITTLE_ENDIAN__
  53875. __ai uint16_t vminv_u16(uint16x4_t __p0) {
  53876. uint16_t __ret;
  53877. __ret = (uint16_t) __builtin_neon_vminv_u16((int8x8_t)__p0);
  53878. return __ret;
  53879. }
  53880. #else
  53881. __ai uint16_t vminv_u16(uint16x4_t __p0) {
  53882. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  53883. uint16_t __ret;
  53884. __ret = (uint16_t) __builtin_neon_vminv_u16((int8x8_t)__rev0);
  53885. return __ret;
  53886. }
  53887. #endif
  53888. #ifdef __LITTLE_ENDIAN__
  53889. __ai int8_t vminv_s8(int8x8_t __p0) {
  53890. int8_t __ret;
  53891. __ret = (int8_t) __builtin_neon_vminv_s8((int8x8_t)__p0);
  53892. return __ret;
  53893. }
  53894. #else
  53895. __ai int8_t vminv_s8(int8x8_t __p0) {
  53896. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  53897. int8_t __ret;
  53898. __ret = (int8_t) __builtin_neon_vminv_s8((int8x8_t)__rev0);
  53899. return __ret;
  53900. }
  53901. #endif
  53902. #ifdef __LITTLE_ENDIAN__
  53903. __ai float32_t vminv_f32(float32x2_t __p0) {
  53904. float32_t __ret;
  53905. __ret = (float32_t) __builtin_neon_vminv_f32((int8x8_t)__p0);
  53906. return __ret;
  53907. }
  53908. #else
  53909. __ai float32_t vminv_f32(float32x2_t __p0) {
  53910. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  53911. float32_t __ret;
  53912. __ret = (float32_t) __builtin_neon_vminv_f32((int8x8_t)__rev0);
  53913. return __ret;
  53914. }
  53915. #endif
  53916. #ifdef __LITTLE_ENDIAN__
  53917. __ai int32_t vminv_s32(int32x2_t __p0) {
  53918. int32_t __ret;
  53919. __ret = (int32_t) __builtin_neon_vminv_s32((int8x8_t)__p0);
  53920. return __ret;
  53921. }
  53922. #else
  53923. __ai int32_t vminv_s32(int32x2_t __p0) {
  53924. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  53925. int32_t __ret;
  53926. __ret = (int32_t) __builtin_neon_vminv_s32((int8x8_t)__rev0);
  53927. return __ret;
  53928. }
  53929. #endif
  53930. #ifdef __LITTLE_ENDIAN__
  53931. __ai int16_t vminv_s16(int16x4_t __p0) {
  53932. int16_t __ret;
  53933. __ret = (int16_t) __builtin_neon_vminv_s16((int8x8_t)__p0);
  53934. return __ret;
  53935. }
  53936. #else
  53937. __ai int16_t vminv_s16(int16x4_t __p0) {
  53938. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  53939. int16_t __ret;
  53940. __ret = (int16_t) __builtin_neon_vminv_s16((int8x8_t)__rev0);
  53941. return __ret;
  53942. }
  53943. #endif
  53944. #ifdef __LITTLE_ENDIAN__
  53945. __ai float64x2_t vmlaq_f64(float64x2_t __p0, float64x2_t __p1, float64x2_t __p2) {
  53946. float64x2_t __ret;
  53947. __ret = __p0 + __p1 * __p2;
  53948. return __ret;
  53949. }
  53950. #else
  53951. __ai float64x2_t vmlaq_f64(float64x2_t __p0, float64x2_t __p1, float64x2_t __p2) {
  53952. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  53953. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  53954. float64x2_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 1, 0);
  53955. float64x2_t __ret;
  53956. __ret = __rev0 + __rev1 * __rev2;
  53957. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  53958. return __ret;
  53959. }
  53960. #endif
  53961. #ifdef __LITTLE_ENDIAN__
  53962. __ai float64x1_t vmla_f64(float64x1_t __p0, float64x1_t __p1, float64x1_t __p2) {
  53963. float64x1_t __ret;
  53964. __ret = __p0 + __p1 * __p2;
  53965. return __ret;
  53966. }
  53967. #else
  53968. __ai float64x1_t vmla_f64(float64x1_t __p0, float64x1_t __p1, float64x1_t __p2) {
  53969. float64x1_t __ret;
  53970. __ret = __p0 + __p1 * __p2;
  53971. return __ret;
  53972. }
  53973. #endif
  53974. #ifdef __LITTLE_ENDIAN__
  53975. #define vmlaq_laneq_u32(__p0, __p1, __p2, __p3) __extension__ ({ \
  53976. uint32x4_t __s0 = __p0; \
  53977. uint32x4_t __s1 = __p1; \
  53978. uint32x4_t __s2 = __p2; \
  53979. uint32x4_t __ret; \
  53980. __ret = __s0 + __s1 * __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3); \
  53981. __ret; \
  53982. })
  53983. #else
  53984. #define vmlaq_laneq_u32(__p0, __p1, __p2, __p3) __extension__ ({ \
  53985. uint32x4_t __s0 = __p0; \
  53986. uint32x4_t __s1 = __p1; \
  53987. uint32x4_t __s2 = __p2; \
  53988. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  53989. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  53990. uint32x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  53991. uint32x4_t __ret; \
  53992. __ret = __rev0 + __rev1 * __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3); \
  53993. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  53994. __ret; \
  53995. })
  53996. #endif
  53997. #ifdef __LITTLE_ENDIAN__
  53998. #define vmlaq_laneq_u16(__p0, __p1, __p2, __p3) __extension__ ({ \
  53999. uint16x8_t __s0 = __p0; \
  54000. uint16x8_t __s1 = __p1; \
  54001. uint16x8_t __s2 = __p2; \
  54002. uint16x8_t __ret; \
  54003. __ret = __s0 + __s1 * __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3, __p3, __p3, __p3, __p3); \
  54004. __ret; \
  54005. })
  54006. #else
  54007. #define vmlaq_laneq_u16(__p0, __p1, __p2, __p3) __extension__ ({ \
  54008. uint16x8_t __s0 = __p0; \
  54009. uint16x8_t __s1 = __p1; \
  54010. uint16x8_t __s2 = __p2; \
  54011. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  54012. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  54013. uint16x8_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 7, 6, 5, 4, 3, 2, 1, 0); \
  54014. uint16x8_t __ret; \
  54015. __ret = __rev0 + __rev1 * __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3, __p3, __p3, __p3, __p3); \
  54016. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  54017. __ret; \
  54018. })
  54019. #endif
  54020. #ifdef __LITTLE_ENDIAN__
  54021. #define vmlaq_laneq_f32(__p0, __p1, __p2, __p3) __extension__ ({ \
  54022. float32x4_t __s0 = __p0; \
  54023. float32x4_t __s1 = __p1; \
  54024. float32x4_t __s2 = __p2; \
  54025. float32x4_t __ret; \
  54026. __ret = __s0 + __s1 * __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3); \
  54027. __ret; \
  54028. })
  54029. #else
  54030. #define vmlaq_laneq_f32(__p0, __p1, __p2, __p3) __extension__ ({ \
  54031. float32x4_t __s0 = __p0; \
  54032. float32x4_t __s1 = __p1; \
  54033. float32x4_t __s2 = __p2; \
  54034. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  54035. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  54036. float32x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  54037. float32x4_t __ret; \
  54038. __ret = __rev0 + __rev1 * __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3); \
  54039. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  54040. __ret; \
  54041. })
  54042. #endif
  54043. #ifdef __LITTLE_ENDIAN__
  54044. #define vmlaq_laneq_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  54045. int32x4_t __s0 = __p0; \
  54046. int32x4_t __s1 = __p1; \
  54047. int32x4_t __s2 = __p2; \
  54048. int32x4_t __ret; \
  54049. __ret = __s0 + __s1 * __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3); \
  54050. __ret; \
  54051. })
  54052. #else
  54053. #define vmlaq_laneq_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  54054. int32x4_t __s0 = __p0; \
  54055. int32x4_t __s1 = __p1; \
  54056. int32x4_t __s2 = __p2; \
  54057. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  54058. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  54059. int32x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  54060. int32x4_t __ret; \
  54061. __ret = __rev0 + __rev1 * __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3); \
  54062. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  54063. __ret; \
  54064. })
  54065. #endif
  54066. #ifdef __LITTLE_ENDIAN__
  54067. #define vmlaq_laneq_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  54068. int16x8_t __s0 = __p0; \
  54069. int16x8_t __s1 = __p1; \
  54070. int16x8_t __s2 = __p2; \
  54071. int16x8_t __ret; \
  54072. __ret = __s0 + __s1 * __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3, __p3, __p3, __p3, __p3); \
  54073. __ret; \
  54074. })
  54075. #else
  54076. #define vmlaq_laneq_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  54077. int16x8_t __s0 = __p0; \
  54078. int16x8_t __s1 = __p1; \
  54079. int16x8_t __s2 = __p2; \
  54080. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  54081. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  54082. int16x8_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 7, 6, 5, 4, 3, 2, 1, 0); \
  54083. int16x8_t __ret; \
  54084. __ret = __rev0 + __rev1 * __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3, __p3, __p3, __p3, __p3); \
  54085. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  54086. __ret; \
  54087. })
  54088. #endif
  54089. #ifdef __LITTLE_ENDIAN__
  54090. #define vmla_laneq_u32(__p0, __p1, __p2, __p3) __extension__ ({ \
  54091. uint32x2_t __s0 = __p0; \
  54092. uint32x2_t __s1 = __p1; \
  54093. uint32x4_t __s2 = __p2; \
  54094. uint32x2_t __ret; \
  54095. __ret = __s0 + __s1 * __builtin_shufflevector(__s2, __s2, __p3, __p3); \
  54096. __ret; \
  54097. })
  54098. #else
  54099. #define vmla_laneq_u32(__p0, __p1, __p2, __p3) __extension__ ({ \
  54100. uint32x2_t __s0 = __p0; \
  54101. uint32x2_t __s1 = __p1; \
  54102. uint32x4_t __s2 = __p2; \
  54103. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  54104. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  54105. uint32x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  54106. uint32x2_t __ret; \
  54107. __ret = __rev0 + __rev1 * __builtin_shufflevector(__rev2, __rev2, __p3, __p3); \
  54108. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  54109. __ret; \
  54110. })
  54111. #endif
  54112. #ifdef __LITTLE_ENDIAN__
  54113. #define vmla_laneq_u16(__p0, __p1, __p2, __p3) __extension__ ({ \
  54114. uint16x4_t __s0 = __p0; \
  54115. uint16x4_t __s1 = __p1; \
  54116. uint16x8_t __s2 = __p2; \
  54117. uint16x4_t __ret; \
  54118. __ret = __s0 + __s1 * __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3); \
  54119. __ret; \
  54120. })
  54121. #else
  54122. #define vmla_laneq_u16(__p0, __p1, __p2, __p3) __extension__ ({ \
  54123. uint16x4_t __s0 = __p0; \
  54124. uint16x4_t __s1 = __p1; \
  54125. uint16x8_t __s2 = __p2; \
  54126. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  54127. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  54128. uint16x8_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 7, 6, 5, 4, 3, 2, 1, 0); \
  54129. uint16x4_t __ret; \
  54130. __ret = __rev0 + __rev1 * __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3); \
  54131. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  54132. __ret; \
  54133. })
  54134. #endif
  54135. #ifdef __LITTLE_ENDIAN__
  54136. #define vmla_laneq_f32(__p0, __p1, __p2, __p3) __extension__ ({ \
  54137. float32x2_t __s0 = __p0; \
  54138. float32x2_t __s1 = __p1; \
  54139. float32x4_t __s2 = __p2; \
  54140. float32x2_t __ret; \
  54141. __ret = __s0 + __s1 * __builtin_shufflevector(__s2, __s2, __p3, __p3); \
  54142. __ret; \
  54143. })
  54144. #else
  54145. #define vmla_laneq_f32(__p0, __p1, __p2, __p3) __extension__ ({ \
  54146. float32x2_t __s0 = __p0; \
  54147. float32x2_t __s1 = __p1; \
  54148. float32x4_t __s2 = __p2; \
  54149. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  54150. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  54151. float32x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  54152. float32x2_t __ret; \
  54153. __ret = __rev0 + __rev1 * __builtin_shufflevector(__rev2, __rev2, __p3, __p3); \
  54154. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  54155. __ret; \
  54156. })
  54157. #endif
  54158. #ifdef __LITTLE_ENDIAN__
  54159. #define vmla_laneq_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  54160. int32x2_t __s0 = __p0; \
  54161. int32x2_t __s1 = __p1; \
  54162. int32x4_t __s2 = __p2; \
  54163. int32x2_t __ret; \
  54164. __ret = __s0 + __s1 * __builtin_shufflevector(__s2, __s2, __p3, __p3); \
  54165. __ret; \
  54166. })
  54167. #else
  54168. #define vmla_laneq_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  54169. int32x2_t __s0 = __p0; \
  54170. int32x2_t __s1 = __p1; \
  54171. int32x4_t __s2 = __p2; \
  54172. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  54173. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  54174. int32x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  54175. int32x2_t __ret; \
  54176. __ret = __rev0 + __rev1 * __builtin_shufflevector(__rev2, __rev2, __p3, __p3); \
  54177. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  54178. __ret; \
  54179. })
  54180. #endif
  54181. #ifdef __LITTLE_ENDIAN__
  54182. #define vmla_laneq_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  54183. int16x4_t __s0 = __p0; \
  54184. int16x4_t __s1 = __p1; \
  54185. int16x8_t __s2 = __p2; \
  54186. int16x4_t __ret; \
  54187. __ret = __s0 + __s1 * __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3); \
  54188. __ret; \
  54189. })
  54190. #else
  54191. #define vmla_laneq_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  54192. int16x4_t __s0 = __p0; \
  54193. int16x4_t __s1 = __p1; \
  54194. int16x8_t __s2 = __p2; \
  54195. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  54196. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  54197. int16x8_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 7, 6, 5, 4, 3, 2, 1, 0); \
  54198. int16x4_t __ret; \
  54199. __ret = __rev0 + __rev1 * __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3); \
  54200. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  54201. __ret; \
  54202. })
  54203. #endif
  54204. #ifdef __LITTLE_ENDIAN__
  54205. __ai float64x2_t vmlaq_n_f64(float64x2_t __p0, float64x2_t __p1, float64_t __p2) {
  54206. float64x2_t __ret;
  54207. __ret = __p0 + __p1 * (float64x2_t) {__p2, __p2};
  54208. return __ret;
  54209. }
  54210. #else
  54211. __ai float64x2_t vmlaq_n_f64(float64x2_t __p0, float64x2_t __p1, float64_t __p2) {
  54212. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  54213. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  54214. float64x2_t __ret;
  54215. __ret = __rev0 + __rev1 * (float64x2_t) {__p2, __p2};
  54216. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  54217. return __ret;
  54218. }
  54219. #endif
  54220. #ifdef __LITTLE_ENDIAN__
  54221. #define vmlal_high_lane_u32(__p0, __p1, __p2, __p3) __extension__ ({ \
  54222. uint64x2_t __s0 = __p0; \
  54223. uint32x4_t __s1 = __p1; \
  54224. uint32x2_t __s2 = __p2; \
  54225. uint64x2_t __ret; \
  54226. __ret = __s0 + vmull_u32(vget_high_u32(__s1), __builtin_shufflevector(__s2, __s2, __p3, __p3)); \
  54227. __ret; \
  54228. })
  54229. #else
  54230. #define vmlal_high_lane_u32(__p0, __p1, __p2, __p3) __extension__ ({ \
  54231. uint64x2_t __s0 = __p0; \
  54232. uint32x4_t __s1 = __p1; \
  54233. uint32x2_t __s2 = __p2; \
  54234. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  54235. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  54236. uint32x2_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 1, 0); \
  54237. uint64x2_t __ret; \
  54238. __ret = __rev0 + __noswap_vmull_u32(__noswap_vget_high_u32(__rev1), __builtin_shufflevector(__rev2, __rev2, __p3, __p3)); \
  54239. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  54240. __ret; \
  54241. })
  54242. #endif
  54243. #ifdef __LITTLE_ENDIAN__
  54244. #define vmlal_high_lane_u16(__p0, __p1, __p2, __p3) __extension__ ({ \
  54245. uint32x4_t __s0 = __p0; \
  54246. uint16x8_t __s1 = __p1; \
  54247. uint16x4_t __s2 = __p2; \
  54248. uint32x4_t __ret; \
  54249. __ret = __s0 + vmull_u16(vget_high_u16(__s1), __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3)); \
  54250. __ret; \
  54251. })
  54252. #else
  54253. #define vmlal_high_lane_u16(__p0, __p1, __p2, __p3) __extension__ ({ \
  54254. uint32x4_t __s0 = __p0; \
  54255. uint16x8_t __s1 = __p1; \
  54256. uint16x4_t __s2 = __p2; \
  54257. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  54258. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  54259. uint16x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  54260. uint32x4_t __ret; \
  54261. __ret = __rev0 + __noswap_vmull_u16(__noswap_vget_high_u16(__rev1), __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3)); \
  54262. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  54263. __ret; \
  54264. })
  54265. #endif
  54266. #ifdef __LITTLE_ENDIAN__
  54267. #define vmlal_high_lane_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  54268. int64x2_t __s0 = __p0; \
  54269. int32x4_t __s1 = __p1; \
  54270. int32x2_t __s2 = __p2; \
  54271. int64x2_t __ret; \
  54272. __ret = __s0 + vmull_s32(vget_high_s32(__s1), __builtin_shufflevector(__s2, __s2, __p3, __p3)); \
  54273. __ret; \
  54274. })
  54275. #else
  54276. #define vmlal_high_lane_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  54277. int64x2_t __s0 = __p0; \
  54278. int32x4_t __s1 = __p1; \
  54279. int32x2_t __s2 = __p2; \
  54280. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  54281. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  54282. int32x2_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 1, 0); \
  54283. int64x2_t __ret; \
  54284. __ret = __rev0 + __noswap_vmull_s32(__noswap_vget_high_s32(__rev1), __builtin_shufflevector(__rev2, __rev2, __p3, __p3)); \
  54285. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  54286. __ret; \
  54287. })
  54288. #endif
  54289. #ifdef __LITTLE_ENDIAN__
  54290. #define vmlal_high_lane_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  54291. int32x4_t __s0 = __p0; \
  54292. int16x8_t __s1 = __p1; \
  54293. int16x4_t __s2 = __p2; \
  54294. int32x4_t __ret; \
  54295. __ret = __s0 + vmull_s16(vget_high_s16(__s1), __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3)); \
  54296. __ret; \
  54297. })
  54298. #else
  54299. #define vmlal_high_lane_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  54300. int32x4_t __s0 = __p0; \
  54301. int16x8_t __s1 = __p1; \
  54302. int16x4_t __s2 = __p2; \
  54303. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  54304. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  54305. int16x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  54306. int32x4_t __ret; \
  54307. __ret = __rev0 + __noswap_vmull_s16(__noswap_vget_high_s16(__rev1), __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3)); \
  54308. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  54309. __ret; \
  54310. })
  54311. #endif
  54312. #ifdef __LITTLE_ENDIAN__
  54313. #define vmlal_high_laneq_u32(__p0, __p1, __p2, __p3) __extension__ ({ \
  54314. uint64x2_t __s0 = __p0; \
  54315. uint32x4_t __s1 = __p1; \
  54316. uint32x4_t __s2 = __p2; \
  54317. uint64x2_t __ret; \
  54318. __ret = __s0 + vmull_u32(vget_high_u32(__s1), __builtin_shufflevector(__s2, __s2, __p3, __p3)); \
  54319. __ret; \
  54320. })
  54321. #else
  54322. #define vmlal_high_laneq_u32(__p0, __p1, __p2, __p3) __extension__ ({ \
  54323. uint64x2_t __s0 = __p0; \
  54324. uint32x4_t __s1 = __p1; \
  54325. uint32x4_t __s2 = __p2; \
  54326. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  54327. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  54328. uint32x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  54329. uint64x2_t __ret; \
  54330. __ret = __rev0 + __noswap_vmull_u32(__noswap_vget_high_u32(__rev1), __builtin_shufflevector(__rev2, __rev2, __p3, __p3)); \
  54331. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  54332. __ret; \
  54333. })
  54334. #endif
  54335. #ifdef __LITTLE_ENDIAN__
  54336. #define vmlal_high_laneq_u16(__p0, __p1, __p2, __p3) __extension__ ({ \
  54337. uint32x4_t __s0 = __p0; \
  54338. uint16x8_t __s1 = __p1; \
  54339. uint16x8_t __s2 = __p2; \
  54340. uint32x4_t __ret; \
  54341. __ret = __s0 + vmull_u16(vget_high_u16(__s1), __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3)); \
  54342. __ret; \
  54343. })
  54344. #else
  54345. #define vmlal_high_laneq_u16(__p0, __p1, __p2, __p3) __extension__ ({ \
  54346. uint32x4_t __s0 = __p0; \
  54347. uint16x8_t __s1 = __p1; \
  54348. uint16x8_t __s2 = __p2; \
  54349. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  54350. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  54351. uint16x8_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 7, 6, 5, 4, 3, 2, 1, 0); \
  54352. uint32x4_t __ret; \
  54353. __ret = __rev0 + __noswap_vmull_u16(__noswap_vget_high_u16(__rev1), __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3)); \
  54354. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  54355. __ret; \
  54356. })
  54357. #endif
  54358. #ifdef __LITTLE_ENDIAN__
  54359. #define vmlal_high_laneq_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  54360. int64x2_t __s0 = __p0; \
  54361. int32x4_t __s1 = __p1; \
  54362. int32x4_t __s2 = __p2; \
  54363. int64x2_t __ret; \
  54364. __ret = __s0 + vmull_s32(vget_high_s32(__s1), __builtin_shufflevector(__s2, __s2, __p3, __p3)); \
  54365. __ret; \
  54366. })
  54367. #else
  54368. #define vmlal_high_laneq_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  54369. int64x2_t __s0 = __p0; \
  54370. int32x4_t __s1 = __p1; \
  54371. int32x4_t __s2 = __p2; \
  54372. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  54373. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  54374. int32x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  54375. int64x2_t __ret; \
  54376. __ret = __rev0 + __noswap_vmull_s32(__noswap_vget_high_s32(__rev1), __builtin_shufflevector(__rev2, __rev2, __p3, __p3)); \
  54377. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  54378. __ret; \
  54379. })
  54380. #endif
  54381. #ifdef __LITTLE_ENDIAN__
  54382. #define vmlal_high_laneq_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  54383. int32x4_t __s0 = __p0; \
  54384. int16x8_t __s1 = __p1; \
  54385. int16x8_t __s2 = __p2; \
  54386. int32x4_t __ret; \
  54387. __ret = __s0 + vmull_s16(vget_high_s16(__s1), __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3)); \
  54388. __ret; \
  54389. })
  54390. #else
  54391. #define vmlal_high_laneq_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  54392. int32x4_t __s0 = __p0; \
  54393. int16x8_t __s1 = __p1; \
  54394. int16x8_t __s2 = __p2; \
  54395. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  54396. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  54397. int16x8_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 7, 6, 5, 4, 3, 2, 1, 0); \
  54398. int32x4_t __ret; \
  54399. __ret = __rev0 + __noswap_vmull_s16(__noswap_vget_high_s16(__rev1), __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3)); \
  54400. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  54401. __ret; \
  54402. })
  54403. #endif
  54404. #ifdef __LITTLE_ENDIAN__
  54405. #define vmlal_laneq_u32(__p0, __p1, __p2, __p3) __extension__ ({ \
  54406. uint64x2_t __s0 = __p0; \
  54407. uint32x2_t __s1 = __p1; \
  54408. uint32x4_t __s2 = __p2; \
  54409. uint64x2_t __ret; \
  54410. __ret = __s0 + vmull_u32(__s1, __builtin_shufflevector(__s2, __s2, __p3, __p3)); \
  54411. __ret; \
  54412. })
  54413. #else
  54414. #define vmlal_laneq_u32(__p0, __p1, __p2, __p3) __extension__ ({ \
  54415. uint64x2_t __s0 = __p0; \
  54416. uint32x2_t __s1 = __p1; \
  54417. uint32x4_t __s2 = __p2; \
  54418. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  54419. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  54420. uint32x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  54421. uint64x2_t __ret; \
  54422. __ret = __rev0 + __noswap_vmull_u32(__rev1, __builtin_shufflevector(__rev2, __rev2, __p3, __p3)); \
  54423. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  54424. __ret; \
  54425. })
  54426. #endif
  54427. #ifdef __LITTLE_ENDIAN__
  54428. #define vmlal_laneq_u16(__p0, __p1, __p2, __p3) __extension__ ({ \
  54429. uint32x4_t __s0 = __p0; \
  54430. uint16x4_t __s1 = __p1; \
  54431. uint16x8_t __s2 = __p2; \
  54432. uint32x4_t __ret; \
  54433. __ret = __s0 + vmull_u16(__s1, __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3)); \
  54434. __ret; \
  54435. })
  54436. #else
  54437. #define vmlal_laneq_u16(__p0, __p1, __p2, __p3) __extension__ ({ \
  54438. uint32x4_t __s0 = __p0; \
  54439. uint16x4_t __s1 = __p1; \
  54440. uint16x8_t __s2 = __p2; \
  54441. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  54442. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  54443. uint16x8_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 7, 6, 5, 4, 3, 2, 1, 0); \
  54444. uint32x4_t __ret; \
  54445. __ret = __rev0 + __noswap_vmull_u16(__rev1, __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3)); \
  54446. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  54447. __ret; \
  54448. })
  54449. #endif
  54450. #ifdef __LITTLE_ENDIAN__
  54451. #define vmlal_laneq_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  54452. int64x2_t __s0 = __p0; \
  54453. int32x2_t __s1 = __p1; \
  54454. int32x4_t __s2 = __p2; \
  54455. int64x2_t __ret; \
  54456. __ret = __s0 + vmull_s32(__s1, __builtin_shufflevector(__s2, __s2, __p3, __p3)); \
  54457. __ret; \
  54458. })
  54459. #else
  54460. #define vmlal_laneq_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  54461. int64x2_t __s0 = __p0; \
  54462. int32x2_t __s1 = __p1; \
  54463. int32x4_t __s2 = __p2; \
  54464. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  54465. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  54466. int32x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  54467. int64x2_t __ret; \
  54468. __ret = __rev0 + __noswap_vmull_s32(__rev1, __builtin_shufflevector(__rev2, __rev2, __p3, __p3)); \
  54469. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  54470. __ret; \
  54471. })
  54472. #endif
  54473. #ifdef __LITTLE_ENDIAN__
  54474. #define vmlal_laneq_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  54475. int32x4_t __s0 = __p0; \
  54476. int16x4_t __s1 = __p1; \
  54477. int16x8_t __s2 = __p2; \
  54478. int32x4_t __ret; \
  54479. __ret = __s0 + vmull_s16(__s1, __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3)); \
  54480. __ret; \
  54481. })
  54482. #else
  54483. #define vmlal_laneq_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  54484. int32x4_t __s0 = __p0; \
  54485. int16x4_t __s1 = __p1; \
  54486. int16x8_t __s2 = __p2; \
  54487. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  54488. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  54489. int16x8_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 7, 6, 5, 4, 3, 2, 1, 0); \
  54490. int32x4_t __ret; \
  54491. __ret = __rev0 + __noswap_vmull_s16(__rev1, __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3)); \
  54492. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  54493. __ret; \
  54494. })
  54495. #endif
  54496. #ifdef __LITTLE_ENDIAN__
  54497. __ai float64x2_t vmlsq_f64(float64x2_t __p0, float64x2_t __p1, float64x2_t __p2) {
  54498. float64x2_t __ret;
  54499. __ret = __p0 - __p1 * __p2;
  54500. return __ret;
  54501. }
  54502. #else
  54503. __ai float64x2_t vmlsq_f64(float64x2_t __p0, float64x2_t __p1, float64x2_t __p2) {
  54504. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  54505. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  54506. float64x2_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 1, 0);
  54507. float64x2_t __ret;
  54508. __ret = __rev0 - __rev1 * __rev2;
  54509. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  54510. return __ret;
  54511. }
  54512. #endif
  54513. #ifdef __LITTLE_ENDIAN__
  54514. __ai float64x1_t vmls_f64(float64x1_t __p0, float64x1_t __p1, float64x1_t __p2) {
  54515. float64x1_t __ret;
  54516. __ret = __p0 - __p1 * __p2;
  54517. return __ret;
  54518. }
  54519. #else
  54520. __ai float64x1_t vmls_f64(float64x1_t __p0, float64x1_t __p1, float64x1_t __p2) {
  54521. float64x1_t __ret;
  54522. __ret = __p0 - __p1 * __p2;
  54523. return __ret;
  54524. }
  54525. #endif
  54526. #ifdef __LITTLE_ENDIAN__
  54527. #define vmlsq_laneq_u32(__p0, __p1, __p2, __p3) __extension__ ({ \
  54528. uint32x4_t __s0 = __p0; \
  54529. uint32x4_t __s1 = __p1; \
  54530. uint32x4_t __s2 = __p2; \
  54531. uint32x4_t __ret; \
  54532. __ret = __s0 - __s1 * __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3); \
  54533. __ret; \
  54534. })
  54535. #else
  54536. #define vmlsq_laneq_u32(__p0, __p1, __p2, __p3) __extension__ ({ \
  54537. uint32x4_t __s0 = __p0; \
  54538. uint32x4_t __s1 = __p1; \
  54539. uint32x4_t __s2 = __p2; \
  54540. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  54541. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  54542. uint32x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  54543. uint32x4_t __ret; \
  54544. __ret = __rev0 - __rev1 * __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3); \
  54545. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  54546. __ret; \
  54547. })
  54548. #endif
  54549. #ifdef __LITTLE_ENDIAN__
  54550. #define vmlsq_laneq_u16(__p0, __p1, __p2, __p3) __extension__ ({ \
  54551. uint16x8_t __s0 = __p0; \
  54552. uint16x8_t __s1 = __p1; \
  54553. uint16x8_t __s2 = __p2; \
  54554. uint16x8_t __ret; \
  54555. __ret = __s0 - __s1 * __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3, __p3, __p3, __p3, __p3); \
  54556. __ret; \
  54557. })
  54558. #else
  54559. #define vmlsq_laneq_u16(__p0, __p1, __p2, __p3) __extension__ ({ \
  54560. uint16x8_t __s0 = __p0; \
  54561. uint16x8_t __s1 = __p1; \
  54562. uint16x8_t __s2 = __p2; \
  54563. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  54564. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  54565. uint16x8_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 7, 6, 5, 4, 3, 2, 1, 0); \
  54566. uint16x8_t __ret; \
  54567. __ret = __rev0 - __rev1 * __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3, __p3, __p3, __p3, __p3); \
  54568. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  54569. __ret; \
  54570. })
  54571. #endif
  54572. #ifdef __LITTLE_ENDIAN__
  54573. #define vmlsq_laneq_f32(__p0, __p1, __p2, __p3) __extension__ ({ \
  54574. float32x4_t __s0 = __p0; \
  54575. float32x4_t __s1 = __p1; \
  54576. float32x4_t __s2 = __p2; \
  54577. float32x4_t __ret; \
  54578. __ret = __s0 - __s1 * __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3); \
  54579. __ret; \
  54580. })
  54581. #else
  54582. #define vmlsq_laneq_f32(__p0, __p1, __p2, __p3) __extension__ ({ \
  54583. float32x4_t __s0 = __p0; \
  54584. float32x4_t __s1 = __p1; \
  54585. float32x4_t __s2 = __p2; \
  54586. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  54587. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  54588. float32x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  54589. float32x4_t __ret; \
  54590. __ret = __rev0 - __rev1 * __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3); \
  54591. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  54592. __ret; \
  54593. })
  54594. #endif
  54595. #ifdef __LITTLE_ENDIAN__
  54596. #define vmlsq_laneq_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  54597. int32x4_t __s0 = __p0; \
  54598. int32x4_t __s1 = __p1; \
  54599. int32x4_t __s2 = __p2; \
  54600. int32x4_t __ret; \
  54601. __ret = __s0 - __s1 * __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3); \
  54602. __ret; \
  54603. })
  54604. #else
  54605. #define vmlsq_laneq_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  54606. int32x4_t __s0 = __p0; \
  54607. int32x4_t __s1 = __p1; \
  54608. int32x4_t __s2 = __p2; \
  54609. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  54610. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  54611. int32x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  54612. int32x4_t __ret; \
  54613. __ret = __rev0 - __rev1 * __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3); \
  54614. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  54615. __ret; \
  54616. })
  54617. #endif
  54618. #ifdef __LITTLE_ENDIAN__
  54619. #define vmlsq_laneq_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  54620. int16x8_t __s0 = __p0; \
  54621. int16x8_t __s1 = __p1; \
  54622. int16x8_t __s2 = __p2; \
  54623. int16x8_t __ret; \
  54624. __ret = __s0 - __s1 * __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3, __p3, __p3, __p3, __p3); \
  54625. __ret; \
  54626. })
  54627. #else
  54628. #define vmlsq_laneq_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  54629. int16x8_t __s0 = __p0; \
  54630. int16x8_t __s1 = __p1; \
  54631. int16x8_t __s2 = __p2; \
  54632. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  54633. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  54634. int16x8_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 7, 6, 5, 4, 3, 2, 1, 0); \
  54635. int16x8_t __ret; \
  54636. __ret = __rev0 - __rev1 * __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3, __p3, __p3, __p3, __p3); \
  54637. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  54638. __ret; \
  54639. })
  54640. #endif
  54641. #ifdef __LITTLE_ENDIAN__
  54642. #define vmls_laneq_u32(__p0, __p1, __p2, __p3) __extension__ ({ \
  54643. uint32x2_t __s0 = __p0; \
  54644. uint32x2_t __s1 = __p1; \
  54645. uint32x4_t __s2 = __p2; \
  54646. uint32x2_t __ret; \
  54647. __ret = __s0 - __s1 * __builtin_shufflevector(__s2, __s2, __p3, __p3); \
  54648. __ret; \
  54649. })
  54650. #else
  54651. #define vmls_laneq_u32(__p0, __p1, __p2, __p3) __extension__ ({ \
  54652. uint32x2_t __s0 = __p0; \
  54653. uint32x2_t __s1 = __p1; \
  54654. uint32x4_t __s2 = __p2; \
  54655. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  54656. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  54657. uint32x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  54658. uint32x2_t __ret; \
  54659. __ret = __rev0 - __rev1 * __builtin_shufflevector(__rev2, __rev2, __p3, __p3); \
  54660. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  54661. __ret; \
  54662. })
  54663. #endif
  54664. #ifdef __LITTLE_ENDIAN__
  54665. #define vmls_laneq_u16(__p0, __p1, __p2, __p3) __extension__ ({ \
  54666. uint16x4_t __s0 = __p0; \
  54667. uint16x4_t __s1 = __p1; \
  54668. uint16x8_t __s2 = __p2; \
  54669. uint16x4_t __ret; \
  54670. __ret = __s0 - __s1 * __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3); \
  54671. __ret; \
  54672. })
  54673. #else
  54674. #define vmls_laneq_u16(__p0, __p1, __p2, __p3) __extension__ ({ \
  54675. uint16x4_t __s0 = __p0; \
  54676. uint16x4_t __s1 = __p1; \
  54677. uint16x8_t __s2 = __p2; \
  54678. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  54679. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  54680. uint16x8_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 7, 6, 5, 4, 3, 2, 1, 0); \
  54681. uint16x4_t __ret; \
  54682. __ret = __rev0 - __rev1 * __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3); \
  54683. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  54684. __ret; \
  54685. })
  54686. #endif
  54687. #ifdef __LITTLE_ENDIAN__
  54688. #define vmls_laneq_f32(__p0, __p1, __p2, __p3) __extension__ ({ \
  54689. float32x2_t __s0 = __p0; \
  54690. float32x2_t __s1 = __p1; \
  54691. float32x4_t __s2 = __p2; \
  54692. float32x2_t __ret; \
  54693. __ret = __s0 - __s1 * __builtin_shufflevector(__s2, __s2, __p3, __p3); \
  54694. __ret; \
  54695. })
  54696. #else
  54697. #define vmls_laneq_f32(__p0, __p1, __p2, __p3) __extension__ ({ \
  54698. float32x2_t __s0 = __p0; \
  54699. float32x2_t __s1 = __p1; \
  54700. float32x4_t __s2 = __p2; \
  54701. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  54702. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  54703. float32x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  54704. float32x2_t __ret; \
  54705. __ret = __rev0 - __rev1 * __builtin_shufflevector(__rev2, __rev2, __p3, __p3); \
  54706. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  54707. __ret; \
  54708. })
  54709. #endif
  54710. #ifdef __LITTLE_ENDIAN__
  54711. #define vmls_laneq_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  54712. int32x2_t __s0 = __p0; \
  54713. int32x2_t __s1 = __p1; \
  54714. int32x4_t __s2 = __p2; \
  54715. int32x2_t __ret; \
  54716. __ret = __s0 - __s1 * __builtin_shufflevector(__s2, __s2, __p3, __p3); \
  54717. __ret; \
  54718. })
  54719. #else
  54720. #define vmls_laneq_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  54721. int32x2_t __s0 = __p0; \
  54722. int32x2_t __s1 = __p1; \
  54723. int32x4_t __s2 = __p2; \
  54724. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  54725. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  54726. int32x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  54727. int32x2_t __ret; \
  54728. __ret = __rev0 - __rev1 * __builtin_shufflevector(__rev2, __rev2, __p3, __p3); \
  54729. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  54730. __ret; \
  54731. })
  54732. #endif
  54733. #ifdef __LITTLE_ENDIAN__
  54734. #define vmls_laneq_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  54735. int16x4_t __s0 = __p0; \
  54736. int16x4_t __s1 = __p1; \
  54737. int16x8_t __s2 = __p2; \
  54738. int16x4_t __ret; \
  54739. __ret = __s0 - __s1 * __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3); \
  54740. __ret; \
  54741. })
  54742. #else
  54743. #define vmls_laneq_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  54744. int16x4_t __s0 = __p0; \
  54745. int16x4_t __s1 = __p1; \
  54746. int16x8_t __s2 = __p2; \
  54747. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  54748. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  54749. int16x8_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 7, 6, 5, 4, 3, 2, 1, 0); \
  54750. int16x4_t __ret; \
  54751. __ret = __rev0 - __rev1 * __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3); \
  54752. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  54753. __ret; \
  54754. })
  54755. #endif
  54756. #ifdef __LITTLE_ENDIAN__
  54757. __ai float64x2_t vmlsq_n_f64(float64x2_t __p0, float64x2_t __p1, float64_t __p2) {
  54758. float64x2_t __ret;
  54759. __ret = __p0 - __p1 * (float64x2_t) {__p2, __p2};
  54760. return __ret;
  54761. }
  54762. #else
  54763. __ai float64x2_t vmlsq_n_f64(float64x2_t __p0, float64x2_t __p1, float64_t __p2) {
  54764. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  54765. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  54766. float64x2_t __ret;
  54767. __ret = __rev0 - __rev1 * (float64x2_t) {__p2, __p2};
  54768. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  54769. return __ret;
  54770. }
  54771. #endif
  54772. #ifdef __LITTLE_ENDIAN__
  54773. #define vmlsl_high_lane_u32(__p0, __p1, __p2, __p3) __extension__ ({ \
  54774. uint64x2_t __s0 = __p0; \
  54775. uint32x4_t __s1 = __p1; \
  54776. uint32x2_t __s2 = __p2; \
  54777. uint64x2_t __ret; \
  54778. __ret = __s0 - vmull_u32(vget_high_u32(__s1), __builtin_shufflevector(__s2, __s2, __p3, __p3)); \
  54779. __ret; \
  54780. })
  54781. #else
  54782. #define vmlsl_high_lane_u32(__p0, __p1, __p2, __p3) __extension__ ({ \
  54783. uint64x2_t __s0 = __p0; \
  54784. uint32x4_t __s1 = __p1; \
  54785. uint32x2_t __s2 = __p2; \
  54786. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  54787. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  54788. uint32x2_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 1, 0); \
  54789. uint64x2_t __ret; \
  54790. __ret = __rev0 - __noswap_vmull_u32(__noswap_vget_high_u32(__rev1), __builtin_shufflevector(__rev2, __rev2, __p3, __p3)); \
  54791. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  54792. __ret; \
  54793. })
  54794. #endif
  54795. #ifdef __LITTLE_ENDIAN__
  54796. #define vmlsl_high_lane_u16(__p0, __p1, __p2, __p3) __extension__ ({ \
  54797. uint32x4_t __s0 = __p0; \
  54798. uint16x8_t __s1 = __p1; \
  54799. uint16x4_t __s2 = __p2; \
  54800. uint32x4_t __ret; \
  54801. __ret = __s0 - vmull_u16(vget_high_u16(__s1), __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3)); \
  54802. __ret; \
  54803. })
  54804. #else
  54805. #define vmlsl_high_lane_u16(__p0, __p1, __p2, __p3) __extension__ ({ \
  54806. uint32x4_t __s0 = __p0; \
  54807. uint16x8_t __s1 = __p1; \
  54808. uint16x4_t __s2 = __p2; \
  54809. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  54810. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  54811. uint16x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  54812. uint32x4_t __ret; \
  54813. __ret = __rev0 - __noswap_vmull_u16(__noswap_vget_high_u16(__rev1), __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3)); \
  54814. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  54815. __ret; \
  54816. })
  54817. #endif
  54818. #ifdef __LITTLE_ENDIAN__
  54819. #define vmlsl_high_lane_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  54820. int64x2_t __s0 = __p0; \
  54821. int32x4_t __s1 = __p1; \
  54822. int32x2_t __s2 = __p2; \
  54823. int64x2_t __ret; \
  54824. __ret = __s0 - vmull_s32(vget_high_s32(__s1), __builtin_shufflevector(__s2, __s2, __p3, __p3)); \
  54825. __ret; \
  54826. })
  54827. #else
  54828. #define vmlsl_high_lane_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  54829. int64x2_t __s0 = __p0; \
  54830. int32x4_t __s1 = __p1; \
  54831. int32x2_t __s2 = __p2; \
  54832. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  54833. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  54834. int32x2_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 1, 0); \
  54835. int64x2_t __ret; \
  54836. __ret = __rev0 - __noswap_vmull_s32(__noswap_vget_high_s32(__rev1), __builtin_shufflevector(__rev2, __rev2, __p3, __p3)); \
  54837. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  54838. __ret; \
  54839. })
  54840. #endif
  54841. #ifdef __LITTLE_ENDIAN__
  54842. #define vmlsl_high_lane_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  54843. int32x4_t __s0 = __p0; \
  54844. int16x8_t __s1 = __p1; \
  54845. int16x4_t __s2 = __p2; \
  54846. int32x4_t __ret; \
  54847. __ret = __s0 - vmull_s16(vget_high_s16(__s1), __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3)); \
  54848. __ret; \
  54849. })
  54850. #else
  54851. #define vmlsl_high_lane_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  54852. int32x4_t __s0 = __p0; \
  54853. int16x8_t __s1 = __p1; \
  54854. int16x4_t __s2 = __p2; \
  54855. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  54856. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  54857. int16x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  54858. int32x4_t __ret; \
  54859. __ret = __rev0 - __noswap_vmull_s16(__noswap_vget_high_s16(__rev1), __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3)); \
  54860. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  54861. __ret; \
  54862. })
  54863. #endif
  54864. #ifdef __LITTLE_ENDIAN__
  54865. #define vmlsl_high_laneq_u32(__p0, __p1, __p2, __p3) __extension__ ({ \
  54866. uint64x2_t __s0 = __p0; \
  54867. uint32x4_t __s1 = __p1; \
  54868. uint32x4_t __s2 = __p2; \
  54869. uint64x2_t __ret; \
  54870. __ret = __s0 - vmull_u32(vget_high_u32(__s1), __builtin_shufflevector(__s2, __s2, __p3, __p3)); \
  54871. __ret; \
  54872. })
  54873. #else
  54874. #define vmlsl_high_laneq_u32(__p0, __p1, __p2, __p3) __extension__ ({ \
  54875. uint64x2_t __s0 = __p0; \
  54876. uint32x4_t __s1 = __p1; \
  54877. uint32x4_t __s2 = __p2; \
  54878. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  54879. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  54880. uint32x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  54881. uint64x2_t __ret; \
  54882. __ret = __rev0 - __noswap_vmull_u32(__noswap_vget_high_u32(__rev1), __builtin_shufflevector(__rev2, __rev2, __p3, __p3)); \
  54883. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  54884. __ret; \
  54885. })
  54886. #endif
  54887. #ifdef __LITTLE_ENDIAN__
  54888. #define vmlsl_high_laneq_u16(__p0, __p1, __p2, __p3) __extension__ ({ \
  54889. uint32x4_t __s0 = __p0; \
  54890. uint16x8_t __s1 = __p1; \
  54891. uint16x8_t __s2 = __p2; \
  54892. uint32x4_t __ret; \
  54893. __ret = __s0 - vmull_u16(vget_high_u16(__s1), __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3)); \
  54894. __ret; \
  54895. })
  54896. #else
  54897. #define vmlsl_high_laneq_u16(__p0, __p1, __p2, __p3) __extension__ ({ \
  54898. uint32x4_t __s0 = __p0; \
  54899. uint16x8_t __s1 = __p1; \
  54900. uint16x8_t __s2 = __p2; \
  54901. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  54902. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  54903. uint16x8_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 7, 6, 5, 4, 3, 2, 1, 0); \
  54904. uint32x4_t __ret; \
  54905. __ret = __rev0 - __noswap_vmull_u16(__noswap_vget_high_u16(__rev1), __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3)); \
  54906. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  54907. __ret; \
  54908. })
  54909. #endif
  54910. #ifdef __LITTLE_ENDIAN__
  54911. #define vmlsl_high_laneq_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  54912. int64x2_t __s0 = __p0; \
  54913. int32x4_t __s1 = __p1; \
  54914. int32x4_t __s2 = __p2; \
  54915. int64x2_t __ret; \
  54916. __ret = __s0 - vmull_s32(vget_high_s32(__s1), __builtin_shufflevector(__s2, __s2, __p3, __p3)); \
  54917. __ret; \
  54918. })
  54919. #else
  54920. #define vmlsl_high_laneq_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  54921. int64x2_t __s0 = __p0; \
  54922. int32x4_t __s1 = __p1; \
  54923. int32x4_t __s2 = __p2; \
  54924. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  54925. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  54926. int32x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  54927. int64x2_t __ret; \
  54928. __ret = __rev0 - __noswap_vmull_s32(__noswap_vget_high_s32(__rev1), __builtin_shufflevector(__rev2, __rev2, __p3, __p3)); \
  54929. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  54930. __ret; \
  54931. })
  54932. #endif
  54933. #ifdef __LITTLE_ENDIAN__
  54934. #define vmlsl_high_laneq_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  54935. int32x4_t __s0 = __p0; \
  54936. int16x8_t __s1 = __p1; \
  54937. int16x8_t __s2 = __p2; \
  54938. int32x4_t __ret; \
  54939. __ret = __s0 - vmull_s16(vget_high_s16(__s1), __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3)); \
  54940. __ret; \
  54941. })
  54942. #else
  54943. #define vmlsl_high_laneq_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  54944. int32x4_t __s0 = __p0; \
  54945. int16x8_t __s1 = __p1; \
  54946. int16x8_t __s2 = __p2; \
  54947. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  54948. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  54949. int16x8_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 7, 6, 5, 4, 3, 2, 1, 0); \
  54950. int32x4_t __ret; \
  54951. __ret = __rev0 - __noswap_vmull_s16(__noswap_vget_high_s16(__rev1), __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3)); \
  54952. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  54953. __ret; \
  54954. })
  54955. #endif
  54956. #ifdef __LITTLE_ENDIAN__
  54957. #define vmlsl_laneq_u32(__p0, __p1, __p2, __p3) __extension__ ({ \
  54958. uint64x2_t __s0 = __p0; \
  54959. uint32x2_t __s1 = __p1; \
  54960. uint32x4_t __s2 = __p2; \
  54961. uint64x2_t __ret; \
  54962. __ret = __s0 - vmull_u32(__s1, __builtin_shufflevector(__s2, __s2, __p3, __p3)); \
  54963. __ret; \
  54964. })
  54965. #else
  54966. #define vmlsl_laneq_u32(__p0, __p1, __p2, __p3) __extension__ ({ \
  54967. uint64x2_t __s0 = __p0; \
  54968. uint32x2_t __s1 = __p1; \
  54969. uint32x4_t __s2 = __p2; \
  54970. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  54971. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  54972. uint32x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  54973. uint64x2_t __ret; \
  54974. __ret = __rev0 - __noswap_vmull_u32(__rev1, __builtin_shufflevector(__rev2, __rev2, __p3, __p3)); \
  54975. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  54976. __ret; \
  54977. })
  54978. #endif
  54979. #ifdef __LITTLE_ENDIAN__
  54980. #define vmlsl_laneq_u16(__p0, __p1, __p2, __p3) __extension__ ({ \
  54981. uint32x4_t __s0 = __p0; \
  54982. uint16x4_t __s1 = __p1; \
  54983. uint16x8_t __s2 = __p2; \
  54984. uint32x4_t __ret; \
  54985. __ret = __s0 - vmull_u16(__s1, __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3)); \
  54986. __ret; \
  54987. })
  54988. #else
  54989. #define vmlsl_laneq_u16(__p0, __p1, __p2, __p3) __extension__ ({ \
  54990. uint32x4_t __s0 = __p0; \
  54991. uint16x4_t __s1 = __p1; \
  54992. uint16x8_t __s2 = __p2; \
  54993. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  54994. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  54995. uint16x8_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 7, 6, 5, 4, 3, 2, 1, 0); \
  54996. uint32x4_t __ret; \
  54997. __ret = __rev0 - __noswap_vmull_u16(__rev1, __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3)); \
  54998. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  54999. __ret; \
  55000. })
  55001. #endif
  55002. #ifdef __LITTLE_ENDIAN__
  55003. #define vmlsl_laneq_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  55004. int64x2_t __s0 = __p0; \
  55005. int32x2_t __s1 = __p1; \
  55006. int32x4_t __s2 = __p2; \
  55007. int64x2_t __ret; \
  55008. __ret = __s0 - vmull_s32(__s1, __builtin_shufflevector(__s2, __s2, __p3, __p3)); \
  55009. __ret; \
  55010. })
  55011. #else
  55012. #define vmlsl_laneq_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  55013. int64x2_t __s0 = __p0; \
  55014. int32x2_t __s1 = __p1; \
  55015. int32x4_t __s2 = __p2; \
  55016. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  55017. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  55018. int32x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  55019. int64x2_t __ret; \
  55020. __ret = __rev0 - __noswap_vmull_s32(__rev1, __builtin_shufflevector(__rev2, __rev2, __p3, __p3)); \
  55021. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  55022. __ret; \
  55023. })
  55024. #endif
  55025. #ifdef __LITTLE_ENDIAN__
  55026. #define vmlsl_laneq_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  55027. int32x4_t __s0 = __p0; \
  55028. int16x4_t __s1 = __p1; \
  55029. int16x8_t __s2 = __p2; \
  55030. int32x4_t __ret; \
  55031. __ret = __s0 - vmull_s16(__s1, __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3)); \
  55032. __ret; \
  55033. })
  55034. #else
  55035. #define vmlsl_laneq_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  55036. int32x4_t __s0 = __p0; \
  55037. int16x4_t __s1 = __p1; \
  55038. int16x8_t __s2 = __p2; \
  55039. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  55040. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  55041. int16x8_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 7, 6, 5, 4, 3, 2, 1, 0); \
  55042. int32x4_t __ret; \
  55043. __ret = __rev0 - __noswap_vmull_s16(__rev1, __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3)); \
  55044. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  55045. __ret; \
  55046. })
  55047. #endif
  55048. #ifdef __LITTLE_ENDIAN__
  55049. __ai poly64x1_t vmov_n_p64(poly64_t __p0) {
  55050. poly64x1_t __ret;
  55051. __ret = (poly64x1_t) {__p0};
  55052. return __ret;
  55053. }
  55054. #else
  55055. __ai poly64x1_t vmov_n_p64(poly64_t __p0) {
  55056. poly64x1_t __ret;
  55057. __ret = (poly64x1_t) {__p0};
  55058. return __ret;
  55059. }
  55060. #endif
  55061. #ifdef __LITTLE_ENDIAN__
  55062. __ai poly64x2_t vmovq_n_p64(poly64_t __p0) {
  55063. poly64x2_t __ret;
  55064. __ret = (poly64x2_t) {__p0, __p0};
  55065. return __ret;
  55066. }
  55067. #else
  55068. __ai poly64x2_t vmovq_n_p64(poly64_t __p0) {
  55069. poly64x2_t __ret;
  55070. __ret = (poly64x2_t) {__p0, __p0};
  55071. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  55072. return __ret;
  55073. }
  55074. #endif
  55075. #ifdef __LITTLE_ENDIAN__
  55076. __ai float64x2_t vmovq_n_f64(float64_t __p0) {
  55077. float64x2_t __ret;
  55078. __ret = (float64x2_t) {__p0, __p0};
  55079. return __ret;
  55080. }
  55081. #else
  55082. __ai float64x2_t vmovq_n_f64(float64_t __p0) {
  55083. float64x2_t __ret;
  55084. __ret = (float64x2_t) {__p0, __p0};
  55085. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  55086. return __ret;
  55087. }
  55088. #endif
  55089. #ifdef __LITTLE_ENDIAN__
  55090. __ai float64x1_t vmov_n_f64(float64_t __p0) {
  55091. float64x1_t __ret;
  55092. __ret = (float64x1_t) {__p0};
  55093. return __ret;
  55094. }
  55095. #else
  55096. __ai float64x1_t vmov_n_f64(float64_t __p0) {
  55097. float64x1_t __ret;
  55098. __ret = (float64x1_t) {__p0};
  55099. return __ret;
  55100. }
  55101. #endif
  55102. #ifdef __LITTLE_ENDIAN__
  55103. __ai uint16x8_t vmovl_high_u8(uint8x16_t __p0_124) {
  55104. uint16x8_t __ret_124;
  55105. uint8x8_t __a1_124 = vget_high_u8(__p0_124);
  55106. __ret_124 = (uint16x8_t)(vshll_n_u8(__a1_124, 0));
  55107. return __ret_124;
  55108. }
  55109. #else
  55110. __ai uint16x8_t vmovl_high_u8(uint8x16_t __p0_125) {
  55111. uint8x16_t __rev0_125; __rev0_125 = __builtin_shufflevector(__p0_125, __p0_125, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  55112. uint16x8_t __ret_125;
  55113. uint8x8_t __a1_125 = __noswap_vget_high_u8(__rev0_125);
  55114. __ret_125 = (uint16x8_t)(__noswap_vshll_n_u8(__a1_125, 0));
  55115. __ret_125 = __builtin_shufflevector(__ret_125, __ret_125, 7, 6, 5, 4, 3, 2, 1, 0);
  55116. return __ret_125;
  55117. }
  55118. __ai uint16x8_t __noswap_vmovl_high_u8(uint8x16_t __p0_126) {
  55119. uint16x8_t __ret_126;
  55120. uint8x8_t __a1_126 = __noswap_vget_high_u8(__p0_126);
  55121. __ret_126 = (uint16x8_t)(__noswap_vshll_n_u8(__a1_126, 0));
  55122. return __ret_126;
  55123. }
  55124. #endif
  55125. #ifdef __LITTLE_ENDIAN__
  55126. __ai uint64x2_t vmovl_high_u32(uint32x4_t __p0_127) {
  55127. uint64x2_t __ret_127;
  55128. uint32x2_t __a1_127 = vget_high_u32(__p0_127);
  55129. __ret_127 = (uint64x2_t)(vshll_n_u32(__a1_127, 0));
  55130. return __ret_127;
  55131. }
  55132. #else
  55133. __ai uint64x2_t vmovl_high_u32(uint32x4_t __p0_128) {
  55134. uint32x4_t __rev0_128; __rev0_128 = __builtin_shufflevector(__p0_128, __p0_128, 3, 2, 1, 0);
  55135. uint64x2_t __ret_128;
  55136. uint32x2_t __a1_128 = __noswap_vget_high_u32(__rev0_128);
  55137. __ret_128 = (uint64x2_t)(__noswap_vshll_n_u32(__a1_128, 0));
  55138. __ret_128 = __builtin_shufflevector(__ret_128, __ret_128, 1, 0);
  55139. return __ret_128;
  55140. }
  55141. __ai uint64x2_t __noswap_vmovl_high_u32(uint32x4_t __p0_129) {
  55142. uint64x2_t __ret_129;
  55143. uint32x2_t __a1_129 = __noswap_vget_high_u32(__p0_129);
  55144. __ret_129 = (uint64x2_t)(__noswap_vshll_n_u32(__a1_129, 0));
  55145. return __ret_129;
  55146. }
  55147. #endif
  55148. #ifdef __LITTLE_ENDIAN__
  55149. __ai uint32x4_t vmovl_high_u16(uint16x8_t __p0_130) {
  55150. uint32x4_t __ret_130;
  55151. uint16x4_t __a1_130 = vget_high_u16(__p0_130);
  55152. __ret_130 = (uint32x4_t)(vshll_n_u16(__a1_130, 0));
  55153. return __ret_130;
  55154. }
  55155. #else
  55156. __ai uint32x4_t vmovl_high_u16(uint16x8_t __p0_131) {
  55157. uint16x8_t __rev0_131; __rev0_131 = __builtin_shufflevector(__p0_131, __p0_131, 7, 6, 5, 4, 3, 2, 1, 0);
  55158. uint32x4_t __ret_131;
  55159. uint16x4_t __a1_131 = __noswap_vget_high_u16(__rev0_131);
  55160. __ret_131 = (uint32x4_t)(__noswap_vshll_n_u16(__a1_131, 0));
  55161. __ret_131 = __builtin_shufflevector(__ret_131, __ret_131, 3, 2, 1, 0);
  55162. return __ret_131;
  55163. }
  55164. __ai uint32x4_t __noswap_vmovl_high_u16(uint16x8_t __p0_132) {
  55165. uint32x4_t __ret_132;
  55166. uint16x4_t __a1_132 = __noswap_vget_high_u16(__p0_132);
  55167. __ret_132 = (uint32x4_t)(__noswap_vshll_n_u16(__a1_132, 0));
  55168. return __ret_132;
  55169. }
  55170. #endif
  55171. #ifdef __LITTLE_ENDIAN__
  55172. __ai int16x8_t vmovl_high_s8(int8x16_t __p0_133) {
  55173. int16x8_t __ret_133;
  55174. int8x8_t __a1_133 = vget_high_s8(__p0_133);
  55175. __ret_133 = (int16x8_t)(vshll_n_s8(__a1_133, 0));
  55176. return __ret_133;
  55177. }
  55178. #else
  55179. __ai int16x8_t vmovl_high_s8(int8x16_t __p0_134) {
  55180. int8x16_t __rev0_134; __rev0_134 = __builtin_shufflevector(__p0_134, __p0_134, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  55181. int16x8_t __ret_134;
  55182. int8x8_t __a1_134 = __noswap_vget_high_s8(__rev0_134);
  55183. __ret_134 = (int16x8_t)(__noswap_vshll_n_s8(__a1_134, 0));
  55184. __ret_134 = __builtin_shufflevector(__ret_134, __ret_134, 7, 6, 5, 4, 3, 2, 1, 0);
  55185. return __ret_134;
  55186. }
  55187. __ai int16x8_t __noswap_vmovl_high_s8(int8x16_t __p0_135) {
  55188. int16x8_t __ret_135;
  55189. int8x8_t __a1_135 = __noswap_vget_high_s8(__p0_135);
  55190. __ret_135 = (int16x8_t)(__noswap_vshll_n_s8(__a1_135, 0));
  55191. return __ret_135;
  55192. }
  55193. #endif
  55194. #ifdef __LITTLE_ENDIAN__
  55195. __ai int64x2_t vmovl_high_s32(int32x4_t __p0_136) {
  55196. int64x2_t __ret_136;
  55197. int32x2_t __a1_136 = vget_high_s32(__p0_136);
  55198. __ret_136 = (int64x2_t)(vshll_n_s32(__a1_136, 0));
  55199. return __ret_136;
  55200. }
  55201. #else
  55202. __ai int64x2_t vmovl_high_s32(int32x4_t __p0_137) {
  55203. int32x4_t __rev0_137; __rev0_137 = __builtin_shufflevector(__p0_137, __p0_137, 3, 2, 1, 0);
  55204. int64x2_t __ret_137;
  55205. int32x2_t __a1_137 = __noswap_vget_high_s32(__rev0_137);
  55206. __ret_137 = (int64x2_t)(__noswap_vshll_n_s32(__a1_137, 0));
  55207. __ret_137 = __builtin_shufflevector(__ret_137, __ret_137, 1, 0);
  55208. return __ret_137;
  55209. }
  55210. __ai int64x2_t __noswap_vmovl_high_s32(int32x4_t __p0_138) {
  55211. int64x2_t __ret_138;
  55212. int32x2_t __a1_138 = __noswap_vget_high_s32(__p0_138);
  55213. __ret_138 = (int64x2_t)(__noswap_vshll_n_s32(__a1_138, 0));
  55214. return __ret_138;
  55215. }
  55216. #endif
  55217. #ifdef __LITTLE_ENDIAN__
  55218. __ai int32x4_t vmovl_high_s16(int16x8_t __p0_139) {
  55219. int32x4_t __ret_139;
  55220. int16x4_t __a1_139 = vget_high_s16(__p0_139);
  55221. __ret_139 = (int32x4_t)(vshll_n_s16(__a1_139, 0));
  55222. return __ret_139;
  55223. }
  55224. #else
  55225. __ai int32x4_t vmovl_high_s16(int16x8_t __p0_140) {
  55226. int16x8_t __rev0_140; __rev0_140 = __builtin_shufflevector(__p0_140, __p0_140, 7, 6, 5, 4, 3, 2, 1, 0);
  55227. int32x4_t __ret_140;
  55228. int16x4_t __a1_140 = __noswap_vget_high_s16(__rev0_140);
  55229. __ret_140 = (int32x4_t)(__noswap_vshll_n_s16(__a1_140, 0));
  55230. __ret_140 = __builtin_shufflevector(__ret_140, __ret_140, 3, 2, 1, 0);
  55231. return __ret_140;
  55232. }
  55233. __ai int32x4_t __noswap_vmovl_high_s16(int16x8_t __p0_141) {
  55234. int32x4_t __ret_141;
  55235. int16x4_t __a1_141 = __noswap_vget_high_s16(__p0_141);
  55236. __ret_141 = (int32x4_t)(__noswap_vshll_n_s16(__a1_141, 0));
  55237. return __ret_141;
  55238. }
  55239. #endif
  55240. #ifdef __LITTLE_ENDIAN__
  55241. __ai uint16x8_t vmovn_high_u32(uint16x4_t __p0, uint32x4_t __p1) {
  55242. uint16x8_t __ret;
  55243. __ret = vcombine_u16(__p0, vmovn_u32(__p1));
  55244. return __ret;
  55245. }
  55246. #else
  55247. __ai uint16x8_t vmovn_high_u32(uint16x4_t __p0, uint32x4_t __p1) {
  55248. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  55249. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  55250. uint16x8_t __ret;
  55251. __ret = __noswap_vcombine_u16(__rev0, __noswap_vmovn_u32(__rev1));
  55252. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  55253. return __ret;
  55254. }
  55255. #endif
  55256. #ifdef __LITTLE_ENDIAN__
  55257. __ai uint32x4_t vmovn_high_u64(uint32x2_t __p0, uint64x2_t __p1) {
  55258. uint32x4_t __ret;
  55259. __ret = vcombine_u32(__p0, vmovn_u64(__p1));
  55260. return __ret;
  55261. }
  55262. #else
  55263. __ai uint32x4_t vmovn_high_u64(uint32x2_t __p0, uint64x2_t __p1) {
  55264. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  55265. uint64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  55266. uint32x4_t __ret;
  55267. __ret = __noswap_vcombine_u32(__rev0, __noswap_vmovn_u64(__rev1));
  55268. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  55269. return __ret;
  55270. }
  55271. #endif
  55272. #ifdef __LITTLE_ENDIAN__
  55273. __ai uint8x16_t vmovn_high_u16(uint8x8_t __p0, uint16x8_t __p1) {
  55274. uint8x16_t __ret;
  55275. __ret = vcombine_u8(__p0, vmovn_u16(__p1));
  55276. return __ret;
  55277. }
  55278. #else
  55279. __ai uint8x16_t vmovn_high_u16(uint8x8_t __p0, uint16x8_t __p1) {
  55280. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  55281. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  55282. uint8x16_t __ret;
  55283. __ret = __noswap_vcombine_u8(__rev0, __noswap_vmovn_u16(__rev1));
  55284. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  55285. return __ret;
  55286. }
  55287. #endif
  55288. #ifdef __LITTLE_ENDIAN__
  55289. __ai int16x8_t vmovn_high_s32(int16x4_t __p0, int32x4_t __p1) {
  55290. int16x8_t __ret;
  55291. __ret = vcombine_s16(__p0, vmovn_s32(__p1));
  55292. return __ret;
  55293. }
  55294. #else
  55295. __ai int16x8_t vmovn_high_s32(int16x4_t __p0, int32x4_t __p1) {
  55296. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  55297. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  55298. int16x8_t __ret;
  55299. __ret = __noswap_vcombine_s16(__rev0, __noswap_vmovn_s32(__rev1));
  55300. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  55301. return __ret;
  55302. }
  55303. #endif
  55304. #ifdef __LITTLE_ENDIAN__
  55305. __ai int32x4_t vmovn_high_s64(int32x2_t __p0, int64x2_t __p1) {
  55306. int32x4_t __ret;
  55307. __ret = vcombine_s32(__p0, vmovn_s64(__p1));
  55308. return __ret;
  55309. }
  55310. #else
  55311. __ai int32x4_t vmovn_high_s64(int32x2_t __p0, int64x2_t __p1) {
  55312. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  55313. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  55314. int32x4_t __ret;
  55315. __ret = __noswap_vcombine_s32(__rev0, __noswap_vmovn_s64(__rev1));
  55316. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  55317. return __ret;
  55318. }
  55319. #endif
  55320. #ifdef __LITTLE_ENDIAN__
  55321. __ai int8x16_t vmovn_high_s16(int8x8_t __p0, int16x8_t __p1) {
  55322. int8x16_t __ret;
  55323. __ret = vcombine_s8(__p0, vmovn_s16(__p1));
  55324. return __ret;
  55325. }
  55326. #else
  55327. __ai int8x16_t vmovn_high_s16(int8x8_t __p0, int16x8_t __p1) {
  55328. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  55329. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  55330. int8x16_t __ret;
  55331. __ret = __noswap_vcombine_s8(__rev0, __noswap_vmovn_s16(__rev1));
  55332. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  55333. return __ret;
  55334. }
  55335. #endif
  55336. #ifdef __LITTLE_ENDIAN__
  55337. __ai float64x2_t vmulq_f64(float64x2_t __p0, float64x2_t __p1) {
  55338. float64x2_t __ret;
  55339. __ret = __p0 * __p1;
  55340. return __ret;
  55341. }
  55342. #else
  55343. __ai float64x2_t vmulq_f64(float64x2_t __p0, float64x2_t __p1) {
  55344. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  55345. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  55346. float64x2_t __ret;
  55347. __ret = __rev0 * __rev1;
  55348. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  55349. return __ret;
  55350. }
  55351. #endif
  55352. #ifdef __LITTLE_ENDIAN__
  55353. __ai float64x1_t vmul_f64(float64x1_t __p0, float64x1_t __p1) {
  55354. float64x1_t __ret;
  55355. __ret = __p0 * __p1;
  55356. return __ret;
  55357. }
  55358. #else
  55359. __ai float64x1_t vmul_f64(float64x1_t __p0, float64x1_t __p1) {
  55360. float64x1_t __ret;
  55361. __ret = __p0 * __p1;
  55362. return __ret;
  55363. }
  55364. #endif
  55365. #ifdef __LITTLE_ENDIAN__
  55366. #define vmuld_lane_f64(__p0_142, __p1_142, __p2_142) __extension__ ({ \
  55367. float64_t __s0_142 = __p0_142; \
  55368. float64x1_t __s1_142 = __p1_142; \
  55369. float64_t __ret_142; \
  55370. __ret_142 = __s0_142 * vget_lane_f64(__s1_142, __p2_142); \
  55371. __ret_142; \
  55372. })
  55373. #else
  55374. #define vmuld_lane_f64(__p0_143, __p1_143, __p2_143) __extension__ ({ \
  55375. float64_t __s0_143 = __p0_143; \
  55376. float64x1_t __s1_143 = __p1_143; \
  55377. float64_t __ret_143; \
  55378. __ret_143 = __s0_143 * __noswap_vget_lane_f64(__s1_143, __p2_143); \
  55379. __ret_143; \
  55380. })
  55381. #endif
  55382. #ifdef __LITTLE_ENDIAN__
  55383. #define vmuls_lane_f32(__p0_144, __p1_144, __p2_144) __extension__ ({ \
  55384. float32_t __s0_144 = __p0_144; \
  55385. float32x2_t __s1_144 = __p1_144; \
  55386. float32_t __ret_144; \
  55387. __ret_144 = __s0_144 * vget_lane_f32(__s1_144, __p2_144); \
  55388. __ret_144; \
  55389. })
  55390. #else
  55391. #define vmuls_lane_f32(__p0_145, __p1_145, __p2_145) __extension__ ({ \
  55392. float32_t __s0_145 = __p0_145; \
  55393. float32x2_t __s1_145 = __p1_145; \
  55394. float32x2_t __rev1_145; __rev1_145 = __builtin_shufflevector(__s1_145, __s1_145, 1, 0); \
  55395. float32_t __ret_145; \
  55396. __ret_145 = __s0_145 * __noswap_vget_lane_f32(__rev1_145, __p2_145); \
  55397. __ret_145; \
  55398. })
  55399. #endif
  55400. #ifdef __LITTLE_ENDIAN__
  55401. #define vmul_lane_f64(__p0, __p1, __p2) __extension__ ({ \
  55402. float64x1_t __s0 = __p0; \
  55403. float64x1_t __s1 = __p1; \
  55404. float64x1_t __ret; \
  55405. __ret = (float64x1_t) __builtin_neon_vmul_lane_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 10); \
  55406. __ret; \
  55407. })
  55408. #else
  55409. #define vmul_lane_f64(__p0, __p1, __p2) __extension__ ({ \
  55410. float64x1_t __s0 = __p0; \
  55411. float64x1_t __s1 = __p1; \
  55412. float64x1_t __ret; \
  55413. __ret = (float64x1_t) __builtin_neon_vmul_lane_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 10); \
  55414. __ret; \
  55415. })
  55416. #endif
  55417. #ifdef __LITTLE_ENDIAN__
  55418. #define vmulq_lane_f64(__p0, __p1, __p2) __extension__ ({ \
  55419. float64x2_t __s0 = __p0; \
  55420. float64x1_t __s1 = __p1; \
  55421. float64x2_t __ret; \
  55422. __ret = __s0 * __builtin_shufflevector(__s1, __s1, __p2, __p2); \
  55423. __ret; \
  55424. })
  55425. #else
  55426. #define vmulq_lane_f64(__p0, __p1, __p2) __extension__ ({ \
  55427. float64x2_t __s0 = __p0; \
  55428. float64x1_t __s1 = __p1; \
  55429. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  55430. float64x2_t __ret; \
  55431. __ret = __rev0 * __builtin_shufflevector(__s1, __s1, __p2, __p2); \
  55432. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  55433. __ret; \
  55434. })
  55435. #endif
  55436. #ifdef __LITTLE_ENDIAN__
  55437. #define vmuld_laneq_f64(__p0_146, __p1_146, __p2_146) __extension__ ({ \
  55438. float64_t __s0_146 = __p0_146; \
  55439. float64x2_t __s1_146 = __p1_146; \
  55440. float64_t __ret_146; \
  55441. __ret_146 = __s0_146 * vgetq_lane_f64(__s1_146, __p2_146); \
  55442. __ret_146; \
  55443. })
  55444. #else
  55445. #define vmuld_laneq_f64(__p0_147, __p1_147, __p2_147) __extension__ ({ \
  55446. float64_t __s0_147 = __p0_147; \
  55447. float64x2_t __s1_147 = __p1_147; \
  55448. float64x2_t __rev1_147; __rev1_147 = __builtin_shufflevector(__s1_147, __s1_147, 1, 0); \
  55449. float64_t __ret_147; \
  55450. __ret_147 = __s0_147 * __noswap_vgetq_lane_f64(__rev1_147, __p2_147); \
  55451. __ret_147; \
  55452. })
  55453. #endif
  55454. #ifdef __LITTLE_ENDIAN__
  55455. #define vmuls_laneq_f32(__p0_148, __p1_148, __p2_148) __extension__ ({ \
  55456. float32_t __s0_148 = __p0_148; \
  55457. float32x4_t __s1_148 = __p1_148; \
  55458. float32_t __ret_148; \
  55459. __ret_148 = __s0_148 * vgetq_lane_f32(__s1_148, __p2_148); \
  55460. __ret_148; \
  55461. })
  55462. #else
  55463. #define vmuls_laneq_f32(__p0_149, __p1_149, __p2_149) __extension__ ({ \
  55464. float32_t __s0_149 = __p0_149; \
  55465. float32x4_t __s1_149 = __p1_149; \
  55466. float32x4_t __rev1_149; __rev1_149 = __builtin_shufflevector(__s1_149, __s1_149, 3, 2, 1, 0); \
  55467. float32_t __ret_149; \
  55468. __ret_149 = __s0_149 * __noswap_vgetq_lane_f32(__rev1_149, __p2_149); \
  55469. __ret_149; \
  55470. })
  55471. #endif
  55472. #ifdef __LITTLE_ENDIAN__
  55473. #define vmul_laneq_f64(__p0, __p1, __p2) __extension__ ({ \
  55474. float64x1_t __s0 = __p0; \
  55475. float64x2_t __s1 = __p1; \
  55476. float64x1_t __ret; \
  55477. __ret = (float64x1_t) __builtin_neon_vmul_laneq_v((int8x8_t)__s0, (int8x16_t)__s1, __p2, 10); \
  55478. __ret; \
  55479. })
  55480. #else
  55481. #define vmul_laneq_f64(__p0, __p1, __p2) __extension__ ({ \
  55482. float64x1_t __s0 = __p0; \
  55483. float64x2_t __s1 = __p1; \
  55484. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  55485. float64x1_t __ret; \
  55486. __ret = (float64x1_t) __builtin_neon_vmul_laneq_v((int8x8_t)__s0, (int8x16_t)__rev1, __p2, 10); \
  55487. __ret; \
  55488. })
  55489. #endif
  55490. #ifdef __LITTLE_ENDIAN__
  55491. #define vmulq_laneq_u32(__p0, __p1, __p2) __extension__ ({ \
  55492. uint32x4_t __s0 = __p0; \
  55493. uint32x4_t __s1 = __p1; \
  55494. uint32x4_t __ret; \
  55495. __ret = __s0 * __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2); \
  55496. __ret; \
  55497. })
  55498. #else
  55499. #define vmulq_laneq_u32(__p0, __p1, __p2) __extension__ ({ \
  55500. uint32x4_t __s0 = __p0; \
  55501. uint32x4_t __s1 = __p1; \
  55502. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  55503. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  55504. uint32x4_t __ret; \
  55505. __ret = __rev0 * __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2); \
  55506. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  55507. __ret; \
  55508. })
  55509. #endif
  55510. #ifdef __LITTLE_ENDIAN__
  55511. #define vmulq_laneq_u16(__p0, __p1, __p2) __extension__ ({ \
  55512. uint16x8_t __s0 = __p0; \
  55513. uint16x8_t __s1 = __p1; \
  55514. uint16x8_t __ret; \
  55515. __ret = __s0 * __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2, __p2, __p2, __p2, __p2); \
  55516. __ret; \
  55517. })
  55518. #else
  55519. #define vmulq_laneq_u16(__p0, __p1, __p2) __extension__ ({ \
  55520. uint16x8_t __s0 = __p0; \
  55521. uint16x8_t __s1 = __p1; \
  55522. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  55523. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  55524. uint16x8_t __ret; \
  55525. __ret = __rev0 * __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2, __p2, __p2, __p2, __p2); \
  55526. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  55527. __ret; \
  55528. })
  55529. #endif
  55530. #ifdef __LITTLE_ENDIAN__
  55531. #define vmulq_laneq_f64(__p0, __p1, __p2) __extension__ ({ \
  55532. float64x2_t __s0 = __p0; \
  55533. float64x2_t __s1 = __p1; \
  55534. float64x2_t __ret; \
  55535. __ret = __s0 * __builtin_shufflevector(__s1, __s1, __p2, __p2); \
  55536. __ret; \
  55537. })
  55538. #else
  55539. #define vmulq_laneq_f64(__p0, __p1, __p2) __extension__ ({ \
  55540. float64x2_t __s0 = __p0; \
  55541. float64x2_t __s1 = __p1; \
  55542. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  55543. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  55544. float64x2_t __ret; \
  55545. __ret = __rev0 * __builtin_shufflevector(__rev1, __rev1, __p2, __p2); \
  55546. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  55547. __ret; \
  55548. })
  55549. #endif
  55550. #ifdef __LITTLE_ENDIAN__
  55551. #define vmulq_laneq_f32(__p0, __p1, __p2) __extension__ ({ \
  55552. float32x4_t __s0 = __p0; \
  55553. float32x4_t __s1 = __p1; \
  55554. float32x4_t __ret; \
  55555. __ret = __s0 * __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2); \
  55556. __ret; \
  55557. })
  55558. #else
  55559. #define vmulq_laneq_f32(__p0, __p1, __p2) __extension__ ({ \
  55560. float32x4_t __s0 = __p0; \
  55561. float32x4_t __s1 = __p1; \
  55562. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  55563. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  55564. float32x4_t __ret; \
  55565. __ret = __rev0 * __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2); \
  55566. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  55567. __ret; \
  55568. })
  55569. #endif
  55570. #ifdef __LITTLE_ENDIAN__
  55571. #define vmulq_laneq_s32(__p0, __p1, __p2) __extension__ ({ \
  55572. int32x4_t __s0 = __p0; \
  55573. int32x4_t __s1 = __p1; \
  55574. int32x4_t __ret; \
  55575. __ret = __s0 * __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2); \
  55576. __ret; \
  55577. })
  55578. #else
  55579. #define vmulq_laneq_s32(__p0, __p1, __p2) __extension__ ({ \
  55580. int32x4_t __s0 = __p0; \
  55581. int32x4_t __s1 = __p1; \
  55582. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  55583. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  55584. int32x4_t __ret; \
  55585. __ret = __rev0 * __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2); \
  55586. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  55587. __ret; \
  55588. })
  55589. #endif
  55590. #ifdef __LITTLE_ENDIAN__
  55591. #define vmulq_laneq_s16(__p0, __p1, __p2) __extension__ ({ \
  55592. int16x8_t __s0 = __p0; \
  55593. int16x8_t __s1 = __p1; \
  55594. int16x8_t __ret; \
  55595. __ret = __s0 * __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2, __p2, __p2, __p2, __p2); \
  55596. __ret; \
  55597. })
  55598. #else
  55599. #define vmulq_laneq_s16(__p0, __p1, __p2) __extension__ ({ \
  55600. int16x8_t __s0 = __p0; \
  55601. int16x8_t __s1 = __p1; \
  55602. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  55603. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  55604. int16x8_t __ret; \
  55605. __ret = __rev0 * __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2, __p2, __p2, __p2, __p2); \
  55606. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  55607. __ret; \
  55608. })
  55609. #endif
  55610. #ifdef __LITTLE_ENDIAN__
  55611. #define vmul_laneq_u32(__p0, __p1, __p2) __extension__ ({ \
  55612. uint32x2_t __s0 = __p0; \
  55613. uint32x4_t __s1 = __p1; \
  55614. uint32x2_t __ret; \
  55615. __ret = __s0 * __builtin_shufflevector(__s1, __s1, __p2, __p2); \
  55616. __ret; \
  55617. })
  55618. #else
  55619. #define vmul_laneq_u32(__p0, __p1, __p2) __extension__ ({ \
  55620. uint32x2_t __s0 = __p0; \
  55621. uint32x4_t __s1 = __p1; \
  55622. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  55623. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  55624. uint32x2_t __ret; \
  55625. __ret = __rev0 * __builtin_shufflevector(__rev1, __rev1, __p2, __p2); \
  55626. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  55627. __ret; \
  55628. })
  55629. #endif
  55630. #ifdef __LITTLE_ENDIAN__
  55631. #define vmul_laneq_u16(__p0, __p1, __p2) __extension__ ({ \
  55632. uint16x4_t __s0 = __p0; \
  55633. uint16x8_t __s1 = __p1; \
  55634. uint16x4_t __ret; \
  55635. __ret = __s0 * __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2); \
  55636. __ret; \
  55637. })
  55638. #else
  55639. #define vmul_laneq_u16(__p0, __p1, __p2) __extension__ ({ \
  55640. uint16x4_t __s0 = __p0; \
  55641. uint16x8_t __s1 = __p1; \
  55642. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  55643. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  55644. uint16x4_t __ret; \
  55645. __ret = __rev0 * __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2); \
  55646. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  55647. __ret; \
  55648. })
  55649. #endif
  55650. #ifdef __LITTLE_ENDIAN__
  55651. #define vmul_laneq_f32(__p0, __p1, __p2) __extension__ ({ \
  55652. float32x2_t __s0 = __p0; \
  55653. float32x4_t __s1 = __p1; \
  55654. float32x2_t __ret; \
  55655. __ret = __s0 * __builtin_shufflevector(__s1, __s1, __p2, __p2); \
  55656. __ret; \
  55657. })
  55658. #else
  55659. #define vmul_laneq_f32(__p0, __p1, __p2) __extension__ ({ \
  55660. float32x2_t __s0 = __p0; \
  55661. float32x4_t __s1 = __p1; \
  55662. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  55663. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  55664. float32x2_t __ret; \
  55665. __ret = __rev0 * __builtin_shufflevector(__rev1, __rev1, __p2, __p2); \
  55666. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  55667. __ret; \
  55668. })
  55669. #endif
  55670. #ifdef __LITTLE_ENDIAN__
  55671. #define vmul_laneq_s32(__p0, __p1, __p2) __extension__ ({ \
  55672. int32x2_t __s0 = __p0; \
  55673. int32x4_t __s1 = __p1; \
  55674. int32x2_t __ret; \
  55675. __ret = __s0 * __builtin_shufflevector(__s1, __s1, __p2, __p2); \
  55676. __ret; \
  55677. })
  55678. #else
  55679. #define vmul_laneq_s32(__p0, __p1, __p2) __extension__ ({ \
  55680. int32x2_t __s0 = __p0; \
  55681. int32x4_t __s1 = __p1; \
  55682. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  55683. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  55684. int32x2_t __ret; \
  55685. __ret = __rev0 * __builtin_shufflevector(__rev1, __rev1, __p2, __p2); \
  55686. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  55687. __ret; \
  55688. })
  55689. #endif
  55690. #ifdef __LITTLE_ENDIAN__
  55691. #define vmul_laneq_s16(__p0, __p1, __p2) __extension__ ({ \
  55692. int16x4_t __s0 = __p0; \
  55693. int16x8_t __s1 = __p1; \
  55694. int16x4_t __ret; \
  55695. __ret = __s0 * __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2); \
  55696. __ret; \
  55697. })
  55698. #else
  55699. #define vmul_laneq_s16(__p0, __p1, __p2) __extension__ ({ \
  55700. int16x4_t __s0 = __p0; \
  55701. int16x8_t __s1 = __p1; \
  55702. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  55703. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  55704. int16x4_t __ret; \
  55705. __ret = __rev0 * __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2); \
  55706. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  55707. __ret; \
  55708. })
  55709. #endif
  55710. #ifdef __LITTLE_ENDIAN__
  55711. __ai float64x1_t vmul_n_f64(float64x1_t __p0, float64_t __p1) {
  55712. float64x1_t __ret;
  55713. __ret = (float64x1_t) __builtin_neon_vmul_n_f64((int8x8_t)__p0, __p1);
  55714. return __ret;
  55715. }
  55716. #else
  55717. __ai float64x1_t vmul_n_f64(float64x1_t __p0, float64_t __p1) {
  55718. float64x1_t __ret;
  55719. __ret = (float64x1_t) __builtin_neon_vmul_n_f64((int8x8_t)__p0, __p1);
  55720. return __ret;
  55721. }
  55722. #endif
  55723. #ifdef __LITTLE_ENDIAN__
  55724. __ai float64x2_t vmulq_n_f64(float64x2_t __p0, float64_t __p1) {
  55725. float64x2_t __ret;
  55726. __ret = __p0 * (float64x2_t) {__p1, __p1};
  55727. return __ret;
  55728. }
  55729. #else
  55730. __ai float64x2_t vmulq_n_f64(float64x2_t __p0, float64_t __p1) {
  55731. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  55732. float64x2_t __ret;
  55733. __ret = __rev0 * (float64x2_t) {__p1, __p1};
  55734. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  55735. return __ret;
  55736. }
  55737. #endif
  55738. #ifdef __LITTLE_ENDIAN__
  55739. __ai poly128_t vmull_p64(poly64_t __p0, poly64_t __p1) {
  55740. poly128_t __ret;
  55741. __ret = (poly128_t) __builtin_neon_vmull_p64(__p0, __p1);
  55742. return __ret;
  55743. }
  55744. #else
  55745. __ai poly128_t vmull_p64(poly64_t __p0, poly64_t __p1) {
  55746. poly128_t __ret;
  55747. __ret = (poly128_t) __builtin_neon_vmull_p64(__p0, __p1);
  55748. return __ret;
  55749. }
  55750. __ai poly128_t __noswap_vmull_p64(poly64_t __p0, poly64_t __p1) {
  55751. poly128_t __ret;
  55752. __ret = (poly128_t) __builtin_neon_vmull_p64(__p0, __p1);
  55753. return __ret;
  55754. }
  55755. #endif
  55756. #ifdef __LITTLE_ENDIAN__
  55757. __ai poly16x8_t vmull_high_p8(poly8x16_t __p0, poly8x16_t __p1) {
  55758. poly16x8_t __ret;
  55759. __ret = vmull_p8(vget_high_p8(__p0), vget_high_p8(__p1));
  55760. return __ret;
  55761. }
  55762. #else
  55763. __ai poly16x8_t vmull_high_p8(poly8x16_t __p0, poly8x16_t __p1) {
  55764. poly8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  55765. poly8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  55766. poly16x8_t __ret;
  55767. __ret = __noswap_vmull_p8(__noswap_vget_high_p8(__rev0), __noswap_vget_high_p8(__rev1));
  55768. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  55769. return __ret;
  55770. }
  55771. #endif
  55772. #ifdef __LITTLE_ENDIAN__
  55773. __ai uint16x8_t vmull_high_u8(uint8x16_t __p0, uint8x16_t __p1) {
  55774. uint16x8_t __ret;
  55775. __ret = vmull_u8(vget_high_u8(__p0), vget_high_u8(__p1));
  55776. return __ret;
  55777. }
  55778. #else
  55779. __ai uint16x8_t vmull_high_u8(uint8x16_t __p0, uint8x16_t __p1) {
  55780. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  55781. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  55782. uint16x8_t __ret;
  55783. __ret = __noswap_vmull_u8(__noswap_vget_high_u8(__rev0), __noswap_vget_high_u8(__rev1));
  55784. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  55785. return __ret;
  55786. }
  55787. #endif
  55788. #ifdef __LITTLE_ENDIAN__
  55789. __ai uint64x2_t vmull_high_u32(uint32x4_t __p0, uint32x4_t __p1) {
  55790. uint64x2_t __ret;
  55791. __ret = vmull_u32(vget_high_u32(__p0), vget_high_u32(__p1));
  55792. return __ret;
  55793. }
  55794. #else
  55795. __ai uint64x2_t vmull_high_u32(uint32x4_t __p0, uint32x4_t __p1) {
  55796. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  55797. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  55798. uint64x2_t __ret;
  55799. __ret = __noswap_vmull_u32(__noswap_vget_high_u32(__rev0), __noswap_vget_high_u32(__rev1));
  55800. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  55801. return __ret;
  55802. }
  55803. #endif
  55804. #ifdef __LITTLE_ENDIAN__
  55805. __ai uint32x4_t vmull_high_u16(uint16x8_t __p0, uint16x8_t __p1) {
  55806. uint32x4_t __ret;
  55807. __ret = vmull_u16(vget_high_u16(__p0), vget_high_u16(__p1));
  55808. return __ret;
  55809. }
  55810. #else
  55811. __ai uint32x4_t vmull_high_u16(uint16x8_t __p0, uint16x8_t __p1) {
  55812. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  55813. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  55814. uint32x4_t __ret;
  55815. __ret = __noswap_vmull_u16(__noswap_vget_high_u16(__rev0), __noswap_vget_high_u16(__rev1));
  55816. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  55817. return __ret;
  55818. }
  55819. #endif
  55820. #ifdef __LITTLE_ENDIAN__
  55821. __ai int16x8_t vmull_high_s8(int8x16_t __p0, int8x16_t __p1) {
  55822. int16x8_t __ret;
  55823. __ret = vmull_s8(vget_high_s8(__p0), vget_high_s8(__p1));
  55824. return __ret;
  55825. }
  55826. #else
  55827. __ai int16x8_t vmull_high_s8(int8x16_t __p0, int8x16_t __p1) {
  55828. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  55829. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  55830. int16x8_t __ret;
  55831. __ret = __noswap_vmull_s8(__noswap_vget_high_s8(__rev0), __noswap_vget_high_s8(__rev1));
  55832. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  55833. return __ret;
  55834. }
  55835. #endif
  55836. #ifdef __LITTLE_ENDIAN__
  55837. __ai int64x2_t vmull_high_s32(int32x4_t __p0, int32x4_t __p1) {
  55838. int64x2_t __ret;
  55839. __ret = vmull_s32(vget_high_s32(__p0), vget_high_s32(__p1));
  55840. return __ret;
  55841. }
  55842. #else
  55843. __ai int64x2_t vmull_high_s32(int32x4_t __p0, int32x4_t __p1) {
  55844. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  55845. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  55846. int64x2_t __ret;
  55847. __ret = __noswap_vmull_s32(__noswap_vget_high_s32(__rev0), __noswap_vget_high_s32(__rev1));
  55848. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  55849. return __ret;
  55850. }
  55851. #endif
  55852. #ifdef __LITTLE_ENDIAN__
  55853. __ai int32x4_t vmull_high_s16(int16x8_t __p0, int16x8_t __p1) {
  55854. int32x4_t __ret;
  55855. __ret = vmull_s16(vget_high_s16(__p0), vget_high_s16(__p1));
  55856. return __ret;
  55857. }
  55858. #else
  55859. __ai int32x4_t vmull_high_s16(int16x8_t __p0, int16x8_t __p1) {
  55860. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  55861. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  55862. int32x4_t __ret;
  55863. __ret = __noswap_vmull_s16(__noswap_vget_high_s16(__rev0), __noswap_vget_high_s16(__rev1));
  55864. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  55865. return __ret;
