LLVMBitCodes.h 27 KB

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  1. //===- LLVMBitCodes.h - Enum values for the LLVM bitcode format -*- 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 header defines Bitcode enum values for LLVM IR bitcode files.
  10. //
  11. // The enum values defined in this file should be considered permanent. If
  12. // new features are added, they should have values added at the end of the
  13. // respective lists.
  14. //
  15. //===----------------------------------------------------------------------===//
  16. #ifndef LLVM_BITCODE_LLVMBITCODES_H
  17. #define LLVM_BITCODE_LLVMBITCODES_H
  18. #include "llvm/Bitstream/BitCodes.h"
  19. namespace llvm {
  20. namespace bitc {
  21. // The only top-level block types are MODULE, IDENTIFICATION, STRTAB and SYMTAB.
  22. enum BlockIDs {
  23. // Blocks
  24. MODULE_BLOCK_ID = FIRST_APPLICATION_BLOCKID,
  25. // Module sub-block id's.
  26. PARAMATTR_BLOCK_ID,
  27. PARAMATTR_GROUP_BLOCK_ID,
  28. CONSTANTS_BLOCK_ID,
  29. FUNCTION_BLOCK_ID,
  30. // Block intended to contains information on the bitcode versioning.
  31. // Can be used to provide better error messages when we fail to parse a
  32. // bitcode file.
  33. IDENTIFICATION_BLOCK_ID,
  34. VALUE_SYMTAB_BLOCK_ID,
  35. METADATA_BLOCK_ID,
  36. METADATA_ATTACHMENT_ID,
  37. TYPE_BLOCK_ID_NEW,
  38. USELIST_BLOCK_ID,
  39. MODULE_STRTAB_BLOCK_ID,
  40. GLOBALVAL_SUMMARY_BLOCK_ID,
  41. OPERAND_BUNDLE_TAGS_BLOCK_ID,
  42. METADATA_KIND_BLOCK_ID,
  43. STRTAB_BLOCK_ID,
  44. FULL_LTO_GLOBALVAL_SUMMARY_BLOCK_ID,
  45. SYMTAB_BLOCK_ID,
  46. SYNC_SCOPE_NAMES_BLOCK_ID,
  47. };
  48. /// Identification block contains a string that describes the producer details,
  49. /// and an epoch that defines the auto-upgrade capability.
  50. enum IdentificationCodes {
  51. IDENTIFICATION_CODE_STRING = 1, // IDENTIFICATION: [strchr x N]
  52. IDENTIFICATION_CODE_EPOCH = 2, // EPOCH: [epoch#]
  53. };
  54. /// The epoch that defines the auto-upgrade compatibility for the bitcode.
  55. ///
  56. /// LLVM guarantees in a major release that a minor release can read bitcode
  57. /// generated by previous minor releases. We translate this by making the reader
  58. /// accepting only bitcode with the same epoch, except for the X.0 release which
  59. /// also accepts N-1.
  60. enum { BITCODE_CURRENT_EPOCH = 0 };
  61. /// MODULE blocks have a number of optional fields and subblocks.
  62. enum ModuleCodes {
  63. MODULE_CODE_VERSION = 1, // VERSION: [version#]
  64. MODULE_CODE_TRIPLE = 2, // TRIPLE: [strchr x N]
  65. MODULE_CODE_DATALAYOUT = 3, // DATALAYOUT: [strchr x N]
  66. MODULE_CODE_ASM = 4, // ASM: [strchr x N]
  67. MODULE_CODE_SECTIONNAME = 5, // SECTIONNAME: [strchr x N]
  68. // Deprecated, but still needed to read old bitcode files.
  69. MODULE_CODE_DEPLIB = 6, // DEPLIB: [strchr x N]
  70. // GLOBALVAR: [pointer type, isconst, initid,
  71. // linkage, alignment, section, visibility, threadlocal]
  72. MODULE_CODE_GLOBALVAR = 7,
  73. // FUNCTION: [type, callingconv, isproto, linkage, paramattrs, alignment,
  74. // section, visibility, gc, unnamed_addr]
  75. MODULE_CODE_FUNCTION = 8,
  76. // ALIAS: [alias type, aliasee val#, linkage, visibility]
  77. MODULE_CODE_ALIAS_OLD = 9,
  78. MODULE_CODE_GCNAME = 11, // GCNAME: [strchr x N]
  79. MODULE_CODE_COMDAT = 12, // COMDAT: [selection_kind, name]
  80. MODULE_CODE_VSTOFFSET = 13, // VSTOFFSET: [offset]
  81. // ALIAS: [alias value type, addrspace, aliasee val#, linkage, visibility]
  82. MODULE_CODE_ALIAS = 14,
  83. MODULE_CODE_METADATA_VALUES_UNUSED = 15,
  84. // SOURCE_FILENAME: [namechar x N]
  85. MODULE_CODE_SOURCE_FILENAME = 16,
  86. // HASH: [5*i32]
  87. MODULE_CODE_HASH = 17,
  88. // IFUNC: [ifunc value type, addrspace, resolver val#, linkage, visibility]
  89. MODULE_CODE_IFUNC = 18,
  90. };
  91. /// PARAMATTR blocks have code for defining a parameter attribute set.
