ARMBuildAttributes.h 8.6 KB

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  1. //===-- ARMBuildAttributes.h - ARM Build Attributes -------------*- C++ -*-===//
  2. //
  3. // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
  4. // See https://llvm.org/LICENSE.txt for license information.
  5. // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
  6. //
  7. //===----------------------------------------------------------------------===//
  8. //
  9. // This file contains enumerations and support routines for ARM build attributes
  10. // as defined in ARM ABI addenda document (ABI release 2.08).
  11. //
  12. // ELF for the ARM Architecture r2.09 - November 30, 2012
  13. //
  14. // http://infocenter.arm.com/help/topic/com.arm.doc.ihi0044e/IHI0044E_aaelf.pdf
  15. //
  16. //===----------------------------------------------------------------------===//
  17. #ifndef LLVM_SUPPORT_ARMBUILDATTRIBUTES_H
  18. #define LLVM_SUPPORT_ARMBUILDATTRIBUTES_H
  19. #include "llvm/Support/ELFAttributes.h"
  20. namespace llvm {
  21. namespace ARMBuildAttrs {
  22. extern const TagNameMap ARMAttributeTags;
  23. enum SpecialAttr {
  24. // This is for the .cpu asm attr. It translates into one or more
  25. // AttrType (below) entries in the .ARM.attributes section in the ELF.
  26. SEL_CPU
  27. };
  28. enum AttrType : unsigned {
  29. // Rest correspond to ELF/.ARM.attributes
  30. File = 1,
  31. CPU_raw_name = 4,
  32. CPU_name = 5,
  33. CPU_arch = 6,
  34. CPU_arch_profile = 7,
  35. ARM_ISA_use = 8,
  36. THUMB_ISA_use = 9,
  37. FP_arch = 10,
  38. WMMX_arch = 11,
  39. Advanced_SIMD_arch = 12,
  40. PCS_config = 13,
  41. ABI_PCS_R9_use = 14,
  42. ABI_PCS_RW_data = 15,
  43. ABI_PCS_RO_data = 16,
  44. ABI_PCS_GOT_use = 17,
  45. ABI_PCS_wchar_t = 18,
  46. ABI_FP_rounding = 19,
  47. ABI_FP_denormal = 20,
  48. ABI_FP_exceptions = 21,
  49. ABI_FP_user_exceptions = 22,
  50. ABI_FP_number_model = 23,
  51. ABI_align_needed = 24,
  52. ABI_align_preserved = 25,
  53. ABI_enum_size = 26,
  54. ABI_HardFP_use = 27,
  55. ABI_VFP_args = 28,
  56. ABI_WMMX_args = 29,
  57. ABI_optimization_goals = 30,
  58. ABI_FP_optimization_goals = 31,
  59. compatibility = 32,
  60. CPU_unaligned_access = 34,
  61. FP_HP_extension = 36,
  62. ABI_FP_16bit_format = 38,
  63. MPextension_use = 42, // recoded from 70 (ABI r2.08)
  64. DIV_use = 44,
  65. DSP_extension = 46,
  66. MVE_arch = 48,
  67. also_compatible_with = 65,
  68. conformance = 67,
  69. Virtualization_use = 68,
  70. /// Legacy Tags
  71. Section = 2, // deprecated (ABI r2.09)
  72. Symbol = 3, // deprecated (ABI r2.09)
  73. ABI_align8_needed = 24, // renamed to ABI_align_needed (ABI r2.09)
  74. ABI_align8_preserved = 25, // renamed to ABI_align_preserved (ABI r2.09)
  75. nodefaults = 64, // deprecated (ABI r2.09)
  76. T2EE_use = 66, // deprecated (ABI r2.09)
  77. MPextension_use_old = 70 // recoded to MPextension_use (ABI r2.08)
  78. };
  79. // Legal Values for CPU_arch, (=6), uleb128
  80. enum CPUArch {
  81. Pre_v4 = 0,
  82. v4 = 1, // e.g. SA110
  83. v4T = 2, // e.g. ARM7TDMI
  84. v5T = 3, // e.g. ARM9TDMI