  55866. }
  55867. #endif
  55868. #ifdef __LITTLE_ENDIAN__
  55869. __ai poly128_t vmull_high_p64(poly64x2_t __p0, poly64x2_t __p1) {
  55870. poly128_t __ret;
  55871. __ret = vmull_p64((poly64_t)(vget_high_p64(__p0)), (poly64_t)(vget_high_p64(__p1)));
  55872. return __ret;
  55873. }
  55874. #else
  55875. __ai poly128_t vmull_high_p64(poly64x2_t __p0, poly64x2_t __p1) {
  55876. poly64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  55877. poly64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  55878. poly128_t __ret;
  55879. __ret = __noswap_vmull_p64((poly64_t)(__noswap_vget_high_p64(__rev0)), (poly64_t)(__noswap_vget_high_p64(__rev1)));
  55880. return __ret;
  55881. }
  55882. #endif
  55883. #ifdef __LITTLE_ENDIAN__
  55884. #define vmull_high_lane_u32(__p0, __p1, __p2) __extension__ ({ \
  55885. uint32x4_t __s0 = __p0; \
  55886. uint32x2_t __s1 = __p1; \
  55887. uint64x2_t __ret; \
  55888. __ret = vmull_u32(vget_high_u32(__s0), __builtin_shufflevector(__s1, __s1, __p2, __p2)); \
  55889. __ret; \
  55890. })
  55891. #else
  55892. #define vmull_high_lane_u32(__p0, __p1, __p2) __extension__ ({ \
  55893. uint32x4_t __s0 = __p0; \
  55894. uint32x2_t __s1 = __p1; \
  55895. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  55896. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  55897. uint64x2_t __ret; \
  55898. __ret = __noswap_vmull_u32(__noswap_vget_high_u32(__rev0), __builtin_shufflevector(__rev1, __rev1, __p2, __p2)); \
  55899. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  55900. __ret; \
  55901. })
  55902. #endif
  55903. #ifdef __LITTLE_ENDIAN__
  55904. #define vmull_high_lane_u16(__p0, __p1, __p2) __extension__ ({ \
  55905. uint16x8_t __s0 = __p0; \
  55906. uint16x4_t __s1 = __p1; \
  55907. uint32x4_t __ret; \
  55908. __ret = vmull_u16(vget_high_u16(__s0), __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2)); \
  55909. __ret; \
  55910. })
  55911. #else
  55912. #define vmull_high_lane_u16(__p0, __p1, __p2) __extension__ ({ \
  55913. uint16x8_t __s0 = __p0; \
  55914. uint16x4_t __s1 = __p1; \
  55915. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  55916. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  55917. uint32x4_t __ret; \
  55918. __ret = __noswap_vmull_u16(__noswap_vget_high_u16(__rev0), __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2)); \
  55919. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  55920. __ret; \
  55921. })
  55922. #endif
  55923. #ifdef __LITTLE_ENDIAN__
  55924. #define vmull_high_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  55925. int32x4_t __s0 = __p0; \
  55926. int32x2_t __s1 = __p1; \
  55927. int64x2_t __ret; \
  55928. __ret = vmull_s32(vget_high_s32(__s0), __builtin_shufflevector(__s1, __s1, __p2, __p2)); \
  55929. __ret; \
  55930. })
  55931. #else
  55932. #define vmull_high_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  55933. int32x4_t __s0 = __p0; \
  55934. int32x2_t __s1 = __p1; \
  55935. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  55936. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  55937. int64x2_t __ret; \
  55938. __ret = __noswap_vmull_s32(__noswap_vget_high_s32(__rev0), __builtin_shufflevector(__rev1, __rev1, __p2, __p2)); \
  55939. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  55940. __ret; \
  55941. })
  55942. #endif
  55943. #ifdef __LITTLE_ENDIAN__
  55944. #define vmull_high_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  55945. int16x8_t __s0 = __p0; \
  55946. int16x4_t __s1 = __p1; \
  55947. int32x4_t __ret; \
  55948. __ret = vmull_s16(vget_high_s16(__s0), __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2)); \
  55949. __ret; \
  55950. })
  55951. #else
  55952. #define vmull_high_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  55953. int16x8_t __s0 = __p0; \
  55954. int16x4_t __s1 = __p1; \
  55955. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  55956. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  55957. int32x4_t __ret; \
  55958. __ret = __noswap_vmull_s16(__noswap_vget_high_s16(__rev0), __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2)); \
  55959. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  55960. __ret; \
  55961. })
  55962. #endif
  55963. #ifdef __LITTLE_ENDIAN__
  55964. #define vmull_high_laneq_u32(__p0, __p1, __p2) __extension__ ({ \
  55965. uint32x4_t __s0 = __p0; \
  55966. uint32x4_t __s1 = __p1; \
  55967. uint64x2_t __ret; \
  55968. __ret = vmull_u32(vget_high_u32(__s0), __builtin_shufflevector(__s1, __s1, __p2, __p2)); \
  55969. __ret; \
  55970. })
  55971. #else
  55972. #define vmull_high_laneq_u32(__p0, __p1, __p2) __extension__ ({ \
  55973. uint32x4_t __s0 = __p0; \
  55974. uint32x4_t __s1 = __p1; \
  55975. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  55976. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  55977. uint64x2_t __ret; \
  55978. __ret = __noswap_vmull_u32(__noswap_vget_high_u32(__rev0), __builtin_shufflevector(__rev1, __rev1, __p2, __p2)); \
  55979. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  55980. __ret; \
  55981. })
  55982. #endif
  55983. #ifdef __LITTLE_ENDIAN__
  55984. #define vmull_high_laneq_u16(__p0, __p1, __p2) __extension__ ({ \
  55985. uint16x8_t __s0 = __p0; \
  55986. uint16x8_t __s1 = __p1; \
  55987. uint32x4_t __ret; \
  55988. __ret = vmull_u16(vget_high_u16(__s0), __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2)); \
  55989. __ret; \
  55990. })
  55991. #else
  55992. #define vmull_high_laneq_u16(__p0, __p1, __p2) __extension__ ({ \
  55993. uint16x8_t __s0 = __p0; \
  55994. uint16x8_t __s1 = __p1; \
  55995. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  55996. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  55997. uint32x4_t __ret; \
  55998. __ret = __noswap_vmull_u16(__noswap_vget_high_u16(__rev0), __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2)); \
  55999. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  56000. __ret; \
  56001. })
  56002. #endif
  56003. #ifdef __LITTLE_ENDIAN__
  56004. #define vmull_high_laneq_s32(__p0, __p1, __p2) __extension__ ({ \
  56005. int32x4_t __s0 = __p0; \
  56006. int32x4_t __s1 = __p1; \
  56007. int64x2_t __ret; \
  56008. __ret = vmull_s32(vget_high_s32(__s0), __builtin_shufflevector(__s1, __s1, __p2, __p2)); \
  56009. __ret; \
  56010. })
  56011. #else
  56012. #define vmull_high_laneq_s32(__p0, __p1, __p2) __extension__ ({ \
  56013. int32x4_t __s0 = __p0; \
  56014. int32x4_t __s1 = __p1; \
  56015. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  56016. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  56017. int64x2_t __ret; \
  56018. __ret = __noswap_vmull_s32(__noswap_vget_high_s32(__rev0), __builtin_shufflevector(__rev1, __rev1, __p2, __p2)); \
  56019. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  56020. __ret; \
  56021. })
  56022. #endif
  56023. #ifdef __LITTLE_ENDIAN__
  56024. #define vmull_high_laneq_s16(__p0, __p1, __p2) __extension__ ({ \
  56025. int16x8_t __s0 = __p0; \
  56026. int16x8_t __s1 = __p1; \
  56027. int32x4_t __ret; \
  56028. __ret = vmull_s16(vget_high_s16(__s0), __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2)); \
  56029. __ret; \
  56030. })
  56031. #else
  56032. #define vmull_high_laneq_s16(__p0, __p1, __p2) __extension__ ({ \
  56033. int16x8_t __s0 = __p0; \
  56034. int16x8_t __s1 = __p1; \
  56035. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  56036. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  56037. int32x4_t __ret; \
  56038. __ret = __noswap_vmull_s16(__noswap_vget_high_s16(__rev0), __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2)); \
  56039. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  56040. __ret; \
  56041. })
  56042. #endif
  56043. #ifdef __LITTLE_ENDIAN__
  56044. __ai uint64x2_t vmull_high_n_u32(uint32x4_t __p0, uint32_t __p1) {
  56045. uint64x2_t __ret;
  56046. __ret = vmull_n_u32(vget_high_u32(__p0), __p1);
  56047. return __ret;
  56048. }
  56049. #else
  56050. __ai uint64x2_t vmull_high_n_u32(uint32x4_t __p0, uint32_t __p1) {
  56051. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  56052. uint64x2_t __ret;
  56053. __ret = __noswap_vmull_n_u32(__noswap_vget_high_u32(__rev0), __p1);
  56054. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  56055. return __ret;
  56056. }
  56057. #endif
  56058. #ifdef __LITTLE_ENDIAN__
  56059. __ai uint32x4_t vmull_high_n_u16(uint16x8_t __p0, uint16_t __p1) {
  56060. uint32x4_t __ret;
  56061. __ret = vmull_n_u16(vget_high_u16(__p0), __p1);
  56062. return __ret;
  56063. }
  56064. #else
  56065. __ai uint32x4_t vmull_high_n_u16(uint16x8_t __p0, uint16_t __p1) {
  56066. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  56067. uint32x4_t __ret;
  56068. __ret = __noswap_vmull_n_u16(__noswap_vget_high_u16(__rev0), __p1);
  56069. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  56070. return __ret;
  56071. }
  56072. #endif
  56073. #ifdef __LITTLE_ENDIAN__
  56074. __ai int64x2_t vmull_high_n_s32(int32x4_t __p0, int32_t __p1) {
  56075. int64x2_t __ret;
  56076. __ret = vmull_n_s32(vget_high_s32(__p0), __p1);
  56077. return __ret;
  56078. }
  56079. #else
  56080. __ai int64x2_t vmull_high_n_s32(int32x4_t __p0, int32_t __p1) {
  56081. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  56082. int64x2_t __ret;
  56083. __ret = __noswap_vmull_n_s32(__noswap_vget_high_s32(__rev0), __p1);
  56084. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  56085. return __ret;
  56086. }
  56087. #endif
  56088. #ifdef __LITTLE_ENDIAN__
  56089. __ai int32x4_t vmull_high_n_s16(int16x8_t __p0, int16_t __p1) {
  56090. int32x4_t __ret;
  56091. __ret = vmull_n_s16(vget_high_s16(__p0), __p1);
  56092. return __ret;
  56093. }
  56094. #else
  56095. __ai int32x4_t vmull_high_n_s16(int16x8_t __p0, int16_t __p1) {
  56096. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  56097. int32x4_t __ret;
  56098. __ret = __noswap_vmull_n_s16(__noswap_vget_high_s16(__rev0), __p1);
  56099. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  56100. return __ret;
  56101. }
  56102. #endif
  56103. #ifdef __LITTLE_ENDIAN__
  56104. #define vmull_laneq_u32(__p0, __p1, __p2) __extension__ ({ \
  56105. uint32x2_t __s0 = __p0; \
  56106. uint32x4_t __s1 = __p1; \
  56107. uint64x2_t __ret; \
  56108. __ret = vmull_u32(__s0, __builtin_shufflevector(__s1, __s1, __p2, __p2)); \
  56109. __ret; \
  56110. })
  56111. #else
  56112. #define vmull_laneq_u32(__p0, __p1, __p2) __extension__ ({ \
  56113. uint32x2_t __s0 = __p0; \
  56114. uint32x4_t __s1 = __p1; \
  56115. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  56116. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  56117. uint64x2_t __ret; \
  56118. __ret = __noswap_vmull_u32(__rev0, __builtin_shufflevector(__rev1, __rev1, __p2, __p2)); \
  56119. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  56120. __ret; \
  56121. })
  56122. #endif
  56123. #ifdef __LITTLE_ENDIAN__
  56124. #define vmull_laneq_u16(__p0, __p1, __p2) __extension__ ({ \
  56125. uint16x4_t __s0 = __p0; \
  56126. uint16x8_t __s1 = __p1; \
  56127. uint32x4_t __ret; \
  56128. __ret = vmull_u16(__s0, __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2)); \
  56129. __ret; \
  56130. })
  56131. #else
  56132. #define vmull_laneq_u16(__p0, __p1, __p2) __extension__ ({ \
  56133. uint16x4_t __s0 = __p0; \
  56134. uint16x8_t __s1 = __p1; \
  56135. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  56136. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  56137. uint32x4_t __ret; \
  56138. __ret = __noswap_vmull_u16(__rev0, __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2)); \
  56139. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  56140. __ret; \
  56141. })
  56142. #endif
  56143. #ifdef __LITTLE_ENDIAN__
  56144. #define vmull_laneq_s32(__p0, __p1, __p2) __extension__ ({ \
  56145. int32x2_t __s0 = __p0; \
  56146. int32x4_t __s1 = __p1; \
  56147. int64x2_t __ret; \
  56148. __ret = vmull_s32(__s0, __builtin_shufflevector(__s1, __s1, __p2, __p2)); \
  56149. __ret; \
  56150. })
  56151. #else
  56152. #define vmull_laneq_s32(__p0, __p1, __p2) __extension__ ({ \
  56153. int32x2_t __s0 = __p0; \
  56154. int32x4_t __s1 = __p1; \
  56155. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  56156. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  56157. int64x2_t __ret; \
  56158. __ret = __noswap_vmull_s32(__rev0, __builtin_shufflevector(__rev1, __rev1, __p2, __p2)); \
  56159. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  56160. __ret; \
  56161. })
  56162. #endif
  56163. #ifdef __LITTLE_ENDIAN__
  56164. #define vmull_laneq_s16(__p0, __p1, __p2) __extension__ ({ \
  56165. int16x4_t __s0 = __p0; \
  56166. int16x8_t __s1 = __p1; \
  56167. int32x4_t __ret; \
  56168. __ret = vmull_s16(__s0, __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2)); \
  56169. __ret; \
  56170. })
  56171. #else
  56172. #define vmull_laneq_s16(__p0, __p1, __p2) __extension__ ({ \
  56173. int16x4_t __s0 = __p0; \
  56174. int16x8_t __s1 = __p1; \
  56175. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  56176. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  56177. int32x4_t __ret; \
  56178. __ret = __noswap_vmull_s16(__rev0, __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2)); \
  56179. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  56180. __ret; \
  56181. })
  56182. #endif
  56183. #ifdef __LITTLE_ENDIAN__
  56184. __ai float64x2_t vmulxq_f64(float64x2_t __p0, float64x2_t __p1) {
  56185. float64x2_t __ret;
  56186. __ret = (float64x2_t) __builtin_neon_vmulxq_v((int8x16_t)__p0, (int8x16_t)__p1, 42);
  56187. return __ret;
  56188. }
  56189. #else
  56190. __ai float64x2_t vmulxq_f64(float64x2_t __p0, float64x2_t __p1) {
  56191. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  56192. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  56193. float64x2_t __ret;
  56194. __ret = (float64x2_t) __builtin_neon_vmulxq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 42);
  56195. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  56196. return __ret;
  56197. }
  56198. __ai float64x2_t __noswap_vmulxq_f64(float64x2_t __p0, float64x2_t __p1) {
  56199. float64x2_t __ret;
  56200. __ret = (float64x2_t) __builtin_neon_vmulxq_v((int8x16_t)__p0, (int8x16_t)__p1, 42);
  56201. return __ret;
  56202. }
  56203. #endif
  56204. #ifdef __LITTLE_ENDIAN__
  56205. __ai float32x4_t vmulxq_f32(float32x4_t __p0, float32x4_t __p1) {
  56206. float32x4_t __ret;
  56207. __ret = (float32x4_t) __builtin_neon_vmulxq_v((int8x16_t)__p0, (int8x16_t)__p1, 41);
  56208. return __ret;
  56209. }
  56210. #else
  56211. __ai float32x4_t vmulxq_f32(float32x4_t __p0, float32x4_t __p1) {
  56212. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  56213. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  56214. float32x4_t __ret;
  56215. __ret = (float32x4_t) __builtin_neon_vmulxq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 41);
  56216. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  56217. return __ret;
  56218. }
  56219. __ai float32x4_t __noswap_vmulxq_f32(float32x4_t __p0, float32x4_t __p1) {
  56220. float32x4_t __ret;
  56221. __ret = (float32x4_t) __builtin_neon_vmulxq_v((int8x16_t)__p0, (int8x16_t)__p1, 41);
  56222. return __ret;
  56223. }
  56224. #endif
  56225. #ifdef __LITTLE_ENDIAN__
  56226. __ai float64x1_t vmulx_f64(float64x1_t __p0, float64x1_t __p1) {
  56227. float64x1_t __ret;
  56228. __ret = (float64x1_t) __builtin_neon_vmulx_v((int8x8_t)__p0, (int8x8_t)__p1, 10);
  56229. return __ret;
  56230. }
  56231. #else
  56232. __ai float64x1_t vmulx_f64(float64x1_t __p0, float64x1_t __p1) {
  56233. float64x1_t __ret;
  56234. __ret = (float64x1_t) __builtin_neon_vmulx_v((int8x8_t)__p0, (int8x8_t)__p1, 10);
  56235. return __ret;
  56236. }
  56237. #endif
  56238. #ifdef __LITTLE_ENDIAN__
  56239. __ai float32x2_t vmulx_f32(float32x2_t __p0, float32x2_t __p1) {
  56240. float32x2_t __ret;
  56241. __ret = (float32x2_t) __builtin_neon_vmulx_v((int8x8_t)__p0, (int8x8_t)__p1, 9);
  56242. return __ret;
  56243. }
  56244. #else
  56245. __ai float32x2_t vmulx_f32(float32x2_t __p0, float32x2_t __p1) {
  56246. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  56247. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  56248. float32x2_t __ret;
  56249. __ret = (float32x2_t) __builtin_neon_vmulx_v((int8x8_t)__rev0, (int8x8_t)__rev1, 9);
  56250. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  56251. return __ret;
  56252. }
  56253. __ai float32x2_t __noswap_vmulx_f32(float32x2_t __p0, float32x2_t __p1) {
  56254. float32x2_t __ret;
  56255. __ret = (float32x2_t) __builtin_neon_vmulx_v((int8x8_t)__p0, (int8x8_t)__p1, 9);
  56256. return __ret;
  56257. }
  56258. #endif
  56259. #ifdef __LITTLE_ENDIAN__
  56260. __ai float64_t vmulxd_f64(float64_t __p0, float64_t __p1) {
  56261. float64_t __ret;
  56262. __ret = (float64_t) __builtin_neon_vmulxd_f64(__p0, __p1);
  56263. return __ret;
  56264. }
  56265. #else
  56266. __ai float64_t vmulxd_f64(float64_t __p0, float64_t __p1) {
  56267. float64_t __ret;
  56268. __ret = (float64_t) __builtin_neon_vmulxd_f64(__p0, __p1);
  56269. return __ret;
  56270. }
  56271. __ai float64_t __noswap_vmulxd_f64(float64_t __p0, float64_t __p1) {
  56272. float64_t __ret;
  56273. __ret = (float64_t) __builtin_neon_vmulxd_f64(__p0, __p1);
  56274. return __ret;
  56275. }
  56276. #endif
  56277. #ifdef __LITTLE_ENDIAN__
  56278. __ai float32_t vmulxs_f32(float32_t __p0, float32_t __p1) {
  56279. float32_t __ret;
  56280. __ret = (float32_t) __builtin_neon_vmulxs_f32(__p0, __p1);
  56281. return __ret;
  56282. }
  56283. #else
  56284. __ai float32_t vmulxs_f32(float32_t __p0, float32_t __p1) {
  56285. float32_t __ret;
  56286. __ret = (float32_t) __builtin_neon_vmulxs_f32(__p0, __p1);
  56287. return __ret;
  56288. }
  56289. __ai float32_t __noswap_vmulxs_f32(float32_t __p0, float32_t __p1) {
  56290. float32_t __ret;
  56291. __ret = (float32_t) __builtin_neon_vmulxs_f32(__p0, __p1);
  56292. return __ret;
  56293. }
  56294. #endif
  56295. #ifdef __LITTLE_ENDIAN__
  56296. #define vmulxd_lane_f64(__p0_150, __p1_150, __p2_150) __extension__ ({ \
  56297. float64_t __s0_150 = __p0_150; \
  56298. float64x1_t __s1_150 = __p1_150; \
  56299. float64_t __ret_150; \
  56300. __ret_150 = vmulxd_f64(__s0_150, vget_lane_f64(__s1_150, __p2_150)); \
  56301. __ret_150; \
  56302. })
  56303. #else
  56304. #define vmulxd_lane_f64(__p0_151, __p1_151, __p2_151) __extension__ ({ \
  56305. float64_t __s0_151 = __p0_151; \
  56306. float64x1_t __s1_151 = __p1_151; \
  56307. float64_t __ret_151; \
  56308. __ret_151 = __noswap_vmulxd_f64(__s0_151, __noswap_vget_lane_f64(__s1_151, __p2_151)); \
  56309. __ret_151; \
  56310. })
  56311. #endif
  56312. #ifdef __LITTLE_ENDIAN__
  56313. #define vmulxs_lane_f32(__p0_152, __p1_152, __p2_152) __extension__ ({ \
  56314. float32_t __s0_152 = __p0_152; \
  56315. float32x2_t __s1_152 = __p1_152; \
  56316. float32_t __ret_152; \
  56317. __ret_152 = vmulxs_f32(__s0_152, vget_lane_f32(__s1_152, __p2_152)); \
  56318. __ret_152; \
  56319. })
  56320. #else
  56321. #define vmulxs_lane_f32(__p0_153, __p1_153, __p2_153) __extension__ ({ \
  56322. float32_t __s0_153 = __p0_153; \
  56323. float32x2_t __s1_153 = __p1_153; \
  56324. float32x2_t __rev1_153; __rev1_153 = __builtin_shufflevector(__s1_153, __s1_153, 1, 0); \
  56325. float32_t __ret_153; \
  56326. __ret_153 = __noswap_vmulxs_f32(__s0_153, __noswap_vget_lane_f32(__rev1_153, __p2_153)); \
  56327. __ret_153; \
  56328. })
  56329. #endif
  56330. #ifdef __LITTLE_ENDIAN__
  56331. #define vmulxq_lane_f64(__p0, __p1, __p2) __extension__ ({ \
  56332. float64x2_t __s0 = __p0; \
  56333. float64x1_t __s1 = __p1; \
  56334. float64x2_t __ret; \
  56335. __ret = vmulxq_f64(__s0, __builtin_shufflevector(__s1, __s1, __p2, __p2)); \
  56336. __ret; \
  56337. })
  56338. #else
  56339. #define vmulxq_lane_f64(__p0, __p1, __p2) __extension__ ({ \
  56340. float64x2_t __s0 = __p0; \
  56341. float64x1_t __s1 = __p1; \
  56342. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  56343. float64x2_t __ret; \
  56344. __ret = __noswap_vmulxq_f64(__rev0, __builtin_shufflevector(__s1, __s1, __p2, __p2)); \
  56345. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  56346. __ret; \
  56347. })
  56348. #endif
  56349. #ifdef __LITTLE_ENDIAN__
  56350. #define vmulxq_lane_f32(__p0, __p1, __p2) __extension__ ({ \
  56351. float32x4_t __s0 = __p0; \
  56352. float32x2_t __s1 = __p1; \
  56353. float32x4_t __ret; \
  56354. __ret = vmulxq_f32(__s0, __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2)); \
  56355. __ret; \
  56356. })
  56357. #else
  56358. #define vmulxq_lane_f32(__p0, __p1, __p2) __extension__ ({ \
  56359. float32x4_t __s0 = __p0; \
  56360. float32x2_t __s1 = __p1; \
  56361. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  56362. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  56363. float32x4_t __ret; \
  56364. __ret = __noswap_vmulxq_f32(__rev0, __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2)); \
  56365. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  56366. __ret; \
  56367. })
  56368. #endif
  56369. #ifdef __LITTLE_ENDIAN__
  56370. #define vmulx_lane_f32(__p0, __p1, __p2) __extension__ ({ \
  56371. float32x2_t __s0 = __p0; \
  56372. float32x2_t __s1 = __p1; \
  56373. float32x2_t __ret; \
  56374. __ret = vmulx_f32(__s0, __builtin_shufflevector(__s1, __s1, __p2, __p2)); \
  56375. __ret; \
  56376. })
  56377. #else
  56378. #define vmulx_lane_f32(__p0, __p1, __p2) __extension__ ({ \
  56379. float32x2_t __s0 = __p0; \
  56380. float32x2_t __s1 = __p1; \
  56381. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  56382. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  56383. float32x2_t __ret; \
  56384. __ret = __noswap_vmulx_f32(__rev0, __builtin_shufflevector(__rev1, __rev1, __p2, __p2)); \
  56385. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  56386. __ret; \
  56387. })
  56388. #endif
  56389. #ifdef __LITTLE_ENDIAN__
  56390. #define vmulxd_laneq_f64(__p0_154, __p1_154, __p2_154) __extension__ ({ \
  56391. float64_t __s0_154 = __p0_154; \
  56392. float64x2_t __s1_154 = __p1_154; \
  56393. float64_t __ret_154; \
  56394. __ret_154 = vmulxd_f64(__s0_154, vgetq_lane_f64(__s1_154, __p2_154)); \
  56395. __ret_154; \
  56396. })
  56397. #else
  56398. #define vmulxd_laneq_f64(__p0_155, __p1_155, __p2_155) __extension__ ({ \
  56399. float64_t __s0_155 = __p0_155; \
  56400. float64x2_t __s1_155 = __p1_155; \
  56401. float64x2_t __rev1_155; __rev1_155 = __builtin_shufflevector(__s1_155, __s1_155, 1, 0); \
  56402. float64_t __ret_155; \
  56403. __ret_155 = __noswap_vmulxd_f64(__s0_155, __noswap_vgetq_lane_f64(__rev1_155, __p2_155)); \
  56404. __ret_155; \
  56405. })
  56406. #endif
  56407. #ifdef __LITTLE_ENDIAN__
  56408. #define vmulxs_laneq_f32(__p0_156, __p1_156, __p2_156) __extension__ ({ \
  56409. float32_t __s0_156 = __p0_156; \
  56410. float32x4_t __s1_156 = __p1_156; \
  56411. float32_t __ret_156; \
  56412. __ret_156 = vmulxs_f32(__s0_156, vgetq_lane_f32(__s1_156, __p2_156)); \
  56413. __ret_156; \
  56414. })
  56415. #else
  56416. #define vmulxs_laneq_f32(__p0_157, __p1_157, __p2_157) __extension__ ({ \
  56417. float32_t __s0_157 = __p0_157; \
  56418. float32x4_t __s1_157 = __p1_157; \
  56419. float32x4_t __rev1_157; __rev1_157 = __builtin_shufflevector(__s1_157, __s1_157, 3, 2, 1, 0); \
  56420. float32_t __ret_157; \
  56421. __ret_157 = __noswap_vmulxs_f32(__s0_157, __noswap_vgetq_lane_f32(__rev1_157, __p2_157)); \
  56422. __ret_157; \
  56423. })
  56424. #endif
  56425. #ifdef __LITTLE_ENDIAN__
  56426. #define vmulxq_laneq_f64(__p0, __p1, __p2) __extension__ ({ \
  56427. float64x2_t __s0 = __p0; \
  56428. float64x2_t __s1 = __p1; \
  56429. float64x2_t __ret; \
  56430. __ret = vmulxq_f64(__s0, __builtin_shufflevector(__s1, __s1, __p2, __p2)); \
  56431. __ret; \
  56432. })
  56433. #else
  56434. #define vmulxq_laneq_f64(__p0, __p1, __p2) __extension__ ({ \
  56435. float64x2_t __s0 = __p0; \
  56436. float64x2_t __s1 = __p1; \
  56437. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  56438. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  56439. float64x2_t __ret; \
  56440. __ret = __noswap_vmulxq_f64(__rev0, __builtin_shufflevector(__rev1, __rev1, __p2, __p2)); \
  56441. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  56442. __ret; \
  56443. })
  56444. #endif
  56445. #ifdef __LITTLE_ENDIAN__
  56446. #define vmulxq_laneq_f32(__p0, __p1, __p2) __extension__ ({ \
  56447. float32x4_t __s0 = __p0; \
  56448. float32x4_t __s1 = __p1; \
  56449. float32x4_t __ret; \
  56450. __ret = vmulxq_f32(__s0, __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2)); \
  56451. __ret; \
  56452. })
  56453. #else
  56454. #define vmulxq_laneq_f32(__p0, __p1, __p2) __extension__ ({ \
  56455. float32x4_t __s0 = __p0; \
  56456. float32x4_t __s1 = __p1; \
  56457. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  56458. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  56459. float32x4_t __ret; \
  56460. __ret = __noswap_vmulxq_f32(__rev0, __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2)); \
  56461. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  56462. __ret; \
  56463. })
  56464. #endif
  56465. #ifdef __LITTLE_ENDIAN__
  56466. #define vmulx_laneq_f32(__p0, __p1, __p2) __extension__ ({ \
  56467. float32x2_t __s0 = __p0; \
  56468. float32x4_t __s1 = __p1; \
  56469. float32x2_t __ret; \
  56470. __ret = vmulx_f32(__s0, __builtin_shufflevector(__s1, __s1, __p2, __p2)); \
  56471. __ret; \
  56472. })
  56473. #else
  56474. #define vmulx_laneq_f32(__p0, __p1, __p2) __extension__ ({ \
  56475. float32x2_t __s0 = __p0; \
  56476. float32x4_t __s1 = __p1; \
  56477. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  56478. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  56479. float32x2_t __ret; \
  56480. __ret = __noswap_vmulx_f32(__rev0, __builtin_shufflevector(__rev1, __rev1, __p2, __p2)); \
  56481. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  56482. __ret; \
  56483. })
  56484. #endif
  56485. #ifdef __LITTLE_ENDIAN__
  56486. __ai float64x2_t vnegq_f64(float64x2_t __p0) {
  56487. float64x2_t __ret;
  56488. __ret = -__p0;
  56489. return __ret;
  56490. }
  56491. #else
  56492. __ai float64x2_t vnegq_f64(float64x2_t __p0) {
  56493. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  56494. float64x2_t __ret;
  56495. __ret = -__rev0;
  56496. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  56497. return __ret;
  56498. }
  56499. #endif
  56500. #ifdef __LITTLE_ENDIAN__
  56501. __ai int64x2_t vnegq_s64(int64x2_t __p0) {
  56502. int64x2_t __ret;
  56503. __ret = -__p0;
  56504. return __ret;
  56505. }
  56506. #else
  56507. __ai int64x2_t vnegq_s64(int64x2_t __p0) {
  56508. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  56509. int64x2_t __ret;
  56510. __ret = -__rev0;
  56511. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  56512. return __ret;
  56513. }
  56514. #endif
  56515. #ifdef __LITTLE_ENDIAN__
  56516. __ai float64x1_t vneg_f64(float64x1_t __p0) {
  56517. float64x1_t __ret;
  56518. __ret = -__p0;
  56519. return __ret;
  56520. }
  56521. #else
  56522. __ai float64x1_t vneg_f64(float64x1_t __p0) {
  56523. float64x1_t __ret;
  56524. __ret = -__p0;
  56525. return __ret;
  56526. }
  56527. #endif
  56528. #ifdef __LITTLE_ENDIAN__
  56529. __ai int64x1_t vneg_s64(int64x1_t __p0) {
  56530. int64x1_t __ret;
  56531. __ret = -__p0;
  56532. return __ret;
  56533. }
  56534. #else
  56535. __ai int64x1_t vneg_s64(int64x1_t __p0) {
  56536. int64x1_t __ret;
  56537. __ret = -__p0;
  56538. return __ret;
  56539. }
  56540. #endif
  56541. #ifdef __LITTLE_ENDIAN__
  56542. __ai int64_t vnegd_s64(int64_t __p0) {
  56543. int64_t __ret;
  56544. __ret = (int64_t) __builtin_neon_vnegd_s64(__p0);
  56545. return __ret;
  56546. }
  56547. #else
  56548. __ai int64_t vnegd_s64(int64_t __p0) {
  56549. int64_t __ret;
  56550. __ret = (int64_t) __builtin_neon_vnegd_s64(__p0);
  56551. return __ret;
  56552. }
  56553. #endif
  56554. #ifdef __LITTLE_ENDIAN__
  56555. __ai uint8x16_t vpaddq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  56556. uint8x16_t __ret;
  56557. __ret = (uint8x16_t) __builtin_neon_vpaddq_v((int8x16_t)__p0, (int8x16_t)__p1, 48);
  56558. return __ret;
  56559. }
  56560. #else
  56561. __ai uint8x16_t vpaddq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  56562. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  56563. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  56564. uint8x16_t __ret;
  56565. __ret = (uint8x16_t) __builtin_neon_vpaddq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 48);
  56566. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  56567. return __ret;
  56568. }
  56569. #endif
  56570. #ifdef __LITTLE_ENDIAN__
  56571. __ai uint32x4_t vpaddq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  56572. uint32x4_t __ret;
  56573. __ret = (uint32x4_t) __builtin_neon_vpaddq_v((int8x16_t)__p0, (int8x16_t)__p1, 50);
  56574. return __ret;
  56575. }
  56576. #else
  56577. __ai uint32x4_t vpaddq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  56578. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  56579. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  56580. uint32x4_t __ret;
  56581. __ret = (uint32x4_t) __builtin_neon_vpaddq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 50);
  56582. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  56583. return __ret;
  56584. }
  56585. #endif
  56586. #ifdef __LITTLE_ENDIAN__
  56587. __ai uint64x2_t vpaddq_u64(uint64x2_t __p0, uint64x2_t __p1) {
  56588. uint64x2_t __ret;
  56589. __ret = (uint64x2_t) __builtin_neon_vpaddq_v((int8x16_t)__p0, (int8x16_t)__p1, 51);
  56590. return __ret;
  56591. }
  56592. #else
  56593. __ai uint64x2_t vpaddq_u64(uint64x2_t __p0, uint64x2_t __p1) {
  56594. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  56595. uint64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  56596. uint64x2_t __ret;
  56597. __ret = (uint64x2_t) __builtin_neon_vpaddq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 51);
  56598. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  56599. return __ret;
  56600. }
  56601. #endif
  56602. #ifdef __LITTLE_ENDIAN__
  56603. __ai uint16x8_t vpaddq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  56604. uint16x8_t __ret;
  56605. __ret = (uint16x8_t) __builtin_neon_vpaddq_v((int8x16_t)__p0, (int8x16_t)__p1, 49);
  56606. return __ret;
  56607. }
  56608. #else
  56609. __ai uint16x8_t vpaddq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  56610. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  56611. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  56612. uint16x8_t __ret;
  56613. __ret = (uint16x8_t) __builtin_neon_vpaddq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 49);
  56614. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  56615. return __ret;
  56616. }
  56617. #endif
  56618. #ifdef __LITTLE_ENDIAN__
  56619. __ai int8x16_t vpaddq_s8(int8x16_t __p0, int8x16_t __p1) {
  56620. int8x16_t __ret;
  56621. __ret = (int8x16_t) __builtin_neon_vpaddq_v((int8x16_t)__p0, (int8x16_t)__p1, 32);
  56622. return __ret;
  56623. }
  56624. #else
  56625. __ai int8x16_t vpaddq_s8(int8x16_t __p0, int8x16_t __p1) {
  56626. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  56627. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  56628. int8x16_t __ret;
  56629. __ret = (int8x16_t) __builtin_neon_vpaddq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 32);
  56630. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  56631. return __ret;
  56632. }
  56633. #endif
  56634. #ifdef __LITTLE_ENDIAN__
  56635. __ai float64x2_t vpaddq_f64(float64x2_t __p0, float64x2_t __p1) {
  56636. float64x2_t __ret;
  56637. __ret = (float64x2_t) __builtin_neon_vpaddq_v((int8x16_t)__p0, (int8x16_t)__p1, 42);
  56638. return __ret;
  56639. }
  56640. #else
  56641. __ai float64x2_t vpaddq_f64(float64x2_t __p0, float64x2_t __p1) {
  56642. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  56643. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  56644. float64x2_t __ret;
  56645. __ret = (float64x2_t) __builtin_neon_vpaddq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 42);
  56646. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  56647. return __ret;
  56648. }
  56649. #endif
  56650. #ifdef __LITTLE_ENDIAN__
  56651. __ai float32x4_t vpaddq_f32(float32x4_t __p0, float32x4_t __p1) {
  56652. float32x4_t __ret;
  56653. __ret = (float32x4_t) __builtin_neon_vpaddq_v((int8x16_t)__p0, (int8x16_t)__p1, 41);
  56654. return __ret;
  56655. }
  56656. #else
  56657. __ai float32x4_t vpaddq_f32(float32x4_t __p0, float32x4_t __p1) {
  56658. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  56659. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  56660. float32x4_t __ret;
  56661. __ret = (float32x4_t) __builtin_neon_vpaddq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 41);
  56662. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  56663. return __ret;
  56664. }
  56665. #endif
  56666. #ifdef __LITTLE_ENDIAN__
  56667. __ai int32x4_t vpaddq_s32(int32x4_t __p0, int32x4_t __p1) {
  56668. int32x4_t __ret;
  56669. __ret = (int32x4_t) __builtin_neon_vpaddq_v((int8x16_t)__p0, (int8x16_t)__p1, 34);
  56670. return __ret;
  56671. }
  56672. #else
  56673. __ai int32x4_t vpaddq_s32(int32x4_t __p0, int32x4_t __p1) {
  56674. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  56675. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  56676. int32x4_t __ret;
  56677. __ret = (int32x4_t) __builtin_neon_vpaddq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 34);
  56678. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  56679. return __ret;
  56680. }
  56681. #endif
  56682. #ifdef __LITTLE_ENDIAN__
  56683. __ai int64x2_t vpaddq_s64(int64x2_t __p0, int64x2_t __p1) {
  56684. int64x2_t __ret;
  56685. __ret = (int64x2_t) __builtin_neon_vpaddq_v((int8x16_t)__p0, (int8x16_t)__p1, 35);
  56686. return __ret;
  56687. }
  56688. #else
  56689. __ai int64x2_t vpaddq_s64(int64x2_t __p0, int64x2_t __p1) {
  56690. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  56691. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  56692. int64x2_t __ret;
  56693. __ret = (int64x2_t) __builtin_neon_vpaddq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 35);
  56694. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  56695. return __ret;
  56696. }
  56697. #endif
  56698. #ifdef __LITTLE_ENDIAN__
  56699. __ai int16x8_t vpaddq_s16(int16x8_t __p0, int16x8_t __p1) {
  56700. int16x8_t __ret;
  56701. __ret = (int16x8_t) __builtin_neon_vpaddq_v((int8x16_t)__p0, (int8x16_t)__p1, 33);
  56702. return __ret;
  56703. }
  56704. #else
  56705. __ai int16x8_t vpaddq_s16(int16x8_t __p0, int16x8_t __p1) {
  56706. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  56707. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  56708. int16x8_t __ret;
  56709. __ret = (int16x8_t) __builtin_neon_vpaddq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 33);
  56710. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  56711. return __ret;
  56712. }
  56713. #endif
  56714. #ifdef __LITTLE_ENDIAN__
  56715. __ai uint64_t vpaddd_u64(uint64x2_t __p0) {
  56716. uint64_t __ret;
  56717. __ret = (uint64_t) __builtin_neon_vpaddd_u64((int8x16_t)__p0);
  56718. return __ret;
  56719. }
  56720. #else
  56721. __ai uint64_t vpaddd_u64(uint64x2_t __p0) {
  56722. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  56723. uint64_t __ret;
  56724. __ret = (uint64_t) __builtin_neon_vpaddd_u64((int8x16_t)__rev0);
  56725. return __ret;
  56726. }
  56727. #endif
  56728. #ifdef __LITTLE_ENDIAN__
  56729. __ai float64_t vpaddd_f64(float64x2_t __p0) {
  56730. float64_t __ret;
  56731. __ret = (float64_t) __builtin_neon_vpaddd_f64((int8x16_t)__p0);
  56732. return __ret;
  56733. }
  56734. #else
  56735. __ai float64_t vpaddd_f64(float64x2_t __p0) {
  56736. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  56737. float64_t __ret;
  56738. __ret = (float64_t) __builtin_neon_vpaddd_f64((int8x16_t)__rev0);
  56739. return __ret;
  56740. }
  56741. #endif
  56742. #ifdef __LITTLE_ENDIAN__
  56743. __ai int64_t vpaddd_s64(int64x2_t __p0) {
  56744. int64_t __ret;
  56745. __ret = (int64_t) __builtin_neon_vpaddd_s64((int8x16_t)__p0);
  56746. return __ret;
  56747. }
  56748. #else
  56749. __ai int64_t vpaddd_s64(int64x2_t __p0) {
  56750. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  56751. int64_t __ret;
  56752. __ret = (int64_t) __builtin_neon_vpaddd_s64((int8x16_t)__rev0);
  56753. return __ret;
  56754. }
  56755. #endif
  56756. #ifdef __LITTLE_ENDIAN__
  56757. __ai float32_t vpadds_f32(float32x2_t __p0) {
  56758. float32_t __ret;
  56759. __ret = (float32_t) __builtin_neon_vpadds_f32((int8x8_t)__p0);
  56760. return __ret;
  56761. }
  56762. #else
  56763. __ai float32_t vpadds_f32(float32x2_t __p0) {
  56764. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  56765. float32_t __ret;
  56766. __ret = (float32_t) __builtin_neon_vpadds_f32((int8x8_t)__rev0);
  56767. return __ret;
  56768. }
  56769. #endif
  56770. #ifdef __LITTLE_ENDIAN__
  56771. __ai uint8x16_t vpmaxq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  56772. uint8x16_t __ret;
  56773. __ret = (uint8x16_t) __builtin_neon_vpmaxq_v((int8x16_t)__p0, (int8x16_t)__p1, 48);
  56774. return __ret;
  56775. }
  56776. #else
  56777. __ai uint8x16_t vpmaxq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  56778. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  56779. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  56780. uint8x16_t __ret;
  56781. __ret = (uint8x16_t) __builtin_neon_vpmaxq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 48);
  56782. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  56783. return __ret;
  56784. }
  56785. #endif
  56786. #ifdef __LITTLE_ENDIAN__
  56787. __ai uint32x4_t vpmaxq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  56788. uint32x4_t __ret;
  56789. __ret = (uint32x4_t) __builtin_neon_vpmaxq_v((int8x16_t)__p0, (int8x16_t)__p1, 50);
  56790. return __ret;
  56791. }
  56792. #else
  56793. __ai uint32x4_t vpmaxq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  56794. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  56795. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  56796. uint32x4_t __ret;
  56797. __ret = (uint32x4_t) __builtin_neon_vpmaxq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 50);
  56798. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  56799. return __ret;
  56800. }
  56801. #endif
  56802. #ifdef __LITTLE_ENDIAN__
  56803. __ai uint16x8_t vpmaxq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  56804. uint16x8_t __ret;
  56805. __ret = (uint16x8_t) __builtin_neon_vpmaxq_v((int8x16_t)__p0, (int8x16_t)__p1, 49);
  56806. return __ret;
  56807. }
  56808. #else
  56809. __ai uint16x8_t vpmaxq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  56810. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  56811. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  56812. uint16x8_t __ret;
  56813. __ret = (uint16x8_t) __builtin_neon_vpmaxq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 49);
  56814. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  56815. return __ret;
  56816. }
  56817. #endif
  56818. #ifdef __LITTLE_ENDIAN__
  56819. __ai int8x16_t vpmaxq_s8(int8x16_t __p0, int8x16_t __p1) {
  56820. int8x16_t __ret;
  56821. __ret = (int8x16_t) __builtin_neon_vpmaxq_v((int8x16_t)__p0, (int8x16_t)__p1, 32);
  56822. return __ret;
  56823. }
  56824. #else
  56825. __ai int8x16_t vpmaxq_s8(int8x16_t __p0, int8x16_t __p1) {
  56826. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  56827. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  56828. int8x16_t __ret;
  56829. __ret = (int8x16_t) __builtin_neon_vpmaxq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 32);
  56830. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  56831. return __ret;
  56832. }
  56833. #endif
  56834. #ifdef __LITTLE_ENDIAN__
  56835. __ai float64x2_t vpmaxq_f64(float64x2_t __p0, float64x2_t __p1) {
  56836. float64x2_t __ret;
  56837. __ret = (float64x2_t) __builtin_neon_vpmaxq_v((int8x16_t)__p0, (int8x16_t)__p1, 42);
  56838. return __ret;
  56839. }
  56840. #else
  56841. __ai float64x2_t vpmaxq_f64(float64x2_t __p0, float64x2_t __p1) {
  56842. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  56843. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  56844. float64x2_t __ret;
  56845. __ret = (float64x2_t) __builtin_neon_vpmaxq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 42);
  56846. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  56847. return __ret;
  56848. }
  56849. #endif
  56850. #ifdef __LITTLE_ENDIAN__
  56851. __ai float32x4_t vpmaxq_f32(float32x4_t __p0, float32x4_t __p1) {
  56852. float32x4_t __ret;
  56853. __ret = (float32x4_t) __builtin_neon_vpmaxq_v((int8x16_t)__p0, (int8x16_t)__p1, 41);
  56854. return __ret;
  56855. }
  56856. #else
  56857. __ai float32x4_t vpmaxq_f32(float32x4_t __p0, float32x4_t __p1) {
  56858. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  56859. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  56860. float32x4_t __ret;
  56861. __ret = (float32x4_t) __builtin_neon_vpmaxq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 41);
  56862. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  56863. return __ret;
  56864. }
  56865. #endif
  56866. #ifdef __LITTLE_ENDIAN__
  56867. __ai int32x4_t vpmaxq_s32(int32x4_t __p0, int32x4_t __p1) {
  56868. int32x4_t __ret;
  56869. __ret = (int32x4_t) __builtin_neon_vpmaxq_v((int8x16_t)__p0, (int8x16_t)__p1, 34);
  56870. return __ret;
  56871. }
  56872. #else
  56873. __ai int32x4_t vpmaxq_s32(int32x4_t __p0, int32x4_t __p1) {
  56874. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  56875. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  56876. int32x4_t __ret;
  56877. __ret = (int32x4_t) __builtin_neon_vpmaxq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 34);
  56878. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  56879. return __ret;
  56880. }
  56881. #endif
  56882. #ifdef __LITTLE_ENDIAN__
  56883. __ai int16x8_t vpmaxq_s16(int16x8_t __p0, int16x8_t __p1) {
  56884. int16x8_t __ret;
  56885. __ret = (int16x8_t) __builtin_neon_vpmaxq_v((int8x16_t)__p0, (int8x16_t)__p1, 33);
  56886. return __ret;
  56887. }
  56888. #else
  56889. __ai int16x8_t vpmaxq_s16(int16x8_t __p0, int16x8_t __p1) {
  56890. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  56891. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  56892. int16x8_t __ret;
  56893. __ret = (int16x8_t) __builtin_neon_vpmaxq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 33);
  56894. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  56895. return __ret;
  56896. }
  56897. #endif
  56898. #ifdef __LITTLE_ENDIAN__
  56899. __ai float64_t vpmaxqd_f64(float64x2_t __p0) {
  56900. float64_t __ret;
  56901. __ret = (float64_t) __builtin_neon_vpmaxqd_f64((int8x16_t)__p0);
  56902. return __ret;
  56903. }
  56904. #else
  56905. __ai float64_t vpmaxqd_f64(float64x2_t __p0) {
  56906. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  56907. float64_t __ret;
  56908. __ret = (float64_t) __builtin_neon_vpmaxqd_f64((int8x16_t)__rev0);
  56909. return __ret;
  56910. }
  56911. #endif
  56912. #ifdef __LITTLE_ENDIAN__
  56913. __ai float32_t vpmaxs_f32(float32x2_t __p0) {
  56914. float32_t __ret;
  56915. __ret = (float32_t) __builtin_neon_vpmaxs_f32((int8x8_t)__p0);
  56916. return __ret;
  56917. }
  56918. #else
  56919. __ai float32_t vpmaxs_f32(float32x2_t __p0) {
  56920. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  56921. float32_t __ret;
  56922. __ret = (float32_t) __builtin_neon_vpmaxs_f32((int8x8_t)__rev0);
  56923. return __ret;
  56924. }
  56925. #endif
  56926. #ifdef __LITTLE_ENDIAN__
  56927. __ai float64x2_t vpmaxnmq_f64(float64x2_t __p0, float64x2_t __p1) {
  56928. float64x2_t __ret;
  56929. __ret = (float64x2_t) __builtin_neon_vpmaxnmq_v((int8x16_t)__p0, (int8x16_t)__p1, 42);
  56930. return __ret;
  56931. }
  56932. #else
  56933. __ai float64x2_t vpmaxnmq_f64(float64x2_t __p0, float64x2_t __p1) {
  56934. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  56935. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  56936. float64x2_t __ret;
  56937. __ret = (float64x2_t) __builtin_neon_vpmaxnmq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 42);
  56938. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  56939. return __ret;
  56940. }
  56941. #endif
  56942. #ifdef __LITTLE_ENDIAN__
  56943. __ai float32x4_t vpmaxnmq_f32(float32x4_t __p0, float32x4_t __p1) {
  56944. float32x4_t __ret;
  56945. __ret = (float32x4_t) __builtin_neon_vpmaxnmq_v((int8x16_t)__p0, (int8x16_t)__p1, 41);
  56946. return __ret;
  56947. }
  56948. #else
  56949. __ai float32x4_t vpmaxnmq_f32(float32x4_t __p0, float32x4_t __p1) {
  56950. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  56951. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  56952. float32x4_t __ret;
  56953. __ret = (float32x4_t) __builtin_neon_vpmaxnmq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 41);
  56954. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  56955. return __ret;
  56956. }
  56957. #endif
  56958. #ifdef __LITTLE_ENDIAN__
  56959. __ai float32x2_t vpmaxnm_f32(float32x2_t __p0, float32x2_t __p1) {
  56960. float32x2_t __ret;
  56961. __ret = (float32x2_t) __builtin_neon_vpmaxnm_v((int8x8_t)__p0, (int8x8_t)__p1, 9);
  56962. return __ret;
  56963. }
  56964. #else
  56965. __ai float32x2_t vpmaxnm_f32(float32x2_t __p0, float32x2_t __p1) {
  56966. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  56967. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  56968. float32x2_t __ret;
  56969. __ret = (float32x2_t) __builtin_neon_vpmaxnm_v((int8x8_t)__rev0, (int8x8_t)__rev1, 9);
  56970. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  56971. return __ret;
  56972. }
  56973. #endif
  56974. #ifdef __LITTLE_ENDIAN__
  56975. __ai float64_t vpmaxnmqd_f64(float64x2_t __p0) {
  56976. float64_t __ret;
  56977. __ret = (float64_t) __builtin_neon_vpmaxnmqd_f64((int8x16_t)__p0);
  56978. return __ret;
  56979. }
  56980. #else
  56981. __ai float64_t vpmaxnmqd_f64(float64x2_t __p0) {
  56982. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  56983. float64_t __ret;
  56984. __ret = (float64_t) __builtin_neon_vpmaxnmqd_f64((int8x16_t)__rev0);
  56985. return __ret;
  56986. }
  56987. #endif
  56988. #ifdef __LITTLE_ENDIAN__
  56989. __ai float32_t vpmaxnms_f32(float32x2_t __p0) {
  56990. float32_t __ret;
  56991. __ret = (float32_t) __builtin_neon_vpmaxnms_f32((int8x8_t)__p0);
  56992. return __ret;
  56993. }
  56994. #else
  56995. __ai float32_t vpmaxnms_f32(float32x2_t __p0) {
  56996. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  56997. float32_t __ret;
  56998. __ret = (float32_t) __builtin_neon_vpmaxnms_f32((int8x8_t)__rev0);
  56999. return __ret;
  57000. }
  57001. #endif
  57002. #ifdef __LITTLE_ENDIAN__
  57003. __ai uint8x16_t vpminq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  57004. uint8x16_t __ret;
  57005. __ret = (uint8x16_t) __builtin_neon_vpminq_v((int8x16_t)__p0, (int8x16_t)__p1, 48);
  57006. return __ret;
  57007. }
  57008. #else
  57009. __ai uint8x16_t vpminq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  57010. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  57011. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  57012. uint8x16_t __ret;
  57013. __ret = (uint8x16_t) __builtin_neon_vpminq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 48);
  57014. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  57015. return __ret;
  57016. }
  57017. #endif
  57018. #ifdef __LITTLE_ENDIAN__
  57019. __ai uint32x4_t vpminq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  57020. uint32x4_t __ret;
  57021. __ret = (uint32x4_t) __builtin_neon_vpminq_v((int8x16_t)__p0, (int8x16_t)__p1, 50);
  57022. return __ret;
  57023. }
  57024. #else
  57025. __ai uint32x4_t vpminq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  57026. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  57027. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  57028. uint32x4_t __ret;
  57029. __ret = (uint32x4_t) __builtin_neon_vpminq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 50);
  57030. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  57031. return __ret;
  57032. }
  57033. #endif
  57034. #ifdef __LITTLE_ENDIAN__
  57035. __ai uint16x8_t vpminq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  57036. uint16x8_t __ret;
  57037. __ret = (uint16x8_t) __builtin_neon_vpminq_v((int8x16_t)__p0, (int8x16_t)__p1, 49);
  57038. return __ret;
  57039. }
  57040. #else
  57041. __ai uint16x8_t vpminq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  57042. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  57043. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  57044. uint16x8_t __ret;
  57045. __ret = (uint16x8_t) __builtin_neon_vpminq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 49);
  57046. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  57047. return __ret;
  57048. }
  57049. #endif
  57050. #ifdef __LITTLE_ENDIAN__
  57051. __ai int8x16_t vpminq_s8(int8x16_t __p0, int8x16_t __p1) {
  57052. int8x16_t __ret;
  57053. __ret = (int8x16_t) __builtin_neon_vpminq_v((int8x16_t)__p0, (int8x16_t)__p1, 32);
  57054. return __ret;
  57055. }
  57056. #else
  57057. __ai int8x16_t vpminq_s8(int8x16_t __p0, int8x16_t __p1) {
  57058. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  57059. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  57060. int8x16_t __ret;
  57061. __ret = (int8x16_t) __builtin_neon_vpminq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 32);
  57062. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  57063. return __ret;
  57064. }
  57065. #endif
  57066. #ifdef __LITTLE_ENDIAN__
  57067. __ai float64x2_t vpminq_f64(float64x2_t __p0, float64x2_t __p1) {
  57068. float64x2_t __ret;
  57069. __ret = (float64x2_t) __builtin_neon_vpminq_v((int8x16_t)__p0, (int8x16_t)__p1, 42);
  57070. return __ret;
  57071. }
  57072. #else
  57073. __ai float64x2_t vpminq_f64(float64x2_t __p0, float64x2_t __p1) {
  57074. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  57075. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  57076. float64x2_t __ret;
  57077. __ret = (float64x2_t) __builtin_neon_vpminq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 42);
  57078. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  57079. return __ret;
  57080. }
  57081. #endif
  57082. #ifdef __LITTLE_ENDIAN__
  57083. __ai float32x4_t vpminq_f32(float32x4_t __p0, float32x4_t __p1) {
  57084. float32x4_t __ret;
  57085. __ret = (float32x4_t) __builtin_neon_vpminq_v((int8x16_t)__p0, (int8x16_t)__p1, 41);
  57086. return __ret;
  57087. }
  57088. #else
  57089. __ai float32x4_t vpminq_f32(float32x4_t __p0, float32x4_t __p1) {
  57090. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  57091. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  57092. float32x4_t __ret;
  57093. __ret = (float32x4_t) __builtin_neon_vpminq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 41);
  57094. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  57095. return __ret;
  57096. }
  57097. #endif
  57098. #ifdef __LITTLE_ENDIAN__
  57099. __ai int32x4_t vpminq_s32(int32x4_t __p0, int32x4_t __p1) {
  57100. int32x4_t __ret;
  57101. __ret = (int32x4_t) __builtin_neon_vpminq_v((int8x16_t)__p0, (int8x16_t)__p1, 34);
  57102. return __ret;
  57103. }
  57104. #else
  57105. __ai int32x4_t vpminq_s32(int32x4_t __p0, int32x4_t __p1) {
  57106. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  57107. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  57108. int32x4_t __ret;
  57109. __ret = (int32x4_t) __builtin_neon_vpminq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 34);
  57110. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  57111. return __ret;
  57112. }
  57113. #endif
  57114. #ifdef __LITTLE_ENDIAN__
  57115. __ai int16x8_t vpminq_s16(int16x8_t __p0, int16x8_t __p1) {
  57116. int16x8_t __ret;
  57117. __ret = (int16x8_t) __builtin_neon_vpminq_v((int8x16_t)__p0, (int8x16_t)__p1, 33);
  57118. return __ret;
  57119. }
  57120. #else
  57121. __ai int16x8_t vpminq_s16(int16x8_t __p0, int16x8_t __p1) {
  57122. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  57123. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  57124. int16x8_t __ret;
  57125. __ret = (int16x8_t) __builtin_neon_vpminq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 33);
  57126. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  57127. return __ret;
  57128. }
  57129. #endif
  57130. #ifdef __LITTLE_ENDIAN__
  57131. __ai float64_t vpminqd_f64(float64x2_t __p0) {
  57132. float64_t __ret;
  57133. __ret = (float64_t) __builtin_neon_vpminqd_f64((int8x16_t)__p0);
  57134. return __ret;
  57135. }
  57136. #else
  57137. __ai float64_t vpminqd_f64(float64x2_t __p0) {
  57138. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  57139. float64_t __ret;
  57140. __ret = (float64_t) __builtin_neon_vpminqd_f64((int8x16_t)__rev0);
  57141. return __ret;
  57142. }
  57143. #endif
  57144. #ifdef __LITTLE_ENDIAN__
  57145. __ai float32_t vpmins_f32(float32x2_t __p0) {
  57146. float32_t __ret;
  57147. __ret = (float32_t) __builtin_neon_vpmins_f32((int8x8_t)__p0);
  57148. return __ret;
  57149. }
  57150. #else
  57151. __ai float32_t vpmins_f32(float32x2_t __p0) {
  57152. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  57153. float32_t __ret;
  57154. __ret = (float32_t) __builtin_neon_vpmins_f32((int8x8_t)__rev0);
  57155. return __ret;
  57156. }
  57157. #endif
  57158. #ifdef __LITTLE_ENDIAN__
  57159. __ai float64x2_t vpminnmq_f64(float64x2_t __p0, float64x2_t __p1) {
  57160. float64x2_t __ret;
  57161. __ret = (float64x2_t) __builtin_neon_vpminnmq_v((int8x16_t)__p0, (int8x16_t)__p1, 42);
  57162. return __ret;
  57163. }
  57164. #else
  57165. __ai float64x2_t vpminnmq_f64(float64x2_t __p0, float64x2_t __p1) {
  57166. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  57167. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  57168. float64x2_t __ret;
  57169. __ret = (float64x2_t) __builtin_neon_vpminnmq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 42);
  57170. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  57171. return __ret;
  57172. }
  57173. #endif
  57174. #ifdef __LITTLE_ENDIAN__
  57175. __ai float32x4_t vpminnmq_f32(float32x4_t __p0, float32x4_t __p1) {
  57176. float32x4_t __ret;
  57177. __ret = (float32x4_t) __builtin_neon_vpminnmq_v((int8x16_t)__p0, (int8x16_t)__p1, 41);
  57178. return __ret;
  57179. }
  57180. #else
  57181. __ai float32x4_t vpminnmq_f32(float32x4_t __p0, float32x4_t __p1) {
  57182. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  57183. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  57184. float32x4_t __ret;
  57185. __ret = (float32x4_t) __builtin_neon_vpminnmq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 41);
  57186. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  57187. return __ret;
  57188. }
  57189. #endif
  57190. #ifdef __LITTLE_ENDIAN__
  57191. __ai float32x2_t vpminnm_f32(float32x2_t __p0, float32x2_t __p1) {
  57192. float32x2_t __ret;
  57193. __ret = (float32x2_t) __builtin_neon_vpminnm_v((int8x8_t)__p0, (int8x8_t)__p1, 9);
  57194. return __ret;
  57195. }
  57196. #else
  57197. __ai float32x2_t vpminnm_f32(float32x2_t __p0, float32x2_t __p1) {
  57198. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  57199. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  57200. float32x2_t __ret;
  57201. __ret = (float32x2_t) __builtin_neon_vpminnm_v((int8x8_t)__rev0, (int8x8_t)__rev1, 9);
  57202. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  57203. return __ret;
  57204. }
  57205. #endif
  57206. #ifdef __LITTLE_ENDIAN__
  57207. __ai float64_t vpminnmqd_f64(float64x2_t __p0) {
  57208. float64_t __ret;
  57209. __ret = (float64_t) __builtin_neon_vpminnmqd_f64((int8x16_t)__p0);
  57210. return __ret;
  57211. }
  57212. #else
  57213. __ai float64_t vpminnmqd_f64(float64x2_t __p0) {
  57214. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  57215. float64_t __ret;
  57216. __ret = (float64_t) __builtin_neon_vpminnmqd_f64((int8x16_t)__rev0);
  57217. return __ret;
  57218. }
  57219. #endif
  57220. #ifdef __LITTLE_ENDIAN__
  57221. __ai float32_t vpminnms_f32(float32x2_t __p0) {
  57222. float32_t __ret;
  57223. __ret = (float32_t) __builtin_neon_vpminnms_f32((int8x8_t)__p0);
  57224. return __ret;
  57225. }
  57226. #else
  57227. __ai float32_t vpminnms_f32(float32x2_t __p0) {
  57228. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  57229. float32_t __ret;
  57230. __ret = (float32_t) __builtin_neon_vpminnms_f32((int8x8_t)__rev0);
  57231. return __ret;
  57232. }
  57233. #endif
  57234. #ifdef __LITTLE_ENDIAN__
  57235. __ai int64x2_t vqabsq_s64(int64x2_t __p0) {
  57236. int64x2_t __ret;
  57237. __ret = (int64x2_t) __builtin_neon_vqabsq_v((int8x16_t)__p0, 35);
  57238. return __ret;
  57239. }
  57240. #else
  57241. __ai int64x2_t vqabsq_s64(int64x2_t __p0) {
  57242. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  57243. int64x2_t __ret;
  57244. __ret = (int64x2_t) __builtin_neon_vqabsq_v((int8x16_t)__rev0, 35);
  57245. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  57246. return __ret;
  57247. }
  57248. #endif
  57249. #ifdef __LITTLE_ENDIAN__
  57250. __ai int64x1_t vqabs_s64(int64x1_t __p0) {
  57251. int64x1_t __ret;
  57252. __ret = (int64x1_t) __builtin_neon_vqabs_v((int8x8_t)__p0, 3);
  57253. return __ret;
  57254. }
  57255. #else
  57256. __ai int64x1_t vqabs_s64(int64x1_t __p0) {
  57257. int64x1_t __ret;
  57258. __ret = (int64x1_t) __builtin_neon_vqabs_v((int8x8_t)__p0, 3);
  57259. return __ret;
  57260. }
  57261. #endif
  57262. #ifdef __LITTLE_ENDIAN__
  57263. __ai int8_t vqabsb_s8(int8_t __p0) {
  57264. int8_t __ret;
  57265. __ret = (int8_t) __builtin_neon_vqabsb_s8(__p0);
  57266. return __ret;
  57267. }
  57268. #else
  57269. __ai int8_t vqabsb_s8(int8_t __p0) {
  57270. int8_t __ret;
  57271. __ret = (int8_t) __builtin_neon_vqabsb_s8(__p0);
  57272. return __ret;
  57273. }
  57274. #endif
  57275. #ifdef __LITTLE_ENDIAN__
  57276. __ai int32_t vqabss_s32(int32_t __p0) {
  57277. int32_t __ret;
  57278. __ret = (int32_t) __builtin_neon_vqabss_s32(__p0);
  57279. return __ret;
  57280. }
  57281. #else
  57282. __ai int32_t vqabss_s32(int32_t __p0) {
  57283. int32_t __ret;
  57284. __ret = (int32_t) __builtin_neon_vqabss_s32(__p0);
  57285. return __ret;
  57286. }
  57287. #endif
  57288. #ifdef __LITTLE_ENDIAN__
  57289. __ai int64_t vqabsd_s64(int64_t __p0) {
  57290. int64_t __ret;
  57291. __ret = (int64_t) __builtin_neon_vqabsd_s64(__p0);
  57292. return __ret;
  57293. }
  57294. #else
  57295. __ai int64_t vqabsd_s64(int64_t __p0) {
  57296. int64_t __ret;
  57297. __ret = (int64_t) __builtin_neon_vqabsd_s64(__p0);
  57298. return __ret;
  57299. }
  57300. #endif
  57301. #ifdef __LITTLE_ENDIAN__
  57302. __ai int16_t vqabsh_s16(int16_t __p0) {
  57303. int16_t __ret;
  57304. __ret = (int16_t) __builtin_neon_vqabsh_s16(__p0);
  57305. return __ret;
  57306. }
  57307. #else
  57308. __ai int16_t vqabsh_s16(int16_t __p0) {
  57309. int16_t __ret;
  57310. __ret = (int16_t) __builtin_neon_vqabsh_s16(__p0);
  57311. return __ret;
  57312. }
  57313. #endif
  57314. #ifdef __LITTLE_ENDIAN__
  57315. __ai uint8_t vqaddb_u8(uint8_t __p0, uint8_t __p1) {
  57316. uint8_t __ret;
  57317. __ret = (uint8_t) __builtin_neon_vqaddb_u8(__p0, __p1);
  57318. return __ret;
  57319. }
  57320. #else
  57321. __ai uint8_t vqaddb_u8(uint8_t __p0, uint8_t __p1) {
  57322. uint8_t __ret;
  57323. __ret = (uint8_t) __builtin_neon_vqaddb_u8(__p0, __p1);
  57324. return __ret;
  57325. }
  57326. #endif
  57327. #ifdef __LITTLE_ENDIAN__
  57328. __ai uint32_t vqadds_u32(uint32_t __p0, uint32_t __p1) {
  57329. uint32_t __ret;
  57330. __ret = (uint32_t) __builtin_neon_vqadds_u32(__p0, __p1);
  57331. return __ret;
  57332. }
  57333. #else
  57334. __ai uint32_t vqadds_u32(uint32_t __p0, uint32_t __p1) {
  57335. uint32_t __ret;
  57336. __ret = (uint32_t) __builtin_neon_vqadds_u32(__p0, __p1);
  57337. return __ret;
  57338. }
  57339. #endif
  57340. #ifdef __LITTLE_ENDIAN__
  57341. __ai uint64_t vqaddd_u64(uint64_t __p0, uint64_t __p1) {
  57342. uint64_t __ret;
  57343. __ret = (uint64_t) __builtin_neon_vqaddd_u64(__p0, __p1);
  57344. return __ret;
  57345. }
  57346. #else
  57347. __ai uint64_t vqaddd_u64(uint64_t __p0, uint64_t __p1) {
  57348. uint64_t __ret;
  57349. __ret = (uint64_t) __builtin_neon_vqaddd_u64(__p0, __p1);
  57350. return __ret;
  57351. }
  57352. #endif
  57353. #ifdef __LITTLE_ENDIAN__
  57354. __ai uint16_t vqaddh_u16(uint16_t __p0, uint16_t __p1) {
  57355. uint16_t __ret;
  57356. __ret = (uint16_t) __builtin_neon_vqaddh_u16(__p0, __p1);
  57357. return __ret;
  57358. }
  57359. #else
  57360. __ai uint16_t vqaddh_u16(uint16_t __p0, uint16_t __p1) {
  57361. uint16_t __ret;
  57362. __ret = (uint16_t) __builtin_neon_vqaddh_u16(__p0, __p1);
  57363. return __ret;
  57364. }
  57365. #endif
  57366. #ifdef __LITTLE_ENDIAN__
  57367. __ai int8_t vqaddb_s8(int8_t __p0, int8_t __p1) {
  57368. int8_t __ret;
  57369. __ret = (int8_t) __builtin_neon_vqaddb_s8(__p0, __p1);
  57370. return __ret;
  57371. }
  57372. #else
  57373. __ai int8_t vqaddb_s8(int8_t __p0, int8_t __p1) {
  57374. int8_t __ret;
  57375. __ret = (int8_t) __builtin_neon_vqaddb_s8(__p0, __p1);
  57376. return __ret;
  57377. }
  57378. #endif
  57379. #ifdef __LITTLE_ENDIAN__
  57380. __ai int32_t vqadds_s32(int32_t __p0, int32_t __p1) {
  57381. int32_t __ret;
  57382. __ret = (int32_t) __builtin_neon_vqadds_s32(__p0, __p1);
  57383. return __ret;
  57384. }
  57385. #else
  57386. __ai int32_t vqadds_s32(int32_t __p0, int32_t __p1) {
  57387. int32_t __ret;
  57388. __ret = (int32_t) __builtin_neon_vqadds_s32(__p0, __p1);
  57389. return __ret;
  57390. }
  57391. __ai int32_t __noswap_vqadds_s32(int32_t __p0, int32_t __p1) {
  57392. int32_t __ret;
  57393. __ret = (int32_t) __builtin_neon_vqadds_s32(__p0, __p1);
  57394. return __ret;
  57395. }
  57396. #endif
  57397. #ifdef __LITTLE_ENDIAN__
  57398. __ai int64_t vqaddd_s64(int64_t __p0, int64_t __p1) {
  57399. int64_t __ret;
  57400. __ret = (int64_t) __builtin_neon_vqaddd_s64(__p0, __p1);
  57401. return __ret;
  57402. }
  57403. #else
  57404. __ai int64_t vqaddd_s64(int64_t __p0, int64_t __p1) {
  57405. int64_t __ret;
  57406. __ret = (int64_t) __builtin_neon_vqaddd_s64(__p0, __p1);
  57407. return __ret;
  57408. }
  57409. #endif
  57410. #ifdef __LITTLE_ENDIAN__
  57411. __ai int16_t vqaddh_s16(int16_t __p0, int16_t __p1) {
  57412. int16_t __ret;
  57413. __ret = (int16_t) __builtin_neon_vqaddh_s16(__p0, __p1);
  57414. return __ret;
  57415. }
  57416. #else
  57417. __ai int16_t vqaddh_s16(int16_t __p0, int16_t __p1) {
  57418. int16_t __ret;
  57419. __ret = (int16_t) __builtin_neon_vqaddh_s16(__p0, __p1);
  57420. return __ret;
  57421. }
  57422. __ai int16_t __noswap_vqaddh_s16(int16_t __p0, int16_t __p1) {
  57423. int16_t __ret;
  57424. __ret = (int16_t) __builtin_neon_vqaddh_s16(__p0, __p1);
  57425. return __ret;
  57426. }
  57427. #endif
  57428. #ifdef __LITTLE_ENDIAN__
  57429. __ai int64_t vqdmlals_s32(int64_t __p0, int32_t __p1, int32_t __p2) {
  57430. int64_t __ret;
  57431. __ret = (int64_t) __builtin_neon_vqdmlals_s32(__p0, __p1, __p2);
  57432. return __ret;
  57433. }
  57434. #else
  57435. __ai int64_t vqdmlals_s32(int64_t __p0, int32_t __p1, int32_t __p2) {
  57436. int64_t __ret;
  57437. __ret = (int64_t) __builtin_neon_vqdmlals_s32(__p0, __p1, __p2);
  57438. return __ret;
  57439. }
  57440. #endif
  57441. #ifdef __LITTLE_ENDIAN__
  57442. __ai int32_t vqdmlalh_s16(int32_t __p0, int16_t __p1, int16_t __p2) {
  57443. int32_t __ret;
  57444. __ret = (int32_t) __builtin_neon_vqdmlalh_s16(__p0, __p1, __p2);
  57445. return __ret;
  57446. }
  57447. #else
  57448. __ai int32_t vqdmlalh_s16(int32_t __p0, int16_t __p1, int16_t __p2) {
  57449. int32_t __ret;
  57450. __ret = (int32_t) __builtin_neon_vqdmlalh_s16(__p0, __p1, __p2);
  57451. return __ret;
  57452. }
  57453. #endif
  57454. #ifdef __LITTLE_ENDIAN__
  57455. __ai int64x2_t vqdmlal_high_s32(int64x2_t __p0, int32x4_t __p1, int32x4_t __p2) {
  57456. int64x2_t __ret;
  57457. __ret = vqdmlal_s32(__p0, vget_high_s32(__p1), vget_high_s32(__p2));
  57458. return __ret;
  57459. }
  57460. #else
  57461. __ai int64x2_t vqdmlal_high_s32(int64x2_t __p0, int32x4_t __p1, int32x4_t __p2) {
  57462. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  57463. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  57464. int32x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  57465. int64x2_t __ret;
  57466. __ret = __noswap_vqdmlal_s32(__rev0, __noswap_vget_high_s32(__rev1), __noswap_vget_high_s32(__rev2));
  57467. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  57468. return __ret;
  57469. }
  57470. #endif
  57471. #ifdef __LITTLE_ENDIAN__
  57472. __ai int32x4_t vqdmlal_high_s16(int32x4_t __p0, int16x8_t __p1, int16x8_t __p2) {
  57473. int32x4_t __ret;
  57474. __ret = vqdmlal_s16(__p0, vget_high_s16(__p1), vget_high_s16(__p2));
  57475. return __ret;
  57476. }
  57477. #else
  57478. __ai int32x4_t vqdmlal_high_s16(int32x4_t __p0, int16x8_t __p1, int16x8_t __p2) {
  57479. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  57480. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  57481. int16x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  57482. int32x4_t __ret;
  57483. __ret = __noswap_vqdmlal_s16(__rev0, __noswap_vget_high_s16(__rev1), __noswap_vget_high_s16(__rev2));
  57484. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  57485. return __ret;
  57486. }
  57487. #endif
  57488. #ifdef __LITTLE_ENDIAN__
  57489. #define vqdmlal_high_lane_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  57490. int64x2_t __s0 = __p0; \
  57491. int32x4_t __s1 = __p1; \
  57492. int32x2_t __s2 = __p2; \
  57493. int64x2_t __ret; \
  57494. __ret = vqdmlal_s32(__s0, vget_high_s32(__s1), __builtin_shufflevector(__s2, __s2, __p3, __p3)); \
  57495. __ret; \
  57496. })
  57497. #else
  57498. #define vqdmlal_high_lane_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  57499. int64x2_t __s0 = __p0; \
  57500. int32x4_t __s1 = __p1; \
  57501. int32x2_t __s2 = __p2; \
  57502. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  57503. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  57504. int32x2_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 1, 0); \
  57505. int64x2_t __ret; \
  57506. __ret = __noswap_vqdmlal_s32(__rev0, __noswap_vget_high_s32(__rev1), __builtin_shufflevector(__rev2, __rev2, __p3, __p3)); \
  57507. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  57508. __ret; \
  57509. })
  57510. #endif
  57511. #ifdef __LITTLE_ENDIAN__
  57512. #define vqdmlal_high_lane_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  57513. int32x4_t __s0 = __p0; \
  57514. int16x8_t __s1 = __p1; \
  57515. int16x4_t __s2 = __p2; \
  57516. int32x4_t __ret; \
  57517. __ret = vqdmlal_s16(__s0, vget_high_s16(__s1), __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3)); \
  57518. __ret; \
  57519. })
  57520. #else
  57521. #define vqdmlal_high_lane_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  57522. int32x4_t __s0 = __p0; \
  57523. int16x8_t __s1 = __p1; \
  57524. int16x4_t __s2 = __p2; \
  57525. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  57526. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  57527. int16x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  57528. int32x4_t __ret; \
  57529. __ret = __noswap_vqdmlal_s16(__rev0, __noswap_vget_high_s16(__rev1), __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3)); \
  57530. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  57531. __ret; \
  57532. })
  57533. #endif
  57534. #ifdef __LITTLE_ENDIAN__
  57535. #define vqdmlal_high_laneq_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  57536. int64x2_t __s0 = __p0; \
  57537. int32x4_t __s1 = __p1; \
  57538. int32x4_t __s2 = __p2; \
  57539. int64x2_t __ret; \
  57540. __ret = vqdmlal_s32(__s0, vget_high_s32(__s1), __builtin_shufflevector(__s2, __s2, __p3, __p3)); \
  57541. __ret; \
  57542. })
  57543. #else
  57544. #define vqdmlal_high_laneq_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  57545. int64x2_t __s0 = __p0; \
  57546. int32x4_t __s1 = __p1; \
  57547. int32x4_t __s2 = __p2; \
  57548. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  57549. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  57550. int32x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  57551. int64x2_t __ret; \
  57552. __ret = __noswap_vqdmlal_s32(__rev0, __noswap_vget_high_s32(__rev1), __builtin_shufflevector(__rev2, __rev2, __p3, __p3)); \
  57553. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  57554. __ret; \
  57555. })
  57556. #endif
  57557. #ifdef __LITTLE_ENDIAN__
  57558. #define vqdmlal_high_laneq_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  57559. int32x4_t __s0 = __p0; \
  57560. int16x8_t __s1 = __p1; \
  57561. int16x8_t __s2 = __p2; \
  57562. int32x4_t __ret; \
  57563. __ret = vqdmlal_s16(__s0, vget_high_s16(__s1), __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3)); \
  57564. __ret; \
  57565. })
  57566. #else
  57567. #define vqdmlal_high_laneq_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  57568. int32x4_t __s0 = __p0; \
  57569. int16x8_t __s1 = __p1; \
  57570. int16x8_t __s2 = __p2; \
  57571. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  57572. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  57573. int16x8_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 7, 6, 5, 4, 3, 2, 1, 0); \
  57574. int32x4_t __ret; \
  57575. __ret = __noswap_vqdmlal_s16(__rev0, __noswap_vget_high_s16(__rev1), __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3)); \
  57576. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  57577. __ret; \
  57578. })
  57579. #endif
  57580. #ifdef __LITTLE_ENDIAN__
  57581. __ai int64x2_t vqdmlal_high_n_s32(int64x2_t __p0, int32x4_t __p1, int32_t __p2) {
  57582. int64x2_t __ret;
  57583. __ret = vqdmlal_n_s32(__p0, vget_high_s32(__p1), __p2);
  57584. return __ret;
  57585. }
  57586. #else
  57587. __ai int64x2_t vqdmlal_high_n_s32(int64x2_t __p0, int32x4_t __p1, int32_t __p2) {
  57588. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  57589. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  57590. int64x2_t __ret;
  57591. __ret = __noswap_vqdmlal_n_s32(__rev0, __noswap_vget_high_s32(__rev1), __p2);
  57592. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  57593. return __ret;
  57594. }
  57595. #endif
  57596. #ifdef __LITTLE_ENDIAN__
  57597. __ai int32x4_t vqdmlal_high_n_s16(int32x4_t __p0, int16x8_t __p1, int16_t __p2) {
  57598. int32x4_t __ret;
  57599. __ret = vqdmlal_n_s16(__p0, vget_high_s16(__p1), __p2);
  57600. return __ret;
  57601. }
  57602. #else
  57603. __ai int32x4_t vqdmlal_high_n_s16(int32x4_t __p0, int16x8_t __p1, int16_t __p2) {
  57604. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  57605. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  57606. int32x4_t __ret;
  57607. __ret = __noswap_vqdmlal_n_s16(__rev0, __noswap_vget_high_s16(__rev1), __p2);
  57608. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  57609. return __ret;
  57610. }
  57611. #endif
  57612. #ifdef __LITTLE_ENDIAN__
  57613. #define vqdmlals_lane_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  57614. int64_t __s0 = __p0; \
  57615. int32_t __s1 = __p1; \
  57616. int32x2_t __s2 = __p2; \
  57617. int64_t __ret; \
  57618. __ret = (int64_t) __builtin_neon_vqdmlals_lane_s32(__s0, __s1, (int8x8_t)__s2, __p3); \
  57619. __ret; \
  57620. })
  57621. #else
  57622. #define vqdmlals_lane_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  57623. int64_t __s0 = __p0; \
  57624. int32_t __s1 = __p1; \
  57625. int32x2_t __s2 = __p2; \
  57626. int32x2_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 1, 0); \
  57627. int64_t __ret; \
  57628. __ret = (int64_t) __builtin_neon_vqdmlals_lane_s32(__s0, __s1, (int8x8_t)__rev2, __p3); \
  57629. __ret; \
  57630. })
  57631. #endif
  57632. #ifdef __LITTLE_ENDIAN__
  57633. #define vqdmlalh_lane_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  57634. int32_t __s0 = __p0; \
  57635. int16_t __s1 = __p1; \
  57636. int16x4_t __s2 = __p2; \
  57637. int32_t __ret; \
  57638. __ret = (int32_t) __builtin_neon_vqdmlalh_lane_s16(__s0, __s1, (int8x8_t)__s2, __p3); \
  57639. __ret; \
  57640. })
  57641. #else
  57642. #define vqdmlalh_lane_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  57643. int32_t __s0 = __p0; \
  57644. int16_t __s1 = __p1; \
  57645. int16x4_t __s2 = __p2; \
  57646. int16x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  57647. int32_t __ret; \
  57648. __ret = (int32_t) __builtin_neon_vqdmlalh_lane_s16(__s0, __s1, (int8x8_t)__rev2, __p3); \
  57649. __ret; \
  57650. })
  57651. #endif
  57652. #ifdef __LITTLE_ENDIAN__
  57653. #define vqdmlals_laneq_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  57654. int64_t __s0 = __p0; \
  57655. int32_t __s1 = __p1; \
  57656. int32x4_t __s2 = __p2; \
  57657. int64_t __ret; \
  57658. __ret = (int64_t) __builtin_neon_vqdmlals_laneq_s32(__s0, __s1, (int8x16_t)__s2, __p3); \
  57659. __ret; \
  57660. })
  57661. #else
  57662. #define vqdmlals_laneq_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  57663. int64_t __s0 = __p0; \
  57664. int32_t __s1 = __p1; \
  57665. int32x4_t __s2 = __p2; \
  57666. int32x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  57667. int64_t __ret; \
  57668. __ret = (int64_t) __builtin_neon_vqdmlals_laneq_s32(__s0, __s1, (int8x16_t)__rev2, __p3); \
  57669. __ret; \
  57670. })
  57671. #endif
  57672. #ifdef __LITTLE_ENDIAN__
  57673. #define vqdmlalh_laneq_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  57674. int32_t __s0 = __p0; \
  57675. int16_t __s1 = __p1; \
  57676. int16x8_t __s2 = __p2; \
  57677. int32_t __ret; \
  57678. __ret = (int32_t) __builtin_neon_vqdmlalh_laneq_s16(__s0, __s1, (int8x16_t)__s2, __p3); \
  57679. __ret; \
  57680. })
  57681. #else
  57682. #define vqdmlalh_laneq_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  57683. int32_t __s0 = __p0; \
  57684. int16_t __s1 = __p1; \
  57685. int16x8_t __s2 = __p2; \
  57686. int16x8_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 7, 6, 5, 4, 3, 2, 1, 0); \
  57687. int32_t __ret; \
  57688. __ret = (int32_t) __builtin_neon_vqdmlalh_laneq_s16(__s0, __s1, (int8x16_t)__rev2, __p3); \
  57689. __ret; \
  57690. })
  57691. #endif
  57692. #ifdef __LITTLE_ENDIAN__
  57693. #define vqdmlal_laneq_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  57694. int64x2_t __s0 = __p0; \
  57695. int32x2_t __s1 = __p1; \
  57696. int32x4_t __s2 = __p2; \
  57697. int64x2_t __ret; \
  57698. __ret = vqdmlal_s32(__s0, __s1, __builtin_shufflevector(__s2, __s2, __p3, __p3)); \
  57699. __ret; \
  57700. })
  57701. #else
  57702. #define vqdmlal_laneq_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  57703. int64x2_t __s0 = __p0; \
  57704. int32x2_t __s1 = __p1; \
  57705. int32x4_t __s2 = __p2; \
  57706. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  57707. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  57708. int32x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  57709. int64x2_t __ret; \
  57710. __ret = __noswap_vqdmlal_s32(__rev0, __rev1, __builtin_shufflevector(__rev2, __rev2, __p3, __p3)); \
  57711. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  57712. __ret; \
  57713. })
  57714. #endif
  57715. #ifdef __LITTLE_ENDIAN__
  57716. #define vqdmlal_laneq_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  57717. int32x4_t __s0 = __p0; \
  57718. int16x4_t __s1 = __p1; \
  57719. int16x8_t __s2 = __p2; \
  57720. int32x4_t __ret; \
  57721. __ret = vqdmlal_s16(__s0, __s1, __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3)); \
  57722. __ret; \
  57723. })
  57724. #else
  57725. #define vqdmlal_laneq_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  57726. int32x4_t __s0 = __p0; \
  57727. int16x4_t __s1 = __p1; \
  57728. int16x8_t __s2 = __p2; \
  57729. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  57730. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  57731. int16x8_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 7, 6, 5, 4, 3, 2, 1, 0); \
  57732. int32x4_t __ret; \
  57733. __ret = __noswap_vqdmlal_s16(__rev0, __rev1, __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3)); \
  57734. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  57735. __ret; \
  57736. })
  57737. #endif
  57738. #ifdef __LITTLE_ENDIAN__
  57739. __ai int64_t vqdmlsls_s32(int64_t __p0, int32_t __p1, int32_t __p2) {
  57740. int64_t __ret;
  57741. __ret = (int64_t) __builtin_neon_vqdmlsls_s32(__p0, __p1, __p2);
  57742. return __ret;
  57743. }
  57744. #else
  57745. __ai int64_t vqdmlsls_s32(int64_t __p0, int32_t __p1, int32_t __p2) {
  57746. int64_t __ret;
  57747. __ret = (int64_t) __builtin_neon_vqdmlsls_s32(__p0, __p1, __p2);
  57748. return __ret;
  57749. }
  57750. #endif
  57751. #ifdef __LITTLE_ENDIAN__
  57752. __ai int32_t vqdmlslh_s16(int32_t __p0, int16_t __p1, int16_t __p2) {
  57753. int32_t __ret;
  57754. __ret = (int32_t) __builtin_neon_vqdmlslh_s16(__p0, __p1, __p2);
  57755. return __ret;
  57756. }
  57757. #else
  57758. __ai int32_t vqdmlslh_s16(int32_t __p0, int16_t __p1, int16_t __p2) {
  57759. int32_t __ret;
  57760. __ret = (int32_t) __builtin_neon_vqdmlslh_s16(__p0, __p1, __p2);
  57761. return __ret;
  57762. }
  57763. #endif
  57764. #ifdef __LITTLE_ENDIAN__
  57765. __ai int64x2_t vqdmlsl_high_s32(int64x2_t __p0, int32x4_t __p1, int32x4_t __p2) {
  57766. int64x2_t __ret;
  57767. __ret = vqdmlsl_s32(__p0, vget_high_s32(__p1), vget_high_s32(__p2));
  57768. return __ret;
  57769. }
  57770. #else
  57771. __ai int64x2_t vqdmlsl_high_s32(int64x2_t __p0, int32x4_t __p1, int32x4_t __p2) {
  57772. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  57773. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  57774. int32x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  57775. int64x2_t __ret;
  57776. __ret = __noswap_vqdmlsl_s32(__rev0, __noswap_vget_high_s32(__rev1), __noswap_vget_high_s32(__rev2));
  57777. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  57778. return __ret;
  57779. }
  57780. #endif
  57781. #ifdef __LITTLE_ENDIAN__
  57782. __ai int32x4_t vqdmlsl_high_s16(int32x4_t __p0, int16x8_t __p1, int16x8_t __p2) {
  57783. int32x4_t __ret;
  57784. __ret = vqdmlsl_s16(__p0, vget_high_s16(__p1), vget_high_s16(__p2));
  57785. return __ret;
  57786. }
  57787. #else
  57788. __ai int32x4_t vqdmlsl_high_s16(int32x4_t __p0, int16x8_t __p1, int16x8_t __p2) {
  57789. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  57790. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  57791. int16x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  57792. int32x4_t __ret;
  57793. __ret = __noswap_vqdmlsl_s16(__rev0, __noswap_vget_high_s16(__rev1), __noswap_vget_high_s16(__rev2));
  57794. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  57795. return __ret;
  57796. }
  57797. #endif
  57798. #ifdef __LITTLE_ENDIAN__
  57799. #define vqdmlsl_high_lane_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  57800. int64x2_t __s0 = __p0; \
  57801. int32x4_t __s1 = __p1; \
  57802. int32x2_t __s2 = __p2; \
  57803. int64x2_t __ret; \
  57804. __ret = vqdmlsl_s32(__s0, vget_high_s32(__s1), __builtin_shufflevector(__s2, __s2, __p3, __p3)); \
  57805. __ret; \
  57806. })
  57807. #else
  57808. #define vqdmlsl_high_lane_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  57809. int64x2_t __s0 = __p0; \
  57810. int32x4_t __s1 = __p1; \
  57811. int32x2_t __s2 = __p2; \
  57812. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  57813. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  57814. int32x2_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 1, 0); \
  57815. int64x2_t __ret; \
  57816. __ret = __noswap_vqdmlsl_s32(__rev0, __noswap_vget_high_s32(__rev1), __builtin_shufflevector(__rev2, __rev2, __p3, __p3)); \
  57817. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  57818. __ret; \
  57819. })
  57820. #endif
  57821. #ifdef __LITTLE_ENDIAN__
  57822. #define vqdmlsl_high_lane_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  57823. int32x4_t __s0 = __p0; \
  57824. int16x8_t __s1 = __p1; \
  57825. int16x4_t __s2 = __p2; \
  57826. int32x4_t __ret; \
  57827. __ret = vqdmlsl_s16(__s0, vget_high_s16(__s1), __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3)); \
  57828. __ret; \
  57829. })
  57830. #else
  57831. #define vqdmlsl_high_lane_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  57832. int32x4_t __s0 = __p0; \
  57833. int16x8_t __s1 = __p1; \
  57834. int16x4_t __s2 = __p2; \
  57835. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  57836. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  57837. int16x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  57838. int32x4_t __ret; \
  57839. __ret = __noswap_vqdmlsl_s16(__rev0, __noswap_vget_high_s16(__rev1), __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3)); \
  57840. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  57841. __ret; \
  57842. })
  57843. #endif
  57844. #ifdef __LITTLE_ENDIAN__
  57845. #define vqdmlsl_high_laneq_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  57846. int64x2_t __s0 = __p0; \
  57847. int32x4_t __s1 = __p1; \
  57848. int32x4_t __s2 = __p2; \
  57849. int64x2_t __ret; \
  57850. __ret = vqdmlsl_s32(__s0, vget_high_s32(__s1), __builtin_shufflevector(__s2, __s2, __p3, __p3)); \
  57851. __ret; \
  57852. })
  57853. #else
  57854. #define vqdmlsl_high_laneq_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  57855. int64x2_t __s0 = __p0; \
  57856. int32x4_t __s1 = __p1; \
  57857. int32x4_t __s2 = __p2; \
  57858. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  57859. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  57860. int32x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  57861. int64x2_t __ret; \
  57862. __ret = __noswap_vqdmlsl_s32(__rev0, __noswap_vget_high_s32(__rev1), __builtin_shufflevector(__rev2, __rev2, __p3, __p3)); \
  57863. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  57864. __ret; \
  57865. })
  57866. #endif
  57867. #ifdef __LITTLE_ENDIAN__
  57868. #define vqdmlsl_high_laneq_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  57869. int32x4_t __s0 = __p0; \
  57870. int16x8_t __s1 = __p1; \
  57871. int16x8_t __s2 = __p2; \
  57872. int32x4_t __ret; \
  57873. __ret = vqdmlsl_s16(__s0, vget_high_s16(__s1), __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3)); \
  57874. __ret; \
  57875. })
  57876. #else
  57877. #define vqdmlsl_high_laneq_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  57878. int32x4_t __s0 = __p0; \
  57879. int16x8_t __s1 = __p1; \
  57880. int16x8_t __s2 = __p2; \
  57881. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  57882. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  57883. int16x8_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 7, 6, 5, 4, 3, 2, 1, 0); \
  57884. int32x4_t __ret; \
  57885. __ret = __noswap_vqdmlsl_s16(__rev0, __noswap_vget_high_s16(__rev1), __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3)); \
  57886. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  57887. __ret; \
  57888. })
  57889. #endif
  57890. #ifdef __LITTLE_ENDIAN__
  57891. __ai int64x2_t vqdmlsl_high_n_s32(int64x2_t __p0, int32x4_t __p1, int32_t __p2) {
  57892. int64x2_t __ret;
  57893. __ret = vqdmlsl_n_s32(__p0, vget_high_s32(__p1), __p2);