  92. enum AttributeCodes {
  93. // Deprecated, but still needed to read old bitcode files.
  94. PARAMATTR_CODE_ENTRY_OLD = 1, // ENTRY: [paramidx0, attr0,
  95. // paramidx1, attr1...]
  96. PARAMATTR_CODE_ENTRY = 2, // ENTRY: [attrgrp0, attrgrp1, ...]
  97. PARAMATTR_GRP_CODE_ENTRY = 3 // ENTRY: [grpid, idx, attr0, attr1, ...]
  98. };
  99. /// TYPE blocks have codes for each type primitive they use.
  100. enum TypeCodes {
  101. TYPE_CODE_NUMENTRY = 1, // NUMENTRY: [numentries]
  102. // Type Codes
  103. TYPE_CODE_VOID = 2, // VOID
  104. TYPE_CODE_FLOAT = 3, // FLOAT
  105. TYPE_CODE_DOUBLE = 4, // DOUBLE
  106. TYPE_CODE_LABEL = 5, // LABEL
  107. TYPE_CODE_OPAQUE = 6, // OPAQUE
  108. TYPE_CODE_INTEGER = 7, // INTEGER: [width]
  109. TYPE_CODE_POINTER = 8, // POINTER: [pointee type]
  110. TYPE_CODE_FUNCTION_OLD = 9, // FUNCTION: [vararg, attrid, retty,
  111. // paramty x N]
  112. TYPE_CODE_HALF = 10, // HALF
  113. TYPE_CODE_ARRAY = 11, // ARRAY: [numelts, eltty]
  114. TYPE_CODE_VECTOR = 12, // VECTOR: [numelts, eltty]
  115. // These are not with the other floating point types because they're
  116. // a late addition, and putting them in the right place breaks
  117. // binary compatibility.
  118. TYPE_CODE_X86_FP80 = 13, // X86 LONG DOUBLE
  119. TYPE_CODE_FP128 = 14, // LONG DOUBLE (112 bit mantissa)
  120. TYPE_CODE_PPC_FP128 = 15, // PPC LONG DOUBLE (2 doubles)
  121. TYPE_CODE_METADATA = 16, // METADATA
  122. TYPE_CODE_X86_MMX = 17, // X86 MMX
  123. TYPE_CODE_STRUCT_ANON = 18, // STRUCT_ANON: [ispacked, eltty x N]
  124. TYPE_CODE_STRUCT_NAME = 19, // STRUCT_NAME: [strchr x N]
  125. TYPE_CODE_STRUCT_NAMED = 20, // STRUCT_NAMED: [ispacked, eltty x N]
  126. TYPE_CODE_FUNCTION = 21, // FUNCTION: [vararg, retty, paramty x N]
  127. TYPE_CODE_TOKEN = 22, // TOKEN
  128. TYPE_CODE_BFLOAT = 23, // BRAIN FLOATING POINT
  129. TYPE_CODE_X86_AMX = 24, // X86 AMX
  130. TYPE_CODE_OPAQUE_POINTER = 25, // OPAQUE_POINTER: [addrspace]
  131. };
  132. enum OperandBundleTagCode {
  133. OPERAND_BUNDLE_TAG = 1, // TAG: [strchr x N]
  134. };
  135. enum SyncScopeNameCode {
  136. SYNC_SCOPE_NAME = 1,
  137. };
  138. // Value symbol table codes.
  139. enum ValueSymtabCodes {
  140. VST_CODE_ENTRY = 1, // VST_ENTRY: [valueid, namechar x N]
  141. VST_CODE_BBENTRY = 2, // VST_BBENTRY: [bbid, namechar x N]
  142. VST_CODE_FNENTRY = 3, // VST_FNENTRY: [valueid, offset, namechar x N]
  143. // VST_COMBINED_ENTRY: [valueid, refguid]
  144. VST_CODE_COMBINED_ENTRY = 5
  145. };
  146. // The module path symbol table only has one code (MST_CODE_ENTRY).
  147. enum ModulePathSymtabCodes {
  148. MST_CODE_ENTRY = 1, // MST_ENTRY: [modid, namechar x N]
  149. MST_CODE_HASH = 2, // MST_HASH: [5*i32]
  150. };
  151. // The summary section uses different codes in the per-module
  152. // and combined index cases.
