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opcode.cpp 24 KB

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  1. // Copyright (c) 2015-2022 The Khronos Group Inc.
  2. // Modifications Copyright (C) 2020 Advanced Micro Devices, Inc. All rights
  3. // reserved.
  4. //
  5. // Licensed under the Apache License, Version 2.0 (the "License");
  6. // you may not use this file except in compliance with the License.
  7. // You may obtain a copy of the License at
  8. //
  9. // http://www.apache.org/licenses/LICENSE-2.0
  10. //
  11. // Unless required by applicable law or agreed to in writing, software
  12. // distributed under the License is distributed on an "AS IS" BASIS,
  13. // WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
  14. // See the License for the specific language governing permissions and
  15. // limitations under the License.
  16. #include "source/opcode.h"
  17. #include <assert.h>
  18. #include <string.h>
  19. #include <algorithm>
  20. #include <cstdlib>
  21. #include "source/instruction.h"
  22. #include "source/macro.h"
  23. #include "source/spirv_constant.h"
  24. #include "source/spirv_endian.h"
  25. #include "source/spirv_target_env.h"
  26. #include "spirv-tools/libspirv.h"
  27. namespace {
  28. struct OpcodeDescPtrLen {
  29. const spv_opcode_desc_t* ptr;
  30. uint32_t len;
  31. };
  32. #include "core.insts-unified1.inc"
  33. static const spv_opcode_table_t kOpcodeTable = {ARRAY_SIZE(kOpcodeTableEntries),
  34. kOpcodeTableEntries};
  35. // Represents a vendor tool entry in the SPIR-V XML Registry.
  36. struct VendorTool {
  37. uint32_t value;
  38. const char* vendor;
  39. const char* tool; // Might be empty string.
  40. const char* vendor_tool; // Combination of vendor and tool.
  41. };
  42. const VendorTool vendor_tools[] = {
  43. #include "generators.inc"
  44. };
  45. } // anonymous namespace
  46. // TODO(dneto): Move this to another file. It doesn't belong with opcode
  47. // processing.
  48. const char* spvGeneratorStr(uint32_t generator) {
  49. auto where = std::find_if(
  50. std::begin(vendor_tools), std::end(vendor_tools),
  51. [generator](const VendorTool& vt) { return generator == vt.value; });
  52. if (where != std::end(vendor_tools)) return where->vendor_tool;
  53. return "Unknown";
  54. }
  55. uint32_t spvOpcodeMake(uint16_t wordCount, spv::Op opcode) {
  56. return ((uint32_t)opcode) | (((uint32_t)wordCount) << 16);
  57. }
  58. void spvOpcodeSplit(const uint32_t word, uint16_t* pWordCount,
  59. uint16_t* pOpcode) {
  60. if (pWordCount) {
  61. *pWordCount = (uint16_t)((0xffff0000 & word) >> 16);
  62. }
  63. if (pOpcode) {
  64. *pOpcode = 0x0000ffff & word;
  65. }
  66. }
  67. spv_result_t spvOpcodeTableGet(spv_opcode_table* pInstTable, spv_target_env) {
  68. if (!pInstTable) return SPV_ERROR_INVALID_POINTER;
  69. // Descriptions of each opcode. Each entry describes the format of the
  70. // instruction that follows a particular opcode.
  71. *pInstTable = &kOpcodeTable;
  72. return SPV_SUCCESS;
  73. }
  74. spv_result_t spvOpcodeTableNameLookup(spv_target_env env,
  75. const spv_opcode_table table,
  76. const char* name,
  77. spv_opcode_desc* pEntry) {
  78. if (!name || !pEntry) return SPV_ERROR_INVALID_POINTER;
  79. if (!table) return SPV_ERROR_INVALID_TABLE;
  80. // TODO: This lookup of the Opcode table is suboptimal! Binary sort would be
  81. // preferable but the table requires sorting on the Opcode name, but it's
  82. // static const initialized and matches the order of the spec.
  83. const size_t nameLength = strlen(name);
  84. const auto version = spvVersionForTargetEnv(env);
  85. for (uint64_t opcodeIndex = 0; opcodeIndex < table->count; ++opcodeIndex) {
  86. const spv_opcode_desc_t& entry = table->entries[opcodeIndex];
  87. // We considers the current opcode as available as long as
  88. // 1. The target environment satisfies the minimal requirement of the
  89. // opcode; or
  90. // 2. There is at least one extension enabling this opcode.