  57894. return __ret;
  57895. }
  57896. #else
  57897. __ai int64x2_t vqdmlsl_high_n_s32(int64x2_t __p0, int32x4_t __p1, int32_t __p2) {
  57898. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  57899. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  57900. int64x2_t __ret;
  57901. __ret = __noswap_vqdmlsl_n_s32(__rev0, __noswap_vget_high_s32(__rev1), __p2);
  57902. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  57903. return __ret;
  57904. }
  57905. #endif
  57906. #ifdef __LITTLE_ENDIAN__
  57907. __ai int32x4_t vqdmlsl_high_n_s16(int32x4_t __p0, int16x8_t __p1, int16_t __p2) {
  57908. int32x4_t __ret;
  57909. __ret = vqdmlsl_n_s16(__p0, vget_high_s16(__p1), __p2);
  57910. return __ret;
  57911. }
  57912. #else
  57913. __ai int32x4_t vqdmlsl_high_n_s16(int32x4_t __p0, int16x8_t __p1, int16_t __p2) {
  57914. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  57915. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  57916. int32x4_t __ret;
  57917. __ret = __noswap_vqdmlsl_n_s16(__rev0, __noswap_vget_high_s16(__rev1), __p2);
  57918. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  57919. return __ret;
  57920. }
  57921. #endif
  57922. #ifdef __LITTLE_ENDIAN__
  57923. #define vqdmlsls_lane_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  57924. int64_t __s0 = __p0; \
  57925. int32_t __s1 = __p1; \
  57926. int32x2_t __s2 = __p2; \
  57927. int64_t __ret; \
  57928. __ret = (int64_t) __builtin_neon_vqdmlsls_lane_s32(__s0, __s1, (int8x8_t)__s2, __p3); \
  57929. __ret; \
  57930. })
  57931. #else
  57932. #define vqdmlsls_lane_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  57933. int64_t __s0 = __p0; \
  57934. int32_t __s1 = __p1; \
  57935. int32x2_t __s2 = __p2; \
  57936. int32x2_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 1, 0); \
  57937. int64_t __ret; \
  57938. __ret = (int64_t) __builtin_neon_vqdmlsls_lane_s32(__s0, __s1, (int8x8_t)__rev2, __p3); \
  57939. __ret; \
  57940. })
  57941. #endif
  57942. #ifdef __LITTLE_ENDIAN__
  57943. #define vqdmlslh_lane_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  57944. int32_t __s0 = __p0; \
  57945. int16_t __s1 = __p1; \
  57946. int16x4_t __s2 = __p2; \
  57947. int32_t __ret; \
  57948. __ret = (int32_t) __builtin_neon_vqdmlslh_lane_s16(__s0, __s1, (int8x8_t)__s2, __p3); \
  57949. __ret; \
  57950. })
  57951. #else
  57952. #define vqdmlslh_lane_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  57953. int32_t __s0 = __p0; \
  57954. int16_t __s1 = __p1; \
  57955. int16x4_t __s2 = __p2; \
  57956. int16x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  57957. int32_t __ret; \
  57958. __ret = (int32_t) __builtin_neon_vqdmlslh_lane_s16(__s0, __s1, (int8x8_t)__rev2, __p3); \
  57959. __ret; \
  57960. })
  57961. #endif
  57962. #ifdef __LITTLE_ENDIAN__
  57963. #define vqdmlsls_laneq_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  57964. int64_t __s0 = __p0; \
  57965. int32_t __s1 = __p1; \
  57966. int32x4_t __s2 = __p2; \
  57967. int64_t __ret; \
  57968. __ret = (int64_t) __builtin_neon_vqdmlsls_laneq_s32(__s0, __s1, (int8x16_t)__s2, __p3); \
  57969. __ret; \
  57970. })
  57971. #else
  57972. #define vqdmlsls_laneq_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  57973. int64_t __s0 = __p0; \
  57974. int32_t __s1 = __p1; \
  57975. int32x4_t __s2 = __p2; \
  57976. int32x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  57977. int64_t __ret; \
  57978. __ret = (int64_t) __builtin_neon_vqdmlsls_laneq_s32(__s0, __s1, (int8x16_t)__rev2, __p3); \
  57979. __ret; \
  57980. })
  57981. #endif
  57982. #ifdef __LITTLE_ENDIAN__
  57983. #define vqdmlslh_laneq_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  57984. int32_t __s0 = __p0; \
  57985. int16_t __s1 = __p1; \
  57986. int16x8_t __s2 = __p2; \
  57987. int32_t __ret; \
  57988. __ret = (int32_t) __builtin_neon_vqdmlslh_laneq_s16(__s0, __s1, (int8x16_t)__s2, __p3); \
  57989. __ret; \
  57990. })
  57991. #else
  57992. #define vqdmlslh_laneq_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  57993. int32_t __s0 = __p0; \
  57994. int16_t __s1 = __p1; \
  57995. int16x8_t __s2 = __p2; \
  57996. int16x8_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 7, 6, 5, 4, 3, 2, 1, 0); \
  57997. int32_t __ret; \
  57998. __ret = (int32_t) __builtin_neon_vqdmlslh_laneq_s16(__s0, __s1, (int8x16_t)__rev2, __p3); \
  57999. __ret; \
  58000. })
  58001. #endif
  58002. #ifdef __LITTLE_ENDIAN__
  58003. #define vqdmlsl_laneq_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  58004. int64x2_t __s0 = __p0; \
  58005. int32x2_t __s1 = __p1; \
  58006. int32x4_t __s2 = __p2; \
  58007. int64x2_t __ret; \
  58008. __ret = vqdmlsl_s32(__s0, __s1, __builtin_shufflevector(__s2, __s2, __p3, __p3)); \
  58009. __ret; \
  58010. })
  58011. #else
  58012. #define vqdmlsl_laneq_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  58013. int64x2_t __s0 = __p0; \
  58014. int32x2_t __s1 = __p1; \
  58015. int32x4_t __s2 = __p2; \
  58016. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  58017. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  58018. int32x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  58019. int64x2_t __ret; \
  58020. __ret = __noswap_vqdmlsl_s32(__rev0, __rev1, __builtin_shufflevector(__rev2, __rev2, __p3, __p3)); \
  58021. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  58022. __ret; \
  58023. })
  58024. #endif
  58025. #ifdef __LITTLE_ENDIAN__
  58026. #define vqdmlsl_laneq_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  58027. int32x4_t __s0 = __p0; \
  58028. int16x4_t __s1 = __p1; \
  58029. int16x8_t __s2 = __p2; \
  58030. int32x4_t __ret; \
  58031. __ret = vqdmlsl_s16(__s0, __s1, __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3)); \
  58032. __ret; \
  58033. })
  58034. #else
  58035. #define vqdmlsl_laneq_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  58036. int32x4_t __s0 = __p0; \
  58037. int16x4_t __s1 = __p1; \
  58038. int16x8_t __s2 = __p2; \
  58039. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  58040. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  58041. int16x8_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 7, 6, 5, 4, 3, 2, 1, 0); \
  58042. int32x4_t __ret; \
  58043. __ret = __noswap_vqdmlsl_s16(__rev0, __rev1, __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3)); \
  58044. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  58045. __ret; \
  58046. })
  58047. #endif
  58048. #ifdef __LITTLE_ENDIAN__
  58049. __ai int32_t vqdmulhs_s32(int32_t __p0, int32_t __p1) {
  58050. int32_t __ret;
  58051. __ret = (int32_t) __builtin_neon_vqdmulhs_s32(__p0, __p1);
  58052. return __ret;
  58053. }
  58054. #else
  58055. __ai int32_t vqdmulhs_s32(int32_t __p0, int32_t __p1) {
  58056. int32_t __ret;
  58057. __ret = (int32_t) __builtin_neon_vqdmulhs_s32(__p0, __p1);
  58058. return __ret;
  58059. }
  58060. __ai int32_t __noswap_vqdmulhs_s32(int32_t __p0, int32_t __p1) {
  58061. int32_t __ret;
  58062. __ret = (int32_t) __builtin_neon_vqdmulhs_s32(__p0, __p1);
  58063. return __ret;
  58064. }
  58065. #endif
  58066. #ifdef __LITTLE_ENDIAN__
  58067. __ai int16_t vqdmulhh_s16(int16_t __p0, int16_t __p1) {
  58068. int16_t __ret;
  58069. __ret = (int16_t) __builtin_neon_vqdmulhh_s16(__p0, __p1);
  58070. return __ret;
  58071. }
  58072. #else
  58073. __ai int16_t vqdmulhh_s16(int16_t __p0, int16_t __p1) {
  58074. int16_t __ret;
  58075. __ret = (int16_t) __builtin_neon_vqdmulhh_s16(__p0, __p1);
  58076. return __ret;
  58077. }
  58078. __ai int16_t __noswap_vqdmulhh_s16(int16_t __p0, int16_t __p1) {
  58079. int16_t __ret;
  58080. __ret = (int16_t) __builtin_neon_vqdmulhh_s16(__p0, __p1);
  58081. return __ret;
  58082. }
  58083. #endif
  58084. #ifdef __LITTLE_ENDIAN__
  58085. #define vqdmulhs_lane_s32(__p0_158, __p1_158, __p2_158) __extension__ ({ \
  58086. int32_t __s0_158 = __p0_158; \
  58087. int32x2_t __s1_158 = __p1_158; \
  58088. int32_t __ret_158; \
  58089. __ret_158 = vqdmulhs_s32(__s0_158, vget_lane_s32(__s1_158, __p2_158)); \
  58090. __ret_158; \
  58091. })
  58092. #else
  58093. #define vqdmulhs_lane_s32(__p0_159, __p1_159, __p2_159) __extension__ ({ \
  58094. int32_t __s0_159 = __p0_159; \
  58095. int32x2_t __s1_159 = __p1_159; \
  58096. int32x2_t __rev1_159; __rev1_159 = __builtin_shufflevector(__s1_159, __s1_159, 1, 0); \
  58097. int32_t __ret_159; \
  58098. __ret_159 = __noswap_vqdmulhs_s32(__s0_159, __noswap_vget_lane_s32(__rev1_159, __p2_159)); \
  58099. __ret_159; \
  58100. })
  58101. #endif
  58102. #ifdef __LITTLE_ENDIAN__
  58103. #define vqdmulhh_lane_s16(__p0_160, __p1_160, __p2_160) __extension__ ({ \
  58104. int16_t __s0_160 = __p0_160; \
  58105. int16x4_t __s1_160 = __p1_160; \
  58106. int16_t __ret_160; \
  58107. __ret_160 = vqdmulhh_s16(__s0_160, vget_lane_s16(__s1_160, __p2_160)); \
  58108. __ret_160; \
  58109. })
  58110. #else
  58111. #define vqdmulhh_lane_s16(__p0_161, __p1_161, __p2_161) __extension__ ({ \
  58112. int16_t __s0_161 = __p0_161; \
  58113. int16x4_t __s1_161 = __p1_161; \
  58114. int16x4_t __rev1_161; __rev1_161 = __builtin_shufflevector(__s1_161, __s1_161, 3, 2, 1, 0); \
  58115. int16_t __ret_161; \
  58116. __ret_161 = __noswap_vqdmulhh_s16(__s0_161, __noswap_vget_lane_s16(__rev1_161, __p2_161)); \
  58117. __ret_161; \
  58118. })
  58119. #endif
  58120. #ifdef __LITTLE_ENDIAN__
  58121. #define vqdmulhs_laneq_s32(__p0_162, __p1_162, __p2_162) __extension__ ({ \
  58122. int32_t __s0_162 = __p0_162; \
  58123. int32x4_t __s1_162 = __p1_162; \
  58124. int32_t __ret_162; \
  58125. __ret_162 = vqdmulhs_s32(__s0_162, vgetq_lane_s32(__s1_162, __p2_162)); \
  58126. __ret_162; \
  58127. })
  58128. #else
  58129. #define vqdmulhs_laneq_s32(__p0_163, __p1_163, __p2_163) __extension__ ({ \
  58130. int32_t __s0_163 = __p0_163; \
  58131. int32x4_t __s1_163 = __p1_163; \
  58132. int32x4_t __rev1_163; __rev1_163 = __builtin_shufflevector(__s1_163, __s1_163, 3, 2, 1, 0); \
  58133. int32_t __ret_163; \
  58134. __ret_163 = __noswap_vqdmulhs_s32(__s0_163, __noswap_vgetq_lane_s32(__rev1_163, __p2_163)); \
  58135. __ret_163; \
  58136. })
  58137. #endif
  58138. #ifdef __LITTLE_ENDIAN__
  58139. #define vqdmulhh_laneq_s16(__p0_164, __p1_164, __p2_164) __extension__ ({ \
  58140. int16_t __s0_164 = __p0_164; \
  58141. int16x8_t __s1_164 = __p1_164; \
  58142. int16_t __ret_164; \
  58143. __ret_164 = vqdmulhh_s16(__s0_164, vgetq_lane_s16(__s1_164, __p2_164)); \
  58144. __ret_164; \
  58145. })
  58146. #else
  58147. #define vqdmulhh_laneq_s16(__p0_165, __p1_165, __p2_165) __extension__ ({ \
  58148. int16_t __s0_165 = __p0_165; \
  58149. int16x8_t __s1_165 = __p1_165; \
  58150. int16x8_t __rev1_165; __rev1_165 = __builtin_shufflevector(__s1_165, __s1_165, 7, 6, 5, 4, 3, 2, 1, 0); \
  58151. int16_t __ret_165; \
  58152. __ret_165 = __noswap_vqdmulhh_s16(__s0_165, __noswap_vgetq_lane_s16(__rev1_165, __p2_165)); \
  58153. __ret_165; \
  58154. })
  58155. #endif
  58156. #ifdef __LITTLE_ENDIAN__
  58157. #define vqdmulhq_laneq_s32(__p0, __p1, __p2) __extension__ ({ \
  58158. int32x4_t __s0 = __p0; \
  58159. int32x4_t __s1 = __p1; \
  58160. int32x4_t __ret; \
  58161. __ret = vqdmulhq_s32(__s0, __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2)); \
  58162. __ret; \
  58163. })
  58164. #else
  58165. #define vqdmulhq_laneq_s32(__p0, __p1, __p2) __extension__ ({ \
  58166. int32x4_t __s0 = __p0; \
  58167. int32x4_t __s1 = __p1; \
  58168. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  58169. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  58170. int32x4_t __ret; \
  58171. __ret = __noswap_vqdmulhq_s32(__rev0, __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2)); \
  58172. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  58173. __ret; \
  58174. })
  58175. #endif
  58176. #ifdef __LITTLE_ENDIAN__
  58177. #define vqdmulhq_laneq_s16(__p0, __p1, __p2) __extension__ ({ \
  58178. int16x8_t __s0 = __p0; \
  58179. int16x8_t __s1 = __p1; \
  58180. int16x8_t __ret; \
  58181. __ret = vqdmulhq_s16(__s0, __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2, __p2, __p2, __p2, __p2)); \
  58182. __ret; \
  58183. })
  58184. #else
  58185. #define vqdmulhq_laneq_s16(__p0, __p1, __p2) __extension__ ({ \
  58186. int16x8_t __s0 = __p0; \
  58187. int16x8_t __s1 = __p1; \
  58188. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  58189. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  58190. int16x8_t __ret; \
  58191. __ret = __noswap_vqdmulhq_s16(__rev0, __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2, __p2, __p2, __p2, __p2)); \
  58192. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  58193. __ret; \
  58194. })
  58195. #endif
  58196. #ifdef __LITTLE_ENDIAN__
  58197. #define vqdmulh_laneq_s32(__p0, __p1, __p2) __extension__ ({ \
  58198. int32x2_t __s0 = __p0; \
  58199. int32x4_t __s1 = __p1; \
  58200. int32x2_t __ret; \
  58201. __ret = vqdmulh_s32(__s0, __builtin_shufflevector(__s1, __s1, __p2, __p2)); \
  58202. __ret; \
  58203. })
  58204. #else
  58205. #define vqdmulh_laneq_s32(__p0, __p1, __p2) __extension__ ({ \
  58206. int32x2_t __s0 = __p0; \
  58207. int32x4_t __s1 = __p1; \
  58208. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  58209. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  58210. int32x2_t __ret; \
  58211. __ret = __noswap_vqdmulh_s32(__rev0, __builtin_shufflevector(__rev1, __rev1, __p2, __p2)); \
  58212. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  58213. __ret; \
  58214. })
  58215. #endif
  58216. #ifdef __LITTLE_ENDIAN__
  58217. #define vqdmulh_laneq_s16(__p0, __p1, __p2) __extension__ ({ \
  58218. int16x4_t __s0 = __p0; \
  58219. int16x8_t __s1 = __p1; \
  58220. int16x4_t __ret; \
  58221. __ret = vqdmulh_s16(__s0, __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2)); \
  58222. __ret; \
  58223. })
  58224. #else
  58225. #define vqdmulh_laneq_s16(__p0, __p1, __p2) __extension__ ({ \
  58226. int16x4_t __s0 = __p0; \
  58227. int16x8_t __s1 = __p1; \
  58228. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  58229. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  58230. int16x4_t __ret; \
  58231. __ret = __noswap_vqdmulh_s16(__rev0, __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2)); \
  58232. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  58233. __ret; \
  58234. })
  58235. #endif
  58236. #ifdef __LITTLE_ENDIAN__
  58237. __ai int64_t vqdmulls_s32(int32_t __p0, int32_t __p1) {
  58238. int64_t __ret;
  58239. __ret = (int64_t) __builtin_neon_vqdmulls_s32(__p0, __p1);
  58240. return __ret;
  58241. }
  58242. #else
  58243. __ai int64_t vqdmulls_s32(int32_t __p0, int32_t __p1) {
  58244. int64_t __ret;
  58245. __ret = (int64_t) __builtin_neon_vqdmulls_s32(__p0, __p1);
  58246. return __ret;
  58247. }
  58248. __ai int64_t __noswap_vqdmulls_s32(int32_t __p0, int32_t __p1) {
  58249. int64_t __ret;
  58250. __ret = (int64_t) __builtin_neon_vqdmulls_s32(__p0, __p1);
  58251. return __ret;
  58252. }
  58253. #endif
  58254. #ifdef __LITTLE_ENDIAN__
  58255. __ai int32_t vqdmullh_s16(int16_t __p0, int16_t __p1) {
  58256. int32_t __ret;
  58257. __ret = (int32_t) __builtin_neon_vqdmullh_s16(__p0, __p1);
  58258. return __ret;
  58259. }
  58260. #else
  58261. __ai int32_t vqdmullh_s16(int16_t __p0, int16_t __p1) {
  58262. int32_t __ret;
  58263. __ret = (int32_t) __builtin_neon_vqdmullh_s16(__p0, __p1);
  58264. return __ret;
  58265. }
  58266. __ai int32_t __noswap_vqdmullh_s16(int16_t __p0, int16_t __p1) {
  58267. int32_t __ret;
  58268. __ret = (int32_t) __builtin_neon_vqdmullh_s16(__p0, __p1);
  58269. return __ret;
  58270. }
  58271. #endif
  58272. #ifdef __LITTLE_ENDIAN__
  58273. __ai int64x2_t vqdmull_high_s32(int32x4_t __p0, int32x4_t __p1) {
  58274. int64x2_t __ret;
  58275. __ret = vqdmull_s32(vget_high_s32(__p0), vget_high_s32(__p1));
  58276. return __ret;
  58277. }
  58278. #else
  58279. __ai int64x2_t vqdmull_high_s32(int32x4_t __p0, int32x4_t __p1) {
  58280. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  58281. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  58282. int64x2_t __ret;
  58283. __ret = __noswap_vqdmull_s32(__noswap_vget_high_s32(__rev0), __noswap_vget_high_s32(__rev1));
  58284. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  58285. return __ret;
  58286. }
  58287. #endif
  58288. #ifdef __LITTLE_ENDIAN__
  58289. __ai int32x4_t vqdmull_high_s16(int16x8_t __p0, int16x8_t __p1) {
  58290. int32x4_t __ret;
  58291. __ret = vqdmull_s16(vget_high_s16(__p0), vget_high_s16(__p1));
  58292. return __ret;
  58293. }
  58294. #else
  58295. __ai int32x4_t vqdmull_high_s16(int16x8_t __p0, int16x8_t __p1) {
  58296. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  58297. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  58298. int32x4_t __ret;
  58299. __ret = __noswap_vqdmull_s16(__noswap_vget_high_s16(__rev0), __noswap_vget_high_s16(__rev1));
  58300. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  58301. return __ret;
  58302. }
  58303. #endif
  58304. #ifdef __LITTLE_ENDIAN__
  58305. #define vqdmull_high_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  58306. int32x4_t __s0 = __p0; \
  58307. int32x2_t __s1 = __p1; \
  58308. int64x2_t __ret; \
  58309. __ret = vqdmull_s32(vget_high_s32(__s0), __builtin_shufflevector(__s1, __s1, __p2, __p2)); \
  58310. __ret; \
  58311. })
  58312. #else
  58313. #define vqdmull_high_lane_s32(__p0, __p1, __p2) __extension__ ({ \
  58314. int32x4_t __s0 = __p0; \
  58315. int32x2_t __s1 = __p1; \
  58316. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  58317. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  58318. int64x2_t __ret; \
  58319. __ret = __noswap_vqdmull_s32(__noswap_vget_high_s32(__rev0), __builtin_shufflevector(__rev1, __rev1, __p2, __p2)); \
  58320. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  58321. __ret; \
  58322. })
  58323. #endif
  58324. #ifdef __LITTLE_ENDIAN__
  58325. #define vqdmull_high_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  58326. int16x8_t __s0 = __p0; \
  58327. int16x4_t __s1 = __p1; \
  58328. int32x4_t __ret; \
  58329. __ret = vqdmull_s16(vget_high_s16(__s0), __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2)); \
  58330. __ret; \
  58331. })
  58332. #else
  58333. #define vqdmull_high_lane_s16(__p0, __p1, __p2) __extension__ ({ \
  58334. int16x8_t __s0 = __p0; \
  58335. int16x4_t __s1 = __p1; \
  58336. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  58337. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  58338. int32x4_t __ret; \
  58339. __ret = __noswap_vqdmull_s16(__noswap_vget_high_s16(__rev0), __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2)); \
  58340. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  58341. __ret; \
  58342. })
  58343. #endif
  58344. #ifdef __LITTLE_ENDIAN__
  58345. #define vqdmull_high_laneq_s32(__p0, __p1, __p2) __extension__ ({ \
  58346. int32x4_t __s0 = __p0; \
  58347. int32x4_t __s1 = __p1; \
  58348. int64x2_t __ret; \
  58349. __ret = vqdmull_s32(vget_high_s32(__s0), __builtin_shufflevector(__s1, __s1, __p2, __p2)); \
  58350. __ret; \
  58351. })
  58352. #else
  58353. #define vqdmull_high_laneq_s32(__p0, __p1, __p2) __extension__ ({ \
  58354. int32x4_t __s0 = __p0; \
  58355. int32x4_t __s1 = __p1; \
  58356. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  58357. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  58358. int64x2_t __ret; \
  58359. __ret = __noswap_vqdmull_s32(__noswap_vget_high_s32(__rev0), __builtin_shufflevector(__rev1, __rev1, __p2, __p2)); \
  58360. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  58361. __ret; \
  58362. })
  58363. #endif
  58364. #ifdef __LITTLE_ENDIAN__
  58365. #define vqdmull_high_laneq_s16(__p0, __p1, __p2) __extension__ ({ \
  58366. int16x8_t __s0 = __p0; \
  58367. int16x8_t __s1 = __p1; \
  58368. int32x4_t __ret; \
  58369. __ret = vqdmull_s16(vget_high_s16(__s0), __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2)); \
  58370. __ret; \
  58371. })
  58372. #else
  58373. #define vqdmull_high_laneq_s16(__p0, __p1, __p2) __extension__ ({ \
  58374. int16x8_t __s0 = __p0; \
  58375. int16x8_t __s1 = __p1; \
  58376. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  58377. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  58378. int32x4_t __ret; \
  58379. __ret = __noswap_vqdmull_s16(__noswap_vget_high_s16(__rev0), __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2)); \
  58380. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  58381. __ret; \
  58382. })
  58383. #endif
  58384. #ifdef __LITTLE_ENDIAN__
  58385. __ai int64x2_t vqdmull_high_n_s32(int32x4_t __p0, int32_t __p1) {
  58386. int64x2_t __ret;
  58387. __ret = vqdmull_n_s32(vget_high_s32(__p0), __p1);
  58388. return __ret;
  58389. }
  58390. #else
  58391. __ai int64x2_t vqdmull_high_n_s32(int32x4_t __p0, int32_t __p1) {
  58392. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  58393. int64x2_t __ret;
  58394. __ret = __noswap_vqdmull_n_s32(__noswap_vget_high_s32(__rev0), __p1);
  58395. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  58396. return __ret;
  58397. }
  58398. #endif
  58399. #ifdef __LITTLE_ENDIAN__
  58400. __ai int32x4_t vqdmull_high_n_s16(int16x8_t __p0, int16_t __p1) {
  58401. int32x4_t __ret;
  58402. __ret = vqdmull_n_s16(vget_high_s16(__p0), __p1);
  58403. return __ret;
  58404. }
  58405. #else
  58406. __ai int32x4_t vqdmull_high_n_s16(int16x8_t __p0, int16_t __p1) {
  58407. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  58408. int32x4_t __ret;
  58409. __ret = __noswap_vqdmull_n_s16(__noswap_vget_high_s16(__rev0), __p1);
  58410. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  58411. return __ret;
  58412. }
  58413. #endif
  58414. #ifdef __LITTLE_ENDIAN__
  58415. #define vqdmulls_lane_s32(__p0_166, __p1_166, __p2_166) __extension__ ({ \
  58416. int32_t __s0_166 = __p0_166; \
  58417. int32x2_t __s1_166 = __p1_166; \
  58418. int64_t __ret_166; \
  58419. __ret_166 = vqdmulls_s32(__s0_166, vget_lane_s32(__s1_166, __p2_166)); \
  58420. __ret_166; \
  58421. })
  58422. #else
  58423. #define vqdmulls_lane_s32(__p0_167, __p1_167, __p2_167) __extension__ ({ \
  58424. int32_t __s0_167 = __p0_167; \
  58425. int32x2_t __s1_167 = __p1_167; \
  58426. int32x2_t __rev1_167; __rev1_167 = __builtin_shufflevector(__s1_167, __s1_167, 1, 0); \
  58427. int64_t __ret_167; \
  58428. __ret_167 = __noswap_vqdmulls_s32(__s0_167, __noswap_vget_lane_s32(__rev1_167, __p2_167)); \
  58429. __ret_167; \
  58430. })
  58431. #endif
  58432. #ifdef __LITTLE_ENDIAN__
  58433. #define vqdmullh_lane_s16(__p0_168, __p1_168, __p2_168) __extension__ ({ \
  58434. int16_t __s0_168 = __p0_168; \
  58435. int16x4_t __s1_168 = __p1_168; \
  58436. int32_t __ret_168; \
  58437. __ret_168 = vqdmullh_s16(__s0_168, vget_lane_s16(__s1_168, __p2_168)); \
  58438. __ret_168; \
  58439. })
  58440. #else
  58441. #define vqdmullh_lane_s16(__p0_169, __p1_169, __p2_169) __extension__ ({ \
  58442. int16_t __s0_169 = __p0_169; \
  58443. int16x4_t __s1_169 = __p1_169; \
  58444. int16x4_t __rev1_169; __rev1_169 = __builtin_shufflevector(__s1_169, __s1_169, 3, 2, 1, 0); \
  58445. int32_t __ret_169; \
  58446. __ret_169 = __noswap_vqdmullh_s16(__s0_169, __noswap_vget_lane_s16(__rev1_169, __p2_169)); \
  58447. __ret_169; \
  58448. })
  58449. #endif
  58450. #ifdef __LITTLE_ENDIAN__
  58451. #define vqdmulls_laneq_s32(__p0_170, __p1_170, __p2_170) __extension__ ({ \
  58452. int32_t __s0_170 = __p0_170; \
  58453. int32x4_t __s1_170 = __p1_170; \
  58454. int64_t __ret_170; \
  58455. __ret_170 = vqdmulls_s32(__s0_170, vgetq_lane_s32(__s1_170, __p2_170)); \
  58456. __ret_170; \
  58457. })
  58458. #else
  58459. #define vqdmulls_laneq_s32(__p0_171, __p1_171, __p2_171) __extension__ ({ \
  58460. int32_t __s0_171 = __p0_171; \
  58461. int32x4_t __s1_171 = __p1_171; \
  58462. int32x4_t __rev1_171; __rev1_171 = __builtin_shufflevector(__s1_171, __s1_171, 3, 2, 1, 0); \
  58463. int64_t __ret_171; \
  58464. __ret_171 = __noswap_vqdmulls_s32(__s0_171, __noswap_vgetq_lane_s32(__rev1_171, __p2_171)); \
  58465. __ret_171; \
  58466. })
  58467. #endif
  58468. #ifdef __LITTLE_ENDIAN__
  58469. #define vqdmullh_laneq_s16(__p0_172, __p1_172, __p2_172) __extension__ ({ \
  58470. int16_t __s0_172 = __p0_172; \
  58471. int16x8_t __s1_172 = __p1_172; \
  58472. int32_t __ret_172; \
  58473. __ret_172 = vqdmullh_s16(__s0_172, vgetq_lane_s16(__s1_172, __p2_172)); \
  58474. __ret_172; \
  58475. })
  58476. #else
  58477. #define vqdmullh_laneq_s16(__p0_173, __p1_173, __p2_173) __extension__ ({ \
  58478. int16_t __s0_173 = __p0_173; \
  58479. int16x8_t __s1_173 = __p1_173; \
  58480. int16x8_t __rev1_173; __rev1_173 = __builtin_shufflevector(__s1_173, __s1_173, 7, 6, 5, 4, 3, 2, 1, 0); \
  58481. int32_t __ret_173; \
  58482. __ret_173 = __noswap_vqdmullh_s16(__s0_173, __noswap_vgetq_lane_s16(__rev1_173, __p2_173)); \
  58483. __ret_173; \
  58484. })
  58485. #endif
  58486. #ifdef __LITTLE_ENDIAN__
  58487. #define vqdmull_laneq_s32(__p0, __p1, __p2) __extension__ ({ \
  58488. int32x2_t __s0 = __p0; \
  58489. int32x4_t __s1 = __p1; \
  58490. int64x2_t __ret; \
  58491. __ret = vqdmull_s32(__s0, __builtin_shufflevector(__s1, __s1, __p2, __p2)); \
  58492. __ret; \
  58493. })
  58494. #else
  58495. #define vqdmull_laneq_s32(__p0, __p1, __p2) __extension__ ({ \
  58496. int32x2_t __s0 = __p0; \
  58497. int32x4_t __s1 = __p1; \
  58498. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  58499. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  58500. int64x2_t __ret; \
  58501. __ret = __noswap_vqdmull_s32(__rev0, __builtin_shufflevector(__rev1, __rev1, __p2, __p2)); \
  58502. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  58503. __ret; \
  58504. })
  58505. #endif
  58506. #ifdef __LITTLE_ENDIAN__
  58507. #define vqdmull_laneq_s16(__p0, __p1, __p2) __extension__ ({ \
  58508. int16x4_t __s0 = __p0; \
  58509. int16x8_t __s1 = __p1; \
  58510. int32x4_t __ret; \
  58511. __ret = vqdmull_s16(__s0, __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2)); \
  58512. __ret; \
  58513. })
  58514. #else
  58515. #define vqdmull_laneq_s16(__p0, __p1, __p2) __extension__ ({ \
  58516. int16x4_t __s0 = __p0; \
  58517. int16x8_t __s1 = __p1; \
  58518. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  58519. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  58520. int32x4_t __ret; \
  58521. __ret = __noswap_vqdmull_s16(__rev0, __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2)); \
  58522. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  58523. __ret; \
  58524. })
  58525. #endif
  58526. #ifdef __LITTLE_ENDIAN__
  58527. __ai int16_t vqmovns_s32(int32_t __p0) {
  58528. int16_t __ret;
  58529. __ret = (int16_t) __builtin_neon_vqmovns_s32(__p0);
  58530. return __ret;
  58531. }
  58532. #else
  58533. __ai int16_t vqmovns_s32(int32_t __p0) {
  58534. int16_t __ret;
  58535. __ret = (int16_t) __builtin_neon_vqmovns_s32(__p0);
  58536. return __ret;
  58537. }
  58538. #endif
  58539. #ifdef __LITTLE_ENDIAN__
  58540. __ai int32_t vqmovnd_s64(int64_t __p0) {
  58541. int32_t __ret;
  58542. __ret = (int32_t) __builtin_neon_vqmovnd_s64(__p0);
  58543. return __ret;
  58544. }
  58545. #else
  58546. __ai int32_t vqmovnd_s64(int64_t __p0) {
  58547. int32_t __ret;
  58548. __ret = (int32_t) __builtin_neon_vqmovnd_s64(__p0);
  58549. return __ret;
  58550. }
  58551. #endif
  58552. #ifdef __LITTLE_ENDIAN__
  58553. __ai int8_t vqmovnh_s16(int16_t __p0) {
  58554. int8_t __ret;
  58555. __ret = (int8_t) __builtin_neon_vqmovnh_s16(__p0);
  58556. return __ret;
  58557. }
  58558. #else
  58559. __ai int8_t vqmovnh_s16(int16_t __p0) {
  58560. int8_t __ret;
  58561. __ret = (int8_t) __builtin_neon_vqmovnh_s16(__p0);
  58562. return __ret;
  58563. }
  58564. #endif
  58565. #ifdef __LITTLE_ENDIAN__
  58566. __ai uint16_t vqmovns_u32(uint32_t __p0) {
  58567. uint16_t __ret;
  58568. __ret = (uint16_t) __builtin_neon_vqmovns_u32(__p0);
  58569. return __ret;
  58570. }
  58571. #else
  58572. __ai uint16_t vqmovns_u32(uint32_t __p0) {
  58573. uint16_t __ret;
  58574. __ret = (uint16_t) __builtin_neon_vqmovns_u32(__p0);
  58575. return __ret;
  58576. }
  58577. #endif
  58578. #ifdef __LITTLE_ENDIAN__
  58579. __ai uint32_t vqmovnd_u64(uint64_t __p0) {
  58580. uint32_t __ret;
  58581. __ret = (uint32_t) __builtin_neon_vqmovnd_u64(__p0);
  58582. return __ret;
  58583. }
  58584. #else
  58585. __ai uint32_t vqmovnd_u64(uint64_t __p0) {
  58586. uint32_t __ret;
  58587. __ret = (uint32_t) __builtin_neon_vqmovnd_u64(__p0);
  58588. return __ret;
  58589. }
  58590. #endif
  58591. #ifdef __LITTLE_ENDIAN__
  58592. __ai uint8_t vqmovnh_u16(uint16_t __p0) {
  58593. uint8_t __ret;
  58594. __ret = (uint8_t) __builtin_neon_vqmovnh_u16(__p0);
  58595. return __ret;
  58596. }
  58597. #else
  58598. __ai uint8_t vqmovnh_u16(uint16_t __p0) {
  58599. uint8_t __ret;
  58600. __ret = (uint8_t) __builtin_neon_vqmovnh_u16(__p0);
  58601. return __ret;
  58602. }
  58603. #endif
  58604. #ifdef __LITTLE_ENDIAN__
  58605. __ai uint16x8_t vqmovn_high_u32(uint16x4_t __p0, uint32x4_t __p1) {
  58606. uint16x8_t __ret;
  58607. __ret = vcombine_u16(__p0, vqmovn_u32(__p1));
  58608. return __ret;
  58609. }
  58610. #else
  58611. __ai uint16x8_t vqmovn_high_u32(uint16x4_t __p0, uint32x4_t __p1) {
  58612. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  58613. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  58614. uint16x8_t __ret;
  58615. __ret = __noswap_vcombine_u16(__rev0, __noswap_vqmovn_u32(__rev1));
  58616. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  58617. return __ret;
  58618. }
  58619. #endif
  58620. #ifdef __LITTLE_ENDIAN__
  58621. __ai uint32x4_t vqmovn_high_u64(uint32x2_t __p0, uint64x2_t __p1) {
  58622. uint32x4_t __ret;
  58623. __ret = vcombine_u32(__p0, vqmovn_u64(__p1));
  58624. return __ret;
  58625. }
  58626. #else
  58627. __ai uint32x4_t vqmovn_high_u64(uint32x2_t __p0, uint64x2_t __p1) {
  58628. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  58629. uint64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  58630. uint32x4_t __ret;
  58631. __ret = __noswap_vcombine_u32(__rev0, __noswap_vqmovn_u64(__rev1));
  58632. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  58633. return __ret;
  58634. }
  58635. #endif
  58636. #ifdef __LITTLE_ENDIAN__
  58637. __ai uint8x16_t vqmovn_high_u16(uint8x8_t __p0, uint16x8_t __p1) {
  58638. uint8x16_t __ret;
  58639. __ret = vcombine_u8(__p0, vqmovn_u16(__p1));
  58640. return __ret;
  58641. }
  58642. #else
  58643. __ai uint8x16_t vqmovn_high_u16(uint8x8_t __p0, uint16x8_t __p1) {
  58644. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  58645. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  58646. uint8x16_t __ret;
  58647. __ret = __noswap_vcombine_u8(__rev0, __noswap_vqmovn_u16(__rev1));
  58648. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  58649. return __ret;
  58650. }
  58651. #endif
  58652. #ifdef __LITTLE_ENDIAN__
  58653. __ai int16x8_t vqmovn_high_s32(int16x4_t __p0, int32x4_t __p1) {
  58654. int16x8_t __ret;
  58655. __ret = vcombine_s16(__p0, vqmovn_s32(__p1));
  58656. return __ret;
  58657. }
  58658. #else
  58659. __ai int16x8_t vqmovn_high_s32(int16x4_t __p0, int32x4_t __p1) {
  58660. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  58661. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  58662. int16x8_t __ret;
  58663. __ret = __noswap_vcombine_s16(__rev0, __noswap_vqmovn_s32(__rev1));
  58664. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  58665. return __ret;
  58666. }
  58667. #endif
  58668. #ifdef __LITTLE_ENDIAN__
  58669. __ai int32x4_t vqmovn_high_s64(int32x2_t __p0, int64x2_t __p1) {
  58670. int32x4_t __ret;
  58671. __ret = vcombine_s32(__p0, vqmovn_s64(__p1));
  58672. return __ret;
  58673. }
  58674. #else
  58675. __ai int32x4_t vqmovn_high_s64(int32x2_t __p0, int64x2_t __p1) {
  58676. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  58677. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  58678. int32x4_t __ret;
  58679. __ret = __noswap_vcombine_s32(__rev0, __noswap_vqmovn_s64(__rev1));
  58680. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  58681. return __ret;
  58682. }
  58683. #endif
  58684. #ifdef __LITTLE_ENDIAN__
  58685. __ai int8x16_t vqmovn_high_s16(int8x8_t __p0, int16x8_t __p1) {
  58686. int8x16_t __ret;
  58687. __ret = vcombine_s8(__p0, vqmovn_s16(__p1));
  58688. return __ret;
  58689. }
  58690. #else
  58691. __ai int8x16_t vqmovn_high_s16(int8x8_t __p0, int16x8_t __p1) {
  58692. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  58693. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  58694. int8x16_t __ret;
  58695. __ret = __noswap_vcombine_s8(__rev0, __noswap_vqmovn_s16(__rev1));
  58696. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  58697. return __ret;
  58698. }
  58699. #endif
  58700. #ifdef __LITTLE_ENDIAN__
  58701. __ai int16_t vqmovuns_s32(int32_t __p0) {
  58702. int16_t __ret;
  58703. __ret = (int16_t) __builtin_neon_vqmovuns_s32(__p0);
  58704. return __ret;
  58705. }
  58706. #else
  58707. __ai int16_t vqmovuns_s32(int32_t __p0) {
  58708. int16_t __ret;
  58709. __ret = (int16_t) __builtin_neon_vqmovuns_s32(__p0);
  58710. return __ret;
  58711. }
  58712. #endif
  58713. #ifdef __LITTLE_ENDIAN__
  58714. __ai int32_t vqmovund_s64(int64_t __p0) {
  58715. int32_t __ret;
  58716. __ret = (int32_t) __builtin_neon_vqmovund_s64(__p0);
  58717. return __ret;
  58718. }
  58719. #else
  58720. __ai int32_t vqmovund_s64(int64_t __p0) {
  58721. int32_t __ret;
  58722. __ret = (int32_t) __builtin_neon_vqmovund_s64(__p0);
  58723. return __ret;
  58724. }
  58725. #endif
  58726. #ifdef __LITTLE_ENDIAN__
  58727. __ai int8_t vqmovunh_s16(int16_t __p0) {
  58728. int8_t __ret;
  58729. __ret = (int8_t) __builtin_neon_vqmovunh_s16(__p0);
  58730. return __ret;
  58731. }
  58732. #else
  58733. __ai int8_t vqmovunh_s16(int16_t __p0) {
  58734. int8_t __ret;
  58735. __ret = (int8_t) __builtin_neon_vqmovunh_s16(__p0);
  58736. return __ret;
  58737. }
  58738. #endif
  58739. #ifdef __LITTLE_ENDIAN__
  58740. __ai uint16x8_t vqmovun_high_s32(int16x4_t __p0, int32x4_t __p1) {
  58741. uint16x8_t __ret;
  58742. __ret = vcombine_u16((uint16x4_t)(__p0), vqmovun_s32(__p1));
  58743. return __ret;
  58744. }
  58745. #else
  58746. __ai uint16x8_t vqmovun_high_s32(int16x4_t __p0, int32x4_t __p1) {
  58747. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  58748. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  58749. uint16x8_t __ret;
  58750. __ret = __noswap_vcombine_u16((uint16x4_t)(__rev0), __noswap_vqmovun_s32(__rev1));
  58751. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  58752. return __ret;
  58753. }
  58754. #endif
  58755. #ifdef __LITTLE_ENDIAN__
  58756. __ai uint32x4_t vqmovun_high_s64(int32x2_t __p0, int64x2_t __p1) {
  58757. uint32x4_t __ret;
  58758. __ret = vcombine_u32((uint32x2_t)(__p0), vqmovun_s64(__p1));
  58759. return __ret;
  58760. }
  58761. #else
  58762. __ai uint32x4_t vqmovun_high_s64(int32x2_t __p0, int64x2_t __p1) {
  58763. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  58764. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  58765. uint32x4_t __ret;
  58766. __ret = __noswap_vcombine_u32((uint32x2_t)(__rev0), __noswap_vqmovun_s64(__rev1));
  58767. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  58768. return __ret;
  58769. }
  58770. #endif
  58771. #ifdef __LITTLE_ENDIAN__
  58772. __ai uint8x16_t vqmovun_high_s16(int8x8_t __p0, int16x8_t __p1) {
  58773. uint8x16_t __ret;
  58774. __ret = vcombine_u8((uint8x8_t)(__p0), vqmovun_s16(__p1));
  58775. return __ret;
  58776. }
  58777. #else
  58778. __ai uint8x16_t vqmovun_high_s16(int8x8_t __p0, int16x8_t __p1) {
  58779. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  58780. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  58781. uint8x16_t __ret;
  58782. __ret = __noswap_vcombine_u8((uint8x8_t)(__rev0), __noswap_vqmovun_s16(__rev1));
  58783. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  58784. return __ret;
  58785. }
  58786. #endif
  58787. #ifdef __LITTLE_ENDIAN__
  58788. __ai int64x2_t vqnegq_s64(int64x2_t __p0) {
  58789. int64x2_t __ret;
  58790. __ret = (int64x2_t) __builtin_neon_vqnegq_v((int8x16_t)__p0, 35);
  58791. return __ret;
  58792. }
  58793. #else
  58794. __ai int64x2_t vqnegq_s64(int64x2_t __p0) {
  58795. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  58796. int64x2_t __ret;
  58797. __ret = (int64x2_t) __builtin_neon_vqnegq_v((int8x16_t)__rev0, 35);
  58798. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  58799. return __ret;
  58800. }
  58801. #endif
  58802. #ifdef __LITTLE_ENDIAN__
  58803. __ai int64x1_t vqneg_s64(int64x1_t __p0) {
  58804. int64x1_t __ret;
  58805. __ret = (int64x1_t) __builtin_neon_vqneg_v((int8x8_t)__p0, 3);
  58806. return __ret;
  58807. }
  58808. #else
  58809. __ai int64x1_t vqneg_s64(int64x1_t __p0) {
  58810. int64x1_t __ret;
  58811. __ret = (int64x1_t) __builtin_neon_vqneg_v((int8x8_t)__p0, 3);
  58812. return __ret;
  58813. }
  58814. #endif
  58815. #ifdef __LITTLE_ENDIAN__
  58816. __ai int8_t vqnegb_s8(int8_t __p0) {
  58817. int8_t __ret;
  58818. __ret = (int8_t) __builtin_neon_vqnegb_s8(__p0);
  58819. return __ret;
  58820. }
  58821. #else
  58822. __ai int8_t vqnegb_s8(int8_t __p0) {
  58823. int8_t __ret;
  58824. __ret = (int8_t) __builtin_neon_vqnegb_s8(__p0);
  58825. return __ret;
  58826. }
  58827. #endif
  58828. #ifdef __LITTLE_ENDIAN__
  58829. __ai int32_t vqnegs_s32(int32_t __p0) {
  58830. int32_t __ret;
  58831. __ret = (int32_t) __builtin_neon_vqnegs_s32(__p0);
  58832. return __ret;
  58833. }
  58834. #else
  58835. __ai int32_t vqnegs_s32(int32_t __p0) {
  58836. int32_t __ret;
  58837. __ret = (int32_t) __builtin_neon_vqnegs_s32(__p0);
  58838. return __ret;
  58839. }
  58840. #endif
  58841. #ifdef __LITTLE_ENDIAN__
  58842. __ai int64_t vqnegd_s64(int64_t __p0) {
  58843. int64_t __ret;
  58844. __ret = (int64_t) __builtin_neon_vqnegd_s64(__p0);
  58845. return __ret;
  58846. }
  58847. #else
  58848. __ai int64_t vqnegd_s64(int64_t __p0) {
  58849. int64_t __ret;
  58850. __ret = (int64_t) __builtin_neon_vqnegd_s64(__p0);
  58851. return __ret;
  58852. }
  58853. #endif
  58854. #ifdef __LITTLE_ENDIAN__
  58855. __ai int16_t vqnegh_s16(int16_t __p0) {
  58856. int16_t __ret;
  58857. __ret = (int16_t) __builtin_neon_vqnegh_s16(__p0);
  58858. return __ret;
  58859. }
  58860. #else
  58861. __ai int16_t vqnegh_s16(int16_t __p0) {
  58862. int16_t __ret;
  58863. __ret = (int16_t) __builtin_neon_vqnegh_s16(__p0);
  58864. return __ret;
  58865. }
  58866. #endif
  58867. #ifdef __LITTLE_ENDIAN__
  58868. __ai int32_t vqrdmulhs_s32(int32_t __p0, int32_t __p1) {
  58869. int32_t __ret;
  58870. __ret = (int32_t) __builtin_neon_vqrdmulhs_s32(__p0, __p1);
  58871. return __ret;
  58872. }
  58873. #else
  58874. __ai int32_t vqrdmulhs_s32(int32_t __p0, int32_t __p1) {
  58875. int32_t __ret;
  58876. __ret = (int32_t) __builtin_neon_vqrdmulhs_s32(__p0, __p1);
  58877. return __ret;
  58878. }
  58879. __ai int32_t __noswap_vqrdmulhs_s32(int32_t __p0, int32_t __p1) {
  58880. int32_t __ret;
  58881. __ret = (int32_t) __builtin_neon_vqrdmulhs_s32(__p0, __p1);
  58882. return __ret;
  58883. }
  58884. #endif
  58885. #ifdef __LITTLE_ENDIAN__
  58886. __ai int16_t vqrdmulhh_s16(int16_t __p0, int16_t __p1) {
  58887. int16_t __ret;
  58888. __ret = (int16_t) __builtin_neon_vqrdmulhh_s16(__p0, __p1);
  58889. return __ret;
  58890. }
  58891. #else
  58892. __ai int16_t vqrdmulhh_s16(int16_t __p0, int16_t __p1) {
  58893. int16_t __ret;
  58894. __ret = (int16_t) __builtin_neon_vqrdmulhh_s16(__p0, __p1);
  58895. return __ret;
  58896. }
  58897. __ai int16_t __noswap_vqrdmulhh_s16(int16_t __p0, int16_t __p1) {
  58898. int16_t __ret;
  58899. __ret = (int16_t) __builtin_neon_vqrdmulhh_s16(__p0, __p1);
  58900. return __ret;
  58901. }
  58902. #endif
  58903. #ifdef __LITTLE_ENDIAN__
  58904. #define vqrdmulhs_lane_s32(__p0_174, __p1_174, __p2_174) __extension__ ({ \
  58905. int32_t __s0_174 = __p0_174; \
  58906. int32x2_t __s1_174 = __p1_174; \
  58907. int32_t __ret_174; \
  58908. __ret_174 = vqrdmulhs_s32(__s0_174, vget_lane_s32(__s1_174, __p2_174)); \
  58909. __ret_174; \
  58910. })
  58911. #else
  58912. #define vqrdmulhs_lane_s32(__p0_175, __p1_175, __p2_175) __extension__ ({ \
  58913. int32_t __s0_175 = __p0_175; \
  58914. int32x2_t __s1_175 = __p1_175; \
  58915. int32x2_t __rev1_175; __rev1_175 = __builtin_shufflevector(__s1_175, __s1_175, 1, 0); \
  58916. int32_t __ret_175; \
  58917. __ret_175 = __noswap_vqrdmulhs_s32(__s0_175, __noswap_vget_lane_s32(__rev1_175, __p2_175)); \
  58918. __ret_175; \
  58919. })
  58920. #endif
  58921. #ifdef __LITTLE_ENDIAN__
  58922. #define vqrdmulhh_lane_s16(__p0_176, __p1_176, __p2_176) __extension__ ({ \
  58923. int16_t __s0_176 = __p0_176; \
  58924. int16x4_t __s1_176 = __p1_176; \
  58925. int16_t __ret_176; \
  58926. __ret_176 = vqrdmulhh_s16(__s0_176, vget_lane_s16(__s1_176, __p2_176)); \
  58927. __ret_176; \
  58928. })
  58929. #else
  58930. #define vqrdmulhh_lane_s16(__p0_177, __p1_177, __p2_177) __extension__ ({ \
  58931. int16_t __s0_177 = __p0_177; \
  58932. int16x4_t __s1_177 = __p1_177; \
  58933. int16x4_t __rev1_177; __rev1_177 = __builtin_shufflevector(__s1_177, __s1_177, 3, 2, 1, 0); \
  58934. int16_t __ret_177; \
  58935. __ret_177 = __noswap_vqrdmulhh_s16(__s0_177, __noswap_vget_lane_s16(__rev1_177, __p2_177)); \
  58936. __ret_177; \
  58937. })
  58938. #endif
  58939. #ifdef __LITTLE_ENDIAN__
  58940. #define vqrdmulhs_laneq_s32(__p0_178, __p1_178, __p2_178) __extension__ ({ \
  58941. int32_t __s0_178 = __p0_178; \
  58942. int32x4_t __s1_178 = __p1_178; \
  58943. int32_t __ret_178; \
  58944. __ret_178 = vqrdmulhs_s32(__s0_178, vgetq_lane_s32(__s1_178, __p2_178)); \
  58945. __ret_178; \
  58946. })
  58947. #else
  58948. #define vqrdmulhs_laneq_s32(__p0_179, __p1_179, __p2_179) __extension__ ({ \
  58949. int32_t __s0_179 = __p0_179; \
  58950. int32x4_t __s1_179 = __p1_179; \
  58951. int32x4_t __rev1_179; __rev1_179 = __builtin_shufflevector(__s1_179, __s1_179, 3, 2, 1, 0); \
  58952. int32_t __ret_179; \
  58953. __ret_179 = __noswap_vqrdmulhs_s32(__s0_179, __noswap_vgetq_lane_s32(__rev1_179, __p2_179)); \
  58954. __ret_179; \
  58955. })
  58956. #endif
  58957. #ifdef __LITTLE_ENDIAN__
  58958. #define vqrdmulhh_laneq_s16(__p0_180, __p1_180, __p2_180) __extension__ ({ \
  58959. int16_t __s0_180 = __p0_180; \
  58960. int16x8_t __s1_180 = __p1_180; \
  58961. int16_t __ret_180; \
  58962. __ret_180 = vqrdmulhh_s16(__s0_180, vgetq_lane_s16(__s1_180, __p2_180)); \
  58963. __ret_180; \
  58964. })
  58965. #else
  58966. #define vqrdmulhh_laneq_s16(__p0_181, __p1_181, __p2_181) __extension__ ({ \
  58967. int16_t __s0_181 = __p0_181; \
  58968. int16x8_t __s1_181 = __p1_181; \
  58969. int16x8_t __rev1_181; __rev1_181 = __builtin_shufflevector(__s1_181, __s1_181, 7, 6, 5, 4, 3, 2, 1, 0); \
  58970. int16_t __ret_181; \
  58971. __ret_181 = __noswap_vqrdmulhh_s16(__s0_181, __noswap_vgetq_lane_s16(__rev1_181, __p2_181)); \
  58972. __ret_181; \
  58973. })
  58974. #endif
  58975. #ifdef __LITTLE_ENDIAN__
  58976. #define vqrdmulhq_laneq_s32(__p0, __p1, __p2) __extension__ ({ \
  58977. int32x4_t __s0 = __p0; \
  58978. int32x4_t __s1 = __p1; \
  58979. int32x4_t __ret; \
  58980. __ret = vqrdmulhq_s32(__s0, __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2)); \
  58981. __ret; \
  58982. })
  58983. #else
  58984. #define vqrdmulhq_laneq_s32(__p0, __p1, __p2) __extension__ ({ \
  58985. int32x4_t __s0 = __p0; \
  58986. int32x4_t __s1 = __p1; \
  58987. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  58988. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  58989. int32x4_t __ret; \
  58990. __ret = __noswap_vqrdmulhq_s32(__rev0, __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2)); \
  58991. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  58992. __ret; \
  58993. })
  58994. #endif
  58995. #ifdef __LITTLE_ENDIAN__
  58996. #define vqrdmulhq_laneq_s16(__p0, __p1, __p2) __extension__ ({ \
  58997. int16x8_t __s0 = __p0; \
  58998. int16x8_t __s1 = __p1; \
  58999. int16x8_t __ret; \
  59000. __ret = vqrdmulhq_s16(__s0, __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2, __p2, __p2, __p2, __p2)); \
  59001. __ret; \
  59002. })
  59003. #else
  59004. #define vqrdmulhq_laneq_s16(__p0, __p1, __p2) __extension__ ({ \
  59005. int16x8_t __s0 = __p0; \
  59006. int16x8_t __s1 = __p1; \
  59007. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 7, 6, 5, 4, 3, 2, 1, 0); \
  59008. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  59009. int16x8_t __ret; \
  59010. __ret = __noswap_vqrdmulhq_s16(__rev0, __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2, __p2, __p2, __p2, __p2)); \
  59011. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0); \
  59012. __ret; \
  59013. })
  59014. #endif
  59015. #ifdef __LITTLE_ENDIAN__
  59016. #define vqrdmulh_laneq_s32(__p0, __p1, __p2) __extension__ ({ \
  59017. int32x2_t __s0 = __p0; \
  59018. int32x4_t __s1 = __p1; \
  59019. int32x2_t __ret; \
  59020. __ret = vqrdmulh_s32(__s0, __builtin_shufflevector(__s1, __s1, __p2, __p2)); \
  59021. __ret; \
  59022. })
  59023. #else
  59024. #define vqrdmulh_laneq_s32(__p0, __p1, __p2) __extension__ ({ \
  59025. int32x2_t __s0 = __p0; \
  59026. int32x4_t __s1 = __p1; \
  59027. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  59028. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  59029. int32x2_t __ret; \
  59030. __ret = __noswap_vqrdmulh_s32(__rev0, __builtin_shufflevector(__rev1, __rev1, __p2, __p2)); \
  59031. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  59032. __ret; \
  59033. })
  59034. #endif
  59035. #ifdef __LITTLE_ENDIAN__
  59036. #define vqrdmulh_laneq_s16(__p0, __p1, __p2) __extension__ ({ \
  59037. int16x4_t __s0 = __p0; \
  59038. int16x8_t __s1 = __p1; \
  59039. int16x4_t __ret; \
  59040. __ret = vqrdmulh_s16(__s0, __builtin_shufflevector(__s1, __s1, __p2, __p2, __p2, __p2)); \
  59041. __ret; \
  59042. })
  59043. #else
  59044. #define vqrdmulh_laneq_s16(__p0, __p1, __p2) __extension__ ({ \
  59045. int16x4_t __s0 = __p0; \
  59046. int16x8_t __s1 = __p1; \
  59047. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  59048. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 7, 6, 5, 4, 3, 2, 1, 0); \
  59049. int16x4_t __ret; \
  59050. __ret = __noswap_vqrdmulh_s16(__rev0, __builtin_shufflevector(__rev1, __rev1, __p2, __p2, __p2, __p2)); \
  59051. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  59052. __ret; \
  59053. })
  59054. #endif
  59055. #ifdef __LITTLE_ENDIAN__
  59056. __ai uint8_t vqrshlb_u8(uint8_t __p0, uint8_t __p1) {
  59057. uint8_t __ret;
  59058. __ret = (uint8_t) __builtin_neon_vqrshlb_u8(__p0, __p1);
  59059. return __ret;
  59060. }
  59061. #else
  59062. __ai uint8_t vqrshlb_u8(uint8_t __p0, uint8_t __p1) {
  59063. uint8_t __ret;
  59064. __ret = (uint8_t) __builtin_neon_vqrshlb_u8(__p0, __p1);
  59065. return __ret;
  59066. }
  59067. #endif
  59068. #ifdef __LITTLE_ENDIAN__
  59069. __ai uint32_t vqrshls_u32(uint32_t __p0, uint32_t __p1) {
  59070. uint32_t __ret;
  59071. __ret = (uint32_t) __builtin_neon_vqrshls_u32(__p0, __p1);
  59072. return __ret;
  59073. }
  59074. #else
  59075. __ai uint32_t vqrshls_u32(uint32_t __p0, uint32_t __p1) {
  59076. uint32_t __ret;
  59077. __ret = (uint32_t) __builtin_neon_vqrshls_u32(__p0, __p1);
  59078. return __ret;
  59079. }
  59080. #endif
  59081. #ifdef __LITTLE_ENDIAN__
  59082. __ai uint64_t vqrshld_u64(uint64_t __p0, uint64_t __p1) {
  59083. uint64_t __ret;
  59084. __ret = (uint64_t) __builtin_neon_vqrshld_u64(__p0, __p1);
  59085. return __ret;
  59086. }
  59087. #else
  59088. __ai uint64_t vqrshld_u64(uint64_t __p0, uint64_t __p1) {
  59089. uint64_t __ret;
  59090. __ret = (uint64_t) __builtin_neon_vqrshld_u64(__p0, __p1);
  59091. return __ret;
  59092. }
  59093. #endif
  59094. #ifdef __LITTLE_ENDIAN__
  59095. __ai uint16_t vqrshlh_u16(uint16_t __p0, uint16_t __p1) {
  59096. uint16_t __ret;
  59097. __ret = (uint16_t) __builtin_neon_vqrshlh_u16(__p0, __p1);
  59098. return __ret;
  59099. }
  59100. #else
  59101. __ai uint16_t vqrshlh_u16(uint16_t __p0, uint16_t __p1) {
  59102. uint16_t __ret;
  59103. __ret = (uint16_t) __builtin_neon_vqrshlh_u16(__p0, __p1);
  59104. return __ret;
  59105. }
  59106. #endif
  59107. #ifdef __LITTLE_ENDIAN__
  59108. __ai int8_t vqrshlb_s8(int8_t __p0, int8_t __p1) {
  59109. int8_t __ret;
  59110. __ret = (int8_t) __builtin_neon_vqrshlb_s8(__p0, __p1);
  59111. return __ret;
  59112. }
  59113. #else
  59114. __ai int8_t vqrshlb_s8(int8_t __p0, int8_t __p1) {
  59115. int8_t __ret;
  59116. __ret = (int8_t) __builtin_neon_vqrshlb_s8(__p0, __p1);
  59117. return __ret;
  59118. }
  59119. #endif
  59120. #ifdef __LITTLE_ENDIAN__
  59121. __ai int32_t vqrshls_s32(int32_t __p0, int32_t __p1) {
  59122. int32_t __ret;
  59123. __ret = (int32_t) __builtin_neon_vqrshls_s32(__p0, __p1);
  59124. return __ret;
  59125. }
  59126. #else
  59127. __ai int32_t vqrshls_s32(int32_t __p0, int32_t __p1) {
  59128. int32_t __ret;
  59129. __ret = (int32_t) __builtin_neon_vqrshls_s32(__p0, __p1);
  59130. return __ret;
  59131. }
  59132. #endif
  59133. #ifdef __LITTLE_ENDIAN__
  59134. __ai int64_t vqrshld_s64(int64_t __p0, int64_t __p1) {
  59135. int64_t __ret;
  59136. __ret = (int64_t) __builtin_neon_vqrshld_s64(__p0, __p1);
  59137. return __ret;
  59138. }
  59139. #else
  59140. __ai int64_t vqrshld_s64(int64_t __p0, int64_t __p1) {
  59141. int64_t __ret;
  59142. __ret = (int64_t) __builtin_neon_vqrshld_s64(__p0, __p1);
  59143. return __ret;
  59144. }
  59145. #endif
  59146. #ifdef __LITTLE_ENDIAN__
  59147. __ai int16_t vqrshlh_s16(int16_t __p0, int16_t __p1) {
  59148. int16_t __ret;
  59149. __ret = (int16_t) __builtin_neon_vqrshlh_s16(__p0, __p1);
  59150. return __ret;
  59151. }
  59152. #else
  59153. __ai int16_t vqrshlh_s16(int16_t __p0, int16_t __p1) {
  59154. int16_t __ret;
  59155. __ret = (int16_t) __builtin_neon_vqrshlh_s16(__p0, __p1);
  59156. return __ret;
  59157. }
  59158. #endif
  59159. #ifdef __LITTLE_ENDIAN__
  59160. #define vqrshrn_high_n_u32(__p0_182, __p1_182, __p2_182) __extension__ ({ \
  59161. uint16x4_t __s0_182 = __p0_182; \
  59162. uint32x4_t __s1_182 = __p1_182; \
  59163. uint16x8_t __ret_182; \
  59164. __ret_182 = (uint16x8_t)(vcombine_u16((uint16x4_t)(__s0_182), (uint16x4_t)(vqrshrn_n_u32(__s1_182, __p2_182)))); \
  59165. __ret_182; \
  59166. })
  59167. #else
  59168. #define vqrshrn_high_n_u32(__p0_183, __p1_183, __p2_183) __extension__ ({ \
  59169. uint16x4_t __s0_183 = __p0_183; \
  59170. uint32x4_t __s1_183 = __p1_183; \
  59171. uint16x4_t __rev0_183; __rev0_183 = __builtin_shufflevector(__s0_183, __s0_183, 3, 2, 1, 0); \
  59172. uint32x4_t __rev1_183; __rev1_183 = __builtin_shufflevector(__s1_183, __s1_183, 3, 2, 1, 0); \
  59173. uint16x8_t __ret_183; \
  59174. __ret_183 = (uint16x8_t)(__noswap_vcombine_u16((uint16x4_t)(__rev0_183), (uint16x4_t)(__noswap_vqrshrn_n_u32(__rev1_183, __p2_183)))); \
  59175. __ret_183 = __builtin_shufflevector(__ret_183, __ret_183, 7, 6, 5, 4, 3, 2, 1, 0); \
  59176. __ret_183; \
  59177. })
  59178. #endif
  59179. #ifdef __LITTLE_ENDIAN__
  59180. #define vqrshrn_high_n_u64(__p0_184, __p1_184, __p2_184) __extension__ ({ \
  59181. uint32x2_t __s0_184 = __p0_184; \
  59182. uint64x2_t __s1_184 = __p1_184; \
  59183. uint32x4_t __ret_184; \
  59184. __ret_184 = (uint32x4_t)(vcombine_u32((uint32x2_t)(__s0_184), (uint32x2_t)(vqrshrn_n_u64(__s1_184, __p2_184)))); \
  59185. __ret_184; \
  59186. })
  59187. #else
  59188. #define vqrshrn_high_n_u64(__p0_185, __p1_185, __p2_185) __extension__ ({ \
  59189. uint32x2_t __s0_185 = __p0_185; \
  59190. uint64x2_t __s1_185 = __p1_185; \
  59191. uint32x2_t __rev0_185; __rev0_185 = __builtin_shufflevector(__s0_185, __s0_185, 1, 0); \
  59192. uint64x2_t __rev1_185; __rev1_185 = __builtin_shufflevector(__s1_185, __s1_185, 1, 0); \
  59193. uint32x4_t __ret_185; \
  59194. __ret_185 = (uint32x4_t)(__noswap_vcombine_u32((uint32x2_t)(__rev0_185), (uint32x2_t)(__noswap_vqrshrn_n_u64(__rev1_185, __p2_185)))); \
  59195. __ret_185 = __builtin_shufflevector(__ret_185, __ret_185, 3, 2, 1, 0); \
  59196. __ret_185; \
  59197. })
  59198. #endif
  59199. #ifdef __LITTLE_ENDIAN__
  59200. #define vqrshrn_high_n_u16(__p0_186, __p1_186, __p2_186) __extension__ ({ \
  59201. uint8x8_t __s0_186 = __p0_186; \
  59202. uint16x8_t __s1_186 = __p1_186; \
  59203. uint8x16_t __ret_186; \
  59204. __ret_186 = (uint8x16_t)(vcombine_u8((uint8x8_t)(__s0_186), (uint8x8_t)(vqrshrn_n_u16(__s1_186, __p2_186)))); \
  59205. __ret_186; \
  59206. })
  59207. #else
  59208. #define vqrshrn_high_n_u16(__p0_187, __p1_187, __p2_187) __extension__ ({ \
  59209. uint8x8_t __s0_187 = __p0_187; \
  59210. uint16x8_t __s1_187 = __p1_187; \
  59211. uint8x8_t __rev0_187; __rev0_187 = __builtin_shufflevector(__s0_187, __s0_187, 7, 6, 5, 4, 3, 2, 1, 0); \
  59212. uint16x8_t __rev1_187; __rev1_187 = __builtin_shufflevector(__s1_187, __s1_187, 7, 6, 5, 4, 3, 2, 1, 0); \
  59213. uint8x16_t __ret_187; \
  59214. __ret_187 = (uint8x16_t)(__noswap_vcombine_u8((uint8x8_t)(__rev0_187), (uint8x8_t)(__noswap_vqrshrn_n_u16(__rev1_187, __p2_187)))); \
  59215. __ret_187 = __builtin_shufflevector(__ret_187, __ret_187, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  59216. __ret_187; \
  59217. })
  59218. #endif
  59219. #ifdef __LITTLE_ENDIAN__
  59220. #define vqrshrn_high_n_s32(__p0_188, __p1_188, __p2_188) __extension__ ({ \
  59221. int16x4_t __s0_188 = __p0_188; \
  59222. int32x4_t __s1_188 = __p1_188; \
  59223. int16x8_t __ret_188; \
  59224. __ret_188 = (int16x8_t)(vcombine_s16((int16x4_t)(__s0_188), (int16x4_t)(vqrshrn_n_s32(__s1_188, __p2_188)))); \
  59225. __ret_188; \
  59226. })
  59227. #else
  59228. #define vqrshrn_high_n_s32(__p0_189, __p1_189, __p2_189) __extension__ ({ \
  59229. int16x4_t __s0_189 = __p0_189; \
  59230. int32x4_t __s1_189 = __p1_189; \
  59231. int16x4_t __rev0_189; __rev0_189 = __builtin_shufflevector(__s0_189, __s0_189, 3, 2, 1, 0); \
  59232. int32x4_t __rev1_189; __rev1_189 = __builtin_shufflevector(__s1_189, __s1_189, 3, 2, 1, 0); \
  59233. int16x8_t __ret_189; \
  59234. __ret_189 = (int16x8_t)(__noswap_vcombine_s16((int16x4_t)(__rev0_189), (int16x4_t)(__noswap_vqrshrn_n_s32(__rev1_189, __p2_189)))); \
  59235. __ret_189 = __builtin_shufflevector(__ret_189, __ret_189, 7, 6, 5, 4, 3, 2, 1, 0); \
  59236. __ret_189; \
  59237. })
  59238. #endif
  59239. #ifdef __LITTLE_ENDIAN__
  59240. #define vqrshrn_high_n_s64(__p0_190, __p1_190, __p2_190) __extension__ ({ \
  59241. int32x2_t __s0_190 = __p0_190; \
  59242. int64x2_t __s1_190 = __p1_190; \
  59243. int32x4_t __ret_190; \
  59244. __ret_190 = (int32x4_t)(vcombine_s32((int32x2_t)(__s0_190), (int32x2_t)(vqrshrn_n_s64(__s1_190, __p2_190)))); \
  59245. __ret_190; \
  59246. })
  59247. #else
  59248. #define vqrshrn_high_n_s64(__p0_191, __p1_191, __p2_191) __extension__ ({ \
  59249. int32x2_t __s0_191 = __p0_191; \
  59250. int64x2_t __s1_191 = __p1_191; \
  59251. int32x2_t __rev0_191; __rev0_191 = __builtin_shufflevector(__s0_191, __s0_191, 1, 0); \
  59252. int64x2_t __rev1_191; __rev1_191 = __builtin_shufflevector(__s1_191, __s1_191, 1, 0); \
  59253. int32x4_t __ret_191; \
  59254. __ret_191 = (int32x4_t)(__noswap_vcombine_s32((int32x2_t)(__rev0_191), (int32x2_t)(__noswap_vqrshrn_n_s64(__rev1_191, __p2_191)))); \
  59255. __ret_191 = __builtin_shufflevector(__ret_191, __ret_191, 3, 2, 1, 0); \
  59256. __ret_191; \
  59257. })
  59258. #endif
  59259. #ifdef __LITTLE_ENDIAN__
  59260. #define vqrshrn_high_n_s16(__p0_192, __p1_192, __p2_192) __extension__ ({ \
  59261. int8x8_t __s0_192 = __p0_192; \
  59262. int16x8_t __s1_192 = __p1_192; \
  59263. int8x16_t __ret_192; \
  59264. __ret_192 = (int8x16_t)(vcombine_s8((int8x8_t)(__s0_192), (int8x8_t)(vqrshrn_n_s16(__s1_192, __p2_192)))); \
  59265. __ret_192; \
  59266. })
  59267. #else
  59268. #define vqrshrn_high_n_s16(__p0_193, __p1_193, __p2_193) __extension__ ({ \
  59269. int8x8_t __s0_193 = __p0_193; \
  59270. int16x8_t __s1_193 = __p1_193; \
  59271. int8x8_t __rev0_193; __rev0_193 = __builtin_shufflevector(__s0_193, __s0_193, 7, 6, 5, 4, 3, 2, 1, 0); \
  59272. int16x8_t __rev1_193; __rev1_193 = __builtin_shufflevector(__s1_193, __s1_193, 7, 6, 5, 4, 3, 2, 1, 0); \
  59273. int8x16_t __ret_193; \
  59274. __ret_193 = (int8x16_t)(__noswap_vcombine_s8((int8x8_t)(__rev0_193), (int8x8_t)(__noswap_vqrshrn_n_s16(__rev1_193, __p2_193)))); \
  59275. __ret_193 = __builtin_shufflevector(__ret_193, __ret_193, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  59276. __ret_193; \
  59277. })
  59278. #endif
  59279. #ifdef __LITTLE_ENDIAN__
  59280. #define vqrshrns_n_u32(__p0, __p1) __extension__ ({ \
  59281. uint32_t __s0 = __p0; \
  59282. uint16_t __ret; \
  59283. __ret = (uint16_t) __builtin_neon_vqrshrns_n_u32(__s0, __p1); \
  59284. __ret; \
  59285. })
  59286. #else
  59287. #define vqrshrns_n_u32(__p0, __p1) __extension__ ({ \
  59288. uint32_t __s0 = __p0; \
  59289. uint16_t __ret; \
  59290. __ret = (uint16_t) __builtin_neon_vqrshrns_n_u32(__s0, __p1); \
  59291. __ret; \
  59292. })
  59293. #endif
  59294. #ifdef __LITTLE_ENDIAN__
  59295. #define vqrshrnd_n_u64(__p0, __p1) __extension__ ({ \
  59296. uint64_t __s0 = __p0; \
  59297. uint32_t __ret; \
  59298. __ret = (uint32_t) __builtin_neon_vqrshrnd_n_u64(__s0, __p1); \
  59299. __ret; \
  59300. })
  59301. #else
  59302. #define vqrshrnd_n_u64(__p0, __p1) __extension__ ({ \
  59303. uint64_t __s0 = __p0; \
  59304. uint32_t __ret; \
  59305. __ret = (uint32_t) __builtin_neon_vqrshrnd_n_u64(__s0, __p1); \
  59306. __ret; \
  59307. })
  59308. #endif
  59309. #ifdef __LITTLE_ENDIAN__
  59310. #define vqrshrnh_n_u16(__p0, __p1) __extension__ ({ \
  59311. uint16_t __s0 = __p0; \
  59312. uint8_t __ret; \
  59313. __ret = (uint8_t) __builtin_neon_vqrshrnh_n_u16(__s0, __p1); \
  59314. __ret; \
  59315. })
  59316. #else
  59317. #define vqrshrnh_n_u16(__p0, __p1) __extension__ ({ \
  59318. uint16_t __s0 = __p0; \
  59319. uint8_t __ret; \
  59320. __ret = (uint8_t) __builtin_neon_vqrshrnh_n_u16(__s0, __p1); \
  59321. __ret; \
  59322. })
  59323. #endif
  59324. #ifdef __LITTLE_ENDIAN__
  59325. #define vqrshrns_n_s32(__p0, __p1) __extension__ ({ \
  59326. int32_t __s0 = __p0; \
  59327. int16_t __ret; \
  59328. __ret = (int16_t) __builtin_neon_vqrshrns_n_s32(__s0, __p1); \
  59329. __ret; \
  59330. })
  59331. #else
  59332. #define vqrshrns_n_s32(__p0, __p1) __extension__ ({ \
  59333. int32_t __s0 = __p0; \
  59334. int16_t __ret; \
  59335. __ret = (int16_t) __builtin_neon_vqrshrns_n_s32(__s0, __p1); \
  59336. __ret; \
  59337. })
  59338. #endif
  59339. #ifdef __LITTLE_ENDIAN__
  59340. #define vqrshrnd_n_s64(__p0, __p1) __extension__ ({ \
  59341. int64_t __s0 = __p0; \
  59342. int32_t __ret; \
  59343. __ret = (int32_t) __builtin_neon_vqrshrnd_n_s64(__s0, __p1); \
  59344. __ret; \
  59345. })
  59346. #else
  59347. #define vqrshrnd_n_s64(__p0, __p1) __extension__ ({ \
  59348. int64_t __s0 = __p0; \
  59349. int32_t __ret; \
  59350. __ret = (int32_t) __builtin_neon_vqrshrnd_n_s64(__s0, __p1); \
  59351. __ret; \
  59352. })
  59353. #endif
  59354. #ifdef __LITTLE_ENDIAN__
  59355. #define vqrshrnh_n_s16(__p0, __p1) __extension__ ({ \
  59356. int16_t __s0 = __p0; \
  59357. int8_t __ret; \
  59358. __ret = (int8_t) __builtin_neon_vqrshrnh_n_s16(__s0, __p1); \
  59359. __ret; \
  59360. })
  59361. #else
  59362. #define vqrshrnh_n_s16(__p0, __p1) __extension__ ({ \
  59363. int16_t __s0 = __p0; \
  59364. int8_t __ret; \
  59365. __ret = (int8_t) __builtin_neon_vqrshrnh_n_s16(__s0, __p1); \
  59366. __ret; \
  59367. })
  59368. #endif
  59369. #ifdef __LITTLE_ENDIAN__
  59370. #define vqrshrun_high_n_s32(__p0_194, __p1_194, __p2_194) __extension__ ({ \
  59371. int16x4_t __s0_194 = __p0_194; \
  59372. int32x4_t __s1_194 = __p1_194; \
  59373. int16x8_t __ret_194; \
  59374. __ret_194 = (int16x8_t)(vcombine_s16((int16x4_t)(__s0_194), (int16x4_t)(vqrshrun_n_s32(__s1_194, __p2_194)))); \
  59375. __ret_194; \
  59376. })
  59377. #else
  59378. #define vqrshrun_high_n_s32(__p0_195, __p1_195, __p2_195) __extension__ ({ \
  59379. int16x4_t __s0_195 = __p0_195; \
  59380. int32x4_t __s1_195 = __p1_195; \
  59381. int16x4_t __rev0_195; __rev0_195 = __builtin_shufflevector(__s0_195, __s0_195, 3, 2, 1, 0); \
  59382. int32x4_t __rev1_195; __rev1_195 = __builtin_shufflevector(__s1_195, __s1_195, 3, 2, 1, 0); \
  59383. int16x8_t __ret_195; \
  59384. __ret_195 = (int16x8_t)(__noswap_vcombine_s16((int16x4_t)(__rev0_195), (int16x4_t)(__noswap_vqrshrun_n_s32(__rev1_195, __p2_195)))); \
  59385. __ret_195 = __builtin_shufflevector(__ret_195, __ret_195, 7, 6, 5, 4, 3, 2, 1, 0); \
  59386. __ret_195; \
  59387. })
  59388. #endif
  59389. #ifdef __LITTLE_ENDIAN__
  59390. #define vqrshrun_high_n_s64(__p0_196, __p1_196, __p2_196) __extension__ ({ \
  59391. int32x2_t __s0_196 = __p0_196; \
  59392. int64x2_t __s1_196 = __p1_196; \
  59393. int32x4_t __ret_196; \
  59394. __ret_196 = (int32x4_t)(vcombine_s32((int32x2_t)(__s0_196), (int32x2_t)(vqrshrun_n_s64(__s1_196, __p2_196)))); \
  59395. __ret_196; \
  59396. })
  59397. #else
  59398. #define vqrshrun_high_n_s64(__p0_197, __p1_197, __p2_197) __extension__ ({ \
  59399. int32x2_t __s0_197 = __p0_197; \
  59400. int64x2_t __s1_197 = __p1_197; \
  59401. int32x2_t __rev0_197; __rev0_197 = __builtin_shufflevector(__s0_197, __s0_197, 1, 0); \
  59402. int64x2_t __rev1_197; __rev1_197 = __builtin_shufflevector(__s1_197, __s1_197, 1, 0); \
  59403. int32x4_t __ret_197; \
  59404. __ret_197 = (int32x4_t)(__noswap_vcombine_s32((int32x2_t)(__rev0_197), (int32x2_t)(__noswap_vqrshrun_n_s64(__rev1_197, __p2_197)))); \
  59405. __ret_197 = __builtin_shufflevector(__ret_197, __ret_197, 3, 2, 1, 0); \
  59406. __ret_197; \
  59407. })
  59408. #endif
  59409. #ifdef __LITTLE_ENDIAN__
  59410. #define vqrshrun_high_n_s16(__p0_198, __p1_198, __p2_198) __extension__ ({ \
  59411. int8x8_t __s0_198 = __p0_198; \
  59412. int16x8_t __s1_198 = __p1_198; \
  59413. int8x16_t __ret_198; \
  59414. __ret_198 = (int8x16_t)(vcombine_s8((int8x8_t)(__s0_198), (int8x8_t)(vqrshrun_n_s16(__s1_198, __p2_198)))); \
  59415. __ret_198; \
  59416. })
  59417. #else
  59418. #define vqrshrun_high_n_s16(__p0_199, __p1_199, __p2_199) __extension__ ({ \
  59419. int8x8_t __s0_199 = __p0_199; \
  59420. int16x8_t __s1_199 = __p1_199; \
  59421. int8x8_t __rev0_199; __rev0_199 = __builtin_shufflevector(__s0_199, __s0_199, 7, 6, 5, 4, 3, 2, 1, 0); \
  59422. int16x8_t __rev1_199; __rev1_199 = __builtin_shufflevector(__s1_199, __s1_199, 7, 6, 5, 4, 3, 2, 1, 0); \
  59423. int8x16_t __ret_199; \
  59424. __ret_199 = (int8x16_t)(__noswap_vcombine_s8((int8x8_t)(__rev0_199), (int8x8_t)(__noswap_vqrshrun_n_s16(__rev1_199, __p2_199)))); \
  59425. __ret_199 = __builtin_shufflevector(__ret_199, __ret_199, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  59426. __ret_199; \
  59427. })
  59428. #endif
  59429. #ifdef __LITTLE_ENDIAN__
  59430. #define vqrshruns_n_s32(__p0, __p1) __extension__ ({ \
  59431. int32_t __s0 = __p0; \
  59432. int16_t __ret; \
  59433. __ret = (int16_t) __builtin_neon_vqrshruns_n_s32(__s0, __p1); \
  59434. __ret; \
  59435. })
  59436. #else
  59437. #define vqrshruns_n_s32(__p0, __p1) __extension__ ({ \
  59438. int32_t __s0 = __p0; \
  59439. int16_t __ret; \
  59440. __ret = (int16_t) __builtin_neon_vqrshruns_n_s32(__s0, __p1); \
  59441. __ret; \
  59442. })
  59443. #endif
  59444. #ifdef __LITTLE_ENDIAN__
  59445. #define vqrshrund_n_s64(__p0, __p1) __extension__ ({ \
  59446. int64_t __s0 = __p0; \
  59447. int32_t __ret; \
  59448. __ret = (int32_t) __builtin_neon_vqrshrund_n_s64(__s0, __p1); \
  59449. __ret; \
  59450. })
  59451. #else
  59452. #define vqrshrund_n_s64(__p0, __p1) __extension__ ({ \
  59453. int64_t __s0 = __p0; \
  59454. int32_t __ret; \
  59455. __ret = (int32_t) __builtin_neon_vqrshrund_n_s64(__s0, __p1); \
  59456. __ret; \
  59457. })
  59458. #endif
  59459. #ifdef __LITTLE_ENDIAN__
  59460. #define vqrshrunh_n_s16(__p0, __p1) __extension__ ({ \
  59461. int16_t __s0 = __p0; \
  59462. int8_t __ret; \
  59463. __ret = (int8_t) __builtin_neon_vqrshrunh_n_s16(__s0, __p1); \
  59464. __ret; \
  59465. })
  59466. #else
  59467. #define vqrshrunh_n_s16(__p0, __p1) __extension__ ({ \
  59468. int16_t __s0 = __p0; \
  59469. int8_t __ret; \
  59470. __ret = (int8_t) __builtin_neon_vqrshrunh_n_s16(__s0, __p1); \
  59471. __ret; \
  59472. })
  59473. #endif
  59474. #ifdef __LITTLE_ENDIAN__
  59475. __ai uint8_t vqshlb_u8(uint8_t __p0, uint8_t __p1) {
  59476. uint8_t __ret;
  59477. __ret = (uint8_t) __builtin_neon_vqshlb_u8(__p0, __p1);
  59478. return __ret;
  59479. }
  59480. #else
  59481. __ai uint8_t vqshlb_u8(uint8_t __p0, uint8_t __p1) {
  59482. uint8_t __ret;
  59483. __ret = (uint8_t) __builtin_neon_vqshlb_u8(__p0, __p1);
  59484. return __ret;
  59485. }
  59486. #endif
  59487. #ifdef __LITTLE_ENDIAN__
  59488. __ai uint32_t vqshls_u32(uint32_t __p0, uint32_t __p1) {
  59489. uint32_t __ret;
  59490. __ret = (uint32_t) __builtin_neon_vqshls_u32(__p0, __p1);
  59491. return __ret;
  59492. }
  59493. #else
  59494. __ai uint32_t vqshls_u32(uint32_t __p0, uint32_t __p1) {
  59495. uint32_t __ret;
  59496. __ret = (uint32_t) __builtin_neon_vqshls_u32(__p0, __p1);
  59497. return __ret;
  59498. }
  59499. #endif
  59500. #ifdef __LITTLE_ENDIAN__
  59501. __ai uint64_t vqshld_u64(uint64_t __p0, uint64_t __p1) {
  59502. uint64_t __ret;
  59503. __ret = (uint64_t) __builtin_neon_vqshld_u64(__p0, __p1);
  59504. return __ret;
  59505. }
  59506. #else
  59507. __ai uint64_t vqshld_u64(uint64_t __p0, uint64_t __p1) {
  59508. uint64_t __ret;
  59509. __ret = (uint64_t) __builtin_neon_vqshld_u64(__p0, __p1);
  59510. return __ret;
  59511. }
  59512. #endif
  59513. #ifdef __LITTLE_ENDIAN__
  59514. __ai uint16_t vqshlh_u16(uint16_t __p0, uint16_t __p1) {
  59515. uint16_t __ret;
  59516. __ret = (uint16_t) __builtin_neon_vqshlh_u16(__p0, __p1);
  59517. return __ret;
  59518. }
  59519. #else
  59520. __ai uint16_t vqshlh_u16(uint16_t __p0, uint16_t __p1) {
  59521. uint16_t __ret;
  59522. __ret = (uint16_t) __builtin_neon_vqshlh_u16(__p0, __p1);
  59523. return __ret;
  59524. }
  59525. #endif
  59526. #ifdef __LITTLE_ENDIAN__
  59527. __ai int8_t vqshlb_s8(int8_t __p0, int8_t __p1) {
  59528. int8_t __ret;
  59529. __ret = (int8_t) __builtin_neon_vqshlb_s8(__p0, __p1);
  59530. return __ret;
  59531. }
  59532. #else
  59533. __ai int8_t vqshlb_s8(int8_t __p0, int8_t __p1) {
  59534. int8_t __ret;
  59535. __ret = (int8_t) __builtin_neon_vqshlb_s8(__p0, __p1);
  59536. return __ret;
  59537. }
  59538. #endif
  59539. #ifdef __LITTLE_ENDIAN__
  59540. __ai int32_t vqshls_s32(int32_t __p0, int32_t __p1) {
  59541. int32_t __ret;
  59542. __ret = (int32_t) __builtin_neon_vqshls_s32(__p0, __p1);
  59543. return __ret;
  59544. }
  59545. #else
  59546. __ai int32_t vqshls_s32(int32_t __p0, int32_t __p1) {
  59547. int32_t __ret;
  59548. __ret = (int32_t) __builtin_neon_vqshls_s32(__p0, __p1);
  59549. return __ret;
  59550. }
  59551. #endif
  59552. #ifdef __LITTLE_ENDIAN__
  59553. __ai int64_t vqshld_s64(int64_t __p0, int64_t __p1) {
  59554. int64_t __ret;
  59555. __ret = (int64_t) __builtin_neon_vqshld_s64(__p0, __p1);
  59556. return __ret;
  59557. }
  59558. #else
  59559. __ai int64_t vqshld_s64(int64_t __p0, int64_t __p1) {
  59560. int64_t __ret;
  59561. __ret = (int64_t) __builtin_neon_vqshld_s64(__p0, __p1);
  59562. return __ret;
  59563. }
  59564. #endif
  59565. #ifdef __LITTLE_ENDIAN__
  59566. __ai int16_t vqshlh_s16(int16_t __p0, int16_t __p1) {
  59567. int16_t __ret;
  59568. __ret = (int16_t) __builtin_neon_vqshlh_s16(__p0, __p1);
  59569. return __ret;
  59570. }
  59571. #else
  59572. __ai int16_t vqshlh_s16(int16_t __p0, int16_t __p1) {
  59573. int16_t __ret;
  59574. __ret = (int16_t) __builtin_neon_vqshlh_s16(__p0, __p1);
  59575. return __ret;
  59576. }
  59577. #endif
  59578. #ifdef __LITTLE_ENDIAN__
  59579. #define vqshlb_n_u8(__p0, __p1) __extension__ ({ \
  59580. uint8_t __s0 = __p0; \
  59581. uint8_t __ret; \
  59582. __ret = (uint8_t) __builtin_neon_vqshlb_n_u8(__s0, __p1); \
  59583. __ret; \
  59584. })
  59585. #else
  59586. #define vqshlb_n_u8(__p0, __p1) __extension__ ({ \
  59587. uint8_t __s0 = __p0; \
  59588. uint8_t __ret; \
  59589. __ret = (uint8_t) __builtin_neon_vqshlb_n_u8(__s0, __p1); \
  59590. __ret; \
  59591. })
  59592. #endif
  59593. #ifdef __LITTLE_ENDIAN__
  59594. #define vqshls_n_u32(__p0, __p1) __extension__ ({ \
  59595. uint32_t __s0 = __p0; \
  59596. uint32_t __ret; \
  59597. __ret = (uint32_t) __builtin_neon_vqshls_n_u32(__s0, __p1); \
  59598. __ret; \
  59599. })
  59600. #else
  59601. #define vqshls_n_u32(__p0, __p1) __extension__ ({ \
  59602. uint32_t __s0 = __p0; \
  59603. uint32_t __ret; \
  59604. __ret = (uint32_t) __builtin_neon_vqshls_n_u32(__s0, __p1); \
  59605. __ret; \
  59606. })
  59607. #endif
  59608. #ifdef __LITTLE_ENDIAN__
  59609. #define vqshld_n_u64(__p0, __p1) __extension__ ({ \
  59610. uint64_t __s0 = __p0; \
  59611. uint64_t __ret; \
  59612. __ret = (uint64_t) __builtin_neon_vqshld_n_u64(__s0, __p1); \
  59613. __ret; \
  59614. })
  59615. #else
  59616. #define vqshld_n_u64(__p0, __p1) __extension__ ({ \
  59617. uint64_t __s0 = __p0; \
  59618. uint64_t __ret; \
  59619. __ret = (uint64_t) __builtin_neon_vqshld_n_u64(__s0, __p1); \
  59620. __ret; \
  59621. })
  59622. #endif
  59623. #ifdef __LITTLE_ENDIAN__
  59624. #define vqshlh_n_u16(__p0, __p1) __extension__ ({ \
  59625. uint16_t __s0 = __p0; \
  59626. uint16_t __ret; \
  59627. __ret = (uint16_t) __builtin_neon_vqshlh_n_u16(__s0, __p1); \
  59628. __ret; \
  59629. })
  59630. #else
  59631. #define vqshlh_n_u16(__p0, __p1) __extension__ ({ \
  59632. uint16_t __s0 = __p0; \
  59633. uint16_t __ret; \
  59634. __ret = (uint16_t) __builtin_neon_vqshlh_n_u16(__s0, __p1); \
  59635. __ret; \
  59636. })
  59637. #endif
  59638. #ifdef __LITTLE_ENDIAN__
  59639. #define vqshlb_n_s8(__p0, __p1) __extension__ ({ \
  59640. int8_t __s0 = __p0; \
  59641. int8_t __ret; \
  59642. __ret = (int8_t) __builtin_neon_vqshlb_n_s8(__s0, __p1); \
  59643. __ret; \
  59644. })
  59645. #else
  59646. #define vqshlb_n_s8(__p0, __p1) __extension__ ({ \
  59647. int8_t __s0 = __p0; \
  59648. int8_t __ret; \
  59649. __ret = (int8_t) __builtin_neon_vqshlb_n_s8(__s0, __p1); \
  59650. __ret; \
  59651. })
  59652. #endif
  59653. #ifdef __LITTLE_ENDIAN__
  59654. #define vqshls_n_s32(__p0, __p1) __extension__ ({ \
  59655. int32_t __s0 = __p0; \
  59656. int32_t __ret; \
  59657. __ret = (int32_t) __builtin_neon_vqshls_n_s32(__s0, __p1); \
  59658. __ret; \
  59659. })
  59660. #else
  59661. #define vqshls_n_s32(__p0, __p1) __extension__ ({ \
  59662. int32_t __s0 = __p0; \
  59663. int32_t __ret; \
  59664. __ret = (int32_t) __builtin_neon_vqshls_n_s32(__s0, __p1); \
  59665. __ret; \
  59666. })
  59667. #endif
  59668. #ifdef __LITTLE_ENDIAN__
  59669. #define vqshld_n_s64(__p0, __p1) __extension__ ({ \
  59670. int64_t __s0 = __p0; \
  59671. int64_t __ret; \
  59672. __ret = (int64_t) __builtin_neon_vqshld_n_s64(__s0, __p1); \
  59673. __ret; \
  59674. })
  59675. #else
  59676. #define vqshld_n_s64(__p0, __p1) __extension__ ({ \
  59677. int64_t __s0 = __p0; \
  59678. int64_t __ret; \
  59679. __ret = (int64_t) __builtin_neon_vqshld_n_s64(__s0, __p1); \
  59680. __ret; \
  59681. })
  59682. #endif
  59683. #ifdef __LITTLE_ENDIAN__
  59684. #define vqshlh_n_s16(__p0, __p1) __extension__ ({ \
  59685. int16_t __s0 = __p0; \
  59686. int16_t __ret; \
  59687. __ret = (int16_t) __builtin_neon_vqshlh_n_s16(__s0, __p1); \
  59688. __ret; \
  59689. })
  59690. #else
  59691. #define vqshlh_n_s16(__p0, __p1) __extension__ ({ \
  59692. int16_t __s0 = __p0; \
  59693. int16_t __ret; \
  59694. __ret = (int16_t) __builtin_neon_vqshlh_n_s16(__s0, __p1); \
  59695. __ret; \
  59696. })
  59697. #endif
  59698. #ifdef __LITTLE_ENDIAN__
  59699. #define vqshlub_n_s8(__p0, __p1) __extension__ ({ \
  59700. int8_t __s0 = __p0; \
  59701. int8_t __ret; \
  59702. __ret = (int8_t) __builtin_neon_vqshlub_n_s8(__s0, __p1); \
  59703. __ret; \
  59704. })
  59705. #else
  59706. #define vqshlub_n_s8(__p0, __p1) __extension__ ({ \
  59707. int8_t __s0 = __p0; \
  59708. int8_t __ret; \
  59709. __ret = (int8_t) __builtin_neon_vqshlub_n_s8(__s0, __p1); \
  59710. __ret; \
  59711. })
  59712. #endif
  59713. #ifdef __LITTLE_ENDIAN__
  59714. #define vqshlus_n_s32(__p0, __p1) __extension__ ({ \
  59715. int32_t __s0 = __p0; \
  59716. int32_t __ret; \
  59717. __ret = (int32_t) __builtin_neon_vqshlus_n_s32(__s0, __p1); \
  59718. __ret; \
  59719. })
  59720. #else
  59721. #define vqshlus_n_s32(__p0, __p1) __extension__ ({ \
  59722. int32_t __s0 = __p0; \
  59723. int32_t __ret; \
  59724. __ret = (int32_t) __builtin_neon_vqshlus_n_s32(__s0, __p1); \
  59725. __ret; \
  59726. })
  59727. #endif
  59728. #ifdef __LITTLE_ENDIAN__
  59729. #define vqshlud_n_s64(__p0, __p1) __extension__ ({ \
  59730. int64_t __s0 = __p0; \
  59731. int64_t __ret; \
  59732. __ret = (int64_t) __builtin_neon_vqshlud_n_s64(__s0, __p1); \
  59733. __ret; \
  59734. })
  59735. #else
  59736. #define vqshlud_n_s64(__p0, __p1) __extension__ ({ \
  59737. int64_t __s0 = __p0; \
  59738. int64_t __ret; \
  59739. __ret = (int64_t) __builtin_neon_vqshlud_n_s64(__s0, __p1); \
  59740. __ret; \
  59741. })
  59742. #endif
  59743. #ifdef __LITTLE_ENDIAN__
  59744. #define vqshluh_n_s16(__p0, __p1) __extension__ ({ \
  59745. int16_t __s0 = __p0; \
  59746. int16_t __ret; \
  59747. __ret = (int16_t) __builtin_neon_vqshluh_n_s16(__s0, __p1); \
  59748. __ret; \
  59749. })
  59750. #else
  59751. #define vqshluh_n_s16(__p0, __p1) __extension__ ({ \
  59752. int16_t __s0 = __p0; \
  59753. int16_t __ret; \
  59754. __ret = (int16_t) __builtin_neon_vqshluh_n_s16(__s0, __p1); \
  59755. __ret; \
  59756. })
  59757. #endif
  59758. #ifdef __LITTLE_ENDIAN__
  59759. #define vqshrn_high_n_u32(__p0_200, __p1_200, __p2_200) __extension__ ({ \
  59760. uint16x4_t __s0_200 = __p0_200; \
  59761. uint32x4_t __s1_200 = __p1_200; \
  59762. uint16x8_t __ret_200; \
  59763. __ret_200 = (uint16x8_t)(vcombine_u16((uint16x4_t)(__s0_200), (uint16x4_t)(vqshrn_n_u32(__s1_200, __p2_200)))); \
  59764. __ret_200; \
  59765. })
  59766. #else
  59767. #define vqshrn_high_n_u32(__p0_201, __p1_201, __p2_201) __extension__ ({ \
  59768. uint16x4_t __s0_201 = __p0_201; \
  59769. uint32x4_t __s1_201 = __p1_201; \
  59770. uint16x4_t __rev0_201; __rev0_201 = __builtin_shufflevector(__s0_201, __s0_201, 3, 2, 1, 0); \
  59771. uint32x4_t __rev1_201; __rev1_201 = __builtin_shufflevector(__s1_201, __s1_201, 3, 2, 1, 0); \
  59772. uint16x8_t __ret_201; \
  59773. __ret_201 = (uint16x8_t)(__noswap_vcombine_u16((uint16x4_t)(__rev0_201), (uint16x4_t)(__noswap_vqshrn_n_u32(__rev1_201, __p2_201)))); \
  59774. __ret_201 = __builtin_shufflevector(__ret_201, __ret_201, 7, 6, 5, 4, 3, 2, 1, 0); \
  59775. __ret_201; \
  59776. })
  59777. #endif
  59778. #ifdef __LITTLE_ENDIAN__
  59779. #define vqshrn_high_n_u64(__p0_202, __p1_202, __p2_202) __extension__ ({ \
  59780. uint32x2_t __s0_202 = __p0_202; \
  59781. uint64x2_t __s1_202 = __p1_202; \
  59782. uint32x4_t __ret_202; \
  59783. __ret_202 = (uint32x4_t)(vcombine_u32((uint32x2_t)(__s0_202), (uint32x2_t)(vqshrn_n_u64(__s1_202, __p2_202)))); \
  59784. __ret_202; \
  59785. })
  59786. #else
  59787. #define vqshrn_high_n_u64(__p0_203, __p1_203, __p2_203) __extension__ ({ \
  59788. uint32x2_t __s0_203 = __p0_203; \
  59789. uint64x2_t __s1_203 = __p1_203; \
  59790. uint32x2_t __rev0_203; __rev0_203 = __builtin_shufflevector(__s0_203, __s0_203, 1, 0); \
  59791. uint64x2_t __rev1_203; __rev1_203 = __builtin_shufflevector(__s1_203, __s1_203, 1, 0); \
  59792. uint32x4_t __ret_203; \
  59793. __ret_203 = (uint32x4_t)(__noswap_vcombine_u32((uint32x2_t)(__rev0_203), (uint32x2_t)(__noswap_vqshrn_n_u64(__rev1_203, __p2_203)))); \
  59794. __ret_203 = __builtin_shufflevector(__ret_203, __ret_203, 3, 2, 1, 0); \
  59795. __ret_203; \
  59796. })
  59797. #endif
  59798. #ifdef __LITTLE_ENDIAN__
  59799. #define vqshrn_high_n_u16(__p0_204, __p1_204, __p2_204) __extension__ ({ \
  59800. uint8x8_t __s0_204 = __p0_204; \
  59801. uint16x8_t __s1_204 = __p1_204; \
  59802. uint8x16_t __ret_204; \
  59803. __ret_204 = (uint8x16_t)(vcombine_u8((uint8x8_t)(__s0_204), (uint8x8_t)(vqshrn_n_u16(__s1_204, __p2_204)))); \
  59804. __ret_204; \
  59805. })
  59806. #else
  59807. #define vqshrn_high_n_u16(__p0_205, __p1_205, __p2_205) __extension__ ({ \
  59808. uint8x8_t __s0_205 = __p0_205; \
  59809. uint16x8_t __s1_205 = __p1_205; \
  59810. uint8x8_t __rev0_205; __rev0_205 = __builtin_shufflevector(__s0_205, __s0_205, 7, 6, 5, 4, 3, 2, 1, 0); \
  59811. uint16x8_t __rev1_205; __rev1_205 = __builtin_shufflevector(__s1_205, __s1_205, 7, 6, 5, 4, 3, 2, 1, 0); \
  59812. uint8x16_t __ret_205; \
  59813. __ret_205 = (uint8x16_t)(__noswap_vcombine_u8((uint8x8_t)(__rev0_205), (uint8x8_t)(__noswap_vqshrn_n_u16(__rev1_205, __p2_205)))); \
  59814. __ret_205 = __builtin_shufflevector(__ret_205, __ret_205, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  59815. __ret_205; \
  59816. })
  59817. #endif
  59818. #ifdef __LITTLE_ENDIAN__
  59819. #define vqshrn_high_n_s32(__p0_206, __p1_206, __p2_206) __extension__ ({ \
  59820. int16x4_t __s0_206 = __p0_206; \
  59821. int32x4_t __s1_206 = __p1_206; \
  59822. int16x8_t __ret_206; \
  59823. __ret_206 = (int16x8_t)(vcombine_s16((int16x4_t)(__s0_206), (int16x4_t)(vqshrn_n_s32(__s1_206, __p2_206)))); \
  59824. __ret_206; \
  59825. })
  59826. #else
  59827. #define vqshrn_high_n_s32(__p0_207, __p1_207, __p2_207) __extension__ ({ \
  59828. int16x4_t __s0_207 = __p0_207; \
  59829. int32x4_t __s1_207 = __p1_207; \
  59830. int16x4_t __rev0_207; __rev0_207 = __builtin_shufflevector(__s0_207, __s0_207, 3, 2, 1, 0); \
  59831. int32x4_t __rev1_207; __rev1_207 = __builtin_shufflevector(__s1_207, __s1_207, 3, 2, 1, 0); \
  59832. int16x8_t __ret_207; \
  59833. __ret_207 = (int16x8_t)(__noswap_vcombine_s16((int16x4_t)(__rev0_207), (int16x4_t)(__noswap_vqshrn_n_s32(__rev1_207, __p2_207)))); \
  59834. __ret_207 = __builtin_shufflevector(__ret_207, __ret_207, 7, 6, 5, 4, 3, 2, 1, 0); \
  59835. __ret_207; \
  59836. })
  59837. #endif
  59838. #ifdef __LITTLE_ENDIAN__
  59839. #define vqshrn_high_n_s64(__p0_208, __p1_208, __p2_208) __extension__ ({ \
  59840. int32x2_t __s0_208 = __p0_208; \
  59841. int64x2_t __s1_208 = __p1_208; \
  59842. int32x4_t __ret_208; \
  59843. __ret_208 = (int32x4_t)(vcombine_s32((int32x2_t)(__s0_208), (int32x2_t)(vqshrn_n_s64(__s1_208, __p2_208)))); \
  59844. __ret_208; \
  59845. })
  59846. #else
  59847. #define vqshrn_high_n_s64(__p0_209, __p1_209, __p2_209) __extension__ ({ \
  59848. int32x2_t __s0_209 = __p0_209; \
  59849. int64x2_t __s1_209 = __p1_209; \
  59850. int32x2_t __rev0_209; __rev0_209 = __builtin_shufflevector(__s0_209, __s0_209, 1, 0); \
  59851. int64x2_t __rev1_209; __rev1_209 = __builtin_shufflevector(__s1_209, __s1_209, 1, 0); \
  59852. int32x4_t __ret_209; \
  59853. __ret_209 = (int32x4_t)(__noswap_vcombine_s32((int32x2_t)(__rev0_209), (int32x2_t)(__noswap_vqshrn_n_s64(__rev1_209, __p2_209)))); \
  59854. __ret_209 = __builtin_shufflevector(__ret_209, __ret_209, 3, 2, 1, 0); \
  59855. __ret_209; \
  59856. })
  59857. #endif
  59858. #ifdef __LITTLE_ENDIAN__
  59859. #define vqshrn_high_n_s16(__p0_210, __p1_210, __p2_210) __extension__ ({ \
  59860. int8x8_t __s0_210 = __p0_210; \
  59861. int16x8_t __s1_210 = __p1_210; \
  59862. int8x16_t __ret_210; \
  59863. __ret_210 = (int8x16_t)(vcombine_s8((int8x8_t)(__s0_210), (int8x8_t)(vqshrn_n_s16(__s1_210, __p2_210)))); \
  59864. __ret_210; \
  59865. })
  59866. #else
  59867. #define vqshrn_high_n_s16(__p0_211, __p1_211, __p2_211) __extension__ ({ \
  59868. int8x8_t __s0_211 = __p0_211; \
  59869. int16x8_t __s1_211 = __p1_211; \
  59870. int8x8_t __rev0_211; __rev0_211 = __builtin_shufflevector(__s0_211, __s0_211, 7, 6, 5, 4, 3, 2, 1, 0); \
  59871. int16x8_t __rev1_211; __rev1_211 = __builtin_shufflevector(__s1_211, __s1_211, 7, 6, 5, 4, 3, 2, 1, 0); \
  59872. int8x16_t __ret_211; \
  59873. __ret_211 = (int8x16_t)(__noswap_vcombine_s8((int8x8_t)(__rev0_211), (int8x8_t)(__noswap_vqshrn_n_s16(__rev1_211, __p2_211)))); \
  59874. __ret_211 = __builtin_shufflevector(__ret_211, __ret_211, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  59875. __ret_211; \
  59876. })
  59877. #endif
  59878. #ifdef __LITTLE_ENDIAN__
  59879. #define vqshrns_n_u32(__p0, __p1) __extension__ ({ \
  59880. uint32_t __s0 = __p0; \
  59881. uint16_t __ret; \
  59882. __ret = (uint16_t) __builtin_neon_vqshrns_n_u32(__s0, __p1); \
  59883. __ret; \
  59884. })
  59885. #else
  59886. #define vqshrns_n_u32(__p0, __p1) __extension__ ({ \
  59887. uint32_t __s0 = __p0; \
  59888. uint16_t __ret; \
  59889. __ret = (uint16_t) __builtin_neon_vqshrns_n_u32(__s0, __p1); \
  59890. __ret; \
  59891. })
  59892. #endif
  59893. #ifdef __LITTLE_ENDIAN__
  59894. #define vqshrnd_n_u64(__p0, __p1) __extension__ ({ \
  59895. uint64_t __s0 = __p0; \
  59896. uint32_t __ret; \
  59897. __ret = (uint32_t) __builtin_neon_vqshrnd_n_u64(__s0, __p1); \
  59898. __ret; \
  59899. })
  59900. #else
  59901. #define vqshrnd_n_u64(__p0, __p1) __extension__ ({ \
  59902. uint64_t __s0 = __p0; \
  59903. uint32_t __ret; \
  59904. __ret = (uint32_t) __builtin_neon_vqshrnd_n_u64(__s0, __p1); \
  59905. __ret; \
  59906. })
  59907. #endif
  59908. #ifdef __LITTLE_ENDIAN__
  59909. #define vqshrnh_n_u16(__p0, __p1) __extension__ ({ \
  59910. uint16_t __s0 = __p0; \
  59911. uint8_t __ret; \
  59912. __ret = (uint8_t) __builtin_neon_vqshrnh_n_u16(__s0, __p1); \
  59913. __ret; \
  59914. })
  59915. #else
  59916. #define vqshrnh_n_u16(__p0, __p1) __extension__ ({ \
  59917. uint16_t __s0 = __p0; \
  59918. uint8_t __ret; \
  59919. __ret = (uint8_t) __builtin_neon_vqshrnh_n_u16(__s0, __p1); \
  59920. __ret; \
  59921. })
  59922. #endif
  59923. #ifdef __LITTLE_ENDIAN__
  59924. #define vqshrns_n_s32(__p0, __p1) __extension__ ({ \
  59925. int32_t __s0 = __p0; \
  59926. int16_t __ret; \
  59927. __ret = (int16_t) __builtin_neon_vqshrns_n_s32(__s0, __p1); \
  59928. __ret; \
  59929. })
  59930. #else
  59931. #define vqshrns_n_s32(__p0, __p1) __extension__ ({ \
  59932. int32_t __s0 = __p0; \
  59933. int16_t __ret; \
  59934. __ret = (int16_t) __builtin_neon_vqshrns_n_s32(__s0, __p1); \
  59935. __ret; \
  59936. })
  59937. #endif
  59938. #ifdef __LITTLE_ENDIAN__
  59939. #define vqshrnd_n_s64(__p0, __p1) __extension__ ({ \
  59940. int64_t __s0 = __p0; \
  59941. int32_t __ret; \
  59942. __ret = (int32_t) __builtin_neon_vqshrnd_n_s64(__s0, __p1); \
  59943. __ret; \
  59944. })
  59945. #else
  59946. #define vqshrnd_n_s64(__p0, __p1) __extension__ ({ \
  59947. int64_t __s0 = __p0; \
  59948. int32_t __ret; \
  59949. __ret = (int32_t) __builtin_neon_vqshrnd_n_s64(__s0, __p1); \
  59950. __ret; \
  59951. })
  59952. #endif
  59953. #ifdef __LITTLE_ENDIAN__
  59954. #define vqshrnh_n_s16(__p0, __p1) __extension__ ({ \
  59955. int16_t __s0 = __p0; \
  59956. int8_t __ret; \
  59957. __ret = (int8_t) __builtin_neon_vqshrnh_n_s16(__s0, __p1); \
  59958. __ret; \
  59959. })
  59960. #else
  59961. #define vqshrnh_n_s16(__p0, __p1) __extension__ ({ \
  59962. int16_t __s0 = __p0; \
  59963. int8_t __ret; \
  59964. __ret = (int8_t) __builtin_neon_vqshrnh_n_s16(__s0, __p1); \
  59965. __ret; \
  59966. })
  59967. #endif
  59968. #ifdef __LITTLE_ENDIAN__
  59969. #define vqshrun_high_n_s32(__p0_212, __p1_212, __p2_212) __extension__ ({ \
  59970. int16x4_t __s0_212 = __p0_212; \
  59971. int32x4_t __s1_212 = __p1_212; \
  59972. int16x8_t __ret_212; \