  153. enum GlobalValueSummarySymtabCodes {
  154. // PERMODULE: [valueid, flags, instcount, numrefs, numrefs x valueid,
  155. // n x (valueid)]
  156. FS_PERMODULE = 1,
  157. // PERMODULE_PROFILE: [valueid, flags, instcount, numrefs,
  158. // numrefs x valueid,
  159. // n x (valueid, hotness)]
  160. FS_PERMODULE_PROFILE = 2,
  161. // PERMODULE_GLOBALVAR_INIT_REFS: [valueid, flags, n x valueid]
  162. FS_PERMODULE_GLOBALVAR_INIT_REFS = 3,
  163. // COMBINED: [valueid, modid, flags, instcount, numrefs, numrefs x valueid,
  164. // n x (valueid)]
  165. FS_COMBINED = 4,
  166. // COMBINED_PROFILE: [valueid, modid, flags, instcount, numrefs,
  167. // numrefs x valueid,
  168. // n x (valueid, hotness)]
  169. FS_COMBINED_PROFILE = 5,
  170. // COMBINED_GLOBALVAR_INIT_REFS: [valueid, modid, flags, n x valueid]
  171. FS_COMBINED_GLOBALVAR_INIT_REFS = 6,
  172. // ALIAS: [valueid, flags, valueid]
  173. FS_ALIAS = 7,
  174. // COMBINED_ALIAS: [valueid, modid, flags, valueid]
  175. FS_COMBINED_ALIAS = 8,
  176. // COMBINED_ORIGINAL_NAME: [original_name_hash]
  177. FS_COMBINED_ORIGINAL_NAME = 9,
  178. // VERSION of the summary, bumped when adding flags for instance.
  179. FS_VERSION = 10,
  180. // The list of llvm.type.test type identifiers used by the following function
  181. // that are used other than by an llvm.assume.
  182. // [n x typeid]
  183. FS_TYPE_TESTS = 11,
  184. // The list of virtual calls made by this function using
  185. // llvm.assume(llvm.type.test) intrinsics that do not have all constant
  186. // integer arguments.
  187. // [n x (typeid, offset)]
  188. FS_TYPE_TEST_ASSUME_VCALLS = 12,
  189. // The list of virtual calls made by this function using
  190. // llvm.type.checked.load intrinsics that do not have all constant integer
  191. // arguments.
  192. // [n x (typeid, offset)]
  193. FS_TYPE_CHECKED_LOAD_VCALLS = 13,
  194. // Identifies a virtual call made by this function using an
  195. // llvm.assume(llvm.type.test) intrinsic with all constant integer arguments.
  196. // [typeid, offset, n x arg]
  197. FS_TYPE_TEST_ASSUME_CONST_VCALL = 14,
  198. // Identifies a virtual call made by this function using an
  199. // llvm.type.checked.load intrinsic with all constant integer arguments.
  200. // [typeid, offset, n x arg]
  201. FS_TYPE_CHECKED_LOAD_CONST_VCALL = 15,
  202. // Assigns a GUID to a value ID. This normally appears only in combined
  203. // summaries, but it can also appear in per-module summaries for PGO data.
  204. // [valueid, guid]
  205. FS_VALUE_GUID = 16,
  206. // The list of local functions with CFI jump tables. Function names are
  207. // strings in strtab.
  208. // [n * name]
  209. FS_CFI_FUNCTION_DEFS = 17,
  210. // The list of external functions with CFI jump tables. Function names are
  211. // strings in strtab.
  212. // [n * name]
  213. FS_CFI_FUNCTION_DECLS = 18,
  214. // Per-module summary that also adds relative block frequency to callee info.
  215. // PERMODULE_RELBF: [valueid, flags, instcount, numrefs,
  216. // numrefs x valueid,
  217. // n x (valueid, relblockfreq)]
  218. FS_PERMODULE_RELBF = 19,
  219. // Index-wide flags
  220. FS_FLAGS = 20,
  221. // Maps type identifier to summary information for that type identifier.
  222. // Produced by the thin link (only lives in combined index).
  223. // TYPE_ID: [typeid, kind, bitwidth, align, size, bitmask, inlinebits,
  224. // n x (typeid, kind, name, numrba,
  225. // numrba x (numarg, numarg x arg, kind, info, byte, bit))]
  226. FS_TYPE_ID = 21,
  227. // For background see overview at https://llvm.org/docs/TypeMetadata.html.
  228. // The type metadata includes both the type identifier and the offset of
  229. // the address point of the type (the address held by objects of that type
  230. // which may not be the beginning of the virtual table). Vtable definitions
  231. // are decorated with type metadata for the types they are compatible with.
  232. //
  233. // Maps type identifier to summary information for that type identifier
  234. // computed from type metadata: the valueid of each vtable definition
  235. // decorated with a type metadata for that identifier, and the offset from
  236. // the corresponding type metadata.
  237. // Exists in the per-module summary to provide information to thin link
  238. // for index-based whole program devirtualization.
  239. // TYPE_ID_METADATA: [typeid, n x (valueid, offset)]
  240. FS_TYPE_ID_METADATA = 22,
  241. // Summarizes vtable definition for use in index-based whole program
  242. // devirtualization during the thin link.
  243. // PERMODULE_VTABLE_GLOBALVAR_INIT_REFS: [valueid, flags, varflags,
  244. // numrefs, numrefs x valueid,
  245. // n x (valueid, offset)]
  246. FS_PERMODULE_VTABLE_GLOBALVAR_INIT_REFS = 23,
  247. // The total number of basic blocks in the module.
  248. FS_BLOCK_COUNT = 24,
  249. // Range information for accessed offsets for every argument.