  91. //
  92. // Note that the second rule assumes the extension enabling this instruction
  93. // is indeed requested in the SPIR-V code; checking that should be
  94. // validator's work.
  95. if (((version >= entry.minVersion && version <= entry.lastVersion) ||
  96. entry.numExtensions > 0u || entry.numCapabilities > 0u) &&
  97. nameLength == strlen(entry.name) &&
  98. !strncmp(name, entry.name, nameLength)) {
  99. // NOTE: Found out Opcode!
  100. *pEntry = &entry;
  101. return SPV_SUCCESS;
  102. }
  103. }
  104. return SPV_ERROR_INVALID_LOOKUP;
  105. }
  106. spv_result_t spvOpcodeTableValueLookup(spv_target_env env,
  107. const spv_opcode_table table,
  108. const spv::Op opcode,
  109. spv_opcode_desc* pEntry) {
  110. if (!table) return SPV_ERROR_INVALID_TABLE;
  111. if (!pEntry) return SPV_ERROR_INVALID_POINTER;
  112. const auto beg = table->entries;
  113. const auto end = table->entries + table->count;
  114. spv_opcode_desc_t needle = {"", opcode, 0, nullptr, 0, {},
  115. false, false, 0, nullptr, ~0u, ~0u};
  116. auto comp = [](const spv_opcode_desc_t& lhs, const spv_opcode_desc_t& rhs) {
  117. return lhs.opcode < rhs.opcode;
  118. };
  119. // We need to loop here because there can exist multiple symbols for the same
  120. // opcode value, and they can be introduced in different target environments,
  121. // which means they can have different minimal version requirements.
  122. // Assumes the underlying table is already sorted ascendingly according to
  123. // opcode value.
  124. const auto version = spvVersionForTargetEnv(env);
  125. for (auto it = std::lower_bound(beg, end, needle, comp);
  126. it != end && it->opcode == opcode; ++it) {
  127. // We considers the current opcode as available as long as
  128. // 1. The target environment satisfies the minimal requirement of the
  129. // opcode; or
  130. // 2. There is at least one extension enabling this opcode.
  131. //
  132. // Note that the second rule assumes the extension enabling this instruction
  133. // is indeed requested in the SPIR-V code; checking that should be
  134. // validator's work.
  135. if ((version >= it->minVersion && version <= it->lastVersion) ||
  136. it->numExtensions > 0u || it->numCapabilities > 0u) {
  137. *pEntry = it;
  138. return SPV_SUCCESS;
  139. }
  140. }
  141. return SPV_ERROR_INVALID_LOOKUP;
  142. }
  143. void spvInstructionCopy(const uint32_t* words, const spv::Op opcode,
  144. const uint16_t wordCount, const spv_endianness_t endian,
  145. spv_instruction_t* pInst) {
  146. pInst->opcode = opcode;
  147. pInst->words.resize(wordCount);
  148. for (uint16_t wordIndex = 0; wordIndex < wordCount; ++wordIndex) {
  149. pInst->words[wordIndex] = spvFixWord(words[wordIndex], endian);
  150. if (!wordIndex) {
  151. uint16_t thisWordCount;
  152. uint16_t thisOpcode;
  153. spvOpcodeSplit(pInst->words[wordIndex], &thisWordCount, &thisOpcode);
  154. assert(opcode == static_cast<spv::Op>(thisOpcode) &&
  155. wordCount == thisWordCount && "Endianness failed!");
  156. }
  157. }
  158. }
  159. const char* spvOpcodeString(const uint32_t opcode) {
  160. const auto beg = kOpcodeTableEntries;