  59973. __ret_212 = (int16x8_t)(vcombine_s16((int16x4_t)(__s0_212), (int16x4_t)(vqshrun_n_s32(__s1_212, __p2_212)))); \
  59974. __ret_212; \
  59975. })
  59976. #else
  59977. #define vqshrun_high_n_s32(__p0_213, __p1_213, __p2_213) __extension__ ({ \
  59978. int16x4_t __s0_213 = __p0_213; \
  59979. int32x4_t __s1_213 = __p1_213; \
  59980. int16x4_t __rev0_213; __rev0_213 = __builtin_shufflevector(__s0_213, __s0_213, 3, 2, 1, 0); \
  59981. int32x4_t __rev1_213; __rev1_213 = __builtin_shufflevector(__s1_213, __s1_213, 3, 2, 1, 0); \
  59982. int16x8_t __ret_213; \
  59983. __ret_213 = (int16x8_t)(__noswap_vcombine_s16((int16x4_t)(__rev0_213), (int16x4_t)(__noswap_vqshrun_n_s32(__rev1_213, __p2_213)))); \
  59984. __ret_213 = __builtin_shufflevector(__ret_213, __ret_213, 7, 6, 5, 4, 3, 2, 1, 0); \
  59985. __ret_213; \
  59986. })
  59987. #endif
  59988. #ifdef __LITTLE_ENDIAN__
  59989. #define vqshrun_high_n_s64(__p0_214, __p1_214, __p2_214) __extension__ ({ \
  59990. int32x2_t __s0_214 = __p0_214; \
  59991. int64x2_t __s1_214 = __p1_214; \
  59992. int32x4_t __ret_214; \
  59993. __ret_214 = (int32x4_t)(vcombine_s32((int32x2_t)(__s0_214), (int32x2_t)(vqshrun_n_s64(__s1_214, __p2_214)))); \
  59994. __ret_214; \
  59995. })
  59996. #else
  59997. #define vqshrun_high_n_s64(__p0_215, __p1_215, __p2_215) __extension__ ({ \
  59998. int32x2_t __s0_215 = __p0_215; \
  59999. int64x2_t __s1_215 = __p1_215; \
  60000. int32x2_t __rev0_215; __rev0_215 = __builtin_shufflevector(__s0_215, __s0_215, 1, 0); \
  60001. int64x2_t __rev1_215; __rev1_215 = __builtin_shufflevector(__s1_215, __s1_215, 1, 0); \
  60002. int32x4_t __ret_215; \
  60003. __ret_215 = (int32x4_t)(__noswap_vcombine_s32((int32x2_t)(__rev0_215), (int32x2_t)(__noswap_vqshrun_n_s64(__rev1_215, __p2_215)))); \
  60004. __ret_215 = __builtin_shufflevector(__ret_215, __ret_215, 3, 2, 1, 0); \
  60005. __ret_215; \
  60006. })
  60007. #endif
  60008. #ifdef __LITTLE_ENDIAN__
  60009. #define vqshrun_high_n_s16(__p0_216, __p1_216, __p2_216) __extension__ ({ \
  60010. int8x8_t __s0_216 = __p0_216; \
  60011. int16x8_t __s1_216 = __p1_216; \
  60012. int8x16_t __ret_216; \
  60013. __ret_216 = (int8x16_t)(vcombine_s8((int8x8_t)(__s0_216), (int8x8_t)(vqshrun_n_s16(__s1_216, __p2_216)))); \
  60014. __ret_216; \
  60015. })
  60016. #else
  60017. #define vqshrun_high_n_s16(__p0_217, __p1_217, __p2_217) __extension__ ({ \
  60018. int8x8_t __s0_217 = __p0_217; \
  60019. int16x8_t __s1_217 = __p1_217; \
  60020. int8x8_t __rev0_217; __rev0_217 = __builtin_shufflevector(__s0_217, __s0_217, 7, 6, 5, 4, 3, 2, 1, 0); \
  60021. int16x8_t __rev1_217; __rev1_217 = __builtin_shufflevector(__s1_217, __s1_217, 7, 6, 5, 4, 3, 2, 1, 0); \
  60022. int8x16_t __ret_217; \
  60023. __ret_217 = (int8x16_t)(__noswap_vcombine_s8((int8x8_t)(__rev0_217), (int8x8_t)(__noswap_vqshrun_n_s16(__rev1_217, __p2_217)))); \
  60024. __ret_217 = __builtin_shufflevector(__ret_217, __ret_217, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  60025. __ret_217; \
  60026. })
  60027. #endif
  60028. #ifdef __LITTLE_ENDIAN__
  60029. #define vqshruns_n_s32(__p0, __p1) __extension__ ({ \
  60030. int32_t __s0 = __p0; \
  60031. int16_t __ret; \
  60032. __ret = (int16_t) __builtin_neon_vqshruns_n_s32(__s0, __p1); \
  60033. __ret; \
  60034. })
  60035. #else
  60036. #define vqshruns_n_s32(__p0, __p1) __extension__ ({ \
  60037. int32_t __s0 = __p0; \
  60038. int16_t __ret; \
  60039. __ret = (int16_t) __builtin_neon_vqshruns_n_s32(__s0, __p1); \
  60040. __ret; \
  60041. })
  60042. #endif
  60043. #ifdef __LITTLE_ENDIAN__
  60044. #define vqshrund_n_s64(__p0, __p1) __extension__ ({ \
  60045. int64_t __s0 = __p0; \
  60046. int32_t __ret; \
  60047. __ret = (int32_t) __builtin_neon_vqshrund_n_s64(__s0, __p1); \
  60048. __ret; \
  60049. })
  60050. #else
  60051. #define vqshrund_n_s64(__p0, __p1) __extension__ ({ \
  60052. int64_t __s0 = __p0; \
  60053. int32_t __ret; \
  60054. __ret = (int32_t) __builtin_neon_vqshrund_n_s64(__s0, __p1); \
  60055. __ret; \
  60056. })
  60057. #endif
  60058. #ifdef __LITTLE_ENDIAN__
  60059. #define vqshrunh_n_s16(__p0, __p1) __extension__ ({ \
  60060. int16_t __s0 = __p0; \
  60061. int8_t __ret; \
  60062. __ret = (int8_t) __builtin_neon_vqshrunh_n_s16(__s0, __p1); \
  60063. __ret; \
  60064. })
  60065. #else
  60066. #define vqshrunh_n_s16(__p0, __p1) __extension__ ({ \
  60067. int16_t __s0 = __p0; \
  60068. int8_t __ret; \
  60069. __ret = (int8_t) __builtin_neon_vqshrunh_n_s16(__s0, __p1); \
  60070. __ret; \
  60071. })
  60072. #endif
  60073. #ifdef __LITTLE_ENDIAN__
  60074. __ai uint8_t vqsubb_u8(uint8_t __p0, uint8_t __p1) {
  60075. uint8_t __ret;
  60076. __ret = (uint8_t) __builtin_neon_vqsubb_u8(__p0, __p1);
  60077. return __ret;
  60078. }
  60079. #else
  60080. __ai uint8_t vqsubb_u8(uint8_t __p0, uint8_t __p1) {
  60081. uint8_t __ret;
  60082. __ret = (uint8_t) __builtin_neon_vqsubb_u8(__p0, __p1);
  60083. return __ret;
  60084. }
  60085. #endif
  60086. #ifdef __LITTLE_ENDIAN__
  60087. __ai uint32_t vqsubs_u32(uint32_t __p0, uint32_t __p1) {
  60088. uint32_t __ret;
  60089. __ret = (uint32_t) __builtin_neon_vqsubs_u32(__p0, __p1);
  60090. return __ret;
  60091. }
  60092. #else
  60093. __ai uint32_t vqsubs_u32(uint32_t __p0, uint32_t __p1) {
  60094. uint32_t __ret;
  60095. __ret = (uint32_t) __builtin_neon_vqsubs_u32(__p0, __p1);
  60096. return __ret;
  60097. }
  60098. #endif
  60099. #ifdef __LITTLE_ENDIAN__
  60100. __ai uint64_t vqsubd_u64(uint64_t __p0, uint64_t __p1) {
  60101. uint64_t __ret;
  60102. __ret = (uint64_t) __builtin_neon_vqsubd_u64(__p0, __p1);
  60103. return __ret;
  60104. }
  60105. #else
  60106. __ai uint64_t vqsubd_u64(uint64_t __p0, uint64_t __p1) {
  60107. uint64_t __ret;
  60108. __ret = (uint64_t) __builtin_neon_vqsubd_u64(__p0, __p1);
  60109. return __ret;
  60110. }
  60111. #endif
  60112. #ifdef __LITTLE_ENDIAN__
  60113. __ai uint16_t vqsubh_u16(uint16_t __p0, uint16_t __p1) {
  60114. uint16_t __ret;
  60115. __ret = (uint16_t) __builtin_neon_vqsubh_u16(__p0, __p1);
  60116. return __ret;
  60117. }
  60118. #else
  60119. __ai uint16_t vqsubh_u16(uint16_t __p0, uint16_t __p1) {
  60120. uint16_t __ret;
  60121. __ret = (uint16_t) __builtin_neon_vqsubh_u16(__p0, __p1);
  60122. return __ret;
  60123. }
  60124. #endif
  60125. #ifdef __LITTLE_ENDIAN__
  60126. __ai int8_t vqsubb_s8(int8_t __p0, int8_t __p1) {
  60127. int8_t __ret;
  60128. __ret = (int8_t) __builtin_neon_vqsubb_s8(__p0, __p1);
  60129. return __ret;
  60130. }
  60131. #else
  60132. __ai int8_t vqsubb_s8(int8_t __p0, int8_t __p1) {
  60133. int8_t __ret;
  60134. __ret = (int8_t) __builtin_neon_vqsubb_s8(__p0, __p1);
  60135. return __ret;
  60136. }
  60137. #endif
  60138. #ifdef __LITTLE_ENDIAN__
  60139. __ai int32_t vqsubs_s32(int32_t __p0, int32_t __p1) {
  60140. int32_t __ret;
  60141. __ret = (int32_t) __builtin_neon_vqsubs_s32(__p0, __p1);
  60142. return __ret;
  60143. }
  60144. #else
  60145. __ai int32_t vqsubs_s32(int32_t __p0, int32_t __p1) {
  60146. int32_t __ret;
  60147. __ret = (int32_t) __builtin_neon_vqsubs_s32(__p0, __p1);
  60148. return __ret;
  60149. }
  60150. __ai int32_t __noswap_vqsubs_s32(int32_t __p0, int32_t __p1) {
  60151. int32_t __ret;
  60152. __ret = (int32_t) __builtin_neon_vqsubs_s32(__p0, __p1);
  60153. return __ret;
  60154. }
  60155. #endif
  60156. #ifdef __LITTLE_ENDIAN__
  60157. __ai int64_t vqsubd_s64(int64_t __p0, int64_t __p1) {
  60158. int64_t __ret;
  60159. __ret = (int64_t) __builtin_neon_vqsubd_s64(__p0, __p1);
  60160. return __ret;
  60161. }
  60162. #else
  60163. __ai int64_t vqsubd_s64(int64_t __p0, int64_t __p1) {
  60164. int64_t __ret;
  60165. __ret = (int64_t) __builtin_neon_vqsubd_s64(__p0, __p1);
  60166. return __ret;
  60167. }
  60168. #endif
  60169. #ifdef __LITTLE_ENDIAN__
  60170. __ai int16_t vqsubh_s16(int16_t __p0, int16_t __p1) {
  60171. int16_t __ret;
  60172. __ret = (int16_t) __builtin_neon_vqsubh_s16(__p0, __p1);
  60173. return __ret;
  60174. }
  60175. #else
  60176. __ai int16_t vqsubh_s16(int16_t __p0, int16_t __p1) {
  60177. int16_t __ret;
  60178. __ret = (int16_t) __builtin_neon_vqsubh_s16(__p0, __p1);
  60179. return __ret;
  60180. }
  60181. __ai int16_t __noswap_vqsubh_s16(int16_t __p0, int16_t __p1) {
  60182. int16_t __ret;
  60183. __ret = (int16_t) __builtin_neon_vqsubh_s16(__p0, __p1);
  60184. return __ret;
  60185. }
  60186. #endif
  60187. #ifdef __LITTLE_ENDIAN__
  60188. __ai poly8x8_t vqtbl1_p8(poly8x16_t __p0, uint8x8_t __p1) {
  60189. poly8x8_t __ret;
  60190. __ret = (poly8x8_t) __builtin_neon_vqtbl1_v((int8x16_t)__p0, (int8x8_t)__p1, 4);
  60191. return __ret;
  60192. }
  60193. #else
  60194. __ai poly8x8_t vqtbl1_p8(poly8x16_t __p0, uint8x8_t __p1) {
  60195. poly8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60196. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  60197. poly8x8_t __ret;
  60198. __ret = (poly8x8_t) __builtin_neon_vqtbl1_v((int8x16_t)__rev0, (int8x8_t)__rev1, 4);
  60199. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  60200. return __ret;
  60201. }
  60202. #endif
  60203. #ifdef __LITTLE_ENDIAN__
  60204. __ai poly8x16_t vqtbl1q_p8(poly8x16_t __p0, uint8x16_t __p1) {
  60205. poly8x16_t __ret;
  60206. __ret = (poly8x16_t) __builtin_neon_vqtbl1q_v((int8x16_t)__p0, (int8x16_t)__p1, 36);
  60207. return __ret;
  60208. }
  60209. #else
  60210. __ai poly8x16_t vqtbl1q_p8(poly8x16_t __p0, uint8x16_t __p1) {
  60211. poly8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60212. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60213. poly8x16_t __ret;
  60214. __ret = (poly8x16_t) __builtin_neon_vqtbl1q_v((int8x16_t)__rev0, (int8x16_t)__rev1, 36);
  60215. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60216. return __ret;
  60217. }
  60218. #endif
  60219. #ifdef __LITTLE_ENDIAN__
  60220. __ai uint8x16_t vqtbl1q_u8(uint8x16_t __p0, uint8x16_t __p1) {
  60221. uint8x16_t __ret;
  60222. __ret = (uint8x16_t) __builtin_neon_vqtbl1q_v((int8x16_t)__p0, (int8x16_t)__p1, 48);
  60223. return __ret;
  60224. }
  60225. #else
  60226. __ai uint8x16_t vqtbl1q_u8(uint8x16_t __p0, uint8x16_t __p1) {
  60227. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60228. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60229. uint8x16_t __ret;
  60230. __ret = (uint8x16_t) __builtin_neon_vqtbl1q_v((int8x16_t)__rev0, (int8x16_t)__rev1, 48);
  60231. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60232. return __ret;
  60233. }
  60234. #endif
  60235. #ifdef __LITTLE_ENDIAN__
  60236. __ai int8x16_t vqtbl1q_s8(int8x16_t __p0, int8x16_t __p1) {
  60237. int8x16_t __ret;
  60238. __ret = (int8x16_t) __builtin_neon_vqtbl1q_v((int8x16_t)__p0, (int8x16_t)__p1, 32);
  60239. return __ret;
  60240. }
  60241. #else
  60242. __ai int8x16_t vqtbl1q_s8(int8x16_t __p0, int8x16_t __p1) {
  60243. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60244. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60245. int8x16_t __ret;
  60246. __ret = (int8x16_t) __builtin_neon_vqtbl1q_v((int8x16_t)__rev0, (int8x16_t)__rev1, 32);
  60247. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60248. return __ret;
  60249. }
  60250. #endif
  60251. #ifdef __LITTLE_ENDIAN__
  60252. __ai uint8x8_t vqtbl1_u8(uint8x16_t __p0, uint8x8_t __p1) {
  60253. uint8x8_t __ret;
  60254. __ret = (uint8x8_t) __builtin_neon_vqtbl1_v((int8x16_t)__p0, (int8x8_t)__p1, 16);
  60255. return __ret;
  60256. }
  60257. #else
  60258. __ai uint8x8_t vqtbl1_u8(uint8x16_t __p0, uint8x8_t __p1) {
  60259. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60260. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  60261. uint8x8_t __ret;
  60262. __ret = (uint8x8_t) __builtin_neon_vqtbl1_v((int8x16_t)__rev0, (int8x8_t)__rev1, 16);
  60263. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  60264. return __ret;
  60265. }
  60266. #endif
  60267. #ifdef __LITTLE_ENDIAN__
  60268. __ai int8x8_t vqtbl1_s8(int8x16_t __p0, int8x8_t __p1) {
  60269. int8x8_t __ret;
  60270. __ret = (int8x8_t) __builtin_neon_vqtbl1_v((int8x16_t)__p0, (int8x8_t)__p1, 0);
  60271. return __ret;
  60272. }
  60273. #else
  60274. __ai int8x8_t vqtbl1_s8(int8x16_t __p0, int8x8_t __p1) {
  60275. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60276. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  60277. int8x8_t __ret;
  60278. __ret = (int8x8_t) __builtin_neon_vqtbl1_v((int8x16_t)__rev0, (int8x8_t)__rev1, 0);
  60279. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  60280. return __ret;
  60281. }
  60282. #endif
  60283. #ifdef __LITTLE_ENDIAN__
  60284. __ai poly8x8_t vqtbl2_p8(poly8x16x2_t __p0, uint8x8_t __p1) {
  60285. poly8x8_t __ret;
  60286. __ret = (poly8x8_t) __builtin_neon_vqtbl2_v((int8x16_t)__p0.val[0], (int8x16_t)__p0.val[1], (int8x8_t)__p1, 4);
  60287. return __ret;
  60288. }
  60289. #else
  60290. __ai poly8x8_t vqtbl2_p8(poly8x16x2_t __p0, uint8x8_t __p1) {
  60291. poly8x16x2_t __rev0;
  60292. __rev0.val[0] = __builtin_shufflevector(__p0.val[0], __p0.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60293. __rev0.val[1] = __builtin_shufflevector(__p0.val[1], __p0.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60294. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  60295. poly8x8_t __ret;
  60296. __ret = (poly8x8_t) __builtin_neon_vqtbl2_v((int8x16_t)__rev0.val[0], (int8x16_t)__rev0.val[1], (int8x8_t)__rev1, 4);
  60297. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  60298. return __ret;
  60299. }
  60300. #endif
  60301. #ifdef __LITTLE_ENDIAN__
  60302. __ai poly8x16_t vqtbl2q_p8(poly8x16x2_t __p0, uint8x16_t __p1) {
  60303. poly8x16_t __ret;
  60304. __ret = (poly8x16_t) __builtin_neon_vqtbl2q_v((int8x16_t)__p0.val[0], (int8x16_t)__p0.val[1], (int8x16_t)__p1, 36);
  60305. return __ret;
  60306. }
  60307. #else
  60308. __ai poly8x16_t vqtbl2q_p8(poly8x16x2_t __p0, uint8x16_t __p1) {
  60309. poly8x16x2_t __rev0;
  60310. __rev0.val[0] = __builtin_shufflevector(__p0.val[0], __p0.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60311. __rev0.val[1] = __builtin_shufflevector(__p0.val[1], __p0.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60312. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60313. poly8x16_t __ret;
  60314. __ret = (poly8x16_t) __builtin_neon_vqtbl2q_v((int8x16_t)__rev0.val[0], (int8x16_t)__rev0.val[1], (int8x16_t)__rev1, 36);
  60315. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60316. return __ret;
  60317. }
  60318. #endif
  60319. #ifdef __LITTLE_ENDIAN__
  60320. __ai uint8x16_t vqtbl2q_u8(uint8x16x2_t __p0, uint8x16_t __p1) {
  60321. uint8x16_t __ret;
  60322. __ret = (uint8x16_t) __builtin_neon_vqtbl2q_v((int8x16_t)__p0.val[0], (int8x16_t)__p0.val[1], (int8x16_t)__p1, 48);
  60323. return __ret;
  60324. }
  60325. #else
  60326. __ai uint8x16_t vqtbl2q_u8(uint8x16x2_t __p0, uint8x16_t __p1) {
  60327. uint8x16x2_t __rev0;
  60328. __rev0.val[0] = __builtin_shufflevector(__p0.val[0], __p0.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60329. __rev0.val[1] = __builtin_shufflevector(__p0.val[1], __p0.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60330. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60331. uint8x16_t __ret;
  60332. __ret = (uint8x16_t) __builtin_neon_vqtbl2q_v((int8x16_t)__rev0.val[0], (int8x16_t)__rev0.val[1], (int8x16_t)__rev1, 48);
  60333. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60334. return __ret;
  60335. }
  60336. #endif
  60337. #ifdef __LITTLE_ENDIAN__
  60338. __ai int8x16_t vqtbl2q_s8(int8x16x2_t __p0, int8x16_t __p1) {
  60339. int8x16_t __ret;
  60340. __ret = (int8x16_t) __builtin_neon_vqtbl2q_v((int8x16_t)__p0.val[0], (int8x16_t)__p0.val[1], (int8x16_t)__p1, 32);
  60341. return __ret;
  60342. }
  60343. #else
  60344. __ai int8x16_t vqtbl2q_s8(int8x16x2_t __p0, int8x16_t __p1) {
  60345. int8x16x2_t __rev0;
  60346. __rev0.val[0] = __builtin_shufflevector(__p0.val[0], __p0.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60347. __rev0.val[1] = __builtin_shufflevector(__p0.val[1], __p0.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60348. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60349. int8x16_t __ret;
  60350. __ret = (int8x16_t) __builtin_neon_vqtbl2q_v((int8x16_t)__rev0.val[0], (int8x16_t)__rev0.val[1], (int8x16_t)__rev1, 32);
  60351. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60352. return __ret;
  60353. }
  60354. #endif
  60355. #ifdef __LITTLE_ENDIAN__
  60356. __ai uint8x8_t vqtbl2_u8(uint8x16x2_t __p0, uint8x8_t __p1) {
  60357. uint8x8_t __ret;
  60358. __ret = (uint8x8_t) __builtin_neon_vqtbl2_v((int8x16_t)__p0.val[0], (int8x16_t)__p0.val[1], (int8x8_t)__p1, 16);
  60359. return __ret;
  60360. }
  60361. #else
  60362. __ai uint8x8_t vqtbl2_u8(uint8x16x2_t __p0, uint8x8_t __p1) {
  60363. uint8x16x2_t __rev0;
  60364. __rev0.val[0] = __builtin_shufflevector(__p0.val[0], __p0.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60365. __rev0.val[1] = __builtin_shufflevector(__p0.val[1], __p0.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60366. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  60367. uint8x8_t __ret;
  60368. __ret = (uint8x8_t) __builtin_neon_vqtbl2_v((int8x16_t)__rev0.val[0], (int8x16_t)__rev0.val[1], (int8x8_t)__rev1, 16);
  60369. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  60370. return __ret;
  60371. }
  60372. #endif
  60373. #ifdef __LITTLE_ENDIAN__
  60374. __ai int8x8_t vqtbl2_s8(int8x16x2_t __p0, int8x8_t __p1) {
  60375. int8x8_t __ret;
  60376. __ret = (int8x8_t) __builtin_neon_vqtbl2_v((int8x16_t)__p0.val[0], (int8x16_t)__p0.val[1], (int8x8_t)__p1, 0);
  60377. return __ret;
  60378. }
  60379. #else
  60380. __ai int8x8_t vqtbl2_s8(int8x16x2_t __p0, int8x8_t __p1) {
  60381. int8x16x2_t __rev0;
  60382. __rev0.val[0] = __builtin_shufflevector(__p0.val[0], __p0.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60383. __rev0.val[1] = __builtin_shufflevector(__p0.val[1], __p0.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60384. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  60385. int8x8_t __ret;
  60386. __ret = (int8x8_t) __builtin_neon_vqtbl2_v((int8x16_t)__rev0.val[0], (int8x16_t)__rev0.val[1], (int8x8_t)__rev1, 0);
  60387. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  60388. return __ret;
  60389. }
  60390. #endif
  60391. #ifdef __LITTLE_ENDIAN__
  60392. __ai poly8x8_t vqtbl3_p8(poly8x16x3_t __p0, uint8x8_t __p1) {
  60393. poly8x8_t __ret;
  60394. __ret = (poly8x8_t) __builtin_neon_vqtbl3_v((int8x16_t)__p0.val[0], (int8x16_t)__p0.val[1], (int8x16_t)__p0.val[2], (int8x8_t)__p1, 4);
  60395. return __ret;
  60396. }
  60397. #else
  60398. __ai poly8x8_t vqtbl3_p8(poly8x16x3_t __p0, uint8x8_t __p1) {
  60399. poly8x16x3_t __rev0;
  60400. __rev0.val[0] = __builtin_shufflevector(__p0.val[0], __p0.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60401. __rev0.val[1] = __builtin_shufflevector(__p0.val[1], __p0.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60402. __rev0.val[2] = __builtin_shufflevector(__p0.val[2], __p0.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60403. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  60404. poly8x8_t __ret;
  60405. __ret = (poly8x8_t) __builtin_neon_vqtbl3_v((int8x16_t)__rev0.val[0], (int8x16_t)__rev0.val[1], (int8x16_t)__rev0.val[2], (int8x8_t)__rev1, 4);
  60406. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  60407. return __ret;
  60408. }
  60409. #endif
  60410. #ifdef __LITTLE_ENDIAN__
  60411. __ai poly8x16_t vqtbl3q_p8(poly8x16x3_t __p0, uint8x16_t __p1) {
  60412. poly8x16_t __ret;
  60413. __ret = (poly8x16_t) __builtin_neon_vqtbl3q_v((int8x16_t)__p0.val[0], (int8x16_t)__p0.val[1], (int8x16_t)__p0.val[2], (int8x16_t)__p1, 36);
  60414. return __ret;
  60415. }
  60416. #else
  60417. __ai poly8x16_t vqtbl3q_p8(poly8x16x3_t __p0, uint8x16_t __p1) {
  60418. poly8x16x3_t __rev0;
  60419. __rev0.val[0] = __builtin_shufflevector(__p0.val[0], __p0.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60420. __rev0.val[1] = __builtin_shufflevector(__p0.val[1], __p0.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60421. __rev0.val[2] = __builtin_shufflevector(__p0.val[2], __p0.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60422. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60423. poly8x16_t __ret;
  60424. __ret = (poly8x16_t) __builtin_neon_vqtbl3q_v((int8x16_t)__rev0.val[0], (int8x16_t)__rev0.val[1], (int8x16_t)__rev0.val[2], (int8x16_t)__rev1, 36);
  60425. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60426. return __ret;
  60427. }
  60428. #endif
  60429. #ifdef __LITTLE_ENDIAN__
  60430. __ai uint8x16_t vqtbl3q_u8(uint8x16x3_t __p0, uint8x16_t __p1) {
  60431. uint8x16_t __ret;
  60432. __ret = (uint8x16_t) __builtin_neon_vqtbl3q_v((int8x16_t)__p0.val[0], (int8x16_t)__p0.val[1], (int8x16_t)__p0.val[2], (int8x16_t)__p1, 48);
  60433. return __ret;
  60434. }
  60435. #else
  60436. __ai uint8x16_t vqtbl3q_u8(uint8x16x3_t __p0, uint8x16_t __p1) {
  60437. uint8x16x3_t __rev0;
  60438. __rev0.val[0] = __builtin_shufflevector(__p0.val[0], __p0.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60439. __rev0.val[1] = __builtin_shufflevector(__p0.val[1], __p0.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60440. __rev0.val[2] = __builtin_shufflevector(__p0.val[2], __p0.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60441. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60442. uint8x16_t __ret;
  60443. __ret = (uint8x16_t) __builtin_neon_vqtbl3q_v((int8x16_t)__rev0.val[0], (int8x16_t)__rev0.val[1], (int8x16_t)__rev0.val[2], (int8x16_t)__rev1, 48);
  60444. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60445. return __ret;
  60446. }
  60447. #endif
  60448. #ifdef __LITTLE_ENDIAN__
  60449. __ai int8x16_t vqtbl3q_s8(int8x16x3_t __p0, int8x16_t __p1) {
  60450. int8x16_t __ret;
  60451. __ret = (int8x16_t) __builtin_neon_vqtbl3q_v((int8x16_t)__p0.val[0], (int8x16_t)__p0.val[1], (int8x16_t)__p0.val[2], (int8x16_t)__p1, 32);
  60452. return __ret;
  60453. }
  60454. #else
  60455. __ai int8x16_t vqtbl3q_s8(int8x16x3_t __p0, int8x16_t __p1) {
  60456. int8x16x3_t __rev0;
  60457. __rev0.val[0] = __builtin_shufflevector(__p0.val[0], __p0.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60458. __rev0.val[1] = __builtin_shufflevector(__p0.val[1], __p0.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60459. __rev0.val[2] = __builtin_shufflevector(__p0.val[2], __p0.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60460. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60461. int8x16_t __ret;
  60462. __ret = (int8x16_t) __builtin_neon_vqtbl3q_v((int8x16_t)__rev0.val[0], (int8x16_t)__rev0.val[1], (int8x16_t)__rev0.val[2], (int8x16_t)__rev1, 32);
  60463. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60464. return __ret;
  60465. }
  60466. #endif
  60467. #ifdef __LITTLE_ENDIAN__
  60468. __ai uint8x8_t vqtbl3_u8(uint8x16x3_t __p0, uint8x8_t __p1) {
  60469. uint8x8_t __ret;
  60470. __ret = (uint8x8_t) __builtin_neon_vqtbl3_v((int8x16_t)__p0.val[0], (int8x16_t)__p0.val[1], (int8x16_t)__p0.val[2], (int8x8_t)__p1, 16);
  60471. return __ret;
  60472. }
  60473. #else
  60474. __ai uint8x8_t vqtbl3_u8(uint8x16x3_t __p0, uint8x8_t __p1) {
  60475. uint8x16x3_t __rev0;
  60476. __rev0.val[0] = __builtin_shufflevector(__p0.val[0], __p0.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60477. __rev0.val[1] = __builtin_shufflevector(__p0.val[1], __p0.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60478. __rev0.val[2] = __builtin_shufflevector(__p0.val[2], __p0.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60479. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  60480. uint8x8_t __ret;
  60481. __ret = (uint8x8_t) __builtin_neon_vqtbl3_v((int8x16_t)__rev0.val[0], (int8x16_t)__rev0.val[1], (int8x16_t)__rev0.val[2], (int8x8_t)__rev1, 16);
  60482. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  60483. return __ret;
  60484. }
  60485. #endif
  60486. #ifdef __LITTLE_ENDIAN__
  60487. __ai int8x8_t vqtbl3_s8(int8x16x3_t __p0, int8x8_t __p1) {
  60488. int8x8_t __ret;
  60489. __ret = (int8x8_t) __builtin_neon_vqtbl3_v((int8x16_t)__p0.val[0], (int8x16_t)__p0.val[1], (int8x16_t)__p0.val[2], (int8x8_t)__p1, 0);
  60490. return __ret;
  60491. }
  60492. #else
  60493. __ai int8x8_t vqtbl3_s8(int8x16x3_t __p0, int8x8_t __p1) {
  60494. int8x16x3_t __rev0;
  60495. __rev0.val[0] = __builtin_shufflevector(__p0.val[0], __p0.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60496. __rev0.val[1] = __builtin_shufflevector(__p0.val[1], __p0.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60497. __rev0.val[2] = __builtin_shufflevector(__p0.val[2], __p0.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60498. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  60499. int8x8_t __ret;
  60500. __ret = (int8x8_t) __builtin_neon_vqtbl3_v((int8x16_t)__rev0.val[0], (int8x16_t)__rev0.val[1], (int8x16_t)__rev0.val[2], (int8x8_t)__rev1, 0);
  60501. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  60502. return __ret;
  60503. }
  60504. #endif
  60505. #ifdef __LITTLE_ENDIAN__
  60506. __ai poly8x8_t vqtbl4_p8(poly8x16x4_t __p0, uint8x8_t __p1) {
  60507. poly8x8_t __ret;
  60508. __ret = (poly8x8_t) __builtin_neon_vqtbl4_v((int8x16_t)__p0.val[0], (int8x16_t)__p0.val[1], (int8x16_t)__p0.val[2], (int8x16_t)__p0.val[3], (int8x8_t)__p1, 4);
  60509. return __ret;
  60510. }
  60511. #else
  60512. __ai poly8x8_t vqtbl4_p8(poly8x16x4_t __p0, uint8x8_t __p1) {
  60513. poly8x16x4_t __rev0;
  60514. __rev0.val[0] = __builtin_shufflevector(__p0.val[0], __p0.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60515. __rev0.val[1] = __builtin_shufflevector(__p0.val[1], __p0.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60516. __rev0.val[2] = __builtin_shufflevector(__p0.val[2], __p0.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60517. __rev0.val[3] = __builtin_shufflevector(__p0.val[3], __p0.val[3], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60518. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  60519. poly8x8_t __ret;
  60520. __ret = (poly8x8_t) __builtin_neon_vqtbl4_v((int8x16_t)__rev0.val[0], (int8x16_t)__rev0.val[1], (int8x16_t)__rev0.val[2], (int8x16_t)__rev0.val[3], (int8x8_t)__rev1, 4);
  60521. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  60522. return __ret;
  60523. }
  60524. #endif
  60525. #ifdef __LITTLE_ENDIAN__
  60526. __ai poly8x16_t vqtbl4q_p8(poly8x16x4_t __p0, uint8x16_t __p1) {
  60527. poly8x16_t __ret;
  60528. __ret = (poly8x16_t) __builtin_neon_vqtbl4q_v((int8x16_t)__p0.val[0], (int8x16_t)__p0.val[1], (int8x16_t)__p0.val[2], (int8x16_t)__p0.val[3], (int8x16_t)__p1, 36);
  60529. return __ret;
  60530. }
  60531. #else
  60532. __ai poly8x16_t vqtbl4q_p8(poly8x16x4_t __p0, uint8x16_t __p1) {
  60533. poly8x16x4_t __rev0;
  60534. __rev0.val[0] = __builtin_shufflevector(__p0.val[0], __p0.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60535. __rev0.val[1] = __builtin_shufflevector(__p0.val[1], __p0.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60536. __rev0.val[2] = __builtin_shufflevector(__p0.val[2], __p0.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60537. __rev0.val[3] = __builtin_shufflevector(__p0.val[3], __p0.val[3], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60538. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60539. poly8x16_t __ret;
  60540. __ret = (poly8x16_t) __builtin_neon_vqtbl4q_v((int8x16_t)__rev0.val[0], (int8x16_t)__rev0.val[1], (int8x16_t)__rev0.val[2], (int8x16_t)__rev0.val[3], (int8x16_t)__rev1, 36);
  60541. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60542. return __ret;
  60543. }
  60544. #endif
  60545. #ifdef __LITTLE_ENDIAN__
  60546. __ai uint8x16_t vqtbl4q_u8(uint8x16x4_t __p0, uint8x16_t __p1) {
  60547. uint8x16_t __ret;
  60548. __ret = (uint8x16_t) __builtin_neon_vqtbl4q_v((int8x16_t)__p0.val[0], (int8x16_t)__p0.val[1], (int8x16_t)__p0.val[2], (int8x16_t)__p0.val[3], (int8x16_t)__p1, 48);
  60549. return __ret;
  60550. }
  60551. #else
  60552. __ai uint8x16_t vqtbl4q_u8(uint8x16x4_t __p0, uint8x16_t __p1) {
  60553. uint8x16x4_t __rev0;
  60554. __rev0.val[0] = __builtin_shufflevector(__p0.val[0], __p0.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60555. __rev0.val[1] = __builtin_shufflevector(__p0.val[1], __p0.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60556. __rev0.val[2] = __builtin_shufflevector(__p0.val[2], __p0.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60557. __rev0.val[3] = __builtin_shufflevector(__p0.val[3], __p0.val[3], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60558. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60559. uint8x16_t __ret;
  60560. __ret = (uint8x16_t) __builtin_neon_vqtbl4q_v((int8x16_t)__rev0.val[0], (int8x16_t)__rev0.val[1], (int8x16_t)__rev0.val[2], (int8x16_t)__rev0.val[3], (int8x16_t)__rev1, 48);
  60561. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60562. return __ret;
  60563. }
  60564. #endif
  60565. #ifdef __LITTLE_ENDIAN__
  60566. __ai int8x16_t vqtbl4q_s8(int8x16x4_t __p0, int8x16_t __p1) {
  60567. int8x16_t __ret;
  60568. __ret = (int8x16_t) __builtin_neon_vqtbl4q_v((int8x16_t)__p0.val[0], (int8x16_t)__p0.val[1], (int8x16_t)__p0.val[2], (int8x16_t)__p0.val[3], (int8x16_t)__p1, 32);
  60569. return __ret;
  60570. }
  60571. #else
  60572. __ai int8x16_t vqtbl4q_s8(int8x16x4_t __p0, int8x16_t __p1) {
  60573. int8x16x4_t __rev0;
  60574. __rev0.val[0] = __builtin_shufflevector(__p0.val[0], __p0.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60575. __rev0.val[1] = __builtin_shufflevector(__p0.val[1], __p0.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60576. __rev0.val[2] = __builtin_shufflevector(__p0.val[2], __p0.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60577. __rev0.val[3] = __builtin_shufflevector(__p0.val[3], __p0.val[3], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60578. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60579. int8x16_t __ret;
  60580. __ret = (int8x16_t) __builtin_neon_vqtbl4q_v((int8x16_t)__rev0.val[0], (int8x16_t)__rev0.val[1], (int8x16_t)__rev0.val[2], (int8x16_t)__rev0.val[3], (int8x16_t)__rev1, 32);
  60581. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60582. return __ret;
  60583. }
  60584. #endif
  60585. #ifdef __LITTLE_ENDIAN__
  60586. __ai uint8x8_t vqtbl4_u8(uint8x16x4_t __p0, uint8x8_t __p1) {
  60587. uint8x8_t __ret;
  60588. __ret = (uint8x8_t) __builtin_neon_vqtbl4_v((int8x16_t)__p0.val[0], (int8x16_t)__p0.val[1], (int8x16_t)__p0.val[2], (int8x16_t)__p0.val[3], (int8x8_t)__p1, 16);
  60589. return __ret;
  60590. }
  60591. #else
  60592. __ai uint8x8_t vqtbl4_u8(uint8x16x4_t __p0, uint8x8_t __p1) {
  60593. uint8x16x4_t __rev0;
  60594. __rev0.val[0] = __builtin_shufflevector(__p0.val[0], __p0.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60595. __rev0.val[1] = __builtin_shufflevector(__p0.val[1], __p0.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60596. __rev0.val[2] = __builtin_shufflevector(__p0.val[2], __p0.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60597. __rev0.val[3] = __builtin_shufflevector(__p0.val[3], __p0.val[3], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60598. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  60599. uint8x8_t __ret;
  60600. __ret = (uint8x8_t) __builtin_neon_vqtbl4_v((int8x16_t)__rev0.val[0], (int8x16_t)__rev0.val[1], (int8x16_t)__rev0.val[2], (int8x16_t)__rev0.val[3], (int8x8_t)__rev1, 16);
  60601. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  60602. return __ret;
  60603. }
  60604. #endif
  60605. #ifdef __LITTLE_ENDIAN__
  60606. __ai int8x8_t vqtbl4_s8(int8x16x4_t __p0, int8x8_t __p1) {
  60607. int8x8_t __ret;
  60608. __ret = (int8x8_t) __builtin_neon_vqtbl4_v((int8x16_t)__p0.val[0], (int8x16_t)__p0.val[1], (int8x16_t)__p0.val[2], (int8x16_t)__p0.val[3], (int8x8_t)__p1, 0);
  60609. return __ret;
  60610. }
  60611. #else
  60612. __ai int8x8_t vqtbl4_s8(int8x16x4_t __p0, int8x8_t __p1) {
  60613. int8x16x4_t __rev0;
  60614. __rev0.val[0] = __builtin_shufflevector(__p0.val[0], __p0.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60615. __rev0.val[1] = __builtin_shufflevector(__p0.val[1], __p0.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60616. __rev0.val[2] = __builtin_shufflevector(__p0.val[2], __p0.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60617. __rev0.val[3] = __builtin_shufflevector(__p0.val[3], __p0.val[3], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60618. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  60619. int8x8_t __ret;
  60620. __ret = (int8x8_t) __builtin_neon_vqtbl4_v((int8x16_t)__rev0.val[0], (int8x16_t)__rev0.val[1], (int8x16_t)__rev0.val[2], (int8x16_t)__rev0.val[3], (int8x8_t)__rev1, 0);
  60621. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  60622. return __ret;
  60623. }
  60624. #endif
  60625. #ifdef __LITTLE_ENDIAN__
  60626. __ai poly8x8_t vqtbx1_p8(poly8x8_t __p0, poly8x16_t __p1, uint8x8_t __p2) {
  60627. poly8x8_t __ret;
  60628. __ret = (poly8x8_t) __builtin_neon_vqtbx1_v((int8x8_t)__p0, (int8x16_t)__p1, (int8x8_t)__p2, 4);
  60629. return __ret;
  60630. }
  60631. #else
  60632. __ai poly8x8_t vqtbx1_p8(poly8x8_t __p0, poly8x16_t __p1, uint8x8_t __p2) {
  60633. poly8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  60634. poly8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60635. uint8x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  60636. poly8x8_t __ret;
  60637. __ret = (poly8x8_t) __builtin_neon_vqtbx1_v((int8x8_t)__rev0, (int8x16_t)__rev1, (int8x8_t)__rev2, 4);
  60638. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  60639. return __ret;
  60640. }
  60641. #endif
  60642. #ifdef __LITTLE_ENDIAN__
  60643. __ai poly8x16_t vqtbx1q_p8(poly8x16_t __p0, poly8x16_t __p1, uint8x16_t __p2) {
  60644. poly8x16_t __ret;
  60645. __ret = (poly8x16_t) __builtin_neon_vqtbx1q_v((int8x16_t)__p0, (int8x16_t)__p1, (int8x16_t)__p2, 36);
  60646. return __ret;
  60647. }
  60648. #else
  60649. __ai poly8x16_t vqtbx1q_p8(poly8x16_t __p0, poly8x16_t __p1, uint8x16_t __p2) {
  60650. poly8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60651. poly8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60652. uint8x16_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60653. poly8x16_t __ret;
  60654. __ret = (poly8x16_t) __builtin_neon_vqtbx1q_v((int8x16_t)__rev0, (int8x16_t)__rev1, (int8x16_t)__rev2, 36);
  60655. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60656. return __ret;
  60657. }
  60658. #endif
  60659. #ifdef __LITTLE_ENDIAN__
  60660. __ai uint8x16_t vqtbx1q_u8(uint8x16_t __p0, uint8x16_t __p1, uint8x16_t __p2) {
  60661. uint8x16_t __ret;
  60662. __ret = (uint8x16_t) __builtin_neon_vqtbx1q_v((int8x16_t)__p0, (int8x16_t)__p1, (int8x16_t)__p2, 48);
  60663. return __ret;
  60664. }
  60665. #else
  60666. __ai uint8x16_t vqtbx1q_u8(uint8x16_t __p0, uint8x16_t __p1, uint8x16_t __p2) {
  60667. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60668. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60669. uint8x16_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60670. uint8x16_t __ret;
  60671. __ret = (uint8x16_t) __builtin_neon_vqtbx1q_v((int8x16_t)__rev0, (int8x16_t)__rev1, (int8x16_t)__rev2, 48);
  60672. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60673. return __ret;
  60674. }
  60675. #endif
  60676. #ifdef __LITTLE_ENDIAN__
  60677. __ai int8x16_t vqtbx1q_s8(int8x16_t __p0, int8x16_t __p1, int8x16_t __p2) {
  60678. int8x16_t __ret;
  60679. __ret = (int8x16_t) __builtin_neon_vqtbx1q_v((int8x16_t)__p0, (int8x16_t)__p1, (int8x16_t)__p2, 32);
  60680. return __ret;
  60681. }
  60682. #else
  60683. __ai int8x16_t vqtbx1q_s8(int8x16_t __p0, int8x16_t __p1, int8x16_t __p2) {
  60684. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60685. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60686. int8x16_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60687. int8x16_t __ret;
  60688. __ret = (int8x16_t) __builtin_neon_vqtbx1q_v((int8x16_t)__rev0, (int8x16_t)__rev1, (int8x16_t)__rev2, 32);
  60689. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60690. return __ret;
  60691. }
  60692. #endif
  60693. #ifdef __LITTLE_ENDIAN__
  60694. __ai uint8x8_t vqtbx1_u8(uint8x8_t __p0, uint8x16_t __p1, uint8x8_t __p2) {
  60695. uint8x8_t __ret;
  60696. __ret = (uint8x8_t) __builtin_neon_vqtbx1_v((int8x8_t)__p0, (int8x16_t)__p1, (int8x8_t)__p2, 16);
  60697. return __ret;
  60698. }
  60699. #else
  60700. __ai uint8x8_t vqtbx1_u8(uint8x8_t __p0, uint8x16_t __p1, uint8x8_t __p2) {
  60701. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  60702. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60703. uint8x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  60704. uint8x8_t __ret;
  60705. __ret = (uint8x8_t) __builtin_neon_vqtbx1_v((int8x8_t)__rev0, (int8x16_t)__rev1, (int8x8_t)__rev2, 16);
  60706. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  60707. return __ret;
  60708. }
  60709. #endif
  60710. #ifdef __LITTLE_ENDIAN__
  60711. __ai int8x8_t vqtbx1_s8(int8x8_t __p0, int8x16_t __p1, int8x8_t __p2) {
  60712. int8x8_t __ret;
  60713. __ret = (int8x8_t) __builtin_neon_vqtbx1_v((int8x8_t)__p0, (int8x16_t)__p1, (int8x8_t)__p2, 0);
  60714. return __ret;
  60715. }
  60716. #else
  60717. __ai int8x8_t vqtbx1_s8(int8x8_t __p0, int8x16_t __p1, int8x8_t __p2) {
  60718. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  60719. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60720. int8x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  60721. int8x8_t __ret;
  60722. __ret = (int8x8_t) __builtin_neon_vqtbx1_v((int8x8_t)__rev0, (int8x16_t)__rev1, (int8x8_t)__rev2, 0);
  60723. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  60724. return __ret;
  60725. }
  60726. #endif
  60727. #ifdef __LITTLE_ENDIAN__
  60728. __ai poly8x8_t vqtbx2_p8(poly8x8_t __p0, poly8x16x2_t __p1, uint8x8_t __p2) {
  60729. poly8x8_t __ret;
  60730. __ret = (poly8x8_t) __builtin_neon_vqtbx2_v((int8x8_t)__p0, (int8x16_t)__p1.val[0], (int8x16_t)__p1.val[1], (int8x8_t)__p2, 4);
  60731. return __ret;
  60732. }
  60733. #else
  60734. __ai poly8x8_t vqtbx2_p8(poly8x8_t __p0, poly8x16x2_t __p1, uint8x8_t __p2) {
  60735. poly8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  60736. poly8x16x2_t __rev1;
  60737. __rev1.val[0] = __builtin_shufflevector(__p1.val[0], __p1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60738. __rev1.val[1] = __builtin_shufflevector(__p1.val[1], __p1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60739. uint8x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  60740. poly8x8_t __ret;
  60741. __ret = (poly8x8_t) __builtin_neon_vqtbx2_v((int8x8_t)__rev0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x8_t)__rev2, 4);
  60742. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  60743. return __ret;
  60744. }
  60745. #endif
  60746. #ifdef __LITTLE_ENDIAN__
  60747. __ai poly8x16_t vqtbx2q_p8(poly8x16_t __p0, poly8x16x2_t __p1, uint8x16_t __p2) {
  60748. poly8x16_t __ret;
  60749. __ret = (poly8x16_t) __builtin_neon_vqtbx2q_v((int8x16_t)__p0, (int8x16_t)__p1.val[0], (int8x16_t)__p1.val[1], (int8x16_t)__p2, 36);
  60750. return __ret;
  60751. }
  60752. #else
  60753. __ai poly8x16_t vqtbx2q_p8(poly8x16_t __p0, poly8x16x2_t __p1, uint8x16_t __p2) {
  60754. poly8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60755. poly8x16x2_t __rev1;
  60756. __rev1.val[0] = __builtin_shufflevector(__p1.val[0], __p1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60757. __rev1.val[1] = __builtin_shufflevector(__p1.val[1], __p1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60758. uint8x16_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60759. poly8x16_t __ret;
  60760. __ret = (poly8x16_t) __builtin_neon_vqtbx2q_v((int8x16_t)__rev0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev2, 36);
  60761. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60762. return __ret;
  60763. }
  60764. #endif
  60765. #ifdef __LITTLE_ENDIAN__
  60766. __ai uint8x16_t vqtbx2q_u8(uint8x16_t __p0, uint8x16x2_t __p1, uint8x16_t __p2) {
  60767. uint8x16_t __ret;
  60768. __ret = (uint8x16_t) __builtin_neon_vqtbx2q_v((int8x16_t)__p0, (int8x16_t)__p1.val[0], (int8x16_t)__p1.val[1], (int8x16_t)__p2, 48);
  60769. return __ret;
  60770. }
  60771. #else
  60772. __ai uint8x16_t vqtbx2q_u8(uint8x16_t __p0, uint8x16x2_t __p1, uint8x16_t __p2) {
  60773. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60774. uint8x16x2_t __rev1;
  60775. __rev1.val[0] = __builtin_shufflevector(__p1.val[0], __p1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60776. __rev1.val[1] = __builtin_shufflevector(__p1.val[1], __p1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60777. uint8x16_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60778. uint8x16_t __ret;
  60779. __ret = (uint8x16_t) __builtin_neon_vqtbx2q_v((int8x16_t)__rev0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev2, 48);
  60780. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60781. return __ret;
  60782. }
  60783. #endif
  60784. #ifdef __LITTLE_ENDIAN__
  60785. __ai int8x16_t vqtbx2q_s8(int8x16_t __p0, int8x16x2_t __p1, int8x16_t __p2) {
  60786. int8x16_t __ret;
  60787. __ret = (int8x16_t) __builtin_neon_vqtbx2q_v((int8x16_t)__p0, (int8x16_t)__p1.val[0], (int8x16_t)__p1.val[1], (int8x16_t)__p2, 32);
  60788. return __ret;
  60789. }
  60790. #else
  60791. __ai int8x16_t vqtbx2q_s8(int8x16_t __p0, int8x16x2_t __p1, int8x16_t __p2) {
  60792. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60793. int8x16x2_t __rev1;
  60794. __rev1.val[0] = __builtin_shufflevector(__p1.val[0], __p1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60795. __rev1.val[1] = __builtin_shufflevector(__p1.val[1], __p1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60796. int8x16_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60797. int8x16_t __ret;
  60798. __ret = (int8x16_t) __builtin_neon_vqtbx2q_v((int8x16_t)__rev0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev2, 32);
  60799. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60800. return __ret;
  60801. }
  60802. #endif
  60803. #ifdef __LITTLE_ENDIAN__
  60804. __ai uint8x8_t vqtbx2_u8(uint8x8_t __p0, uint8x16x2_t __p1, uint8x8_t __p2) {
  60805. uint8x8_t __ret;
  60806. __ret = (uint8x8_t) __builtin_neon_vqtbx2_v((int8x8_t)__p0, (int8x16_t)__p1.val[0], (int8x16_t)__p1.val[1], (int8x8_t)__p2, 16);
  60807. return __ret;
  60808. }
  60809. #else
  60810. __ai uint8x8_t vqtbx2_u8(uint8x8_t __p0, uint8x16x2_t __p1, uint8x8_t __p2) {
  60811. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  60812. uint8x16x2_t __rev1;
  60813. __rev1.val[0] = __builtin_shufflevector(__p1.val[0], __p1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60814. __rev1.val[1] = __builtin_shufflevector(__p1.val[1], __p1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60815. uint8x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  60816. uint8x8_t __ret;
  60817. __ret = (uint8x8_t) __builtin_neon_vqtbx2_v((int8x8_t)__rev0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x8_t)__rev2, 16);
  60818. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  60819. return __ret;
  60820. }
  60821. #endif
  60822. #ifdef __LITTLE_ENDIAN__
  60823. __ai int8x8_t vqtbx2_s8(int8x8_t __p0, int8x16x2_t __p1, int8x8_t __p2) {
  60824. int8x8_t __ret;
  60825. __ret = (int8x8_t) __builtin_neon_vqtbx2_v((int8x8_t)__p0, (int8x16_t)__p1.val[0], (int8x16_t)__p1.val[1], (int8x8_t)__p2, 0);
  60826. return __ret;
  60827. }
  60828. #else
  60829. __ai int8x8_t vqtbx2_s8(int8x8_t __p0, int8x16x2_t __p1, int8x8_t __p2) {
  60830. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  60831. int8x16x2_t __rev1;
  60832. __rev1.val[0] = __builtin_shufflevector(__p1.val[0], __p1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60833. __rev1.val[1] = __builtin_shufflevector(__p1.val[1], __p1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60834. int8x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  60835. int8x8_t __ret;
  60836. __ret = (int8x8_t) __builtin_neon_vqtbx2_v((int8x8_t)__rev0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x8_t)__rev2, 0);
  60837. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  60838. return __ret;
  60839. }
  60840. #endif
  60841. #ifdef __LITTLE_ENDIAN__
  60842. __ai poly8x8_t vqtbx3_p8(poly8x8_t __p0, poly8x16x3_t __p1, uint8x8_t __p2) {
  60843. poly8x8_t __ret;
  60844. __ret = (poly8x8_t) __builtin_neon_vqtbx3_v((int8x8_t)__p0, (int8x16_t)__p1.val[0], (int8x16_t)__p1.val[1], (int8x16_t)__p1.val[2], (int8x8_t)__p2, 4);
  60845. return __ret;
  60846. }
  60847. #else
  60848. __ai poly8x8_t vqtbx3_p8(poly8x8_t __p0, poly8x16x3_t __p1, uint8x8_t __p2) {
  60849. poly8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  60850. poly8x16x3_t __rev1;
  60851. __rev1.val[0] = __builtin_shufflevector(__p1.val[0], __p1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60852. __rev1.val[1] = __builtin_shufflevector(__p1.val[1], __p1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60853. __rev1.val[2] = __builtin_shufflevector(__p1.val[2], __p1.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60854. uint8x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  60855. poly8x8_t __ret;
  60856. __ret = (poly8x8_t) __builtin_neon_vqtbx3_v((int8x8_t)__rev0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], (int8x8_t)__rev2, 4);
  60857. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  60858. return __ret;
  60859. }
  60860. #endif
  60861. #ifdef __LITTLE_ENDIAN__
  60862. __ai poly8x16_t vqtbx3q_p8(poly8x16_t __p0, poly8x16x3_t __p1, uint8x16_t __p2) {
  60863. poly8x16_t __ret;
  60864. __ret = (poly8x16_t) __builtin_neon_vqtbx3q_v((int8x16_t)__p0, (int8x16_t)__p1.val[0], (int8x16_t)__p1.val[1], (int8x16_t)__p1.val[2], (int8x16_t)__p2, 36);
  60865. return __ret;
  60866. }
  60867. #else
  60868. __ai poly8x16_t vqtbx3q_p8(poly8x16_t __p0, poly8x16x3_t __p1, uint8x16_t __p2) {
  60869. poly8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60870. poly8x16x3_t __rev1;
  60871. __rev1.val[0] = __builtin_shufflevector(__p1.val[0], __p1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60872. __rev1.val[1] = __builtin_shufflevector(__p1.val[1], __p1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60873. __rev1.val[2] = __builtin_shufflevector(__p1.val[2], __p1.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60874. uint8x16_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60875. poly8x16_t __ret;
  60876. __ret = (poly8x16_t) __builtin_neon_vqtbx3q_v((int8x16_t)__rev0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], (int8x16_t)__rev2, 36);
  60877. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60878. return __ret;
  60879. }
  60880. #endif
  60881. #ifdef __LITTLE_ENDIAN__
  60882. __ai uint8x16_t vqtbx3q_u8(uint8x16_t __p0, uint8x16x3_t __p1, uint8x16_t __p2) {
  60883. uint8x16_t __ret;
  60884. __ret = (uint8x16_t) __builtin_neon_vqtbx3q_v((int8x16_t)__p0, (int8x16_t)__p1.val[0], (int8x16_t)__p1.val[1], (int8x16_t)__p1.val[2], (int8x16_t)__p2, 48);
  60885. return __ret;
  60886. }
  60887. #else
  60888. __ai uint8x16_t vqtbx3q_u8(uint8x16_t __p0, uint8x16x3_t __p1, uint8x16_t __p2) {
  60889. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60890. uint8x16x3_t __rev1;
  60891. __rev1.val[0] = __builtin_shufflevector(__p1.val[0], __p1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60892. __rev1.val[1] = __builtin_shufflevector(__p1.val[1], __p1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60893. __rev1.val[2] = __builtin_shufflevector(__p1.val[2], __p1.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60894. uint8x16_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60895. uint8x16_t __ret;
  60896. __ret = (uint8x16_t) __builtin_neon_vqtbx3q_v((int8x16_t)__rev0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], (int8x16_t)__rev2, 48);
  60897. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60898. return __ret;
  60899. }
  60900. #endif
  60901. #ifdef __LITTLE_ENDIAN__
  60902. __ai int8x16_t vqtbx3q_s8(int8x16_t __p0, int8x16x3_t __p1, int8x16_t __p2) {
  60903. int8x16_t __ret;
  60904. __ret = (int8x16_t) __builtin_neon_vqtbx3q_v((int8x16_t)__p0, (int8x16_t)__p1.val[0], (int8x16_t)__p1.val[1], (int8x16_t)__p1.val[2], (int8x16_t)__p2, 32);
  60905. return __ret;
  60906. }
  60907. #else
  60908. __ai int8x16_t vqtbx3q_s8(int8x16_t __p0, int8x16x3_t __p1, int8x16_t __p2) {
  60909. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60910. int8x16x3_t __rev1;
  60911. __rev1.val[0] = __builtin_shufflevector(__p1.val[0], __p1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60912. __rev1.val[1] = __builtin_shufflevector(__p1.val[1], __p1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60913. __rev1.val[2] = __builtin_shufflevector(__p1.val[2], __p1.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60914. int8x16_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60915. int8x16_t __ret;
  60916. __ret = (int8x16_t) __builtin_neon_vqtbx3q_v((int8x16_t)__rev0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], (int8x16_t)__rev2, 32);
  60917. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60918. return __ret;
  60919. }
  60920. #endif
  60921. #ifdef __LITTLE_ENDIAN__
  60922. __ai uint8x8_t vqtbx3_u8(uint8x8_t __p0, uint8x16x3_t __p1, uint8x8_t __p2) {
  60923. uint8x8_t __ret;
  60924. __ret = (uint8x8_t) __builtin_neon_vqtbx3_v((int8x8_t)__p0, (int8x16_t)__p1.val[0], (int8x16_t)__p1.val[1], (int8x16_t)__p1.val[2], (int8x8_t)__p2, 16);
  60925. return __ret;
  60926. }
  60927. #else
  60928. __ai uint8x8_t vqtbx3_u8(uint8x8_t __p0, uint8x16x3_t __p1, uint8x8_t __p2) {
  60929. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  60930. uint8x16x3_t __rev1;
  60931. __rev1.val[0] = __builtin_shufflevector(__p1.val[0], __p1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60932. __rev1.val[1] = __builtin_shufflevector(__p1.val[1], __p1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60933. __rev1.val[2] = __builtin_shufflevector(__p1.val[2], __p1.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60934. uint8x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  60935. uint8x8_t __ret;
  60936. __ret = (uint8x8_t) __builtin_neon_vqtbx3_v((int8x8_t)__rev0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], (int8x8_t)__rev2, 16);
  60937. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  60938. return __ret;
  60939. }
  60940. #endif
  60941. #ifdef __LITTLE_ENDIAN__
  60942. __ai int8x8_t vqtbx3_s8(int8x8_t __p0, int8x16x3_t __p1, int8x8_t __p2) {
  60943. int8x8_t __ret;
  60944. __ret = (int8x8_t) __builtin_neon_vqtbx3_v((int8x8_t)__p0, (int8x16_t)__p1.val[0], (int8x16_t)__p1.val[1], (int8x16_t)__p1.val[2], (int8x8_t)__p2, 0);
  60945. return __ret;
  60946. }
  60947. #else
  60948. __ai int8x8_t vqtbx3_s8(int8x8_t __p0, int8x16x3_t __p1, int8x8_t __p2) {
  60949. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  60950. int8x16x3_t __rev1;
  60951. __rev1.val[0] = __builtin_shufflevector(__p1.val[0], __p1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60952. __rev1.val[1] = __builtin_shufflevector(__p1.val[1], __p1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60953. __rev1.val[2] = __builtin_shufflevector(__p1.val[2], __p1.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60954. int8x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  60955. int8x8_t __ret;
  60956. __ret = (int8x8_t) __builtin_neon_vqtbx3_v((int8x8_t)__rev0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], (int8x8_t)__rev2, 0);
  60957. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  60958. return __ret;
  60959. }
  60960. #endif
  60961. #ifdef __LITTLE_ENDIAN__
  60962. __ai poly8x8_t vqtbx4_p8(poly8x8_t __p0, poly8x16x4_t __p1, uint8x8_t __p2) {
  60963. poly8x8_t __ret;
  60964. __ret = (poly8x8_t) __builtin_neon_vqtbx4_v((int8x8_t)__p0, (int8x16_t)__p1.val[0], (int8x16_t)__p1.val[1], (int8x16_t)__p1.val[2], (int8x16_t)__p1.val[3], (int8x8_t)__p2, 4);
  60965. return __ret;
  60966. }
  60967. #else
  60968. __ai poly8x8_t vqtbx4_p8(poly8x8_t __p0, poly8x16x4_t __p1, uint8x8_t __p2) {
  60969. poly8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  60970. poly8x16x4_t __rev1;
  60971. __rev1.val[0] = __builtin_shufflevector(__p1.val[0], __p1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60972. __rev1.val[1] = __builtin_shufflevector(__p1.val[1], __p1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60973. __rev1.val[2] = __builtin_shufflevector(__p1.val[2], __p1.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60974. __rev1.val[3] = __builtin_shufflevector(__p1.val[3], __p1.val[3], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60975. uint8x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  60976. poly8x8_t __ret;
  60977. __ret = (poly8x8_t) __builtin_neon_vqtbx4_v((int8x8_t)__rev0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], (int8x16_t)__rev1.val[3], (int8x8_t)__rev2, 4);
  60978. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  60979. return __ret;
  60980. }
  60981. #endif
  60982. #ifdef __LITTLE_ENDIAN__
  60983. __ai poly8x16_t vqtbx4q_p8(poly8x16_t __p0, poly8x16x4_t __p1, uint8x16_t __p2) {
  60984. poly8x16_t __ret;
  60985. __ret = (poly8x16_t) __builtin_neon_vqtbx4q_v((int8x16_t)__p0, (int8x16_t)__p1.val[0], (int8x16_t)__p1.val[1], (int8x16_t)__p1.val[2], (int8x16_t)__p1.val[3], (int8x16_t)__p2, 36);
  60986. return __ret;
  60987. }
  60988. #else
  60989. __ai poly8x16_t vqtbx4q_p8(poly8x16_t __p0, poly8x16x4_t __p1, uint8x16_t __p2) {
  60990. poly8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60991. poly8x16x4_t __rev1;
  60992. __rev1.val[0] = __builtin_shufflevector(__p1.val[0], __p1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60993. __rev1.val[1] = __builtin_shufflevector(__p1.val[1], __p1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60994. __rev1.val[2] = __builtin_shufflevector(__p1.val[2], __p1.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60995. __rev1.val[3] = __builtin_shufflevector(__p1.val[3], __p1.val[3], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60996. uint8x16_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  60997. poly8x16_t __ret;
  60998. __ret = (poly8x16_t) __builtin_neon_vqtbx4q_v((int8x16_t)__rev0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], (int8x16_t)__rev1.val[3], (int8x16_t)__rev2, 36);
  60999. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  61000. return __ret;
  61001. }
  61002. #endif
  61003. #ifdef __LITTLE_ENDIAN__
  61004. __ai uint8x16_t vqtbx4q_u8(uint8x16_t __p0, uint8x16x4_t __p1, uint8x16_t __p2) {
  61005. uint8x16_t __ret;
  61006. __ret = (uint8x16_t) __builtin_neon_vqtbx4q_v((int8x16_t)__p0, (int8x16_t)__p1.val[0], (int8x16_t)__p1.val[1], (int8x16_t)__p1.val[2], (int8x16_t)__p1.val[3], (int8x16_t)__p2, 48);
  61007. return __ret;
  61008. }
  61009. #else
  61010. __ai uint8x16_t vqtbx4q_u8(uint8x16_t __p0, uint8x16x4_t __p1, uint8x16_t __p2) {
  61011. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  61012. uint8x16x4_t __rev1;
  61013. __rev1.val[0] = __builtin_shufflevector(__p1.val[0], __p1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  61014. __rev1.val[1] = __builtin_shufflevector(__p1.val[1], __p1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  61015. __rev1.val[2] = __builtin_shufflevector(__p1.val[2], __p1.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  61016. __rev1.val[3] = __builtin_shufflevector(__p1.val[3], __p1.val[3], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  61017. uint8x16_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  61018. uint8x16_t __ret;
  61019. __ret = (uint8x16_t) __builtin_neon_vqtbx4q_v((int8x16_t)__rev0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], (int8x16_t)__rev1.val[3], (int8x16_t)__rev2, 48);
  61020. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  61021. return __ret;
  61022. }
  61023. #endif
  61024. #ifdef __LITTLE_ENDIAN__
  61025. __ai int8x16_t vqtbx4q_s8(int8x16_t __p0, int8x16x4_t __p1, int8x16_t __p2) {
  61026. int8x16_t __ret;
  61027. __ret = (int8x16_t) __builtin_neon_vqtbx4q_v((int8x16_t)__p0, (int8x16_t)__p1.val[0], (int8x16_t)__p1.val[1], (int8x16_t)__p1.val[2], (int8x16_t)__p1.val[3], (int8x16_t)__p2, 32);
  61028. return __ret;
  61029. }
  61030. #else
  61031. __ai int8x16_t vqtbx4q_s8(int8x16_t __p0, int8x16x4_t __p1, int8x16_t __p2) {
  61032. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  61033. int8x16x4_t __rev1;
  61034. __rev1.val[0] = __builtin_shufflevector(__p1.val[0], __p1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  61035. __rev1.val[1] = __builtin_shufflevector(__p1.val[1], __p1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  61036. __rev1.val[2] = __builtin_shufflevector(__p1.val[2], __p1.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  61037. __rev1.val[3] = __builtin_shufflevector(__p1.val[3], __p1.val[3], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  61038. int8x16_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  61039. int8x16_t __ret;
  61040. __ret = (int8x16_t) __builtin_neon_vqtbx4q_v((int8x16_t)__rev0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], (int8x16_t)__rev1.val[3], (int8x16_t)__rev2, 32);
  61041. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  61042. return __ret;
  61043. }
  61044. #endif
  61045. #ifdef __LITTLE_ENDIAN__
  61046. __ai uint8x8_t vqtbx4_u8(uint8x8_t __p0, uint8x16x4_t __p1, uint8x8_t __p2) {
  61047. uint8x8_t __ret;
  61048. __ret = (uint8x8_t) __builtin_neon_vqtbx4_v((int8x8_t)__p0, (int8x16_t)__p1.val[0], (int8x16_t)__p1.val[1], (int8x16_t)__p1.val[2], (int8x16_t)__p1.val[3], (int8x8_t)__p2, 16);
  61049. return __ret;
  61050. }
  61051. #else
  61052. __ai uint8x8_t vqtbx4_u8(uint8x8_t __p0, uint8x16x4_t __p1, uint8x8_t __p2) {
  61053. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  61054. uint8x16x4_t __rev1;
  61055. __rev1.val[0] = __builtin_shufflevector(__p1.val[0], __p1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  61056. __rev1.val[1] = __builtin_shufflevector(__p1.val[1], __p1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  61057. __rev1.val[2] = __builtin_shufflevector(__p1.val[2], __p1.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  61058. __rev1.val[3] = __builtin_shufflevector(__p1.val[3], __p1.val[3], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  61059. uint8x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  61060. uint8x8_t __ret;
  61061. __ret = (uint8x8_t) __builtin_neon_vqtbx4_v((int8x8_t)__rev0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], (int8x16_t)__rev1.val[3], (int8x8_t)__rev2, 16);
  61062. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  61063. return __ret;
  61064. }
  61065. #endif
  61066. #ifdef __LITTLE_ENDIAN__
  61067. __ai int8x8_t vqtbx4_s8(int8x8_t __p0, int8x16x4_t __p1, int8x8_t __p2) {
  61068. int8x8_t __ret;
  61069. __ret = (int8x8_t) __builtin_neon_vqtbx4_v((int8x8_t)__p0, (int8x16_t)__p1.val[0], (int8x16_t)__p1.val[1], (int8x16_t)__p1.val[2], (int8x16_t)__p1.val[3], (int8x8_t)__p2, 0);
  61070. return __ret;
  61071. }
  61072. #else
  61073. __ai int8x8_t vqtbx4_s8(int8x8_t __p0, int8x16x4_t __p1, int8x8_t __p2) {
  61074. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  61075. int8x16x4_t __rev1;
  61076. __rev1.val[0] = __builtin_shufflevector(__p1.val[0], __p1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  61077. __rev1.val[1] = __builtin_shufflevector(__p1.val[1], __p1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  61078. __rev1.val[2] = __builtin_shufflevector(__p1.val[2], __p1.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  61079. __rev1.val[3] = __builtin_shufflevector(__p1.val[3], __p1.val[3], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  61080. int8x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  61081. int8x8_t __ret;
  61082. __ret = (int8x8_t) __builtin_neon_vqtbx4_v((int8x8_t)__rev0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], (int8x16_t)__rev1.val[3], (int8x8_t)__rev2, 0);
  61083. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  61084. return __ret;
  61085. }
  61086. #endif
  61087. #ifdef __LITTLE_ENDIAN__
  61088. __ai uint16x8_t vraddhn_high_u32(uint16x4_t __p0, uint32x4_t __p1, uint32x4_t __p2) {
  61089. uint16x8_t __ret;
  61090. __ret = vcombine_u16(__p0, vraddhn_u32(__p1, __p2));
  61091. return __ret;
  61092. }
  61093. #else
  61094. __ai uint16x8_t vraddhn_high_u32(uint16x4_t __p0, uint32x4_t __p1, uint32x4_t __p2) {
  61095. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  61096. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  61097. uint32x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  61098. uint16x8_t __ret;
  61099. __ret = __noswap_vcombine_u16(__rev0, __noswap_vraddhn_u32(__rev1, __rev2));
  61100. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  61101. return __ret;
  61102. }
  61103. #endif
  61104. #ifdef __LITTLE_ENDIAN__
  61105. __ai uint32x4_t vraddhn_high_u64(uint32x2_t __p0, uint64x2_t __p1, uint64x2_t __p2) {
  61106. uint32x4_t __ret;
  61107. __ret = vcombine_u32(__p0, vraddhn_u64(__p1, __p2));
  61108. return __ret;
  61109. }
  61110. #else
  61111. __ai uint32x4_t vraddhn_high_u64(uint32x2_t __p0, uint64x2_t __p1, uint64x2_t __p2) {
  61112. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  61113. uint64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  61114. uint64x2_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 1, 0);
  61115. uint32x4_t __ret;
  61116. __ret = __noswap_vcombine_u32(__rev0, __noswap_vraddhn_u64(__rev1, __rev2));
  61117. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  61118. return __ret;
  61119. }
  61120. #endif
  61121. #ifdef __LITTLE_ENDIAN__
  61122. __ai uint8x16_t vraddhn_high_u16(uint8x8_t __p0, uint16x8_t __p1, uint16x8_t __p2) {
  61123. uint8x16_t __ret;
  61124. __ret = vcombine_u8(__p0, vraddhn_u16(__p1, __p2));
  61125. return __ret;
  61126. }
  61127. #else
  61128. __ai uint8x16_t vraddhn_high_u16(uint8x8_t __p0, uint16x8_t __p1, uint16x8_t __p2) {
  61129. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  61130. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  61131. uint16x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  61132. uint8x16_t __ret;
  61133. __ret = __noswap_vcombine_u8(__rev0, __noswap_vraddhn_u16(__rev1, __rev2));
  61134. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  61135. return __ret;
  61136. }
  61137. #endif
  61138. #ifdef __LITTLE_ENDIAN__
  61139. __ai int16x8_t vraddhn_high_s32(int16x4_t __p0, int32x4_t __p1, int32x4_t __p2) {
  61140. int16x8_t __ret;
  61141. __ret = vcombine_s16(__p0, vraddhn_s32(__p1, __p2));
  61142. return __ret;
  61143. }
  61144. #else
  61145. __ai int16x8_t vraddhn_high_s32(int16x4_t __p0, int32x4_t __p1, int32x4_t __p2) {
  61146. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  61147. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  61148. int32x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  61149. int16x8_t __ret;
  61150. __ret = __noswap_vcombine_s16(__rev0, __noswap_vraddhn_s32(__rev1, __rev2));
  61151. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  61152. return __ret;
  61153. }
  61154. #endif
  61155. #ifdef __LITTLE_ENDIAN__
  61156. __ai int32x4_t vraddhn_high_s64(int32x2_t __p0, int64x2_t __p1, int64x2_t __p2) {
  61157. int32x4_t __ret;
  61158. __ret = vcombine_s32(__p0, vraddhn_s64(__p1, __p2));
  61159. return __ret;
  61160. }
  61161. #else
  61162. __ai int32x4_t vraddhn_high_s64(int32x2_t __p0, int64x2_t __p1, int64x2_t __p2) {
  61163. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  61164. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  61165. int64x2_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 1, 0);
  61166. int32x4_t __ret;
  61167. __ret = __noswap_vcombine_s32(__rev0, __noswap_vraddhn_s64(__rev1, __rev2));
  61168. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  61169. return __ret;
  61170. }
  61171. #endif
  61172. #ifdef __LITTLE_ENDIAN__
  61173. __ai int8x16_t vraddhn_high_s16(int8x8_t __p0, int16x8_t __p1, int16x8_t __p2) {
  61174. int8x16_t __ret;
  61175. __ret = vcombine_s8(__p0, vraddhn_s16(__p1, __p2));
  61176. return __ret;
  61177. }
  61178. #else
  61179. __ai int8x16_t vraddhn_high_s16(int8x8_t __p0, int16x8_t __p1, int16x8_t __p2) {
  61180. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  61181. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  61182. int16x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  61183. int8x16_t __ret;
  61184. __ret = __noswap_vcombine_s8(__rev0, __noswap_vraddhn_s16(__rev1, __rev2));
  61185. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  61186. return __ret;
  61187. }
  61188. #endif
  61189. #ifdef __LITTLE_ENDIAN__
  61190. __ai poly8x8_t vrbit_p8(poly8x8_t __p0) {
  61191. poly8x8_t __ret;
  61192. __ret = (poly8x8_t) __builtin_neon_vrbit_v((int8x8_t)__p0, 4);
  61193. return __ret;
  61194. }
  61195. #else
  61196. __ai poly8x8_t vrbit_p8(poly8x8_t __p0) {
  61197. poly8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  61198. poly8x8_t __ret;
  61199. __ret = (poly8x8_t) __builtin_neon_vrbit_v((int8x8_t)__rev0, 4);
  61200. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  61201. return __ret;
  61202. }
  61203. #endif
  61204. #ifdef __LITTLE_ENDIAN__
  61205. __ai poly8x16_t vrbitq_p8(poly8x16_t __p0) {
  61206. poly8x16_t __ret;
  61207. __ret = (poly8x16_t) __builtin_neon_vrbitq_v((int8x16_t)__p0, 36);
  61208. return __ret;
  61209. }
  61210. #else
  61211. __ai poly8x16_t vrbitq_p8(poly8x16_t __p0) {
  61212. poly8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  61213. poly8x16_t __ret;
  61214. __ret = (poly8x16_t) __builtin_neon_vrbitq_v((int8x16_t)__rev0, 36);
  61215. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  61216. return __ret;
  61217. }
  61218. #endif
  61219. #ifdef __LITTLE_ENDIAN__
  61220. __ai uint8x16_t vrbitq_u8(uint8x16_t __p0) {
  61221. uint8x16_t __ret;
  61222. __ret = (uint8x16_t) __builtin_neon_vrbitq_v((int8x16_t)__p0, 48);
  61223. return __ret;
  61224. }
  61225. #else
  61226. __ai uint8x16_t vrbitq_u8(uint8x16_t __p0) {
  61227. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  61228. uint8x16_t __ret;
  61229. __ret = (uint8x16_t) __builtin_neon_vrbitq_v((int8x16_t)__rev0, 48);
  61230. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  61231. return __ret;
  61232. }
  61233. #endif
  61234. #ifdef __LITTLE_ENDIAN__
  61235. __ai int8x16_t vrbitq_s8(int8x16_t __p0) {
  61236. int8x16_t __ret;
  61237. __ret = (int8x16_t) __builtin_neon_vrbitq_v((int8x16_t)__p0, 32);
  61238. return __ret;
  61239. }
  61240. #else
  61241. __ai int8x16_t vrbitq_s8(int8x16_t __p0) {
  61242. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  61243. int8x16_t __ret;
  61244. __ret = (int8x16_t) __builtin_neon_vrbitq_v((int8x16_t)__rev0, 32);
  61245. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  61246. return __ret;
  61247. }
  61248. #endif
  61249. #ifdef __LITTLE_ENDIAN__
  61250. __ai uint8x8_t vrbit_u8(uint8x8_t __p0) {
  61251. uint8x8_t __ret;
  61252. __ret = (uint8x8_t) __builtin_neon_vrbit_v((int8x8_t)__p0, 16);
  61253. return __ret;
  61254. }
  61255. #else
  61256. __ai uint8x8_t vrbit_u8(uint8x8_t __p0) {
  61257. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  61258. uint8x8_t __ret;
  61259. __ret = (uint8x8_t) __builtin_neon_vrbit_v((int8x8_t)__rev0, 16);
  61260. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  61261. return __ret;
  61262. }
  61263. #endif
  61264. #ifdef __LITTLE_ENDIAN__
  61265. __ai int8x8_t vrbit_s8(int8x8_t __p0) {
  61266. int8x8_t __ret;
  61267. __ret = (int8x8_t) __builtin_neon_vrbit_v((int8x8_t)__p0, 0);
  61268. return __ret;
  61269. }
  61270. #else
  61271. __ai int8x8_t vrbit_s8(int8x8_t __p0) {
  61272. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  61273. int8x8_t __ret;
  61274. __ret = (int8x8_t) __builtin_neon_vrbit_v((int8x8_t)__rev0, 0);
  61275. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  61276. return __ret;
  61277. }
  61278. #endif
  61279. #ifdef __LITTLE_ENDIAN__
  61280. __ai float64x2_t vrecpeq_f64(float64x2_t __p0) {
  61281. float64x2_t __ret;
  61282. __ret = (float64x2_t) __builtin_neon_vrecpeq_v((int8x16_t)__p0, 42);
  61283. return __ret;
  61284. }
  61285. #else
  61286. __ai float64x2_t vrecpeq_f64(float64x2_t __p0) {
  61287. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  61288. float64x2_t __ret;
  61289. __ret = (float64x2_t) __builtin_neon_vrecpeq_v((int8x16_t)__rev0, 42);
  61290. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  61291. return __ret;
  61292. }
  61293. #endif
  61294. #ifdef __LITTLE_ENDIAN__
  61295. __ai float64x1_t vrecpe_f64(float64x1_t __p0) {
  61296. float64x1_t __ret;
  61297. __ret = (float64x1_t) __builtin_neon_vrecpe_v((int8x8_t)__p0, 10);
  61298. return __ret;
  61299. }
  61300. #else
  61301. __ai float64x1_t vrecpe_f64(float64x1_t __p0) {
  61302. float64x1_t __ret;
  61303. __ret = (float64x1_t) __builtin_neon_vrecpe_v((int8x8_t)__p0, 10);
  61304. return __ret;
  61305. }
  61306. #endif
  61307. #ifdef __LITTLE_ENDIAN__
  61308. __ai float64_t vrecped_f64(float64_t __p0) {
  61309. float64_t __ret;
  61310. __ret = (float64_t) __builtin_neon_vrecped_f64(__p0);
  61311. return __ret;
  61312. }
  61313. #else
  61314. __ai float64_t vrecped_f64(float64_t __p0) {
  61315. float64_t __ret;
  61316. __ret = (float64_t) __builtin_neon_vrecped_f64(__p0);
  61317. return __ret;
  61318. }
  61319. #endif
  61320. #ifdef __LITTLE_ENDIAN__
  61321. __ai float32_t vrecpes_f32(float32_t __p0) {
  61322. float32_t __ret;
  61323. __ret = (float32_t) __builtin_neon_vrecpes_f32(__p0);
  61324. return __ret;
  61325. }
  61326. #else
  61327. __ai float32_t vrecpes_f32(float32_t __p0) {
  61328. float32_t __ret;
  61329. __ret = (float32_t) __builtin_neon_vrecpes_f32(__p0);
  61330. return __ret;
  61331. }
  61332. #endif
  61333. #ifdef __LITTLE_ENDIAN__
  61334. __ai float64x2_t vrecpsq_f64(float64x2_t __p0, float64x2_t __p1) {
  61335. float64x2_t __ret;
  61336. __ret = (float64x2_t) __builtin_neon_vrecpsq_v((int8x16_t)__p0, (int8x16_t)__p1, 42);
  61337. return __ret;
  61338. }
  61339. #else
  61340. __ai float64x2_t vrecpsq_f64(float64x2_t __p0, float64x2_t __p1) {
  61341. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  61342. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  61343. float64x2_t __ret;
  61344. __ret = (float64x2_t) __builtin_neon_vrecpsq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 42);
  61345. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  61346. return __ret;
  61347. }
  61348. #endif
  61349. #ifdef __LITTLE_ENDIAN__
  61350. __ai float64x1_t vrecps_f64(float64x1_t __p0, float64x1_t __p1) {
  61351. float64x1_t __ret;
  61352. __ret = (float64x1_t) __builtin_neon_vrecps_v((int8x8_t)__p0, (int8x8_t)__p1, 10);
  61353. return __ret;
  61354. }
  61355. #else
  61356. __ai float64x1_t vrecps_f64(float64x1_t __p0, float64x1_t __p1) {
  61357. float64x1_t __ret;
  61358. __ret = (float64x1_t) __builtin_neon_vrecps_v((int8x8_t)__p0, (int8x8_t)__p1, 10);
  61359. return __ret;
  61360. }
  61361. #endif
  61362. #ifdef __LITTLE_ENDIAN__
  61363. __ai float64_t vrecpsd_f64(float64_t __p0, float64_t __p1) {
  61364. float64_t __ret;
  61365. __ret = (float64_t) __builtin_neon_vrecpsd_f64(__p0, __p1);
  61366. return __ret;
  61367. }
  61368. #else
  61369. __ai float64_t vrecpsd_f64(float64_t __p0, float64_t __p1) {
  61370. float64_t __ret;
  61371. __ret = (float64_t) __builtin_neon_vrecpsd_f64(__p0, __p1);
  61372. return __ret;
  61373. }
  61374. #endif
  61375. #ifdef __LITTLE_ENDIAN__
  61376. __ai float32_t vrecpss_f32(float32_t __p0, float32_t __p1) {
  61377. float32_t __ret;
  61378. __ret = (float32_t) __builtin_neon_vrecpss_f32(__p0, __p1);
  61379. return __ret;
  61380. }
  61381. #else
  61382. __ai float32_t vrecpss_f32(float32_t __p0, float32_t __p1) {
  61383. float32_t __ret;
  61384. __ret = (float32_t) __builtin_neon_vrecpss_f32(__p0, __p1);
  61385. return __ret;
  61386. }
  61387. #endif
  61388. #ifdef __LITTLE_ENDIAN__
  61389. __ai float64_t vrecpxd_f64(float64_t __p0) {
  61390. float64_t __ret;
  61391. __ret = (float64_t) __builtin_neon_vrecpxd_f64(__p0);
  61392. return __ret;
  61393. }
  61394. #else
  61395. __ai float64_t vrecpxd_f64(float64_t __p0) {
  61396. float64_t __ret;
  61397. __ret = (float64_t) __builtin_neon_vrecpxd_f64(__p0);
  61398. return __ret;
  61399. }
  61400. #endif
  61401. #ifdef __LITTLE_ENDIAN__
  61402. __ai float32_t vrecpxs_f32(float32_t __p0) {
  61403. float32_t __ret;
  61404. __ret = (float32_t) __builtin_neon_vrecpxs_f32(__p0);
  61405. return __ret;
  61406. }
  61407. #else
  61408. __ai float32_t vrecpxs_f32(float32_t __p0) {
  61409. float32_t __ret;
  61410. __ret = (float32_t) __builtin_neon_vrecpxs_f32(__p0);
  61411. return __ret;
  61412. }
  61413. #endif
  61414. #ifdef __LITTLE_ENDIAN__
  61415. __ai uint64_t vrshld_u64(uint64_t __p0, uint64_t __p1) {
  61416. uint64_t __ret;
  61417. __ret = (uint64_t) __builtin_neon_vrshld_u64(__p0, __p1);
  61418. return __ret;
  61419. }
  61420. #else
  61421. __ai uint64_t vrshld_u64(uint64_t __p0, uint64_t __p1) {
  61422. uint64_t __ret;
  61423. __ret = (uint64_t) __builtin_neon_vrshld_u64(__p0, __p1);
  61424. return __ret;
  61425. }
  61426. #endif
  61427. #ifdef __LITTLE_ENDIAN__
  61428. __ai int64_t vrshld_s64(int64_t __p0, int64_t __p1) {
  61429. int64_t __ret;
  61430. __ret = (int64_t) __builtin_neon_vrshld_s64(__p0, __p1);
  61431. return __ret;
  61432. }
  61433. #else
  61434. __ai int64_t vrshld_s64(int64_t __p0, int64_t __p1) {
  61435. int64_t __ret;
  61436. __ret = (int64_t) __builtin_neon_vrshld_s64(__p0, __p1);
  61437. return __ret;
  61438. }
  61439. #endif
  61440. #ifdef __LITTLE_ENDIAN__
  61441. #define vrshrd_n_u64(__p0, __p1) __extension__ ({ \
  61442. uint64_t __s0 = __p0; \
  61443. uint64_t __ret; \
  61444. __ret = (uint64_t) __builtin_neon_vrshrd_n_u64(__s0, __p1); \
  61445. __ret; \
  61446. })
  61447. #else
  61448. #define vrshrd_n_u64(__p0, __p1) __extension__ ({ \
  61449. uint64_t __s0 = __p0; \
  61450. uint64_t __ret; \
  61451. __ret = (uint64_t) __builtin_neon_vrshrd_n_u64(__s0, __p1); \
  61452. __ret; \
  61453. })
  61454. #endif
  61455. #ifdef __LITTLE_ENDIAN__
  61456. #define vrshrd_n_s64(__p0, __p1) __extension__ ({ \
  61457. int64_t __s0 = __p0; \
  61458. int64_t __ret; \
  61459. __ret = (int64_t) __builtin_neon_vrshrd_n_s64(__s0, __p1); \
  61460. __ret; \
  61461. })
  61462. #else
  61463. #define vrshrd_n_s64(__p0, __p1) __extension__ ({ \
  61464. int64_t __s0 = __p0; \
  61465. int64_t __ret; \
  61466. __ret = (int64_t) __builtin_neon_vrshrd_n_s64(__s0, __p1); \
  61467. __ret; \
  61468. })
  61469. #endif
  61470. #ifdef __LITTLE_ENDIAN__
  61471. #define vrshrn_high_n_u32(__p0_218, __p1_218, __p2_218) __extension__ ({ \
  61472. uint16x4_t __s0_218 = __p0_218; \
  61473. uint32x4_t __s1_218 = __p1_218; \
  61474. uint16x8_t __ret_218; \
  61475. __ret_218 = (uint16x8_t)(vcombine_u16((uint16x4_t)(__s0_218), (uint16x4_t)(vrshrn_n_u32(__s1_218, __p2_218)))); \
  61476. __ret_218; \
  61477. })
  61478. #else
  61479. #define vrshrn_high_n_u32(__p0_219, __p1_219, __p2_219) __extension__ ({ \
  61480. uint16x4_t __s0_219 = __p0_219; \
  61481. uint32x4_t __s1_219 = __p1_219; \
  61482. uint16x4_t __rev0_219; __rev0_219 = __builtin_shufflevector(__s0_219, __s0_219, 3, 2, 1, 0); \
  61483. uint32x4_t __rev1_219; __rev1_219 = __builtin_shufflevector(__s1_219, __s1_219, 3, 2, 1, 0); \
  61484. uint16x8_t __ret_219; \
  61485. __ret_219 = (uint16x8_t)(__noswap_vcombine_u16((uint16x4_t)(__rev0_219), (uint16x4_t)(__noswap_vrshrn_n_u32(__rev1_219, __p2_219)))); \
  61486. __ret_219 = __builtin_shufflevector(__ret_219, __ret_219, 7, 6, 5, 4, 3, 2, 1, 0); \
  61487. __ret_219; \
  61488. })
  61489. #endif
  61490. #ifdef __LITTLE_ENDIAN__
  61491. #define vrshrn_high_n_u64(__p0_220, __p1_220, __p2_220) __extension__ ({ \
  61492. uint32x2_t __s0_220 = __p0_220; \
  61493. uint64x2_t __s1_220 = __p1_220; \
  61494. uint32x4_t __ret_220; \
  61495. __ret_220 = (uint32x4_t)(vcombine_u32((uint32x2_t)(__s0_220), (uint32x2_t)(vrshrn_n_u64(__s1_220, __p2_220)))); \
  61496. __ret_220; \
  61497. })
  61498. #else
  61499. #define vrshrn_high_n_u64(__p0_221, __p1_221, __p2_221) __extension__ ({ \
  61500. uint32x2_t __s0_221 = __p0_221; \
  61501. uint64x2_t __s1_221 = __p1_221; \
  61502. uint32x2_t __rev0_221; __rev0_221 = __builtin_shufflevector(__s0_221, __s0_221, 1, 0); \
  61503. uint64x2_t __rev1_221; __rev1_221 = __builtin_shufflevector(__s1_221, __s1_221, 1, 0); \
  61504. uint32x4_t __ret_221; \
  61505. __ret_221 = (uint32x4_t)(__noswap_vcombine_u32((uint32x2_t)(__rev0_221), (uint32x2_t)(__noswap_vrshrn_n_u64(__rev1_221, __p2_221)))); \
  61506. __ret_221 = __builtin_shufflevector(__ret_221, __ret_221, 3, 2, 1, 0); \
  61507. __ret_221; \
  61508. })
  61509. #endif
  61510. #ifdef __LITTLE_ENDIAN__
  61511. #define vrshrn_high_n_u16(__p0_222, __p1_222, __p2_222) __extension__ ({ \
  61512. uint8x8_t __s0_222 = __p0_222; \
  61513. uint16x8_t __s1_222 = __p1_222; \
  61514. uint8x16_t __ret_222; \
  61515. __ret_222 = (uint8x16_t)(vcombine_u8((uint8x8_t)(__s0_222), (uint8x8_t)(vrshrn_n_u16(__s1_222, __p2_222)))); \
  61516. __ret_222; \
  61517. })
  61518. #else
  61519. #define vrshrn_high_n_u16(__p0_223, __p1_223, __p2_223) __extension__ ({ \
  61520. uint8x8_t __s0_223 = __p0_223; \
  61521. uint16x8_t __s1_223 = __p1_223; \
  61522. uint8x8_t __rev0_223; __rev0_223 = __builtin_shufflevector(__s0_223, __s0_223, 7, 6, 5, 4, 3, 2, 1, 0); \
  61523. uint16x8_t __rev1_223; __rev1_223 = __builtin_shufflevector(__s1_223, __s1_223, 7, 6, 5, 4, 3, 2, 1, 0); \
  61524. uint8x16_t __ret_223; \
  61525. __ret_223 = (uint8x16_t)(__noswap_vcombine_u8((uint8x8_t)(__rev0_223), (uint8x8_t)(__noswap_vrshrn_n_u16(__rev1_223, __p2_223)))); \
  61526. __ret_223 = __builtin_shufflevector(__ret_223, __ret_223, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  61527. __ret_223; \
  61528. })
  61529. #endif
  61530. #ifdef __LITTLE_ENDIAN__
  61531. #define vrshrn_high_n_s32(__p0_224, __p1_224, __p2_224) __extension__ ({ \
  61532. int16x4_t __s0_224 = __p0_224; \
  61533. int32x4_t __s1_224 = __p1_224; \
  61534. int16x8_t __ret_224; \
  61535. __ret_224 = (int16x8_t)(vcombine_s16((int16x4_t)(__s0_224), (int16x4_t)(vrshrn_n_s32(__s1_224, __p2_224)))); \
  61536. __ret_224; \
  61537. })
  61538. #else
  61539. #define vrshrn_high_n_s32(__p0_225, __p1_225, __p2_225) __extension__ ({ \
  61540. int16x4_t __s0_225 = __p0_225; \
  61541. int32x4_t __s1_225 = __p1_225; \
  61542. int16x4_t __rev0_225; __rev0_225 = __builtin_shufflevector(__s0_225, __s0_225, 3, 2, 1, 0); \
  61543. int32x4_t __rev1_225; __rev1_225 = __builtin_shufflevector(__s1_225, __s1_225, 3, 2, 1, 0); \
  61544. int16x8_t __ret_225; \
  61545. __ret_225 = (int16x8_t)(__noswap_vcombine_s16((int16x4_t)(__rev0_225), (int16x4_t)(__noswap_vrshrn_n_s32(__rev1_225, __p2_225)))); \
  61546. __ret_225 = __builtin_shufflevector(__ret_225, __ret_225, 7, 6, 5, 4, 3, 2, 1, 0); \
  61547. __ret_225; \
  61548. })
  61549. #endif
  61550. #ifdef __LITTLE_ENDIAN__
  61551. #define vrshrn_high_n_s64(__p0_226, __p1_226, __p2_226) __extension__ ({ \
  61552. int32x2_t __s0_226 = __p0_226; \
  61553. int64x2_t __s1_226 = __p1_226; \
  61554. int32x4_t __ret_226; \
  61555. __ret_226 = (int32x4_t)(vcombine_s32((int32x2_t)(__s0_226), (int32x2_t)(vrshrn_n_s64(__s1_226, __p2_226)))); \
  61556. __ret_226; \
  61557. })
  61558. #else
  61559. #define vrshrn_high_n_s64(__p0_227, __p1_227, __p2_227) __extension__ ({ \
  61560. int32x2_t __s0_227 = __p0_227; \
  61561. int64x2_t __s1_227 = __p1_227; \
  61562. int32x2_t __rev0_227; __rev0_227 = __builtin_shufflevector(__s0_227, __s0_227, 1, 0); \
  61563. int64x2_t __rev1_227; __rev1_227 = __builtin_shufflevector(__s1_227, __s1_227, 1, 0); \
  61564. int32x4_t __ret_227; \
  61565. __ret_227 = (int32x4_t)(__noswap_vcombine_s32((int32x2_t)(__rev0_227), (int32x2_t)(__noswap_vrshrn_n_s64(__rev1_227, __p2_227)))); \
  61566. __ret_227 = __builtin_shufflevector(__ret_227, __ret_227, 3, 2, 1, 0); \
  61567. __ret_227; \
  61568. })
  61569. #endif
  61570. #ifdef __LITTLE_ENDIAN__
  61571. #define vrshrn_high_n_s16(__p0_228, __p1_228, __p2_228) __extension__ ({ \
  61572. int8x8_t __s0_228 = __p0_228; \
  61573. int16x8_t __s1_228 = __p1_228; \
  61574. int8x16_t __ret_228; \
  61575. __ret_228 = (int8x16_t)(vcombine_s8((int8x8_t)(__s0_228), (int8x8_t)(vrshrn_n_s16(__s1_228, __p2_228)))); \
  61576. __ret_228; \
  61577. })
  61578. #else
  61579. #define vrshrn_high_n_s16(__p0_229, __p1_229, __p2_229) __extension__ ({ \
  61580. int8x8_t __s0_229 = __p0_229; \
  61581. int16x8_t __s1_229 = __p1_229; \
  61582. int8x8_t __rev0_229; __rev0_229 = __builtin_shufflevector(__s0_229, __s0_229, 7, 6, 5, 4, 3, 2, 1, 0); \
  61583. int16x8_t __rev1_229; __rev1_229 = __builtin_shufflevector(__s1_229, __s1_229, 7, 6, 5, 4, 3, 2, 1, 0); \
  61584. int8x16_t __ret_229; \
  61585. __ret_229 = (int8x16_t)(__noswap_vcombine_s8((int8x8_t)(__rev0_229), (int8x8_t)(__noswap_vrshrn_n_s16(__rev1_229, __p2_229)))); \
  61586. __ret_229 = __builtin_shufflevector(__ret_229, __ret_229, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  61587. __ret_229; \
  61588. })
  61589. #endif
  61590. #ifdef __LITTLE_ENDIAN__
  61591. __ai float64x2_t vrsqrteq_f64(float64x2_t __p0) {
  61592. float64x2_t __ret;
  61593. __ret = (float64x2_t) __builtin_neon_vrsqrteq_v((int8x16_t)__p0, 42);
  61594. return __ret;
  61595. }
  61596. #else
  61597. __ai float64x2_t vrsqrteq_f64(float64x2_t __p0) {
  61598. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  61599. float64x2_t __ret;
  61600. __ret = (float64x2_t) __builtin_neon_vrsqrteq_v((int8x16_t)__rev0, 42);
  61601. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  61602. return __ret;
  61603. }
  61604. #endif
  61605. #ifdef __LITTLE_ENDIAN__
  61606. __ai float64x1_t vrsqrte_f64(float64x1_t __p0) {
  61607. float64x1_t __ret;
  61608. __ret = (float64x1_t) __builtin_neon_vrsqrte_v((int8x8_t)__p0, 10);
  61609. return __ret;
  61610. }
  61611. #else
  61612. __ai float64x1_t vrsqrte_f64(float64x1_t __p0) {
  61613. float64x1_t __ret;
  61614. __ret = (float64x1_t) __builtin_neon_vrsqrte_v((int8x8_t)__p0, 10);
  61615. return __ret;
  61616. }
  61617. #endif
  61618. #ifdef __LITTLE_ENDIAN__
  61619. __ai float64_t vrsqrted_f64(float64_t __p0) {
  61620. float64_t __ret;
  61621. __ret = (float64_t) __builtin_neon_vrsqrted_f64(__p0);
  61622. return __ret;
  61623. }
  61624. #else
  61625. __ai float64_t vrsqrted_f64(float64_t __p0) {
  61626. float64_t __ret;
  61627. __ret = (float64_t) __builtin_neon_vrsqrted_f64(__p0);
  61628. return __ret;
  61629. }
  61630. #endif
  61631. #ifdef __LITTLE_ENDIAN__
  61632. __ai float32_t vrsqrtes_f32(float32_t __p0) {
  61633. float32_t __ret;
  61634. __ret = (float32_t) __builtin_neon_vrsqrtes_f32(__p0);
  61635. return __ret;
  61636. }
  61637. #else
  61638. __ai float32_t vrsqrtes_f32(float32_t __p0) {
  61639. float32_t __ret;
  61640. __ret = (float32_t) __builtin_neon_vrsqrtes_f32(__p0);
  61641. return __ret;
  61642. }
  61643. #endif
  61644. #ifdef __LITTLE_ENDIAN__
  61645. __ai float64x2_t vrsqrtsq_f64(float64x2_t __p0, float64x2_t __p1) {
  61646. float64x2_t __ret;
  61647. __ret = (float64x2_t) __builtin_neon_vrsqrtsq_v((int8x16_t)__p0, (int8x16_t)__p1, 42);
  61648. return __ret;
  61649. }
  61650. #else
  61651. __ai float64x2_t vrsqrtsq_f64(float64x2_t __p0, float64x2_t __p1) {
  61652. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  61653. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  61654. float64x2_t __ret;
  61655. __ret = (float64x2_t) __builtin_neon_vrsqrtsq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 42);
  61656. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  61657. return __ret;
  61658. }
  61659. #endif
  61660. #ifdef __LITTLE_ENDIAN__
  61661. __ai float64x1_t vrsqrts_f64(float64x1_t __p0, float64x1_t __p1) {
  61662. float64x1_t __ret;