  85. v5TE = 4, // e.g. ARM946E_S
  86. v5TEJ = 5, // e.g. ARM926EJ_S
  87. v6 = 6, // e.g. ARM1136J_S
  88. v6KZ = 7, // e.g. ARM1176JZ_S
  89. v6T2 = 8, // e.g. ARM1156T2_S
  90. v6K = 9, // e.g. ARM1176JZ_S
  91. v7 = 10, // e.g. Cortex A8, Cortex M3
  92. v6_M = 11, // e.g. Cortex M1
  93. v6S_M = 12, // v6_M with the System extensions
  94. v7E_M = 13, // v7_M with DSP extensions
  95. v8_A = 14, // v8_A AArch32
  96. v8_R = 15, // e.g. Cortex R52
  97. v8_M_Base= 16, // v8_M_Base AArch32
  98. v8_M_Main= 17, // v8_M_Main AArch32
  99. v8_1_M_Main=21, // v8_1_M_Main AArch32
  100. };
  101. enum CPUArchProfile { // (=7), uleb128
  102. Not_Applicable = 0, // pre v7, or cross-profile code
  103. ApplicationProfile = (0x41), // 'A' (e.g. for Cortex A8)
  104. RealTimeProfile = (0x52), // 'R' (e.g. for Cortex R4)
  105. MicroControllerProfile = (0x4D), // 'M' (e.g. for Cortex M3)
  106. SystemProfile = (0x53) // 'S' Application or real-time profile
  107. };
  108. // The following have a lot of common use cases
  109. enum {
  110. Not_Allowed = 0,
  111. Allowed = 1,
  112. // Tag_ARM_ISA_use (=8), uleb128
  113. // Tag_THUMB_ISA_use, (=9), uleb128
  114. AllowThumb32 = 2, // 32-bit Thumb (implies 16-bit instructions)
  115. AllowThumbDerived = 3, // Thumb allowed, derived from arch/profile
  116. // Tag_FP_arch (=10), uleb128 (formerly Tag_VFP_arch = 10)
  117. AllowFPv2 = 2, // v2 FP ISA permitted (implies use of the v1 FP ISA)
  118. AllowFPv3A = 3, // v3 FP ISA permitted (implies use of the v2 FP ISA)
  119. AllowFPv3B = 4, // v3 FP ISA permitted, but only D0-D15, S0-S31
  120. AllowFPv4A = 5, // v4 FP ISA permitted (implies use of v3 FP ISA)
  121. AllowFPv4B = 6, // v4 FP ISA was permitted, but only D0-D15, S0-S31
  122. AllowFPARMv8A = 7, // Use of the ARM v8-A FP ISA was permitted
  123. AllowFPARMv8B = 8, // Use of the ARM v8-A FP ISA was permitted, but only
  124. // D0-D15, S0-S31
  125. // Tag_WMMX_arch, (=11), uleb128
  126. AllowWMMXv1 = 1, // The user permitted this entity to use WMMX v1
  127. AllowWMMXv2 = 2, // The user permitted this entity to use WMMX v2
  128. // Tag_Advanced_SIMD_arch, (=12), uleb128
  129. AllowNeon = 1, // SIMDv1 was permitted
  130. AllowNeon2 = 2, // SIMDv2 was permitted (Half-precision FP, MAC operations)
  131. AllowNeonARMv8 = 3, // ARM v8-A SIMD was permitted
  132. AllowNeonARMv8_1a = 4,// ARM v8.1-A SIMD was permitted (RDMA)
  133. // Tag_MVE_arch, (=48), uleb128
  134. AllowMVEInteger = 1, // integer-only MVE was permitted
  135. AllowMVEIntegerAndFloat = 2, // both integer and floating point MVE were permitted
  136. // Tag_ABI_PCS_R9_use, (=14), uleb128
  137. R9IsGPR = 0, // R9 used as v6 (just another callee-saved register)
  138. R9IsSB = 1, // R9 used as a global static base rgister
  139. R9IsTLSPointer = 2, // R9 used as a thread local storage pointer
  140. R9Reserved = 3, // R9 not used by code associated with attributed entity
  141. // Tag_ABI_PCS_RW_data, (=15), uleb128
  142. AddressRWPCRel = 1, // Address RW static data PC-relative
  143. AddressRWSBRel = 2, // Address RW static data SB-relative
