GlslangToSpv.cpp 378 KB

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  1. //
  2. // Copyright (C) 2014-2016 LunarG, Inc.
  3. // Copyright (C) 2015-2020 Google, Inc.
  4. // Copyright (C) 2017 ARM Limited.
  5. // Modifications Copyright (C) 2020 Advanced Micro Devices, Inc. All rights reserved.
  6. //
  7. // All rights reserved.
  8. //
  9. // Redistribution and use in source and binary forms, with or without
  10. // modification, are permitted provided that the following conditions
  11. // are met:
  12. //
  13. // Redistributions of source code must retain the above copyright
  14. // notice, this list of conditions and the following disclaimer.
  15. //
  16. // Redistributions in binary form must reproduce the above
  17. // copyright notice, this list of conditions and the following
  18. // disclaimer in the documentation and/or other materials provided
  19. // with the distribution.
  20. //
  21. // Neither the name of 3Dlabs Inc. Ltd. nor the names of its
  22. // contributors may be used to endorse or promote products derived
  23. // from this software without specific prior written permission.
  24. //
  25. // THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
  26. // "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
  27. // LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS
  28. // FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE
  29. // COPYRIGHT HOLDERS OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT,
  30. // INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
  31. // BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
  32. // LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
  33. // CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
  34. // LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN
  35. // ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
  36. // POSSIBILITY OF SUCH DAMAGE.
  37. //
  38. // Visit the nodes in the glslang intermediate tree representation to
  39. // translate them to SPIR-V.
  40. //
  41. #include "spirv.hpp"
  42. #include "GlslangToSpv.h"
  43. #include "SpvBuilder.h"
  44. namespace spv {
  45. #include "GLSL.std.450.h"
  46. #include "GLSL.ext.KHR.h"
  47. #include "GLSL.ext.EXT.h"
  48. #include "GLSL.ext.AMD.h"
  49. #include "GLSL.ext.NV.h"
  50. #include "NonSemanticDebugPrintf.h"
  51. }
  52. // Glslang includes
  53. #include "../glslang/MachineIndependent/localintermediate.h"
  54. #include "../glslang/MachineIndependent/SymbolTable.h"
  55. #include "../glslang/Include/Common.h"
  56. // Build-time generated includes
  57. #include "glslang/build_info.h"
  58. #include <fstream>
  59. #include <iomanip>
  60. #include <list>
  61. #include <map>
  62. #include <stack>
  63. #include <string>
  64. #include <vector>
  65. namespace {
  66. namespace {
  67. class SpecConstantOpModeGuard {
  68. public:
  69. SpecConstantOpModeGuard(spv::Builder* builder)
  70. : builder_(builder) {
  71. previous_flag_ = builder->isInSpecConstCodeGenMode();
  72. }
  73. ~SpecConstantOpModeGuard() {
  74. previous_flag_ ? builder_->setToSpecConstCodeGenMode()
  75. : builder_->setToNormalCodeGenMode();
  76. }
  77. void turnOnSpecConstantOpMode() {
  78. builder_->setToSpecConstCodeGenMode();
  79. }
  80. private:
  81. spv::Builder* builder_;
  82. bool previous_flag_;
  83. };
  84. struct OpDecorations {
  85. public:
  86. OpDecorations(spv::Decoration precision, spv::Decoration noContraction, spv::Decoration nonUniform) :
  87. precision(precision)
  88. #ifndef GLSLANG_WEB
  89. ,
  90. noContraction(noContraction),
  91. nonUniform(nonUniform)
  92. #endif
  93. { }
  94. spv::Decoration precision;
  95. #ifdef GLSLANG_WEB
  96. void addNoContraction(spv::Builder&, spv::Id) const { }
  97. void addNonUniform(spv::Builder&, spv::Id) const { }
  98. #else
  99. void addNoContraction(spv::Builder& builder, spv::Id t) { builder.addDecoration(t, noContraction); }
  100. void addNonUniform(spv::Builder& builder, spv::Id t) { builder.addDecoration(t, nonUniform); }
  101. protected:
  102. spv::Decoration noContraction;
  103. spv::Decoration nonUniform;
  104. #endif
  105. };
  106. } // namespace
  107. //
  108. // The main holder of information for translating glslang to SPIR-V.
  109. //
  110. // Derives from the AST walking base class.