  61663. __ret = (float64x1_t) __builtin_neon_vrsqrts_v((int8x8_t)__p0, (int8x8_t)__p1, 10);
  61664. return __ret;
  61665. }
  61666. #else
  61667. __ai float64x1_t vrsqrts_f64(float64x1_t __p0, float64x1_t __p1) {
  61668. float64x1_t __ret;
  61669. __ret = (float64x1_t) __builtin_neon_vrsqrts_v((int8x8_t)__p0, (int8x8_t)__p1, 10);
  61670. return __ret;
  61671. }
  61672. #endif
  61673. #ifdef __LITTLE_ENDIAN__
  61674. __ai float64_t vrsqrtsd_f64(float64_t __p0, float64_t __p1) {
  61675. float64_t __ret;
  61676. __ret = (float64_t) __builtin_neon_vrsqrtsd_f64(__p0, __p1);
  61677. return __ret;
  61678. }
  61679. #else
  61680. __ai float64_t vrsqrtsd_f64(float64_t __p0, float64_t __p1) {
  61681. float64_t __ret;
  61682. __ret = (float64_t) __builtin_neon_vrsqrtsd_f64(__p0, __p1);
  61683. return __ret;
  61684. }
  61685. #endif
  61686. #ifdef __LITTLE_ENDIAN__
  61687. __ai float32_t vrsqrtss_f32(float32_t __p0, float32_t __p1) {
  61688. float32_t __ret;
  61689. __ret = (float32_t) __builtin_neon_vrsqrtss_f32(__p0, __p1);
  61690. return __ret;
  61691. }
  61692. #else
  61693. __ai float32_t vrsqrtss_f32(float32_t __p0, float32_t __p1) {
  61694. float32_t __ret;
  61695. __ret = (float32_t) __builtin_neon_vrsqrtss_f32(__p0, __p1);
  61696. return __ret;
  61697. }
  61698. #endif
  61699. #ifdef __LITTLE_ENDIAN__
  61700. #define vrsrad_n_u64(__p0, __p1, __p2) __extension__ ({ \
  61701. uint64_t __s0 = __p0; \
  61702. uint64_t __s1 = __p1; \
  61703. uint64_t __ret; \
  61704. __ret = (uint64_t) __builtin_neon_vrsrad_n_u64(__s0, __s1, __p2); \
  61705. __ret; \
  61706. })
  61707. #else
  61708. #define vrsrad_n_u64(__p0, __p1, __p2) __extension__ ({ \
  61709. uint64_t __s0 = __p0; \
  61710. uint64_t __s1 = __p1; \
  61711. uint64_t __ret; \
  61712. __ret = (uint64_t) __builtin_neon_vrsrad_n_u64(__s0, __s1, __p2); \
  61713. __ret; \
  61714. })
  61715. #endif
  61716. #ifdef __LITTLE_ENDIAN__
  61717. #define vrsrad_n_s64(__p0, __p1, __p2) __extension__ ({ \
  61718. int64_t __s0 = __p0; \
  61719. int64_t __s1 = __p1; \
  61720. int64_t __ret; \
  61721. __ret = (int64_t) __builtin_neon_vrsrad_n_s64(__s0, __s1, __p2); \
  61722. __ret; \
  61723. })
  61724. #else
  61725. #define vrsrad_n_s64(__p0, __p1, __p2) __extension__ ({ \
  61726. int64_t __s0 = __p0; \
  61727. int64_t __s1 = __p1; \
  61728. int64_t __ret; \
  61729. __ret = (int64_t) __builtin_neon_vrsrad_n_s64(__s0, __s1, __p2); \
  61730. __ret; \
  61731. })
  61732. #endif
  61733. #ifdef __LITTLE_ENDIAN__
  61734. __ai uint16x8_t vrsubhn_high_u32(uint16x4_t __p0, uint32x4_t __p1, uint32x4_t __p2) {
  61735. uint16x8_t __ret;
  61736. __ret = vcombine_u16(__p0, vrsubhn_u32(__p1, __p2));
  61737. return __ret;
  61738. }
  61739. #else
  61740. __ai uint16x8_t vrsubhn_high_u32(uint16x4_t __p0, uint32x4_t __p1, uint32x4_t __p2) {
  61741. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  61742. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  61743. uint32x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  61744. uint16x8_t __ret;
  61745. __ret = __noswap_vcombine_u16(__rev0, __noswap_vrsubhn_u32(__rev1, __rev2));
  61746. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  61747. return __ret;
  61748. }
  61749. #endif
  61750. #ifdef __LITTLE_ENDIAN__
  61751. __ai uint32x4_t vrsubhn_high_u64(uint32x2_t __p0, uint64x2_t __p1, uint64x2_t __p2) {
  61752. uint32x4_t __ret;
  61753. __ret = vcombine_u32(__p0, vrsubhn_u64(__p1, __p2));
  61754. return __ret;
  61755. }
  61756. #else
  61757. __ai uint32x4_t vrsubhn_high_u64(uint32x2_t __p0, uint64x2_t __p1, uint64x2_t __p2) {
  61758. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  61759. uint64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  61760. uint64x2_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 1, 0);
  61761. uint32x4_t __ret;
  61762. __ret = __noswap_vcombine_u32(__rev0, __noswap_vrsubhn_u64(__rev1, __rev2));
  61763. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  61764. return __ret;
  61765. }
  61766. #endif
  61767. #ifdef __LITTLE_ENDIAN__
  61768. __ai uint8x16_t vrsubhn_high_u16(uint8x8_t __p0, uint16x8_t __p1, uint16x8_t __p2) {
  61769. uint8x16_t __ret;
  61770. __ret = vcombine_u8(__p0, vrsubhn_u16(__p1, __p2));
  61771. return __ret;
  61772. }
  61773. #else
  61774. __ai uint8x16_t vrsubhn_high_u16(uint8x8_t __p0, uint16x8_t __p1, uint16x8_t __p2) {
  61775. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  61776. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  61777. uint16x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  61778. uint8x16_t __ret;
  61779. __ret = __noswap_vcombine_u8(__rev0, __noswap_vrsubhn_u16(__rev1, __rev2));
  61780. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  61781. return __ret;
  61782. }
  61783. #endif
  61784. #ifdef __LITTLE_ENDIAN__
  61785. __ai int16x8_t vrsubhn_high_s32(int16x4_t __p0, int32x4_t __p1, int32x4_t __p2) {
  61786. int16x8_t __ret;
  61787. __ret = vcombine_s16(__p0, vrsubhn_s32(__p1, __p2));
  61788. return __ret;
  61789. }
  61790. #else
  61791. __ai int16x8_t vrsubhn_high_s32(int16x4_t __p0, int32x4_t __p1, int32x4_t __p2) {
  61792. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  61793. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  61794. int32x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  61795. int16x8_t __ret;
  61796. __ret = __noswap_vcombine_s16(__rev0, __noswap_vrsubhn_s32(__rev1, __rev2));
  61797. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  61798. return __ret;
  61799. }
  61800. #endif
  61801. #ifdef __LITTLE_ENDIAN__
  61802. __ai int32x4_t vrsubhn_high_s64(int32x2_t __p0, int64x2_t __p1, int64x2_t __p2) {
  61803. int32x4_t __ret;
  61804. __ret = vcombine_s32(__p0, vrsubhn_s64(__p1, __p2));
  61805. return __ret;
  61806. }
  61807. #else
  61808. __ai int32x4_t vrsubhn_high_s64(int32x2_t __p0, int64x2_t __p1, int64x2_t __p2) {
  61809. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  61810. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  61811. int64x2_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 1, 0);
  61812. int32x4_t __ret;
  61813. __ret = __noswap_vcombine_s32(__rev0, __noswap_vrsubhn_s64(__rev1, __rev2));
  61814. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  61815. return __ret;
  61816. }
  61817. #endif
  61818. #ifdef __LITTLE_ENDIAN__
  61819. __ai int8x16_t vrsubhn_high_s16(int8x8_t __p0, int16x8_t __p1, int16x8_t __p2) {
  61820. int8x16_t __ret;
  61821. __ret = vcombine_s8(__p0, vrsubhn_s16(__p1, __p2));
  61822. return __ret;
  61823. }
  61824. #else
  61825. __ai int8x16_t vrsubhn_high_s16(int8x8_t __p0, int16x8_t __p1, int16x8_t __p2) {
  61826. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  61827. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  61828. int16x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  61829. int8x16_t __ret;
  61830. __ret = __noswap_vcombine_s8(__rev0, __noswap_vrsubhn_s16(__rev1, __rev2));
  61831. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  61832. return __ret;
  61833. }
  61834. #endif
  61835. #ifdef __LITTLE_ENDIAN__
  61836. #define vset_lane_p64(__p0, __p1, __p2) __extension__ ({ \
  61837. poly64_t __s0 = __p0; \
  61838. poly64x1_t __s1 = __p1; \
  61839. poly64x1_t __ret; \
  61840. __ret = (poly64x1_t) __builtin_neon_vset_lane_i64(__s0, (int8x8_t)__s1, __p2); \
  61841. __ret; \
  61842. })
  61843. #else
  61844. #define vset_lane_p64(__p0, __p1, __p2) __extension__ ({ \
  61845. poly64_t __s0 = __p0; \
  61846. poly64x1_t __s1 = __p1; \
  61847. poly64x1_t __ret; \
  61848. __ret = (poly64x1_t) __builtin_neon_vset_lane_i64(__s0, (int8x8_t)__s1, __p2); \
  61849. __ret; \
  61850. })
  61851. #define __noswap_vset_lane_p64(__p0, __p1, __p2) __extension__ ({ \
  61852. poly64_t __s0 = __p0; \
  61853. poly64x1_t __s1 = __p1; \
  61854. poly64x1_t __ret; \
  61855. __ret = (poly64x1_t) __builtin_neon_vset_lane_i64(__s0, (int8x8_t)__s1, __p2); \
  61856. __ret; \
  61857. })
  61858. #endif
  61859. #ifdef __LITTLE_ENDIAN__
  61860. #define vsetq_lane_p64(__p0, __p1, __p2) __extension__ ({ \
  61861. poly64_t __s0 = __p0; \
  61862. poly64x2_t __s1 = __p1; \
  61863. poly64x2_t __ret; \
  61864. __ret = (poly64x2_t) __builtin_neon_vsetq_lane_i64(__s0, (int8x16_t)__s1, __p2); \
  61865. __ret; \
  61866. })
  61867. #else
  61868. #define vsetq_lane_p64(__p0, __p1, __p2) __extension__ ({ \
  61869. poly64_t __s0 = __p0; \
  61870. poly64x2_t __s1 = __p1; \
  61871. poly64x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  61872. poly64x2_t __ret; \
  61873. __ret = (poly64x2_t) __builtin_neon_vsetq_lane_i64(__s0, (int8x16_t)__rev1, __p2); \
  61874. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  61875. __ret; \
  61876. })
  61877. #define __noswap_vsetq_lane_p64(__p0, __p1, __p2) __extension__ ({ \
  61878. poly64_t __s0 = __p0; \
  61879. poly64x2_t __s1 = __p1; \
  61880. poly64x2_t __ret; \
  61881. __ret = (poly64x2_t) __builtin_neon_vsetq_lane_i64(__s0, (int8x16_t)__s1, __p2); \
  61882. __ret; \
  61883. })
  61884. #endif
  61885. #ifdef __LITTLE_ENDIAN__
  61886. #define vsetq_lane_f64(__p0, __p1, __p2) __extension__ ({ \
  61887. float64_t __s0 = __p0; \
  61888. float64x2_t __s1 = __p1; \
  61889. float64x2_t __ret; \
  61890. __ret = (float64x2_t) __builtin_neon_vsetq_lane_f64(__s0, (int8x16_t)__s1, __p2); \
  61891. __ret; \
  61892. })
  61893. #else
  61894. #define vsetq_lane_f64(__p0, __p1, __p2) __extension__ ({ \
  61895. float64_t __s0 = __p0; \
  61896. float64x2_t __s1 = __p1; \
  61897. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  61898. float64x2_t __ret; \
  61899. __ret = (float64x2_t) __builtin_neon_vsetq_lane_f64(__s0, (int8x16_t)__rev1, __p2); \
  61900. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  61901. __ret; \
  61902. })
  61903. #define __noswap_vsetq_lane_f64(__p0, __p1, __p2) __extension__ ({ \
  61904. float64_t __s0 = __p0; \
  61905. float64x2_t __s1 = __p1; \
  61906. float64x2_t __ret; \
  61907. __ret = (float64x2_t) __builtin_neon_vsetq_lane_f64(__s0, (int8x16_t)__s1, __p2); \
  61908. __ret; \
  61909. })
  61910. #endif
  61911. #ifdef __LITTLE_ENDIAN__
  61912. #define vset_lane_f64(__p0, __p1, __p2) __extension__ ({ \
  61913. float64_t __s0 = __p0; \
  61914. float64x1_t __s1 = __p1; \
  61915. float64x1_t __ret; \
  61916. __ret = (float64x1_t) __builtin_neon_vset_lane_f64(__s0, (int8x8_t)__s1, __p2); \
  61917. __ret; \
  61918. })
  61919. #else
  61920. #define vset_lane_f64(__p0, __p1, __p2) __extension__ ({ \
  61921. float64_t __s0 = __p0; \
  61922. float64x1_t __s1 = __p1; \
  61923. float64x1_t __ret; \
  61924. __ret = (float64x1_t) __builtin_neon_vset_lane_f64(__s0, (int8x8_t)__s1, __p2); \
  61925. __ret; \
  61926. })
  61927. #define __noswap_vset_lane_f64(__p0, __p1, __p2) __extension__ ({ \
  61928. float64_t __s0 = __p0; \
  61929. float64x1_t __s1 = __p1; \
  61930. float64x1_t __ret; \
  61931. __ret = (float64x1_t) __builtin_neon_vset_lane_f64(__s0, (int8x8_t)__s1, __p2); \
  61932. __ret; \
  61933. })
  61934. #endif
  61935. #ifdef __LITTLE_ENDIAN__
  61936. __ai uint64_t vshld_u64(uint64_t __p0, uint64_t __p1) {
  61937. uint64_t __ret;
  61938. __ret = (uint64_t) __builtin_neon_vshld_u64(__p0, __p1);
  61939. return __ret;
  61940. }
  61941. #else
  61942. __ai uint64_t vshld_u64(uint64_t __p0, uint64_t __p1) {
  61943. uint64_t __ret;
  61944. __ret = (uint64_t) __builtin_neon_vshld_u64(__p0, __p1);
  61945. return __ret;
  61946. }
  61947. #endif
  61948. #ifdef __LITTLE_ENDIAN__
  61949. __ai int64_t vshld_s64(int64_t __p0, int64_t __p1) {
  61950. int64_t __ret;
  61951. __ret = (int64_t) __builtin_neon_vshld_s64(__p0, __p1);
  61952. return __ret;
  61953. }
  61954. #else
  61955. __ai int64_t vshld_s64(int64_t __p0, int64_t __p1) {
  61956. int64_t __ret;
  61957. __ret = (int64_t) __builtin_neon_vshld_s64(__p0, __p1);
  61958. return __ret;
  61959. }
  61960. #endif
  61961. #ifdef __LITTLE_ENDIAN__
  61962. #define vshld_n_u64(__p0, __p1) __extension__ ({ \
  61963. uint64_t __s0 = __p0; \
  61964. uint64_t __ret; \
  61965. __ret = (uint64_t) __builtin_neon_vshld_n_u64(__s0, __p1); \
  61966. __ret; \
  61967. })
  61968. #else
  61969. #define vshld_n_u64(__p0, __p1) __extension__ ({ \
  61970. uint64_t __s0 = __p0; \
  61971. uint64_t __ret; \
  61972. __ret = (uint64_t) __builtin_neon_vshld_n_u64(__s0, __p1); \
  61973. __ret; \
  61974. })
  61975. #endif
  61976. #ifdef __LITTLE_ENDIAN__
  61977. #define vshld_n_s64(__p0, __p1) __extension__ ({ \
  61978. int64_t __s0 = __p0; \
  61979. int64_t __ret; \
  61980. __ret = (int64_t) __builtin_neon_vshld_n_s64(__s0, __p1); \
  61981. __ret; \
  61982. })
  61983. #else
  61984. #define vshld_n_s64(__p0, __p1) __extension__ ({ \
  61985. int64_t __s0 = __p0; \
  61986. int64_t __ret; \
  61987. __ret = (int64_t) __builtin_neon_vshld_n_s64(__s0, __p1); \
  61988. __ret; \
  61989. })
  61990. #endif
  61991. #ifdef __LITTLE_ENDIAN__
  61992. #define vshll_high_n_u8(__p0_230, __p1_230) __extension__ ({ \
  61993. uint8x16_t __s0_230 = __p0_230; \
  61994. uint16x8_t __ret_230; \
  61995. __ret_230 = (uint16x8_t)(vshll_n_u8(vget_high_u8(__s0_230), __p1_230)); \
  61996. __ret_230; \
  61997. })
  61998. #else
  61999. #define vshll_high_n_u8(__p0_231, __p1_231) __extension__ ({ \
  62000. uint8x16_t __s0_231 = __p0_231; \
  62001. uint8x16_t __rev0_231; __rev0_231 = __builtin_shufflevector(__s0_231, __s0_231, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  62002. uint16x8_t __ret_231; \
  62003. __ret_231 = (uint16x8_t)(__noswap_vshll_n_u8(__noswap_vget_high_u8(__rev0_231), __p1_231)); \
  62004. __ret_231 = __builtin_shufflevector(__ret_231, __ret_231, 7, 6, 5, 4, 3, 2, 1, 0); \
  62005. __ret_231; \
  62006. })
  62007. #endif
  62008. #ifdef __LITTLE_ENDIAN__
  62009. #define vshll_high_n_u32(__p0_232, __p1_232) __extension__ ({ \
  62010. uint32x4_t __s0_232 = __p0_232; \
  62011. uint64x2_t __ret_232; \
  62012. __ret_232 = (uint64x2_t)(vshll_n_u32(vget_high_u32(__s0_232), __p1_232)); \
  62013. __ret_232; \
  62014. })
  62015. #else
  62016. #define vshll_high_n_u32(__p0_233, __p1_233) __extension__ ({ \
  62017. uint32x4_t __s0_233 = __p0_233; \
  62018. uint32x4_t __rev0_233; __rev0_233 = __builtin_shufflevector(__s0_233, __s0_233, 3, 2, 1, 0); \
  62019. uint64x2_t __ret_233; \
  62020. __ret_233 = (uint64x2_t)(__noswap_vshll_n_u32(__noswap_vget_high_u32(__rev0_233), __p1_233)); \
  62021. __ret_233 = __builtin_shufflevector(__ret_233, __ret_233, 1, 0); \
  62022. __ret_233; \
  62023. })
  62024. #endif
  62025. #ifdef __LITTLE_ENDIAN__
  62026. #define vshll_high_n_u16(__p0_234, __p1_234) __extension__ ({ \
  62027. uint16x8_t __s0_234 = __p0_234; \
  62028. uint32x4_t __ret_234; \
  62029. __ret_234 = (uint32x4_t)(vshll_n_u16(vget_high_u16(__s0_234), __p1_234)); \
  62030. __ret_234; \
  62031. })
  62032. #else
  62033. #define vshll_high_n_u16(__p0_235, __p1_235) __extension__ ({ \
  62034. uint16x8_t __s0_235 = __p0_235; \
  62035. uint16x8_t __rev0_235; __rev0_235 = __builtin_shufflevector(__s0_235, __s0_235, 7, 6, 5, 4, 3, 2, 1, 0); \
  62036. uint32x4_t __ret_235; \
  62037. __ret_235 = (uint32x4_t)(__noswap_vshll_n_u16(__noswap_vget_high_u16(__rev0_235), __p1_235)); \
  62038. __ret_235 = __builtin_shufflevector(__ret_235, __ret_235, 3, 2, 1, 0); \
  62039. __ret_235; \
  62040. })
  62041. #endif
  62042. #ifdef __LITTLE_ENDIAN__
  62043. #define vshll_high_n_s8(__p0_236, __p1_236) __extension__ ({ \
  62044. int8x16_t __s0_236 = __p0_236; \
  62045. int16x8_t __ret_236; \
  62046. __ret_236 = (int16x8_t)(vshll_n_s8(vget_high_s8(__s0_236), __p1_236)); \
  62047. __ret_236; \
  62048. })
  62049. #else
  62050. #define vshll_high_n_s8(__p0_237, __p1_237) __extension__ ({ \
  62051. int8x16_t __s0_237 = __p0_237; \
  62052. int8x16_t __rev0_237; __rev0_237 = __builtin_shufflevector(__s0_237, __s0_237, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  62053. int16x8_t __ret_237; \
  62054. __ret_237 = (int16x8_t)(__noswap_vshll_n_s8(__noswap_vget_high_s8(__rev0_237), __p1_237)); \
  62055. __ret_237 = __builtin_shufflevector(__ret_237, __ret_237, 7, 6, 5, 4, 3, 2, 1, 0); \
  62056. __ret_237; \
  62057. })
  62058. #endif
  62059. #ifdef __LITTLE_ENDIAN__
  62060. #define vshll_high_n_s32(__p0_238, __p1_238) __extension__ ({ \
  62061. int32x4_t __s0_238 = __p0_238; \
  62062. int64x2_t __ret_238; \
  62063. __ret_238 = (int64x2_t)(vshll_n_s32(vget_high_s32(__s0_238), __p1_238)); \
  62064. __ret_238; \
  62065. })
  62066. #else
  62067. #define vshll_high_n_s32(__p0_239, __p1_239) __extension__ ({ \
  62068. int32x4_t __s0_239 = __p0_239; \
  62069. int32x4_t __rev0_239; __rev0_239 = __builtin_shufflevector(__s0_239, __s0_239, 3, 2, 1, 0); \
  62070. int64x2_t __ret_239; \
  62071. __ret_239 = (int64x2_t)(__noswap_vshll_n_s32(__noswap_vget_high_s32(__rev0_239), __p1_239)); \
  62072. __ret_239 = __builtin_shufflevector(__ret_239, __ret_239, 1, 0); \
  62073. __ret_239; \
  62074. })
  62075. #endif
  62076. #ifdef __LITTLE_ENDIAN__
  62077. #define vshll_high_n_s16(__p0_240, __p1_240) __extension__ ({ \
  62078. int16x8_t __s0_240 = __p0_240; \
  62079. int32x4_t __ret_240; \
  62080. __ret_240 = (int32x4_t)(vshll_n_s16(vget_high_s16(__s0_240), __p1_240)); \
  62081. __ret_240; \
  62082. })
  62083. #else
  62084. #define vshll_high_n_s16(__p0_241, __p1_241) __extension__ ({ \
  62085. int16x8_t __s0_241 = __p0_241; \
  62086. int16x8_t __rev0_241; __rev0_241 = __builtin_shufflevector(__s0_241, __s0_241, 7, 6, 5, 4, 3, 2, 1, 0); \
  62087. int32x4_t __ret_241; \
  62088. __ret_241 = (int32x4_t)(__noswap_vshll_n_s16(__noswap_vget_high_s16(__rev0_241), __p1_241)); \
  62089. __ret_241 = __builtin_shufflevector(__ret_241, __ret_241, 3, 2, 1, 0); \
  62090. __ret_241; \
  62091. })
  62092. #endif
  62093. #ifdef __LITTLE_ENDIAN__
  62094. #define vshrd_n_u64(__p0, __p1) __extension__ ({ \
  62095. uint64_t __s0 = __p0; \
  62096. uint64_t __ret; \
  62097. __ret = (uint64_t) __builtin_neon_vshrd_n_u64(__s0, __p1); \
  62098. __ret; \
  62099. })
  62100. #else
  62101. #define vshrd_n_u64(__p0, __p1) __extension__ ({ \
  62102. uint64_t __s0 = __p0; \
  62103. uint64_t __ret; \
  62104. __ret = (uint64_t) __builtin_neon_vshrd_n_u64(__s0, __p1); \
  62105. __ret; \
  62106. })
  62107. #endif
  62108. #ifdef __LITTLE_ENDIAN__
  62109. #define vshrd_n_s64(__p0, __p1) __extension__ ({ \
  62110. int64_t __s0 = __p0; \
  62111. int64_t __ret; \
  62112. __ret = (int64_t) __builtin_neon_vshrd_n_s64(__s0, __p1); \
  62113. __ret; \
  62114. })
  62115. #else
  62116. #define vshrd_n_s64(__p0, __p1) __extension__ ({ \
  62117. int64_t __s0 = __p0; \
  62118. int64_t __ret; \
  62119. __ret = (int64_t) __builtin_neon_vshrd_n_s64(__s0, __p1); \
  62120. __ret; \
  62121. })
  62122. #endif
  62123. #ifdef __LITTLE_ENDIAN__
  62124. #define vshrn_high_n_u32(__p0_242, __p1_242, __p2_242) __extension__ ({ \
  62125. uint16x4_t __s0_242 = __p0_242; \
  62126. uint32x4_t __s1_242 = __p1_242; \
  62127. uint16x8_t __ret_242; \
  62128. __ret_242 = (uint16x8_t)(vcombine_u16((uint16x4_t)(__s0_242), (uint16x4_t)(vshrn_n_u32(__s1_242, __p2_242)))); \
  62129. __ret_242; \
  62130. })
  62131. #else
  62132. #define vshrn_high_n_u32(__p0_243, __p1_243, __p2_243) __extension__ ({ \
  62133. uint16x4_t __s0_243 = __p0_243; \
  62134. uint32x4_t __s1_243 = __p1_243; \
  62135. uint16x4_t __rev0_243; __rev0_243 = __builtin_shufflevector(__s0_243, __s0_243, 3, 2, 1, 0); \
  62136. uint32x4_t __rev1_243; __rev1_243 = __builtin_shufflevector(__s1_243, __s1_243, 3, 2, 1, 0); \
  62137. uint16x8_t __ret_243; \
  62138. __ret_243 = (uint16x8_t)(__noswap_vcombine_u16((uint16x4_t)(__rev0_243), (uint16x4_t)(__noswap_vshrn_n_u32(__rev1_243, __p2_243)))); \
  62139. __ret_243 = __builtin_shufflevector(__ret_243, __ret_243, 7, 6, 5, 4, 3, 2, 1, 0); \
  62140. __ret_243; \
  62141. })
  62142. #endif
  62143. #ifdef __LITTLE_ENDIAN__
  62144. #define vshrn_high_n_u64(__p0_244, __p1_244, __p2_244) __extension__ ({ \
  62145. uint32x2_t __s0_244 = __p0_244; \
  62146. uint64x2_t __s1_244 = __p1_244; \
  62147. uint32x4_t __ret_244; \
  62148. __ret_244 = (uint32x4_t)(vcombine_u32((uint32x2_t)(__s0_244), (uint32x2_t)(vshrn_n_u64(__s1_244, __p2_244)))); \
  62149. __ret_244; \
  62150. })
  62151. #else
  62152. #define vshrn_high_n_u64(__p0_245, __p1_245, __p2_245) __extension__ ({ \
  62153. uint32x2_t __s0_245 = __p0_245; \
  62154. uint64x2_t __s1_245 = __p1_245; \
  62155. uint32x2_t __rev0_245; __rev0_245 = __builtin_shufflevector(__s0_245, __s0_245, 1, 0); \
  62156. uint64x2_t __rev1_245; __rev1_245 = __builtin_shufflevector(__s1_245, __s1_245, 1, 0); \
  62157. uint32x4_t __ret_245; \
  62158. __ret_245 = (uint32x4_t)(__noswap_vcombine_u32((uint32x2_t)(__rev0_245), (uint32x2_t)(__noswap_vshrn_n_u64(__rev1_245, __p2_245)))); \
  62159. __ret_245 = __builtin_shufflevector(__ret_245, __ret_245, 3, 2, 1, 0); \
  62160. __ret_245; \
  62161. })
  62162. #endif
  62163. #ifdef __LITTLE_ENDIAN__
  62164. #define vshrn_high_n_u16(__p0_246, __p1_246, __p2_246) __extension__ ({ \
  62165. uint8x8_t __s0_246 = __p0_246; \
  62166. uint16x8_t __s1_246 = __p1_246; \
  62167. uint8x16_t __ret_246; \
  62168. __ret_246 = (uint8x16_t)(vcombine_u8((uint8x8_t)(__s0_246), (uint8x8_t)(vshrn_n_u16(__s1_246, __p2_246)))); \
  62169. __ret_246; \
  62170. })
  62171. #else
  62172. #define vshrn_high_n_u16(__p0_247, __p1_247, __p2_247) __extension__ ({ \
  62173. uint8x8_t __s0_247 = __p0_247; \
  62174. uint16x8_t __s1_247 = __p1_247; \
  62175. uint8x8_t __rev0_247; __rev0_247 = __builtin_shufflevector(__s0_247, __s0_247, 7, 6, 5, 4, 3, 2, 1, 0); \
  62176. uint16x8_t __rev1_247; __rev1_247 = __builtin_shufflevector(__s1_247, __s1_247, 7, 6, 5, 4, 3, 2, 1, 0); \
  62177. uint8x16_t __ret_247; \
  62178. __ret_247 = (uint8x16_t)(__noswap_vcombine_u8((uint8x8_t)(__rev0_247), (uint8x8_t)(__noswap_vshrn_n_u16(__rev1_247, __p2_247)))); \
  62179. __ret_247 = __builtin_shufflevector(__ret_247, __ret_247, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  62180. __ret_247; \
  62181. })
  62182. #endif
  62183. #ifdef __LITTLE_ENDIAN__
  62184. #define vshrn_high_n_s32(__p0_248, __p1_248, __p2_248) __extension__ ({ \
  62185. int16x4_t __s0_248 = __p0_248; \
  62186. int32x4_t __s1_248 = __p1_248; \
  62187. int16x8_t __ret_248; \
  62188. __ret_248 = (int16x8_t)(vcombine_s16((int16x4_t)(__s0_248), (int16x4_t)(vshrn_n_s32(__s1_248, __p2_248)))); \
  62189. __ret_248; \
  62190. })
  62191. #else
  62192. #define vshrn_high_n_s32(__p0_249, __p1_249, __p2_249) __extension__ ({ \
  62193. int16x4_t __s0_249 = __p0_249; \
  62194. int32x4_t __s1_249 = __p1_249; \
  62195. int16x4_t __rev0_249; __rev0_249 = __builtin_shufflevector(__s0_249, __s0_249, 3, 2, 1, 0); \
  62196. int32x4_t __rev1_249; __rev1_249 = __builtin_shufflevector(__s1_249, __s1_249, 3, 2, 1, 0); \
  62197. int16x8_t __ret_249; \
  62198. __ret_249 = (int16x8_t)(__noswap_vcombine_s16((int16x4_t)(__rev0_249), (int16x4_t)(__noswap_vshrn_n_s32(__rev1_249, __p2_249)))); \
  62199. __ret_249 = __builtin_shufflevector(__ret_249, __ret_249, 7, 6, 5, 4, 3, 2, 1, 0); \
  62200. __ret_249; \
  62201. })
  62202. #endif
  62203. #ifdef __LITTLE_ENDIAN__
  62204. #define vshrn_high_n_s64(__p0_250, __p1_250, __p2_250) __extension__ ({ \
  62205. int32x2_t __s0_250 = __p0_250; \
  62206. int64x2_t __s1_250 = __p1_250; \
  62207. int32x4_t __ret_250; \
  62208. __ret_250 = (int32x4_t)(vcombine_s32((int32x2_t)(__s0_250), (int32x2_t)(vshrn_n_s64(__s1_250, __p2_250)))); \
  62209. __ret_250; \
  62210. })
  62211. #else
  62212. #define vshrn_high_n_s64(__p0_251, __p1_251, __p2_251) __extension__ ({ \
  62213. int32x2_t __s0_251 = __p0_251; \
  62214. int64x2_t __s1_251 = __p1_251; \
  62215. int32x2_t __rev0_251; __rev0_251 = __builtin_shufflevector(__s0_251, __s0_251, 1, 0); \
  62216. int64x2_t __rev1_251; __rev1_251 = __builtin_shufflevector(__s1_251, __s1_251, 1, 0); \
  62217. int32x4_t __ret_251; \
  62218. __ret_251 = (int32x4_t)(__noswap_vcombine_s32((int32x2_t)(__rev0_251), (int32x2_t)(__noswap_vshrn_n_s64(__rev1_251, __p2_251)))); \
  62219. __ret_251 = __builtin_shufflevector(__ret_251, __ret_251, 3, 2, 1, 0); \
  62220. __ret_251; \
  62221. })
  62222. #endif
  62223. #ifdef __LITTLE_ENDIAN__
  62224. #define vshrn_high_n_s16(__p0_252, __p1_252, __p2_252) __extension__ ({ \
  62225. int8x8_t __s0_252 = __p0_252; \
  62226. int16x8_t __s1_252 = __p1_252; \
  62227. int8x16_t __ret_252; \
  62228. __ret_252 = (int8x16_t)(vcombine_s8((int8x8_t)(__s0_252), (int8x8_t)(vshrn_n_s16(__s1_252, __p2_252)))); \
  62229. __ret_252; \
  62230. })
  62231. #else
  62232. #define vshrn_high_n_s16(__p0_253, __p1_253, __p2_253) __extension__ ({ \
  62233. int8x8_t __s0_253 = __p0_253; \
  62234. int16x8_t __s1_253 = __p1_253; \
  62235. int8x8_t __rev0_253; __rev0_253 = __builtin_shufflevector(__s0_253, __s0_253, 7, 6, 5, 4, 3, 2, 1, 0); \
  62236. int16x8_t __rev1_253; __rev1_253 = __builtin_shufflevector(__s1_253, __s1_253, 7, 6, 5, 4, 3, 2, 1, 0); \
  62237. int8x16_t __ret_253; \
  62238. __ret_253 = (int8x16_t)(__noswap_vcombine_s8((int8x8_t)(__rev0_253), (int8x8_t)(__noswap_vshrn_n_s16(__rev1_253, __p2_253)))); \
  62239. __ret_253 = __builtin_shufflevector(__ret_253, __ret_253, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  62240. __ret_253; \
  62241. })
  62242. #endif
  62243. #ifdef __LITTLE_ENDIAN__
  62244. #define vslid_n_u64(__p0, __p1, __p2) __extension__ ({ \
  62245. uint64_t __s0 = __p0; \
  62246. uint64_t __s1 = __p1; \
  62247. uint64_t __ret; \
  62248. __ret = (uint64_t) __builtin_neon_vslid_n_u64(__s0, __s1, __p2); \
  62249. __ret; \
  62250. })
  62251. #else
  62252. #define vslid_n_u64(__p0, __p1, __p2) __extension__ ({ \
  62253. uint64_t __s0 = __p0; \
  62254. uint64_t __s1 = __p1; \
  62255. uint64_t __ret; \
  62256. __ret = (uint64_t) __builtin_neon_vslid_n_u64(__s0, __s1, __p2); \
  62257. __ret; \
  62258. })
  62259. #endif
  62260. #ifdef __LITTLE_ENDIAN__
  62261. #define vslid_n_s64(__p0, __p1, __p2) __extension__ ({ \
  62262. int64_t __s0 = __p0; \
  62263. int64_t __s1 = __p1; \
  62264. int64_t __ret; \
  62265. __ret = (int64_t) __builtin_neon_vslid_n_s64(__s0, __s1, __p2); \
  62266. __ret; \
  62267. })
  62268. #else
  62269. #define vslid_n_s64(__p0, __p1, __p2) __extension__ ({ \
  62270. int64_t __s0 = __p0; \
  62271. int64_t __s1 = __p1; \
  62272. int64_t __ret; \
  62273. __ret = (int64_t) __builtin_neon_vslid_n_s64(__s0, __s1, __p2); \
  62274. __ret; \
  62275. })
  62276. #endif
  62277. #ifdef __LITTLE_ENDIAN__
  62278. #define vsli_n_p64(__p0, __p1, __p2) __extension__ ({ \
  62279. poly64x1_t __s0 = __p0; \
  62280. poly64x1_t __s1 = __p1; \
  62281. poly64x1_t __ret; \
  62282. __ret = (poly64x1_t) __builtin_neon_vsli_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 6); \
  62283. __ret; \
  62284. })
  62285. #else
  62286. #define vsli_n_p64(__p0, __p1, __p2) __extension__ ({ \
  62287. poly64x1_t __s0 = __p0; \
  62288. poly64x1_t __s1 = __p1; \
  62289. poly64x1_t __ret; \
  62290. __ret = (poly64x1_t) __builtin_neon_vsli_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 6); \
  62291. __ret; \
  62292. })
  62293. #endif
  62294. #ifdef __LITTLE_ENDIAN__
  62295. #define vsliq_n_p64(__p0, __p1, __p2) __extension__ ({ \
  62296. poly64x2_t __s0 = __p0; \
  62297. poly64x2_t __s1 = __p1; \
  62298. poly64x2_t __ret; \
  62299. __ret = (poly64x2_t) __builtin_neon_vsliq_n_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 38); \
  62300. __ret; \
  62301. })
  62302. #else
  62303. #define vsliq_n_p64(__p0, __p1, __p2) __extension__ ({ \
  62304. poly64x2_t __s0 = __p0; \
  62305. poly64x2_t __s1 = __p1; \
  62306. poly64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  62307. poly64x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  62308. poly64x2_t __ret; \
  62309. __ret = (poly64x2_t) __builtin_neon_vsliq_n_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 38); \
  62310. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  62311. __ret; \
  62312. })
  62313. #endif
  62314. #ifdef __LITTLE_ENDIAN__
  62315. __ai uint8_t vsqaddb_u8(uint8_t __p0, uint8_t __p1) {
  62316. uint8_t __ret;
  62317. __ret = (uint8_t) __builtin_neon_vsqaddb_u8(__p0, __p1);
  62318. return __ret;
  62319. }
  62320. #else
  62321. __ai uint8_t vsqaddb_u8(uint8_t __p0, uint8_t __p1) {
  62322. uint8_t __ret;
  62323. __ret = (uint8_t) __builtin_neon_vsqaddb_u8(__p0, __p1);
  62324. return __ret;
  62325. }
  62326. #endif
  62327. #ifdef __LITTLE_ENDIAN__
  62328. __ai uint32_t vsqadds_u32(uint32_t __p0, uint32_t __p1) {
  62329. uint32_t __ret;
  62330. __ret = (uint32_t) __builtin_neon_vsqadds_u32(__p0, __p1);
  62331. return __ret;
  62332. }
  62333. #else
  62334. __ai uint32_t vsqadds_u32(uint32_t __p0, uint32_t __p1) {
  62335. uint32_t __ret;
  62336. __ret = (uint32_t) __builtin_neon_vsqadds_u32(__p0, __p1);
  62337. return __ret;
  62338. }
  62339. #endif
  62340. #ifdef __LITTLE_ENDIAN__
  62341. __ai uint64_t vsqaddd_u64(uint64_t __p0, uint64_t __p1) {
  62342. uint64_t __ret;
  62343. __ret = (uint64_t) __builtin_neon_vsqaddd_u64(__p0, __p1);
  62344. return __ret;
  62345. }
  62346. #else
  62347. __ai uint64_t vsqaddd_u64(uint64_t __p0, uint64_t __p1) {
  62348. uint64_t __ret;
  62349. __ret = (uint64_t) __builtin_neon_vsqaddd_u64(__p0, __p1);
  62350. return __ret;
  62351. }
  62352. #endif
  62353. #ifdef __LITTLE_ENDIAN__
  62354. __ai uint16_t vsqaddh_u16(uint16_t __p0, uint16_t __p1) {
  62355. uint16_t __ret;
  62356. __ret = (uint16_t) __builtin_neon_vsqaddh_u16(__p0, __p1);
  62357. return __ret;
  62358. }
  62359. #else
  62360. __ai uint16_t vsqaddh_u16(uint16_t __p0, uint16_t __p1) {
  62361. uint16_t __ret;
  62362. __ret = (uint16_t) __builtin_neon_vsqaddh_u16(__p0, __p1);
  62363. return __ret;
  62364. }
  62365. #endif
  62366. #ifdef __LITTLE_ENDIAN__
  62367. __ai uint8x16_t vsqaddq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  62368. uint8x16_t __ret;
  62369. __ret = (uint8x16_t) __builtin_neon_vsqaddq_v((int8x16_t)__p0, (int8x16_t)__p1, 48);
  62370. return __ret;
  62371. }
  62372. #else
  62373. __ai uint8x16_t vsqaddq_u8(uint8x16_t __p0, uint8x16_t __p1) {
  62374. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  62375. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  62376. uint8x16_t __ret;
  62377. __ret = (uint8x16_t) __builtin_neon_vsqaddq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 48);
  62378. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  62379. return __ret;
  62380. }
  62381. #endif
  62382. #ifdef __LITTLE_ENDIAN__
  62383. __ai uint32x4_t vsqaddq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  62384. uint32x4_t __ret;
  62385. __ret = (uint32x4_t) __builtin_neon_vsqaddq_v((int8x16_t)__p0, (int8x16_t)__p1, 50);
  62386. return __ret;
  62387. }
  62388. #else
  62389. __ai uint32x4_t vsqaddq_u32(uint32x4_t __p0, uint32x4_t __p1) {
  62390. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  62391. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  62392. uint32x4_t __ret;
  62393. __ret = (uint32x4_t) __builtin_neon_vsqaddq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 50);
  62394. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  62395. return __ret;
  62396. }
  62397. #endif
  62398. #ifdef __LITTLE_ENDIAN__
  62399. __ai uint64x2_t vsqaddq_u64(uint64x2_t __p0, uint64x2_t __p1) {
  62400. uint64x2_t __ret;
  62401. __ret = (uint64x2_t) __builtin_neon_vsqaddq_v((int8x16_t)__p0, (int8x16_t)__p1, 51);
  62402. return __ret;
  62403. }
  62404. #else
  62405. __ai uint64x2_t vsqaddq_u64(uint64x2_t __p0, uint64x2_t __p1) {
  62406. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  62407. uint64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  62408. uint64x2_t __ret;
  62409. __ret = (uint64x2_t) __builtin_neon_vsqaddq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 51);
  62410. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  62411. return __ret;
  62412. }
  62413. #endif
  62414. #ifdef __LITTLE_ENDIAN__
  62415. __ai uint16x8_t vsqaddq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  62416. uint16x8_t __ret;
  62417. __ret = (uint16x8_t) __builtin_neon_vsqaddq_v((int8x16_t)__p0, (int8x16_t)__p1, 49);
  62418. return __ret;
  62419. }
  62420. #else
  62421. __ai uint16x8_t vsqaddq_u16(uint16x8_t __p0, uint16x8_t __p1) {
  62422. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  62423. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  62424. uint16x8_t __ret;
  62425. __ret = (uint16x8_t) __builtin_neon_vsqaddq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 49);
  62426. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  62427. return __ret;
  62428. }
  62429. #endif
  62430. #ifdef __LITTLE_ENDIAN__
  62431. __ai uint8x8_t vsqadd_u8(uint8x8_t __p0, uint8x8_t __p1) {
  62432. uint8x8_t __ret;
  62433. __ret = (uint8x8_t) __builtin_neon_vsqadd_v((int8x8_t)__p0, (int8x8_t)__p1, 16);
  62434. return __ret;
  62435. }
  62436. #else
  62437. __ai uint8x8_t vsqadd_u8(uint8x8_t __p0, uint8x8_t __p1) {
  62438. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  62439. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  62440. uint8x8_t __ret;
  62441. __ret = (uint8x8_t) __builtin_neon_vsqadd_v((int8x8_t)__rev0, (int8x8_t)__rev1, 16);
  62442. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  62443. return __ret;
  62444. }
  62445. #endif
  62446. #ifdef __LITTLE_ENDIAN__
  62447. __ai uint32x2_t vsqadd_u32(uint32x2_t __p0, uint32x2_t __p1) {
  62448. uint32x2_t __ret;
  62449. __ret = (uint32x2_t) __builtin_neon_vsqadd_v((int8x8_t)__p0, (int8x8_t)__p1, 18);
  62450. return __ret;
  62451. }
  62452. #else
  62453. __ai uint32x2_t vsqadd_u32(uint32x2_t __p0, uint32x2_t __p1) {
  62454. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  62455. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  62456. uint32x2_t __ret;
  62457. __ret = (uint32x2_t) __builtin_neon_vsqadd_v((int8x8_t)__rev0, (int8x8_t)__rev1, 18);
  62458. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  62459. return __ret;
  62460. }
  62461. #endif
  62462. #ifdef __LITTLE_ENDIAN__
  62463. __ai uint64x1_t vsqadd_u64(uint64x1_t __p0, uint64x1_t __p1) {
  62464. uint64x1_t __ret;
  62465. __ret = (uint64x1_t) __builtin_neon_vsqadd_v((int8x8_t)__p0, (int8x8_t)__p1, 19);
  62466. return __ret;
  62467. }
  62468. #else
  62469. __ai uint64x1_t vsqadd_u64(uint64x1_t __p0, uint64x1_t __p1) {
  62470. uint64x1_t __ret;
  62471. __ret = (uint64x1_t) __builtin_neon_vsqadd_v((int8x8_t)__p0, (int8x8_t)__p1, 19);
  62472. return __ret;
  62473. }
  62474. #endif
  62475. #ifdef __LITTLE_ENDIAN__
  62476. __ai uint16x4_t vsqadd_u16(uint16x4_t __p0, uint16x4_t __p1) {
  62477. uint16x4_t __ret;
  62478. __ret = (uint16x4_t) __builtin_neon_vsqadd_v((int8x8_t)__p0, (int8x8_t)__p1, 17);
  62479. return __ret;
  62480. }
  62481. #else
  62482. __ai uint16x4_t vsqadd_u16(uint16x4_t __p0, uint16x4_t __p1) {
  62483. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  62484. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  62485. uint16x4_t __ret;
  62486. __ret = (uint16x4_t) __builtin_neon_vsqadd_v((int8x8_t)__rev0, (int8x8_t)__rev1, 17);
  62487. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  62488. return __ret;
  62489. }
  62490. #endif
  62491. #ifdef __LITTLE_ENDIAN__
  62492. __ai float64x2_t vsqrtq_f64(float64x2_t __p0) {
  62493. float64x2_t __ret;
  62494. __ret = (float64x2_t) __builtin_neon_vsqrtq_v((int8x16_t)__p0, 42);
  62495. return __ret;
  62496. }
  62497. #else
  62498. __ai float64x2_t vsqrtq_f64(float64x2_t __p0) {
  62499. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  62500. float64x2_t __ret;
  62501. __ret = (float64x2_t) __builtin_neon_vsqrtq_v((int8x16_t)__rev0, 42);
  62502. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  62503. return __ret;
  62504. }
  62505. #endif
  62506. #ifdef __LITTLE_ENDIAN__
  62507. __ai float32x4_t vsqrtq_f32(float32x4_t __p0) {
  62508. float32x4_t __ret;
  62509. __ret = (float32x4_t) __builtin_neon_vsqrtq_v((int8x16_t)__p0, 41);
  62510. return __ret;
  62511. }
  62512. #else
  62513. __ai float32x4_t vsqrtq_f32(float32x4_t __p0) {
  62514. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  62515. float32x4_t __ret;
  62516. __ret = (float32x4_t) __builtin_neon_vsqrtq_v((int8x16_t)__rev0, 41);
  62517. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  62518. return __ret;
  62519. }
  62520. #endif
  62521. #ifdef __LITTLE_ENDIAN__
  62522. __ai float64x1_t vsqrt_f64(float64x1_t __p0) {
  62523. float64x1_t __ret;
  62524. __ret = (float64x1_t) __builtin_neon_vsqrt_v((int8x8_t)__p0, 10);
  62525. return __ret;
  62526. }
  62527. #else
  62528. __ai float64x1_t vsqrt_f64(float64x1_t __p0) {
  62529. float64x1_t __ret;
  62530. __ret = (float64x1_t) __builtin_neon_vsqrt_v((int8x8_t)__p0, 10);
  62531. return __ret;
  62532. }
  62533. #endif
  62534. #ifdef __LITTLE_ENDIAN__
  62535. __ai float32x2_t vsqrt_f32(float32x2_t __p0) {
  62536. float32x2_t __ret;
  62537. __ret = (float32x2_t) __builtin_neon_vsqrt_v((int8x8_t)__p0, 9);
  62538. return __ret;
  62539. }
  62540. #else
  62541. __ai float32x2_t vsqrt_f32(float32x2_t __p0) {
  62542. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  62543. float32x2_t __ret;
  62544. __ret = (float32x2_t) __builtin_neon_vsqrt_v((int8x8_t)__rev0, 9);
  62545. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  62546. return __ret;
  62547. }
  62548. #endif
  62549. #ifdef __LITTLE_ENDIAN__
  62550. #define vsrad_n_u64(__p0, __p1, __p2) __extension__ ({ \
  62551. uint64_t __s0 = __p0; \
  62552. uint64_t __s1 = __p1; \
  62553. uint64_t __ret; \
  62554. __ret = (uint64_t) __builtin_neon_vsrad_n_u64(__s0, __s1, __p2); \
  62555. __ret; \
  62556. })
  62557. #else
  62558. #define vsrad_n_u64(__p0, __p1, __p2) __extension__ ({ \
  62559. uint64_t __s0 = __p0; \
  62560. uint64_t __s1 = __p1; \
  62561. uint64_t __ret; \
  62562. __ret = (uint64_t) __builtin_neon_vsrad_n_u64(__s0, __s1, __p2); \
  62563. __ret; \
  62564. })
  62565. #endif
  62566. #ifdef __LITTLE_ENDIAN__
  62567. #define vsrad_n_s64(__p0, __p1, __p2) __extension__ ({ \
  62568. int64_t __s0 = __p0; \
  62569. int64_t __s1 = __p1; \
  62570. int64_t __ret; \
  62571. __ret = (int64_t) __builtin_neon_vsrad_n_s64(__s0, __s1, __p2); \
  62572. __ret; \
  62573. })
  62574. #else
  62575. #define vsrad_n_s64(__p0, __p1, __p2) __extension__ ({ \
  62576. int64_t __s0 = __p0; \
  62577. int64_t __s1 = __p1; \
  62578. int64_t __ret; \
  62579. __ret = (int64_t) __builtin_neon_vsrad_n_s64(__s0, __s1, __p2); \
  62580. __ret; \
  62581. })
  62582. #endif
  62583. #ifdef __LITTLE_ENDIAN__
  62584. #define vsrid_n_u64(__p0, __p1, __p2) __extension__ ({ \
  62585. uint64_t __s0 = __p0; \
  62586. uint64_t __s1 = __p1; \
  62587. uint64_t __ret; \
  62588. __ret = (uint64_t) __builtin_neon_vsrid_n_u64(__s0, __s1, __p2); \
  62589. __ret; \
  62590. })
  62591. #else
  62592. #define vsrid_n_u64(__p0, __p1, __p2) __extension__ ({ \
  62593. uint64_t __s0 = __p0; \
  62594. uint64_t __s1 = __p1; \
  62595. uint64_t __ret; \
  62596. __ret = (uint64_t) __builtin_neon_vsrid_n_u64(__s0, __s1, __p2); \
  62597. __ret; \
  62598. })
  62599. #endif
  62600. #ifdef __LITTLE_ENDIAN__
  62601. #define vsrid_n_s64(__p0, __p1, __p2) __extension__ ({ \
  62602. int64_t __s0 = __p0; \
  62603. int64_t __s1 = __p1; \
  62604. int64_t __ret; \
  62605. __ret = (int64_t) __builtin_neon_vsrid_n_s64(__s0, __s1, __p2); \
  62606. __ret; \
  62607. })
  62608. #else
  62609. #define vsrid_n_s64(__p0, __p1, __p2) __extension__ ({ \
  62610. int64_t __s0 = __p0; \
  62611. int64_t __s1 = __p1; \
  62612. int64_t __ret; \
  62613. __ret = (int64_t) __builtin_neon_vsrid_n_s64(__s0, __s1, __p2); \
  62614. __ret; \
  62615. })
  62616. #endif
  62617. #ifdef __LITTLE_ENDIAN__
  62618. #define vsri_n_p64(__p0, __p1, __p2) __extension__ ({ \
  62619. poly64x1_t __s0 = __p0; \
  62620. poly64x1_t __s1 = __p1; \
  62621. poly64x1_t __ret; \
  62622. __ret = (poly64x1_t) __builtin_neon_vsri_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 6); \
  62623. __ret; \
  62624. })
  62625. #else
  62626. #define vsri_n_p64(__p0, __p1, __p2) __extension__ ({ \
  62627. poly64x1_t __s0 = __p0; \
  62628. poly64x1_t __s1 = __p1; \
  62629. poly64x1_t __ret; \
  62630. __ret = (poly64x1_t) __builtin_neon_vsri_n_v((int8x8_t)__s0, (int8x8_t)__s1, __p2, 6); \
  62631. __ret; \
  62632. })
  62633. #endif
  62634. #ifdef __LITTLE_ENDIAN__
  62635. #define vsriq_n_p64(__p0, __p1, __p2) __extension__ ({ \
  62636. poly64x2_t __s0 = __p0; \
  62637. poly64x2_t __s1 = __p1; \
  62638. poly64x2_t __ret; \
  62639. __ret = (poly64x2_t) __builtin_neon_vsriq_n_v((int8x16_t)__s0, (int8x16_t)__s1, __p2, 38); \
  62640. __ret; \
  62641. })
  62642. #else
  62643. #define vsriq_n_p64(__p0, __p1, __p2) __extension__ ({ \
  62644. poly64x2_t __s0 = __p0; \
  62645. poly64x2_t __s1 = __p1; \
  62646. poly64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  62647. poly64x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  62648. poly64x2_t __ret; \
  62649. __ret = (poly64x2_t) __builtin_neon_vsriq_n_v((int8x16_t)__rev0, (int8x16_t)__rev1, __p2, 38); \
  62650. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  62651. __ret; \
  62652. })
  62653. #endif
  62654. #ifdef __LITTLE_ENDIAN__
  62655. #define vst1_p64(__p0, __p1) __extension__ ({ \
  62656. poly64x1_t __s1 = __p1; \
  62657. __builtin_neon_vst1_v(__p0, (int8x8_t)__s1, 6); \
  62658. })
  62659. #else
  62660. #define vst1_p64(__p0, __p1) __extension__ ({ \
  62661. poly64x1_t __s1 = __p1; \
  62662. __builtin_neon_vst1_v(__p0, (int8x8_t)__s1, 6); \
  62663. })
  62664. #endif
  62665. #ifdef __LITTLE_ENDIAN__
  62666. #define vst1q_p64(__p0, __p1) __extension__ ({ \
  62667. poly64x2_t __s1 = __p1; \
  62668. __builtin_neon_vst1q_v(__p0, (int8x16_t)__s1, 38); \
  62669. })
  62670. #else
  62671. #define vst1q_p64(__p0, __p1) __extension__ ({ \
  62672. poly64x2_t __s1 = __p1; \
  62673. poly64x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  62674. __builtin_neon_vst1q_v(__p0, (int8x16_t)__rev1, 38); \
  62675. })
  62676. #endif
  62677. #ifdef __LITTLE_ENDIAN__
  62678. #define vst1q_f64(__p0, __p1) __extension__ ({ \
  62679. float64x2_t __s1 = __p1; \
  62680. __builtin_neon_vst1q_v(__p0, (int8x16_t)__s1, 42); \
  62681. })
  62682. #else
  62683. #define vst1q_f64(__p0, __p1) __extension__ ({ \
  62684. float64x2_t __s1 = __p1; \
  62685. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  62686. __builtin_neon_vst1q_v(__p0, (int8x16_t)__rev1, 42); \
  62687. })
  62688. #endif
  62689. #ifdef __LITTLE_ENDIAN__
  62690. #define vst1_f64(__p0, __p1) __extension__ ({ \
  62691. float64x1_t __s1 = __p1; \
  62692. __builtin_neon_vst1_v(__p0, (int8x8_t)__s1, 10); \
  62693. })
  62694. #else
  62695. #define vst1_f64(__p0, __p1) __extension__ ({ \
  62696. float64x1_t __s1 = __p1; \
  62697. __builtin_neon_vst1_v(__p0, (int8x8_t)__s1, 10); \
  62698. })
  62699. #endif
  62700. #ifdef __LITTLE_ENDIAN__
  62701. #define vst1_lane_p64(__p0, __p1, __p2) __extension__ ({ \
  62702. poly64x1_t __s1 = __p1; \
  62703. __builtin_neon_vst1_lane_v(__p0, (int8x8_t)__s1, __p2, 6); \
  62704. })
  62705. #else
  62706. #define vst1_lane_p64(__p0, __p1, __p2) __extension__ ({ \
  62707. poly64x1_t __s1 = __p1; \
  62708. __builtin_neon_vst1_lane_v(__p0, (int8x8_t)__s1, __p2, 6); \
  62709. })
  62710. #endif
  62711. #ifdef __LITTLE_ENDIAN__
  62712. #define vst1q_lane_p64(__p0, __p1, __p2) __extension__ ({ \
  62713. poly64x2_t __s1 = __p1; \
  62714. __builtin_neon_vst1q_lane_v(__p0, (int8x16_t)__s1, __p2, 38); \
  62715. })
  62716. #else
  62717. #define vst1q_lane_p64(__p0, __p1, __p2) __extension__ ({ \
  62718. poly64x2_t __s1 = __p1; \
  62719. poly64x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  62720. __builtin_neon_vst1q_lane_v(__p0, (int8x16_t)__rev1, __p2, 38); \
  62721. })
  62722. #endif
  62723. #ifdef __LITTLE_ENDIAN__
  62724. #define vst1q_lane_f64(__p0, __p1, __p2) __extension__ ({ \
  62725. float64x2_t __s1 = __p1; \
  62726. __builtin_neon_vst1q_lane_v(__p0, (int8x16_t)__s1, __p2, 42); \
  62727. })
  62728. #else
  62729. #define vst1q_lane_f64(__p0, __p1, __p2) __extension__ ({ \
  62730. float64x2_t __s1 = __p1; \
  62731. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  62732. __builtin_neon_vst1q_lane_v(__p0, (int8x16_t)__rev1, __p2, 42); \
  62733. })
  62734. #endif
  62735. #ifdef __LITTLE_ENDIAN__
  62736. #define vst1_lane_f64(__p0, __p1, __p2) __extension__ ({ \
  62737. float64x1_t __s1 = __p1; \
  62738. __builtin_neon_vst1_lane_v(__p0, (int8x8_t)__s1, __p2, 10); \
  62739. })
  62740. #else
  62741. #define vst1_lane_f64(__p0, __p1, __p2) __extension__ ({ \
  62742. float64x1_t __s1 = __p1; \
  62743. __builtin_neon_vst1_lane_v(__p0, (int8x8_t)__s1, __p2, 10); \
  62744. })
  62745. #endif
  62746. #ifdef __LITTLE_ENDIAN__
  62747. #define vst1_p64_x2(__p0, __p1) __extension__ ({ \
  62748. poly64x1x2_t __s1 = __p1; \
  62749. __builtin_neon_vst1_x2_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], 6); \
  62750. })
  62751. #else
  62752. #define vst1_p64_x2(__p0, __p1) __extension__ ({ \
  62753. poly64x1x2_t __s1 = __p1; \
  62754. __builtin_neon_vst1_x2_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], 6); \
  62755. })
  62756. #endif
  62757. #ifdef __LITTLE_ENDIAN__
  62758. #define vst1q_p64_x2(__p0, __p1) __extension__ ({ \
  62759. poly64x2x2_t __s1 = __p1; \
  62760. __builtin_neon_vst1q_x2_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], 38); \
  62761. })
  62762. #else
  62763. #define vst1q_p64_x2(__p0, __p1) __extension__ ({ \
  62764. poly64x2x2_t __s1 = __p1; \
  62765. poly64x2x2_t __rev1; \
  62766. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  62767. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  62768. __builtin_neon_vst1q_x2_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], 38); \
  62769. })
  62770. #endif
  62771. #ifdef __LITTLE_ENDIAN__
  62772. #define vst1q_f64_x2(__p0, __p1) __extension__ ({ \
  62773. float64x2x2_t __s1 = __p1; \
  62774. __builtin_neon_vst1q_x2_v(__p0, __s1.val[0], __s1.val[1], 42); \
  62775. })
  62776. #else
  62777. #define vst1q_f64_x2(__p0, __p1) __extension__ ({ \
  62778. float64x2x2_t __s1 = __p1; \
  62779. float64x2x2_t __rev1; \
  62780. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  62781. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  62782. __builtin_neon_vst1q_x2_v(__p0, __rev1.val[0], __rev1.val[1], 42); \
  62783. })
  62784. #endif
  62785. #ifdef __LITTLE_ENDIAN__
  62786. #define vst1_f64_x2(__p0, __p1) __extension__ ({ \
  62787. float64x1x2_t __s1 = __p1; \
  62788. __builtin_neon_vst1_x2_v(__p0, __s1.val[0], __s1.val[1], 10); \
  62789. })
  62790. #else
  62791. #define vst1_f64_x2(__p0, __p1) __extension__ ({ \
  62792. float64x1x2_t __s1 = __p1; \
  62793. __builtin_neon_vst1_x2_v(__p0, __s1.val[0], __s1.val[1], 10); \
  62794. })
  62795. #endif
  62796. #ifdef __LITTLE_ENDIAN__
  62797. #define vst1_p64_x3(__p0, __p1) __extension__ ({ \
  62798. poly64x1x3_t __s1 = __p1; \
  62799. __builtin_neon_vst1_x3_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], 6); \
  62800. })
  62801. #else
  62802. #define vst1_p64_x3(__p0, __p1) __extension__ ({ \
  62803. poly64x1x3_t __s1 = __p1; \
  62804. __builtin_neon_vst1_x3_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], 6); \
  62805. })
  62806. #endif
  62807. #ifdef __LITTLE_ENDIAN__
  62808. #define vst1q_p64_x3(__p0, __p1) __extension__ ({ \
  62809. poly64x2x3_t __s1 = __p1; \
  62810. __builtin_neon_vst1q_x3_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], 38); \
  62811. })
  62812. #else
  62813. #define vst1q_p64_x3(__p0, __p1) __extension__ ({ \
  62814. poly64x2x3_t __s1 = __p1; \
  62815. poly64x2x3_t __rev1; \
  62816. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  62817. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  62818. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  62819. __builtin_neon_vst1q_x3_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], 38); \
  62820. })
  62821. #endif
  62822. #ifdef __LITTLE_ENDIAN__
  62823. #define vst1q_f64_x3(__p0, __p1) __extension__ ({ \
  62824. float64x2x3_t __s1 = __p1; \
  62825. __builtin_neon_vst1q_x3_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], 42); \
  62826. })
  62827. #else
  62828. #define vst1q_f64_x3(__p0, __p1) __extension__ ({ \
  62829. float64x2x3_t __s1 = __p1; \
  62830. float64x2x3_t __rev1; \
  62831. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  62832. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  62833. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  62834. __builtin_neon_vst1q_x3_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], 42); \
  62835. })
  62836. #endif
  62837. #ifdef __LITTLE_ENDIAN__
  62838. #define vst1_f64_x3(__p0, __p1) __extension__ ({ \
  62839. float64x1x3_t __s1 = __p1; \
  62840. __builtin_neon_vst1_x3_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], 10); \
  62841. })
  62842. #else
  62843. #define vst1_f64_x3(__p0, __p1) __extension__ ({ \
  62844. float64x1x3_t __s1 = __p1; \
  62845. __builtin_neon_vst1_x3_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], 10); \
  62846. })
  62847. #endif
  62848. #ifdef __LITTLE_ENDIAN__
  62849. #define vst1_p64_x4(__p0, __p1) __extension__ ({ \
  62850. poly64x1x4_t __s1 = __p1; \
  62851. __builtin_neon_vst1_x4_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], (int8x8_t)__s1.val[3], 6); \
  62852. })
  62853. #else
  62854. #define vst1_p64_x4(__p0, __p1) __extension__ ({ \
  62855. poly64x1x4_t __s1 = __p1; \
  62856. __builtin_neon_vst1_x4_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], (int8x8_t)__s1.val[3], 6); \
  62857. })
  62858. #endif
  62859. #ifdef __LITTLE_ENDIAN__
  62860. #define vst1q_p64_x4(__p0, __p1) __extension__ ({ \
  62861. poly64x2x4_t __s1 = __p1; \
  62862. __builtin_neon_vst1q_x4_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], (int8x16_t)__s1.val[3], 38); \
  62863. })
  62864. #else
  62865. #define vst1q_p64_x4(__p0, __p1) __extension__ ({ \
  62866. poly64x2x4_t __s1 = __p1; \
  62867. poly64x2x4_t __rev1; \
  62868. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  62869. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  62870. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  62871. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 1, 0); \
  62872. __builtin_neon_vst1q_x4_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], (int8x16_t)__rev1.val[3], 38); \
  62873. })
  62874. #endif
  62875. #ifdef __LITTLE_ENDIAN__
  62876. #define vst1q_f64_x4(__p0, __p1) __extension__ ({ \
  62877. float64x2x4_t __s1 = __p1; \
  62878. __builtin_neon_vst1q_x4_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], 42); \
  62879. })
  62880. #else
  62881. #define vst1q_f64_x4(__p0, __p1) __extension__ ({ \
  62882. float64x2x4_t __s1 = __p1; \
  62883. float64x2x4_t __rev1; \
  62884. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  62885. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  62886. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  62887. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 1, 0); \
  62888. __builtin_neon_vst1q_x4_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __rev1.val[3], 42); \
  62889. })
  62890. #endif
  62891. #ifdef __LITTLE_ENDIAN__
  62892. #define vst1_f64_x4(__p0, __p1) __extension__ ({ \
  62893. float64x1x4_t __s1 = __p1; \
  62894. __builtin_neon_vst1_x4_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], 10); \
  62895. })
  62896. #else
  62897. #define vst1_f64_x4(__p0, __p1) __extension__ ({ \
  62898. float64x1x4_t __s1 = __p1; \
  62899. __builtin_neon_vst1_x4_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], 10); \
  62900. })
  62901. #endif
  62902. #ifdef __LITTLE_ENDIAN__
  62903. #define vst2_p64(__p0, __p1) __extension__ ({ \
  62904. poly64x1x2_t __s1 = __p1; \
  62905. __builtin_neon_vst2_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], 6); \
  62906. })
  62907. #else
  62908. #define vst2_p64(__p0, __p1) __extension__ ({ \
  62909. poly64x1x2_t __s1 = __p1; \
  62910. __builtin_neon_vst2_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], 6); \
  62911. })
  62912. #endif
  62913. #ifdef __LITTLE_ENDIAN__
  62914. #define vst2q_p64(__p0, __p1) __extension__ ({ \
  62915. poly64x2x2_t __s1 = __p1; \
  62916. __builtin_neon_vst2q_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], 38); \
  62917. })
  62918. #else
  62919. #define vst2q_p64(__p0, __p1) __extension__ ({ \
  62920. poly64x2x2_t __s1 = __p1; \
  62921. poly64x2x2_t __rev1; \
  62922. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  62923. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  62924. __builtin_neon_vst2q_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], 38); \
  62925. })
  62926. #endif
  62927. #ifdef __LITTLE_ENDIAN__
  62928. #define vst2q_u64(__p0, __p1) __extension__ ({ \
  62929. uint64x2x2_t __s1 = __p1; \
  62930. __builtin_neon_vst2q_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], 51); \
  62931. })
  62932. #else
  62933. #define vst2q_u64(__p0, __p1) __extension__ ({ \
  62934. uint64x2x2_t __s1 = __p1; \
  62935. uint64x2x2_t __rev1; \
  62936. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  62937. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  62938. __builtin_neon_vst2q_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], 51); \
  62939. })
  62940. #endif
  62941. #ifdef __LITTLE_ENDIAN__
  62942. #define vst2q_f64(__p0, __p1) __extension__ ({ \
  62943. float64x2x2_t __s1 = __p1; \
  62944. __builtin_neon_vst2q_v(__p0, __s1.val[0], __s1.val[1], 42); \
  62945. })
  62946. #else
  62947. #define vst2q_f64(__p0, __p1) __extension__ ({ \
  62948. float64x2x2_t __s1 = __p1; \
  62949. float64x2x2_t __rev1; \
  62950. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  62951. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  62952. __builtin_neon_vst2q_v(__p0, __rev1.val[0], __rev1.val[1], 42); \
  62953. })
  62954. #endif
  62955. #ifdef __LITTLE_ENDIAN__
  62956. #define vst2q_s64(__p0, __p1) __extension__ ({ \
  62957. int64x2x2_t __s1 = __p1; \
  62958. __builtin_neon_vst2q_v(__p0, __s1.val[0], __s1.val[1], 35); \
  62959. })
  62960. #else
  62961. #define vst2q_s64(__p0, __p1) __extension__ ({ \
  62962. int64x2x2_t __s1 = __p1; \
  62963. int64x2x2_t __rev1; \
  62964. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  62965. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  62966. __builtin_neon_vst2q_v(__p0, __rev1.val[0], __rev1.val[1], 35); \
  62967. })
  62968. #endif
  62969. #ifdef __LITTLE_ENDIAN__
  62970. #define vst2_f64(__p0, __p1) __extension__ ({ \
  62971. float64x1x2_t __s1 = __p1; \
  62972. __builtin_neon_vst2_v(__p0, __s1.val[0], __s1.val[1], 10); \
  62973. })
  62974. #else
  62975. #define vst2_f64(__p0, __p1) __extension__ ({ \
  62976. float64x1x2_t __s1 = __p1; \
  62977. __builtin_neon_vst2_v(__p0, __s1.val[0], __s1.val[1], 10); \
  62978. })
  62979. #endif
  62980. #ifdef __LITTLE_ENDIAN__
  62981. #define vst2_lane_p64(__p0, __p1, __p2) __extension__ ({ \
  62982. poly64x1x2_t __s1 = __p1; \
  62983. __builtin_neon_vst2_lane_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], __p2, 6); \
  62984. })
  62985. #else
  62986. #define vst2_lane_p64(__p0, __p1, __p2) __extension__ ({ \
  62987. poly64x1x2_t __s1 = __p1; \
  62988. __builtin_neon_vst2_lane_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], __p2, 6); \
  62989. })
  62990. #endif
  62991. #ifdef __LITTLE_ENDIAN__
  62992. #define vst2q_lane_p8(__p0, __p1, __p2) __extension__ ({ \
  62993. poly8x16x2_t __s1 = __p1; \
  62994. __builtin_neon_vst2q_lane_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], __p2, 36); \
  62995. })
  62996. #else
  62997. #define vst2q_lane_p8(__p0, __p1, __p2) __extension__ ({ \
  62998. poly8x16x2_t __s1 = __p1; \
  62999. poly8x16x2_t __rev1; \
  63000. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  63001. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  63002. __builtin_neon_vst2q_lane_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], __p2, 36); \
  63003. })
  63004. #endif
  63005. #ifdef __LITTLE_ENDIAN__
  63006. #define vst2q_lane_p64(__p0, __p1, __p2) __extension__ ({ \
  63007. poly64x2x2_t __s1 = __p1; \
  63008. __builtin_neon_vst2q_lane_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], __p2, 38); \
  63009. })
  63010. #else
  63011. #define vst2q_lane_p64(__p0, __p1, __p2) __extension__ ({ \
  63012. poly64x2x2_t __s1 = __p1; \
  63013. poly64x2x2_t __rev1; \
  63014. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  63015. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  63016. __builtin_neon_vst2q_lane_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], __p2, 38); \
  63017. })
  63018. #endif
  63019. #ifdef __LITTLE_ENDIAN__
  63020. #define vst2q_lane_u8(__p0, __p1, __p2) __extension__ ({ \
  63021. uint8x16x2_t __s1 = __p1; \
  63022. __builtin_neon_vst2q_lane_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], __p2, 48); \
  63023. })
  63024. #else
  63025. #define vst2q_lane_u8(__p0, __p1, __p2) __extension__ ({ \
  63026. uint8x16x2_t __s1 = __p1; \
  63027. uint8x16x2_t __rev1; \
  63028. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  63029. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  63030. __builtin_neon_vst2q_lane_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], __p2, 48); \
  63031. })
  63032. #endif
  63033. #ifdef __LITTLE_ENDIAN__
  63034. #define vst2q_lane_u64(__p0, __p1, __p2) __extension__ ({ \
  63035. uint64x2x2_t __s1 = __p1; \
  63036. __builtin_neon_vst2q_lane_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], __p2, 51); \
  63037. })
  63038. #else
  63039. #define vst2q_lane_u64(__p0, __p1, __p2) __extension__ ({ \
  63040. uint64x2x2_t __s1 = __p1; \
  63041. uint64x2x2_t __rev1; \
  63042. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  63043. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  63044. __builtin_neon_vst2q_lane_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], __p2, 51); \
  63045. })
  63046. #endif
  63047. #ifdef __LITTLE_ENDIAN__
  63048. #define vst2q_lane_s8(__p0, __p1, __p2) __extension__ ({ \
  63049. int8x16x2_t __s1 = __p1; \
  63050. __builtin_neon_vst2q_lane_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], __p2, 32); \
  63051. })
  63052. #else
  63053. #define vst2q_lane_s8(__p0, __p1, __p2) __extension__ ({ \
  63054. int8x16x2_t __s1 = __p1; \
  63055. int8x16x2_t __rev1; \
  63056. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  63057. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  63058. __builtin_neon_vst2q_lane_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], __p2, 32); \
  63059. })
  63060. #endif
  63061. #ifdef __LITTLE_ENDIAN__
  63062. #define vst2q_lane_f64(__p0, __p1, __p2) __extension__ ({ \
  63063. float64x2x2_t __s1 = __p1; \
  63064. __builtin_neon_vst2q_lane_v(__p0, __s1.val[0], __s1.val[1], __p2, 42); \
  63065. })
  63066. #else
  63067. #define vst2q_lane_f64(__p0, __p1, __p2) __extension__ ({ \
  63068. float64x2x2_t __s1 = __p1; \
  63069. float64x2x2_t __rev1; \
  63070. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  63071. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  63072. __builtin_neon_vst2q_lane_v(__p0, __rev1.val[0], __rev1.val[1], __p2, 42); \
  63073. })
  63074. #endif
  63075. #ifdef __LITTLE_ENDIAN__
  63076. #define vst2q_lane_s64(__p0, __p1, __p2) __extension__ ({ \
  63077. int64x2x2_t __s1 = __p1; \
  63078. __builtin_neon_vst2q_lane_v(__p0, __s1.val[0], __s1.val[1], __p2, 35); \
  63079. })
  63080. #else
  63081. #define vst2q_lane_s64(__p0, __p1, __p2) __extension__ ({ \
  63082. int64x2x2_t __s1 = __p1; \
  63083. int64x2x2_t __rev1; \
  63084. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  63085. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  63086. __builtin_neon_vst2q_lane_v(__p0, __rev1.val[0], __rev1.val[1], __p2, 35); \
  63087. })
  63088. #endif
  63089. #ifdef __LITTLE_ENDIAN__
  63090. #define vst2_lane_u64(__p0, __p1, __p2) __extension__ ({ \
  63091. uint64x1x2_t __s1 = __p1; \
  63092. __builtin_neon_vst2_lane_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], __p2, 19); \
  63093. })
  63094. #else
  63095. #define vst2_lane_u64(__p0, __p1, __p2) __extension__ ({ \
  63096. uint64x1x2_t __s1 = __p1; \
  63097. __builtin_neon_vst2_lane_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], __p2, 19); \
  63098. })
  63099. #endif
  63100. #ifdef __LITTLE_ENDIAN__
  63101. #define vst2_lane_f64(__p0, __p1, __p2) __extension__ ({ \
  63102. float64x1x2_t __s1 = __p1; \
  63103. __builtin_neon_vst2_lane_v(__p0, __s1.val[0], __s1.val[1], __p2, 10); \
  63104. })
  63105. #else
  63106. #define vst2_lane_f64(__p0, __p1, __p2) __extension__ ({ \
  63107. float64x1x2_t __s1 = __p1; \
  63108. __builtin_neon_vst2_lane_v(__p0, __s1.val[0], __s1.val[1], __p2, 10); \
  63109. })
  63110. #endif
  63111. #ifdef __LITTLE_ENDIAN__
  63112. #define vst2_lane_s64(__p0, __p1, __p2) __extension__ ({ \
  63113. int64x1x2_t __s1 = __p1; \
  63114. __builtin_neon_vst2_lane_v(__p0, __s1.val[0], __s1.val[1], __p2, 3); \
  63115. })
  63116. #else
  63117. #define vst2_lane_s64(__p0, __p1, __p2) __extension__ ({ \
  63118. int64x1x2_t __s1 = __p1; \
  63119. __builtin_neon_vst2_lane_v(__p0, __s1.val[0], __s1.val[1], __p2, 3); \
  63120. })
  63121. #endif
  63122. #ifdef __LITTLE_ENDIAN__
  63123. #define vst3_p64(__p0, __p1) __extension__ ({ \
  63124. poly64x1x3_t __s1 = __p1; \
  63125. __builtin_neon_vst3_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], 6); \
  63126. })
  63127. #else
  63128. #define vst3_p64(__p0, __p1) __extension__ ({ \
  63129. poly64x1x3_t __s1 = __p1; \
  63130. __builtin_neon_vst3_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], 6); \
  63131. })
  63132. #endif
  63133. #ifdef __LITTLE_ENDIAN__
  63134. #define vst3q_p64(__p0, __p1) __extension__ ({ \
  63135. poly64x2x3_t __s1 = __p1; \
  63136. __builtin_neon_vst3q_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], 38); \
  63137. })
  63138. #else
  63139. #define vst3q_p64(__p0, __p1) __extension__ ({ \
  63140. poly64x2x3_t __s1 = __p1; \
  63141. poly64x2x3_t __rev1; \
  63142. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  63143. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  63144. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  63145. __builtin_neon_vst3q_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], 38); \
  63146. })
  63147. #endif
  63148. #ifdef __LITTLE_ENDIAN__
  63149. #define vst3q_u64(__p0, __p1) __extension__ ({ \
  63150. uint64x2x3_t __s1 = __p1; \
  63151. __builtin_neon_vst3q_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], 51); \
  63152. })
  63153. #else
  63154. #define vst3q_u64(__p0, __p1) __extension__ ({ \
  63155. uint64x2x3_t __s1 = __p1; \
  63156. uint64x2x3_t __rev1; \
  63157. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  63158. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  63159. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  63160. __builtin_neon_vst3q_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], 51); \
  63161. })
  63162. #endif
  63163. #ifdef __LITTLE_ENDIAN__
  63164. #define vst3q_f64(__p0, __p1) __extension__ ({ \
  63165. float64x2x3_t __s1 = __p1; \
  63166. __builtin_neon_vst3q_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], 42); \
  63167. })
  63168. #else
  63169. #define vst3q_f64(__p0, __p1) __extension__ ({ \
  63170. float64x2x3_t __s1 = __p1; \
  63171. float64x2x3_t __rev1; \
  63172. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  63173. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  63174. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  63175. __builtin_neon_vst3q_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], 42); \
  63176. })
  63177. #endif
  63178. #ifdef __LITTLE_ENDIAN__
  63179. #define vst3q_s64(__p0, __p1) __extension__ ({ \
  63180. int64x2x3_t __s1 = __p1; \
  63181. __builtin_neon_vst3q_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], 35); \
  63182. })
  63183. #else
  63184. #define vst3q_s64(__p0, __p1) __extension__ ({ \
  63185. int64x2x3_t __s1 = __p1; \
  63186. int64x2x3_t __rev1; \
  63187. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  63188. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  63189. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  63190. __builtin_neon_vst3q_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], 35); \
  63191. })
  63192. #endif
  63193. #ifdef __LITTLE_ENDIAN__
  63194. #define vst3_f64(__p0, __p1) __extension__ ({ \
  63195. float64x1x3_t __s1 = __p1; \
  63196. __builtin_neon_vst3_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], 10); \
  63197. })
  63198. #else
  63199. #define vst3_f64(__p0, __p1) __extension__ ({ \
  63200. float64x1x3_t __s1 = __p1; \
  63201. __builtin_neon_vst3_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], 10); \
  63202. })
  63203. #endif
  63204. #ifdef __LITTLE_ENDIAN__
  63205. #define vst3_lane_p64(__p0, __p1, __p2) __extension__ ({ \
  63206. poly64x1x3_t __s1 = __p1; \
  63207. __builtin_neon_vst3_lane_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], __p2, 6); \
  63208. })
  63209. #else
  63210. #define vst3_lane_p64(__p0, __p1, __p2) __extension__ ({ \
  63211. poly64x1x3_t __s1 = __p1; \
  63212. __builtin_neon_vst3_lane_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], __p2, 6); \
  63213. })
  63214. #endif
  63215. #ifdef __LITTLE_ENDIAN__
  63216. #define vst3q_lane_p8(__p0, __p1, __p2) __extension__ ({ \
  63217. poly8x16x3_t __s1 = __p1; \
  63218. __builtin_neon_vst3q_lane_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], __p2, 36); \
  63219. })
  63220. #else
  63221. #define vst3q_lane_p8(__p0, __p1, __p2) __extension__ ({ \
  63222. poly8x16x3_t __s1 = __p1; \
  63223. poly8x16x3_t __rev1; \
  63224. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  63225. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  63226. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  63227. __builtin_neon_vst3q_lane_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], __p2, 36); \
  63228. })
  63229. #endif
  63230. #ifdef __LITTLE_ENDIAN__
  63231. #define vst3q_lane_p64(__p0, __p1, __p2) __extension__ ({ \
  63232. poly64x2x3_t __s1 = __p1; \
  63233. __builtin_neon_vst3q_lane_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], __p2, 38); \
  63234. })
  63235. #else
  63236. #define vst3q_lane_p64(__p0, __p1, __p2) __extension__ ({ \
  63237. poly64x2x3_t __s1 = __p1; \
  63238. poly64x2x3_t __rev1; \
  63239. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  63240. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  63241. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  63242. __builtin_neon_vst3q_lane_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], __p2, 38); \
  63243. })
  63244. #endif
  63245. #ifdef __LITTLE_ENDIAN__
  63246. #define vst3q_lane_u8(__p0, __p1, __p2) __extension__ ({ \
  63247. uint8x16x3_t __s1 = __p1; \
  63248. __builtin_neon_vst3q_lane_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], __p2, 48); \
  63249. })
  63250. #else
  63251. #define vst3q_lane_u8(__p0, __p1, __p2) __extension__ ({ \
  63252. uint8x16x3_t __s1 = __p1; \
  63253. uint8x16x3_t __rev1; \
  63254. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  63255. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  63256. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  63257. __builtin_neon_vst3q_lane_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], __p2, 48); \
  63258. })
  63259. #endif
  63260. #ifdef __LITTLE_ENDIAN__
  63261. #define vst3q_lane_u64(__p0, __p1, __p2) __extension__ ({ \
  63262. uint64x2x3_t __s1 = __p1; \
  63263. __builtin_neon_vst3q_lane_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], __p2, 51); \
  63264. })
  63265. #else
  63266. #define vst3q_lane_u64(__p0, __p1, __p2) __extension__ ({ \
  63267. uint64x2x3_t __s1 = __p1; \
  63268. uint64x2x3_t __rev1; \
  63269. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  63270. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  63271. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  63272. __builtin_neon_vst3q_lane_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], __p2, 51); \
  63273. })
  63274. #endif
  63275. #ifdef __LITTLE_ENDIAN__
  63276. #define vst3q_lane_s8(__p0, __p1, __p2) __extension__ ({ \
  63277. int8x16x3_t __s1 = __p1; \
  63278. __builtin_neon_vst3q_lane_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], __p2, 32); \
  63279. })
  63280. #else
  63281. #define vst3q_lane_s8(__p0, __p1, __p2) __extension__ ({ \
  63282. int8x16x3_t __s1 = __p1; \
  63283. int8x16x3_t __rev1; \
  63284. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  63285. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  63286. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  63287. __builtin_neon_vst3q_lane_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], __p2, 32); \
  63288. })
  63289. #endif
  63290. #ifdef __LITTLE_ENDIAN__
  63291. #define vst3q_lane_f64(__p0, __p1, __p2) __extension__ ({ \
  63292. float64x2x3_t __s1 = __p1; \
  63293. __builtin_neon_vst3q_lane_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __p2, 42); \
  63294. })
  63295. #else
  63296. #define vst3q_lane_f64(__p0, __p1, __p2) __extension__ ({ \
  63297. float64x2x3_t __s1 = __p1; \
  63298. float64x2x3_t __rev1; \
  63299. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  63300. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  63301. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  63302. __builtin_neon_vst3q_lane_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __p2, 42); \
  63303. })
  63304. #endif
  63305. #ifdef __LITTLE_ENDIAN__
  63306. #define vst3q_lane_s64(__p0, __p1, __p2) __extension__ ({ \
  63307. int64x2x3_t __s1 = __p1; \
  63308. __builtin_neon_vst3q_lane_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __p2, 35); \
  63309. })
  63310. #else
  63311. #define vst3q_lane_s64(__p0, __p1, __p2) __extension__ ({ \
  63312. int64x2x3_t __s1 = __p1; \
  63313. int64x2x3_t __rev1; \
  63314. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  63315. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  63316. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  63317. __builtin_neon_vst3q_lane_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __p2, 35); \
  63318. })
  63319. #endif
  63320. #ifdef __LITTLE_ENDIAN__
  63321. #define vst3_lane_u64(__p0, __p1, __p2) __extension__ ({ \
  63322. uint64x1x3_t __s1 = __p1; \
  63323. __builtin_neon_vst3_lane_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], __p2, 19); \
  63324. })
  63325. #else
  63326. #define vst3_lane_u64(__p0, __p1, __p2) __extension__ ({ \
  63327. uint64x1x3_t __s1 = __p1; \
  63328. __builtin_neon_vst3_lane_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], __p2, 19); \
  63329. })
  63330. #endif
  63331. #ifdef __LITTLE_ENDIAN__
  63332. #define vst3_lane_f64(__p0, __p1, __p2) __extension__ ({ \
  63333. float64x1x3_t __s1 = __p1; \
  63334. __builtin_neon_vst3_lane_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __p2, 10); \
  63335. })
  63336. #else
  63337. #define vst3_lane_f64(__p0, __p1, __p2) __extension__ ({ \
  63338. float64x1x3_t __s1 = __p1; \
  63339. __builtin_neon_vst3_lane_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __p2, 10); \
  63340. })
  63341. #endif
  63342. #ifdef __LITTLE_ENDIAN__
  63343. #define vst3_lane_s64(__p0, __p1, __p2) __extension__ ({ \
  63344. int64x1x3_t __s1 = __p1; \
  63345. __builtin_neon_vst3_lane_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __p2, 3); \
  63346. })
  63347. #else
  63348. #define vst3_lane_s64(__p0, __p1, __p2) __extension__ ({ \
  63349. int64x1x3_t __s1 = __p1; \
  63350. __builtin_neon_vst3_lane_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __p2, 3); \
  63351. })
  63352. #endif
  63353. #ifdef __LITTLE_ENDIAN__
  63354. #define vst4_p64(__p0, __p1) __extension__ ({ \
  63355. poly64x1x4_t __s1 = __p1; \
  63356. __builtin_neon_vst4_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], (int8x8_t)__s1.val[3], 6); \
  63357. })
  63358. #else
  63359. #define vst4_p64(__p0, __p1) __extension__ ({ \
  63360. poly64x1x4_t __s1 = __p1; \
  63361. __builtin_neon_vst4_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], (int8x8_t)__s1.val[3], 6); \
  63362. })
  63363. #endif
  63364. #ifdef __LITTLE_ENDIAN__
  63365. #define vst4q_p64(__p0, __p1) __extension__ ({ \
  63366. poly64x2x4_t __s1 = __p1; \
  63367. __builtin_neon_vst4q_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], (int8x16_t)__s1.val[3], 38); \
  63368. })
  63369. #else
  63370. #define vst4q_p64(__p0, __p1) __extension__ ({ \
  63371. poly64x2x4_t __s1 = __p1; \
  63372. poly64x2x4_t __rev1; \
  63373. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  63374. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  63375. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  63376. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 1, 0); \
  63377. __builtin_neon_vst4q_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], (int8x16_t)__rev1.val[3], 38); \
  63378. })
  63379. #endif
  63380. #ifdef __LITTLE_ENDIAN__
  63381. #define vst4q_u64(__p0, __p1) __extension__ ({ \
  63382. uint64x2x4_t __s1 = __p1; \
  63383. __builtin_neon_vst4q_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], (int8x16_t)__s1.val[3], 51); \
  63384. })
  63385. #else
  63386. #define vst4q_u64(__p0, __p1) __extension__ ({ \
  63387. uint64x2x4_t __s1 = __p1; \
  63388. uint64x2x4_t __rev1; \
  63389. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  63390. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  63391. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  63392. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 1, 0); \
  63393. __builtin_neon_vst4q_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], (int8x16_t)__rev1.val[3], 51); \
  63394. })
  63395. #endif
  63396. #ifdef __LITTLE_ENDIAN__
  63397. #define vst4q_f64(__p0, __p1) __extension__ ({ \
  63398. float64x2x4_t __s1 = __p1; \
  63399. __builtin_neon_vst4q_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], 42); \
  63400. })
  63401. #else
  63402. #define vst4q_f64(__p0, __p1) __extension__ ({ \
  63403. float64x2x4_t __s1 = __p1; \
  63404. float64x2x4_t __rev1; \
  63405. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  63406. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  63407. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  63408. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 1, 0); \
  63409. __builtin_neon_vst4q_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __rev1.val[3], 42); \
  63410. })
  63411. #endif
  63412. #ifdef __LITTLE_ENDIAN__
  63413. #define vst4q_s64(__p0, __p1) __extension__ ({ \
  63414. int64x2x4_t __s1 = __p1; \
  63415. __builtin_neon_vst4q_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], 35); \
  63416. })
  63417. #else
  63418. #define vst4q_s64(__p0, __p1) __extension__ ({ \
  63419. int64x2x4_t __s1 = __p1; \
  63420. int64x2x4_t __rev1; \
  63421. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  63422. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  63423. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  63424. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 1, 0); \
  63425. __builtin_neon_vst4q_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __rev1.val[3], 35); \
  63426. })
  63427. #endif
  63428. #ifdef __LITTLE_ENDIAN__
  63429. #define vst4_f64(__p0, __p1) __extension__ ({ \
  63430. float64x1x4_t __s1 = __p1; \
  63431. __builtin_neon_vst4_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], 10); \
  63432. })
  63433. #else
  63434. #define vst4_f64(__p0, __p1) __extension__ ({ \
  63435. float64x1x4_t __s1 = __p1; \
  63436. __builtin_neon_vst4_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], 10); \
  63437. })
  63438. #endif
  63439. #ifdef __LITTLE_ENDIAN__
  63440. #define vst4_lane_p64(__p0, __p1, __p2) __extension__ ({ \
  63441. poly64x1x4_t __s1 = __p1; \
  63442. __builtin_neon_vst4_lane_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], (int8x8_t)__s1.val[3], __p2, 6); \
  63443. })
  63444. #else
  63445. #define vst4_lane_p64(__p0, __p1, __p2) __extension__ ({ \
  63446. poly64x1x4_t __s1 = __p1; \
  63447. __builtin_neon_vst4_lane_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], (int8x8_t)__s1.val[3], __p2, 6); \
  63448. })
  63449. #endif
  63450. #ifdef __LITTLE_ENDIAN__
  63451. #define vst4q_lane_p8(__p0, __p1, __p2) __extension__ ({ \
  63452. poly8x16x4_t __s1 = __p1; \
  63453. __builtin_neon_vst4q_lane_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], (int8x16_t)__s1.val[3], __p2, 36); \
  63454. })
  63455. #else
  63456. #define vst4q_lane_p8(__p0, __p1, __p2) __extension__ ({ \
  63457. poly8x16x4_t __s1 = __p1; \
  63458. poly8x16x4_t __rev1; \
  63459. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  63460. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  63461. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  63462. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  63463. __builtin_neon_vst4q_lane_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], (int8x16_t)__rev1.val[3], __p2, 36); \
  63464. })
  63465. #endif
  63466. #ifdef __LITTLE_ENDIAN__
  63467. #define vst4q_lane_p64(__p0, __p1, __p2) __extension__ ({ \
  63468. poly64x2x4_t __s1 = __p1; \
  63469. __builtin_neon_vst4q_lane_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], (int8x16_t)__s1.val[3], __p2, 38); \
  63470. })
  63471. #else
  63472. #define vst4q_lane_p64(__p0, __p1, __p2) __extension__ ({ \
  63473. poly64x2x4_t __s1 = __p1; \
  63474. poly64x2x4_t __rev1; \
  63475. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  63476. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  63477. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  63478. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 1, 0); \
  63479. __builtin_neon_vst4q_lane_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], (int8x16_t)__rev1.val[3], __p2, 38); \
  63480. })
  63481. #endif
  63482. #ifdef __LITTLE_ENDIAN__
  63483. #define vst4q_lane_u8(__p0, __p1, __p2) __extension__ ({ \
  63484. uint8x16x4_t __s1 = __p1; \
  63485. __builtin_neon_vst4q_lane_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], (int8x16_t)__s1.val[3], __p2, 48); \
  63486. })
  63487. #else
  63488. #define vst4q_lane_u8(__p0, __p1, __p2) __extension__ ({ \
  63489. uint8x16x4_t __s1 = __p1; \
  63490. uint8x16x4_t __rev1; \
  63491. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  63492. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  63493. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  63494. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  63495. __builtin_neon_vst4q_lane_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], (int8x16_t)__rev1.val[3], __p2, 48); \
  63496. })
  63497. #endif
  63498. #ifdef __LITTLE_ENDIAN__
  63499. #define vst4q_lane_u64(__p0, __p1, __p2) __extension__ ({ \
  63500. uint64x2x4_t __s1 = __p1; \
  63501. __builtin_neon_vst4q_lane_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], (int8x16_t)__s1.val[3], __p2, 51); \
  63502. })
  63503. #else
  63504. #define vst4q_lane_u64(__p0, __p1, __p2) __extension__ ({ \
  63505. uint64x2x4_t __s1 = __p1; \
  63506. uint64x2x4_t __rev1; \
  63507. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  63508. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  63509. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  63510. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 1, 0); \
  63511. __builtin_neon_vst4q_lane_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], (int8x16_t)__rev1.val[3], __p2, 51); \
  63512. })
  63513. #endif
  63514. #ifdef __LITTLE_ENDIAN__
  63515. #define vst4q_lane_s8(__p0, __p1, __p2) __extension__ ({ \
  63516. int8x16x4_t __s1 = __p1; \
  63517. __builtin_neon_vst4q_lane_v(__p0, (int8x16_t)__s1.val[0], (int8x16_t)__s1.val[1], (int8x16_t)__s1.val[2], (int8x16_t)__s1.val[3], __p2, 32); \
  63518. })
  63519. #else
  63520. #define vst4q_lane_s8(__p0, __p1, __p2) __extension__ ({ \
  63521. int8x16x4_t __s1 = __p1; \
  63522. int8x16x4_t __rev1; \
  63523. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  63524. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  63525. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  63526. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0); \
  63527. __builtin_neon_vst4q_lane_v(__p0, (int8x16_t)__rev1.val[0], (int8x16_t)__rev1.val[1], (int8x16_t)__rev1.val[2], (int8x16_t)__rev1.val[3], __p2, 32); \
  63528. })
  63529. #endif
  63530. #ifdef __LITTLE_ENDIAN__
  63531. #define vst4q_lane_f64(__p0, __p1, __p2) __extension__ ({ \
  63532. float64x2x4_t __s1 = __p1; \
  63533. __builtin_neon_vst4q_lane_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], __p2, 42); \
  63534. })
  63535. #else
  63536. #define vst4q_lane_f64(__p0, __p1, __p2) __extension__ ({ \
  63537. float64x2x4_t __s1 = __p1; \
  63538. float64x2x4_t __rev1; \
  63539. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  63540. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  63541. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  63542. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 1, 0); \
  63543. __builtin_neon_vst4q_lane_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __rev1.val[3], __p2, 42); \
  63544. })
  63545. #endif
  63546. #ifdef __LITTLE_ENDIAN__
  63547. #define vst4q_lane_s64(__p0, __p1, __p2) __extension__ ({ \
  63548. int64x2x4_t __s1 = __p1; \
  63549. __builtin_neon_vst4q_lane_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], __p2, 35); \
  63550. })
  63551. #else
  63552. #define vst4q_lane_s64(__p0, __p1, __p2) __extension__ ({ \
  63553. int64x2x4_t __s1 = __p1; \
  63554. int64x2x4_t __rev1; \
  63555. __rev1.val[0] = __builtin_shufflevector(__s1.val[0], __s1.val[0], 1, 0); \
  63556. __rev1.val[1] = __builtin_shufflevector(__s1.val[1], __s1.val[1], 1, 0); \
  63557. __rev1.val[2] = __builtin_shufflevector(__s1.val[2], __s1.val[2], 1, 0); \
  63558. __rev1.val[3] = __builtin_shufflevector(__s1.val[3], __s1.val[3], 1, 0); \
  63559. __builtin_neon_vst4q_lane_v(__p0, __rev1.val[0], __rev1.val[1], __rev1.val[2], __rev1.val[3], __p2, 35); \
  63560. })
  63561. #endif
  63562. #ifdef __LITTLE_ENDIAN__
  63563. #define vst4_lane_u64(__p0, __p1, __p2) __extension__ ({ \
  63564. uint64x1x4_t __s1 = __p1; \
  63565. __builtin_neon_vst4_lane_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], (int8x8_t)__s1.val[3], __p2, 19); \
  63566. })
  63567. #else
  63568. #define vst4_lane_u64(__p0, __p1, __p2) __extension__ ({ \
  63569. uint64x1x4_t __s1 = __p1; \
  63570. __builtin_neon_vst4_lane_v(__p0, (int8x8_t)__s1.val[0], (int8x8_t)__s1.val[1], (int8x8_t)__s1.val[2], (int8x8_t)__s1.val[3], __p2, 19); \
  63571. })
  63572. #endif
  63573. #ifdef __LITTLE_ENDIAN__
  63574. #define vst4_lane_f64(__p0, __p1, __p2) __extension__ ({ \
  63575. float64x1x4_t __s1 = __p1; \
  63576. __builtin_neon_vst4_lane_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], __p2, 10); \
  63577. })
  63578. #else
  63579. #define vst4_lane_f64(__p0, __p1, __p2) __extension__ ({ \
  63580. float64x1x4_t __s1 = __p1; \
  63581. __builtin_neon_vst4_lane_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], __p2, 10); \
  63582. })
  63583. #endif
  63584. #ifdef __LITTLE_ENDIAN__
  63585. #define vst4_lane_s64(__p0, __p1, __p2) __extension__ ({ \
  63586. int64x1x4_t __s1 = __p1; \
  63587. __builtin_neon_vst4_lane_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], __p2, 3); \
  63588. })
  63589. #else
  63590. #define vst4_lane_s64(__p0, __p1, __p2) __extension__ ({ \
  63591. int64x1x4_t __s1 = __p1; \