  250. // [n x (paramno, range, numcalls, numcalls x (callee_guid, paramno, range))]
  251. FS_PARAM_ACCESS = 25,
  252. };
  253. enum MetadataCodes {
  254. METADATA_STRING_OLD = 1, // MDSTRING: [values]
  255. METADATA_VALUE = 2, // VALUE: [type num, value num]
  256. METADATA_NODE = 3, // NODE: [n x md num]
  257. METADATA_NAME = 4, // STRING: [values]
  258. METADATA_DISTINCT_NODE = 5, // DISTINCT_NODE: [n x md num]
  259. METADATA_KIND = 6, // [n x [id, name]]
  260. METADATA_LOCATION = 7, // [distinct, line, col, scope, inlined-at?]
  261. METADATA_OLD_NODE = 8, // OLD_NODE: [n x (type num, value num)]
  262. METADATA_OLD_FN_NODE = 9, // OLD_FN_NODE: [n x (type num, value num)]
  263. METADATA_NAMED_NODE = 10, // NAMED_NODE: [n x mdnodes]
  264. METADATA_ATTACHMENT = 11, // [m x [value, [n x [id, mdnode]]]
  265. METADATA_GENERIC_DEBUG = 12, // [distinct, tag, vers, header, n x md num]
  266. METADATA_SUBRANGE = 13, // [distinct, count, lo]
  267. METADATA_ENUMERATOR = 14, // [isUnsigned|distinct, value, name]
  268. METADATA_BASIC_TYPE = 15, // [distinct, tag, name, size, align, enc]
  269. METADATA_FILE = 16, // [distinct, filename, directory, checksumkind, checksum]
  270. METADATA_DERIVED_TYPE = 17, // [distinct, ...]
  271. METADATA_COMPOSITE_TYPE = 18, // [distinct, ...]
  272. METADATA_SUBROUTINE_TYPE = 19, // [distinct, flags, types, cc]
  273. METADATA_COMPILE_UNIT = 20, // [distinct, ...]
  274. METADATA_SUBPROGRAM = 21, // [distinct, ...]
  275. METADATA_LEXICAL_BLOCK = 22, // [distinct, scope, file, line, column]
  276. METADATA_LEXICAL_BLOCK_FILE = 23, //[distinct, scope, file, discriminator]
  277. METADATA_NAMESPACE = 24, // [distinct, scope, file, name, line, exportSymbols]
  278. METADATA_TEMPLATE_TYPE = 25, // [distinct, scope, name, type, ...]
  279. METADATA_TEMPLATE_VALUE = 26, // [distinct, scope, name, type, value, ...]
  280. METADATA_GLOBAL_VAR = 27, // [distinct, ...]
  281. METADATA_LOCAL_VAR = 28, // [distinct, ...]
  282. METADATA_EXPRESSION = 29, // [distinct, n x element]
  283. METADATA_OBJC_PROPERTY = 30, // [distinct, name, file, line, ...]
  284. METADATA_IMPORTED_ENTITY = 31, // [distinct, tag, scope, entity, line, name]
  285. METADATA_MODULE = 32, // [distinct, scope, name, ...]
  286. METADATA_MACRO = 33, // [distinct, macinfo, line, name, value]
  287. METADATA_MACRO_FILE = 34, // [distinct, macinfo, line, file, ...]
  288. METADATA_STRINGS = 35, // [count, offset] blob([lengths][chars])
  289. METADATA_GLOBAL_DECL_ATTACHMENT = 36, // [valueid, n x [id, mdnode]]
  290. METADATA_GLOBAL_VAR_EXPR = 37, // [distinct, var, expr]
  291. METADATA_INDEX_OFFSET = 38, // [offset]
  292. METADATA_INDEX = 39, // [bitpos]
  293. METADATA_LABEL = 40, // [distinct, scope, name, file, line]
  294. METADATA_STRING_TYPE = 41, // [distinct, name, size, align,...]
  295. // Codes 42 and 43 are reserved for support for Fortran array specific debug
  296. // info.
  297. METADATA_COMMON_BLOCK = 44, // [distinct, scope, name, variable,...]
  298. METADATA_GENERIC_SUBRANGE = 45, // [distinct, count, lo, up, stride]
  299. METADATA_ARG_LIST = 46 // [n x [type num, value num]]
  300. };
  301. // The constants block (CONSTANTS_BLOCK_ID) describes emission for each
  302. // constant and maintains an implicit current type value.