  144. AddressRWNone = 3, // No RW static data permitted
  145. // Tag_ABI_PCS_RO_data, (=14), uleb128
  146. AddressROPCRel = 1, // Address RO static data PC-relative
  147. AddressRONone = 2, // No RO static data permitted
  148. // Tag_ABI_PCS_GOT_use, (=17), uleb128
  149. AddressDirect = 1, // Address imported data directly
  150. AddressGOT = 2, // Address imported data indirectly (via GOT)
  151. // Tag_ABI_PCS_wchar_t, (=18), uleb128
  152. WCharProhibited = 0, // wchar_t is not used
  153. WCharWidth2Bytes = 2, // sizeof(wchar_t) == 2
  154. WCharWidth4Bytes = 4, // sizeof(wchar_t) == 4
  155. // Tag_ABI_align_needed, (=24), uleb128
  156. Align8Byte = 1,
  157. Align4Byte = 2,
  158. AlignReserved = 3,
  159. // Tag_ABI_align_needed, (=25), uleb128
  160. AlignNotPreserved = 0,
  161. AlignPreserve8Byte = 1,
  162. AlignPreserveAll = 2,
  163. // Tag_ABI_FP_denormal, (=20), uleb128
  164. PositiveZero = 0,
  165. IEEEDenormals = 1,
  166. PreserveFPSign = 2, // sign when flushed-to-zero is preserved
  167. // Tag_ABI_FP_number_model, (=23), uleb128
  168. AllowIEEENormal = 1,
  169. AllowRTABI = 2, // numbers, infinities, and one quiet NaN (see [RTABI])
  170. AllowIEEE754 = 3, // this code to use all the IEEE 754-defined FP encodings
  171. // Tag_ABI_enum_size, (=26), uleb128
  172. EnumProhibited = 0, // The user prohibited the use of enums when building
  173. // this entity.
  174. EnumSmallest = 1, // Enum is smallest container big enough to hold all
  175. // values.
  176. Enum32Bit = 2, // Enum is at least 32 bits.
  177. Enum32BitABI = 3, // Every enumeration visible across an ABI-complying
  178. // interface contains a value needing 32 bits to encode
  179. // it; other enums can be containerized.
  180. // Tag_ABI_HardFP_use, (=27), uleb128
  181. HardFPImplied = 0, // FP use should be implied by Tag_FP_arch
  182. HardFPSinglePrecision = 1, // Single-precision only
  183. // Tag_ABI_VFP_args, (=28), uleb128
  184. BaseAAPCS = 0,
  185. HardFPAAPCS = 1,
  186. ToolChainFPPCS = 2,
  187. CompatibleFPAAPCS = 3,
  188. // Tag_FP_HP_extension, (=36), uleb128
  189. AllowHPFP = 1, // Allow use of Half Precision FP
  190. // Tag_FP_16bit_format, (=38), uleb128
  191. FP16FormatIEEE = 1,
  192. FP16VFP3 = 2,
  193. // Tag_MPextension_use, (=42), uleb128
  194. AllowMP = 1, // Allow use of MP extensions
  195. // Tag_DIV_use, (=44), uleb128
  196. // Note: AllowDIVExt must be emitted if and only if the permission to use
  197. // hardware divide cannot be conveyed using AllowDIVIfExists or DisallowDIV
  198. AllowDIVIfExists = 0, // Allow hardware divide if available in arch, or no
  199. // info exists.
  200. DisallowDIV = 1, // Hardware divide explicitly disallowed.
  201. AllowDIVExt = 2, // Allow hardware divide as optional architecture
  202. // extension above the base arch specified by
  203. // Tag_CPU_arch and Tag_CPU_arch_profile.
  204. // Tag_Virtualization_use, (=68), uleb128
  205. AllowTZ = 1,
  206. AllowVirtualization = 2,
  207. AllowTZVirtualization = 3
  208. };
  209. } // namespace ARMBuildAttrs
  210. } // namespace llvm
  211. #endif