  63592. __builtin_neon_vst4_lane_v(__p0, __s1.val[0], __s1.val[1], __s1.val[2], __s1.val[3], __p2, 3); \
  63593. })
  63594. #endif
  63595. #ifdef __LITTLE_ENDIAN__
  63596. #define vstrq_p128(__p0, __p1) __extension__ ({ \
  63597. poly128_t __s1 = __p1; \
  63598. __builtin_neon_vstrq_p128(__p0, __s1); \
  63599. })
  63600. #else
  63601. #define vstrq_p128(__p0, __p1) __extension__ ({ \
  63602. poly128_t __s1 = __p1; \
  63603. __builtin_neon_vstrq_p128(__p0, __s1); \
  63604. })
  63605. #endif
  63606. #ifdef __LITTLE_ENDIAN__
  63607. __ai uint64_t vsubd_u64(uint64_t __p0, uint64_t __p1) {
  63608. uint64_t __ret;
  63609. __ret = (uint64_t) __builtin_neon_vsubd_u64(__p0, __p1);
  63610. return __ret;
  63611. }
  63612. #else
  63613. __ai uint64_t vsubd_u64(uint64_t __p0, uint64_t __p1) {
  63614. uint64_t __ret;
  63615. __ret = (uint64_t) __builtin_neon_vsubd_u64(__p0, __p1);
  63616. return __ret;
  63617. }
  63618. #endif
  63619. #ifdef __LITTLE_ENDIAN__
  63620. __ai int64_t vsubd_s64(int64_t __p0, int64_t __p1) {
  63621. int64_t __ret;
  63622. __ret = (int64_t) __builtin_neon_vsubd_s64(__p0, __p1);
  63623. return __ret;
  63624. }
  63625. #else
  63626. __ai int64_t vsubd_s64(int64_t __p0, int64_t __p1) {
  63627. int64_t __ret;
  63628. __ret = (int64_t) __builtin_neon_vsubd_s64(__p0, __p1);
  63629. return __ret;
  63630. }
  63631. #endif
  63632. #ifdef __LITTLE_ENDIAN__
  63633. __ai float64x2_t vsubq_f64(float64x2_t __p0, float64x2_t __p1) {
  63634. float64x2_t __ret;
  63635. __ret = __p0 - __p1;
  63636. return __ret;
  63637. }
  63638. #else
  63639. __ai float64x2_t vsubq_f64(float64x2_t __p0, float64x2_t __p1) {
  63640. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  63641. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  63642. float64x2_t __ret;
  63643. __ret = __rev0 - __rev1;
  63644. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  63645. return __ret;
  63646. }
  63647. #endif
  63648. #ifdef __LITTLE_ENDIAN__
  63649. __ai float64x1_t vsub_f64(float64x1_t __p0, float64x1_t __p1) {
  63650. float64x1_t __ret;
  63651. __ret = __p0 - __p1;
  63652. return __ret;
  63653. }
  63654. #else
  63655. __ai float64x1_t vsub_f64(float64x1_t __p0, float64x1_t __p1) {
  63656. float64x1_t __ret;
  63657. __ret = __p0 - __p1;
  63658. return __ret;
  63659. }
  63660. #endif
  63661. #ifdef __LITTLE_ENDIAN__
  63662. __ai uint16x8_t vsubhn_high_u32(uint16x4_t __p0, uint32x4_t __p1, uint32x4_t __p2) {
  63663. uint16x8_t __ret;
  63664. __ret = vcombine_u16(__p0, vsubhn_u32(__p1, __p2));
  63665. return __ret;
  63666. }
  63667. #else
  63668. __ai uint16x8_t vsubhn_high_u32(uint16x4_t __p0, uint32x4_t __p1, uint32x4_t __p2) {
  63669. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  63670. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  63671. uint32x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  63672. uint16x8_t __ret;
  63673. __ret = __noswap_vcombine_u16(__rev0, __noswap_vsubhn_u32(__rev1, __rev2));
  63674. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  63675. return __ret;
  63676. }
  63677. #endif
  63678. #ifdef __LITTLE_ENDIAN__
  63679. __ai uint32x4_t vsubhn_high_u64(uint32x2_t __p0, uint64x2_t __p1, uint64x2_t __p2) {
  63680. uint32x4_t __ret;
  63681. __ret = vcombine_u32(__p0, vsubhn_u64(__p1, __p2));
  63682. return __ret;
  63683. }
  63684. #else
  63685. __ai uint32x4_t vsubhn_high_u64(uint32x2_t __p0, uint64x2_t __p1, uint64x2_t __p2) {
  63686. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  63687. uint64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  63688. uint64x2_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 1, 0);
  63689. uint32x4_t __ret;
  63690. __ret = __noswap_vcombine_u32(__rev0, __noswap_vsubhn_u64(__rev1, __rev2));
  63691. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  63692. return __ret;
  63693. }
  63694. #endif
  63695. #ifdef __LITTLE_ENDIAN__
  63696. __ai uint8x16_t vsubhn_high_u16(uint8x8_t __p0, uint16x8_t __p1, uint16x8_t __p2) {
  63697. uint8x16_t __ret;
  63698. __ret = vcombine_u8(__p0, vsubhn_u16(__p1, __p2));
  63699. return __ret;
  63700. }
  63701. #else
  63702. __ai uint8x16_t vsubhn_high_u16(uint8x8_t __p0, uint16x8_t __p1, uint16x8_t __p2) {
  63703. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  63704. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  63705. uint16x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  63706. uint8x16_t __ret;
  63707. __ret = __noswap_vcombine_u8(__rev0, __noswap_vsubhn_u16(__rev1, __rev2));
  63708. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  63709. return __ret;
  63710. }
  63711. #endif
  63712. #ifdef __LITTLE_ENDIAN__
  63713. __ai int16x8_t vsubhn_high_s32(int16x4_t __p0, int32x4_t __p1, int32x4_t __p2) {
  63714. int16x8_t __ret;
  63715. __ret = vcombine_s16(__p0, vsubhn_s32(__p1, __p2));
  63716. return __ret;
  63717. }
  63718. #else
  63719. __ai int16x8_t vsubhn_high_s32(int16x4_t __p0, int32x4_t __p1, int32x4_t __p2) {
  63720. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  63721. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  63722. int32x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  63723. int16x8_t __ret;
  63724. __ret = __noswap_vcombine_s16(__rev0, __noswap_vsubhn_s32(__rev1, __rev2));
  63725. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  63726. return __ret;
  63727. }
  63728. #endif
  63729. #ifdef __LITTLE_ENDIAN__
  63730. __ai int32x4_t vsubhn_high_s64(int32x2_t __p0, int64x2_t __p1, int64x2_t __p2) {
  63731. int32x4_t __ret;
  63732. __ret = vcombine_s32(__p0, vsubhn_s64(__p1, __p2));
  63733. return __ret;
  63734. }
  63735. #else
  63736. __ai int32x4_t vsubhn_high_s64(int32x2_t __p0, int64x2_t __p1, int64x2_t __p2) {
  63737. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  63738. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  63739. int64x2_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 1, 0);
  63740. int32x4_t __ret;
  63741. __ret = __noswap_vcombine_s32(__rev0, __noswap_vsubhn_s64(__rev1, __rev2));
  63742. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  63743. return __ret;
  63744. }
  63745. #endif
  63746. #ifdef __LITTLE_ENDIAN__
  63747. __ai int8x16_t vsubhn_high_s16(int8x8_t __p0, int16x8_t __p1, int16x8_t __p2) {
  63748. int8x16_t __ret;
  63749. __ret = vcombine_s8(__p0, vsubhn_s16(__p1, __p2));
  63750. return __ret;
  63751. }
  63752. #else
  63753. __ai int8x16_t vsubhn_high_s16(int8x8_t __p0, int16x8_t __p1, int16x8_t __p2) {
  63754. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  63755. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  63756. int16x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  63757. int8x16_t __ret;
  63758. __ret = __noswap_vcombine_s8(__rev0, __noswap_vsubhn_s16(__rev1, __rev2));
  63759. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  63760. return __ret;
  63761. }
  63762. #endif
  63763. #ifdef __LITTLE_ENDIAN__
  63764. __ai uint16x8_t vsubl_high_u8(uint8x16_t __p0, uint8x16_t __p1) {
  63765. uint16x8_t __ret;
  63766. __ret = vmovl_high_u8(__p0) - vmovl_high_u8(__p1);
  63767. return __ret;
  63768. }
  63769. #else
  63770. __ai uint16x8_t vsubl_high_u8(uint8x16_t __p0, uint8x16_t __p1) {
  63771. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  63772. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  63773. uint16x8_t __ret;
  63774. __ret = __noswap_vmovl_high_u8(__rev0) - __noswap_vmovl_high_u8(__rev1);
  63775. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  63776. return __ret;
  63777. }
  63778. #endif
  63779. #ifdef __LITTLE_ENDIAN__
  63780. __ai uint64x2_t vsubl_high_u32(uint32x4_t __p0, uint32x4_t __p1) {
  63781. uint64x2_t __ret;
  63782. __ret = vmovl_high_u32(__p0) - vmovl_high_u32(__p1);
  63783. return __ret;
  63784. }
  63785. #else
  63786. __ai uint64x2_t vsubl_high_u32(uint32x4_t __p0, uint32x4_t __p1) {
  63787. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  63788. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  63789. uint64x2_t __ret;
  63790. __ret = __noswap_vmovl_high_u32(__rev0) - __noswap_vmovl_high_u32(__rev1);
  63791. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  63792. return __ret;
  63793. }
  63794. #endif
  63795. #ifdef __LITTLE_ENDIAN__
  63796. __ai uint32x4_t vsubl_high_u16(uint16x8_t __p0, uint16x8_t __p1) {
  63797. uint32x4_t __ret;
  63798. __ret = vmovl_high_u16(__p0) - vmovl_high_u16(__p1);
  63799. return __ret;
  63800. }
  63801. #else
  63802. __ai uint32x4_t vsubl_high_u16(uint16x8_t __p0, uint16x8_t __p1) {
  63803. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  63804. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  63805. uint32x4_t __ret;
  63806. __ret = __noswap_vmovl_high_u16(__rev0) - __noswap_vmovl_high_u16(__rev1);
  63807. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  63808. return __ret;
  63809. }
  63810. #endif
  63811. #ifdef __LITTLE_ENDIAN__
  63812. __ai int16x8_t vsubl_high_s8(int8x16_t __p0, int8x16_t __p1) {
  63813. int16x8_t __ret;
  63814. __ret = vmovl_high_s8(__p0) - vmovl_high_s8(__p1);
  63815. return __ret;
  63816. }
  63817. #else
  63818. __ai int16x8_t vsubl_high_s8(int8x16_t __p0, int8x16_t __p1) {
  63819. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  63820. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  63821. int16x8_t __ret;
  63822. __ret = __noswap_vmovl_high_s8(__rev0) - __noswap_vmovl_high_s8(__rev1);
  63823. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  63824. return __ret;
  63825. }
  63826. #endif
  63827. #ifdef __LITTLE_ENDIAN__
  63828. __ai int64x2_t vsubl_high_s32(int32x4_t __p0, int32x4_t __p1) {
  63829. int64x2_t __ret;
  63830. __ret = vmovl_high_s32(__p0) - vmovl_high_s32(__p1);
  63831. return __ret;
  63832. }
  63833. #else
  63834. __ai int64x2_t vsubl_high_s32(int32x4_t __p0, int32x4_t __p1) {
  63835. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  63836. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  63837. int64x2_t __ret;
  63838. __ret = __noswap_vmovl_high_s32(__rev0) - __noswap_vmovl_high_s32(__rev1);
  63839. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  63840. return __ret;
  63841. }
  63842. #endif
  63843. #ifdef __LITTLE_ENDIAN__
  63844. __ai int32x4_t vsubl_high_s16(int16x8_t __p0, int16x8_t __p1) {
  63845. int32x4_t __ret;
  63846. __ret = vmovl_high_s16(__p0) - vmovl_high_s16(__p1);
  63847. return __ret;
  63848. }
  63849. #else
  63850. __ai int32x4_t vsubl_high_s16(int16x8_t __p0, int16x8_t __p1) {
  63851. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  63852. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  63853. int32x4_t __ret;
  63854. __ret = __noswap_vmovl_high_s16(__rev0) - __noswap_vmovl_high_s16(__rev1);
  63855. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  63856. return __ret;
  63857. }
  63858. #endif
  63859. #ifdef __LITTLE_ENDIAN__
  63860. __ai uint16x8_t vsubw_high_u8(uint16x8_t __p0, uint8x16_t __p1) {
  63861. uint16x8_t __ret;
  63862. __ret = __p0 - vmovl_high_u8(__p1);
  63863. return __ret;
  63864. }
  63865. #else
  63866. __ai uint16x8_t vsubw_high_u8(uint16x8_t __p0, uint8x16_t __p1) {
  63867. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  63868. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  63869. uint16x8_t __ret;
  63870. __ret = __rev0 - __noswap_vmovl_high_u8(__rev1);
  63871. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  63872. return __ret;
  63873. }
  63874. #endif
  63875. #ifdef __LITTLE_ENDIAN__
  63876. __ai uint64x2_t vsubw_high_u32(uint64x2_t __p0, uint32x4_t __p1) {
  63877. uint64x2_t __ret;
  63878. __ret = __p0 - vmovl_high_u32(__p1);
  63879. return __ret;
  63880. }
  63881. #else
  63882. __ai uint64x2_t vsubw_high_u32(uint64x2_t __p0, uint32x4_t __p1) {
  63883. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  63884. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  63885. uint64x2_t __ret;
  63886. __ret = __rev0 - __noswap_vmovl_high_u32(__rev1);
  63887. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  63888. return __ret;
  63889. }
  63890. #endif
  63891. #ifdef __LITTLE_ENDIAN__
  63892. __ai uint32x4_t vsubw_high_u16(uint32x4_t __p0, uint16x8_t __p1) {
  63893. uint32x4_t __ret;
  63894. __ret = __p0 - vmovl_high_u16(__p1);
  63895. return __ret;
  63896. }
  63897. #else
  63898. __ai uint32x4_t vsubw_high_u16(uint32x4_t __p0, uint16x8_t __p1) {
  63899. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  63900. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  63901. uint32x4_t __ret;
  63902. __ret = __rev0 - __noswap_vmovl_high_u16(__rev1);
  63903. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  63904. return __ret;
  63905. }
  63906. #endif
  63907. #ifdef __LITTLE_ENDIAN__
  63908. __ai int16x8_t vsubw_high_s8(int16x8_t __p0, int8x16_t __p1) {
  63909. int16x8_t __ret;
  63910. __ret = __p0 - vmovl_high_s8(__p1);
  63911. return __ret;
  63912. }
  63913. #else
  63914. __ai int16x8_t vsubw_high_s8(int16x8_t __p0, int8x16_t __p1) {
  63915. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  63916. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  63917. int16x8_t __ret;
  63918. __ret = __rev0 - __noswap_vmovl_high_s8(__rev1);
  63919. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  63920. return __ret;
  63921. }
  63922. #endif
  63923. #ifdef __LITTLE_ENDIAN__
  63924. __ai int64x2_t vsubw_high_s32(int64x2_t __p0, int32x4_t __p1) {
  63925. int64x2_t __ret;
  63926. __ret = __p0 - vmovl_high_s32(__p1);
  63927. return __ret;
  63928. }
  63929. #else
  63930. __ai int64x2_t vsubw_high_s32(int64x2_t __p0, int32x4_t __p1) {
  63931. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  63932. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  63933. int64x2_t __ret;
  63934. __ret = __rev0 - __noswap_vmovl_high_s32(__rev1);
  63935. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  63936. return __ret;
  63937. }
  63938. #endif
  63939. #ifdef __LITTLE_ENDIAN__
  63940. __ai int32x4_t vsubw_high_s16(int32x4_t __p0, int16x8_t __p1) {
  63941. int32x4_t __ret;
  63942. __ret = __p0 - vmovl_high_s16(__p1);
  63943. return __ret;
  63944. }
  63945. #else
  63946. __ai int32x4_t vsubw_high_s16(int32x4_t __p0, int16x8_t __p1) {
  63947. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  63948. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  63949. int32x4_t __ret;
  63950. __ret = __rev0 - __noswap_vmovl_high_s16(__rev1);
  63951. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  63952. return __ret;
  63953. }
  63954. #endif
  63955. #ifdef __LITTLE_ENDIAN__
  63956. __ai poly8x8_t vtrn1_p8(poly8x8_t __p0, poly8x8_t __p1) {
  63957. poly8x8_t __ret;
  63958. __ret = __builtin_shufflevector(__p0, __p1, 0, 8, 2, 10, 4, 12, 6, 14);
  63959. return __ret;
  63960. }
  63961. #else
  63962. __ai poly8x8_t vtrn1_p8(poly8x8_t __p0, poly8x8_t __p1) {
  63963. poly8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  63964. poly8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  63965. poly8x8_t __ret;
  63966. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 8, 2, 10, 4, 12, 6, 14);
  63967. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  63968. return __ret;
  63969. }
  63970. #endif
  63971. #ifdef __LITTLE_ENDIAN__
  63972. __ai poly16x4_t vtrn1_p16(poly16x4_t __p0, poly16x4_t __p1) {
  63973. poly16x4_t __ret;
  63974. __ret = __builtin_shufflevector(__p0, __p1, 0, 4, 2, 6);
  63975. return __ret;
  63976. }
  63977. #else
  63978. __ai poly16x4_t vtrn1_p16(poly16x4_t __p0, poly16x4_t __p1) {
  63979. poly16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  63980. poly16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  63981. poly16x4_t __ret;
  63982. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 4, 2, 6);
  63983. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  63984. return __ret;
  63985. }
  63986. #endif
  63987. #ifdef __LITTLE_ENDIAN__
  63988. __ai poly8x16_t vtrn1q_p8(poly8x16_t __p0, poly8x16_t __p1) {
  63989. poly8x16_t __ret;
  63990. __ret = __builtin_shufflevector(__p0, __p1, 0, 16, 2, 18, 4, 20, 6, 22, 8, 24, 10, 26, 12, 28, 14, 30);
  63991. return __ret;
  63992. }
  63993. #else
  63994. __ai poly8x16_t vtrn1q_p8(poly8x16_t __p0, poly8x16_t __p1) {
  63995. poly8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  63996. poly8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  63997. poly8x16_t __ret;
  63998. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 16, 2, 18, 4, 20, 6, 22, 8, 24, 10, 26, 12, 28, 14, 30);
  63999. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  64000. return __ret;
  64001. }
  64002. #endif
  64003. #ifdef __LITTLE_ENDIAN__
  64004. __ai poly64x2_t vtrn1q_p64(poly64x2_t __p0, poly64x2_t __p1) {
  64005. poly64x2_t __ret;
  64006. __ret = __builtin_shufflevector(__p0, __p1, 0, 2);
  64007. return __ret;
  64008. }
  64009. #else
  64010. __ai poly64x2_t vtrn1q_p64(poly64x2_t __p0, poly64x2_t __p1) {
  64011. poly64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  64012. poly64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  64013. poly64x2_t __ret;
  64014. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 2);
  64015. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  64016. return __ret;
  64017. }
  64018. #endif
  64019. #ifdef __LITTLE_ENDIAN__
  64020. __ai poly16x8_t vtrn1q_p16(poly16x8_t __p0, poly16x8_t __p1) {
  64021. poly16x8_t __ret;
  64022. __ret = __builtin_shufflevector(__p0, __p1, 0, 8, 2, 10, 4, 12, 6, 14);
  64023. return __ret;
  64024. }
  64025. #else
  64026. __ai poly16x8_t vtrn1q_p16(poly16x8_t __p0, poly16x8_t __p1) {
  64027. poly16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  64028. poly16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  64029. poly16x8_t __ret;
  64030. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 8, 2, 10, 4, 12, 6, 14);
  64031. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  64032. return __ret;
  64033. }
  64034. #endif
  64035. #ifdef __LITTLE_ENDIAN__
  64036. __ai uint8x16_t vtrn1q_u8(uint8x16_t __p0, uint8x16_t __p1) {
  64037. uint8x16_t __ret;
  64038. __ret = __builtin_shufflevector(__p0, __p1, 0, 16, 2, 18, 4, 20, 6, 22, 8, 24, 10, 26, 12, 28, 14, 30);
  64039. return __ret;
  64040. }
  64041. #else
  64042. __ai uint8x16_t vtrn1q_u8(uint8x16_t __p0, uint8x16_t __p1) {
  64043. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  64044. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  64045. uint8x16_t __ret;
  64046. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 16, 2, 18, 4, 20, 6, 22, 8, 24, 10, 26, 12, 28, 14, 30);
  64047. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  64048. return __ret;
  64049. }
  64050. #endif
  64051. #ifdef __LITTLE_ENDIAN__
  64052. __ai uint32x4_t vtrn1q_u32(uint32x4_t __p0, uint32x4_t __p1) {
  64053. uint32x4_t __ret;
  64054. __ret = __builtin_shufflevector(__p0, __p1, 0, 4, 2, 6);
  64055. return __ret;
  64056. }
  64057. #else
  64058. __ai uint32x4_t vtrn1q_u32(uint32x4_t __p0, uint32x4_t __p1) {
  64059. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  64060. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  64061. uint32x4_t __ret;
  64062. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 4, 2, 6);
  64063. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  64064. return __ret;
  64065. }
  64066. #endif
  64067. #ifdef __LITTLE_ENDIAN__
  64068. __ai uint64x2_t vtrn1q_u64(uint64x2_t __p0, uint64x2_t __p1) {
  64069. uint64x2_t __ret;
  64070. __ret = __builtin_shufflevector(__p0, __p1, 0, 2);
  64071. return __ret;
  64072. }
  64073. #else
  64074. __ai uint64x2_t vtrn1q_u64(uint64x2_t __p0, uint64x2_t __p1) {
  64075. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  64076. uint64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  64077. uint64x2_t __ret;
  64078. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 2);
  64079. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  64080. return __ret;
  64081. }
  64082. #endif
  64083. #ifdef __LITTLE_ENDIAN__
  64084. __ai uint16x8_t vtrn1q_u16(uint16x8_t __p0, uint16x8_t __p1) {
  64085. uint16x8_t __ret;
  64086. __ret = __builtin_shufflevector(__p0, __p1, 0, 8, 2, 10, 4, 12, 6, 14);
  64087. return __ret;
  64088. }
  64089. #else
  64090. __ai uint16x8_t vtrn1q_u16(uint16x8_t __p0, uint16x8_t __p1) {
  64091. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  64092. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  64093. uint16x8_t __ret;
  64094. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 8, 2, 10, 4, 12, 6, 14);
  64095. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  64096. return __ret;
  64097. }
  64098. #endif
  64099. #ifdef __LITTLE_ENDIAN__
  64100. __ai int8x16_t vtrn1q_s8(int8x16_t __p0, int8x16_t __p1) {
  64101. int8x16_t __ret;
  64102. __ret = __builtin_shufflevector(__p0, __p1, 0, 16, 2, 18, 4, 20, 6, 22, 8, 24, 10, 26, 12, 28, 14, 30);
  64103. return __ret;
  64104. }
  64105. #else
  64106. __ai int8x16_t vtrn1q_s8(int8x16_t __p0, int8x16_t __p1) {
  64107. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  64108. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  64109. int8x16_t __ret;
  64110. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 16, 2, 18, 4, 20, 6, 22, 8, 24, 10, 26, 12, 28, 14, 30);
  64111. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  64112. return __ret;
  64113. }
  64114. #endif
  64115. #ifdef __LITTLE_ENDIAN__
  64116. __ai float64x2_t vtrn1q_f64(float64x2_t __p0, float64x2_t __p1) {
  64117. float64x2_t __ret;
  64118. __ret = __builtin_shufflevector(__p0, __p1, 0, 2);
  64119. return __ret;
  64120. }
  64121. #else
  64122. __ai float64x2_t vtrn1q_f64(float64x2_t __p0, float64x2_t __p1) {
  64123. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  64124. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  64125. float64x2_t __ret;
  64126. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 2);
  64127. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  64128. return __ret;
  64129. }
  64130. #endif
  64131. #ifdef __LITTLE_ENDIAN__
  64132. __ai float32x4_t vtrn1q_f32(float32x4_t __p0, float32x4_t __p1) {
  64133. float32x4_t __ret;
  64134. __ret = __builtin_shufflevector(__p0, __p1, 0, 4, 2, 6);
  64135. return __ret;
  64136. }
  64137. #else
  64138. __ai float32x4_t vtrn1q_f32(float32x4_t __p0, float32x4_t __p1) {
  64139. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  64140. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  64141. float32x4_t __ret;
  64142. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 4, 2, 6);
  64143. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  64144. return __ret;
  64145. }
  64146. #endif
  64147. #ifdef __LITTLE_ENDIAN__
  64148. __ai int32x4_t vtrn1q_s32(int32x4_t __p0, int32x4_t __p1) {
  64149. int32x4_t __ret;
  64150. __ret = __builtin_shufflevector(__p0, __p1, 0, 4, 2, 6);
  64151. return __ret;
  64152. }
  64153. #else
  64154. __ai int32x4_t vtrn1q_s32(int32x4_t __p0, int32x4_t __p1) {
  64155. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  64156. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  64157. int32x4_t __ret;
  64158. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 4, 2, 6);
  64159. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  64160. return __ret;
  64161. }
  64162. #endif
  64163. #ifdef __LITTLE_ENDIAN__
  64164. __ai int64x2_t vtrn1q_s64(int64x2_t __p0, int64x2_t __p1) {
  64165. int64x2_t __ret;
  64166. __ret = __builtin_shufflevector(__p0, __p1, 0, 2);
  64167. return __ret;
  64168. }
  64169. #else
  64170. __ai int64x2_t vtrn1q_s64(int64x2_t __p0, int64x2_t __p1) {
  64171. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  64172. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  64173. int64x2_t __ret;
  64174. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 2);
  64175. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  64176. return __ret;
  64177. }
  64178. #endif
  64179. #ifdef __LITTLE_ENDIAN__
  64180. __ai int16x8_t vtrn1q_s16(int16x8_t __p0, int16x8_t __p1) {
  64181. int16x8_t __ret;
  64182. __ret = __builtin_shufflevector(__p0, __p1, 0, 8, 2, 10, 4, 12, 6, 14);
  64183. return __ret;
  64184. }
  64185. #else
  64186. __ai int16x8_t vtrn1q_s16(int16x8_t __p0, int16x8_t __p1) {
  64187. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  64188. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  64189. int16x8_t __ret;
  64190. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 8, 2, 10, 4, 12, 6, 14);
  64191. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  64192. return __ret;
  64193. }
  64194. #endif
  64195. #ifdef __LITTLE_ENDIAN__
  64196. __ai uint8x8_t vtrn1_u8(uint8x8_t __p0, uint8x8_t __p1) {
  64197. uint8x8_t __ret;
  64198. __ret = __builtin_shufflevector(__p0, __p1, 0, 8, 2, 10, 4, 12, 6, 14);
  64199. return __ret;
  64200. }
  64201. #else
  64202. __ai uint8x8_t vtrn1_u8(uint8x8_t __p0, uint8x8_t __p1) {
  64203. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  64204. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  64205. uint8x8_t __ret;
  64206. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 8, 2, 10, 4, 12, 6, 14);
  64207. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  64208. return __ret;
  64209. }
  64210. #endif
  64211. #ifdef __LITTLE_ENDIAN__
  64212. __ai uint32x2_t vtrn1_u32(uint32x2_t __p0, uint32x2_t __p1) {
  64213. uint32x2_t __ret;
  64214. __ret = __builtin_shufflevector(__p0, __p1, 0, 2);
  64215. return __ret;
  64216. }
  64217. #else
  64218. __ai uint32x2_t vtrn1_u32(uint32x2_t __p0, uint32x2_t __p1) {
  64219. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  64220. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  64221. uint32x2_t __ret;
  64222. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 2);
  64223. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  64224. return __ret;
  64225. }
  64226. #endif
  64227. #ifdef __LITTLE_ENDIAN__
  64228. __ai uint16x4_t vtrn1_u16(uint16x4_t __p0, uint16x4_t __p1) {
  64229. uint16x4_t __ret;
  64230. __ret = __builtin_shufflevector(__p0, __p1, 0, 4, 2, 6);
  64231. return __ret;
  64232. }
  64233. #else
  64234. __ai uint16x4_t vtrn1_u16(uint16x4_t __p0, uint16x4_t __p1) {
  64235. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  64236. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  64237. uint16x4_t __ret;
  64238. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 4, 2, 6);
  64239. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  64240. return __ret;
  64241. }
  64242. #endif
  64243. #ifdef __LITTLE_ENDIAN__
  64244. __ai int8x8_t vtrn1_s8(int8x8_t __p0, int8x8_t __p1) {
  64245. int8x8_t __ret;
  64246. __ret = __builtin_shufflevector(__p0, __p1, 0, 8, 2, 10, 4, 12, 6, 14);
  64247. return __ret;
  64248. }
  64249. #else
  64250. __ai int8x8_t vtrn1_s8(int8x8_t __p0, int8x8_t __p1) {
  64251. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  64252. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  64253. int8x8_t __ret;
  64254. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 8, 2, 10, 4, 12, 6, 14);
  64255. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  64256. return __ret;
  64257. }
  64258. #endif
  64259. #ifdef __LITTLE_ENDIAN__
  64260. __ai float32x2_t vtrn1_f32(float32x2_t __p0, float32x2_t __p1) {
  64261. float32x2_t __ret;
  64262. __ret = __builtin_shufflevector(__p0, __p1, 0, 2);
  64263. return __ret;
  64264. }
  64265. #else
  64266. __ai float32x2_t vtrn1_f32(float32x2_t __p0, float32x2_t __p1) {
  64267. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  64268. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  64269. float32x2_t __ret;
  64270. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 2);
  64271. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  64272. return __ret;
  64273. }
  64274. #endif
  64275. #ifdef __LITTLE_ENDIAN__
  64276. __ai int32x2_t vtrn1_s32(int32x2_t __p0, int32x2_t __p1) {
  64277. int32x2_t __ret;
  64278. __ret = __builtin_shufflevector(__p0, __p1, 0, 2);
  64279. return __ret;
  64280. }
  64281. #else
  64282. __ai int32x2_t vtrn1_s32(int32x2_t __p0, int32x2_t __p1) {
  64283. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  64284. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  64285. int32x2_t __ret;
  64286. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 2);
  64287. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  64288. return __ret;
  64289. }
  64290. #endif
  64291. #ifdef __LITTLE_ENDIAN__
  64292. __ai int16x4_t vtrn1_s16(int16x4_t __p0, int16x4_t __p1) {
  64293. int16x4_t __ret;
  64294. __ret = __builtin_shufflevector(__p0, __p1, 0, 4, 2, 6);
  64295. return __ret;
  64296. }
  64297. #else
  64298. __ai int16x4_t vtrn1_s16(int16x4_t __p0, int16x4_t __p1) {
  64299. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  64300. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  64301. int16x4_t __ret;
  64302. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 4, 2, 6);
  64303. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  64304. return __ret;
  64305. }
  64306. #endif
  64307. #ifdef __LITTLE_ENDIAN__
  64308. __ai poly8x8_t vtrn2_p8(poly8x8_t __p0, poly8x8_t __p1) {
  64309. poly8x8_t __ret;
  64310. __ret = __builtin_shufflevector(__p0, __p1, 1, 9, 3, 11, 5, 13, 7, 15);
  64311. return __ret;
  64312. }
  64313. #else
  64314. __ai poly8x8_t vtrn2_p8(poly8x8_t __p0, poly8x8_t __p1) {
  64315. poly8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  64316. poly8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  64317. poly8x8_t __ret;
  64318. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 9, 3, 11, 5, 13, 7, 15);
  64319. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  64320. return __ret;
  64321. }
  64322. #endif
  64323. #ifdef __LITTLE_ENDIAN__
  64324. __ai poly16x4_t vtrn2_p16(poly16x4_t __p0, poly16x4_t __p1) {
  64325. poly16x4_t __ret;
  64326. __ret = __builtin_shufflevector(__p0, __p1, 1, 5, 3, 7);
  64327. return __ret;
  64328. }
  64329. #else
  64330. __ai poly16x4_t vtrn2_p16(poly16x4_t __p0, poly16x4_t __p1) {
  64331. poly16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  64332. poly16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  64333. poly16x4_t __ret;
  64334. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 5, 3, 7);
  64335. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  64336. return __ret;
  64337. }
  64338. #endif
  64339. #ifdef __LITTLE_ENDIAN__
  64340. __ai poly8x16_t vtrn2q_p8(poly8x16_t __p0, poly8x16_t __p1) {
  64341. poly8x16_t __ret;
  64342. __ret = __builtin_shufflevector(__p0, __p1, 1, 17, 3, 19, 5, 21, 7, 23, 9, 25, 11, 27, 13, 29, 15, 31);
  64343. return __ret;
  64344. }
  64345. #else
  64346. __ai poly8x16_t vtrn2q_p8(poly8x16_t __p0, poly8x16_t __p1) {
  64347. poly8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  64348. poly8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  64349. poly8x16_t __ret;
  64350. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 17, 3, 19, 5, 21, 7, 23, 9, 25, 11, 27, 13, 29, 15, 31);
  64351. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  64352. return __ret;
  64353. }
  64354. #endif
  64355. #ifdef __LITTLE_ENDIAN__
  64356. __ai poly64x2_t vtrn2q_p64(poly64x2_t __p0, poly64x2_t __p1) {
  64357. poly64x2_t __ret;
  64358. __ret = __builtin_shufflevector(__p0, __p1, 1, 3);
  64359. return __ret;
  64360. }
  64361. #else
  64362. __ai poly64x2_t vtrn2q_p64(poly64x2_t __p0, poly64x2_t __p1) {
  64363. poly64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  64364. poly64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  64365. poly64x2_t __ret;
  64366. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 3);
  64367. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  64368. return __ret;
  64369. }
  64370. #endif
  64371. #ifdef __LITTLE_ENDIAN__
  64372. __ai poly16x8_t vtrn2q_p16(poly16x8_t __p0, poly16x8_t __p1) {
  64373. poly16x8_t __ret;
  64374. __ret = __builtin_shufflevector(__p0, __p1, 1, 9, 3, 11, 5, 13, 7, 15);
  64375. return __ret;
  64376. }
  64377. #else
  64378. __ai poly16x8_t vtrn2q_p16(poly16x8_t __p0, poly16x8_t __p1) {
  64379. poly16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  64380. poly16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  64381. poly16x8_t __ret;
  64382. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 9, 3, 11, 5, 13, 7, 15);
  64383. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  64384. return __ret;
  64385. }
  64386. #endif
  64387. #ifdef __LITTLE_ENDIAN__
  64388. __ai uint8x16_t vtrn2q_u8(uint8x16_t __p0, uint8x16_t __p1) {
  64389. uint8x16_t __ret;
  64390. __ret = __builtin_shufflevector(__p0, __p1, 1, 17, 3, 19, 5, 21, 7, 23, 9, 25, 11, 27, 13, 29, 15, 31);
  64391. return __ret;
  64392. }
  64393. #else
  64394. __ai uint8x16_t vtrn2q_u8(uint8x16_t __p0, uint8x16_t __p1) {
  64395. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  64396. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  64397. uint8x16_t __ret;
  64398. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 17, 3, 19, 5, 21, 7, 23, 9, 25, 11, 27, 13, 29, 15, 31);
  64399. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  64400. return __ret;
  64401. }
  64402. #endif
  64403. #ifdef __LITTLE_ENDIAN__
  64404. __ai uint32x4_t vtrn2q_u32(uint32x4_t __p0, uint32x4_t __p1) {
  64405. uint32x4_t __ret;
  64406. __ret = __builtin_shufflevector(__p0, __p1, 1, 5, 3, 7);
  64407. return __ret;
  64408. }
  64409. #else
  64410. __ai uint32x4_t vtrn2q_u32(uint32x4_t __p0, uint32x4_t __p1) {
  64411. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  64412. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  64413. uint32x4_t __ret;
  64414. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 5, 3, 7);
  64415. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  64416. return __ret;
  64417. }
  64418. #endif
  64419. #ifdef __LITTLE_ENDIAN__
  64420. __ai uint64x2_t vtrn2q_u64(uint64x2_t __p0, uint64x2_t __p1) {
  64421. uint64x2_t __ret;
  64422. __ret = __builtin_shufflevector(__p0, __p1, 1, 3);
  64423. return __ret;
  64424. }
  64425. #else
  64426. __ai uint64x2_t vtrn2q_u64(uint64x2_t __p0, uint64x2_t __p1) {
  64427. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  64428. uint64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  64429. uint64x2_t __ret;
  64430. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 3);
  64431. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  64432. return __ret;
  64433. }
  64434. #endif
  64435. #ifdef __LITTLE_ENDIAN__
  64436. __ai uint16x8_t vtrn2q_u16(uint16x8_t __p0, uint16x8_t __p1) {
  64437. uint16x8_t __ret;
  64438. __ret = __builtin_shufflevector(__p0, __p1, 1, 9, 3, 11, 5, 13, 7, 15);
  64439. return __ret;
  64440. }
  64441. #else
  64442. __ai uint16x8_t vtrn2q_u16(uint16x8_t __p0, uint16x8_t __p1) {
  64443. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  64444. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  64445. uint16x8_t __ret;
  64446. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 9, 3, 11, 5, 13, 7, 15);
  64447. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  64448. return __ret;
  64449. }
  64450. #endif
  64451. #ifdef __LITTLE_ENDIAN__
  64452. __ai int8x16_t vtrn2q_s8(int8x16_t __p0, int8x16_t __p1) {
  64453. int8x16_t __ret;
  64454. __ret = __builtin_shufflevector(__p0, __p1, 1, 17, 3, 19, 5, 21, 7, 23, 9, 25, 11, 27, 13, 29, 15, 31);
  64455. return __ret;
  64456. }
  64457. #else
  64458. __ai int8x16_t vtrn2q_s8(int8x16_t __p0, int8x16_t __p1) {
  64459. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  64460. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  64461. int8x16_t __ret;
  64462. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 17, 3, 19, 5, 21, 7, 23, 9, 25, 11, 27, 13, 29, 15, 31);
  64463. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  64464. return __ret;
  64465. }
  64466. #endif
  64467. #ifdef __LITTLE_ENDIAN__
  64468. __ai float64x2_t vtrn2q_f64(float64x2_t __p0, float64x2_t __p1) {
  64469. float64x2_t __ret;
  64470. __ret = __builtin_shufflevector(__p0, __p1, 1, 3);
  64471. return __ret;
  64472. }
  64473. #else
  64474. __ai float64x2_t vtrn2q_f64(float64x2_t __p0, float64x2_t __p1) {
  64475. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  64476. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  64477. float64x2_t __ret;
  64478. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 3);
  64479. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  64480. return __ret;
  64481. }
  64482. #endif
  64483. #ifdef __LITTLE_ENDIAN__
  64484. __ai float32x4_t vtrn2q_f32(float32x4_t __p0, float32x4_t __p1) {
  64485. float32x4_t __ret;
  64486. __ret = __builtin_shufflevector(__p0, __p1, 1, 5, 3, 7);
  64487. return __ret;
  64488. }
  64489. #else
  64490. __ai float32x4_t vtrn2q_f32(float32x4_t __p0, float32x4_t __p1) {
  64491. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  64492. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  64493. float32x4_t __ret;
  64494. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 5, 3, 7);
  64495. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  64496. return __ret;
  64497. }
  64498. #endif
  64499. #ifdef __LITTLE_ENDIAN__
  64500. __ai int32x4_t vtrn2q_s32(int32x4_t __p0, int32x4_t __p1) {
  64501. int32x4_t __ret;
  64502. __ret = __builtin_shufflevector(__p0, __p1, 1, 5, 3, 7);
  64503. return __ret;
  64504. }
  64505. #else
  64506. __ai int32x4_t vtrn2q_s32(int32x4_t __p0, int32x4_t __p1) {
  64507. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  64508. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  64509. int32x4_t __ret;
  64510. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 5, 3, 7);
  64511. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  64512. return __ret;
  64513. }
  64514. #endif
  64515. #ifdef __LITTLE_ENDIAN__
  64516. __ai int64x2_t vtrn2q_s64(int64x2_t __p0, int64x2_t __p1) {
  64517. int64x2_t __ret;
  64518. __ret = __builtin_shufflevector(__p0, __p1, 1, 3);
  64519. return __ret;
  64520. }
  64521. #else
  64522. __ai int64x2_t vtrn2q_s64(int64x2_t __p0, int64x2_t __p1) {
  64523. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  64524. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  64525. int64x2_t __ret;
  64526. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 3);
  64527. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  64528. return __ret;
  64529. }
  64530. #endif
  64531. #ifdef __LITTLE_ENDIAN__
  64532. __ai int16x8_t vtrn2q_s16(int16x8_t __p0, int16x8_t __p1) {
  64533. int16x8_t __ret;
  64534. __ret = __builtin_shufflevector(__p0, __p1, 1, 9, 3, 11, 5, 13, 7, 15);
  64535. return __ret;
  64536. }
  64537. #else
  64538. __ai int16x8_t vtrn2q_s16(int16x8_t __p0, int16x8_t __p1) {
  64539. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  64540. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  64541. int16x8_t __ret;
  64542. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 9, 3, 11, 5, 13, 7, 15);
  64543. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  64544. return __ret;
  64545. }
  64546. #endif
  64547. #ifdef __LITTLE_ENDIAN__
  64548. __ai uint8x8_t vtrn2_u8(uint8x8_t __p0, uint8x8_t __p1) {
  64549. uint8x8_t __ret;
  64550. __ret = __builtin_shufflevector(__p0, __p1, 1, 9, 3, 11, 5, 13, 7, 15);
  64551. return __ret;
  64552. }
  64553. #else
  64554. __ai uint8x8_t vtrn2_u8(uint8x8_t __p0, uint8x8_t __p1) {
  64555. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  64556. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  64557. uint8x8_t __ret;
  64558. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 9, 3, 11, 5, 13, 7, 15);
  64559. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  64560. return __ret;
  64561. }
  64562. #endif
  64563. #ifdef __LITTLE_ENDIAN__
  64564. __ai uint32x2_t vtrn2_u32(uint32x2_t __p0, uint32x2_t __p1) {
  64565. uint32x2_t __ret;
  64566. __ret = __builtin_shufflevector(__p0, __p1, 1, 3);
  64567. return __ret;
  64568. }
  64569. #else
  64570. __ai uint32x2_t vtrn2_u32(uint32x2_t __p0, uint32x2_t __p1) {
  64571. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  64572. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  64573. uint32x2_t __ret;
  64574. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 3);
  64575. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  64576. return __ret;
  64577. }
  64578. #endif
  64579. #ifdef __LITTLE_ENDIAN__
  64580. __ai uint16x4_t vtrn2_u16(uint16x4_t __p0, uint16x4_t __p1) {
  64581. uint16x4_t __ret;
  64582. __ret = __builtin_shufflevector(__p0, __p1, 1, 5, 3, 7);
  64583. return __ret;
  64584. }
  64585. #else
  64586. __ai uint16x4_t vtrn2_u16(uint16x4_t __p0, uint16x4_t __p1) {
  64587. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  64588. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  64589. uint16x4_t __ret;
  64590. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 5, 3, 7);
  64591. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  64592. return __ret;
  64593. }
  64594. #endif
  64595. #ifdef __LITTLE_ENDIAN__
  64596. __ai int8x8_t vtrn2_s8(int8x8_t __p0, int8x8_t __p1) {
  64597. int8x8_t __ret;
  64598. __ret = __builtin_shufflevector(__p0, __p1, 1, 9, 3, 11, 5, 13, 7, 15);
  64599. return __ret;
  64600. }
  64601. #else
  64602. __ai int8x8_t vtrn2_s8(int8x8_t __p0, int8x8_t __p1) {
  64603. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  64604. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  64605. int8x8_t __ret;
  64606. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 9, 3, 11, 5, 13, 7, 15);
  64607. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  64608. return __ret;
  64609. }
  64610. #endif
  64611. #ifdef __LITTLE_ENDIAN__
  64612. __ai float32x2_t vtrn2_f32(float32x2_t __p0, float32x2_t __p1) {
  64613. float32x2_t __ret;
  64614. __ret = __builtin_shufflevector(__p0, __p1, 1, 3);
  64615. return __ret;
  64616. }
  64617. #else
  64618. __ai float32x2_t vtrn2_f32(float32x2_t __p0, float32x2_t __p1) {
  64619. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  64620. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  64621. float32x2_t __ret;
  64622. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 3);
  64623. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  64624. return __ret;
  64625. }
  64626. #endif
  64627. #ifdef __LITTLE_ENDIAN__
  64628. __ai int32x2_t vtrn2_s32(int32x2_t __p0, int32x2_t __p1) {
  64629. int32x2_t __ret;
  64630. __ret = __builtin_shufflevector(__p0, __p1, 1, 3);
  64631. return __ret;
  64632. }
  64633. #else
  64634. __ai int32x2_t vtrn2_s32(int32x2_t __p0, int32x2_t __p1) {
  64635. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  64636. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  64637. int32x2_t __ret;
  64638. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 3);
  64639. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  64640. return __ret;
  64641. }
  64642. #endif
  64643. #ifdef __LITTLE_ENDIAN__
  64644. __ai int16x4_t vtrn2_s16(int16x4_t __p0, int16x4_t __p1) {
  64645. int16x4_t __ret;
  64646. __ret = __builtin_shufflevector(__p0, __p1, 1, 5, 3, 7);
  64647. return __ret;
  64648. }
  64649. #else
  64650. __ai int16x4_t vtrn2_s16(int16x4_t __p0, int16x4_t __p1) {
  64651. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  64652. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  64653. int16x4_t __ret;
  64654. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 5, 3, 7);
  64655. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  64656. return __ret;
  64657. }
  64658. #endif
  64659. #ifdef __LITTLE_ENDIAN__
  64660. __ai uint64x1_t vtst_p64(poly64x1_t __p0, poly64x1_t __p1) {
  64661. uint64x1_t __ret;
  64662. __ret = (uint64x1_t) __builtin_neon_vtst_v((int8x8_t)__p0, (int8x8_t)__p1, 19);
  64663. return __ret;
  64664. }
  64665. #else
  64666. __ai uint64x1_t vtst_p64(poly64x1_t __p0, poly64x1_t __p1) {
  64667. uint64x1_t __ret;
  64668. __ret = (uint64x1_t) __builtin_neon_vtst_v((int8x8_t)__p0, (int8x8_t)__p1, 19);
  64669. return __ret;
  64670. }
  64671. #endif
  64672. #ifdef __LITTLE_ENDIAN__
  64673. __ai uint64x2_t vtstq_p64(poly64x2_t __p0, poly64x2_t __p1) {
  64674. uint64x2_t __ret;
  64675. __ret = (uint64x2_t) __builtin_neon_vtstq_v((int8x16_t)__p0, (int8x16_t)__p1, 51);
  64676. return __ret;
  64677. }
  64678. #else
  64679. __ai uint64x2_t vtstq_p64(poly64x2_t __p0, poly64x2_t __p1) {
  64680. poly64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  64681. poly64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  64682. uint64x2_t __ret;
  64683. __ret = (uint64x2_t) __builtin_neon_vtstq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 51);
  64684. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  64685. return __ret;
  64686. }
  64687. #endif
  64688. #ifdef __LITTLE_ENDIAN__
  64689. __ai uint64x2_t vtstq_u64(uint64x2_t __p0, uint64x2_t __p1) {
  64690. uint64x2_t __ret;
  64691. __ret = (uint64x2_t) __builtin_neon_vtstq_v((int8x16_t)__p0, (int8x16_t)__p1, 51);
  64692. return __ret;
  64693. }
  64694. #else
  64695. __ai uint64x2_t vtstq_u64(uint64x2_t __p0, uint64x2_t __p1) {
  64696. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  64697. uint64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  64698. uint64x2_t __ret;
  64699. __ret = (uint64x2_t) __builtin_neon_vtstq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 51);
  64700. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  64701. return __ret;
  64702. }
  64703. #endif
  64704. #ifdef __LITTLE_ENDIAN__
  64705. __ai uint64x2_t vtstq_s64(int64x2_t __p0, int64x2_t __p1) {
  64706. uint64x2_t __ret;
  64707. __ret = (uint64x2_t) __builtin_neon_vtstq_v((int8x16_t)__p0, (int8x16_t)__p1, 51);
  64708. return __ret;
  64709. }
  64710. #else
  64711. __ai uint64x2_t vtstq_s64(int64x2_t __p0, int64x2_t __p1) {
  64712. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  64713. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  64714. uint64x2_t __ret;
  64715. __ret = (uint64x2_t) __builtin_neon_vtstq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 51);
  64716. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  64717. return __ret;
  64718. }
  64719. #endif
  64720. #ifdef __LITTLE_ENDIAN__
  64721. __ai uint64x1_t vtst_u64(uint64x1_t __p0, uint64x1_t __p1) {
  64722. uint64x1_t __ret;
  64723. __ret = (uint64x1_t) __builtin_neon_vtst_v((int8x8_t)__p0, (int8x8_t)__p1, 19);
  64724. return __ret;
  64725. }
  64726. #else
  64727. __ai uint64x1_t vtst_u64(uint64x1_t __p0, uint64x1_t __p1) {
  64728. uint64x1_t __ret;
  64729. __ret = (uint64x1_t) __builtin_neon_vtst_v((int8x8_t)__p0, (int8x8_t)__p1, 19);
  64730. return __ret;
  64731. }
  64732. #endif
  64733. #ifdef __LITTLE_ENDIAN__
  64734. __ai uint64x1_t vtst_s64(int64x1_t __p0, int64x1_t __p1) {
  64735. uint64x1_t __ret;
  64736. __ret = (uint64x1_t) __builtin_neon_vtst_v((int8x8_t)__p0, (int8x8_t)__p1, 19);
  64737. return __ret;
  64738. }
  64739. #else
  64740. __ai uint64x1_t vtst_s64(int64x1_t __p0, int64x1_t __p1) {
  64741. uint64x1_t __ret;
  64742. __ret = (uint64x1_t) __builtin_neon_vtst_v((int8x8_t)__p0, (int8x8_t)__p1, 19);
  64743. return __ret;
  64744. }
  64745. #endif
  64746. #ifdef __LITTLE_ENDIAN__
  64747. __ai uint64_t vtstd_u64(uint64_t __p0, uint64_t __p1) {
  64748. uint64_t __ret;
  64749. __ret = (uint64_t) __builtin_neon_vtstd_u64(__p0, __p1);
  64750. return __ret;
  64751. }
  64752. #else
  64753. __ai uint64_t vtstd_u64(uint64_t __p0, uint64_t __p1) {
  64754. uint64_t __ret;
  64755. __ret = (uint64_t) __builtin_neon_vtstd_u64(__p0, __p1);
  64756. return __ret;
  64757. }
  64758. #endif
  64759. #ifdef __LITTLE_ENDIAN__
  64760. __ai int64_t vtstd_s64(int64_t __p0, int64_t __p1) {
  64761. int64_t __ret;
  64762. __ret = (int64_t) __builtin_neon_vtstd_s64(__p0, __p1);
  64763. return __ret;
  64764. }
  64765. #else
  64766. __ai int64_t vtstd_s64(int64_t __p0, int64_t __p1) {
  64767. int64_t __ret;
  64768. __ret = (int64_t) __builtin_neon_vtstd_s64(__p0, __p1);
  64769. return __ret;
  64770. }
  64771. #endif
  64772. #ifdef __LITTLE_ENDIAN__
  64773. __ai int8_t vuqaddb_s8(int8_t __p0, int8_t __p1) {
  64774. int8_t __ret;
  64775. __ret = (int8_t) __builtin_neon_vuqaddb_s8(__p0, __p1);
  64776. return __ret;
  64777. }
  64778. #else
  64779. __ai int8_t vuqaddb_s8(int8_t __p0, int8_t __p1) {
  64780. int8_t __ret;
  64781. __ret = (int8_t) __builtin_neon_vuqaddb_s8(__p0, __p1);
  64782. return __ret;
  64783. }
  64784. #endif
  64785. #ifdef __LITTLE_ENDIAN__
  64786. __ai int32_t vuqadds_s32(int32_t __p0, int32_t __p1) {
  64787. int32_t __ret;
  64788. __ret = (int32_t) __builtin_neon_vuqadds_s32(__p0, __p1);
  64789. return __ret;
  64790. }
  64791. #else
  64792. __ai int32_t vuqadds_s32(int32_t __p0, int32_t __p1) {
  64793. int32_t __ret;
  64794. __ret = (int32_t) __builtin_neon_vuqadds_s32(__p0, __p1);
  64795. return __ret;
  64796. }
  64797. #endif
  64798. #ifdef __LITTLE_ENDIAN__
  64799. __ai int64_t vuqaddd_s64(int64_t __p0, int64_t __p1) {
  64800. int64_t __ret;
  64801. __ret = (int64_t) __builtin_neon_vuqaddd_s64(__p0, __p1);
  64802. return __ret;
  64803. }
  64804. #else
  64805. __ai int64_t vuqaddd_s64(int64_t __p0, int64_t __p1) {
  64806. int64_t __ret;
  64807. __ret = (int64_t) __builtin_neon_vuqaddd_s64(__p0, __p1);
  64808. return __ret;
  64809. }
  64810. #endif
  64811. #ifdef __LITTLE_ENDIAN__
  64812. __ai int16_t vuqaddh_s16(int16_t __p0, int16_t __p1) {
  64813. int16_t __ret;
  64814. __ret = (int16_t) __builtin_neon_vuqaddh_s16(__p0, __p1);
  64815. return __ret;
  64816. }
  64817. #else
  64818. __ai int16_t vuqaddh_s16(int16_t __p0, int16_t __p1) {
  64819. int16_t __ret;
  64820. __ret = (int16_t) __builtin_neon_vuqaddh_s16(__p0, __p1);
  64821. return __ret;
  64822. }
  64823. #endif
  64824. #ifdef __LITTLE_ENDIAN__
  64825. __ai int8x16_t vuqaddq_s8(int8x16_t __p0, int8x16_t __p1) {
  64826. int8x16_t __ret;
  64827. __ret = (int8x16_t) __builtin_neon_vuqaddq_v((int8x16_t)__p0, (int8x16_t)__p1, 32);
  64828. return __ret;
  64829. }
  64830. #else
  64831. __ai int8x16_t vuqaddq_s8(int8x16_t __p0, int8x16_t __p1) {
  64832. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  64833. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  64834. int8x16_t __ret;
  64835. __ret = (int8x16_t) __builtin_neon_vuqaddq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 32);
  64836. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  64837. return __ret;
  64838. }
  64839. #endif
  64840. #ifdef __LITTLE_ENDIAN__
  64841. __ai int32x4_t vuqaddq_s32(int32x4_t __p0, int32x4_t __p1) {
  64842. int32x4_t __ret;
  64843. __ret = (int32x4_t) __builtin_neon_vuqaddq_v((int8x16_t)__p0, (int8x16_t)__p1, 34);
  64844. return __ret;
  64845. }
  64846. #else
  64847. __ai int32x4_t vuqaddq_s32(int32x4_t __p0, int32x4_t __p1) {
  64848. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  64849. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  64850. int32x4_t __ret;
  64851. __ret = (int32x4_t) __builtin_neon_vuqaddq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 34);
  64852. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  64853. return __ret;
  64854. }
  64855. #endif
  64856. #ifdef __LITTLE_ENDIAN__
  64857. __ai int64x2_t vuqaddq_s64(int64x2_t __p0, int64x2_t __p1) {
  64858. int64x2_t __ret;
  64859. __ret = (int64x2_t) __builtin_neon_vuqaddq_v((int8x16_t)__p0, (int8x16_t)__p1, 35);
  64860. return __ret;
  64861. }
  64862. #else
  64863. __ai int64x2_t vuqaddq_s64(int64x2_t __p0, int64x2_t __p1) {
  64864. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  64865. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  64866. int64x2_t __ret;
  64867. __ret = (int64x2_t) __builtin_neon_vuqaddq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 35);
  64868. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  64869. return __ret;
  64870. }
  64871. #endif
  64872. #ifdef __LITTLE_ENDIAN__
  64873. __ai int16x8_t vuqaddq_s16(int16x8_t __p0, int16x8_t __p1) {
  64874. int16x8_t __ret;
  64875. __ret = (int16x8_t) __builtin_neon_vuqaddq_v((int8x16_t)__p0, (int8x16_t)__p1, 33);
  64876. return __ret;
  64877. }
  64878. #else
  64879. __ai int16x8_t vuqaddq_s16(int16x8_t __p0, int16x8_t __p1) {
  64880. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  64881. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  64882. int16x8_t __ret;
  64883. __ret = (int16x8_t) __builtin_neon_vuqaddq_v((int8x16_t)__rev0, (int8x16_t)__rev1, 33);
  64884. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  64885. return __ret;
  64886. }
  64887. #endif
  64888. #ifdef __LITTLE_ENDIAN__
  64889. __ai int8x8_t vuqadd_s8(int8x8_t __p0, int8x8_t __p1) {
  64890. int8x8_t __ret;
  64891. __ret = (int8x8_t) __builtin_neon_vuqadd_v((int8x8_t)__p0, (int8x8_t)__p1, 0);
  64892. return __ret;
  64893. }
  64894. #else
  64895. __ai int8x8_t vuqadd_s8(int8x8_t __p0, int8x8_t __p1) {
  64896. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  64897. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  64898. int8x8_t __ret;
  64899. __ret = (int8x8_t) __builtin_neon_vuqadd_v((int8x8_t)__rev0, (int8x8_t)__rev1, 0);
  64900. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  64901. return __ret;
  64902. }
  64903. #endif
  64904. #ifdef __LITTLE_ENDIAN__
  64905. __ai int32x2_t vuqadd_s32(int32x2_t __p0, int32x2_t __p1) {
  64906. int32x2_t __ret;
  64907. __ret = (int32x2_t) __builtin_neon_vuqadd_v((int8x8_t)__p0, (int8x8_t)__p1, 2);
  64908. return __ret;
  64909. }
  64910. #else
  64911. __ai int32x2_t vuqadd_s32(int32x2_t __p0, int32x2_t __p1) {
  64912. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  64913. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  64914. int32x2_t __ret;
  64915. __ret = (int32x2_t) __builtin_neon_vuqadd_v((int8x8_t)__rev0, (int8x8_t)__rev1, 2);
  64916. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  64917. return __ret;
  64918. }
  64919. #endif
  64920. #ifdef __LITTLE_ENDIAN__
  64921. __ai int64x1_t vuqadd_s64(int64x1_t __p0, int64x1_t __p1) {
  64922. int64x1_t __ret;
  64923. __ret = (int64x1_t) __builtin_neon_vuqadd_v((int8x8_t)__p0, (int8x8_t)__p1, 3);
  64924. return __ret;
  64925. }
  64926. #else
  64927. __ai int64x1_t vuqadd_s64(int64x1_t __p0, int64x1_t __p1) {
  64928. int64x1_t __ret;
  64929. __ret = (int64x1_t) __builtin_neon_vuqadd_v((int8x8_t)__p0, (int8x8_t)__p1, 3);
  64930. return __ret;
  64931. }
  64932. #endif
  64933. #ifdef __LITTLE_ENDIAN__
  64934. __ai int16x4_t vuqadd_s16(int16x4_t __p0, int16x4_t __p1) {
  64935. int16x4_t __ret;
  64936. __ret = (int16x4_t) __builtin_neon_vuqadd_v((int8x8_t)__p0, (int8x8_t)__p1, 1);
  64937. return __ret;
  64938. }
  64939. #else
  64940. __ai int16x4_t vuqadd_s16(int16x4_t __p0, int16x4_t __p1) {
  64941. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  64942. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  64943. int16x4_t __ret;
  64944. __ret = (int16x4_t) __builtin_neon_vuqadd_v((int8x8_t)__rev0, (int8x8_t)__rev1, 1);
  64945. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  64946. return __ret;
  64947. }
  64948. #endif
  64949. #ifdef __LITTLE_ENDIAN__
  64950. __ai poly8x8_t vuzp1_p8(poly8x8_t __p0, poly8x8_t __p1) {
  64951. poly8x8_t __ret;
  64952. __ret = __builtin_shufflevector(__p0, __p1, 0, 2, 4, 6, 8, 10, 12, 14);
  64953. return __ret;
  64954. }
  64955. #else
  64956. __ai poly8x8_t vuzp1_p8(poly8x8_t __p0, poly8x8_t __p1) {
  64957. poly8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  64958. poly8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  64959. poly8x8_t __ret;
  64960. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 2, 4, 6, 8, 10, 12, 14);
  64961. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  64962. return __ret;
  64963. }
  64964. #endif
  64965. #ifdef __LITTLE_ENDIAN__
  64966. __ai poly16x4_t vuzp1_p16(poly16x4_t __p0, poly16x4_t __p1) {
  64967. poly16x4_t __ret;
  64968. __ret = __builtin_shufflevector(__p0, __p1, 0, 2, 4, 6);
  64969. return __ret;
  64970. }
  64971. #else
  64972. __ai poly16x4_t vuzp1_p16(poly16x4_t __p0, poly16x4_t __p1) {
  64973. poly16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  64974. poly16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  64975. poly16x4_t __ret;
  64976. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 2, 4, 6);
  64977. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  64978. return __ret;
  64979. }
  64980. #endif
  64981. #ifdef __LITTLE_ENDIAN__
  64982. __ai poly8x16_t vuzp1q_p8(poly8x16_t __p0, poly8x16_t __p1) {
  64983. poly8x16_t __ret;
  64984. __ret = __builtin_shufflevector(__p0, __p1, 0, 2, 4, 6, 8, 10, 12, 14, 16, 18, 20, 22, 24, 26, 28, 30);
  64985. return __ret;
  64986. }
  64987. #else
  64988. __ai poly8x16_t vuzp1q_p8(poly8x16_t __p0, poly8x16_t __p1) {
  64989. poly8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  64990. poly8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  64991. poly8x16_t __ret;
  64992. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 2, 4, 6, 8, 10, 12, 14, 16, 18, 20, 22, 24, 26, 28, 30);
  64993. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  64994. return __ret;
  64995. }
  64996. #endif
  64997. #ifdef __LITTLE_ENDIAN__
  64998. __ai poly64x2_t vuzp1q_p64(poly64x2_t __p0, poly64x2_t __p1) {
  64999. poly64x2_t __ret;
  65000. __ret = __builtin_shufflevector(__p0, __p1, 0, 2);
  65001. return __ret;
  65002. }
  65003. #else
  65004. __ai poly64x2_t vuzp1q_p64(poly64x2_t __p0, poly64x2_t __p1) {
  65005. poly64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  65006. poly64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  65007. poly64x2_t __ret;
  65008. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 2);
  65009. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  65010. return __ret;
  65011. }
  65012. #endif
  65013. #ifdef __LITTLE_ENDIAN__
  65014. __ai poly16x8_t vuzp1q_p16(poly16x8_t __p0, poly16x8_t __p1) {
  65015. poly16x8_t __ret;
  65016. __ret = __builtin_shufflevector(__p0, __p1, 0, 2, 4, 6, 8, 10, 12, 14);
  65017. return __ret;
  65018. }
  65019. #else
  65020. __ai poly16x8_t vuzp1q_p16(poly16x8_t __p0, poly16x8_t __p1) {
  65021. poly16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  65022. poly16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  65023. poly16x8_t __ret;
  65024. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 2, 4, 6, 8, 10, 12, 14);
  65025. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  65026. return __ret;
  65027. }
  65028. #endif
  65029. #ifdef __LITTLE_ENDIAN__
  65030. __ai uint8x16_t vuzp1q_u8(uint8x16_t __p0, uint8x16_t __p1) {
  65031. uint8x16_t __ret;
  65032. __ret = __builtin_shufflevector(__p0, __p1, 0, 2, 4, 6, 8, 10, 12, 14, 16, 18, 20, 22, 24, 26, 28, 30);
  65033. return __ret;
  65034. }
  65035. #else
  65036. __ai uint8x16_t vuzp1q_u8(uint8x16_t __p0, uint8x16_t __p1) {
  65037. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  65038. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  65039. uint8x16_t __ret;
  65040. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 2, 4, 6, 8, 10, 12, 14, 16, 18, 20, 22, 24, 26, 28, 30);
  65041. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  65042. return __ret;
  65043. }
  65044. #endif
  65045. #ifdef __LITTLE_ENDIAN__
  65046. __ai uint32x4_t vuzp1q_u32(uint32x4_t __p0, uint32x4_t __p1) {
  65047. uint32x4_t __ret;
  65048. __ret = __builtin_shufflevector(__p0, __p1, 0, 2, 4, 6);
  65049. return __ret;
  65050. }
  65051. #else
  65052. __ai uint32x4_t vuzp1q_u32(uint32x4_t __p0, uint32x4_t __p1) {
  65053. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  65054. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  65055. uint32x4_t __ret;
  65056. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 2, 4, 6);
  65057. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  65058. return __ret;
  65059. }
  65060. #endif
  65061. #ifdef __LITTLE_ENDIAN__
  65062. __ai uint64x2_t vuzp1q_u64(uint64x2_t __p0, uint64x2_t __p1) {
  65063. uint64x2_t __ret;
  65064. __ret = __builtin_shufflevector(__p0, __p1, 0, 2);
  65065. return __ret;
  65066. }
  65067. #else
  65068. __ai uint64x2_t vuzp1q_u64(uint64x2_t __p0, uint64x2_t __p1) {
  65069. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  65070. uint64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  65071. uint64x2_t __ret;
  65072. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 2);
  65073. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  65074. return __ret;
  65075. }
  65076. #endif
  65077. #ifdef __LITTLE_ENDIAN__
  65078. __ai uint16x8_t vuzp1q_u16(uint16x8_t __p0, uint16x8_t __p1) {
  65079. uint16x8_t __ret;
  65080. __ret = __builtin_shufflevector(__p0, __p1, 0, 2, 4, 6, 8, 10, 12, 14);
  65081. return __ret;
  65082. }
  65083. #else
  65084. __ai uint16x8_t vuzp1q_u16(uint16x8_t __p0, uint16x8_t __p1) {
  65085. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  65086. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  65087. uint16x8_t __ret;
  65088. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 2, 4, 6, 8, 10, 12, 14);
  65089. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  65090. return __ret;
  65091. }
  65092. #endif
  65093. #ifdef __LITTLE_ENDIAN__
  65094. __ai int8x16_t vuzp1q_s8(int8x16_t __p0, int8x16_t __p1) {
  65095. int8x16_t __ret;
  65096. __ret = __builtin_shufflevector(__p0, __p1, 0, 2, 4, 6, 8, 10, 12, 14, 16, 18, 20, 22, 24, 26, 28, 30);
  65097. return __ret;
  65098. }
  65099. #else
  65100. __ai int8x16_t vuzp1q_s8(int8x16_t __p0, int8x16_t __p1) {
  65101. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  65102. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  65103. int8x16_t __ret;
  65104. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 2, 4, 6, 8, 10, 12, 14, 16, 18, 20, 22, 24, 26, 28, 30);
  65105. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  65106. return __ret;
  65107. }
  65108. #endif
  65109. #ifdef __LITTLE_ENDIAN__
  65110. __ai float64x2_t vuzp1q_f64(float64x2_t __p0, float64x2_t __p1) {
  65111. float64x2_t __ret;
  65112. __ret = __builtin_shufflevector(__p0, __p1, 0, 2);
  65113. return __ret;
  65114. }
  65115. #else
  65116. __ai float64x2_t vuzp1q_f64(float64x2_t __p0, float64x2_t __p1) {
  65117. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  65118. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  65119. float64x2_t __ret;
  65120. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 2);
  65121. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  65122. return __ret;
  65123. }
  65124. #endif
  65125. #ifdef __LITTLE_ENDIAN__
  65126. __ai float32x4_t vuzp1q_f32(float32x4_t __p0, float32x4_t __p1) {
  65127. float32x4_t __ret;
  65128. __ret = __builtin_shufflevector(__p0, __p1, 0, 2, 4, 6);
  65129. return __ret;
  65130. }
  65131. #else
  65132. __ai float32x4_t vuzp1q_f32(float32x4_t __p0, float32x4_t __p1) {
  65133. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  65134. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  65135. float32x4_t __ret;
  65136. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 2, 4, 6);
  65137. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  65138. return __ret;
  65139. }
  65140. #endif
  65141. #ifdef __LITTLE_ENDIAN__
  65142. __ai int32x4_t vuzp1q_s32(int32x4_t __p0, int32x4_t __p1) {
  65143. int32x4_t __ret;
  65144. __ret = __builtin_shufflevector(__p0, __p1, 0, 2, 4, 6);
  65145. return __ret;
  65146. }
  65147. #else
  65148. __ai int32x4_t vuzp1q_s32(int32x4_t __p0, int32x4_t __p1) {
  65149. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  65150. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  65151. int32x4_t __ret;
  65152. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 2, 4, 6);
  65153. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  65154. return __ret;
  65155. }
  65156. #endif
  65157. #ifdef __LITTLE_ENDIAN__
  65158. __ai int64x2_t vuzp1q_s64(int64x2_t __p0, int64x2_t __p1) {
  65159. int64x2_t __ret;
  65160. __ret = __builtin_shufflevector(__p0, __p1, 0, 2);
  65161. return __ret;
  65162. }
  65163. #else
  65164. __ai int64x2_t vuzp1q_s64(int64x2_t __p0, int64x2_t __p1) {
  65165. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  65166. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  65167. int64x2_t __ret;
  65168. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 2);
  65169. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  65170. return __ret;
  65171. }
  65172. #endif
  65173. #ifdef __LITTLE_ENDIAN__
  65174. __ai int16x8_t vuzp1q_s16(int16x8_t __p0, int16x8_t __p1) {
  65175. int16x8_t __ret;
  65176. __ret = __builtin_shufflevector(__p0, __p1, 0, 2, 4, 6, 8, 10, 12, 14);
  65177. return __ret;
  65178. }
  65179. #else
  65180. __ai int16x8_t vuzp1q_s16(int16x8_t __p0, int16x8_t __p1) {
  65181. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  65182. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  65183. int16x8_t __ret;
  65184. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 2, 4, 6, 8, 10, 12, 14);
  65185. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  65186. return __ret;
  65187. }
  65188. #endif
  65189. #ifdef __LITTLE_ENDIAN__
  65190. __ai uint8x8_t vuzp1_u8(uint8x8_t __p0, uint8x8_t __p1) {
  65191. uint8x8_t __ret;
  65192. __ret = __builtin_shufflevector(__p0, __p1, 0, 2, 4, 6, 8, 10, 12, 14);
  65193. return __ret;
  65194. }
  65195. #else
  65196. __ai uint8x8_t vuzp1_u8(uint8x8_t __p0, uint8x8_t __p1) {
  65197. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  65198. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  65199. uint8x8_t __ret;
  65200. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 2, 4, 6, 8, 10, 12, 14);
  65201. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  65202. return __ret;
  65203. }
  65204. #endif
  65205. #ifdef __LITTLE_ENDIAN__
  65206. __ai uint32x2_t vuzp1_u32(uint32x2_t __p0, uint32x2_t __p1) {
  65207. uint32x2_t __ret;
  65208. __ret = __builtin_shufflevector(__p0, __p1, 0, 2);
  65209. return __ret;
  65210. }
  65211. #else
  65212. __ai uint32x2_t vuzp1_u32(uint32x2_t __p0, uint32x2_t __p1) {
  65213. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  65214. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  65215. uint32x2_t __ret;
  65216. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 2);
  65217. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  65218. return __ret;
  65219. }
  65220. #endif
  65221. #ifdef __LITTLE_ENDIAN__
  65222. __ai uint16x4_t vuzp1_u16(uint16x4_t __p0, uint16x4_t __p1) {
  65223. uint16x4_t __ret;
  65224. __ret = __builtin_shufflevector(__p0, __p1, 0, 2, 4, 6);
  65225. return __ret;
  65226. }
  65227. #else
  65228. __ai uint16x4_t vuzp1_u16(uint16x4_t __p0, uint16x4_t __p1) {
  65229. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  65230. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  65231. uint16x4_t __ret;
  65232. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 2, 4, 6);
  65233. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  65234. return __ret;
  65235. }
  65236. #endif
  65237. #ifdef __LITTLE_ENDIAN__
  65238. __ai int8x8_t vuzp1_s8(int8x8_t __p0, int8x8_t __p1) {
  65239. int8x8_t __ret;
  65240. __ret = __builtin_shufflevector(__p0, __p1, 0, 2, 4, 6, 8, 10, 12, 14);
  65241. return __ret;
  65242. }
  65243. #else
  65244. __ai int8x8_t vuzp1_s8(int8x8_t __p0, int8x8_t __p1) {
  65245. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  65246. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  65247. int8x8_t __ret;
  65248. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 2, 4, 6, 8, 10, 12, 14);
  65249. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  65250. return __ret;
  65251. }
  65252. #endif
  65253. #ifdef __LITTLE_ENDIAN__
  65254. __ai float32x2_t vuzp1_f32(float32x2_t __p0, float32x2_t __p1) {
  65255. float32x2_t __ret;
  65256. __ret = __builtin_shufflevector(__p0, __p1, 0, 2);
  65257. return __ret;
  65258. }
  65259. #else
  65260. __ai float32x2_t vuzp1_f32(float32x2_t __p0, float32x2_t __p1) {
  65261. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  65262. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  65263. float32x2_t __ret;
  65264. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 2);
  65265. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  65266. return __ret;
  65267. }
  65268. #endif
  65269. #ifdef __LITTLE_ENDIAN__
  65270. __ai int32x2_t vuzp1_s32(int32x2_t __p0, int32x2_t __p1) {
  65271. int32x2_t __ret;
  65272. __ret = __builtin_shufflevector(__p0, __p1, 0, 2);
  65273. return __ret;
  65274. }
  65275. #else
  65276. __ai int32x2_t vuzp1_s32(int32x2_t __p0, int32x2_t __p1) {
  65277. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  65278. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  65279. int32x2_t __ret;
  65280. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 2);
  65281. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  65282. return __ret;
  65283. }
  65284. #endif
  65285. #ifdef __LITTLE_ENDIAN__
  65286. __ai int16x4_t vuzp1_s16(int16x4_t __p0, int16x4_t __p1) {
  65287. int16x4_t __ret;
  65288. __ret = __builtin_shufflevector(__p0, __p1, 0, 2, 4, 6);
  65289. return __ret;
  65290. }
  65291. #else
  65292. __ai int16x4_t vuzp1_s16(int16x4_t __p0, int16x4_t __p1) {
  65293. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  65294. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  65295. int16x4_t __ret;
  65296. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 2, 4, 6);
  65297. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  65298. return __ret;
  65299. }
  65300. #endif
  65301. #ifdef __LITTLE_ENDIAN__
  65302. __ai poly8x8_t vuzp2_p8(poly8x8_t __p0, poly8x8_t __p1) {
  65303. poly8x8_t __ret;
  65304. __ret = __builtin_shufflevector(__p0, __p1, 1, 3, 5, 7, 9, 11, 13, 15);
  65305. return __ret;
  65306. }
  65307. #else
  65308. __ai poly8x8_t vuzp2_p8(poly8x8_t __p0, poly8x8_t __p1) {
  65309. poly8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  65310. poly8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  65311. poly8x8_t __ret;
  65312. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 3, 5, 7, 9, 11, 13, 15);
  65313. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  65314. return __ret;
  65315. }
  65316. #endif
  65317. #ifdef __LITTLE_ENDIAN__
  65318. __ai poly16x4_t vuzp2_p16(poly16x4_t __p0, poly16x4_t __p1) {
  65319. poly16x4_t __ret;
  65320. __ret = __builtin_shufflevector(__p0, __p1, 1, 3, 5, 7);
  65321. return __ret;
  65322. }
  65323. #else
  65324. __ai poly16x4_t vuzp2_p16(poly16x4_t __p0, poly16x4_t __p1) {
  65325. poly16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  65326. poly16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  65327. poly16x4_t __ret;
  65328. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 3, 5, 7);
  65329. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  65330. return __ret;
  65331. }
  65332. #endif
  65333. #ifdef __LITTLE_ENDIAN__
  65334. __ai poly8x16_t vuzp2q_p8(poly8x16_t __p0, poly8x16_t __p1) {
  65335. poly8x16_t __ret;
  65336. __ret = __builtin_shufflevector(__p0, __p1, 1, 3, 5, 7, 9, 11, 13, 15, 17, 19, 21, 23, 25, 27, 29, 31);
  65337. return __ret;
  65338. }
  65339. #else
  65340. __ai poly8x16_t vuzp2q_p8(poly8x16_t __p0, poly8x16_t __p1) {
  65341. poly8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  65342. poly8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  65343. poly8x16_t __ret;
  65344. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 3, 5, 7, 9, 11, 13, 15, 17, 19, 21, 23, 25, 27, 29, 31);
  65345. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  65346. return __ret;
  65347. }
  65348. #endif
  65349. #ifdef __LITTLE_ENDIAN__
  65350. __ai poly64x2_t vuzp2q_p64(poly64x2_t __p0, poly64x2_t __p1) {
  65351. poly64x2_t __ret;
  65352. __ret = __builtin_shufflevector(__p0, __p1, 1, 3);
  65353. return __ret;
  65354. }
  65355. #else
  65356. __ai poly64x2_t vuzp2q_p64(poly64x2_t __p0, poly64x2_t __p1) {
  65357. poly64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  65358. poly64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  65359. poly64x2_t __ret;
  65360. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 3);
  65361. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  65362. return __ret;
  65363. }
  65364. #endif
  65365. #ifdef __LITTLE_ENDIAN__
  65366. __ai poly16x8_t vuzp2q_p16(poly16x8_t __p0, poly16x8_t __p1) {
  65367. poly16x8_t __ret;
  65368. __ret = __builtin_shufflevector(__p0, __p1, 1, 3, 5, 7, 9, 11, 13, 15);
  65369. return __ret;
  65370. }
  65371. #else
  65372. __ai poly16x8_t vuzp2q_p16(poly16x8_t __p0, poly16x8_t __p1) {
  65373. poly16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  65374. poly16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  65375. poly16x8_t __ret;
  65376. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 3, 5, 7, 9, 11, 13, 15);
  65377. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  65378. return __ret;
  65379. }
  65380. #endif
  65381. #ifdef __LITTLE_ENDIAN__
  65382. __ai uint8x16_t vuzp2q_u8(uint8x16_t __p0, uint8x16_t __p1) {
  65383. uint8x16_t __ret;
  65384. __ret = __builtin_shufflevector(__p0, __p1, 1, 3, 5, 7, 9, 11, 13, 15, 17, 19, 21, 23, 25, 27, 29, 31);
  65385. return __ret;
  65386. }
  65387. #else
  65388. __ai uint8x16_t vuzp2q_u8(uint8x16_t __p0, uint8x16_t __p1) {
  65389. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  65390. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  65391. uint8x16_t __ret;
  65392. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 3, 5, 7, 9, 11, 13, 15, 17, 19, 21, 23, 25, 27, 29, 31);
  65393. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  65394. return __ret;
  65395. }
  65396. #endif
  65397. #ifdef __LITTLE_ENDIAN__
  65398. __ai uint32x4_t vuzp2q_u32(uint32x4_t __p0, uint32x4_t __p1) {
  65399. uint32x4_t __ret;
  65400. __ret = __builtin_shufflevector(__p0, __p1, 1, 3, 5, 7);
  65401. return __ret;
  65402. }
  65403. #else
  65404. __ai uint32x4_t vuzp2q_u32(uint32x4_t __p0, uint32x4_t __p1) {
  65405. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  65406. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  65407. uint32x4_t __ret;
  65408. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 3, 5, 7);
  65409. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  65410. return __ret;
  65411. }
  65412. #endif
  65413. #ifdef __LITTLE_ENDIAN__
  65414. __ai uint64x2_t vuzp2q_u64(uint64x2_t __p0, uint64x2_t __p1) {
  65415. uint64x2_t __ret;
  65416. __ret = __builtin_shufflevector(__p0, __p1, 1, 3);
  65417. return __ret;
  65418. }
  65419. #else
  65420. __ai uint64x2_t vuzp2q_u64(uint64x2_t __p0, uint64x2_t __p1) {
  65421. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  65422. uint64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  65423. uint64x2_t __ret;
  65424. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 3);
  65425. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  65426. return __ret;
  65427. }
  65428. #endif
  65429. #ifdef __LITTLE_ENDIAN__
  65430. __ai uint16x8_t vuzp2q_u16(uint16x8_t __p0, uint16x8_t __p1) {
  65431. uint16x8_t __ret;
  65432. __ret = __builtin_shufflevector(__p0, __p1, 1, 3, 5, 7, 9, 11, 13, 15);
  65433. return __ret;
  65434. }
  65435. #else
  65436. __ai uint16x8_t vuzp2q_u16(uint16x8_t __p0, uint16x8_t __p1) {
  65437. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  65438. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  65439. uint16x8_t __ret;
  65440. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 3, 5, 7, 9, 11, 13, 15);
  65441. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  65442. return __ret;
  65443. }
  65444. #endif
  65445. #ifdef __LITTLE_ENDIAN__
  65446. __ai int8x16_t vuzp2q_s8(int8x16_t __p0, int8x16_t __p1) {
  65447. int8x16_t __ret;
  65448. __ret = __builtin_shufflevector(__p0, __p1, 1, 3, 5, 7, 9, 11, 13, 15, 17, 19, 21, 23, 25, 27, 29, 31);
  65449. return __ret;
  65450. }
  65451. #else
  65452. __ai int8x16_t vuzp2q_s8(int8x16_t __p0, int8x16_t __p1) {
  65453. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  65454. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  65455. int8x16_t __ret;
  65456. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 3, 5, 7, 9, 11, 13, 15, 17, 19, 21, 23, 25, 27, 29, 31);
  65457. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  65458. return __ret;
  65459. }
  65460. #endif
  65461. #ifdef __LITTLE_ENDIAN__
  65462. __ai float64x2_t vuzp2q_f64(float64x2_t __p0, float64x2_t __p1) {
  65463. float64x2_t __ret;
  65464. __ret = __builtin_shufflevector(__p0, __p1, 1, 3);
  65465. return __ret;
  65466. }
  65467. #else
  65468. __ai float64x2_t vuzp2q_f64(float64x2_t __p0, float64x2_t __p1) {
  65469. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  65470. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  65471. float64x2_t __ret;
  65472. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 3);
  65473. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  65474. return __ret;
  65475. }
  65476. #endif
  65477. #ifdef __LITTLE_ENDIAN__
  65478. __ai float32x4_t vuzp2q_f32(float32x4_t __p0, float32x4_t __p1) {
  65479. float32x4_t __ret;
  65480. __ret = __builtin_shufflevector(__p0, __p1, 1, 3, 5, 7);
  65481. return __ret;
  65482. }
  65483. #else
  65484. __ai float32x4_t vuzp2q_f32(float32x4_t __p0, float32x4_t __p1) {
  65485. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  65486. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  65487. float32x4_t __ret;
  65488. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 3, 5, 7);
  65489. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  65490. return __ret;
  65491. }
  65492. #endif
  65493. #ifdef __LITTLE_ENDIAN__
  65494. __ai int32x4_t vuzp2q_s32(int32x4_t __p0, int32x4_t __p1) {
  65495. int32x4_t __ret;
  65496. __ret = __builtin_shufflevector(__p0, __p1, 1, 3, 5, 7);
  65497. return __ret;
  65498. }
  65499. #else
  65500. __ai int32x4_t vuzp2q_s32(int32x4_t __p0, int32x4_t __p1) {
  65501. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  65502. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  65503. int32x4_t __ret;
  65504. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 3, 5, 7);
  65505. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  65506. return __ret;
  65507. }
  65508. #endif
  65509. #ifdef __LITTLE_ENDIAN__
  65510. __ai int64x2_t vuzp2q_s64(int64x2_t __p0, int64x2_t __p1) {
  65511. int64x2_t __ret;
  65512. __ret = __builtin_shufflevector(__p0, __p1, 1, 3);
  65513. return __ret;
  65514. }
  65515. #else
  65516. __ai int64x2_t vuzp2q_s64(int64x2_t __p0, int64x2_t __p1) {
  65517. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  65518. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  65519. int64x2_t __ret;
  65520. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 3);
  65521. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  65522. return __ret;
  65523. }
  65524. #endif
  65525. #ifdef __LITTLE_ENDIAN__
  65526. __ai int16x8_t vuzp2q_s16(int16x8_t __p0, int16x8_t __p1) {
  65527. int16x8_t __ret;
  65528. __ret = __builtin_shufflevector(__p0, __p1, 1, 3, 5, 7, 9, 11, 13, 15);
  65529. return __ret;
  65530. }
  65531. #else
  65532. __ai int16x8_t vuzp2q_s16(int16x8_t __p0, int16x8_t __p1) {
  65533. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  65534. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  65535. int16x8_t __ret;
  65536. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 3, 5, 7, 9, 11, 13, 15);
  65537. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  65538. return __ret;
  65539. }
  65540. #endif
  65541. #ifdef __LITTLE_ENDIAN__
  65542. __ai uint8x8_t vuzp2_u8(uint8x8_t __p0, uint8x8_t __p1) {
  65543. uint8x8_t __ret;
  65544. __ret = __builtin_shufflevector(__p0, __p1, 1, 3, 5, 7, 9, 11, 13, 15);
  65545. return __ret;
  65546. }
  65547. #else
  65548. __ai uint8x8_t vuzp2_u8(uint8x8_t __p0, uint8x8_t __p1) {
  65549. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  65550. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  65551. uint8x8_t __ret;
  65552. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 3, 5, 7, 9, 11, 13, 15);
  65553. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  65554. return __ret;
  65555. }
  65556. #endif
  65557. #ifdef __LITTLE_ENDIAN__
  65558. __ai uint32x2_t vuzp2_u32(uint32x2_t __p0, uint32x2_t __p1) {
  65559. uint32x2_t __ret;
  65560. __ret = __builtin_shufflevector(__p0, __p1, 1, 3);
  65561. return __ret;
  65562. }
  65563. #else
  65564. __ai uint32x2_t vuzp2_u32(uint32x2_t __p0, uint32x2_t __p1) {
  65565. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  65566. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  65567. uint32x2_t __ret;
  65568. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 3);
  65569. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  65570. return __ret;
  65571. }
  65572. #endif
  65573. #ifdef __LITTLE_ENDIAN__
  65574. __ai uint16x4_t vuzp2_u16(uint16x4_t __p0, uint16x4_t __p1) {
  65575. uint16x4_t __ret;
  65576. __ret = __builtin_shufflevector(__p0, __p1, 1, 3, 5, 7);
  65577. return __ret;
  65578. }
  65579. #else
  65580. __ai uint16x4_t vuzp2_u16(uint16x4_t __p0, uint16x4_t __p1) {
  65581. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  65582. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  65583. uint16x4_t __ret;
  65584. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 3, 5, 7);
  65585. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  65586. return __ret;
  65587. }
  65588. #endif
  65589. #ifdef __LITTLE_ENDIAN__
  65590. __ai int8x8_t vuzp2_s8(int8x8_t __p0, int8x8_t __p1) {
  65591. int8x8_t __ret;
  65592. __ret = __builtin_shufflevector(__p0, __p1, 1, 3, 5, 7, 9, 11, 13, 15);
  65593. return __ret;
  65594. }
  65595. #else
  65596. __ai int8x8_t vuzp2_s8(int8x8_t __p0, int8x8_t __p1) {
  65597. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  65598. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  65599. int8x8_t __ret;
  65600. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 3, 5, 7, 9, 11, 13, 15);
  65601. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  65602. return __ret;
  65603. }
  65604. #endif
  65605. #ifdef __LITTLE_ENDIAN__
  65606. __ai float32x2_t vuzp2_f32(float32x2_t __p0, float32x2_t __p1) {
  65607. float32x2_t __ret;
  65608. __ret = __builtin_shufflevector(__p0, __p1, 1, 3);
  65609. return __ret;
  65610. }
  65611. #else
  65612. __ai float32x2_t vuzp2_f32(float32x2_t __p0, float32x2_t __p1) {
  65613. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  65614. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  65615. float32x2_t __ret;
  65616. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 3);
  65617. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  65618. return __ret;
  65619. }
  65620. #endif
  65621. #ifdef __LITTLE_ENDIAN__
  65622. __ai int32x2_t vuzp2_s32(int32x2_t __p0, int32x2_t __p1) {
  65623. int32x2_t __ret;
  65624. __ret = __builtin_shufflevector(__p0, __p1, 1, 3);
  65625. return __ret;
  65626. }
  65627. #else
  65628. __ai int32x2_t vuzp2_s32(int32x2_t __p0, int32x2_t __p1) {
  65629. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  65630. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  65631. int32x2_t __ret;
  65632. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 3);
  65633. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  65634. return __ret;
  65635. }
  65636. #endif
  65637. #ifdef __LITTLE_ENDIAN__
  65638. __ai int16x4_t vuzp2_s16(int16x4_t __p0, int16x4_t __p1) {
  65639. int16x4_t __ret;
  65640. __ret = __builtin_shufflevector(__p0, __p1, 1, 3, 5, 7);
  65641. return __ret;
  65642. }
  65643. #else
  65644. __ai int16x4_t vuzp2_s16(int16x4_t __p0, int16x4_t __p1) {