  303. enum ConstantsCodes {
  304. CST_CODE_SETTYPE = 1, // SETTYPE: [typeid]
  305. CST_CODE_NULL = 2, // NULL
  306. CST_CODE_UNDEF = 3, // UNDEF
  307. CST_CODE_INTEGER = 4, // INTEGER: [intval]
  308. CST_CODE_WIDE_INTEGER = 5, // WIDE_INTEGER: [n x intval]
  309. CST_CODE_FLOAT = 6, // FLOAT: [fpval]
  310. CST_CODE_AGGREGATE = 7, // AGGREGATE: [n x value number]
  311. CST_CODE_STRING = 8, // STRING: [values]
  312. CST_CODE_CSTRING = 9, // CSTRING: [values]
  313. CST_CODE_CE_BINOP = 10, // CE_BINOP: [opcode, opval, opval]
  314. CST_CODE_CE_CAST = 11, // CE_CAST: [opcode, opty, opval]
  315. CST_CODE_CE_GEP = 12, // CE_GEP: [n x operands]
  316. CST_CODE_CE_SELECT = 13, // CE_SELECT: [opval, opval, opval]
  317. CST_CODE_CE_EXTRACTELT = 14, // CE_EXTRACTELT: [opty, opval, opval]
  318. CST_CODE_CE_INSERTELT = 15, // CE_INSERTELT: [opval, opval, opval]
  319. CST_CODE_CE_SHUFFLEVEC = 16, // CE_SHUFFLEVEC: [opval, opval, opval]
  320. CST_CODE_CE_CMP = 17, // CE_CMP: [opty, opval, opval, pred]
  321. CST_CODE_INLINEASM_OLD = 18, // INLINEASM: [sideeffect|alignstack,
  322. // asmstr,conststr]
  323. CST_CODE_CE_SHUFVEC_EX = 19, // SHUFVEC_EX: [opty, opval, opval, opval]
  324. CST_CODE_CE_INBOUNDS_GEP = 20, // INBOUNDS_GEP: [n x operands]
  325. CST_CODE_BLOCKADDRESS = 21, // CST_CODE_BLOCKADDRESS [fnty, fnval, bb#]
  326. CST_CODE_DATA = 22, // DATA: [n x elements]
  327. CST_CODE_INLINEASM_OLD2 = 23, // INLINEASM: [sideeffect|alignstack|
  328. // asmdialect,asmstr,conststr]
  329. CST_CODE_CE_GEP_WITH_INRANGE_INDEX = 24, // [opty, flags, n x operands]
  330. CST_CODE_CE_UNOP = 25, // CE_UNOP: [opcode, opval]
  331. CST_CODE_POISON = 26, // POISON
  332. CST_CODE_DSO_LOCAL_EQUIVALENT = 27, // DSO_LOCAL_EQUIVALENT [gvty, gv]
  333. CST_CODE_INLINEASM = 28, // INLINEASM: [sideeffect|alignstack|
  334. // asmdialect|unwind,
  335. // asmstr,conststr]
  336. };
  337. /// CastOpcodes - These are values used in the bitcode files to encode which
  338. /// cast a CST_CODE_CE_CAST or a XXX refers to. The values of these enums
  339. /// have no fixed relation to the LLVM IR enum values. Changing these will
  340. /// break compatibility with old files.
  341. enum CastOpcodes {
  342. CAST_TRUNC = 0,
  343. CAST_ZEXT = 1,
  344. CAST_SEXT = 2,
  345. CAST_FPTOUI = 3,
  346. CAST_FPTOSI = 4,
  347. CAST_UITOFP = 5,
  348. CAST_SITOFP = 6,
  349. CAST_FPTRUNC = 7,
  350. CAST_FPEXT = 8,
  351. CAST_PTRTOINT = 9,
  352. CAST_INTTOPTR = 10,
  353. CAST_BITCAST = 11,
  354. CAST_ADDRSPACECAST = 12
  355. };
  356. /// UnaryOpcodes - These are values used in the bitcode files to encode which
  357. /// unop a CST_CODE_CE_UNOP or a XXX refers to. The values of these enums
  358. /// have no fixed relation to the LLVM IR enum values. Changing these will
  359. /// break compatibility with old files.
  360. enum UnaryOpcodes {
  361. UNOP_FNEG = 0
  362. };
  363. /// BinaryOpcodes - These are values used in the bitcode files to encode which
  364. /// binop a CST_CODE_CE_BINOP or a XXX refers to. The values of these enums
  365. /// have no fixed relation to the LLVM IR enum values. Changing these will
  366. /// break compatibility with old files.
  367. enum BinaryOpcodes {
  368. BINOP_ADD = 0,
  369. BINOP_SUB = 1,
  370. BINOP_MUL = 2,
  371. BINOP_UDIV = 3,
  372. BINOP_SDIV = 4, // overloaded for FP
  373. BINOP_UREM = 5,
  374. BINOP_SREM = 6, // overloaded for FP
  375. BINOP_SHL = 7,
  376. BINOP_LSHR = 8,
  377. BINOP_ASHR = 9,
  378. BINOP_AND = 10,
  379. BINOP_OR = 11,
  380. BINOP_XOR = 12
  381. };
  382. /// These are values used in the bitcode files to encode AtomicRMW operations.
  383. /// The values of these enums have no fixed relation to the LLVM IR enum
  384. /// values. Changing these will break compatibility with old files.
  385. enum RMWOperations {
  386. RMW_XCHG = 0,
  387. RMW_ADD = 1,
  388. RMW_SUB = 2,
  389. RMW_AND = 3,
  390. RMW_NAND = 4,
  391. RMW_OR = 5,
  392. RMW_XOR = 6,
  393. RMW_MAX = 7,
  394. RMW_MIN = 8,
  395. RMW_UMAX = 9,
  396. RMW_UMIN = 10,
  397. RMW_FADD = 11,
  398. RMW_FSUB = 12
  399. };
  400. /// OverflowingBinaryOperatorOptionalFlags - Flags for serializing
  401. /// OverflowingBinaryOperator's SubclassOptionalData contents.