  161. const auto end = kOpcodeTableEntries + ARRAY_SIZE(kOpcodeTableEntries);
  162. spv_opcode_desc_t needle = {"", static_cast<spv::Op>(opcode),
  163. 0, nullptr,
  164. 0, {},
  165. false, false,
  166. 0, nullptr,
  167. ~0u, ~0u};
  168. auto comp = [](const spv_opcode_desc_t& lhs, const spv_opcode_desc_t& rhs) {
  169. return lhs.opcode < rhs.opcode;
  170. };
  171. auto it = std::lower_bound(beg, end, needle, comp);
  172. if (it != end && it->opcode == spv::Op(opcode)) {
  173. return it->name;
  174. }
  175. assert(0 && "Unreachable!");
  176. return "unknown";
  177. }
  178. const char* spvOpcodeString(const spv::Op opcode) {
  179. return spvOpcodeString(static_cast<uint32_t>(opcode));
  180. }
  181. int32_t spvOpcodeIsScalarType(const spv::Op opcode) {
  182. switch (opcode) {
  183. case spv::Op::OpTypeInt:
  184. case spv::Op::OpTypeFloat:
  185. case spv::Op::OpTypeBool:
  186. return true;
  187. default:
  188. return false;
  189. }
  190. }
  191. int32_t spvOpcodeIsSpecConstant(const spv::Op opcode) {
  192. switch (opcode) {
  193. case spv::Op::OpSpecConstantTrue:
  194. case spv::Op::OpSpecConstantFalse:
  195. case spv::Op::OpSpecConstant:
  196. case spv::Op::OpSpecConstantComposite:
  197. case spv::Op::OpSpecConstantOp:
  198. return true;
  199. default:
  200. return false;
  201. }
  202. }
  203. int32_t spvOpcodeIsConstant(const spv::Op opcode) {
  204. switch (opcode) {
  205. case spv::Op::OpConstantTrue:
  206. case spv::Op::OpConstantFalse:
  207. case spv::Op::OpConstant:
  208. case spv::Op::OpConstantComposite:
  209. case spv::Op::OpConstantSampler:
  210. case spv::Op::OpConstantNull:
  211. case spv::Op::OpConstantFunctionPointerINTEL:
  212. case spv::Op::OpSpecConstantTrue:
  213. case spv::Op::OpSpecConstantFalse:
  214. case spv::Op::OpSpecConstant:
  215. case spv::Op::OpSpecConstantComposite:
  216. case spv::Op::OpSpecConstantOp:
  217. return true;
  218. default:
  219. return false;
  220. }
  221. }
  222. bool spvOpcodeIsConstantOrUndef(const spv::Op opcode) {
  223. return opcode == spv::Op::OpUndef || spvOpcodeIsConstant(opcode);
  224. }
  225. bool spvOpcodeIsScalarSpecConstant(const spv::Op opcode) {
  226. switch (opcode) {
  227. case spv::Op::OpSpecConstantTrue:
  228. case spv::Op::OpSpecConstantFalse:
  229. case spv::Op::OpSpecConstant:
  230. return true;
  231. default:
  232. return false;
  233. }
  234. }
  235. int32_t spvOpcodeIsComposite(const spv::Op opcode) {
  236. switch (opcode) {
  237. case spv::Op::OpTypeVector:
  238. case spv::Op::OpTypeMatrix:
  239. case spv::Op::OpTypeArray:
  240. case spv::Op::OpTypeStruct:
  241. case spv::Op::OpTypeCooperativeMatrixNV:
  242. case spv::Op::OpTypeCooperativeMatrixKHR:
  243. return true;
  244. default:
  245. return false;
  246. }
  247. }
  248. bool spvOpcodeReturnsLogicalVariablePointer(const spv::Op opcode) {
  249. switch (opcode) {
  250. case spv::Op::OpVariable:
  251. case spv::Op::OpAccessChain:
  252. case spv::Op::OpInBoundsAccessChain:
  253. case spv::Op::OpFunctionParameter:
  254. case spv::Op::OpImageTexelPointer:
  255. case spv::Op::OpCopyObject:
  256. case spv::Op::OpSelect:
  257. case spv::Op::OpPhi:
  258. case spv::Op::OpFunctionCall:
  259. case spv::Op::OpPtrAccessChain:
  260. case spv::Op::OpLoad:
  261. case spv::Op::OpConstantNull:
  262. return true;
  263. default:
  264. return false;
  265. }
  266. }
  267. int32_t spvOpcodeReturnsLogicalPointer(const spv::Op opcode) {
  268. switch (opcode) {
  269. case spv::Op::OpVariable:
  270. case spv::Op::OpAccessChain:
  271. case spv::Op::OpInBoundsAccessChain:
  272. case spv::Op::OpFunctionParameter:
  273. case spv::Op::OpImageTexelPointer:
  274. case spv::Op::OpCopyObject:
  275. return true;
  276. default:
  277. return false;
  278. }
  279. }
  280. int32_t spvOpcodeGeneratesType(spv::Op op) {
  281. switch (op) {
  282. case spv::Op::OpTypeVoid:
  283. case spv::Op::OpTypeBool:
  284. case spv::Op::OpTypeInt:
  285. case spv::Op::OpTypeFloat:
  286. case spv::Op::OpTypeVector:
  287. case spv::Op::OpTypeMatrix:
  288. case spv::Op::OpTypeImage:
  289. case spv::Op::OpTypeSampler:
  290. case spv::Op::OpTypeSampledImage:
  291. case spv::Op::OpTypeArray:
  292. case spv::Op::OpTypeRuntimeArray:
  293. case spv::Op::OpTypeStruct:
  294. case spv::Op::OpTypeOpaque:
  295. case spv::Op::OpTypePointer:
  296. case spv::Op::OpTypeFunction:
  297. case spv::Op::OpTypeEvent:
  298. case spv::Op::OpTypeDeviceEvent:
  299. case spv::Op::OpTypeReserveId:
  300. case spv::Op::OpTypeQueue:
  301. case spv::Op::OpTypePipe:
  302. case spv::Op::OpTypePipeStorage:
  303. case spv::Op::OpTypeNamedBarrier:
  304. case spv::Op::OpTypeAccelerationStructureNV:
  305. case spv::Op::OpTypeCooperativeMatrixNV:
  306. case spv::Op::OpTypeCooperativeMatrixKHR:
  307. // case spv::Op::OpTypeAccelerationStructureKHR: covered by
  308. // spv::Op::OpTypeAccelerationStructureNV
  309. case spv::Op::OpTypeRayQueryKHR:
  310. case spv::Op::OpTypeHitObjectNV:
  311. return true;
  312. default:
  313. // In particular, OpTypeForwardPointer does not generate a type,
  314. // but declares a storage class for a pointer type generated
  315. // by a different instruction.
  316. break;
  317. }
  318. return 0;
  319. }
  320. bool spvOpcodeIsDecoration(const spv::Op opcode) {
  321. switch (opcode) {
  322. case spv::Op::OpDecorate:
  323. case spv::Op::OpDecorateId:
  324. case spv::Op::OpMemberDecorate:
  325. case spv::Op::OpGroupDecorate:
  326. case spv::Op::OpGroupMemberDecorate:
  327. case spv::Op::OpDecorateStringGOOGLE:
  328. case spv::Op::OpMemberDecorateStringGOOGLE:
  329. return true;
  330. default:
  331. break;
  332. }
  333. return false;
  334. }
  335. bool spvOpcodeIsLoad(const spv::Op opcode) {
  336. switch (opcode) {
  337. case spv::Op::OpLoad:
  338. case spv::Op::OpImageSampleExplicitLod:
  339. case spv::Op::OpImageSampleImplicitLod:
  340. case spv::Op::OpImageSampleDrefImplicitLod:
  341. case spv::Op::OpImageSampleDrefExplicitLod:
  342. case spv::Op::OpImageSampleProjImplicitLod:
  343. case spv::Op::OpImageSampleProjExplicitLod:
  344. case spv::Op::OpImageSampleProjDrefImplicitLod:
  345. case spv::Op::OpImageSampleProjDrefExplicitLod:
  346. case spv::Op::OpImageFetch:
  347. case spv::Op::OpImageGather:
  348. case spv::Op::OpImageDrefGather:
  349. case spv::Op::OpImageRead:
  350. case spv::Op::OpImageSparseSampleImplicitLod:
  351. case spv::Op::OpImageSparseSampleExplicitLod:
  352. case spv::Op::OpImageSparseSampleDrefExplicitLod:
  353. case spv::Op::OpImageSparseSampleDrefImplicitLod:
  354. case spv::Op::OpImageSparseFetch:
  355. case spv::Op::OpImageSparseGather:
  356. case spv::Op::OpImageSparseDrefGather:
  357. case spv::Op::OpImageSparseRead:
  358. return true;
  359. default:
  360. return false;
  361. }
  362. }
  363. bool spvOpcodeIsBranch(spv::Op opcode) {
  364. switch (opcode) {
  365. case spv::Op::OpBranch:
  366. case spv::Op::OpBranchConditional:
  367. case spv::Op::OpSwitch:
  368. return true;
  369. default:
  370. return false;
  371. }
  372. }
  373. bool spvOpcodeIsAtomicWithLoad(const spv::Op opcode) {
  374. switch (opcode) {
  375. case spv::Op::OpAtomicLoad:
  376. case spv::Op::OpAtomicExchange:
  377. case spv::Op::OpAtomicCompareExchange:
  378. case spv::Op::OpAtomicCompareExchangeWeak:
  379. case spv::Op::OpAtomicIIncrement:
  380. case spv::Op::OpAtomicIDecrement:
  381. case spv::Op::OpAtomicIAdd:
  382. case spv::Op::OpAtomicFAddEXT:
  383. case spv::Op::OpAtomicISub:
  384. case spv::Op::OpAtomicSMin:
  385. case spv::Op::OpAtomicUMin:
  386. case spv::Op::OpAtomicFMinEXT:
  387. case spv::Op::OpAtomicSMax:
  388. case spv::Op::OpAtomicUMax:
  389. case spv::Op::OpAtomicFMaxEXT:
  390. case spv::Op::OpAtomicAnd:
  391. case spv::Op::OpAtomicOr:
  392. case spv::Op::OpAtomicXor:
  393. case spv::Op::OpAtomicFlagTestAndSet:
  394. return true;
  395. default:
  396. return false;
  397. }
  398. }
  399. bool spvOpcodeIsAtomicOp(const spv::Op opcode) {
  400. return (spvOpcodeIsAtomicWithLoad(opcode) ||
  401. opcode == spv::Op::OpAtomicStore ||
  402. opcode == spv::Op::OpAtomicFlagClear);
  403. }
  404. bool spvOpcodeIsReturn(spv::Op opcode) {
  405. switch (opcode) {
  406. case spv::Op::OpReturn:
  407. case spv::Op::OpReturnValue:
  408. return true;
  409. default:
  410. return false;
  411. }
  412. }
  413. bool spvOpcodeIsAbort(spv::Op opcode) {
  414. switch (opcode) {
  415. case spv::Op::OpKill:
  416. case spv::Op::OpUnreachable:
  417. case spv::Op::OpTerminateInvocation:
  418. case spv::Op::OpTerminateRayKHR:
  419. case spv::Op::OpIgnoreIntersectionKHR:
  420. case spv::Op::OpEmitMeshTasksEXT:
  421. return true;
  422. default:
  423. return false;
  424. }
  425. }
  426. bool spvOpcodeIsReturnOrAbort(spv::Op opcode) {
  427. return spvOpcodeIsReturn(opcode) || spvOpcodeIsAbort(opcode);
  428. }
  429. bool spvOpcodeIsBlockTerminator(spv::Op opcode) {
  430. return spvOpcodeIsBranch(opcode) || spvOpcodeIsReturnOrAbort(opcode);
  431. }
  432. bool spvOpcodeIsBaseOpaqueType(spv::Op opcode) {
  433. switch (opcode) {
  434. case spv::Op::OpTypeImage:
  435. case spv::Op::OpTypeSampler:
  436. case spv::Op::OpTypeSampledImage:
  437. case spv::Op::OpTypeOpaque:
  438. case spv::Op::OpTypeEvent:
  439. case spv::Op::OpTypeDeviceEvent:
  440. case spv::Op::OpTypeReserveId:
  441. case spv::Op::OpTypeQueue:
  442. case spv::Op::OpTypePipe:
  443. case spv::Op::OpTypeForwardPointer:
  444. case spv::Op::OpTypePipeStorage:
  445. case spv::Op::OpTypeNamedBarrier:
  446. return true;
  447. default:
  448. return false;
  449. }
  450. }
  451. bool spvOpcodeIsNonUniformGroupOperation(spv::Op opcode) {
  452. switch (opcode) {
  453. case spv::Op::OpGroupNonUniformElect:
  454. case spv::Op::OpGroupNonUniformAll:
  455. case spv::Op::OpGroupNonUniformAny:
  456. case spv::Op::OpGroupNonUniformAllEqual:
  457. case spv::Op::OpGroupNonUniformBroadcast:
  458. case spv::Op::OpGroupNonUniformBroadcastFirst:
  459. case spv::Op::OpGroupNonUniformBallot:
  460. case spv::Op::OpGroupNonUniformInverseBallot:
  461. case spv::Op::OpGroupNonUniformBallotBitExtract:
  462. case spv::Op::OpGroupNonUniformBallotBitCount:
  463. case spv::Op::OpGroupNonUniformBallotFindLSB:
  464. case spv::Op::OpGroupNonUniformBallotFindMSB:
  465. case spv::Op::OpGroupNonUniformShuffle:
  466. case spv::Op::OpGroupNonUniformShuffleXor:
  467. case spv::Op::OpGroupNonUniformShuffleUp:
  468. case spv::Op::OpGroupNonUniformShuffleDown:
  469. case spv::Op::OpGroupNonUniformIAdd:
  470. case spv::Op::OpGroupNonUniformFAdd:
  471. case spv::Op::OpGroupNonUniformIMul:
  472. case spv::Op::OpGroupNonUniformFMul:
  473. case spv::Op::OpGroupNonUniformSMin:
  474. case spv::Op::OpGroupNonUniformUMin:
  475. case spv::Op::OpGroupNonUniformFMin:
  476. case spv::Op::OpGroupNonUniformSMax:
  477. case spv::Op::OpGroupNonUniformUMax:
  478. case spv::Op::OpGroupNonUniformFMax:
  479. case spv::Op::OpGroupNonUniformBitwiseAnd:
  480. case spv::Op::OpGroupNonUniformBitwiseOr:
  481. case spv::Op::OpGroupNonUniformBitwiseXor:
  482. case spv::Op::OpGroupNonUniformLogicalAnd:
  483. case spv::Op::OpGroupNonUniformLogicalOr:
  484. case spv::Op::OpGroupNonUniformLogicalXor:
  485. case spv::Op::OpGroupNonUniformQuadBroadcast:
  486. case spv::Op::OpGroupNonUniformQuadSwap:
  487. case spv::Op::OpGroupNonUniformRotateKHR:
  488. case spv::Op::OpGroupNonUniformQuadAllKHR:
  489. case spv::Op::OpGroupNonUniformQuadAnyKHR:
  490. return true;
  491. default:
  492. return false;
  493. }
  494. }
  495. bool spvOpcodeIsScalarizable(spv::Op opcode) {
  496. switch (opcode) {
  497. case spv::Op::OpPhi:
  498. case spv::Op::OpCopyObject:
  499. case spv::Op::OpConvertFToU:
  500. case spv::Op::OpConvertFToS:
  501. case spv::Op::OpConvertSToF:
  502. case spv::Op::OpConvertUToF:
  503. case spv::Op::OpUConvert:
  504. case spv::Op::OpSConvert:
  505. case spv::Op::OpFConvert:
  506. case spv::Op::OpQuantizeToF16:
  507. case spv::Op::OpVectorInsertDynamic:
  508. case spv::Op::OpSNegate:
  509. case spv::Op::OpFNegate:
  510. case spv::Op::OpIAdd:
  511. case spv::Op::OpFAdd:
  512. case spv::Op::OpISub:
  513. case spv::Op::OpFSub:
  514. case spv::Op::OpIMul:
  515. case spv::Op::OpFMul:
  516. case spv::Op::OpUDiv:
  517. case spv::Op::OpSDiv:
  518. case spv::Op::OpFDiv:
  519. case spv::Op::OpUMod:
  520. case spv::Op::OpSRem:
  521. case spv::Op::OpSMod:
  522. case spv::Op::OpFRem:
  523. case spv::Op::OpFMod:
  524. case spv::Op::OpVectorTimesScalar:
  525. case spv::Op::OpIAddCarry:
  526. case spv::Op::OpISubBorrow:
  527. case spv::Op::OpUMulExtended:
  528. case spv::Op::OpSMulExtended:
  529. case spv::Op::OpShiftRightLogical:
  530. case spv::Op::OpShiftRightArithmetic:
  531. case spv::Op::OpShiftLeftLogical:
  532. case spv::Op::OpBitwiseOr:
  533. case spv::Op::OpBitwiseAnd:
  534. case spv::Op::OpNot:
  535. case spv::Op::OpBitFieldInsert:
  536. case spv::Op::OpBitFieldSExtract:
  537. case spv::Op::OpBitFieldUExtract:
  538. case spv::Op::OpBitReverse:
  539. case spv::Op::OpBitCount:
  540. case spv::Op::OpIsNan:
  541. case spv::Op::OpIsInf:
  542. case spv::Op::OpIsFinite:
  543. case spv::Op::OpIsNormal:
  544. case spv::Op::OpSignBitSet:
  545. case spv::Op::OpLessOrGreater:
  546. case spv::Op::OpOrdered:
  547. case spv::Op::OpUnordered:
  548. case spv::Op::OpLogicalEqual:
  549. case spv::Op::OpLogicalNotEqual:
  550. case spv::Op::OpLogicalOr:
  551. case spv::Op::OpLogicalAnd:
  552. case spv::Op::OpLogicalNot:
  553. case spv::Op::OpSelect:
  554. case spv::Op::OpIEqual:
  555. case spv::Op::OpINotEqual:
  556. case spv::Op::OpUGreaterThan:
  557. case spv::Op::OpSGreaterThan:
  558. case spv::Op::OpUGreaterThanEqual:
  559. case spv::Op::OpSGreaterThanEqual:
  560. case spv::Op::OpULessThan:
  561. case spv::Op::OpSLessThan:
  562. case spv::Op::OpULessThanEqual:
  563. case spv::Op::OpSLessThanEqual:
  564. case spv::Op::OpFOrdEqual:
  565. case spv::Op::OpFUnordEqual:
  566. case spv::Op::OpFOrdNotEqual:
  567. case spv::Op::OpFUnordNotEqual:
  568. case spv::Op::OpFOrdLessThan:
  569. case spv::Op::OpFUnordLessThan:
  570. case spv::Op::OpFOrdGreaterThan:
  571. case spv::Op::OpFUnordGreaterThan:
  572. case spv::Op::OpFOrdLessThanEqual:
  573. case spv::Op::OpFUnordLessThanEqual:
  574. case spv::Op::OpFOrdGreaterThanEqual:
  575. case spv::Op::OpFUnordGreaterThanEqual:
  576. return true;
  577. default:
  578. return false;
  579. }
  580. }
  581. bool spvOpcodeIsDebug(spv::Op opcode) {
  582. switch (opcode) {
  583. case spv::Op::OpName:
  584. case spv::Op::OpMemberName:
  585. case spv::Op::OpSource:
  586. case spv::Op::OpSourceContinued:
  587. case spv::Op::OpSourceExtension:
  588. case spv::Op::OpString:
  589. case spv::Op::OpLine:
  590. case spv::Op::OpNoLine:
  591. case spv::Op::OpModuleProcessed:
  592. return true;
  593. default:
  594. return false;
  595. }
  596. }
  597. bool spvOpcodeIsCommutativeBinaryOperator(spv::Op opcode) {
  598. switch (opcode) {
  599. case spv::Op::OpPtrEqual:
  600. case spv::Op::OpPtrNotEqual:
  601. case spv::Op::OpIAdd:
  602. case spv::Op::OpFAdd:
  603. case spv::Op::OpIMul:
  604. case spv::Op::OpFMul:
  605. case spv::Op::OpDot:
  606. case spv::Op::OpIAddCarry:
  607. case spv::Op::OpUMulExtended:
  608. case spv::Op::OpSMulExtended:
  609. case spv::Op::OpBitwiseOr:
  610. case spv::Op::OpBitwiseXor:
  611. case spv::Op::OpBitwiseAnd:
  612. case spv::Op::OpOrdered:
  613. case spv::Op::OpUnordered:
  614. case spv::Op::OpLogicalEqual:
  615. case spv::Op::OpLogicalNotEqual:
  616. case spv::Op::OpLogicalOr:
  617. case spv::Op::OpLogicalAnd:
  618. case spv::Op::OpIEqual:
  619. case spv::Op::OpINotEqual:
  620. case spv::Op::OpFOrdEqual:
  621. case spv::Op::OpFUnordEqual:
  622. case spv::Op::OpFOrdNotEqual:
  623. case spv::Op::OpFUnordNotEqual:
  624. return true;
  625. default:
  626. return false;
  627. }
  628. }
  629. bool spvOpcodeIsLinearAlgebra(spv::Op opcode) {
  630. switch (opcode) {
  631. case spv::Op::OpTranspose:
  632. case spv::Op::OpVectorTimesScalar:
  633. case spv::Op::OpMatrixTimesScalar:
  634. case spv::Op::OpVectorTimesMatrix:
  635. case spv::Op::OpMatrixTimesVector:
  636. case spv::Op::OpMatrixTimesMatrix:
  637. case spv::Op::OpOuterProduct:
  638. case spv::Op::OpDot:
  639. return true;
  640. default:
  641. return false;
  642. }
  643. }
  644. bool spvOpcodeIsImageSample(const spv::Op opcode) {
  645. switch (opcode) {
  646. case spv::Op::OpImageSampleImplicitLod:
  647. case spv::Op::OpImageSampleExplicitLod:
  648. case spv::Op::OpImageSampleDrefImplicitLod:
  649. case spv::Op::OpImageSampleDrefExplicitLod:
  650. case spv::Op::OpImageSampleProjImplicitLod:
  651. case spv::Op::OpImageSampleProjExplicitLod:
  652. case spv::Op::OpImageSampleProjDrefImplicitLod:
  653. case spv::Op::OpImageSampleProjDrefExplicitLod:
  654. case spv::Op::OpImageSparseSampleImplicitLod:
  655. case spv::Op::OpImageSparseSampleExplicitLod:
  656. case spv::Op::OpImageSparseSampleDrefImplicitLod:
  657. case spv::Op::OpImageSparseSampleDrefExplicitLod:
  658. return true;
  659. default:
  660. return false;
  661. }
  662. }
  663. std::vector<uint32_t> spvOpcodeMemorySemanticsOperandIndices(spv::Op opcode) {
  664. switch (opcode) {
  665. case spv::Op::OpMemoryBarrier:
  666. return {1};
  667. case spv::Op::OpAtomicStore:
  668. case spv::Op::OpControlBarrier:
  669. case spv::Op::OpAtomicFlagClear:
  670. case spv::Op::OpMemoryNamedBarrier:
  671. return {2};
  672. case spv::Op::OpAtomicLoad:
  673. case spv::Op::OpAtomicExchange:
  674. case spv::Op::OpAtomicIIncrement:
  675. case spv::Op::OpAtomicIDecrement:
  676. case spv::Op::OpAtomicIAdd:
  677. case spv::Op::OpAtomicFAddEXT:
  678. case spv::Op::OpAtomicISub:
  679. case spv::Op::OpAtomicSMin:
  680. case spv::Op::OpAtomicUMin:
  681. case spv::Op::OpAtomicSMax:
  682. case spv::Op::OpAtomicUMax:
  683. case spv::Op::OpAtomicAnd:
  684. case spv::Op::OpAtomicOr:
  685. case spv::Op::OpAtomicXor:
  686. case spv::Op::OpAtomicFlagTestAndSet:
  687. return {4};
  688. case spv::Op::OpAtomicCompareExchange:
  689. case spv::Op::OpAtomicCompareExchangeWeak:
  690. return {4, 5};
  691. default:
  692. return {};
  693. }
  694. }
  695. bool spvOpcodeIsAccessChain(spv::Op opcode) {
  696. switch (opcode) {
  697. case spv::Op::OpAccessChain:
  698. case spv::Op::OpInBoundsAccessChain:
  699. case spv::Op::OpPtrAccessChain:
  700. case spv::Op::OpInBoundsPtrAccessChain:
  701. return true;
  702. default:
  703. return false;
  704. }
  705. }
  706. bool spvOpcodeIsBit(spv::Op opcode) {
  707. switch (opcode) {
  708. case spv::Op::OpShiftRightLogical:
  709. case spv::Op::OpShiftRightArithmetic:
  710. case spv::Op::OpShiftLeftLogical:
  711. case spv::Op::OpBitwiseOr:
  712. case spv::Op::OpBitwiseXor:
  713. case spv::Op::OpBitwiseAnd:
  714. case spv::Op::OpNot:
  715. case spv::Op::OpBitReverse:
  716. case spv::Op::OpBitCount:
  717. return true;
  718. default:
  719. return false;
  720. }
  721. }