  65645. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  65646. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  65647. int16x4_t __ret;
  65648. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 3, 5, 7);
  65649. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  65650. return __ret;
  65651. }
  65652. #endif
  65653. #ifdef __LITTLE_ENDIAN__
  65654. __ai poly8x8_t vzip1_p8(poly8x8_t __p0, poly8x8_t __p1) {
  65655. poly8x8_t __ret;
  65656. __ret = __builtin_shufflevector(__p0, __p1, 0, 8, 1, 9, 2, 10, 3, 11);
  65657. return __ret;
  65658. }
  65659. #else
  65660. __ai poly8x8_t vzip1_p8(poly8x8_t __p0, poly8x8_t __p1) {
  65661. poly8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  65662. poly8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  65663. poly8x8_t __ret;
  65664. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 8, 1, 9, 2, 10, 3, 11);
  65665. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  65666. return __ret;
  65667. }
  65668. #endif
  65669. #ifdef __LITTLE_ENDIAN__
  65670. __ai poly16x4_t vzip1_p16(poly16x4_t __p0, poly16x4_t __p1) {
  65671. poly16x4_t __ret;
  65672. __ret = __builtin_shufflevector(__p0, __p1, 0, 4, 1, 5);
  65673. return __ret;
  65674. }
  65675. #else
  65676. __ai poly16x4_t vzip1_p16(poly16x4_t __p0, poly16x4_t __p1) {
  65677. poly16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  65678. poly16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  65679. poly16x4_t __ret;
  65680. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 4, 1, 5);
  65681. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  65682. return __ret;
  65683. }
  65684. #endif
  65685. #ifdef __LITTLE_ENDIAN__
  65686. __ai poly8x16_t vzip1q_p8(poly8x16_t __p0, poly8x16_t __p1) {
  65687. poly8x16_t __ret;
  65688. __ret = __builtin_shufflevector(__p0, __p1, 0, 16, 1, 17, 2, 18, 3, 19, 4, 20, 5, 21, 6, 22, 7, 23);
  65689. return __ret;
  65690. }
  65691. #else
  65692. __ai poly8x16_t vzip1q_p8(poly8x16_t __p0, poly8x16_t __p1) {
  65693. poly8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  65694. poly8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  65695. poly8x16_t __ret;
  65696. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 16, 1, 17, 2, 18, 3, 19, 4, 20, 5, 21, 6, 22, 7, 23);
  65697. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  65698. return __ret;
  65699. }
  65700. #endif
  65701. #ifdef __LITTLE_ENDIAN__
  65702. __ai poly64x2_t vzip1q_p64(poly64x2_t __p0, poly64x2_t __p1) {
  65703. poly64x2_t __ret;
  65704. __ret = __builtin_shufflevector(__p0, __p1, 0, 2);
  65705. return __ret;
  65706. }
  65707. #else
  65708. __ai poly64x2_t vzip1q_p64(poly64x2_t __p0, poly64x2_t __p1) {
  65709. poly64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  65710. poly64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  65711. poly64x2_t __ret;
  65712. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 2);
  65713. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  65714. return __ret;
  65715. }
  65716. #endif
  65717. #ifdef __LITTLE_ENDIAN__
  65718. __ai poly16x8_t vzip1q_p16(poly16x8_t __p0, poly16x8_t __p1) {
  65719. poly16x8_t __ret;
  65720. __ret = __builtin_shufflevector(__p0, __p1, 0, 8, 1, 9, 2, 10, 3, 11);
  65721. return __ret;
  65722. }
  65723. #else
  65724. __ai poly16x8_t vzip1q_p16(poly16x8_t __p0, poly16x8_t __p1) {
  65725. poly16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  65726. poly16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  65727. poly16x8_t __ret;
  65728. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 8, 1, 9, 2, 10, 3, 11);
  65729. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  65730. return __ret;
  65731. }
  65732. #endif
  65733. #ifdef __LITTLE_ENDIAN__
  65734. __ai uint8x16_t vzip1q_u8(uint8x16_t __p0, uint8x16_t __p1) {
  65735. uint8x16_t __ret;
  65736. __ret = __builtin_shufflevector(__p0, __p1, 0, 16, 1, 17, 2, 18, 3, 19, 4, 20, 5, 21, 6, 22, 7, 23);
  65737. return __ret;
  65738. }
  65739. #else
  65740. __ai uint8x16_t vzip1q_u8(uint8x16_t __p0, uint8x16_t __p1) {
  65741. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  65742. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  65743. uint8x16_t __ret;
  65744. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 16, 1, 17, 2, 18, 3, 19, 4, 20, 5, 21, 6, 22, 7, 23);
  65745. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  65746. return __ret;
  65747. }
  65748. #endif
  65749. #ifdef __LITTLE_ENDIAN__
  65750. __ai uint32x4_t vzip1q_u32(uint32x4_t __p0, uint32x4_t __p1) {
  65751. uint32x4_t __ret;
  65752. __ret = __builtin_shufflevector(__p0, __p1, 0, 4, 1, 5);
  65753. return __ret;
  65754. }
  65755. #else
  65756. __ai uint32x4_t vzip1q_u32(uint32x4_t __p0, uint32x4_t __p1) {
  65757. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  65758. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  65759. uint32x4_t __ret;
  65760. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 4, 1, 5);
  65761. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  65762. return __ret;
  65763. }
  65764. #endif
  65765. #ifdef __LITTLE_ENDIAN__
  65766. __ai uint64x2_t vzip1q_u64(uint64x2_t __p0, uint64x2_t __p1) {
  65767. uint64x2_t __ret;
  65768. __ret = __builtin_shufflevector(__p0, __p1, 0, 2);
  65769. return __ret;
  65770. }
  65771. #else
  65772. __ai uint64x2_t vzip1q_u64(uint64x2_t __p0, uint64x2_t __p1) {
  65773. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  65774. uint64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  65775. uint64x2_t __ret;
  65776. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 2);
  65777. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  65778. return __ret;
  65779. }
  65780. #endif
  65781. #ifdef __LITTLE_ENDIAN__
  65782. __ai uint16x8_t vzip1q_u16(uint16x8_t __p0, uint16x8_t __p1) {
  65783. uint16x8_t __ret;
  65784. __ret = __builtin_shufflevector(__p0, __p1, 0, 8, 1, 9, 2, 10, 3, 11);
  65785. return __ret;
  65786. }
  65787. #else
  65788. __ai uint16x8_t vzip1q_u16(uint16x8_t __p0, uint16x8_t __p1) {
  65789. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  65790. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  65791. uint16x8_t __ret;
  65792. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 8, 1, 9, 2, 10, 3, 11);
  65793. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  65794. return __ret;
  65795. }
  65796. #endif
  65797. #ifdef __LITTLE_ENDIAN__
  65798. __ai int8x16_t vzip1q_s8(int8x16_t __p0, int8x16_t __p1) {
  65799. int8x16_t __ret;
  65800. __ret = __builtin_shufflevector(__p0, __p1, 0, 16, 1, 17, 2, 18, 3, 19, 4, 20, 5, 21, 6, 22, 7, 23);
  65801. return __ret;
  65802. }
  65803. #else
  65804. __ai int8x16_t vzip1q_s8(int8x16_t __p0, int8x16_t __p1) {
  65805. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  65806. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  65807. int8x16_t __ret;
  65808. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 16, 1, 17, 2, 18, 3, 19, 4, 20, 5, 21, 6, 22, 7, 23);
  65809. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  65810. return __ret;
  65811. }
  65812. #endif
  65813. #ifdef __LITTLE_ENDIAN__
  65814. __ai float64x2_t vzip1q_f64(float64x2_t __p0, float64x2_t __p1) {
  65815. float64x2_t __ret;
  65816. __ret = __builtin_shufflevector(__p0, __p1, 0, 2);
  65817. return __ret;
  65818. }
  65819. #else
  65820. __ai float64x2_t vzip1q_f64(float64x2_t __p0, float64x2_t __p1) {
  65821. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  65822. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  65823. float64x2_t __ret;
  65824. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 2);
  65825. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  65826. return __ret;
  65827. }
  65828. #endif
  65829. #ifdef __LITTLE_ENDIAN__
  65830. __ai float32x4_t vzip1q_f32(float32x4_t __p0, float32x4_t __p1) {
  65831. float32x4_t __ret;
  65832. __ret = __builtin_shufflevector(__p0, __p1, 0, 4, 1, 5);
  65833. return __ret;
  65834. }
  65835. #else
  65836. __ai float32x4_t vzip1q_f32(float32x4_t __p0, float32x4_t __p1) {
  65837. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  65838. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  65839. float32x4_t __ret;
  65840. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 4, 1, 5);
  65841. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  65842. return __ret;
  65843. }
  65844. #endif
  65845. #ifdef __LITTLE_ENDIAN__
  65846. __ai int32x4_t vzip1q_s32(int32x4_t __p0, int32x4_t __p1) {
  65847. int32x4_t __ret;
  65848. __ret = __builtin_shufflevector(__p0, __p1, 0, 4, 1, 5);
  65849. return __ret;
  65850. }
  65851. #else
  65852. __ai int32x4_t vzip1q_s32(int32x4_t __p0, int32x4_t __p1) {
  65853. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  65854. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  65855. int32x4_t __ret;
  65856. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 4, 1, 5);
  65857. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  65858. return __ret;
  65859. }
  65860. #endif
  65861. #ifdef __LITTLE_ENDIAN__
  65862. __ai int64x2_t vzip1q_s64(int64x2_t __p0, int64x2_t __p1) {
  65863. int64x2_t __ret;
  65864. __ret = __builtin_shufflevector(__p0, __p1, 0, 2);
  65865. return __ret;
  65866. }
  65867. #else
  65868. __ai int64x2_t vzip1q_s64(int64x2_t __p0, int64x2_t __p1) {
  65869. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  65870. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  65871. int64x2_t __ret;
  65872. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 2);
  65873. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  65874. return __ret;
  65875. }
  65876. #endif
  65877. #ifdef __LITTLE_ENDIAN__
  65878. __ai int16x8_t vzip1q_s16(int16x8_t __p0, int16x8_t __p1) {
  65879. int16x8_t __ret;
  65880. __ret = __builtin_shufflevector(__p0, __p1, 0, 8, 1, 9, 2, 10, 3, 11);
  65881. return __ret;
  65882. }
  65883. #else
  65884. __ai int16x8_t vzip1q_s16(int16x8_t __p0, int16x8_t __p1) {
  65885. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  65886. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  65887. int16x8_t __ret;
  65888. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 8, 1, 9, 2, 10, 3, 11);
  65889. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  65890. return __ret;
  65891. }
  65892. #endif
  65893. #ifdef __LITTLE_ENDIAN__
  65894. __ai uint8x8_t vzip1_u8(uint8x8_t __p0, uint8x8_t __p1) {
  65895. uint8x8_t __ret;
  65896. __ret = __builtin_shufflevector(__p0, __p1, 0, 8, 1, 9, 2, 10, 3, 11);
  65897. return __ret;
  65898. }
  65899. #else
  65900. __ai uint8x8_t vzip1_u8(uint8x8_t __p0, uint8x8_t __p1) {
  65901. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  65902. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  65903. uint8x8_t __ret;
  65904. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 8, 1, 9, 2, 10, 3, 11);
  65905. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  65906. return __ret;
  65907. }
  65908. #endif
  65909. #ifdef __LITTLE_ENDIAN__
  65910. __ai uint32x2_t vzip1_u32(uint32x2_t __p0, uint32x2_t __p1) {
  65911. uint32x2_t __ret;
  65912. __ret = __builtin_shufflevector(__p0, __p1, 0, 2);
  65913. return __ret;
  65914. }
  65915. #else
  65916. __ai uint32x2_t vzip1_u32(uint32x2_t __p0, uint32x2_t __p1) {
  65917. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  65918. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  65919. uint32x2_t __ret;
  65920. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 2);
  65921. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  65922. return __ret;
  65923. }
  65924. #endif
  65925. #ifdef __LITTLE_ENDIAN__
  65926. __ai uint16x4_t vzip1_u16(uint16x4_t __p0, uint16x4_t __p1) {
  65927. uint16x4_t __ret;
  65928. __ret = __builtin_shufflevector(__p0, __p1, 0, 4, 1, 5);
  65929. return __ret;
  65930. }
  65931. #else
  65932. __ai uint16x4_t vzip1_u16(uint16x4_t __p0, uint16x4_t __p1) {
  65933. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  65934. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  65935. uint16x4_t __ret;
  65936. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 4, 1, 5);
  65937. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  65938. return __ret;
  65939. }
  65940. #endif
  65941. #ifdef __LITTLE_ENDIAN__
  65942. __ai int8x8_t vzip1_s8(int8x8_t __p0, int8x8_t __p1) {
  65943. int8x8_t __ret;
  65944. __ret = __builtin_shufflevector(__p0, __p1, 0, 8, 1, 9, 2, 10, 3, 11);
  65945. return __ret;
  65946. }
  65947. #else
  65948. __ai int8x8_t vzip1_s8(int8x8_t __p0, int8x8_t __p1) {
  65949. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  65950. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  65951. int8x8_t __ret;
  65952. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 8, 1, 9, 2, 10, 3, 11);
  65953. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  65954. return __ret;
  65955. }
  65956. #endif
  65957. #ifdef __LITTLE_ENDIAN__
  65958. __ai float32x2_t vzip1_f32(float32x2_t __p0, float32x2_t __p1) {
  65959. float32x2_t __ret;
  65960. __ret = __builtin_shufflevector(__p0, __p1, 0, 2);
  65961. return __ret;
  65962. }
  65963. #else
  65964. __ai float32x2_t vzip1_f32(float32x2_t __p0, float32x2_t __p1) {
  65965. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  65966. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  65967. float32x2_t __ret;
  65968. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 2);
  65969. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  65970. return __ret;
  65971. }
  65972. #endif
  65973. #ifdef __LITTLE_ENDIAN__
  65974. __ai int32x2_t vzip1_s32(int32x2_t __p0, int32x2_t __p1) {
  65975. int32x2_t __ret;
  65976. __ret = __builtin_shufflevector(__p0, __p1, 0, 2);
  65977. return __ret;
  65978. }
  65979. #else
  65980. __ai int32x2_t vzip1_s32(int32x2_t __p0, int32x2_t __p1) {
  65981. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  65982. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  65983. int32x2_t __ret;
  65984. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 2);
  65985. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  65986. return __ret;
  65987. }
  65988. #endif
  65989. #ifdef __LITTLE_ENDIAN__
  65990. __ai int16x4_t vzip1_s16(int16x4_t __p0, int16x4_t __p1) {
  65991. int16x4_t __ret;
  65992. __ret = __builtin_shufflevector(__p0, __p1, 0, 4, 1, 5);
  65993. return __ret;
  65994. }
  65995. #else
  65996. __ai int16x4_t vzip1_s16(int16x4_t __p0, int16x4_t __p1) {
  65997. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  65998. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  65999. int16x4_t __ret;
  66000. __ret = __builtin_shufflevector(__rev0, __rev1, 0, 4, 1, 5);
  66001. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  66002. return __ret;
  66003. }
  66004. #endif
  66005. #ifdef __LITTLE_ENDIAN__
  66006. __ai poly8x8_t vzip2_p8(poly8x8_t __p0, poly8x8_t __p1) {
  66007. poly8x8_t __ret;
  66008. __ret = __builtin_shufflevector(__p0, __p1, 4, 12, 5, 13, 6, 14, 7, 15);
  66009. return __ret;
  66010. }
  66011. #else
  66012. __ai poly8x8_t vzip2_p8(poly8x8_t __p0, poly8x8_t __p1) {
  66013. poly8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  66014. poly8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  66015. poly8x8_t __ret;
  66016. __ret = __builtin_shufflevector(__rev0, __rev1, 4, 12, 5, 13, 6, 14, 7, 15);
  66017. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  66018. return __ret;
  66019. }
  66020. #endif
  66021. #ifdef __LITTLE_ENDIAN__
  66022. __ai poly16x4_t vzip2_p16(poly16x4_t __p0, poly16x4_t __p1) {
  66023. poly16x4_t __ret;
  66024. __ret = __builtin_shufflevector(__p0, __p1, 2, 6, 3, 7);
  66025. return __ret;
  66026. }
  66027. #else
  66028. __ai poly16x4_t vzip2_p16(poly16x4_t __p0, poly16x4_t __p1) {
  66029. poly16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  66030. poly16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  66031. poly16x4_t __ret;
  66032. __ret = __builtin_shufflevector(__rev0, __rev1, 2, 6, 3, 7);
  66033. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  66034. return __ret;
  66035. }
  66036. #endif
  66037. #ifdef __LITTLE_ENDIAN__
  66038. __ai poly8x16_t vzip2q_p8(poly8x16_t __p0, poly8x16_t __p1) {
  66039. poly8x16_t __ret;
  66040. __ret = __builtin_shufflevector(__p0, __p1, 8, 24, 9, 25, 10, 26, 11, 27, 12, 28, 13, 29, 14, 30, 15, 31);
  66041. return __ret;
  66042. }
  66043. #else
  66044. __ai poly8x16_t vzip2q_p8(poly8x16_t __p0, poly8x16_t __p1) {
  66045. poly8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  66046. poly8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  66047. poly8x16_t __ret;
  66048. __ret = __builtin_shufflevector(__rev0, __rev1, 8, 24, 9, 25, 10, 26, 11, 27, 12, 28, 13, 29, 14, 30, 15, 31);
  66049. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  66050. return __ret;
  66051. }
  66052. #endif
  66053. #ifdef __LITTLE_ENDIAN__
  66054. __ai poly64x2_t vzip2q_p64(poly64x2_t __p0, poly64x2_t __p1) {
  66055. poly64x2_t __ret;
  66056. __ret = __builtin_shufflevector(__p0, __p1, 1, 3);
  66057. return __ret;
  66058. }
  66059. #else
  66060. __ai poly64x2_t vzip2q_p64(poly64x2_t __p0, poly64x2_t __p1) {
  66061. poly64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  66062. poly64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  66063. poly64x2_t __ret;
  66064. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 3);
  66065. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  66066. return __ret;
  66067. }
  66068. #endif
  66069. #ifdef __LITTLE_ENDIAN__
  66070. __ai poly16x8_t vzip2q_p16(poly16x8_t __p0, poly16x8_t __p1) {
  66071. poly16x8_t __ret;
  66072. __ret = __builtin_shufflevector(__p0, __p1, 4, 12, 5, 13, 6, 14, 7, 15);
  66073. return __ret;
  66074. }
  66075. #else
  66076. __ai poly16x8_t vzip2q_p16(poly16x8_t __p0, poly16x8_t __p1) {
  66077. poly16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  66078. poly16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  66079. poly16x8_t __ret;
  66080. __ret = __builtin_shufflevector(__rev0, __rev1, 4, 12, 5, 13, 6, 14, 7, 15);
  66081. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  66082. return __ret;
  66083. }
  66084. #endif
  66085. #ifdef __LITTLE_ENDIAN__
  66086. __ai uint8x16_t vzip2q_u8(uint8x16_t __p0, uint8x16_t __p1) {
  66087. uint8x16_t __ret;
  66088. __ret = __builtin_shufflevector(__p0, __p1, 8, 24, 9, 25, 10, 26, 11, 27, 12, 28, 13, 29, 14, 30, 15, 31);
  66089. return __ret;
  66090. }
  66091. #else
  66092. __ai uint8x16_t vzip2q_u8(uint8x16_t __p0, uint8x16_t __p1) {
  66093. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  66094. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  66095. uint8x16_t __ret;
  66096. __ret = __builtin_shufflevector(__rev0, __rev1, 8, 24, 9, 25, 10, 26, 11, 27, 12, 28, 13, 29, 14, 30, 15, 31);
  66097. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  66098. return __ret;
  66099. }
  66100. #endif
  66101. #ifdef __LITTLE_ENDIAN__
  66102. __ai uint32x4_t vzip2q_u32(uint32x4_t __p0, uint32x4_t __p1) {
  66103. uint32x4_t __ret;
  66104. __ret = __builtin_shufflevector(__p0, __p1, 2, 6, 3, 7);
  66105. return __ret;
  66106. }
  66107. #else
  66108. __ai uint32x4_t vzip2q_u32(uint32x4_t __p0, uint32x4_t __p1) {
  66109. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  66110. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  66111. uint32x4_t __ret;
  66112. __ret = __builtin_shufflevector(__rev0, __rev1, 2, 6, 3, 7);
  66113. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  66114. return __ret;
  66115. }
  66116. #endif
  66117. #ifdef __LITTLE_ENDIAN__
  66118. __ai uint64x2_t vzip2q_u64(uint64x2_t __p0, uint64x2_t __p1) {
  66119. uint64x2_t __ret;
  66120. __ret = __builtin_shufflevector(__p0, __p1, 1, 3);
  66121. return __ret;
  66122. }
  66123. #else
  66124. __ai uint64x2_t vzip2q_u64(uint64x2_t __p0, uint64x2_t __p1) {
  66125. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  66126. uint64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  66127. uint64x2_t __ret;
  66128. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 3);
  66129. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  66130. return __ret;
  66131. }
  66132. #endif
  66133. #ifdef __LITTLE_ENDIAN__
  66134. __ai uint16x8_t vzip2q_u16(uint16x8_t __p0, uint16x8_t __p1) {
  66135. uint16x8_t __ret;
  66136. __ret = __builtin_shufflevector(__p0, __p1, 4, 12, 5, 13, 6, 14, 7, 15);
  66137. return __ret;
  66138. }
  66139. #else
  66140. __ai uint16x8_t vzip2q_u16(uint16x8_t __p0, uint16x8_t __p1) {
  66141. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  66142. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  66143. uint16x8_t __ret;
  66144. __ret = __builtin_shufflevector(__rev0, __rev1, 4, 12, 5, 13, 6, 14, 7, 15);
  66145. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  66146. return __ret;
  66147. }
  66148. #endif
  66149. #ifdef __LITTLE_ENDIAN__
  66150. __ai int8x16_t vzip2q_s8(int8x16_t __p0, int8x16_t __p1) {
  66151. int8x16_t __ret;
  66152. __ret = __builtin_shufflevector(__p0, __p1, 8, 24, 9, 25, 10, 26, 11, 27, 12, 28, 13, 29, 14, 30, 15, 31);
  66153. return __ret;
  66154. }
  66155. #else
  66156. __ai int8x16_t vzip2q_s8(int8x16_t __p0, int8x16_t __p1) {
  66157. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  66158. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  66159. int8x16_t __ret;
  66160. __ret = __builtin_shufflevector(__rev0, __rev1, 8, 24, 9, 25, 10, 26, 11, 27, 12, 28, 13, 29, 14, 30, 15, 31);
  66161. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  66162. return __ret;
  66163. }
  66164. #endif
  66165. #ifdef __LITTLE_ENDIAN__
  66166. __ai float64x2_t vzip2q_f64(float64x2_t __p0, float64x2_t __p1) {
  66167. float64x2_t __ret;
  66168. __ret = __builtin_shufflevector(__p0, __p1, 1, 3);
  66169. return __ret;
  66170. }
  66171. #else
  66172. __ai float64x2_t vzip2q_f64(float64x2_t __p0, float64x2_t __p1) {
  66173. float64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  66174. float64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  66175. float64x2_t __ret;
  66176. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 3);
  66177. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  66178. return __ret;
  66179. }
  66180. #endif
  66181. #ifdef __LITTLE_ENDIAN__
  66182. __ai float32x4_t vzip2q_f32(float32x4_t __p0, float32x4_t __p1) {
  66183. float32x4_t __ret;
  66184. __ret = __builtin_shufflevector(__p0, __p1, 2, 6, 3, 7);
  66185. return __ret;
  66186. }
  66187. #else
  66188. __ai float32x4_t vzip2q_f32(float32x4_t __p0, float32x4_t __p1) {
  66189. float32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  66190. float32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  66191. float32x4_t __ret;
  66192. __ret = __builtin_shufflevector(__rev0, __rev1, 2, 6, 3, 7);
  66193. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  66194. return __ret;
  66195. }
  66196. #endif
  66197. #ifdef __LITTLE_ENDIAN__
  66198. __ai int32x4_t vzip2q_s32(int32x4_t __p0, int32x4_t __p1) {
  66199. int32x4_t __ret;
  66200. __ret = __builtin_shufflevector(__p0, __p1, 2, 6, 3, 7);
  66201. return __ret;
  66202. }
  66203. #else
  66204. __ai int32x4_t vzip2q_s32(int32x4_t __p0, int32x4_t __p1) {
  66205. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  66206. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  66207. int32x4_t __ret;
  66208. __ret = __builtin_shufflevector(__rev0, __rev1, 2, 6, 3, 7);
  66209. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  66210. return __ret;
  66211. }
  66212. #endif
  66213. #ifdef __LITTLE_ENDIAN__
  66214. __ai int64x2_t vzip2q_s64(int64x2_t __p0, int64x2_t __p1) {
  66215. int64x2_t __ret;
  66216. __ret = __builtin_shufflevector(__p0, __p1, 1, 3);
  66217. return __ret;
  66218. }
  66219. #else
  66220. __ai int64x2_t vzip2q_s64(int64x2_t __p0, int64x2_t __p1) {
  66221. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  66222. int64x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  66223. int64x2_t __ret;
  66224. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 3);
  66225. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  66226. return __ret;
  66227. }
  66228. #endif
  66229. #ifdef __LITTLE_ENDIAN__
  66230. __ai int16x8_t vzip2q_s16(int16x8_t __p0, int16x8_t __p1) {
  66231. int16x8_t __ret;
  66232. __ret = __builtin_shufflevector(__p0, __p1, 4, 12, 5, 13, 6, 14, 7, 15);
  66233. return __ret;
  66234. }
  66235. #else
  66236. __ai int16x8_t vzip2q_s16(int16x8_t __p0, int16x8_t __p1) {
  66237. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  66238. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  66239. int16x8_t __ret;
  66240. __ret = __builtin_shufflevector(__rev0, __rev1, 4, 12, 5, 13, 6, 14, 7, 15);
  66241. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  66242. return __ret;
  66243. }
  66244. #endif
  66245. #ifdef __LITTLE_ENDIAN__
  66246. __ai uint8x8_t vzip2_u8(uint8x8_t __p0, uint8x8_t __p1) {
  66247. uint8x8_t __ret;
  66248. __ret = __builtin_shufflevector(__p0, __p1, 4, 12, 5, 13, 6, 14, 7, 15);
  66249. return __ret;
  66250. }
  66251. #else
  66252. __ai uint8x8_t vzip2_u8(uint8x8_t __p0, uint8x8_t __p1) {
  66253. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  66254. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  66255. uint8x8_t __ret;
  66256. __ret = __builtin_shufflevector(__rev0, __rev1, 4, 12, 5, 13, 6, 14, 7, 15);
  66257. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  66258. return __ret;
  66259. }
  66260. #endif
  66261. #ifdef __LITTLE_ENDIAN__
  66262. __ai uint32x2_t vzip2_u32(uint32x2_t __p0, uint32x2_t __p1) {
  66263. uint32x2_t __ret;
  66264. __ret = __builtin_shufflevector(__p0, __p1, 1, 3);
  66265. return __ret;
  66266. }
  66267. #else
  66268. __ai uint32x2_t vzip2_u32(uint32x2_t __p0, uint32x2_t __p1) {
  66269. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  66270. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  66271. uint32x2_t __ret;
  66272. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 3);
  66273. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  66274. return __ret;
  66275. }
  66276. #endif
  66277. #ifdef __LITTLE_ENDIAN__
  66278. __ai uint16x4_t vzip2_u16(uint16x4_t __p0, uint16x4_t __p1) {
  66279. uint16x4_t __ret;
  66280. __ret = __builtin_shufflevector(__p0, __p1, 2, 6, 3, 7);
  66281. return __ret;
  66282. }
  66283. #else
  66284. __ai uint16x4_t vzip2_u16(uint16x4_t __p0, uint16x4_t __p1) {
  66285. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  66286. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  66287. uint16x4_t __ret;
  66288. __ret = __builtin_shufflevector(__rev0, __rev1, 2, 6, 3, 7);
  66289. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  66290. return __ret;
  66291. }
  66292. #endif
  66293. #ifdef __LITTLE_ENDIAN__
  66294. __ai int8x8_t vzip2_s8(int8x8_t __p0, int8x8_t __p1) {
  66295. int8x8_t __ret;
  66296. __ret = __builtin_shufflevector(__p0, __p1, 4, 12, 5, 13, 6, 14, 7, 15);
  66297. return __ret;
  66298. }
  66299. #else
  66300. __ai int8x8_t vzip2_s8(int8x8_t __p0, int8x8_t __p1) {
  66301. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  66302. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  66303. int8x8_t __ret;
  66304. __ret = __builtin_shufflevector(__rev0, __rev1, 4, 12, 5, 13, 6, 14, 7, 15);
  66305. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  66306. return __ret;
  66307. }
  66308. #endif
  66309. #ifdef __LITTLE_ENDIAN__
  66310. __ai float32x2_t vzip2_f32(float32x2_t __p0, float32x2_t __p1) {
  66311. float32x2_t __ret;
  66312. __ret = __builtin_shufflevector(__p0, __p1, 1, 3);
  66313. return __ret;
  66314. }
  66315. #else
  66316. __ai float32x2_t vzip2_f32(float32x2_t __p0, float32x2_t __p1) {
  66317. float32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  66318. float32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  66319. float32x2_t __ret;
  66320. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 3);
  66321. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  66322. return __ret;
  66323. }
  66324. #endif
  66325. #ifdef __LITTLE_ENDIAN__
  66326. __ai int32x2_t vzip2_s32(int32x2_t __p0, int32x2_t __p1) {
  66327. int32x2_t __ret;
  66328. __ret = __builtin_shufflevector(__p0, __p1, 1, 3);
  66329. return __ret;
  66330. }
  66331. #else
  66332. __ai int32x2_t vzip2_s32(int32x2_t __p0, int32x2_t __p1) {
  66333. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  66334. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  66335. int32x2_t __ret;
  66336. __ret = __builtin_shufflevector(__rev0, __rev1, 1, 3);
  66337. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  66338. return __ret;
  66339. }
  66340. #endif
  66341. #ifdef __LITTLE_ENDIAN__
  66342. __ai int16x4_t vzip2_s16(int16x4_t __p0, int16x4_t __p1) {
  66343. int16x4_t __ret;
  66344. __ret = __builtin_shufflevector(__p0, __p1, 2, 6, 3, 7);
  66345. return __ret;
  66346. }
  66347. #else
  66348. __ai int16x4_t vzip2_s16(int16x4_t __p0, int16x4_t __p1) {
  66349. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  66350. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  66351. int16x4_t __ret;
  66352. __ret = __builtin_shufflevector(__rev0, __rev1, 2, 6, 3, 7);
  66353. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  66354. return __ret;
  66355. }
  66356. #endif
  66357. #endif
  66358. #ifdef __LITTLE_ENDIAN__
  66359. __ai uint8x16_t vabaq_u8(uint8x16_t __p0, uint8x16_t __p1, uint8x16_t __p2) {
  66360. uint8x16_t __ret;
  66361. __ret = __p0 + vabdq_u8(__p1, __p2);
  66362. return __ret;
  66363. }
  66364. #else
  66365. __ai uint8x16_t vabaq_u8(uint8x16_t __p0, uint8x16_t __p1, uint8x16_t __p2) {
  66366. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  66367. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  66368. uint8x16_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  66369. uint8x16_t __ret;
  66370. __ret = __rev0 + __noswap_vabdq_u8(__rev1, __rev2);
  66371. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  66372. return __ret;
  66373. }
  66374. #endif
  66375. #ifdef __LITTLE_ENDIAN__
  66376. __ai uint32x4_t vabaq_u32(uint32x4_t __p0, uint32x4_t __p1, uint32x4_t __p2) {
  66377. uint32x4_t __ret;
  66378. __ret = __p0 + vabdq_u32(__p1, __p2);
  66379. return __ret;
  66380. }
  66381. #else
  66382. __ai uint32x4_t vabaq_u32(uint32x4_t __p0, uint32x4_t __p1, uint32x4_t __p2) {
  66383. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  66384. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  66385. uint32x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  66386. uint32x4_t __ret;
  66387. __ret = __rev0 + __noswap_vabdq_u32(__rev1, __rev2);
  66388. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  66389. return __ret;
  66390. }
  66391. #endif
  66392. #ifdef __LITTLE_ENDIAN__
  66393. __ai uint16x8_t vabaq_u16(uint16x8_t __p0, uint16x8_t __p1, uint16x8_t __p2) {
  66394. uint16x8_t __ret;
  66395. __ret = __p0 + vabdq_u16(__p1, __p2);
  66396. return __ret;
  66397. }
  66398. #else
  66399. __ai uint16x8_t vabaq_u16(uint16x8_t __p0, uint16x8_t __p1, uint16x8_t __p2) {
  66400. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  66401. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  66402. uint16x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  66403. uint16x8_t __ret;
  66404. __ret = __rev0 + __noswap_vabdq_u16(__rev1, __rev2);
  66405. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  66406. return __ret;
  66407. }
  66408. #endif
  66409. #ifdef __LITTLE_ENDIAN__
  66410. __ai int8x16_t vabaq_s8(int8x16_t __p0, int8x16_t __p1, int8x16_t __p2) {
  66411. int8x16_t __ret;
  66412. __ret = __p0 + vabdq_s8(__p1, __p2);
  66413. return __ret;
  66414. }
  66415. #else
  66416. __ai int8x16_t vabaq_s8(int8x16_t __p0, int8x16_t __p1, int8x16_t __p2) {
  66417. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  66418. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  66419. int8x16_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  66420. int8x16_t __ret;
  66421. __ret = __rev0 + __noswap_vabdq_s8(__rev1, __rev2);
  66422. __ret = __builtin_shufflevector(__ret, __ret, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  66423. return __ret;
  66424. }
  66425. #endif
  66426. #ifdef __LITTLE_ENDIAN__
  66427. __ai int32x4_t vabaq_s32(int32x4_t __p0, int32x4_t __p1, int32x4_t __p2) {
  66428. int32x4_t __ret;
  66429. __ret = __p0 + vabdq_s32(__p1, __p2);
  66430. return __ret;
  66431. }
  66432. #else
  66433. __ai int32x4_t vabaq_s32(int32x4_t __p0, int32x4_t __p1, int32x4_t __p2) {
  66434. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  66435. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  66436. int32x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  66437. int32x4_t __ret;
  66438. __ret = __rev0 + __noswap_vabdq_s32(__rev1, __rev2);
  66439. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  66440. return __ret;
  66441. }
  66442. #endif
  66443. #ifdef __LITTLE_ENDIAN__
  66444. __ai int16x8_t vabaq_s16(int16x8_t __p0, int16x8_t __p1, int16x8_t __p2) {
  66445. int16x8_t __ret;
  66446. __ret = __p0 + vabdq_s16(__p1, __p2);
  66447. return __ret;
  66448. }
  66449. #else
  66450. __ai int16x8_t vabaq_s16(int16x8_t __p0, int16x8_t __p1, int16x8_t __p2) {
  66451. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  66452. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  66453. int16x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  66454. int16x8_t __ret;
  66455. __ret = __rev0 + __noswap_vabdq_s16(__rev1, __rev2);
  66456. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  66457. return __ret;
  66458. }
  66459. #endif
  66460. #ifdef __LITTLE_ENDIAN__
  66461. __ai uint8x8_t vaba_u8(uint8x8_t __p0, uint8x8_t __p1, uint8x8_t __p2) {
  66462. uint8x8_t __ret;
  66463. __ret = __p0 + vabd_u8(__p1, __p2);
  66464. return __ret;
  66465. }
  66466. #else
  66467. __ai uint8x8_t vaba_u8(uint8x8_t __p0, uint8x8_t __p1, uint8x8_t __p2) {
  66468. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  66469. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  66470. uint8x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  66471. uint8x8_t __ret;
  66472. __ret = __rev0 + __noswap_vabd_u8(__rev1, __rev2);
  66473. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  66474. return __ret;
  66475. }
  66476. #endif
  66477. #ifdef __LITTLE_ENDIAN__
  66478. __ai uint32x2_t vaba_u32(uint32x2_t __p0, uint32x2_t __p1, uint32x2_t __p2) {
  66479. uint32x2_t __ret;
  66480. __ret = __p0 + vabd_u32(__p1, __p2);
  66481. return __ret;
  66482. }
  66483. #else
  66484. __ai uint32x2_t vaba_u32(uint32x2_t __p0, uint32x2_t __p1, uint32x2_t __p2) {
  66485. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  66486. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  66487. uint32x2_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 1, 0);
  66488. uint32x2_t __ret;
  66489. __ret = __rev0 + __noswap_vabd_u32(__rev1, __rev2);
  66490. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  66491. return __ret;
  66492. }
  66493. #endif
  66494. #ifdef __LITTLE_ENDIAN__
  66495. __ai uint16x4_t vaba_u16(uint16x4_t __p0, uint16x4_t __p1, uint16x4_t __p2) {
  66496. uint16x4_t __ret;
  66497. __ret = __p0 + vabd_u16(__p1, __p2);
  66498. return __ret;
  66499. }
  66500. #else
  66501. __ai uint16x4_t vaba_u16(uint16x4_t __p0, uint16x4_t __p1, uint16x4_t __p2) {
  66502. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  66503. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  66504. uint16x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  66505. uint16x4_t __ret;
  66506. __ret = __rev0 + __noswap_vabd_u16(__rev1, __rev2);
  66507. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  66508. return __ret;
  66509. }
  66510. #endif
  66511. #ifdef __LITTLE_ENDIAN__
  66512. __ai int8x8_t vaba_s8(int8x8_t __p0, int8x8_t __p1, int8x8_t __p2) {
  66513. int8x8_t __ret;
  66514. __ret = __p0 + vabd_s8(__p1, __p2);
  66515. return __ret;
  66516. }
  66517. #else
  66518. __ai int8x8_t vaba_s8(int8x8_t __p0, int8x8_t __p1, int8x8_t __p2) {
  66519. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  66520. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  66521. int8x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  66522. int8x8_t __ret;
  66523. __ret = __rev0 + __noswap_vabd_s8(__rev1, __rev2);
  66524. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  66525. return __ret;
  66526. }
  66527. #endif
  66528. #ifdef __LITTLE_ENDIAN__
  66529. __ai int32x2_t vaba_s32(int32x2_t __p0, int32x2_t __p1, int32x2_t __p2) {
  66530. int32x2_t __ret;
  66531. __ret = __p0 + vabd_s32(__p1, __p2);
  66532. return __ret;
  66533. }
  66534. #else
  66535. __ai int32x2_t vaba_s32(int32x2_t __p0, int32x2_t __p1, int32x2_t __p2) {
  66536. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  66537. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  66538. int32x2_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 1, 0);
  66539. int32x2_t __ret;
  66540. __ret = __rev0 + __noswap_vabd_s32(__rev1, __rev2);
  66541. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  66542. return __ret;
  66543. }
  66544. #endif
  66545. #ifdef __LITTLE_ENDIAN__
  66546. __ai int16x4_t vaba_s16(int16x4_t __p0, int16x4_t __p1, int16x4_t __p2) {
  66547. int16x4_t __ret;
  66548. __ret = __p0 + vabd_s16(__p1, __p2);
  66549. return __ret;
  66550. }
  66551. #else
  66552. __ai int16x4_t vaba_s16(int16x4_t __p0, int16x4_t __p1, int16x4_t __p2) {
  66553. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  66554. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  66555. int16x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  66556. int16x4_t __ret;
  66557. __ret = __rev0 + __noswap_vabd_s16(__rev1, __rev2);
  66558. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  66559. return __ret;
  66560. }
  66561. #endif
  66562. #ifdef __LITTLE_ENDIAN__
  66563. __ai uint16x8_t vabdl_u8(uint8x8_t __p0, uint8x8_t __p1) {
  66564. uint16x8_t __ret;
  66565. __ret = (uint16x8_t)(vmovl_u8((uint8x8_t)(vabd_u8(__p0, __p1))));
  66566. return __ret;
  66567. }
  66568. #else
  66569. __ai uint16x8_t vabdl_u8(uint8x8_t __p0, uint8x8_t __p1) {
  66570. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  66571. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  66572. uint16x8_t __ret;
  66573. __ret = (uint16x8_t)(__noswap_vmovl_u8((uint8x8_t)(__noswap_vabd_u8(__rev0, __rev1))));
  66574. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  66575. return __ret;
  66576. }
  66577. __ai uint16x8_t __noswap_vabdl_u8(uint8x8_t __p0, uint8x8_t __p1) {
  66578. uint16x8_t __ret;
  66579. __ret = (uint16x8_t)(__noswap_vmovl_u8((uint8x8_t)(__noswap_vabd_u8(__p0, __p1))));
  66580. return __ret;
  66581. }
  66582. #endif
  66583. #ifdef __LITTLE_ENDIAN__
  66584. __ai uint64x2_t vabdl_u32(uint32x2_t __p0, uint32x2_t __p1) {
  66585. uint64x2_t __ret;
  66586. __ret = (uint64x2_t)(vmovl_u32((uint32x2_t)(vabd_u32(__p0, __p1))));
  66587. return __ret;
  66588. }
  66589. #else
  66590. __ai uint64x2_t vabdl_u32(uint32x2_t __p0, uint32x2_t __p1) {
  66591. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  66592. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  66593. uint64x2_t __ret;
  66594. __ret = (uint64x2_t)(__noswap_vmovl_u32((uint32x2_t)(__noswap_vabd_u32(__rev0, __rev1))));
  66595. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  66596. return __ret;
  66597. }
  66598. __ai uint64x2_t __noswap_vabdl_u32(uint32x2_t __p0, uint32x2_t __p1) {
  66599. uint64x2_t __ret;
  66600. __ret = (uint64x2_t)(__noswap_vmovl_u32((uint32x2_t)(__noswap_vabd_u32(__p0, __p1))));
  66601. return __ret;
  66602. }
  66603. #endif
  66604. #ifdef __LITTLE_ENDIAN__
  66605. __ai uint32x4_t vabdl_u16(uint16x4_t __p0, uint16x4_t __p1) {
  66606. uint32x4_t __ret;
  66607. __ret = (uint32x4_t)(vmovl_u16((uint16x4_t)(vabd_u16(__p0, __p1))));
  66608. return __ret;
  66609. }
  66610. #else
  66611. __ai uint32x4_t vabdl_u16(uint16x4_t __p0, uint16x4_t __p1) {
  66612. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  66613. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  66614. uint32x4_t __ret;
  66615. __ret = (uint32x4_t)(__noswap_vmovl_u16((uint16x4_t)(__noswap_vabd_u16(__rev0, __rev1))));
  66616. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  66617. return __ret;
  66618. }
  66619. __ai uint32x4_t __noswap_vabdl_u16(uint16x4_t __p0, uint16x4_t __p1) {
  66620. uint32x4_t __ret;
  66621. __ret = (uint32x4_t)(__noswap_vmovl_u16((uint16x4_t)(__noswap_vabd_u16(__p0, __p1))));
  66622. return __ret;
  66623. }
  66624. #endif
  66625. #ifdef __LITTLE_ENDIAN__
  66626. __ai int16x8_t vabdl_s8(int8x8_t __p0, int8x8_t __p1) {
  66627. int16x8_t __ret;
  66628. __ret = (int16x8_t)(vmovl_u8((uint8x8_t)(vabd_s8(__p0, __p1))));
  66629. return __ret;
  66630. }
  66631. #else
  66632. __ai int16x8_t vabdl_s8(int8x8_t __p0, int8x8_t __p1) {
  66633. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  66634. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  66635. int16x8_t __ret;
  66636. __ret = (int16x8_t)(__noswap_vmovl_u8((uint8x8_t)(__noswap_vabd_s8(__rev0, __rev1))));
  66637. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  66638. return __ret;
  66639. }
  66640. __ai int16x8_t __noswap_vabdl_s8(int8x8_t __p0, int8x8_t __p1) {
  66641. int16x8_t __ret;
  66642. __ret = (int16x8_t)(__noswap_vmovl_u8((uint8x8_t)(__noswap_vabd_s8(__p0, __p1))));
  66643. return __ret;
  66644. }
  66645. #endif
  66646. #ifdef __LITTLE_ENDIAN__
  66647. __ai int64x2_t vabdl_s32(int32x2_t __p0, int32x2_t __p1) {
  66648. int64x2_t __ret;
  66649. __ret = (int64x2_t)(vmovl_u32((uint32x2_t)(vabd_s32(__p0, __p1))));
  66650. return __ret;
  66651. }
  66652. #else
  66653. __ai int64x2_t vabdl_s32(int32x2_t __p0, int32x2_t __p1) {
  66654. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  66655. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  66656. int64x2_t __ret;
  66657. __ret = (int64x2_t)(__noswap_vmovl_u32((uint32x2_t)(__noswap_vabd_s32(__rev0, __rev1))));
  66658. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  66659. return __ret;
  66660. }
  66661. __ai int64x2_t __noswap_vabdl_s32(int32x2_t __p0, int32x2_t __p1) {
  66662. int64x2_t __ret;
  66663. __ret = (int64x2_t)(__noswap_vmovl_u32((uint32x2_t)(__noswap_vabd_s32(__p0, __p1))));
  66664. return __ret;
  66665. }
  66666. #endif
  66667. #ifdef __LITTLE_ENDIAN__
  66668. __ai int32x4_t vabdl_s16(int16x4_t __p0, int16x4_t __p1) {
  66669. int32x4_t __ret;
  66670. __ret = (int32x4_t)(vmovl_u16((uint16x4_t)(vabd_s16(__p0, __p1))));
  66671. return __ret;
  66672. }
  66673. #else
  66674. __ai int32x4_t vabdl_s16(int16x4_t __p0, int16x4_t __p1) {
  66675. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  66676. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  66677. int32x4_t __ret;
  66678. __ret = (int32x4_t)(__noswap_vmovl_u16((uint16x4_t)(__noswap_vabd_s16(__rev0, __rev1))));
  66679. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  66680. return __ret;
  66681. }
  66682. __ai int32x4_t __noswap_vabdl_s16(int16x4_t __p0, int16x4_t __p1) {
  66683. int32x4_t __ret;
  66684. __ret = (int32x4_t)(__noswap_vmovl_u16((uint16x4_t)(__noswap_vabd_s16(__p0, __p1))));
  66685. return __ret;
  66686. }
  66687. #endif
  66688. #ifdef __LITTLE_ENDIAN__
  66689. __ai uint16x8_t vaddl_u8(uint8x8_t __p0, uint8x8_t __p1) {
  66690. uint16x8_t __ret;
  66691. __ret = vmovl_u8(__p0) + vmovl_u8(__p1);
  66692. return __ret;
  66693. }
  66694. #else
  66695. __ai uint16x8_t vaddl_u8(uint8x8_t __p0, uint8x8_t __p1) {
  66696. uint8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  66697. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  66698. uint16x8_t __ret;
  66699. __ret = __noswap_vmovl_u8(__rev0) + __noswap_vmovl_u8(__rev1);
  66700. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  66701. return __ret;
  66702. }
  66703. #endif
  66704. #ifdef __LITTLE_ENDIAN__
  66705. __ai uint64x2_t vaddl_u32(uint32x2_t __p0, uint32x2_t __p1) {
  66706. uint64x2_t __ret;
  66707. __ret = vmovl_u32(__p0) + vmovl_u32(__p1);
  66708. return __ret;
  66709. }
  66710. #else
  66711. __ai uint64x2_t vaddl_u32(uint32x2_t __p0, uint32x2_t __p1) {
  66712. uint32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  66713. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  66714. uint64x2_t __ret;
  66715. __ret = __noswap_vmovl_u32(__rev0) + __noswap_vmovl_u32(__rev1);
  66716. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  66717. return __ret;
  66718. }
  66719. #endif
  66720. #ifdef __LITTLE_ENDIAN__
  66721. __ai uint32x4_t vaddl_u16(uint16x4_t __p0, uint16x4_t __p1) {
  66722. uint32x4_t __ret;
  66723. __ret = vmovl_u16(__p0) + vmovl_u16(__p1);
  66724. return __ret;
  66725. }
  66726. #else
  66727. __ai uint32x4_t vaddl_u16(uint16x4_t __p0, uint16x4_t __p1) {
  66728. uint16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  66729. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  66730. uint32x4_t __ret;
  66731. __ret = __noswap_vmovl_u16(__rev0) + __noswap_vmovl_u16(__rev1);
  66732. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  66733. return __ret;
  66734. }
  66735. #endif
  66736. #ifdef __LITTLE_ENDIAN__
  66737. __ai int16x8_t vaddl_s8(int8x8_t __p0, int8x8_t __p1) {
  66738. int16x8_t __ret;
  66739. __ret = vmovl_s8(__p0) + vmovl_s8(__p1);
  66740. return __ret;
  66741. }
  66742. #else
  66743. __ai int16x8_t vaddl_s8(int8x8_t __p0, int8x8_t __p1) {
  66744. int8x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  66745. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  66746. int16x8_t __ret;
  66747. __ret = __noswap_vmovl_s8(__rev0) + __noswap_vmovl_s8(__rev1);
  66748. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  66749. return __ret;
  66750. }
  66751. #endif
  66752. #ifdef __LITTLE_ENDIAN__
  66753. __ai int64x2_t vaddl_s32(int32x2_t __p0, int32x2_t __p1) {
  66754. int64x2_t __ret;
  66755. __ret = vmovl_s32(__p0) + vmovl_s32(__p1);
  66756. return __ret;
  66757. }
  66758. #else
  66759. __ai int64x2_t vaddl_s32(int32x2_t __p0, int32x2_t __p1) {
  66760. int32x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  66761. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  66762. int64x2_t __ret;
  66763. __ret = __noswap_vmovl_s32(__rev0) + __noswap_vmovl_s32(__rev1);
  66764. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  66765. return __ret;
  66766. }
  66767. #endif
  66768. #ifdef __LITTLE_ENDIAN__
  66769. __ai int32x4_t vaddl_s16(int16x4_t __p0, int16x4_t __p1) {
  66770. int32x4_t __ret;
  66771. __ret = vmovl_s16(__p0) + vmovl_s16(__p1);
  66772. return __ret;
  66773. }
  66774. #else
  66775. __ai int32x4_t vaddl_s16(int16x4_t __p0, int16x4_t __p1) {
  66776. int16x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  66777. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  66778. int32x4_t __ret;
  66779. __ret = __noswap_vmovl_s16(__rev0) + __noswap_vmovl_s16(__rev1);
  66780. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  66781. return __ret;
  66782. }
  66783. #endif
  66784. #ifdef __LITTLE_ENDIAN__
  66785. __ai uint16x8_t vaddw_u8(uint16x8_t __p0, uint8x8_t __p1) {
  66786. uint16x8_t __ret;
  66787. __ret = __p0 + vmovl_u8(__p1);
  66788. return __ret;
  66789. }
  66790. #else
  66791. __ai uint16x8_t vaddw_u8(uint16x8_t __p0, uint8x8_t __p1) {
  66792. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  66793. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  66794. uint16x8_t __ret;
  66795. __ret = __rev0 + __noswap_vmovl_u8(__rev1);
  66796. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  66797. return __ret;
  66798. }
  66799. #endif
  66800. #ifdef __LITTLE_ENDIAN__
  66801. __ai uint64x2_t vaddw_u32(uint64x2_t __p0, uint32x2_t __p1) {
  66802. uint64x2_t __ret;
  66803. __ret = __p0 + vmovl_u32(__p1);
  66804. return __ret;
  66805. }
  66806. #else
  66807. __ai uint64x2_t vaddw_u32(uint64x2_t __p0, uint32x2_t __p1) {
  66808. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  66809. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  66810. uint64x2_t __ret;
  66811. __ret = __rev0 + __noswap_vmovl_u32(__rev1);
  66812. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  66813. return __ret;
  66814. }
  66815. #endif
  66816. #ifdef __LITTLE_ENDIAN__
  66817. __ai uint32x4_t vaddw_u16(uint32x4_t __p0, uint16x4_t __p1) {
  66818. uint32x4_t __ret;
  66819. __ret = __p0 + vmovl_u16(__p1);
  66820. return __ret;
  66821. }
  66822. #else
  66823. __ai uint32x4_t vaddw_u16(uint32x4_t __p0, uint16x4_t __p1) {
  66824. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  66825. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  66826. uint32x4_t __ret;
  66827. __ret = __rev0 + __noswap_vmovl_u16(__rev1);
  66828. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  66829. return __ret;
  66830. }
  66831. #endif
  66832. #ifdef __LITTLE_ENDIAN__
  66833. __ai int16x8_t vaddw_s8(int16x8_t __p0, int8x8_t __p1) {
  66834. int16x8_t __ret;
  66835. __ret = __p0 + vmovl_s8(__p1);
  66836. return __ret;
  66837. }
  66838. #else
  66839. __ai int16x8_t vaddw_s8(int16x8_t __p0, int8x8_t __p1) {
  66840. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  66841. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  66842. int16x8_t __ret;
  66843. __ret = __rev0 + __noswap_vmovl_s8(__rev1);
  66844. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  66845. return __ret;
  66846. }
  66847. #endif
  66848. #ifdef __LITTLE_ENDIAN__
  66849. __ai int64x2_t vaddw_s32(int64x2_t __p0, int32x2_t __p1) {
  66850. int64x2_t __ret;
  66851. __ret = __p0 + vmovl_s32(__p1);
  66852. return __ret;
  66853. }
  66854. #else
  66855. __ai int64x2_t vaddw_s32(int64x2_t __p0, int32x2_t __p1) {
  66856. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  66857. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  66858. int64x2_t __ret;
  66859. __ret = __rev0 + __noswap_vmovl_s32(__rev1);
  66860. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  66861. return __ret;
  66862. }
  66863. #endif
  66864. #ifdef __LITTLE_ENDIAN__
  66865. __ai int32x4_t vaddw_s16(int32x4_t __p0, int16x4_t __p1) {
  66866. int32x4_t __ret;
  66867. __ret = __p0 + vmovl_s16(__p1);
  66868. return __ret;
  66869. }
  66870. #else
  66871. __ai int32x4_t vaddw_s16(int32x4_t __p0, int16x4_t __p1) {
  66872. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  66873. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  66874. int32x4_t __ret;
  66875. __ret = __rev0 + __noswap_vmovl_s16(__rev1);
  66876. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  66877. return __ret;
  66878. }
  66879. #endif
  66880. #ifdef __LITTLE_ENDIAN__
  66881. #define vget_lane_f16(__p0_254, __p1_254) __extension__ ({ \
  66882. float16x4_t __s0_254 = __p0_254; \
  66883. float16_t __ret_254; \
  66884. float16x4_t __reint_254 = __s0_254; \
  66885. int16_t __reint1_254 = vget_lane_s16(*(int16x4_t *) &__reint_254, __p1_254); \
  66886. __ret_254 = *(float16_t *) &__reint1_254; \
  66887. __ret_254; \
  66888. })
  66889. #else
  66890. #define vget_lane_f16(__p0_255, __p1_255) __extension__ ({ \
  66891. float16x4_t __s0_255 = __p0_255; \
  66892. float16x4_t __rev0_255; __rev0_255 = __builtin_shufflevector(__s0_255, __s0_255, 3, 2, 1, 0); \
  66893. float16_t __ret_255; \
  66894. float16x4_t __reint_255 = __rev0_255; \
  66895. int16_t __reint1_255 = __noswap_vget_lane_s16(*(int16x4_t *) &__reint_255, __p1_255); \
  66896. __ret_255 = *(float16_t *) &__reint1_255; \
  66897. __ret_255; \
  66898. })
  66899. #define __noswap_vget_lane_f16(__p0_256, __p1_256) __extension__ ({ \
  66900. float16x4_t __s0_256 = __p0_256; \
  66901. float16_t __ret_256; \
  66902. float16x4_t __reint_256 = __s0_256; \
  66903. int16_t __reint1_256 = __noswap_vget_lane_s16(*(int16x4_t *) &__reint_256, __p1_256); \
  66904. __ret_256 = *(float16_t *) &__reint1_256; \
  66905. __ret_256; \
  66906. })
  66907. #endif
  66908. #ifdef __LITTLE_ENDIAN__
  66909. #define vgetq_lane_f16(__p0_257, __p1_257) __extension__ ({ \
  66910. float16x8_t __s0_257 = __p0_257; \
  66911. float16_t __ret_257; \
  66912. float16x8_t __reint_257 = __s0_257; \
  66913. int16_t __reint1_257 = vgetq_lane_s16(*(int16x8_t *) &__reint_257, __p1_257); \
  66914. __ret_257 = *(float16_t *) &__reint1_257; \
  66915. __ret_257; \
  66916. })
  66917. #else
  66918. #define vgetq_lane_f16(__p0_258, __p1_258) __extension__ ({ \
  66919. float16x8_t __s0_258 = __p0_258; \
  66920. float16x8_t __rev0_258; __rev0_258 = __builtin_shufflevector(__s0_258, __s0_258, 7, 6, 5, 4, 3, 2, 1, 0); \
  66921. float16_t __ret_258; \
  66922. float16x8_t __reint_258 = __rev0_258; \
  66923. int16_t __reint1_258 = __noswap_vgetq_lane_s16(*(int16x8_t *) &__reint_258, __p1_258); \
  66924. __ret_258 = *(float16_t *) &__reint1_258; \
  66925. __ret_258; \
  66926. })
  66927. #define __noswap_vgetq_lane_f16(__p0_259, __p1_259) __extension__ ({ \
  66928. float16x8_t __s0_259 = __p0_259; \
  66929. float16_t __ret_259; \
  66930. float16x8_t __reint_259 = __s0_259; \
  66931. int16_t __reint1_259 = __noswap_vgetq_lane_s16(*(int16x8_t *) &__reint_259, __p1_259); \
  66932. __ret_259 = *(float16_t *) &__reint1_259; \
  66933. __ret_259; \
  66934. })
  66935. #endif
  66936. #ifdef __LITTLE_ENDIAN__
  66937. __ai uint16x8_t vmlal_u8(uint16x8_t __p0, uint8x8_t __p1, uint8x8_t __p2) {
  66938. uint16x8_t __ret;
  66939. __ret = __p0 + vmull_u8(__p1, __p2);
  66940. return __ret;
  66941. }
  66942. #else
  66943. __ai uint16x8_t vmlal_u8(uint16x8_t __p0, uint8x8_t __p1, uint8x8_t __p2) {
  66944. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  66945. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  66946. uint8x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  66947. uint16x8_t __ret;
  66948. __ret = __rev0 + __noswap_vmull_u8(__rev1, __rev2);
  66949. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  66950. return __ret;
  66951. }
  66952. __ai uint16x8_t __noswap_vmlal_u8(uint16x8_t __p0, uint8x8_t __p1, uint8x8_t __p2) {
  66953. uint16x8_t __ret;
  66954. __ret = __p0 + __noswap_vmull_u8(__p1, __p2);
  66955. return __ret;
  66956. }
  66957. #endif
  66958. #ifdef __LITTLE_ENDIAN__
  66959. __ai uint64x2_t vmlal_u32(uint64x2_t __p0, uint32x2_t __p1, uint32x2_t __p2) {
  66960. uint64x2_t __ret;
  66961. __ret = __p0 + vmull_u32(__p1, __p2);
  66962. return __ret;
  66963. }
  66964. #else
  66965. __ai uint64x2_t vmlal_u32(uint64x2_t __p0, uint32x2_t __p1, uint32x2_t __p2) {
  66966. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  66967. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  66968. uint32x2_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 1, 0);
  66969. uint64x2_t __ret;
  66970. __ret = __rev0 + __noswap_vmull_u32(__rev1, __rev2);
  66971. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  66972. return __ret;
  66973. }
  66974. __ai uint64x2_t __noswap_vmlal_u32(uint64x2_t __p0, uint32x2_t __p1, uint32x2_t __p2) {
  66975. uint64x2_t __ret;
  66976. __ret = __p0 + __noswap_vmull_u32(__p1, __p2);
  66977. return __ret;
  66978. }
  66979. #endif
  66980. #ifdef __LITTLE_ENDIAN__
  66981. __ai uint32x4_t vmlal_u16(uint32x4_t __p0, uint16x4_t __p1, uint16x4_t __p2) {
  66982. uint32x4_t __ret;
  66983. __ret = __p0 + vmull_u16(__p1, __p2);
  66984. return __ret;
  66985. }
  66986. #else
  66987. __ai uint32x4_t vmlal_u16(uint32x4_t __p0, uint16x4_t __p1, uint16x4_t __p2) {
  66988. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  66989. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  66990. uint16x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  66991. uint32x4_t __ret;
  66992. __ret = __rev0 + __noswap_vmull_u16(__rev1, __rev2);
  66993. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  66994. return __ret;
  66995. }
  66996. __ai uint32x4_t __noswap_vmlal_u16(uint32x4_t __p0, uint16x4_t __p1, uint16x4_t __p2) {
  66997. uint32x4_t __ret;
  66998. __ret = __p0 + __noswap_vmull_u16(__p1, __p2);
  66999. return __ret;
  67000. }
  67001. #endif
  67002. #ifdef __LITTLE_ENDIAN__
  67003. __ai int16x8_t vmlal_s8(int16x8_t __p0, int8x8_t __p1, int8x8_t __p2) {
  67004. int16x8_t __ret;
  67005. __ret = __p0 + vmull_s8(__p1, __p2);
  67006. return __ret;
  67007. }
  67008. #else
  67009. __ai int16x8_t vmlal_s8(int16x8_t __p0, int8x8_t __p1, int8x8_t __p2) {
  67010. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  67011. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  67012. int8x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  67013. int16x8_t __ret;
  67014. __ret = __rev0 + __noswap_vmull_s8(__rev1, __rev2);
  67015. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  67016. return __ret;
  67017. }
  67018. __ai int16x8_t __noswap_vmlal_s8(int16x8_t __p0, int8x8_t __p1, int8x8_t __p2) {
  67019. int16x8_t __ret;
  67020. __ret = __p0 + __noswap_vmull_s8(__p1, __p2);
  67021. return __ret;
  67022. }
  67023. #endif
  67024. #ifdef __LITTLE_ENDIAN__
  67025. __ai int64x2_t vmlal_s32(int64x2_t __p0, int32x2_t __p1, int32x2_t __p2) {
  67026. int64x2_t __ret;
  67027. __ret = __p0 + vmull_s32(__p1, __p2);
  67028. return __ret;
  67029. }
  67030. #else
  67031. __ai int64x2_t vmlal_s32(int64x2_t __p0, int32x2_t __p1, int32x2_t __p2) {
  67032. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  67033. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  67034. int32x2_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 1, 0);
  67035. int64x2_t __ret;
  67036. __ret = __rev0 + __noswap_vmull_s32(__rev1, __rev2);
  67037. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  67038. return __ret;
  67039. }
  67040. __ai int64x2_t __noswap_vmlal_s32(int64x2_t __p0, int32x2_t __p1, int32x2_t __p2) {
  67041. int64x2_t __ret;
  67042. __ret = __p0 + __noswap_vmull_s32(__p1, __p2);
  67043. return __ret;
  67044. }
  67045. #endif
  67046. #ifdef __LITTLE_ENDIAN__
  67047. __ai int32x4_t vmlal_s16(int32x4_t __p0, int16x4_t __p1, int16x4_t __p2) {
  67048. int32x4_t __ret;
  67049. __ret = __p0 + vmull_s16(__p1, __p2);
  67050. return __ret;
  67051. }
  67052. #else
  67053. __ai int32x4_t vmlal_s16(int32x4_t __p0, int16x4_t __p1, int16x4_t __p2) {
  67054. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  67055. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  67056. int16x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  67057. int32x4_t __ret;
  67058. __ret = __rev0 + __noswap_vmull_s16(__rev1, __rev2);
  67059. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  67060. return __ret;
  67061. }
  67062. __ai int32x4_t __noswap_vmlal_s16(int32x4_t __p0, int16x4_t __p1, int16x4_t __p2) {
  67063. int32x4_t __ret;
  67064. __ret = __p0 + __noswap_vmull_s16(__p1, __p2);
  67065. return __ret;
  67066. }
  67067. #endif
  67068. #ifdef __LITTLE_ENDIAN__
  67069. #define vmlal_lane_u32(__p0, __p1, __p2, __p3) __extension__ ({ \
  67070. uint64x2_t __s0 = __p0; \
  67071. uint32x2_t __s1 = __p1; \
  67072. uint32x2_t __s2 = __p2; \
  67073. uint64x2_t __ret; \
  67074. __ret = __s0 + vmull_u32(__s1, __builtin_shufflevector(__s2, __s2, __p3, __p3)); \
  67075. __ret; \
  67076. })
  67077. #else
  67078. #define vmlal_lane_u32(__p0, __p1, __p2, __p3) __extension__ ({ \
  67079. uint64x2_t __s0 = __p0; \
  67080. uint32x2_t __s1 = __p1; \
  67081. uint32x2_t __s2 = __p2; \
  67082. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  67083. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  67084. uint32x2_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 1, 0); \
  67085. uint64x2_t __ret; \
  67086. __ret = __rev0 + __noswap_vmull_u32(__rev1, __builtin_shufflevector(__rev2, __rev2, __p3, __p3)); \
  67087. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  67088. __ret; \
  67089. })
  67090. #endif
  67091. #ifdef __LITTLE_ENDIAN__
  67092. #define vmlal_lane_u16(__p0, __p1, __p2, __p3) __extension__ ({ \
  67093. uint32x4_t __s0 = __p0; \
  67094. uint16x4_t __s1 = __p1; \
  67095. uint16x4_t __s2 = __p2; \
  67096. uint32x4_t __ret; \
  67097. __ret = __s0 + vmull_u16(__s1, __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3)); \
  67098. __ret; \
  67099. })
  67100. #else
  67101. #define vmlal_lane_u16(__p0, __p1, __p2, __p3) __extension__ ({ \
  67102. uint32x4_t __s0 = __p0; \
  67103. uint16x4_t __s1 = __p1; \
  67104. uint16x4_t __s2 = __p2; \
  67105. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  67106. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  67107. uint16x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  67108. uint32x4_t __ret; \
  67109. __ret = __rev0 + __noswap_vmull_u16(__rev1, __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3)); \
  67110. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  67111. __ret; \
  67112. })
  67113. #endif
  67114. #ifdef __LITTLE_ENDIAN__
  67115. #define vmlal_lane_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  67116. int64x2_t __s0 = __p0; \
  67117. int32x2_t __s1 = __p1; \
  67118. int32x2_t __s2 = __p2; \
  67119. int64x2_t __ret; \
  67120. __ret = __s0 + vmull_s32(__s1, __builtin_shufflevector(__s2, __s2, __p3, __p3)); \
  67121. __ret; \
  67122. })
  67123. #else
  67124. #define vmlal_lane_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  67125. int64x2_t __s0 = __p0; \
  67126. int32x2_t __s1 = __p1; \
  67127. int32x2_t __s2 = __p2; \
  67128. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  67129. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  67130. int32x2_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 1, 0); \
  67131. int64x2_t __ret; \
  67132. __ret = __rev0 + __noswap_vmull_s32(__rev1, __builtin_shufflevector(__rev2, __rev2, __p3, __p3)); \
  67133. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  67134. __ret; \
  67135. })
  67136. #endif
  67137. #ifdef __LITTLE_ENDIAN__
  67138. #define vmlal_lane_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  67139. int32x4_t __s0 = __p0; \
  67140. int16x4_t __s1 = __p1; \
  67141. int16x4_t __s2 = __p2; \
  67142. int32x4_t __ret; \
  67143. __ret = __s0 + vmull_s16(__s1, __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3)); \
  67144. __ret; \
  67145. })
  67146. #else
  67147. #define vmlal_lane_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  67148. int32x4_t __s0 = __p0; \
  67149. int16x4_t __s1 = __p1; \
  67150. int16x4_t __s2 = __p2; \
  67151. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  67152. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  67153. int16x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  67154. int32x4_t __ret; \
  67155. __ret = __rev0 + __noswap_vmull_s16(__rev1, __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3)); \
  67156. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  67157. __ret; \
  67158. })
  67159. #endif
  67160. #ifdef __LITTLE_ENDIAN__
  67161. __ai uint64x2_t vmlal_n_u32(uint64x2_t __p0, uint32x2_t __p1, uint32_t __p2) {
  67162. uint64x2_t __ret;
  67163. __ret = __p0 + vmull_u32(__p1, (uint32x2_t) {__p2, __p2});
  67164. return __ret;
  67165. }
  67166. #else
  67167. __ai uint64x2_t vmlal_n_u32(uint64x2_t __p0, uint32x2_t __p1, uint32_t __p2) {
  67168. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  67169. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  67170. uint64x2_t __ret;
  67171. __ret = __rev0 + __noswap_vmull_u32(__rev1, (uint32x2_t) {__p2, __p2});
  67172. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  67173. return __ret;
  67174. }
  67175. __ai uint64x2_t __noswap_vmlal_n_u32(uint64x2_t __p0, uint32x2_t __p1, uint32_t __p2) {
  67176. uint64x2_t __ret;
  67177. __ret = __p0 + __noswap_vmull_u32(__p1, (uint32x2_t) {__p2, __p2});
  67178. return __ret;
  67179. }
  67180. #endif
  67181. #ifdef __LITTLE_ENDIAN__
  67182. __ai uint32x4_t vmlal_n_u16(uint32x4_t __p0, uint16x4_t __p1, uint16_t __p2) {
  67183. uint32x4_t __ret;
  67184. __ret = __p0 + vmull_u16(__p1, (uint16x4_t) {__p2, __p2, __p2, __p2});
  67185. return __ret;
  67186. }
  67187. #else
  67188. __ai uint32x4_t vmlal_n_u16(uint32x4_t __p0, uint16x4_t __p1, uint16_t __p2) {
  67189. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  67190. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  67191. uint32x4_t __ret;
  67192. __ret = __rev0 + __noswap_vmull_u16(__rev1, (uint16x4_t) {__p2, __p2, __p2, __p2});
  67193. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  67194. return __ret;
  67195. }
  67196. __ai uint32x4_t __noswap_vmlal_n_u16(uint32x4_t __p0, uint16x4_t __p1, uint16_t __p2) {
  67197. uint32x4_t __ret;
  67198. __ret = __p0 + __noswap_vmull_u16(__p1, (uint16x4_t) {__p2, __p2, __p2, __p2});
  67199. return __ret;
  67200. }
  67201. #endif
  67202. #ifdef __LITTLE_ENDIAN__
  67203. __ai int64x2_t vmlal_n_s32(int64x2_t __p0, int32x2_t __p1, int32_t __p2) {
  67204. int64x2_t __ret;
  67205. __ret = __p0 + vmull_s32(__p1, (int32x2_t) {__p2, __p2});
  67206. return __ret;
  67207. }
  67208. #else
  67209. __ai int64x2_t vmlal_n_s32(int64x2_t __p0, int32x2_t __p1, int32_t __p2) {
  67210. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  67211. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  67212. int64x2_t __ret;
  67213. __ret = __rev0 + __noswap_vmull_s32(__rev1, (int32x2_t) {__p2, __p2});
  67214. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  67215. return __ret;
  67216. }
  67217. __ai int64x2_t __noswap_vmlal_n_s32(int64x2_t __p0, int32x2_t __p1, int32_t __p2) {
  67218. int64x2_t __ret;
  67219. __ret = __p0 + __noswap_vmull_s32(__p1, (int32x2_t) {__p2, __p2});
  67220. return __ret;
  67221. }
  67222. #endif
  67223. #ifdef __LITTLE_ENDIAN__
  67224. __ai int32x4_t vmlal_n_s16(int32x4_t __p0, int16x4_t __p1, int16_t __p2) {
  67225. int32x4_t __ret;
  67226. __ret = __p0 + vmull_s16(__p1, (int16x4_t) {__p2, __p2, __p2, __p2});
  67227. return __ret;
  67228. }
  67229. #else
  67230. __ai int32x4_t vmlal_n_s16(int32x4_t __p0, int16x4_t __p1, int16_t __p2) {
  67231. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  67232. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  67233. int32x4_t __ret;
  67234. __ret = __rev0 + __noswap_vmull_s16(__rev1, (int16x4_t) {__p2, __p2, __p2, __p2});
  67235. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  67236. return __ret;
  67237. }
  67238. __ai int32x4_t __noswap_vmlal_n_s16(int32x4_t __p0, int16x4_t __p1, int16_t __p2) {
  67239. int32x4_t __ret;
  67240. __ret = __p0 + __noswap_vmull_s16(__p1, (int16x4_t) {__p2, __p2, __p2, __p2});
  67241. return __ret;
  67242. }
  67243. #endif
  67244. #ifdef __LITTLE_ENDIAN__
  67245. __ai uint16x8_t vmlsl_u8(uint16x8_t __p0, uint8x8_t __p1, uint8x8_t __p2) {
  67246. uint16x8_t __ret;
  67247. __ret = __p0 - vmull_u8(__p1, __p2);
  67248. return __ret;
  67249. }
  67250. #else
  67251. __ai uint16x8_t vmlsl_u8(uint16x8_t __p0, uint8x8_t __p1, uint8x8_t __p2) {
  67252. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  67253. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  67254. uint8x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  67255. uint16x8_t __ret;
  67256. __ret = __rev0 - __noswap_vmull_u8(__rev1, __rev2);
  67257. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  67258. return __ret;
  67259. }
  67260. __ai uint16x8_t __noswap_vmlsl_u8(uint16x8_t __p0, uint8x8_t __p1, uint8x8_t __p2) {
  67261. uint16x8_t __ret;
  67262. __ret = __p0 - __noswap_vmull_u8(__p1, __p2);
  67263. return __ret;
  67264. }
  67265. #endif
  67266. #ifdef __LITTLE_ENDIAN__
  67267. __ai uint64x2_t vmlsl_u32(uint64x2_t __p0, uint32x2_t __p1, uint32x2_t __p2) {
  67268. uint64x2_t __ret;
  67269. __ret = __p0 - vmull_u32(__p1, __p2);
  67270. return __ret;
  67271. }
  67272. #else
  67273. __ai uint64x2_t vmlsl_u32(uint64x2_t __p0, uint32x2_t __p1, uint32x2_t __p2) {
  67274. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  67275. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  67276. uint32x2_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 1, 0);
  67277. uint64x2_t __ret;
  67278. __ret = __rev0 - __noswap_vmull_u32(__rev1, __rev2);
  67279. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  67280. return __ret;
  67281. }
  67282. __ai uint64x2_t __noswap_vmlsl_u32(uint64x2_t __p0, uint32x2_t __p1, uint32x2_t __p2) {
  67283. uint64x2_t __ret;
  67284. __ret = __p0 - __noswap_vmull_u32(__p1, __p2);
  67285. return __ret;
  67286. }
  67287. #endif
  67288. #ifdef __LITTLE_ENDIAN__
  67289. __ai uint32x4_t vmlsl_u16(uint32x4_t __p0, uint16x4_t __p1, uint16x4_t __p2) {
  67290. uint32x4_t __ret;
  67291. __ret = __p0 - vmull_u16(__p1, __p2);
  67292. return __ret;
  67293. }
  67294. #else
  67295. __ai uint32x4_t vmlsl_u16(uint32x4_t __p0, uint16x4_t __p1, uint16x4_t __p2) {
  67296. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  67297. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  67298. uint16x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  67299. uint32x4_t __ret;
  67300. __ret = __rev0 - __noswap_vmull_u16(__rev1, __rev2);
  67301. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  67302. return __ret;
  67303. }
  67304. __ai uint32x4_t __noswap_vmlsl_u16(uint32x4_t __p0, uint16x4_t __p1, uint16x4_t __p2) {
  67305. uint32x4_t __ret;
  67306. __ret = __p0 - __noswap_vmull_u16(__p1, __p2);
  67307. return __ret;
  67308. }
  67309. #endif
  67310. #ifdef __LITTLE_ENDIAN__
  67311. __ai int16x8_t vmlsl_s8(int16x8_t __p0, int8x8_t __p1, int8x8_t __p2) {
  67312. int16x8_t __ret;
  67313. __ret = __p0 - vmull_s8(__p1, __p2);
  67314. return __ret;
  67315. }
  67316. #else
  67317. __ai int16x8_t vmlsl_s8(int16x8_t __p0, int8x8_t __p1, int8x8_t __p2) {
  67318. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  67319. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  67320. int8x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  67321. int16x8_t __ret;
  67322. __ret = __rev0 - __noswap_vmull_s8(__rev1, __rev2);
  67323. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  67324. return __ret;
  67325. }
  67326. __ai int16x8_t __noswap_vmlsl_s8(int16x8_t __p0, int8x8_t __p1, int8x8_t __p2) {
  67327. int16x8_t __ret;
  67328. __ret = __p0 - __noswap_vmull_s8(__p1, __p2);
  67329. return __ret;
  67330. }
  67331. #endif
  67332. #ifdef __LITTLE_ENDIAN__
  67333. __ai int64x2_t vmlsl_s32(int64x2_t __p0, int32x2_t __p1, int32x2_t __p2) {
  67334. int64x2_t __ret;
  67335. __ret = __p0 - vmull_s32(__p1, __p2);
  67336. return __ret;
  67337. }
  67338. #else
  67339. __ai int64x2_t vmlsl_s32(int64x2_t __p0, int32x2_t __p1, int32x2_t __p2) {
  67340. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  67341. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  67342. int32x2_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 1, 0);
  67343. int64x2_t __ret;
  67344. __ret = __rev0 - __noswap_vmull_s32(__rev1, __rev2);
  67345. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  67346. return __ret;
  67347. }
  67348. __ai int64x2_t __noswap_vmlsl_s32(int64x2_t __p0, int32x2_t __p1, int32x2_t __p2) {
  67349. int64x2_t __ret;
  67350. __ret = __p0 - __noswap_vmull_s32(__p1, __p2);
  67351. return __ret;
  67352. }
  67353. #endif
  67354. #ifdef __LITTLE_ENDIAN__
  67355. __ai int32x4_t vmlsl_s16(int32x4_t __p0, int16x4_t __p1, int16x4_t __p2) {
  67356. int32x4_t __ret;
  67357. __ret = __p0 - vmull_s16(__p1, __p2);
  67358. return __ret;
  67359. }
  67360. #else
  67361. __ai int32x4_t vmlsl_s16(int32x4_t __p0, int16x4_t __p1, int16x4_t __p2) {
  67362. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  67363. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  67364. int16x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  67365. int32x4_t __ret;
  67366. __ret = __rev0 - __noswap_vmull_s16(__rev1, __rev2);
  67367. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  67368. return __ret;
  67369. }
  67370. __ai int32x4_t __noswap_vmlsl_s16(int32x4_t __p0, int16x4_t __p1, int16x4_t __p2) {
  67371. int32x4_t __ret;
  67372. __ret = __p0 - __noswap_vmull_s16(__p1, __p2);
  67373. return __ret;
  67374. }
  67375. #endif
  67376. #ifdef __LITTLE_ENDIAN__
  67377. #define vmlsl_lane_u32(__p0, __p1, __p2, __p3) __extension__ ({ \
  67378. uint64x2_t __s0 = __p0; \
  67379. uint32x2_t __s1 = __p1; \
  67380. uint32x2_t __s2 = __p2; \
  67381. uint64x2_t __ret; \
  67382. __ret = __s0 - vmull_u32(__s1, __builtin_shufflevector(__s2, __s2, __p3, __p3)); \
  67383. __ret; \
  67384. })
  67385. #else
  67386. #define vmlsl_lane_u32(__p0, __p1, __p2, __p3) __extension__ ({ \
  67387. uint64x2_t __s0 = __p0; \
  67388. uint32x2_t __s1 = __p1; \
  67389. uint32x2_t __s2 = __p2; \
  67390. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  67391. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  67392. uint32x2_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 1, 0); \
  67393. uint64x2_t __ret; \
  67394. __ret = __rev0 - __noswap_vmull_u32(__rev1, __builtin_shufflevector(__rev2, __rev2, __p3, __p3)); \
  67395. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  67396. __ret; \
  67397. })
  67398. #endif
  67399. #ifdef __LITTLE_ENDIAN__
  67400. #define vmlsl_lane_u16(__p0, __p1, __p2, __p3) __extension__ ({ \
  67401. uint32x4_t __s0 = __p0; \
  67402. uint16x4_t __s1 = __p1; \
  67403. uint16x4_t __s2 = __p2; \
  67404. uint32x4_t __ret; \
  67405. __ret = __s0 - vmull_u16(__s1, __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3)); \
  67406. __ret; \
  67407. })
  67408. #else
  67409. #define vmlsl_lane_u16(__p0, __p1, __p2, __p3) __extension__ ({ \
  67410. uint32x4_t __s0 = __p0; \
  67411. uint16x4_t __s1 = __p1; \
  67412. uint16x4_t __s2 = __p2; \
  67413. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  67414. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  67415. uint16x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  67416. uint32x4_t __ret; \
  67417. __ret = __rev0 - __noswap_vmull_u16(__rev1, __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3)); \
  67418. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  67419. __ret; \
  67420. })
  67421. #endif
  67422. #ifdef __LITTLE_ENDIAN__
  67423. #define vmlsl_lane_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  67424. int64x2_t __s0 = __p0; \
  67425. int32x2_t __s1 = __p1; \
  67426. int32x2_t __s2 = __p2; \
  67427. int64x2_t __ret; \
  67428. __ret = __s0 - vmull_s32(__s1, __builtin_shufflevector(__s2, __s2, __p3, __p3)); \
  67429. __ret; \
  67430. })
  67431. #else
  67432. #define vmlsl_lane_s32(__p0, __p1, __p2, __p3) __extension__ ({ \
  67433. int64x2_t __s0 = __p0; \
  67434. int32x2_t __s1 = __p1; \
  67435. int32x2_t __s2 = __p2; \
  67436. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 1, 0); \
  67437. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 1, 0); \
  67438. int32x2_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 1, 0); \
  67439. int64x2_t __ret; \
  67440. __ret = __rev0 - __noswap_vmull_s32(__rev1, __builtin_shufflevector(__rev2, __rev2, __p3, __p3)); \
  67441. __ret = __builtin_shufflevector(__ret, __ret, 1, 0); \
  67442. __ret; \
  67443. })
  67444. #endif
  67445. #ifdef __LITTLE_ENDIAN__
  67446. #define vmlsl_lane_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  67447. int32x4_t __s0 = __p0; \
  67448. int16x4_t __s1 = __p1; \
  67449. int16x4_t __s2 = __p2; \
  67450. int32x4_t __ret; \
  67451. __ret = __s0 - vmull_s16(__s1, __builtin_shufflevector(__s2, __s2, __p3, __p3, __p3, __p3)); \
  67452. __ret; \
  67453. })
  67454. #else
  67455. #define vmlsl_lane_s16(__p0, __p1, __p2, __p3) __extension__ ({ \
  67456. int32x4_t __s0 = __p0; \
  67457. int16x4_t __s1 = __p1; \
  67458. int16x4_t __s2 = __p2; \
  67459. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__s0, __s0, 3, 2, 1, 0); \
  67460. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__s1, __s1, 3, 2, 1, 0); \
  67461. int16x4_t __rev2; __rev2 = __builtin_shufflevector(__s2, __s2, 3, 2, 1, 0); \
  67462. int32x4_t __ret; \
  67463. __ret = __rev0 - __noswap_vmull_s16(__rev1, __builtin_shufflevector(__rev2, __rev2, __p3, __p3, __p3, __p3)); \
  67464. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0); \
  67465. __ret; \
  67466. })
  67467. #endif
  67468. #ifdef __LITTLE_ENDIAN__
  67469. __ai uint64x2_t vmlsl_n_u32(uint64x2_t __p0, uint32x2_t __p1, uint32_t __p2) {
  67470. uint64x2_t __ret;
  67471. __ret = __p0 - vmull_u32(__p1, (uint32x2_t) {__p2, __p2});
  67472. return __ret;
  67473. }
  67474. #else
  67475. __ai uint64x2_t vmlsl_n_u32(uint64x2_t __p0, uint32x2_t __p1, uint32_t __p2) {
  67476. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  67477. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  67478. uint64x2_t __ret;
  67479. __ret = __rev0 - __noswap_vmull_u32(__rev1, (uint32x2_t) {__p2, __p2});
  67480. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  67481. return __ret;
  67482. }
  67483. __ai uint64x2_t __noswap_vmlsl_n_u32(uint64x2_t __p0, uint32x2_t __p1, uint32_t __p2) {
  67484. uint64x2_t __ret;
  67485. __ret = __p0 - __noswap_vmull_u32(__p1, (uint32x2_t) {__p2, __p2});
  67486. return __ret;
  67487. }
  67488. #endif
  67489. #ifdef __LITTLE_ENDIAN__
  67490. __ai uint32x4_t vmlsl_n_u16(uint32x4_t __p0, uint16x4_t __p1, uint16_t __p2) {
  67491. uint32x4_t __ret;
  67492. __ret = __p0 - vmull_u16(__p1, (uint16x4_t) {__p2, __p2, __p2, __p2});
  67493. return __ret;
  67494. }
  67495. #else
  67496. __ai uint32x4_t vmlsl_n_u16(uint32x4_t __p0, uint16x4_t __p1, uint16_t __p2) {
  67497. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  67498. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  67499. uint32x4_t __ret;
  67500. __ret = __rev0 - __noswap_vmull_u16(__rev1, (uint16x4_t) {__p2, __p2, __p2, __p2});
  67501. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  67502. return __ret;
  67503. }
  67504. __ai uint32x4_t __noswap_vmlsl_n_u16(uint32x4_t __p0, uint16x4_t __p1, uint16_t __p2) {
  67505. uint32x4_t __ret;
  67506. __ret = __p0 - __noswap_vmull_u16(__p1, (uint16x4_t) {__p2, __p2, __p2, __p2});
  67507. return __ret;
  67508. }
  67509. #endif
  67510. #ifdef __LITTLE_ENDIAN__
  67511. __ai int64x2_t vmlsl_n_s32(int64x2_t __p0, int32x2_t __p1, int32_t __p2) {
  67512. int64x2_t __ret;
  67513. __ret = __p0 - vmull_s32(__p1, (int32x2_t) {__p2, __p2});
  67514. return __ret;
  67515. }
  67516. #else
  67517. __ai int64x2_t vmlsl_n_s32(int64x2_t __p0, int32x2_t __p1, int32_t __p2) {
  67518. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  67519. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  67520. int64x2_t __ret;
  67521. __ret = __rev0 - __noswap_vmull_s32(__rev1, (int32x2_t) {__p2, __p2});
  67522. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  67523. return __ret;
  67524. }
  67525. __ai int64x2_t __noswap_vmlsl_n_s32(int64x2_t __p0, int32x2_t __p1, int32_t __p2) {
  67526. int64x2_t __ret;
  67527. __ret = __p0 - __noswap_vmull_s32(__p1, (int32x2_t) {__p2, __p2});
  67528. return __ret;
  67529. }
  67530. #endif
  67531. #ifdef __LITTLE_ENDIAN__
  67532. __ai int32x4_t vmlsl_n_s16(int32x4_t __p0, int16x4_t __p1, int16_t __p2) {
  67533. int32x4_t __ret;
  67534. __ret = __p0 - vmull_s16(__p1, (int16x4_t) {__p2, __p2, __p2, __p2});
  67535. return __ret;
  67536. }
  67537. #else
  67538. __ai int32x4_t vmlsl_n_s16(int32x4_t __p0, int16x4_t __p1, int16_t __p2) {
  67539. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  67540. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  67541. int32x4_t __ret;
  67542. __ret = __rev0 - __noswap_vmull_s16(__rev1, (int16x4_t) {__p2, __p2, __p2, __p2});
  67543. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  67544. return __ret;
  67545. }
  67546. __ai int32x4_t __noswap_vmlsl_n_s16(int32x4_t __p0, int16x4_t __p1, int16_t __p2) {
  67547. int32x4_t __ret;
  67548. __ret = __p0 - __noswap_vmull_s16(__p1, (int16x4_t) {__p2, __p2, __p2, __p2});
  67549. return __ret;
  67550. }
  67551. #endif
  67552. #ifdef __LITTLE_ENDIAN__
  67553. #define vset_lane_f16(__p0_260, __p1_260, __p2_260) __extension__ ({ \
  67554. float16_t __s0_260 = __p0_260; \
  67555. float16x4_t __s1_260 = __p1_260; \
  67556. float16x4_t __ret_260; \
  67557. float16_t __reint_260 = __s0_260; \
  67558. float16x4_t __reint1_260 = __s1_260; \
  67559. int16x4_t __reint2_260 = vset_lane_s16(*(int16_t *) &__reint_260, *(int16x4_t *) &__reint1_260, __p2_260); \
  67560. __ret_260 = *(float16x4_t *) &__reint2_260; \
  67561. __ret_260; \
  67562. })
  67563. #else
  67564. #define vset_lane_f16(__p0_261, __p1_261, __p2_261) __extension__ ({ \
  67565. float16_t __s0_261 = __p0_261; \
  67566. float16x4_t __s1_261 = __p1_261; \
  67567. float16x4_t __rev1_261; __rev1_261 = __builtin_shufflevector(__s1_261, __s1_261, 3, 2, 1, 0); \
  67568. float16x4_t __ret_261; \
  67569. float16_t __reint_261 = __s0_261; \
  67570. float16x4_t __reint1_261 = __rev1_261; \
  67571. int16x4_t __reint2_261 = __noswap_vset_lane_s16(*(int16_t *) &__reint_261, *(int16x4_t *) &__reint1_261, __p2_261); \
  67572. __ret_261 = *(float16x4_t *) &__reint2_261; \
  67573. __ret_261 = __builtin_shufflevector(__ret_261, __ret_261, 3, 2, 1, 0); \
  67574. __ret_261; \
  67575. })
  67576. #endif
  67577. #ifdef __LITTLE_ENDIAN__
  67578. #define vsetq_lane_f16(__p0_262, __p1_262, __p2_262) __extension__ ({ \
  67579. float16_t __s0_262 = __p0_262; \
  67580. float16x8_t __s1_262 = __p1_262; \
  67581. float16x8_t __ret_262; \
  67582. float16_t __reint_262 = __s0_262; \
  67583. float16x8_t __reint1_262 = __s1_262; \
  67584. int16x8_t __reint2_262 = vsetq_lane_s16(*(int16_t *) &__reint_262, *(int16x8_t *) &__reint1_262, __p2_262); \
  67585. __ret_262 = *(float16x8_t *) &__reint2_262; \
  67586. __ret_262; \
  67587. })
  67588. #else
  67589. #define vsetq_lane_f16(__p0_263, __p1_263, __p2_263) __extension__ ({ \
  67590. float16_t __s0_263 = __p0_263; \
  67591. float16x8_t __s1_263 = __p1_263; \
  67592. float16x8_t __rev1_263; __rev1_263 = __builtin_shufflevector(__s1_263, __s1_263, 7, 6, 5, 4, 3, 2, 1, 0); \
  67593. float16x8_t __ret_263; \
  67594. float16_t __reint_263 = __s0_263; \
  67595. float16x8_t __reint1_263 = __rev1_263; \
  67596. int16x8_t __reint2_263 = __noswap_vsetq_lane_s16(*(int16_t *) &__reint_263, *(int16x8_t *) &__reint1_263, __p2_263); \
  67597. __ret_263 = *(float16x8_t *) &__reint2_263; \
  67598. __ret_263 = __builtin_shufflevector(__ret_263, __ret_263, 7, 6, 5, 4, 3, 2, 1, 0); \
  67599. __ret_263; \
  67600. })
  67601. #endif
  67602. #if defined(__ARM_FEATURE_FP16FML) && defined(__aarch64__)
  67603. #ifdef __LITTLE_ENDIAN__
  67604. #define vfmlalq_lane_high_u32(__p0_264, __p1_264, __p2_264, __p3_264) __extension__ ({ \
  67605. float32x4_t __s0_264 = __p0_264; \
  67606. float16x8_t __s1_264 = __p1_264; \
  67607. float16x4_t __s2_264 = __p2_264; \
  67608. float32x4_t __ret_264; \
  67609. __ret_264 = vfmlalq_high_u32(__s0_264, __s1_264, (float16x8_t) {vget_lane_f16(__s2_264, __p3_264), vget_lane_f16(__s2_264, __p3_264), vget_lane_f16(__s2_264, __p3_264), vget_lane_f16(__s2_264, __p3_264), vget_lane_f16(__s2_264, __p3_264), vget_lane_f16(__s2_264, __p3_264), vget_lane_f16(__s2_264, __p3_264), vget_lane_f16(__s2_264, __p3_264)}); \
  67610. __ret_264; \
  67611. })
  67612. #else
  67613. #define vfmlalq_lane_high_u32(__p0_265, __p1_265, __p2_265, __p3_265) __extension__ ({ \
  67614. float32x4_t __s0_265 = __p0_265; \
  67615. float16x8_t __s1_265 = __p1_265; \
  67616. float16x4_t __s2_265 = __p2_265; \
  67617. float32x4_t __rev0_265; __rev0_265 = __builtin_shufflevector(__s0_265, __s0_265, 3, 2, 1, 0); \
  67618. float16x8_t __rev1_265; __rev1_265 = __builtin_shufflevector(__s1_265, __s1_265, 7, 6, 5, 4, 3, 2, 1, 0); \
  67619. float16x4_t __rev2_265; __rev2_265 = __builtin_shufflevector(__s2_265, __s2_265, 3, 2, 1, 0); \
  67620. float32x4_t __ret_265; \