  402. enum OverflowingBinaryOperatorOptionalFlags {
  403. OBO_NO_UNSIGNED_WRAP = 0,
  404. OBO_NO_SIGNED_WRAP = 1
  405. };
  406. /// FastMath Flags
  407. /// This is a fixed layout derived from the bitcode emitted by LLVM 5.0
  408. /// intended to decouple the in-memory representation from the serialization.
  409. enum FastMathMap {
  410. UnsafeAlgebra = (1 << 0), // Legacy
  411. NoNaNs = (1 << 1),
  412. NoInfs = (1 << 2),
  413. NoSignedZeros = (1 << 3),
  414. AllowReciprocal = (1 << 4),
  415. AllowContract = (1 << 5),
  416. ApproxFunc = (1 << 6),
  417. AllowReassoc = (1 << 7)
  418. };
  419. /// PossiblyExactOperatorOptionalFlags - Flags for serializing
  420. /// PossiblyExactOperator's SubclassOptionalData contents.
  421. enum PossiblyExactOperatorOptionalFlags { PEO_EXACT = 0 };
  422. /// Encoded AtomicOrdering values.
  423. enum AtomicOrderingCodes {
  424. ORDERING_NOTATOMIC = 0,
  425. ORDERING_UNORDERED = 1,
  426. ORDERING_MONOTONIC = 2,
  427. ORDERING_ACQUIRE = 3,
  428. ORDERING_RELEASE = 4,
  429. ORDERING_ACQREL = 5,
  430. ORDERING_SEQCST = 6
  431. };
  432. /// Markers and flags for call instruction.
  433. enum CallMarkersFlags {
  434. CALL_TAIL = 0,
  435. CALL_CCONV = 1,
  436. CALL_MUSTTAIL = 14,
  437. CALL_EXPLICIT_TYPE = 15,
  438. CALL_NOTAIL = 16,
  439. CALL_FMF = 17 // Call has optional fast-math-flags.
  440. };
  441. // The function body block (FUNCTION_BLOCK_ID) describes function bodies. It
  442. // can contain a constant block (CONSTANTS_BLOCK_ID).
  443. enum FunctionCodes {
  444. FUNC_CODE_DECLAREBLOCKS = 1, // DECLAREBLOCKS: [n]
  445. FUNC_CODE_INST_BINOP = 2, // BINOP: [opcode, ty, opval, opval]
  446. FUNC_CODE_INST_CAST = 3, // CAST: [opcode, ty, opty, opval]
  447. FUNC_CODE_INST_GEP_OLD = 4, // GEP: [n x operands]
  448. FUNC_CODE_INST_SELECT = 5, // SELECT: [ty, opval, opval, opval]
  449. FUNC_CODE_INST_EXTRACTELT = 6, // EXTRACTELT: [opty, opval, opval]
  450. FUNC_CODE_INST_INSERTELT = 7, // INSERTELT: [ty, opval, opval, opval]
  451. FUNC_CODE_INST_SHUFFLEVEC = 8, // SHUFFLEVEC: [ty, opval, opval, opval]
  452. FUNC_CODE_INST_CMP = 9, // CMP: [opty, opval, opval, pred]
  453. FUNC_CODE_INST_RET = 10, // RET: [opty,opval<both optional>]
  454. FUNC_CODE_INST_BR = 11, // BR: [bb#, bb#, cond] or [bb#]
  455. FUNC_CODE_INST_SWITCH = 12, // SWITCH: [opty, op0, op1, ...]
  456. FUNC_CODE_INST_INVOKE = 13, // INVOKE: [attr, fnty, op0,op1, ...]
  457. // 14 is unused.
  458. FUNC_CODE_INST_UNREACHABLE = 15, // UNREACHABLE
  459. FUNC_CODE_INST_PHI = 16, // PHI: [ty, val0,bb0, ...]
  460. // 17 is unused.
  461. // 18 is unused.
  462. FUNC_CODE_INST_ALLOCA = 19, // ALLOCA: [instty, opty, op, align]
  463. FUNC_CODE_INST_LOAD = 20, // LOAD: [opty, op, align, vol]
  464. // 21 is unused.
  465. // 22 is unused.
  466. FUNC_CODE_INST_VAARG = 23, // VAARG: [valistty, valist, instty]
  467. // This store code encodes the pointer type, rather than the value type
  468. // this is so information only available in the pointer type (e.g. address
  469. // spaces) is retained.
  470. FUNC_CODE_INST_STORE_OLD = 24, // STORE: [ptrty,ptr,val, align, vol]
  471. // 25 is unused.
  472. FUNC_CODE_INST_EXTRACTVAL = 26, // EXTRACTVAL: [n x operands]
  473. FUNC_CODE_INST_INSERTVAL = 27, // INSERTVAL: [n x operands]
  474. // fcmp/icmp returning Int1TY or vector of Int1Ty. Same as CMP, exists to
  475. // support legacy vicmp/vfcmp instructions.
  476. FUNC_CODE_INST_CMP2 = 28, // CMP2: [opty, opval, opval, pred]
  477. // new select on i1 or [N x i1]
  478. FUNC_CODE_INST_VSELECT = 29, // VSELECT: [ty,opval,opval,predty,pred]
  479. FUNC_CODE_INST_INBOUNDS_GEP_OLD = 30, // INBOUNDS_GEP: [n x operands]
  480. FUNC_CODE_INST_INDIRECTBR = 31, // INDIRECTBR: [opty, op0, op1, ...]
  481. // 32 is unused.
  482. FUNC_CODE_DEBUG_LOC_AGAIN = 33, // DEBUG_LOC_AGAIN
  483. FUNC_CODE_INST_CALL = 34, // CALL: [attr, cc, fnty, fnid, args...]
  484. FUNC_CODE_DEBUG_LOC = 35, // DEBUG_LOC: [Line,Col,ScopeVal, IAVal]
  485. FUNC_CODE_INST_FENCE = 36, // FENCE: [ordering, synchscope]
  486. FUNC_CODE_INST_CMPXCHG_OLD = 37, // CMPXCHG: [ptrty, ptr, cmp, val, vol,
  487. // ordering, synchscope,
  488. // failure_ordering?, weak?]
  489. FUNC_CODE_INST_ATOMICRMW_OLD = 38, // ATOMICRMW: [ptrty,ptr,val, operation,
  490. // align, vol,
  491. // ordering, synchscope]
  492. FUNC_CODE_INST_RESUME = 39, // RESUME: [opval]
  493. FUNC_CODE_INST_LANDINGPAD_OLD =
  494. 40, // LANDINGPAD: [ty,val,val,num,id0,val0...]
  495. FUNC_CODE_INST_LOADATOMIC = 41, // LOAD: [opty, op, align, vol,
  496. // ordering, synchscope]
  497. FUNC_CODE_INST_STOREATOMIC_OLD = 42, // STORE: [ptrty,ptr,val, align, vol
  498. // ordering, synchscope]
  499. FUNC_CODE_INST_GEP = 43, // GEP: [inbounds, n x operands]
  500. FUNC_CODE_INST_STORE = 44, // STORE: [ptrty,ptr,valty,val, align, vol]
  501. FUNC_CODE_INST_STOREATOMIC = 45, // STORE: [ptrty,ptr,val, align, vol
  502. FUNC_CODE_INST_CMPXCHG = 46, // CMPXCHG: [ptrty, ptr, cmp, val, vol,
  503. // success_ordering, synchscope,
  504. // failure_ordering, weak]
  505. FUNC_CODE_INST_LANDINGPAD = 47, // LANDINGPAD: [ty,val,num,id0,val0...]
  506. FUNC_CODE_INST_CLEANUPRET = 48, // CLEANUPRET: [val] or [val,bb#]
  507. FUNC_CODE_INST_CATCHRET = 49, // CATCHRET: [val,bb#]
  508. FUNC_CODE_INST_CATCHPAD = 50, // CATCHPAD: [bb#,bb#,num,args...]
  509. FUNC_CODE_INST_CLEANUPPAD = 51, // CLEANUPPAD: [num,args...]
  510. FUNC_CODE_INST_CATCHSWITCH =
  511. 52, // CATCHSWITCH: [num,args...] or [num,args...,bb]
  512. // 53 is unused.
  513. // 54 is unused.
  514. FUNC_CODE_OPERAND_BUNDLE = 55, // OPERAND_BUNDLE: [tag#, value...]
  515. FUNC_CODE_INST_UNOP = 56, // UNOP: [opcode, ty, opval]
  516. FUNC_CODE_INST_CALLBR = 57, // CALLBR: [attr, cc, norm, transfs,
  517. // fnty, fnid, args...]