  67621. __ret_265 = __noswap_vfmlalq_high_u32(__rev0_265, __rev1_265, (float16x8_t) {__noswap_vget_lane_f16(__rev2_265, __p3_265), __noswap_vget_lane_f16(__rev2_265, __p3_265), __noswap_vget_lane_f16(__rev2_265, __p3_265), __noswap_vget_lane_f16(__rev2_265, __p3_265), __noswap_vget_lane_f16(__rev2_265, __p3_265), __noswap_vget_lane_f16(__rev2_265, __p3_265), __noswap_vget_lane_f16(__rev2_265, __p3_265), __noswap_vget_lane_f16(__rev2_265, __p3_265)}); \
  67622. __ret_265 = __builtin_shufflevector(__ret_265, __ret_265, 3, 2, 1, 0); \
  67623. __ret_265; \
  67624. })
  67625. #endif
  67626. #ifdef __LITTLE_ENDIAN__
  67627. #define vfmlal_lane_high_u32(__p0_266, __p1_266, __p2_266, __p3_266) __extension__ ({ \
  67628. float32x2_t __s0_266 = __p0_266; \
  67629. float16x4_t __s1_266 = __p1_266; \
  67630. float16x4_t __s2_266 = __p2_266; \
  67631. float32x2_t __ret_266; \
  67632. __ret_266 = vfmlal_high_u32(__s0_266, __s1_266, (float16x4_t) {vget_lane_f16(__s2_266, __p3_266), vget_lane_f16(__s2_266, __p3_266), vget_lane_f16(__s2_266, __p3_266), vget_lane_f16(__s2_266, __p3_266)}); \
  67633. __ret_266; \
  67634. })
  67635. #else
  67636. #define vfmlal_lane_high_u32(__p0_267, __p1_267, __p2_267, __p3_267) __extension__ ({ \
  67637. float32x2_t __s0_267 = __p0_267; \
  67638. float16x4_t __s1_267 = __p1_267; \
  67639. float16x4_t __s2_267 = __p2_267; \
  67640. float32x2_t __rev0_267; __rev0_267 = __builtin_shufflevector(__s0_267, __s0_267, 1, 0); \
  67641. float16x4_t __rev1_267; __rev1_267 = __builtin_shufflevector(__s1_267, __s1_267, 3, 2, 1, 0); \
  67642. float16x4_t __rev2_267; __rev2_267 = __builtin_shufflevector(__s2_267, __s2_267, 3, 2, 1, 0); \
  67643. float32x2_t __ret_267; \
  67644. __ret_267 = __noswap_vfmlal_high_u32(__rev0_267, __rev1_267, (float16x4_t) {__noswap_vget_lane_f16(__rev2_267, __p3_267), __noswap_vget_lane_f16(__rev2_267, __p3_267), __noswap_vget_lane_f16(__rev2_267, __p3_267), __noswap_vget_lane_f16(__rev2_267, __p3_267)}); \
  67645. __ret_267 = __builtin_shufflevector(__ret_267, __ret_267, 1, 0); \
  67646. __ret_267; \
  67647. })
  67648. #endif
  67649. #ifdef __LITTLE_ENDIAN__
  67650. #define vfmlalq_lane_low_u32(__p0_268, __p1_268, __p2_268, __p3_268) __extension__ ({ \
  67651. float32x4_t __s0_268 = __p0_268; \
  67652. float16x8_t __s1_268 = __p1_268; \
  67653. float16x4_t __s2_268 = __p2_268; \
  67654. float32x4_t __ret_268; \
  67655. __ret_268 = vfmlalq_low_u32(__s0_268, __s1_268, (float16x8_t) {vget_lane_f16(__s2_268, __p3_268), vget_lane_f16(__s2_268, __p3_268), vget_lane_f16(__s2_268, __p3_268), vget_lane_f16(__s2_268, __p3_268), vget_lane_f16(__s2_268, __p3_268), vget_lane_f16(__s2_268, __p3_268), vget_lane_f16(__s2_268, __p3_268), vget_lane_f16(__s2_268, __p3_268)}); \
  67656. __ret_268; \
  67657. })
  67658. #else
  67659. #define vfmlalq_lane_low_u32(__p0_269, __p1_269, __p2_269, __p3_269) __extension__ ({ \
  67660. float32x4_t __s0_269 = __p0_269; \
  67661. float16x8_t __s1_269 = __p1_269; \
  67662. float16x4_t __s2_269 = __p2_269; \
  67663. float32x4_t __rev0_269; __rev0_269 = __builtin_shufflevector(__s0_269, __s0_269, 3, 2, 1, 0); \
  67664. float16x8_t __rev1_269; __rev1_269 = __builtin_shufflevector(__s1_269, __s1_269, 7, 6, 5, 4, 3, 2, 1, 0); \
  67665. float16x4_t __rev2_269; __rev2_269 = __builtin_shufflevector(__s2_269, __s2_269, 3, 2, 1, 0); \
  67666. float32x4_t __ret_269; \
  67667. __ret_269 = __noswap_vfmlalq_low_u32(__rev0_269, __rev1_269, (float16x8_t) {__noswap_vget_lane_f16(__rev2_269, __p3_269), __noswap_vget_lane_f16(__rev2_269, __p3_269), __noswap_vget_lane_f16(__rev2_269, __p3_269), __noswap_vget_lane_f16(__rev2_269, __p3_269), __noswap_vget_lane_f16(__rev2_269, __p3_269), __noswap_vget_lane_f16(__rev2_269, __p3_269), __noswap_vget_lane_f16(__rev2_269, __p3_269), __noswap_vget_lane_f16(__rev2_269, __p3_269)}); \
  67668. __ret_269 = __builtin_shufflevector(__ret_269, __ret_269, 3, 2, 1, 0); \
  67669. __ret_269; \
  67670. })
  67671. #endif
  67672. #ifdef __LITTLE_ENDIAN__
  67673. #define vfmlal_lane_low_u32(__p0_270, __p1_270, __p2_270, __p3_270) __extension__ ({ \
  67674. float32x2_t __s0_270 = __p0_270; \
  67675. float16x4_t __s1_270 = __p1_270; \
  67676. float16x4_t __s2_270 = __p2_270; \
  67677. float32x2_t __ret_270; \
  67678. __ret_270 = vfmlal_low_u32(__s0_270, __s1_270, (float16x4_t) {vget_lane_f16(__s2_270, __p3_270), vget_lane_f16(__s2_270, __p3_270), vget_lane_f16(__s2_270, __p3_270), vget_lane_f16(__s2_270, __p3_270)}); \
  67679. __ret_270; \
  67680. })
  67681. #else
  67682. #define vfmlal_lane_low_u32(__p0_271, __p1_271, __p2_271, __p3_271) __extension__ ({ \
  67683. float32x2_t __s0_271 = __p0_271; \
  67684. float16x4_t __s1_271 = __p1_271; \
  67685. float16x4_t __s2_271 = __p2_271; \
  67686. float32x2_t __rev0_271; __rev0_271 = __builtin_shufflevector(__s0_271, __s0_271, 1, 0); \
  67687. float16x4_t __rev1_271; __rev1_271 = __builtin_shufflevector(__s1_271, __s1_271, 3, 2, 1, 0); \
  67688. float16x4_t __rev2_271; __rev2_271 = __builtin_shufflevector(__s2_271, __s2_271, 3, 2, 1, 0); \
  67689. float32x2_t __ret_271; \
  67690. __ret_271 = __noswap_vfmlal_low_u32(__rev0_271, __rev1_271, (float16x4_t) {__noswap_vget_lane_f16(__rev2_271, __p3_271), __noswap_vget_lane_f16(__rev2_271, __p3_271), __noswap_vget_lane_f16(__rev2_271, __p3_271), __noswap_vget_lane_f16(__rev2_271, __p3_271)}); \
  67691. __ret_271 = __builtin_shufflevector(__ret_271, __ret_271, 1, 0); \
  67692. __ret_271; \
  67693. })
  67694. #endif
  67695. #ifdef __LITTLE_ENDIAN__
  67696. #define vfmlalq_laneq_high_u32(__p0_272, __p1_272, __p2_272, __p3_272) __extension__ ({ \
  67697. float32x4_t __s0_272 = __p0_272; \
  67698. float16x8_t __s1_272 = __p1_272; \
  67699. float16x8_t __s2_272 = __p2_272; \
  67700. float32x4_t __ret_272; \
  67701. __ret_272 = vfmlalq_high_u32(__s0_272, __s1_272, (float16x8_t) {vgetq_lane_f16(__s2_272, __p3_272), vgetq_lane_f16(__s2_272, __p3_272), vgetq_lane_f16(__s2_272, __p3_272), vgetq_lane_f16(__s2_272, __p3_272), vgetq_lane_f16(__s2_272, __p3_272), vgetq_lane_f16(__s2_272, __p3_272), vgetq_lane_f16(__s2_272, __p3_272), vgetq_lane_f16(__s2_272, __p3_272)}); \
  67702. __ret_272; \
  67703. })
  67704. #else
  67705. #define vfmlalq_laneq_high_u32(__p0_273, __p1_273, __p2_273, __p3_273) __extension__ ({ \
  67706. float32x4_t __s0_273 = __p0_273; \
  67707. float16x8_t __s1_273 = __p1_273; \
  67708. float16x8_t __s2_273 = __p2_273; \
  67709. float32x4_t __rev0_273; __rev0_273 = __builtin_shufflevector(__s0_273, __s0_273, 3, 2, 1, 0); \
  67710. float16x8_t __rev1_273; __rev1_273 = __builtin_shufflevector(__s1_273, __s1_273, 7, 6, 5, 4, 3, 2, 1, 0); \
  67711. float16x8_t __rev2_273; __rev2_273 = __builtin_shufflevector(__s2_273, __s2_273, 7, 6, 5, 4, 3, 2, 1, 0); \
  67712. float32x4_t __ret_273; \
  67713. __ret_273 = __noswap_vfmlalq_high_u32(__rev0_273, __rev1_273, (float16x8_t) {__noswap_vgetq_lane_f16(__rev2_273, __p3_273), __noswap_vgetq_lane_f16(__rev2_273, __p3_273), __noswap_vgetq_lane_f16(__rev2_273, __p3_273), __noswap_vgetq_lane_f16(__rev2_273, __p3_273), __noswap_vgetq_lane_f16(__rev2_273, __p3_273), __noswap_vgetq_lane_f16(__rev2_273, __p3_273), __noswap_vgetq_lane_f16(__rev2_273, __p3_273), __noswap_vgetq_lane_f16(__rev2_273, __p3_273)}); \
  67714. __ret_273 = __builtin_shufflevector(__ret_273, __ret_273, 3, 2, 1, 0); \
  67715. __ret_273; \
  67716. })
  67717. #endif
  67718. #ifdef __LITTLE_ENDIAN__
  67719. #define vfmlal_laneq_high_u32(__p0_274, __p1_274, __p2_274, __p3_274) __extension__ ({ \
  67720. float32x2_t __s0_274 = __p0_274; \
  67721. float16x4_t __s1_274 = __p1_274; \
  67722. float16x8_t __s2_274 = __p2_274; \
  67723. float32x2_t __ret_274; \
  67724. __ret_274 = vfmlal_high_u32(__s0_274, __s1_274, (float16x4_t) {vgetq_lane_f16(__s2_274, __p3_274), vgetq_lane_f16(__s2_274, __p3_274), vgetq_lane_f16(__s2_274, __p3_274), vgetq_lane_f16(__s2_274, __p3_274)}); \
  67725. __ret_274; \
  67726. })
  67727. #else
  67728. #define vfmlal_laneq_high_u32(__p0_275, __p1_275, __p2_275, __p3_275) __extension__ ({ \
  67729. float32x2_t __s0_275 = __p0_275; \
  67730. float16x4_t __s1_275 = __p1_275; \
  67731. float16x8_t __s2_275 = __p2_275; \
  67732. float32x2_t __rev0_275; __rev0_275 = __builtin_shufflevector(__s0_275, __s0_275, 1, 0); \
  67733. float16x4_t __rev1_275; __rev1_275 = __builtin_shufflevector(__s1_275, __s1_275, 3, 2, 1, 0); \
  67734. float16x8_t __rev2_275; __rev2_275 = __builtin_shufflevector(__s2_275, __s2_275, 7, 6, 5, 4, 3, 2, 1, 0); \
  67735. float32x2_t __ret_275; \
  67736. __ret_275 = __noswap_vfmlal_high_u32(__rev0_275, __rev1_275, (float16x4_t) {__noswap_vgetq_lane_f16(__rev2_275, __p3_275), __noswap_vgetq_lane_f16(__rev2_275, __p3_275), __noswap_vgetq_lane_f16(__rev2_275, __p3_275), __noswap_vgetq_lane_f16(__rev2_275, __p3_275)}); \
  67737. __ret_275 = __builtin_shufflevector(__ret_275, __ret_275, 1, 0); \
  67738. __ret_275; \
  67739. })
  67740. #endif
  67741. #ifdef __LITTLE_ENDIAN__
  67742. #define vfmlalq_laneq_low_u32(__p0_276, __p1_276, __p2_276, __p3_276) __extension__ ({ \
  67743. float32x4_t __s0_276 = __p0_276; \
  67744. float16x8_t __s1_276 = __p1_276; \
  67745. float16x8_t __s2_276 = __p2_276; \
  67746. float32x4_t __ret_276; \
  67747. __ret_276 = vfmlalq_low_u32(__s0_276, __s1_276, (float16x8_t) {vgetq_lane_f16(__s2_276, __p3_276), vgetq_lane_f16(__s2_276, __p3_276), vgetq_lane_f16(__s2_276, __p3_276), vgetq_lane_f16(__s2_276, __p3_276), vgetq_lane_f16(__s2_276, __p3_276), vgetq_lane_f16(__s2_276, __p3_276), vgetq_lane_f16(__s2_276, __p3_276), vgetq_lane_f16(__s2_276, __p3_276)}); \
  67748. __ret_276; \
  67749. })
  67750. #else
  67751. #define vfmlalq_laneq_low_u32(__p0_277, __p1_277, __p2_277, __p3_277) __extension__ ({ \
  67752. float32x4_t __s0_277 = __p0_277; \
  67753. float16x8_t __s1_277 = __p1_277; \
  67754. float16x8_t __s2_277 = __p2_277; \
  67755. float32x4_t __rev0_277; __rev0_277 = __builtin_shufflevector(__s0_277, __s0_277, 3, 2, 1, 0); \
  67756. float16x8_t __rev1_277; __rev1_277 = __builtin_shufflevector(__s1_277, __s1_277, 7, 6, 5, 4, 3, 2, 1, 0); \
  67757. float16x8_t __rev2_277; __rev2_277 = __builtin_shufflevector(__s2_277, __s2_277, 7, 6, 5, 4, 3, 2, 1, 0); \
  67758. float32x4_t __ret_277; \
  67759. __ret_277 = __noswap_vfmlalq_low_u32(__rev0_277, __rev1_277, (float16x8_t) {__noswap_vgetq_lane_f16(__rev2_277, __p3_277), __noswap_vgetq_lane_f16(__rev2_277, __p3_277), __noswap_vgetq_lane_f16(__rev2_277, __p3_277), __noswap_vgetq_lane_f16(__rev2_277, __p3_277), __noswap_vgetq_lane_f16(__rev2_277, __p3_277), __noswap_vgetq_lane_f16(__rev2_277, __p3_277), __noswap_vgetq_lane_f16(__rev2_277, __p3_277), __noswap_vgetq_lane_f16(__rev2_277, __p3_277)}); \
  67760. __ret_277 = __builtin_shufflevector(__ret_277, __ret_277, 3, 2, 1, 0); \
  67761. __ret_277; \
  67762. })
  67763. #endif
  67764. #ifdef __LITTLE_ENDIAN__
  67765. #define vfmlal_laneq_low_u32(__p0_278, __p1_278, __p2_278, __p3_278) __extension__ ({ \
  67766. float32x2_t __s0_278 = __p0_278; \
  67767. float16x4_t __s1_278 = __p1_278; \
  67768. float16x8_t __s2_278 = __p2_278; \
  67769. float32x2_t __ret_278; \
  67770. __ret_278 = vfmlal_low_u32(__s0_278, __s1_278, (float16x4_t) {vgetq_lane_f16(__s2_278, __p3_278), vgetq_lane_f16(__s2_278, __p3_278), vgetq_lane_f16(__s2_278, __p3_278), vgetq_lane_f16(__s2_278, __p3_278)}); \
  67771. __ret_278; \
  67772. })
  67773. #else
  67774. #define vfmlal_laneq_low_u32(__p0_279, __p1_279, __p2_279, __p3_279) __extension__ ({ \
  67775. float32x2_t __s0_279 = __p0_279; \
  67776. float16x4_t __s1_279 = __p1_279; \
  67777. float16x8_t __s2_279 = __p2_279; \
  67778. float32x2_t __rev0_279; __rev0_279 = __builtin_shufflevector(__s0_279, __s0_279, 1, 0); \
  67779. float16x4_t __rev1_279; __rev1_279 = __builtin_shufflevector(__s1_279, __s1_279, 3, 2, 1, 0); \
  67780. float16x8_t __rev2_279; __rev2_279 = __builtin_shufflevector(__s2_279, __s2_279, 7, 6, 5, 4, 3, 2, 1, 0); \
  67781. float32x2_t __ret_279; \
  67782. __ret_279 = __noswap_vfmlal_low_u32(__rev0_279, __rev1_279, (float16x4_t) {__noswap_vgetq_lane_f16(__rev2_279, __p3_279), __noswap_vgetq_lane_f16(__rev2_279, __p3_279), __noswap_vgetq_lane_f16(__rev2_279, __p3_279), __noswap_vgetq_lane_f16(__rev2_279, __p3_279)}); \
  67783. __ret_279 = __builtin_shufflevector(__ret_279, __ret_279, 1, 0); \
  67784. __ret_279; \
  67785. })
  67786. #endif
  67787. #ifdef __LITTLE_ENDIAN__
  67788. #define vfmlslq_lane_high_u32(__p0_280, __p1_280, __p2_280, __p3_280) __extension__ ({ \
  67789. float32x4_t __s0_280 = __p0_280; \
  67790. float16x8_t __s1_280 = __p1_280; \
  67791. float16x4_t __s2_280 = __p2_280; \
  67792. float32x4_t __ret_280; \
  67793. __ret_280 = vfmlslq_high_u32(__s0_280, __s1_280, (float16x8_t) {vget_lane_f16(__s2_280, __p3_280), vget_lane_f16(__s2_280, __p3_280), vget_lane_f16(__s2_280, __p3_280), vget_lane_f16(__s2_280, __p3_280), vget_lane_f16(__s2_280, __p3_280), vget_lane_f16(__s2_280, __p3_280), vget_lane_f16(__s2_280, __p3_280), vget_lane_f16(__s2_280, __p3_280)}); \
  67794. __ret_280; \
  67795. })
  67796. #else
  67797. #define vfmlslq_lane_high_u32(__p0_281, __p1_281, __p2_281, __p3_281) __extension__ ({ \
  67798. float32x4_t __s0_281 = __p0_281; \
  67799. float16x8_t __s1_281 = __p1_281; \
  67800. float16x4_t __s2_281 = __p2_281; \
  67801. float32x4_t __rev0_281; __rev0_281 = __builtin_shufflevector(__s0_281, __s0_281, 3, 2, 1, 0); \
  67802. float16x8_t __rev1_281; __rev1_281 = __builtin_shufflevector(__s1_281, __s1_281, 7, 6, 5, 4, 3, 2, 1, 0); \
  67803. float16x4_t __rev2_281; __rev2_281 = __builtin_shufflevector(__s2_281, __s2_281, 3, 2, 1, 0); \
  67804. float32x4_t __ret_281; \
  67805. __ret_281 = __noswap_vfmlslq_high_u32(__rev0_281, __rev1_281, (float16x8_t) {__noswap_vget_lane_f16(__rev2_281, __p3_281), __noswap_vget_lane_f16(__rev2_281, __p3_281), __noswap_vget_lane_f16(__rev2_281, __p3_281), __noswap_vget_lane_f16(__rev2_281, __p3_281), __noswap_vget_lane_f16(__rev2_281, __p3_281), __noswap_vget_lane_f16(__rev2_281, __p3_281), __noswap_vget_lane_f16(__rev2_281, __p3_281), __noswap_vget_lane_f16(__rev2_281, __p3_281)}); \
  67806. __ret_281 = __builtin_shufflevector(__ret_281, __ret_281, 3, 2, 1, 0); \
  67807. __ret_281; \
  67808. })
  67809. #endif
  67810. #ifdef __LITTLE_ENDIAN__
  67811. #define vfmlsl_lane_high_u32(__p0_282, __p1_282, __p2_282, __p3_282) __extension__ ({ \
  67812. float32x2_t __s0_282 = __p0_282; \
  67813. float16x4_t __s1_282 = __p1_282; \
  67814. float16x4_t __s2_282 = __p2_282; \
  67815. float32x2_t __ret_282; \
  67816. __ret_282 = vfmlsl_high_u32(__s0_282, __s1_282, (float16x4_t) {vget_lane_f16(__s2_282, __p3_282), vget_lane_f16(__s2_282, __p3_282), vget_lane_f16(__s2_282, __p3_282), vget_lane_f16(__s2_282, __p3_282)}); \
  67817. __ret_282; \
  67818. })
  67819. #else
  67820. #define vfmlsl_lane_high_u32(__p0_283, __p1_283, __p2_283, __p3_283) __extension__ ({ \
  67821. float32x2_t __s0_283 = __p0_283; \
  67822. float16x4_t __s1_283 = __p1_283; \
  67823. float16x4_t __s2_283 = __p2_283; \
  67824. float32x2_t __rev0_283; __rev0_283 = __builtin_shufflevector(__s0_283, __s0_283, 1, 0); \
  67825. float16x4_t __rev1_283; __rev1_283 = __builtin_shufflevector(__s1_283, __s1_283, 3, 2, 1, 0); \
  67826. float16x4_t __rev2_283; __rev2_283 = __builtin_shufflevector(__s2_283, __s2_283, 3, 2, 1, 0); \
  67827. float32x2_t __ret_283; \
  67828. __ret_283 = __noswap_vfmlsl_high_u32(__rev0_283, __rev1_283, (float16x4_t) {__noswap_vget_lane_f16(__rev2_283, __p3_283), __noswap_vget_lane_f16(__rev2_283, __p3_283), __noswap_vget_lane_f16(__rev2_283, __p3_283), __noswap_vget_lane_f16(__rev2_283, __p3_283)}); \
  67829. __ret_283 = __builtin_shufflevector(__ret_283, __ret_283, 1, 0); \
  67830. __ret_283; \
  67831. })
  67832. #endif
  67833. #ifdef __LITTLE_ENDIAN__
  67834. #define vfmlslq_lane_low_u32(__p0_284, __p1_284, __p2_284, __p3_284) __extension__ ({ \
  67835. float32x4_t __s0_284 = __p0_284; \
  67836. float16x8_t __s1_284 = __p1_284; \
  67837. float16x4_t __s2_284 = __p2_284; \
  67838. float32x4_t __ret_284; \
  67839. __ret_284 = vfmlslq_low_u32(__s0_284, __s1_284, (float16x8_t) {vget_lane_f16(__s2_284, __p3_284), vget_lane_f16(__s2_284, __p3_284), vget_lane_f16(__s2_284, __p3_284), vget_lane_f16(__s2_284, __p3_284), vget_lane_f16(__s2_284, __p3_284), vget_lane_f16(__s2_284, __p3_284), vget_lane_f16(__s2_284, __p3_284), vget_lane_f16(__s2_284, __p3_284)}); \
  67840. __ret_284; \
  67841. })
  67842. #else
  67843. #define vfmlslq_lane_low_u32(__p0_285, __p1_285, __p2_285, __p3_285) __extension__ ({ \
  67844. float32x4_t __s0_285 = __p0_285; \
  67845. float16x8_t __s1_285 = __p1_285; \
  67846. float16x4_t __s2_285 = __p2_285; \
  67847. float32x4_t __rev0_285; __rev0_285 = __builtin_shufflevector(__s0_285, __s0_285, 3, 2, 1, 0); \
  67848. float16x8_t __rev1_285; __rev1_285 = __builtin_shufflevector(__s1_285, __s1_285, 7, 6, 5, 4, 3, 2, 1, 0); \
  67849. float16x4_t __rev2_285; __rev2_285 = __builtin_shufflevector(__s2_285, __s2_285, 3, 2, 1, 0); \
  67850. float32x4_t __ret_285; \
  67851. __ret_285 = __noswap_vfmlslq_low_u32(__rev0_285, __rev1_285, (float16x8_t) {__noswap_vget_lane_f16(__rev2_285, __p3_285), __noswap_vget_lane_f16(__rev2_285, __p3_285), __noswap_vget_lane_f16(__rev2_285, __p3_285), __noswap_vget_lane_f16(__rev2_285, __p3_285), __noswap_vget_lane_f16(__rev2_285, __p3_285), __noswap_vget_lane_f16(__rev2_285, __p3_285), __noswap_vget_lane_f16(__rev2_285, __p3_285), __noswap_vget_lane_f16(__rev2_285, __p3_285)}); \
  67852. __ret_285 = __builtin_shufflevector(__ret_285, __ret_285, 3, 2, 1, 0); \
  67853. __ret_285; \
  67854. })
  67855. #endif
  67856. #ifdef __LITTLE_ENDIAN__
  67857. #define vfmlsl_lane_low_u32(__p0_286, __p1_286, __p2_286, __p3_286) __extension__ ({ \
  67858. float32x2_t __s0_286 = __p0_286; \
  67859. float16x4_t __s1_286 = __p1_286; \
  67860. float16x4_t __s2_286 = __p2_286; \
  67861. float32x2_t __ret_286; \
  67862. __ret_286 = vfmlsl_low_u32(__s0_286, __s1_286, (float16x4_t) {vget_lane_f16(__s2_286, __p3_286), vget_lane_f16(__s2_286, __p3_286), vget_lane_f16(__s2_286, __p3_286), vget_lane_f16(__s2_286, __p3_286)}); \
  67863. __ret_286; \
  67864. })
  67865. #else
  67866. #define vfmlsl_lane_low_u32(__p0_287, __p1_287, __p2_287, __p3_287) __extension__ ({ \
  67867. float32x2_t __s0_287 = __p0_287; \
  67868. float16x4_t __s1_287 = __p1_287; \
  67869. float16x4_t __s2_287 = __p2_287; \
  67870. float32x2_t __rev0_287; __rev0_287 = __builtin_shufflevector(__s0_287, __s0_287, 1, 0); \
  67871. float16x4_t __rev1_287; __rev1_287 = __builtin_shufflevector(__s1_287, __s1_287, 3, 2, 1, 0); \
  67872. float16x4_t __rev2_287; __rev2_287 = __builtin_shufflevector(__s2_287, __s2_287, 3, 2, 1, 0); \
  67873. float32x2_t __ret_287; \
  67874. __ret_287 = __noswap_vfmlsl_low_u32(__rev0_287, __rev1_287, (float16x4_t) {__noswap_vget_lane_f16(__rev2_287, __p3_287), __noswap_vget_lane_f16(__rev2_287, __p3_287), __noswap_vget_lane_f16(__rev2_287, __p3_287), __noswap_vget_lane_f16(__rev2_287, __p3_287)}); \
  67875. __ret_287 = __builtin_shufflevector(__ret_287, __ret_287, 1, 0); \
  67876. __ret_287; \
  67877. })
  67878. #endif
  67879. #ifdef __LITTLE_ENDIAN__
  67880. #define vfmlslq_laneq_high_u32(__p0_288, __p1_288, __p2_288, __p3_288) __extension__ ({ \
  67881. float32x4_t __s0_288 = __p0_288; \
  67882. float16x8_t __s1_288 = __p1_288; \
  67883. float16x8_t __s2_288 = __p2_288; \
  67884. float32x4_t __ret_288; \
  67885. __ret_288 = vfmlslq_high_u32(__s0_288, __s1_288, (float16x8_t) {vgetq_lane_f16(__s2_288, __p3_288), vgetq_lane_f16(__s2_288, __p3_288), vgetq_lane_f16(__s2_288, __p3_288), vgetq_lane_f16(__s2_288, __p3_288), vgetq_lane_f16(__s2_288, __p3_288), vgetq_lane_f16(__s2_288, __p3_288), vgetq_lane_f16(__s2_288, __p3_288), vgetq_lane_f16(__s2_288, __p3_288)}); \
  67886. __ret_288; \
  67887. })
  67888. #else
  67889. #define vfmlslq_laneq_high_u32(__p0_289, __p1_289, __p2_289, __p3_289) __extension__ ({ \
  67890. float32x4_t __s0_289 = __p0_289; \
  67891. float16x8_t __s1_289 = __p1_289; \
  67892. float16x8_t __s2_289 = __p2_289; \
  67893. float32x4_t __rev0_289; __rev0_289 = __builtin_shufflevector(__s0_289, __s0_289, 3, 2, 1, 0); \
  67894. float16x8_t __rev1_289; __rev1_289 = __builtin_shufflevector(__s1_289, __s1_289, 7, 6, 5, 4, 3, 2, 1, 0); \
  67895. float16x8_t __rev2_289; __rev2_289 = __builtin_shufflevector(__s2_289, __s2_289, 7, 6, 5, 4, 3, 2, 1, 0); \
  67896. float32x4_t __ret_289; \
  67897. __ret_289 = __noswap_vfmlslq_high_u32(__rev0_289, __rev1_289, (float16x8_t) {__noswap_vgetq_lane_f16(__rev2_289, __p3_289), __noswap_vgetq_lane_f16(__rev2_289, __p3_289), __noswap_vgetq_lane_f16(__rev2_289, __p3_289), __noswap_vgetq_lane_f16(__rev2_289, __p3_289), __noswap_vgetq_lane_f16(__rev2_289, __p3_289), __noswap_vgetq_lane_f16(__rev2_289, __p3_289), __noswap_vgetq_lane_f16(__rev2_289, __p3_289), __noswap_vgetq_lane_f16(__rev2_289, __p3_289)}); \
  67898. __ret_289 = __builtin_shufflevector(__ret_289, __ret_289, 3, 2, 1, 0); \
  67899. __ret_289; \
  67900. })
  67901. #endif
  67902. #ifdef __LITTLE_ENDIAN__
  67903. #define vfmlsl_laneq_high_u32(__p0_290, __p1_290, __p2_290, __p3_290) __extension__ ({ \
  67904. float32x2_t __s0_290 = __p0_290; \
  67905. float16x4_t __s1_290 = __p1_290; \
  67906. float16x8_t __s2_290 = __p2_290; \
  67907. float32x2_t __ret_290; \
  67908. __ret_290 = vfmlsl_high_u32(__s0_290, __s1_290, (float16x4_t) {vgetq_lane_f16(__s2_290, __p3_290), vgetq_lane_f16(__s2_290, __p3_290), vgetq_lane_f16(__s2_290, __p3_290), vgetq_lane_f16(__s2_290, __p3_290)}); \
  67909. __ret_290; \
  67910. })
  67911. #else
  67912. #define vfmlsl_laneq_high_u32(__p0_291, __p1_291, __p2_291, __p3_291) __extension__ ({ \
  67913. float32x2_t __s0_291 = __p0_291; \
  67914. float16x4_t __s1_291 = __p1_291; \
  67915. float16x8_t __s2_291 = __p2_291; \
  67916. float32x2_t __rev0_291; __rev0_291 = __builtin_shufflevector(__s0_291, __s0_291, 1, 0); \
  67917. float16x4_t __rev1_291; __rev1_291 = __builtin_shufflevector(__s1_291, __s1_291, 3, 2, 1, 0); \
  67918. float16x8_t __rev2_291; __rev2_291 = __builtin_shufflevector(__s2_291, __s2_291, 7, 6, 5, 4, 3, 2, 1, 0); \
  67919. float32x2_t __ret_291; \
  67920. __ret_291 = __noswap_vfmlsl_high_u32(__rev0_291, __rev1_291, (float16x4_t) {__noswap_vgetq_lane_f16(__rev2_291, __p3_291), __noswap_vgetq_lane_f16(__rev2_291, __p3_291), __noswap_vgetq_lane_f16(__rev2_291, __p3_291), __noswap_vgetq_lane_f16(__rev2_291, __p3_291)}); \
  67921. __ret_291 = __builtin_shufflevector(__ret_291, __ret_291, 1, 0); \
  67922. __ret_291; \
  67923. })
  67924. #endif
  67925. #ifdef __LITTLE_ENDIAN__
  67926. #define vfmlslq_laneq_low_u32(__p0_292, __p1_292, __p2_292, __p3_292) __extension__ ({ \
  67927. float32x4_t __s0_292 = __p0_292; \
  67928. float16x8_t __s1_292 = __p1_292; \
  67929. float16x8_t __s2_292 = __p2_292; \
  67930. float32x4_t __ret_292; \
  67931. __ret_292 = vfmlslq_low_u32(__s0_292, __s1_292, (float16x8_t) {vgetq_lane_f16(__s2_292, __p3_292), vgetq_lane_f16(__s2_292, __p3_292), vgetq_lane_f16(__s2_292, __p3_292), vgetq_lane_f16(__s2_292, __p3_292), vgetq_lane_f16(__s2_292, __p3_292), vgetq_lane_f16(__s2_292, __p3_292), vgetq_lane_f16(__s2_292, __p3_292), vgetq_lane_f16(__s2_292, __p3_292)}); \
  67932. __ret_292; \
  67933. })
  67934. #else
  67935. #define vfmlslq_laneq_low_u32(__p0_293, __p1_293, __p2_293, __p3_293) __extension__ ({ \
  67936. float32x4_t __s0_293 = __p0_293; \
  67937. float16x8_t __s1_293 = __p1_293; \
  67938. float16x8_t __s2_293 = __p2_293; \
  67939. float32x4_t __rev0_293; __rev0_293 = __builtin_shufflevector(__s0_293, __s0_293, 3, 2, 1, 0); \
  67940. float16x8_t __rev1_293; __rev1_293 = __builtin_shufflevector(__s1_293, __s1_293, 7, 6, 5, 4, 3, 2, 1, 0); \
  67941. float16x8_t __rev2_293; __rev2_293 = __builtin_shufflevector(__s2_293, __s2_293, 7, 6, 5, 4, 3, 2, 1, 0); \
  67942. float32x4_t __ret_293; \
  67943. __ret_293 = __noswap_vfmlslq_low_u32(__rev0_293, __rev1_293, (float16x8_t) {__noswap_vgetq_lane_f16(__rev2_293, __p3_293), __noswap_vgetq_lane_f16(__rev2_293, __p3_293), __noswap_vgetq_lane_f16(__rev2_293, __p3_293), __noswap_vgetq_lane_f16(__rev2_293, __p3_293), __noswap_vgetq_lane_f16(__rev2_293, __p3_293), __noswap_vgetq_lane_f16(__rev2_293, __p3_293), __noswap_vgetq_lane_f16(__rev2_293, __p3_293), __noswap_vgetq_lane_f16(__rev2_293, __p3_293)}); \
  67944. __ret_293 = __builtin_shufflevector(__ret_293, __ret_293, 3, 2, 1, 0); \
  67945. __ret_293; \
  67946. })
  67947. #endif
  67948. #ifdef __LITTLE_ENDIAN__
  67949. #define vfmlsl_laneq_low_u32(__p0_294, __p1_294, __p2_294, __p3_294) __extension__ ({ \
  67950. float32x2_t __s0_294 = __p0_294; \
  67951. float16x4_t __s1_294 = __p1_294; \
  67952. float16x8_t __s2_294 = __p2_294; \
  67953. float32x2_t __ret_294; \
  67954. __ret_294 = vfmlsl_low_u32(__s0_294, __s1_294, (float16x4_t) {vgetq_lane_f16(__s2_294, __p3_294), vgetq_lane_f16(__s2_294, __p3_294), vgetq_lane_f16(__s2_294, __p3_294), vgetq_lane_f16(__s2_294, __p3_294)}); \
  67955. __ret_294; \
  67956. })
  67957. #else
  67958. #define vfmlsl_laneq_low_u32(__p0_295, __p1_295, __p2_295, __p3_295) __extension__ ({ \
  67959. float32x2_t __s0_295 = __p0_295; \
  67960. float16x4_t __s1_295 = __p1_295; \
  67961. float16x8_t __s2_295 = __p2_295; \
  67962. float32x2_t __rev0_295; __rev0_295 = __builtin_shufflevector(__s0_295, __s0_295, 1, 0); \
  67963. float16x4_t __rev1_295; __rev1_295 = __builtin_shufflevector(__s1_295, __s1_295, 3, 2, 1, 0); \
  67964. float16x8_t __rev2_295; __rev2_295 = __builtin_shufflevector(__s2_295, __s2_295, 7, 6, 5, 4, 3, 2, 1, 0); \
  67965. float32x2_t __ret_295; \
  67966. __ret_295 = __noswap_vfmlsl_low_u32(__rev0_295, __rev1_295, (float16x4_t) {__noswap_vgetq_lane_f16(__rev2_295, __p3_295), __noswap_vgetq_lane_f16(__rev2_295, __p3_295), __noswap_vgetq_lane_f16(__rev2_295, __p3_295), __noswap_vgetq_lane_f16(__rev2_295, __p3_295)}); \
  67967. __ret_295 = __builtin_shufflevector(__ret_295, __ret_295, 1, 0); \
  67968. __ret_295; \
  67969. })
  67970. #endif
  67971. #endif
  67972. #if defined(__ARM_FEATURE_FP16_VECTOR_ARITHMETIC) && defined(__aarch64__)
  67973. #ifdef __LITTLE_ENDIAN__
  67974. #define vmulh_lane_f16(__p0_296, __p1_296, __p2_296) __extension__ ({ \
  67975. float16_t __s0_296 = __p0_296; \
  67976. float16x4_t __s1_296 = __p1_296; \
  67977. float16_t __ret_296; \
  67978. __ret_296 = __s0_296 * vget_lane_f16(__s1_296, __p2_296); \
  67979. __ret_296; \
  67980. })
  67981. #else
  67982. #define vmulh_lane_f16(__p0_297, __p1_297, __p2_297) __extension__ ({ \
  67983. float16_t __s0_297 = __p0_297; \
  67984. float16x4_t __s1_297 = __p1_297; \
  67985. float16x4_t __rev1_297; __rev1_297 = __builtin_shufflevector(__s1_297, __s1_297, 3, 2, 1, 0); \
  67986. float16_t __ret_297; \
  67987. __ret_297 = __s0_297 * __noswap_vget_lane_f16(__rev1_297, __p2_297); \
  67988. __ret_297; \
  67989. })
  67990. #endif
  67991. #ifdef __LITTLE_ENDIAN__
  67992. #define vmulh_laneq_f16(__p0_298, __p1_298, __p2_298) __extension__ ({ \
  67993. float16_t __s0_298 = __p0_298; \
  67994. float16x8_t __s1_298 = __p1_298; \
  67995. float16_t __ret_298; \
  67996. __ret_298 = __s0_298 * vgetq_lane_f16(__s1_298, __p2_298); \
  67997. __ret_298; \
  67998. })
  67999. #else
  68000. #define vmulh_laneq_f16(__p0_299, __p1_299, __p2_299) __extension__ ({ \
  68001. float16_t __s0_299 = __p0_299; \
  68002. float16x8_t __s1_299 = __p1_299; \
  68003. float16x8_t __rev1_299; __rev1_299 = __builtin_shufflevector(__s1_299, __s1_299, 7, 6, 5, 4, 3, 2, 1, 0); \
  68004. float16_t __ret_299; \
  68005. __ret_299 = __s0_299 * __noswap_vgetq_lane_f16(__rev1_299, __p2_299); \
  68006. __ret_299; \
  68007. })
  68008. #endif
  68009. #endif
  68010. #if defined(__ARM_FEATURE_QRDMX) && defined(__aarch64__)
  68011. #ifdef __LITTLE_ENDIAN__
  68012. __ai int32_t vqrdmlahs_s32(int32_t __p0, int32_t __p1, int32_t __p2) {
  68013. int32_t __ret;
  68014. __ret = vqadds_s32(__p0, vqrdmulhs_s32(__p1, __p2));
  68015. return __ret;
  68016. }
  68017. #else
  68018. __ai int32_t vqrdmlahs_s32(int32_t __p0, int32_t __p1, int32_t __p2) {
  68019. int32_t __ret;
  68020. __ret = __noswap_vqadds_s32(__p0, __noswap_vqrdmulhs_s32(__p1, __p2));
  68021. return __ret;
  68022. }
  68023. #endif
  68024. #ifdef __LITTLE_ENDIAN__
  68025. __ai int16_t vqrdmlahh_s16(int16_t __p0, int16_t __p1, int16_t __p2) {
  68026. int16_t __ret;
  68027. __ret = vqaddh_s16(__p0, vqrdmulhh_s16(__p1, __p2));
  68028. return __ret;
  68029. }
  68030. #else
  68031. __ai int16_t vqrdmlahh_s16(int16_t __p0, int16_t __p1, int16_t __p2) {
  68032. int16_t __ret;
  68033. __ret = __noswap_vqaddh_s16(__p0, __noswap_vqrdmulhh_s16(__p1, __p2));
  68034. return __ret;
  68035. }
  68036. #endif
  68037. #ifdef __LITTLE_ENDIAN__
  68038. #define vqrdmlahs_lane_s32(__p0_300, __p1_300, __p2_300, __p3_300) __extension__ ({ \
  68039. int32_t __s0_300 = __p0_300; \
  68040. int32_t __s1_300 = __p1_300; \
  68041. int32x2_t __s2_300 = __p2_300; \
  68042. int32_t __ret_300; \
  68043. __ret_300 = vqadds_s32(__s0_300, vqrdmulhs_s32(__s1_300, vget_lane_s32(__s2_300, __p3_300))); \
  68044. __ret_300; \
  68045. })
  68046. #else
  68047. #define vqrdmlahs_lane_s32(__p0_301, __p1_301, __p2_301, __p3_301) __extension__ ({ \
  68048. int32_t __s0_301 = __p0_301; \
  68049. int32_t __s1_301 = __p1_301; \
  68050. int32x2_t __s2_301 = __p2_301; \
  68051. int32x2_t __rev2_301; __rev2_301 = __builtin_shufflevector(__s2_301, __s2_301, 1, 0); \
  68052. int32_t __ret_301; \
  68053. __ret_301 = __noswap_vqadds_s32(__s0_301, __noswap_vqrdmulhs_s32(__s1_301, __noswap_vget_lane_s32(__rev2_301, __p3_301))); \
  68054. __ret_301; \
  68055. })
  68056. #endif
  68057. #ifdef __LITTLE_ENDIAN__
  68058. #define vqrdmlahh_lane_s16(__p0_302, __p1_302, __p2_302, __p3_302) __extension__ ({ \
  68059. int16_t __s0_302 = __p0_302; \
  68060. int16_t __s1_302 = __p1_302; \
  68061. int16x4_t __s2_302 = __p2_302; \
  68062. int16_t __ret_302; \
  68063. __ret_302 = vqaddh_s16(__s0_302, vqrdmulhh_s16(__s1_302, vget_lane_s16(__s2_302, __p3_302))); \
  68064. __ret_302; \
  68065. })
  68066. #else
  68067. #define vqrdmlahh_lane_s16(__p0_303, __p1_303, __p2_303, __p3_303) __extension__ ({ \
  68068. int16_t __s0_303 = __p0_303; \
  68069. int16_t __s1_303 = __p1_303; \
  68070. int16x4_t __s2_303 = __p2_303; \
  68071. int16x4_t __rev2_303; __rev2_303 = __builtin_shufflevector(__s2_303, __s2_303, 3, 2, 1, 0); \
  68072. int16_t __ret_303; \
  68073. __ret_303 = __noswap_vqaddh_s16(__s0_303, __noswap_vqrdmulhh_s16(__s1_303, __noswap_vget_lane_s16(__rev2_303, __p3_303))); \
  68074. __ret_303; \
  68075. })
  68076. #endif
  68077. #ifdef __LITTLE_ENDIAN__
  68078. #define vqrdmlahs_laneq_s32(__p0_304, __p1_304, __p2_304, __p3_304) __extension__ ({ \
  68079. int32_t __s0_304 = __p0_304; \
  68080. int32_t __s1_304 = __p1_304; \
  68081. int32x4_t __s2_304 = __p2_304; \
  68082. int32_t __ret_304; \
  68083. __ret_304 = vqadds_s32(__s0_304, vqrdmulhs_s32(__s1_304, vgetq_lane_s32(__s2_304, __p3_304))); \
  68084. __ret_304; \
  68085. })
  68086. #else
  68087. #define vqrdmlahs_laneq_s32(__p0_305, __p1_305, __p2_305, __p3_305) __extension__ ({ \
  68088. int32_t __s0_305 = __p0_305; \
  68089. int32_t __s1_305 = __p1_305; \
  68090. int32x4_t __s2_305 = __p2_305; \
  68091. int32x4_t __rev2_305; __rev2_305 = __builtin_shufflevector(__s2_305, __s2_305, 3, 2, 1, 0); \
  68092. int32_t __ret_305; \
  68093. __ret_305 = __noswap_vqadds_s32(__s0_305, __noswap_vqrdmulhs_s32(__s1_305, __noswap_vgetq_lane_s32(__rev2_305, __p3_305))); \
  68094. __ret_305; \
  68095. })
  68096. #endif
  68097. #ifdef __LITTLE_ENDIAN__
  68098. #define vqrdmlahh_laneq_s16(__p0_306, __p1_306, __p2_306, __p3_306) __extension__ ({ \
  68099. int16_t __s0_306 = __p0_306; \
  68100. int16_t __s1_306 = __p1_306; \
  68101. int16x8_t __s2_306 = __p2_306; \
  68102. int16_t __ret_306; \
  68103. __ret_306 = vqaddh_s16(__s0_306, vqrdmulhh_s16(__s1_306, vgetq_lane_s16(__s2_306, __p3_306))); \
  68104. __ret_306; \
  68105. })
  68106. #else
  68107. #define vqrdmlahh_laneq_s16(__p0_307, __p1_307, __p2_307, __p3_307) __extension__ ({ \
  68108. int16_t __s0_307 = __p0_307; \
  68109. int16_t __s1_307 = __p1_307; \
  68110. int16x8_t __s2_307 = __p2_307; \
  68111. int16x8_t __rev2_307; __rev2_307 = __builtin_shufflevector(__s2_307, __s2_307, 7, 6, 5, 4, 3, 2, 1, 0); \
  68112. int16_t __ret_307; \
  68113. __ret_307 = __noswap_vqaddh_s16(__s0_307, __noswap_vqrdmulhh_s16(__s1_307, __noswap_vgetq_lane_s16(__rev2_307, __p3_307))); \
  68114. __ret_307; \
  68115. })
  68116. #endif
  68117. #ifdef __LITTLE_ENDIAN__
  68118. __ai int32_t vqrdmlshs_s32(int32_t __p0, int32_t __p1, int32_t __p2) {
  68119. int32_t __ret;
  68120. __ret = vqsubs_s32(__p0, vqrdmulhs_s32(__p1, __p2));
  68121. return __ret;
  68122. }
  68123. #else
  68124. __ai int32_t vqrdmlshs_s32(int32_t __p0, int32_t __p1, int32_t __p2) {
  68125. int32_t __ret;
  68126. __ret = __noswap_vqsubs_s32(__p0, __noswap_vqrdmulhs_s32(__p1, __p2));
  68127. return __ret;
  68128. }
  68129. #endif
  68130. #ifdef __LITTLE_ENDIAN__
  68131. __ai int16_t vqrdmlshh_s16(int16_t __p0, int16_t __p1, int16_t __p2) {
  68132. int16_t __ret;
  68133. __ret = vqsubh_s16(__p0, vqrdmulhh_s16(__p1, __p2));
  68134. return __ret;
  68135. }
  68136. #else
  68137. __ai int16_t vqrdmlshh_s16(int16_t __p0, int16_t __p1, int16_t __p2) {
  68138. int16_t __ret;
  68139. __ret = __noswap_vqsubh_s16(__p0, __noswap_vqrdmulhh_s16(__p1, __p2));
  68140. return __ret;
  68141. }
  68142. #endif
  68143. #ifdef __LITTLE_ENDIAN__
  68144. #define vqrdmlshs_lane_s32(__p0_308, __p1_308, __p2_308, __p3_308) __extension__ ({ \
  68145. int32_t __s0_308 = __p0_308; \
  68146. int32_t __s1_308 = __p1_308; \
  68147. int32x2_t __s2_308 = __p2_308; \
  68148. int32_t __ret_308; \
  68149. __ret_308 = vqsubs_s32(__s0_308, vqrdmulhs_s32(__s1_308, vget_lane_s32(__s2_308, __p3_308))); \
  68150. __ret_308; \
  68151. })
  68152. #else
  68153. #define vqrdmlshs_lane_s32(__p0_309, __p1_309, __p2_309, __p3_309) __extension__ ({ \
  68154. int32_t __s0_309 = __p0_309; \
  68155. int32_t __s1_309 = __p1_309; \
  68156. int32x2_t __s2_309 = __p2_309; \
  68157. int32x2_t __rev2_309; __rev2_309 = __builtin_shufflevector(__s2_309, __s2_309, 1, 0); \
  68158. int32_t __ret_309; \
  68159. __ret_309 = __noswap_vqsubs_s32(__s0_309, __noswap_vqrdmulhs_s32(__s1_309, __noswap_vget_lane_s32(__rev2_309, __p3_309))); \
  68160. __ret_309; \
  68161. })
  68162. #endif
  68163. #ifdef __LITTLE_ENDIAN__
  68164. #define vqrdmlshh_lane_s16(__p0_310, __p1_310, __p2_310, __p3_310) __extension__ ({ \
  68165. int16_t __s0_310 = __p0_310; \
  68166. int16_t __s1_310 = __p1_310; \
  68167. int16x4_t __s2_310 = __p2_310; \
  68168. int16_t __ret_310; \
  68169. __ret_310 = vqsubh_s16(__s0_310, vqrdmulhh_s16(__s1_310, vget_lane_s16(__s2_310, __p3_310))); \
  68170. __ret_310; \
  68171. })
  68172. #else
  68173. #define vqrdmlshh_lane_s16(__p0_311, __p1_311, __p2_311, __p3_311) __extension__ ({ \
  68174. int16_t __s0_311 = __p0_311; \
  68175. int16_t __s1_311 = __p1_311; \
  68176. int16x4_t __s2_311 = __p2_311; \
  68177. int16x4_t __rev2_311; __rev2_311 = __builtin_shufflevector(__s2_311, __s2_311, 3, 2, 1, 0); \
  68178. int16_t __ret_311; \
  68179. __ret_311 = __noswap_vqsubh_s16(__s0_311, __noswap_vqrdmulhh_s16(__s1_311, __noswap_vget_lane_s16(__rev2_311, __p3_311))); \
  68180. __ret_311; \
  68181. })
  68182. #endif
  68183. #ifdef __LITTLE_ENDIAN__
  68184. #define vqrdmlshs_laneq_s32(__p0_312, __p1_312, __p2_312, __p3_312) __extension__ ({ \
  68185. int32_t __s0_312 = __p0_312; \
  68186. int32_t __s1_312 = __p1_312; \
  68187. int32x4_t __s2_312 = __p2_312; \
  68188. int32_t __ret_312; \
  68189. __ret_312 = vqsubs_s32(__s0_312, vqrdmulhs_s32(__s1_312, vgetq_lane_s32(__s2_312, __p3_312))); \
  68190. __ret_312; \
  68191. })
  68192. #else
  68193. #define vqrdmlshs_laneq_s32(__p0_313, __p1_313, __p2_313, __p3_313) __extension__ ({ \
  68194. int32_t __s0_313 = __p0_313; \
  68195. int32_t __s1_313 = __p1_313; \
  68196. int32x4_t __s2_313 = __p2_313; \
  68197. int32x4_t __rev2_313; __rev2_313 = __builtin_shufflevector(__s2_313, __s2_313, 3, 2, 1, 0); \
  68198. int32_t __ret_313; \
  68199. __ret_313 = __noswap_vqsubs_s32(__s0_313, __noswap_vqrdmulhs_s32(__s1_313, __noswap_vgetq_lane_s32(__rev2_313, __p3_313))); \
  68200. __ret_313; \
  68201. })
  68202. #endif
  68203. #ifdef __LITTLE_ENDIAN__
  68204. #define vqrdmlshh_laneq_s16(__p0_314, __p1_314, __p2_314, __p3_314) __extension__ ({ \
  68205. int16_t __s0_314 = __p0_314; \
  68206. int16_t __s1_314 = __p1_314; \
  68207. int16x8_t __s2_314 = __p2_314; \
  68208. int16_t __ret_314; \
  68209. __ret_314 = vqsubh_s16(__s0_314, vqrdmulhh_s16(__s1_314, vgetq_lane_s16(__s2_314, __p3_314))); \
  68210. __ret_314; \
  68211. })
  68212. #else
  68213. #define vqrdmlshh_laneq_s16(__p0_315, __p1_315, __p2_315, __p3_315) __extension__ ({ \
  68214. int16_t __s0_315 = __p0_315; \
  68215. int16_t __s1_315 = __p1_315; \
  68216. int16x8_t __s2_315 = __p2_315; \
  68217. int16x8_t __rev2_315; __rev2_315 = __builtin_shufflevector(__s2_315, __s2_315, 7, 6, 5, 4, 3, 2, 1, 0); \
  68218. int16_t __ret_315; \
  68219. __ret_315 = __noswap_vqsubh_s16(__s0_315, __noswap_vqrdmulhh_s16(__s1_315, __noswap_vgetq_lane_s16(__rev2_315, __p3_315))); \
  68220. __ret_315; \
  68221. })
  68222. #endif
  68223. #endif
  68224. #if defined(__aarch64__)
  68225. #ifdef __LITTLE_ENDIAN__
  68226. __ai uint16x8_t vabdl_high_u8(uint8x16_t __p0, uint8x16_t __p1) {
  68227. uint16x8_t __ret;
  68228. __ret = vabdl_u8(vget_high_u8(__p0), vget_high_u8(__p1));
  68229. return __ret;
  68230. }
  68231. #else
  68232. __ai uint16x8_t vabdl_high_u8(uint8x16_t __p0, uint8x16_t __p1) {
  68233. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  68234. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  68235. uint16x8_t __ret;
  68236. __ret = __noswap_vabdl_u8(__noswap_vget_high_u8(__rev0), __noswap_vget_high_u8(__rev1));
  68237. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  68238. return __ret;
  68239. }
  68240. #endif
  68241. #ifdef __LITTLE_ENDIAN__
  68242. __ai uint64x2_t vabdl_high_u32(uint32x4_t __p0, uint32x4_t __p1) {
  68243. uint64x2_t __ret;
  68244. __ret = vabdl_u32(vget_high_u32(__p0), vget_high_u32(__p1));
  68245. return __ret;
  68246. }
  68247. #else
  68248. __ai uint64x2_t vabdl_high_u32(uint32x4_t __p0, uint32x4_t __p1) {
  68249. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  68250. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  68251. uint64x2_t __ret;
  68252. __ret = __noswap_vabdl_u32(__noswap_vget_high_u32(__rev0), __noswap_vget_high_u32(__rev1));
  68253. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  68254. return __ret;
  68255. }
  68256. #endif
  68257. #ifdef __LITTLE_ENDIAN__
  68258. __ai uint32x4_t vabdl_high_u16(uint16x8_t __p0, uint16x8_t __p1) {
  68259. uint32x4_t __ret;
  68260. __ret = vabdl_u16(vget_high_u16(__p0), vget_high_u16(__p1));
  68261. return __ret;
  68262. }
  68263. #else
  68264. __ai uint32x4_t vabdl_high_u16(uint16x8_t __p0, uint16x8_t __p1) {
  68265. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  68266. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  68267. uint32x4_t __ret;
  68268. __ret = __noswap_vabdl_u16(__noswap_vget_high_u16(__rev0), __noswap_vget_high_u16(__rev1));
  68269. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  68270. return __ret;
  68271. }
  68272. #endif
  68273. #ifdef __LITTLE_ENDIAN__
  68274. __ai int16x8_t vabdl_high_s8(int8x16_t __p0, int8x16_t __p1) {
  68275. int16x8_t __ret;
  68276. __ret = vabdl_s8(vget_high_s8(__p0), vget_high_s8(__p1));
  68277. return __ret;
  68278. }
  68279. #else
  68280. __ai int16x8_t vabdl_high_s8(int8x16_t __p0, int8x16_t __p1) {
  68281. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  68282. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  68283. int16x8_t __ret;
  68284. __ret = __noswap_vabdl_s8(__noswap_vget_high_s8(__rev0), __noswap_vget_high_s8(__rev1));
  68285. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  68286. return __ret;
  68287. }
  68288. #endif
  68289. #ifdef __LITTLE_ENDIAN__
  68290. __ai int64x2_t vabdl_high_s32(int32x4_t __p0, int32x4_t __p1) {
  68291. int64x2_t __ret;
  68292. __ret = vabdl_s32(vget_high_s32(__p0), vget_high_s32(__p1));
  68293. return __ret;
  68294. }
  68295. #else
  68296. __ai int64x2_t vabdl_high_s32(int32x4_t __p0, int32x4_t __p1) {
  68297. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  68298. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  68299. int64x2_t __ret;
  68300. __ret = __noswap_vabdl_s32(__noswap_vget_high_s32(__rev0), __noswap_vget_high_s32(__rev1));
  68301. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  68302. return __ret;
  68303. }
  68304. #endif
  68305. #ifdef __LITTLE_ENDIAN__
  68306. __ai int32x4_t vabdl_high_s16(int16x8_t __p0, int16x8_t __p1) {
  68307. int32x4_t __ret;
  68308. __ret = vabdl_s16(vget_high_s16(__p0), vget_high_s16(__p1));
  68309. return __ret;
  68310. }
  68311. #else
  68312. __ai int32x4_t vabdl_high_s16(int16x8_t __p0, int16x8_t __p1) {
  68313. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  68314. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  68315. int32x4_t __ret;
  68316. __ret = __noswap_vabdl_s16(__noswap_vget_high_s16(__rev0), __noswap_vget_high_s16(__rev1));
  68317. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  68318. return __ret;
  68319. }
  68320. #endif
  68321. #ifdef __LITTLE_ENDIAN__
  68322. __ai uint16x8_t vaddl_high_u8(uint8x16_t __p0, uint8x16_t __p1) {
  68323. uint16x8_t __ret;
  68324. __ret = vmovl_high_u8(__p0) + vmovl_high_u8(__p1);
  68325. return __ret;
  68326. }
  68327. #else
  68328. __ai uint16x8_t vaddl_high_u8(uint8x16_t __p0, uint8x16_t __p1) {
  68329. uint8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  68330. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  68331. uint16x8_t __ret;
  68332. __ret = __noswap_vmovl_high_u8(__rev0) + __noswap_vmovl_high_u8(__rev1);
  68333. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  68334. return __ret;
  68335. }
  68336. #endif
  68337. #ifdef __LITTLE_ENDIAN__
  68338. __ai uint64x2_t vaddl_high_u32(uint32x4_t __p0, uint32x4_t __p1) {
  68339. uint64x2_t __ret;
  68340. __ret = vmovl_high_u32(__p0) + vmovl_high_u32(__p1);
  68341. return __ret;
  68342. }
  68343. #else
  68344. __ai uint64x2_t vaddl_high_u32(uint32x4_t __p0, uint32x4_t __p1) {
  68345. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  68346. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  68347. uint64x2_t __ret;
  68348. __ret = __noswap_vmovl_high_u32(__rev0) + __noswap_vmovl_high_u32(__rev1);
  68349. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  68350. return __ret;
  68351. }
  68352. #endif
  68353. #ifdef __LITTLE_ENDIAN__
  68354. __ai uint32x4_t vaddl_high_u16(uint16x8_t __p0, uint16x8_t __p1) {
  68355. uint32x4_t __ret;
  68356. __ret = vmovl_high_u16(__p0) + vmovl_high_u16(__p1);
  68357. return __ret;
  68358. }
  68359. #else
  68360. __ai uint32x4_t vaddl_high_u16(uint16x8_t __p0, uint16x8_t __p1) {
  68361. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  68362. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  68363. uint32x4_t __ret;
  68364. __ret = __noswap_vmovl_high_u16(__rev0) + __noswap_vmovl_high_u16(__rev1);
  68365. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  68366. return __ret;
  68367. }
  68368. #endif
  68369. #ifdef __LITTLE_ENDIAN__
  68370. __ai int16x8_t vaddl_high_s8(int8x16_t __p0, int8x16_t __p1) {
  68371. int16x8_t __ret;
  68372. __ret = vmovl_high_s8(__p0) + vmovl_high_s8(__p1);
  68373. return __ret;
  68374. }
  68375. #else
  68376. __ai int16x8_t vaddl_high_s8(int8x16_t __p0, int8x16_t __p1) {
  68377. int8x16_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  68378. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  68379. int16x8_t __ret;
  68380. __ret = __noswap_vmovl_high_s8(__rev0) + __noswap_vmovl_high_s8(__rev1);
  68381. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  68382. return __ret;
  68383. }
  68384. #endif
  68385. #ifdef __LITTLE_ENDIAN__
  68386. __ai int64x2_t vaddl_high_s32(int32x4_t __p0, int32x4_t __p1) {
  68387. int64x2_t __ret;
  68388. __ret = vmovl_high_s32(__p0) + vmovl_high_s32(__p1);
  68389. return __ret;
  68390. }
  68391. #else
  68392. __ai int64x2_t vaddl_high_s32(int32x4_t __p0, int32x4_t __p1) {
  68393. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  68394. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  68395. int64x2_t __ret;
  68396. __ret = __noswap_vmovl_high_s32(__rev0) + __noswap_vmovl_high_s32(__rev1);
  68397. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  68398. return __ret;
  68399. }
  68400. #endif
  68401. #ifdef __LITTLE_ENDIAN__
  68402. __ai int32x4_t vaddl_high_s16(int16x8_t __p0, int16x8_t __p1) {
  68403. int32x4_t __ret;
  68404. __ret = vmovl_high_s16(__p0) + vmovl_high_s16(__p1);
  68405. return __ret;
  68406. }
  68407. #else
  68408. __ai int32x4_t vaddl_high_s16(int16x8_t __p0, int16x8_t __p1) {
  68409. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  68410. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  68411. int32x4_t __ret;
  68412. __ret = __noswap_vmovl_high_s16(__rev0) + __noswap_vmovl_high_s16(__rev1);
  68413. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  68414. return __ret;
  68415. }
  68416. #endif
  68417. #ifdef __LITTLE_ENDIAN__
  68418. __ai uint16x8_t vaddw_high_u8(uint16x8_t __p0, uint8x16_t __p1) {
  68419. uint16x8_t __ret;
  68420. __ret = __p0 + vmovl_high_u8(__p1);
  68421. return __ret;
  68422. }
  68423. #else
  68424. __ai uint16x8_t vaddw_high_u8(uint16x8_t __p0, uint8x16_t __p1) {
  68425. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  68426. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  68427. uint16x8_t __ret;
  68428. __ret = __rev0 + __noswap_vmovl_high_u8(__rev1);
  68429. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  68430. return __ret;
  68431. }
  68432. #endif
  68433. #ifdef __LITTLE_ENDIAN__
  68434. __ai uint64x2_t vaddw_high_u32(uint64x2_t __p0, uint32x4_t __p1) {
  68435. uint64x2_t __ret;
  68436. __ret = __p0 + vmovl_high_u32(__p1);
  68437. return __ret;
  68438. }
  68439. #else
  68440. __ai uint64x2_t vaddw_high_u32(uint64x2_t __p0, uint32x4_t __p1) {
  68441. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  68442. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  68443. uint64x2_t __ret;
  68444. __ret = __rev0 + __noswap_vmovl_high_u32(__rev1);
  68445. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  68446. return __ret;
  68447. }
  68448. #endif
  68449. #ifdef __LITTLE_ENDIAN__
  68450. __ai uint32x4_t vaddw_high_u16(uint32x4_t __p0, uint16x8_t __p1) {
  68451. uint32x4_t __ret;
  68452. __ret = __p0 + vmovl_high_u16(__p1);
  68453. return __ret;
  68454. }
  68455. #else
  68456. __ai uint32x4_t vaddw_high_u16(uint32x4_t __p0, uint16x8_t __p1) {
  68457. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  68458. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  68459. uint32x4_t __ret;
  68460. __ret = __rev0 + __noswap_vmovl_high_u16(__rev1);
  68461. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  68462. return __ret;
  68463. }
  68464. #endif
  68465. #ifdef __LITTLE_ENDIAN__
  68466. __ai int16x8_t vaddw_high_s8(int16x8_t __p0, int8x16_t __p1) {
  68467. int16x8_t __ret;
  68468. __ret = __p0 + vmovl_high_s8(__p1);
  68469. return __ret;
  68470. }
  68471. #else
  68472. __ai int16x8_t vaddw_high_s8(int16x8_t __p0, int8x16_t __p1) {
  68473. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  68474. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  68475. int16x8_t __ret;
  68476. __ret = __rev0 + __noswap_vmovl_high_s8(__rev1);
  68477. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  68478. return __ret;
  68479. }
  68480. #endif
  68481. #ifdef __LITTLE_ENDIAN__
  68482. __ai int64x2_t vaddw_high_s32(int64x2_t __p0, int32x4_t __p1) {
  68483. int64x2_t __ret;
  68484. __ret = __p0 + vmovl_high_s32(__p1);
  68485. return __ret;
  68486. }
  68487. #else
  68488. __ai int64x2_t vaddw_high_s32(int64x2_t __p0, int32x4_t __p1) {
  68489. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  68490. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  68491. int64x2_t __ret;
  68492. __ret = __rev0 + __noswap_vmovl_high_s32(__rev1);
  68493. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  68494. return __ret;
  68495. }
  68496. #endif
  68497. #ifdef __LITTLE_ENDIAN__
  68498. __ai int32x4_t vaddw_high_s16(int32x4_t __p0, int16x8_t __p1) {
  68499. int32x4_t __ret;
  68500. __ret = __p0 + vmovl_high_s16(__p1);
  68501. return __ret;
  68502. }
  68503. #else
  68504. __ai int32x4_t vaddw_high_s16(int32x4_t __p0, int16x8_t __p1) {
  68505. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  68506. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  68507. int32x4_t __ret;
  68508. __ret = __rev0 + __noswap_vmovl_high_s16(__rev1);
  68509. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  68510. return __ret;
  68511. }
  68512. #endif
  68513. #ifdef __LITTLE_ENDIAN__
  68514. #define vcopyq_lane_p64(__p0_316, __p1_316, __p2_316, __p3_316) __extension__ ({ \
  68515. poly64x2_t __s0_316 = __p0_316; \
  68516. poly64x1_t __s2_316 = __p2_316; \
  68517. poly64x2_t __ret_316; \
  68518. __ret_316 = vsetq_lane_p64(vget_lane_p64(__s2_316, __p3_316), __s0_316, __p1_316); \
  68519. __ret_316; \
  68520. })
  68521. #else
  68522. #define vcopyq_lane_p64(__p0_317, __p1_317, __p2_317, __p3_317) __extension__ ({ \
  68523. poly64x2_t __s0_317 = __p0_317; \
  68524. poly64x1_t __s2_317 = __p2_317; \
  68525. poly64x2_t __rev0_317; __rev0_317 = __builtin_shufflevector(__s0_317, __s0_317, 1, 0); \
  68526. poly64x2_t __ret_317; \
  68527. __ret_317 = __noswap_vsetq_lane_p64(__noswap_vget_lane_p64(__s2_317, __p3_317), __rev0_317, __p1_317); \
  68528. __ret_317 = __builtin_shufflevector(__ret_317, __ret_317, 1, 0); \
  68529. __ret_317; \
  68530. })
  68531. #endif
  68532. #ifdef __LITTLE_ENDIAN__
  68533. #define vcopyq_lane_f64(__p0_318, __p1_318, __p2_318, __p3_318) __extension__ ({ \
  68534. float64x2_t __s0_318 = __p0_318; \
  68535. float64x1_t __s2_318 = __p2_318; \
  68536. float64x2_t __ret_318; \
  68537. __ret_318 = vsetq_lane_f64(vget_lane_f64(__s2_318, __p3_318), __s0_318, __p1_318); \
  68538. __ret_318; \
  68539. })
  68540. #else
  68541. #define vcopyq_lane_f64(__p0_319, __p1_319, __p2_319, __p3_319) __extension__ ({ \
  68542. float64x2_t __s0_319 = __p0_319; \
  68543. float64x1_t __s2_319 = __p2_319; \
  68544. float64x2_t __rev0_319; __rev0_319 = __builtin_shufflevector(__s0_319, __s0_319, 1, 0); \
  68545. float64x2_t __ret_319; \
  68546. __ret_319 = __noswap_vsetq_lane_f64(__noswap_vget_lane_f64(__s2_319, __p3_319), __rev0_319, __p1_319); \
  68547. __ret_319 = __builtin_shufflevector(__ret_319, __ret_319, 1, 0); \
  68548. __ret_319; \
  68549. })
  68550. #endif
  68551. #ifdef __LITTLE_ENDIAN__
  68552. #define vcopy_lane_p64(__p0_320, __p1_320, __p2_320, __p3_320) __extension__ ({ \
  68553. poly64x1_t __s0_320 = __p0_320; \
  68554. poly64x1_t __s2_320 = __p2_320; \
  68555. poly64x1_t __ret_320; \
  68556. __ret_320 = vset_lane_p64(vget_lane_p64(__s2_320, __p3_320), __s0_320, __p1_320); \
  68557. __ret_320; \
  68558. })
  68559. #else
  68560. #define vcopy_lane_p64(__p0_321, __p1_321, __p2_321, __p3_321) __extension__ ({ \
  68561. poly64x1_t __s0_321 = __p0_321; \
  68562. poly64x1_t __s2_321 = __p2_321; \
  68563. poly64x1_t __ret_321; \
  68564. __ret_321 = __noswap_vset_lane_p64(__noswap_vget_lane_p64(__s2_321, __p3_321), __s0_321, __p1_321); \
  68565. __ret_321; \
  68566. })
  68567. #endif
  68568. #ifdef __LITTLE_ENDIAN__
  68569. #define vcopy_lane_f64(__p0_322, __p1_322, __p2_322, __p3_322) __extension__ ({ \
  68570. float64x1_t __s0_322 = __p0_322; \
  68571. float64x1_t __s2_322 = __p2_322; \
  68572. float64x1_t __ret_322; \
  68573. __ret_322 = vset_lane_f64(vget_lane_f64(__s2_322, __p3_322), __s0_322, __p1_322); \
  68574. __ret_322; \
  68575. })
  68576. #else
  68577. #define vcopy_lane_f64(__p0_323, __p1_323, __p2_323, __p3_323) __extension__ ({ \
  68578. float64x1_t __s0_323 = __p0_323; \
  68579. float64x1_t __s2_323 = __p2_323; \
  68580. float64x1_t __ret_323; \
  68581. __ret_323 = __noswap_vset_lane_f64(__noswap_vget_lane_f64(__s2_323, __p3_323), __s0_323, __p1_323); \
  68582. __ret_323; \
  68583. })
  68584. #endif
  68585. #ifdef __LITTLE_ENDIAN__
  68586. #define vcopyq_laneq_p64(__p0_324, __p1_324, __p2_324, __p3_324) __extension__ ({ \
  68587. poly64x2_t __s0_324 = __p0_324; \
  68588. poly64x2_t __s2_324 = __p2_324; \
  68589. poly64x2_t __ret_324; \
  68590. __ret_324 = vsetq_lane_p64(vgetq_lane_p64(__s2_324, __p3_324), __s0_324, __p1_324); \
  68591. __ret_324; \
  68592. })
  68593. #else
  68594. #define vcopyq_laneq_p64(__p0_325, __p1_325, __p2_325, __p3_325) __extension__ ({ \
  68595. poly64x2_t __s0_325 = __p0_325; \
  68596. poly64x2_t __s2_325 = __p2_325; \
  68597. poly64x2_t __rev0_325; __rev0_325 = __builtin_shufflevector(__s0_325, __s0_325, 1, 0); \
  68598. poly64x2_t __rev2_325; __rev2_325 = __builtin_shufflevector(__s2_325, __s2_325, 1, 0); \
  68599. poly64x2_t __ret_325; \
  68600. __ret_325 = __noswap_vsetq_lane_p64(__noswap_vgetq_lane_p64(__rev2_325, __p3_325), __rev0_325, __p1_325); \
  68601. __ret_325 = __builtin_shufflevector(__ret_325, __ret_325, 1, 0); \
  68602. __ret_325; \
  68603. })
  68604. #endif
  68605. #ifdef __LITTLE_ENDIAN__
  68606. #define vcopyq_laneq_f64(__p0_326, __p1_326, __p2_326, __p3_326) __extension__ ({ \
  68607. float64x2_t __s0_326 = __p0_326; \
  68608. float64x2_t __s2_326 = __p2_326; \
  68609. float64x2_t __ret_326; \
  68610. __ret_326 = vsetq_lane_f64(vgetq_lane_f64(__s2_326, __p3_326), __s0_326, __p1_326); \
  68611. __ret_326; \
  68612. })
  68613. #else
  68614. #define vcopyq_laneq_f64(__p0_327, __p1_327, __p2_327, __p3_327) __extension__ ({ \
  68615. float64x2_t __s0_327 = __p0_327; \
  68616. float64x2_t __s2_327 = __p2_327; \
  68617. float64x2_t __rev0_327; __rev0_327 = __builtin_shufflevector(__s0_327, __s0_327, 1, 0); \
  68618. float64x2_t __rev2_327; __rev2_327 = __builtin_shufflevector(__s2_327, __s2_327, 1, 0); \
  68619. float64x2_t __ret_327; \
  68620. __ret_327 = __noswap_vsetq_lane_f64(__noswap_vgetq_lane_f64(__rev2_327, __p3_327), __rev0_327, __p1_327); \
  68621. __ret_327 = __builtin_shufflevector(__ret_327, __ret_327, 1, 0); \
  68622. __ret_327; \
  68623. })
  68624. #endif
  68625. #ifdef __LITTLE_ENDIAN__
  68626. #define vcopy_laneq_p64(__p0_328, __p1_328, __p2_328, __p3_328) __extension__ ({ \
  68627. poly64x1_t __s0_328 = __p0_328; \
  68628. poly64x2_t __s2_328 = __p2_328; \
  68629. poly64x1_t __ret_328; \
  68630. __ret_328 = vset_lane_p64(vgetq_lane_p64(__s2_328, __p3_328), __s0_328, __p1_328); \
  68631. __ret_328; \
  68632. })
  68633. #else
  68634. #define vcopy_laneq_p64(__p0_329, __p1_329, __p2_329, __p3_329) __extension__ ({ \
  68635. poly64x1_t __s0_329 = __p0_329; \
  68636. poly64x2_t __s2_329 = __p2_329; \
  68637. poly64x2_t __rev2_329; __rev2_329 = __builtin_shufflevector(__s2_329, __s2_329, 1, 0); \
  68638. poly64x1_t __ret_329; \
  68639. __ret_329 = __noswap_vset_lane_p64(__noswap_vgetq_lane_p64(__rev2_329, __p3_329), __s0_329, __p1_329); \
  68640. __ret_329; \
  68641. })
  68642. #endif
  68643. #ifdef __LITTLE_ENDIAN__
  68644. #define vcopy_laneq_f64(__p0_330, __p1_330, __p2_330, __p3_330) __extension__ ({ \
  68645. float64x1_t __s0_330 = __p0_330; \
  68646. float64x2_t __s2_330 = __p2_330; \
  68647. float64x1_t __ret_330; \
  68648. __ret_330 = vset_lane_f64(vgetq_lane_f64(__s2_330, __p3_330), __s0_330, __p1_330); \
  68649. __ret_330; \
  68650. })
  68651. #else
  68652. #define vcopy_laneq_f64(__p0_331, __p1_331, __p2_331, __p3_331) __extension__ ({ \
  68653. float64x1_t __s0_331 = __p0_331; \
  68654. float64x2_t __s2_331 = __p2_331; \
  68655. float64x2_t __rev2_331; __rev2_331 = __builtin_shufflevector(__s2_331, __s2_331, 1, 0); \
  68656. float64x1_t __ret_331; \
  68657. __ret_331 = __noswap_vset_lane_f64(__noswap_vgetq_lane_f64(__rev2_331, __p3_331), __s0_331, __p1_331); \
  68658. __ret_331; \
  68659. })
  68660. #endif
  68661. #ifdef __LITTLE_ENDIAN__
  68662. __ai uint16x8_t vmlal_high_u8(uint16x8_t __p0, uint8x16_t __p1, uint8x16_t __p2) {
  68663. uint16x8_t __ret;
  68664. __ret = vmlal_u8(__p0, vget_high_u8(__p1), vget_high_u8(__p2));
  68665. return __ret;
  68666. }
  68667. #else
  68668. __ai uint16x8_t vmlal_high_u8(uint16x8_t __p0, uint8x16_t __p1, uint8x16_t __p2) {
  68669. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  68670. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  68671. uint8x16_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  68672. uint16x8_t __ret;
  68673. __ret = __noswap_vmlal_u8(__rev0, __noswap_vget_high_u8(__rev1), __noswap_vget_high_u8(__rev2));
  68674. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  68675. return __ret;
  68676. }
  68677. #endif
  68678. #ifdef __LITTLE_ENDIAN__
  68679. __ai uint64x2_t vmlal_high_u32(uint64x2_t __p0, uint32x4_t __p1, uint32x4_t __p2) {
  68680. uint64x2_t __ret;
  68681. __ret = vmlal_u32(__p0, vget_high_u32(__p1), vget_high_u32(__p2));
  68682. return __ret;
  68683. }
  68684. #else
  68685. __ai uint64x2_t vmlal_high_u32(uint64x2_t __p0, uint32x4_t __p1, uint32x4_t __p2) {
  68686. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  68687. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  68688. uint32x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  68689. uint64x2_t __ret;
  68690. __ret = __noswap_vmlal_u32(__rev0, __noswap_vget_high_u32(__rev1), __noswap_vget_high_u32(__rev2));
  68691. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  68692. return __ret;
  68693. }
  68694. #endif
  68695. #ifdef __LITTLE_ENDIAN__
  68696. __ai uint32x4_t vmlal_high_u16(uint32x4_t __p0, uint16x8_t __p1, uint16x8_t __p2) {
  68697. uint32x4_t __ret;
  68698. __ret = vmlal_u16(__p0, vget_high_u16(__p1), vget_high_u16(__p2));
  68699. return __ret;
  68700. }
  68701. #else
  68702. __ai uint32x4_t vmlal_high_u16(uint32x4_t __p0, uint16x8_t __p1, uint16x8_t __p2) {
  68703. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  68704. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  68705. uint16x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  68706. uint32x4_t __ret;
  68707. __ret = __noswap_vmlal_u16(__rev0, __noswap_vget_high_u16(__rev1), __noswap_vget_high_u16(__rev2));
  68708. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  68709. return __ret;
  68710. }
  68711. #endif
  68712. #ifdef __LITTLE_ENDIAN__
  68713. __ai int16x8_t vmlal_high_s8(int16x8_t __p0, int8x16_t __p1, int8x16_t __p2) {
  68714. int16x8_t __ret;
  68715. __ret = vmlal_s8(__p0, vget_high_s8(__p1), vget_high_s8(__p2));
  68716. return __ret;
  68717. }
  68718. #else
  68719. __ai int16x8_t vmlal_high_s8(int16x8_t __p0, int8x16_t __p1, int8x16_t __p2) {
  68720. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  68721. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  68722. int8x16_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  68723. int16x8_t __ret;
  68724. __ret = __noswap_vmlal_s8(__rev0, __noswap_vget_high_s8(__rev1), __noswap_vget_high_s8(__rev2));
  68725. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  68726. return __ret;
  68727. }
  68728. #endif
  68729. #ifdef __LITTLE_ENDIAN__
  68730. __ai int64x2_t vmlal_high_s32(int64x2_t __p0, int32x4_t __p1, int32x4_t __p2) {
  68731. int64x2_t __ret;
  68732. __ret = vmlal_s32(__p0, vget_high_s32(__p1), vget_high_s32(__p2));
  68733. return __ret;
  68734. }
  68735. #else
  68736. __ai int64x2_t vmlal_high_s32(int64x2_t __p0, int32x4_t __p1, int32x4_t __p2) {
  68737. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  68738. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  68739. int32x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  68740. int64x2_t __ret;
  68741. __ret = __noswap_vmlal_s32(__rev0, __noswap_vget_high_s32(__rev1), __noswap_vget_high_s32(__rev2));
  68742. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  68743. return __ret;
  68744. }
  68745. #endif
  68746. #ifdef __LITTLE_ENDIAN__
  68747. __ai int32x4_t vmlal_high_s16(int32x4_t __p0, int16x8_t __p1, int16x8_t __p2) {
  68748. int32x4_t __ret;
  68749. __ret = vmlal_s16(__p0, vget_high_s16(__p1), vget_high_s16(__p2));
  68750. return __ret;
  68751. }
  68752. #else
  68753. __ai int32x4_t vmlal_high_s16(int32x4_t __p0, int16x8_t __p1, int16x8_t __p2) {
  68754. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  68755. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  68756. int16x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  68757. int32x4_t __ret;
  68758. __ret = __noswap_vmlal_s16(__rev0, __noswap_vget_high_s16(__rev1), __noswap_vget_high_s16(__rev2));
  68759. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  68760. return __ret;
  68761. }
  68762. #endif
  68763. #ifdef __LITTLE_ENDIAN__
  68764. __ai uint64x2_t vmlal_high_n_u32(uint64x2_t __p0, uint32x4_t __p1, uint32_t __p2) {
  68765. uint64x2_t __ret;
  68766. __ret = vmlal_n_u32(__p0, vget_high_u32(__p1), __p2);
  68767. return __ret;
  68768. }
  68769. #else
  68770. __ai uint64x2_t vmlal_high_n_u32(uint64x2_t __p0, uint32x4_t __p1, uint32_t __p2) {
  68771. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  68772. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  68773. uint64x2_t __ret;
  68774. __ret = __noswap_vmlal_n_u32(__rev0, __noswap_vget_high_u32(__rev1), __p2);
  68775. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  68776. return __ret;
  68777. }
  68778. #endif
  68779. #ifdef __LITTLE_ENDIAN__
  68780. __ai uint32x4_t vmlal_high_n_u16(uint32x4_t __p0, uint16x8_t __p1, uint16_t __p2) {
  68781. uint32x4_t __ret;
  68782. __ret = vmlal_n_u16(__p0, vget_high_u16(__p1), __p2);
  68783. return __ret;
  68784. }
  68785. #else
  68786. __ai uint32x4_t vmlal_high_n_u16(uint32x4_t __p0, uint16x8_t __p1, uint16_t __p2) {
  68787. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  68788. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  68789. uint32x4_t __ret;
  68790. __ret = __noswap_vmlal_n_u16(__rev0, __noswap_vget_high_u16(__rev1), __p2);
  68791. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  68792. return __ret;
  68793. }
  68794. #endif
  68795. #ifdef __LITTLE_ENDIAN__
  68796. __ai int64x2_t vmlal_high_n_s32(int64x2_t __p0, int32x4_t __p1, int32_t __p2) {
  68797. int64x2_t __ret;
  68798. __ret = vmlal_n_s32(__p0, vget_high_s32(__p1), __p2);
  68799. return __ret;
  68800. }
  68801. #else
  68802. __ai int64x2_t vmlal_high_n_s32(int64x2_t __p0, int32x4_t __p1, int32_t __p2) {
  68803. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  68804. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  68805. int64x2_t __ret;
  68806. __ret = __noswap_vmlal_n_s32(__rev0, __noswap_vget_high_s32(__rev1), __p2);
  68807. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  68808. return __ret;
  68809. }
  68810. #endif
  68811. #ifdef __LITTLE_ENDIAN__
  68812. __ai int32x4_t vmlal_high_n_s16(int32x4_t __p0, int16x8_t __p1, int16_t __p2) {
  68813. int32x4_t __ret;
  68814. __ret = vmlal_n_s16(__p0, vget_high_s16(__p1), __p2);
  68815. return __ret;
  68816. }
  68817. #else
  68818. __ai int32x4_t vmlal_high_n_s16(int32x4_t __p0, int16x8_t __p1, int16_t __p2) {
  68819. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  68820. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  68821. int32x4_t __ret;
  68822. __ret = __noswap_vmlal_n_s16(__rev0, __noswap_vget_high_s16(__rev1), __p2);
  68823. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  68824. return __ret;
  68825. }
  68826. #endif
  68827. #ifdef __LITTLE_ENDIAN__
  68828. __ai uint16x8_t vmlsl_high_u8(uint16x8_t __p0, uint8x16_t __p1, uint8x16_t __p2) {
  68829. uint16x8_t __ret;
  68830. __ret = vmlsl_u8(__p0, vget_high_u8(__p1), vget_high_u8(__p2));
  68831. return __ret;
  68832. }
  68833. #else
  68834. __ai uint16x8_t vmlsl_high_u8(uint16x8_t __p0, uint8x16_t __p1, uint8x16_t __p2) {
  68835. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  68836. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  68837. uint8x16_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  68838. uint16x8_t __ret;
  68839. __ret = __noswap_vmlsl_u8(__rev0, __noswap_vget_high_u8(__rev1), __noswap_vget_high_u8(__rev2));
  68840. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  68841. return __ret;
  68842. }
  68843. #endif
  68844. #ifdef __LITTLE_ENDIAN__
  68845. __ai uint64x2_t vmlsl_high_u32(uint64x2_t __p0, uint32x4_t __p1, uint32x4_t __p2) {
  68846. uint64x2_t __ret;
  68847. __ret = vmlsl_u32(__p0, vget_high_u32(__p1), vget_high_u32(__p2));
  68848. return __ret;
  68849. }
  68850. #else
  68851. __ai uint64x2_t vmlsl_high_u32(uint64x2_t __p0, uint32x4_t __p1, uint32x4_t __p2) {
  68852. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  68853. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  68854. uint32x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  68855. uint64x2_t __ret;
  68856. __ret = __noswap_vmlsl_u32(__rev0, __noswap_vget_high_u32(__rev1), __noswap_vget_high_u32(__rev2));
  68857. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  68858. return __ret;
  68859. }
  68860. #endif
  68861. #ifdef __LITTLE_ENDIAN__
  68862. __ai uint32x4_t vmlsl_high_u16(uint32x4_t __p0, uint16x8_t __p1, uint16x8_t __p2) {
  68863. uint32x4_t __ret;
  68864. __ret = vmlsl_u16(__p0, vget_high_u16(__p1), vget_high_u16(__p2));
  68865. return __ret;
  68866. }
  68867. #else
  68868. __ai uint32x4_t vmlsl_high_u16(uint32x4_t __p0, uint16x8_t __p1, uint16x8_t __p2) {
  68869. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  68870. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  68871. uint16x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  68872. uint32x4_t __ret;
  68873. __ret = __noswap_vmlsl_u16(__rev0, __noswap_vget_high_u16(__rev1), __noswap_vget_high_u16(__rev2));
  68874. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  68875. return __ret;
  68876. }
  68877. #endif
  68878. #ifdef __LITTLE_ENDIAN__
  68879. __ai int16x8_t vmlsl_high_s8(int16x8_t __p0, int8x16_t __p1, int8x16_t __p2) {
  68880. int16x8_t __ret;
  68881. __ret = vmlsl_s8(__p0, vget_high_s8(__p1), vget_high_s8(__p2));
  68882. return __ret;
  68883. }
  68884. #else
  68885. __ai int16x8_t vmlsl_high_s8(int16x8_t __p0, int8x16_t __p1, int8x16_t __p2) {
  68886. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  68887. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  68888. int8x16_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  68889. int16x8_t __ret;
  68890. __ret = __noswap_vmlsl_s8(__rev0, __noswap_vget_high_s8(__rev1), __noswap_vget_high_s8(__rev2));
  68891. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  68892. return __ret;
  68893. }
  68894. #endif
  68895. #ifdef __LITTLE_ENDIAN__
  68896. __ai int64x2_t vmlsl_high_s32(int64x2_t __p0, int32x4_t __p1, int32x4_t __p2) {
  68897. int64x2_t __ret;
  68898. __ret = vmlsl_s32(__p0, vget_high_s32(__p1), vget_high_s32(__p2));
  68899. return __ret;
  68900. }
  68901. #else
  68902. __ai int64x2_t vmlsl_high_s32(int64x2_t __p0, int32x4_t __p1, int32x4_t __p2) {
  68903. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  68904. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  68905. int32x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  68906. int64x2_t __ret;
  68907. __ret = __noswap_vmlsl_s32(__rev0, __noswap_vget_high_s32(__rev1), __noswap_vget_high_s32(__rev2));
  68908. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  68909. return __ret;
  68910. }
  68911. #endif
  68912. #ifdef __LITTLE_ENDIAN__
  68913. __ai int32x4_t vmlsl_high_s16(int32x4_t __p0, int16x8_t __p1, int16x8_t __p2) {
  68914. int32x4_t __ret;
  68915. __ret = vmlsl_s16(__p0, vget_high_s16(__p1), vget_high_s16(__p2));
  68916. return __ret;
  68917. }
  68918. #else
  68919. __ai int32x4_t vmlsl_high_s16(int32x4_t __p0, int16x8_t __p1, int16x8_t __p2) {
  68920. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  68921. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  68922. int16x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  68923. int32x4_t __ret;
  68924. __ret = __noswap_vmlsl_s16(__rev0, __noswap_vget_high_s16(__rev1), __noswap_vget_high_s16(__rev2));
  68925. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  68926. return __ret;
  68927. }
  68928. #endif
  68929. #ifdef __LITTLE_ENDIAN__
  68930. __ai uint64x2_t vmlsl_high_n_u32(uint64x2_t __p0, uint32x4_t __p1, uint32_t __p2) {
  68931. uint64x2_t __ret;
  68932. __ret = vmlsl_n_u32(__p0, vget_high_u32(__p1), __p2);
  68933. return __ret;
  68934. }
  68935. #else
  68936. __ai uint64x2_t vmlsl_high_n_u32(uint64x2_t __p0, uint32x4_t __p1, uint32_t __p2) {
  68937. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  68938. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  68939. uint64x2_t __ret;
  68940. __ret = __noswap_vmlsl_n_u32(__rev0, __noswap_vget_high_u32(__rev1), __p2);
  68941. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  68942. return __ret;
  68943. }
  68944. #endif
  68945. #ifdef __LITTLE_ENDIAN__
  68946. __ai uint32x4_t vmlsl_high_n_u16(uint32x4_t __p0, uint16x8_t __p1, uint16_t __p2) {
  68947. uint32x4_t __ret;
  68948. __ret = vmlsl_n_u16(__p0, vget_high_u16(__p1), __p2);
  68949. return __ret;
  68950. }
  68951. #else
  68952. __ai uint32x4_t vmlsl_high_n_u16(uint32x4_t __p0, uint16x8_t __p1, uint16_t __p2) {
  68953. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  68954. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  68955. uint32x4_t __ret;
  68956. __ret = __noswap_vmlsl_n_u16(__rev0, __noswap_vget_high_u16(__rev1), __p2);
  68957. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  68958. return __ret;
  68959. }
  68960. #endif
  68961. #ifdef __LITTLE_ENDIAN__
  68962. __ai int64x2_t vmlsl_high_n_s32(int64x2_t __p0, int32x4_t __p1, int32_t __p2) {
  68963. int64x2_t __ret;
  68964. __ret = vmlsl_n_s32(__p0, vget_high_s32(__p1), __p2);
  68965. return __ret;
  68966. }
  68967. #else
  68968. __ai int64x2_t vmlsl_high_n_s32(int64x2_t __p0, int32x4_t __p1, int32_t __p2) {
  68969. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  68970. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  68971. int64x2_t __ret;
  68972. __ret = __noswap_vmlsl_n_s32(__rev0, __noswap_vget_high_s32(__rev1), __p2);
  68973. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  68974. return __ret;
  68975. }
  68976. #endif
  68977. #ifdef __LITTLE_ENDIAN__
  68978. __ai int32x4_t vmlsl_high_n_s16(int32x4_t __p0, int16x8_t __p1, int16_t __p2) {
  68979. int32x4_t __ret;
  68980. __ret = vmlsl_n_s16(__p0, vget_high_s16(__p1), __p2);
  68981. return __ret;
  68982. }
  68983. #else
  68984. __ai int32x4_t vmlsl_high_n_s16(int32x4_t __p0, int16x8_t __p1, int16_t __p2) {
  68985. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  68986. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  68987. int32x4_t __ret;
  68988. __ret = __noswap_vmlsl_n_s16(__rev0, __noswap_vget_high_s16(__rev1), __p2);
  68989. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  68990. return __ret;
  68991. }
  68992. #endif
  68993. #ifdef __LITTLE_ENDIAN__
  68994. #define vmulx_lane_f64(__p0_332, __p1_332, __p2_332) __extension__ ({ \
  68995. float64x1_t __s0_332 = __p0_332; \
  68996. float64x1_t __s1_332 = __p1_332; \
  68997. float64x1_t __ret_332; \
  68998. float64_t __x_332 = vget_lane_f64(__s0_332, 0); \
  68999. float64_t __y_332 = vget_lane_f64(__s1_332, __p2_332); \
  69000. float64_t __z_332 = vmulxd_f64(__x_332, __y_332); \
  69001. __ret_332 = vset_lane_f64(__z_332, __s0_332, __p2_332); \
  69002. __ret_332; \
  69003. })
  69004. #else
  69005. #define vmulx_lane_f64(__p0_333, __p1_333, __p2_333) __extension__ ({ \
  69006. float64x1_t __s0_333 = __p0_333; \
  69007. float64x1_t __s1_333 = __p1_333; \
  69008. float64x1_t __ret_333; \
  69009. float64_t __x_333 = __noswap_vget_lane_f64(__s0_333, 0); \
  69010. float64_t __y_333 = __noswap_vget_lane_f64(__s1_333, __p2_333); \
  69011. float64_t __z_333 = __noswap_vmulxd_f64(__x_333, __y_333); \
  69012. __ret_333 = __noswap_vset_lane_f64(__z_333, __s0_333, __p2_333); \
  69013. __ret_333; \
  69014. })
  69015. #endif
  69016. #ifdef __LITTLE_ENDIAN__
  69017. #define vmulx_laneq_f64(__p0_334, __p1_334, __p2_334) __extension__ ({ \
  69018. float64x1_t __s0_334 = __p0_334; \
  69019. float64x2_t __s1_334 = __p1_334; \
  69020. float64x1_t __ret_334; \
  69021. float64_t __x_334 = vget_lane_f64(__s0_334, 0); \
  69022. float64_t __y_334 = vgetq_lane_f64(__s1_334, __p2_334); \
  69023. float64_t __z_334 = vmulxd_f64(__x_334, __y_334); \
  69024. __ret_334 = vset_lane_f64(__z_334, __s0_334, 0); \
  69025. __ret_334; \
  69026. })
  69027. #else
  69028. #define vmulx_laneq_f64(__p0_335, __p1_335, __p2_335) __extension__ ({ \
  69029. float64x1_t __s0_335 = __p0_335; \
  69030. float64x2_t __s1_335 = __p1_335; \
  69031. float64x2_t __rev1_335; __rev1_335 = __builtin_shufflevector(__s1_335, __s1_335, 1, 0); \
  69032. float64x1_t __ret_335; \
  69033. float64_t __x_335 = __noswap_vget_lane_f64(__s0_335, 0); \
  69034. float64_t __y_335 = __noswap_vgetq_lane_f64(__rev1_335, __p2_335); \
  69035. float64_t __z_335 = __noswap_vmulxd_f64(__x_335, __y_335); \
  69036. __ret_335 = __noswap_vset_lane_f64(__z_335, __s0_335, 0); \
  69037. __ret_335; \
  69038. })
  69039. #endif
  69040. #endif
  69041. #ifdef __LITTLE_ENDIAN__
  69042. __ai uint16x8_t vabal_u8(uint16x8_t __p0, uint8x8_t __p1, uint8x8_t __p2) {
  69043. uint16x8_t __ret;
  69044. __ret = __p0 + vabdl_u8(__p1, __p2);
  69045. return __ret;
  69046. }
  69047. #else
  69048. __ai uint16x8_t vabal_u8(uint16x8_t __p0, uint8x8_t __p1, uint8x8_t __p2) {
  69049. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  69050. uint8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  69051. uint8x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  69052. uint16x8_t __ret;
  69053. __ret = __rev0 + __noswap_vabdl_u8(__rev1, __rev2);
  69054. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  69055. return __ret;
  69056. }
  69057. __ai uint16x8_t __noswap_vabal_u8(uint16x8_t __p0, uint8x8_t __p1, uint8x8_t __p2) {
  69058. uint16x8_t __ret;
  69059. __ret = __p0 + __noswap_vabdl_u8(__p1, __p2);
  69060. return __ret;
  69061. }
  69062. #endif
  69063. #ifdef __LITTLE_ENDIAN__
  69064. __ai uint64x2_t vabal_u32(uint64x2_t __p0, uint32x2_t __p1, uint32x2_t __p2) {
  69065. uint64x2_t __ret;
  69066. __ret = __p0 + vabdl_u32(__p1, __p2);
  69067. return __ret;
  69068. }
  69069. #else
  69070. __ai uint64x2_t vabal_u32(uint64x2_t __p0, uint32x2_t __p1, uint32x2_t __p2) {
  69071. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  69072. uint32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  69073. uint32x2_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 1, 0);
  69074. uint64x2_t __ret;
  69075. __ret = __rev0 + __noswap_vabdl_u32(__rev1, __rev2);
  69076. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  69077. return __ret;
  69078. }
  69079. __ai uint64x2_t __noswap_vabal_u32(uint64x2_t __p0, uint32x2_t __p1, uint32x2_t __p2) {
  69080. uint64x2_t __ret;
  69081. __ret = __p0 + __noswap_vabdl_u32(__p1, __p2);
  69082. return __ret;
  69083. }
  69084. #endif
  69085. #ifdef __LITTLE_ENDIAN__
  69086. __ai uint32x4_t vabal_u16(uint32x4_t __p0, uint16x4_t __p1, uint16x4_t __p2) {
  69087. uint32x4_t __ret;
  69088. __ret = __p0 + vabdl_u16(__p1, __p2);
  69089. return __ret;
  69090. }
  69091. #else
  69092. __ai uint32x4_t vabal_u16(uint32x4_t __p0, uint16x4_t __p1, uint16x4_t __p2) {
  69093. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  69094. uint16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  69095. uint16x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  69096. uint32x4_t __ret;
  69097. __ret = __rev0 + __noswap_vabdl_u16(__rev1, __rev2);
  69098. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  69099. return __ret;
  69100. }
  69101. __ai uint32x4_t __noswap_vabal_u16(uint32x4_t __p0, uint16x4_t __p1, uint16x4_t __p2) {
  69102. uint32x4_t __ret;
  69103. __ret = __p0 + __noswap_vabdl_u16(__p1, __p2);
  69104. return __ret;
  69105. }
  69106. #endif
  69107. #ifdef __LITTLE_ENDIAN__
  69108. __ai int16x8_t vabal_s8(int16x8_t __p0, int8x8_t __p1, int8x8_t __p2) {
  69109. int16x8_t __ret;
  69110. __ret = __p0 + vabdl_s8(__p1, __p2);
  69111. return __ret;
  69112. }
  69113. #else
  69114. __ai int16x8_t vabal_s8(int16x8_t __p0, int8x8_t __p1, int8x8_t __p2) {
  69115. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  69116. int8x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  69117. int8x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  69118. int16x8_t __ret;
  69119. __ret = __rev0 + __noswap_vabdl_s8(__rev1, __rev2);
  69120. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  69121. return __ret;
  69122. }
  69123. __ai int16x8_t __noswap_vabal_s8(int16x8_t __p0, int8x8_t __p1, int8x8_t __p2) {
  69124. int16x8_t __ret;
  69125. __ret = __p0 + __noswap_vabdl_s8(__p1, __p2);
  69126. return __ret;
  69127. }
  69128. #endif
  69129. #ifdef __LITTLE_ENDIAN__
  69130. __ai int64x2_t vabal_s32(int64x2_t __p0, int32x2_t __p1, int32x2_t __p2) {
  69131. int64x2_t __ret;
  69132. __ret = __p0 + vabdl_s32(__p1, __p2);
  69133. return __ret;
  69134. }
  69135. #else
  69136. __ai int64x2_t vabal_s32(int64x2_t __p0, int32x2_t __p1, int32x2_t __p2) {
  69137. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  69138. int32x2_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 1, 0);
  69139. int32x2_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 1, 0);
  69140. int64x2_t __ret;
  69141. __ret = __rev0 + __noswap_vabdl_s32(__rev1, __rev2);
  69142. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  69143. return __ret;
  69144. }
  69145. __ai int64x2_t __noswap_vabal_s32(int64x2_t __p0, int32x2_t __p1, int32x2_t __p2) {
  69146. int64x2_t __ret;
  69147. __ret = __p0 + __noswap_vabdl_s32(__p1, __p2);
  69148. return __ret;
  69149. }
  69150. #endif
  69151. #ifdef __LITTLE_ENDIAN__
  69152. __ai int32x4_t vabal_s16(int32x4_t __p0, int16x4_t __p1, int16x4_t __p2) {
  69153. int32x4_t __ret;
  69154. __ret = __p0 + vabdl_s16(__p1, __p2);
  69155. return __ret;
  69156. }
  69157. #else
  69158. __ai int32x4_t vabal_s16(int32x4_t __p0, int16x4_t __p1, int16x4_t __p2) {
  69159. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  69160. int16x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  69161. int16x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  69162. int32x4_t __ret;
  69163. __ret = __rev0 + __noswap_vabdl_s16(__rev1, __rev2);
  69164. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  69165. return __ret;
  69166. }
  69167. __ai int32x4_t __noswap_vabal_s16(int32x4_t __p0, int16x4_t __p1, int16x4_t __p2) {
  69168. int32x4_t __ret;
  69169. __ret = __p0 + __noswap_vabdl_s16(__p1, __p2);
  69170. return __ret;
  69171. }
  69172. #endif
  69173. #if defined(__aarch64__)
  69174. #ifdef __LITTLE_ENDIAN__
  69175. __ai uint16x8_t vabal_high_u8(uint16x8_t __p0, uint8x16_t __p1, uint8x16_t __p2) {
  69176. uint16x8_t __ret;
  69177. __ret = vabal_u8(__p0, vget_high_u8(__p1), vget_high_u8(__p2));
  69178. return __ret;
  69179. }
  69180. #else
  69181. __ai uint16x8_t vabal_high_u8(uint16x8_t __p0, uint8x16_t __p1, uint8x16_t __p2) {
  69182. uint16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  69183. uint8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  69184. uint8x16_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  69185. uint16x8_t __ret;
  69186. __ret = __noswap_vabal_u8(__rev0, __noswap_vget_high_u8(__rev1), __noswap_vget_high_u8(__rev2));
  69187. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  69188. return __ret;
  69189. }
  69190. #endif
  69191. #ifdef __LITTLE_ENDIAN__
  69192. __ai uint64x2_t vabal_high_u32(uint64x2_t __p0, uint32x4_t __p1, uint32x4_t __p2) {
  69193. uint64x2_t __ret;
  69194. __ret = vabal_u32(__p0, vget_high_u32(__p1), vget_high_u32(__p2));
  69195. return __ret;
  69196. }
  69197. #else
  69198. __ai uint64x2_t vabal_high_u32(uint64x2_t __p0, uint32x4_t __p1, uint32x4_t __p2) {
  69199. uint64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  69200. uint32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  69201. uint32x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  69202. uint64x2_t __ret;
  69203. __ret = __noswap_vabal_u32(__rev0, __noswap_vget_high_u32(__rev1), __noswap_vget_high_u32(__rev2));
  69204. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  69205. return __ret;
  69206. }
  69207. #endif
  69208. #ifdef __LITTLE_ENDIAN__
  69209. __ai uint32x4_t vabal_high_u16(uint32x4_t __p0, uint16x8_t __p1, uint16x8_t __p2) {
  69210. uint32x4_t __ret;
  69211. __ret = vabal_u16(__p0, vget_high_u16(__p1), vget_high_u16(__p2));
  69212. return __ret;
  69213. }
  69214. #else
  69215. __ai uint32x4_t vabal_high_u16(uint32x4_t __p0, uint16x8_t __p1, uint16x8_t __p2) {
  69216. uint32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  69217. uint16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  69218. uint16x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  69219. uint32x4_t __ret;
  69220. __ret = __noswap_vabal_u16(__rev0, __noswap_vget_high_u16(__rev1), __noswap_vget_high_u16(__rev2));
  69221. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  69222. return __ret;
  69223. }
  69224. #endif
  69225. #ifdef __LITTLE_ENDIAN__
  69226. __ai int16x8_t vabal_high_s8(int16x8_t __p0, int8x16_t __p1, int8x16_t __p2) {
  69227. int16x8_t __ret;
  69228. __ret = vabal_s8(__p0, vget_high_s8(__p1), vget_high_s8(__p2));
  69229. return __ret;
  69230. }
  69231. #else
  69232. __ai int16x8_t vabal_high_s8(int16x8_t __p0, int8x16_t __p1, int8x16_t __p2) {
  69233. int16x8_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 7, 6, 5, 4, 3, 2, 1, 0);
  69234. int8x16_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  69235. int8x16_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0);
  69236. int16x8_t __ret;
  69237. __ret = __noswap_vabal_s8(__rev0, __noswap_vget_high_s8(__rev1), __noswap_vget_high_s8(__rev2));
  69238. __ret = __builtin_shufflevector(__ret, __ret, 7, 6, 5, 4, 3, 2, 1, 0);
  69239. return __ret;
  69240. }
  69241. #endif
  69242. #ifdef __LITTLE_ENDIAN__
  69243. __ai int64x2_t vabal_high_s32(int64x2_t __p0, int32x4_t __p1, int32x4_t __p2) {
  69244. int64x2_t __ret;
  69245. __ret = vabal_s32(__p0, vget_high_s32(__p1), vget_high_s32(__p2));
  69246. return __ret;
  69247. }
  69248. #else
  69249. __ai int64x2_t vabal_high_s32(int64x2_t __p0, int32x4_t __p1, int32x4_t __p2) {
  69250. int64x2_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 1, 0);
  69251. int32x4_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 3, 2, 1, 0);
  69252. int32x4_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 3, 2, 1, 0);
  69253. int64x2_t __ret;
  69254. __ret = __noswap_vabal_s32(__rev0, __noswap_vget_high_s32(__rev1), __noswap_vget_high_s32(__rev2));
  69255. __ret = __builtin_shufflevector(__ret, __ret, 1, 0);
  69256. return __ret;
  69257. }
  69258. #endif
  69259. #ifdef __LITTLE_ENDIAN__
  69260. __ai int32x4_t vabal_high_s16(int32x4_t __p0, int16x8_t __p1, int16x8_t __p2) {
  69261. int32x4_t __ret;
  69262. __ret = vabal_s16(__p0, vget_high_s16(__p1), vget_high_s16(__p2));
  69263. return __ret;
  69264. }
  69265. #else
  69266. __ai int32x4_t vabal_high_s16(int32x4_t __p0, int16x8_t __p1, int16x8_t __p2) {
  69267. int32x4_t __rev0; __rev0 = __builtin_shufflevector(__p0, __p0, 3, 2, 1, 0);
  69268. int16x8_t __rev1; __rev1 = __builtin_shufflevector(__p1, __p1, 7, 6, 5, 4, 3, 2, 1, 0);
  69269. int16x8_t __rev2; __rev2 = __builtin_shufflevector(__p2, __p2, 7, 6, 5, 4, 3, 2, 1, 0);
  69270. int32x4_t __ret;
  69271. __ret = __noswap_vabal_s16(__rev0, __noswap_vget_high_s16(__rev1), __noswap_vget_high_s16(__rev2));
  69272. __ret = __builtin_shufflevector(__ret, __ret, 3, 2, 1, 0);
  69273. return __ret;
  69274. }
  69275. #endif
  69276. #endif
  69277. #undef __ai
  69278. #endif /* __ARM_NEON_H */