  518. FUNC_CODE_INST_FREEZE = 58, // FREEZE: [opty, opval]
  519. FUNC_CODE_INST_ATOMICRMW = 59, // ATOMICRMW: [ptrty, ptr, valty, val,
  520. // operation, align, vol,
  521. // ordering, synchscope]
  522. };
  523. enum UseListCodes {
  524. USELIST_CODE_DEFAULT = 1, // DEFAULT: [index..., value-id]
  525. USELIST_CODE_BB = 2 // BB: [index..., bb-id]
  526. };
  527. enum AttributeKindCodes {
  528. // = 0 is unused
  529. ATTR_KIND_ALIGNMENT = 1,
  530. ATTR_KIND_ALWAYS_INLINE = 2,
  531. ATTR_KIND_BY_VAL = 3,
  532. ATTR_KIND_INLINE_HINT = 4,
  533. ATTR_KIND_IN_REG = 5,
  534. ATTR_KIND_MIN_SIZE = 6,
  535. ATTR_KIND_NAKED = 7,
  536. ATTR_KIND_NEST = 8,
  537. ATTR_KIND_NO_ALIAS = 9,
  538. ATTR_KIND_NO_BUILTIN = 10,
  539. ATTR_KIND_NO_CAPTURE = 11,
  540. ATTR_KIND_NO_DUPLICATE = 12,
  541. ATTR_KIND_NO_IMPLICIT_FLOAT = 13,
  542. ATTR_KIND_NO_INLINE = 14,
  543. ATTR_KIND_NON_LAZY_BIND = 15,
  544. ATTR_KIND_NO_RED_ZONE = 16,
  545. ATTR_KIND_NO_RETURN = 17,
  546. ATTR_KIND_NO_UNWIND = 18,
  547. ATTR_KIND_OPTIMIZE_FOR_SIZE = 19,
  548. ATTR_KIND_READ_NONE = 20,
  549. ATTR_KIND_READ_ONLY = 21,
  550. ATTR_KIND_RETURNED = 22,
  551. ATTR_KIND_RETURNS_TWICE = 23,
  552. ATTR_KIND_S_EXT = 24,
  553. ATTR_KIND_STACK_ALIGNMENT = 25,
  554. ATTR_KIND_STACK_PROTECT = 26,
  555. ATTR_KIND_STACK_PROTECT_REQ = 27,
  556. ATTR_KIND_STACK_PROTECT_STRONG = 28,
  557. ATTR_KIND_STRUCT_RET = 29,
  558. ATTR_KIND_SANITIZE_ADDRESS = 30,
  559. ATTR_KIND_SANITIZE_THREAD = 31,
  560. ATTR_KIND_SANITIZE_MEMORY = 32,
  561. ATTR_KIND_UW_TABLE = 33,
  562. ATTR_KIND_Z_EXT = 34,
  563. ATTR_KIND_BUILTIN = 35,
  564. ATTR_KIND_COLD = 36,
  565. ATTR_KIND_OPTIMIZE_NONE = 37,
  566. ATTR_KIND_IN_ALLOCA = 38,
  567. ATTR_KIND_NON_NULL = 39,
  568. ATTR_KIND_JUMP_TABLE = 40,
  569. ATTR_KIND_DEREFERENCEABLE = 41,
  570. ATTR_KIND_DEREFERENCEABLE_OR_NULL = 42,
  571. ATTR_KIND_CONVERGENT = 43,
  572. ATTR_KIND_SAFESTACK = 44,
  573. ATTR_KIND_ARGMEMONLY = 45,
  574. ATTR_KIND_SWIFT_SELF = 46,
  575. ATTR_KIND_SWIFT_ERROR = 47,
  576. ATTR_KIND_NO_RECURSE = 48,
  577. ATTR_KIND_INACCESSIBLEMEM_ONLY = 49,
  578. ATTR_KIND_INACCESSIBLEMEM_OR_ARGMEMONLY = 50,
  579. ATTR_KIND_ALLOC_SIZE = 51,
  580. ATTR_KIND_WRITEONLY = 52,
  581. ATTR_KIND_SPECULATABLE = 53,
  582. ATTR_KIND_STRICT_FP = 54,
  583. ATTR_KIND_SANITIZE_HWADDRESS = 55,
  584. ATTR_KIND_NOCF_CHECK = 56,
  585. ATTR_KIND_OPT_FOR_FUZZING = 57,
  586. ATTR_KIND_SHADOWCALLSTACK = 58,
  587. ATTR_KIND_SPECULATIVE_LOAD_HARDENING = 59,
  588. ATTR_KIND_IMMARG = 60,
  589. ATTR_KIND_WILLRETURN = 61,
  590. ATTR_KIND_NOFREE = 62,
  591. ATTR_KIND_NOSYNC = 63,
  592. ATTR_KIND_SANITIZE_MEMTAG = 64,
  593. ATTR_KIND_PREALLOCATED = 65,
  594. ATTR_KIND_NO_MERGE = 66,
  595. ATTR_KIND_NULL_POINTER_IS_VALID = 67,
  596. ATTR_KIND_NOUNDEF = 68,
  597. ATTR_KIND_BYREF = 69,
  598. ATTR_KIND_MUSTPROGRESS = 70,
  599. ATTR_KIND_NO_CALLBACK = 71,
  600. ATTR_KIND_HOT = 72,
  601. ATTR_KIND_NO_PROFILE = 73,
  602. ATTR_KIND_VSCALE_RANGE = 74,
  603. ATTR_KIND_SWIFT_ASYNC = 75,
  604. ATTR_KIND_NO_SANITIZE_COVERAGE = 76,
  605. };
  606. enum ComdatSelectionKindCodes {
  607. COMDAT_SELECTION_KIND_ANY = 1,
  608. COMDAT_SELECTION_KIND_EXACT_MATCH = 2,
  609. COMDAT_SELECTION_KIND_LARGEST = 3,
  610. COMDAT_SELECTION_KIND_NO_DUPLICATES = 4,
  611. COMDAT_SELECTION_KIND_SAME_SIZE = 5,
  612. };
  613. enum StrtabCodes {
  614. STRTAB_BLOB = 1,
  615. };
  616. enum SymtabCodes {
  617. SYMTAB_BLOB = 1,
  618. };
  619. } // End bitc namespace
  620. } // End llvm namespace
  621. #endif