  111. //
  112. class TGlslangToSpvTraverser : public glslang::TIntermTraverser {
  113. public:
  114. TGlslangToSpvTraverser(unsigned int spvVersion, const glslang::TIntermediate*, spv::SpvBuildLogger* logger,
  115. glslang::SpvOptions& options);
  116. virtual ~TGlslangToSpvTraverser() { }
  117. bool visitAggregate(glslang::TVisit, glslang::TIntermAggregate*);
  118. bool visitBinary(glslang::TVisit, glslang::TIntermBinary*);
  119. void visitConstantUnion(glslang::TIntermConstantUnion*);
  120. bool visitSelection(glslang::TVisit, glslang::TIntermSelection*);
  121. bool visitSwitch(glslang::TVisit, glslang::TIntermSwitch*);
  122. void visitSymbol(glslang::TIntermSymbol* symbol);
  123. bool visitUnary(glslang::TVisit, glslang::TIntermUnary*);
  124. bool visitLoop(glslang::TVisit, glslang::TIntermLoop*);
  125. bool visitBranch(glslang::TVisit visit, glslang::TIntermBranch*);
  126. void finishSpv();
  127. void dumpSpv(std::vector<unsigned int>& out);
  128. protected:
  129. TGlslangToSpvTraverser(TGlslangToSpvTraverser&);
  130. TGlslangToSpvTraverser& operator=(TGlslangToSpvTraverser&);
  131. spv::Decoration TranslateInterpolationDecoration(const glslang::TQualifier& qualifier);
  132. spv::Decoration TranslateAuxiliaryStorageDecoration(const glslang::TQualifier& qualifier);
  133. spv::Decoration TranslateNonUniformDecoration(const glslang::TQualifier& qualifier);
  134. spv::Decoration TranslateNonUniformDecoration(const spv::Builder::AccessChain::CoherentFlags& coherentFlags);
  135. spv::Builder::AccessChain::CoherentFlags TranslateCoherent(const glslang::TType& type);
  136. spv::MemoryAccessMask TranslateMemoryAccess(const spv::Builder::AccessChain::CoherentFlags &coherentFlags);
  137. spv::ImageOperandsMask TranslateImageOperands(const spv::Builder::AccessChain::CoherentFlags &coherentFlags);
  138. spv::Scope TranslateMemoryScope(const spv::Builder::AccessChain::CoherentFlags &coherentFlags);
  139. spv::BuiltIn TranslateBuiltInDecoration(glslang::TBuiltInVariable, bool memberDeclaration);
  140. spv::ImageFormat TranslateImageFormat(const glslang::TType& type);
  141. spv::SelectionControlMask TranslateSelectionControl(const glslang::TIntermSelection&) const;
  142. spv::SelectionControlMask TranslateSwitchControl(const glslang::TIntermSwitch&) const;
  143. spv::LoopControlMask TranslateLoopControl(const glslang::TIntermLoop&, std::vector<unsigned int>& operands) const;
  144. spv::StorageClass TranslateStorageClass(const glslang::TType&);
  145. void addIndirectionIndexCapabilities(const glslang::TType& baseType, const glslang::TType& indexType);
  146. spv::Id createSpvVariable(const glslang::TIntermSymbol*, spv::Id forcedType);
  147. spv::Id getSampledType(const glslang::TSampler&);
  148. spv::Id getInvertedSwizzleType(const glslang::TIntermTyped&);
  149. spv::Id createInvertedSwizzle(spv::Decoration precision, const glslang::TIntermTyped&, spv::Id parentResult);
  150. void convertSwizzle(const glslang::TIntermAggregate&, std::vector<unsigned>& swizzle);
  151. spv::Id convertGlslangToSpvType(const glslang::TType& type, bool forwardReferenceOnly = false);
  152. spv::Id convertGlslangToSpvType(const glslang::TType& type, glslang::TLayoutPacking, const glslang::TQualifier&,
  153. bool lastBufferBlockMember, bool forwardReferenceOnly = false);
  154. bool filterMember(const glslang::TType& member);
  155. spv::Id convertGlslangStructToSpvType(const glslang::TType&, const glslang::TTypeList* glslangStruct,
  156. glslang::TLayoutPacking, const glslang::TQualifier&);
  157. void decorateStructType(const glslang::TType&, const glslang::TTypeList* glslangStruct, glslang::TLayoutPacking,
  158. const glslang::TQualifier&, spv::Id);
  159. spv::Id makeArraySizeId(const glslang::TArraySizes&, int dim);
  160. spv::Id accessChainLoad(const glslang::TType& type);
  161. void accessChainStore(const glslang::TType& type, spv::Id rvalue);
  162. void multiTypeStore(const glslang::TType&, spv::Id rValue);
  163. glslang::TLayoutPacking getExplicitLayout(const glslang::TType& type) const;
  164. int getArrayStride(const glslang::TType& arrayType, glslang::TLayoutPacking, glslang::TLayoutMatrix);
  165. int getMatrixStride(const glslang::TType& matrixType, glslang::TLayoutPacking, glslang::TLayoutMatrix);
  166. void updateMemberOffset(const glslang::TType& structType, const glslang::TType& memberType, int& currentOffset,
  167. int& nextOffset, glslang::TLayoutPacking, glslang::TLayoutMatrix);
  168. void declareUseOfStructMember(const glslang::TTypeList& members, int glslangMember);
  169. bool isShaderEntryPoint(const glslang::TIntermAggregate* node);
  170. bool writableParam(glslang::TStorageQualifier) const;
  171. bool originalParam(glslang::TStorageQualifier, const glslang::TType&, bool implicitThisParam);
  172. void makeFunctions(const glslang::TIntermSequence&);
  173. void makeGlobalInitializers(const glslang::TIntermSequence&);
  174. void collectRayTracingLinkerObjects();
  175. void visitFunctions(const glslang::TIntermSequence&);
  176. void handleFunctionEntry(const glslang::TIntermAggregate* node);
  177. void translateArguments(const glslang::TIntermAggregate& node, std::vector<spv::Id>& arguments,
  178. spv::Builder::AccessChain::CoherentFlags &lvalueCoherentFlags);
  179. void translateArguments(glslang::TIntermUnary& node, std::vector<spv::Id>& arguments);
  180. spv::Id createImageTextureFunctionCall(glslang::TIntermOperator* node);
  181. spv::Id handleUserFunctionCall(const glslang::TIntermAggregate*);
  182. spv::Id createBinaryOperation(glslang::TOperator op, OpDecorations&, spv::Id typeId, spv::Id left, spv::Id right,
  183. glslang::TBasicType typeProxy, bool reduceComparison = true);
  184. spv::Id createBinaryMatrixOperation(spv::Op, OpDecorations&, spv::Id typeId, spv::Id left, spv::Id right);
  185. spv::Id createUnaryOperation(glslang::TOperator op, OpDecorations&, spv::Id typeId, spv::Id operand,
  186. glslang::TBasicType typeProxy,
  187. const spv::Builder::AccessChain::CoherentFlags &lvalueCoherentFlags);
  188. spv::Id createUnaryMatrixOperation(spv::Op op, OpDecorations&, spv::Id typeId, spv::Id operand,
  189. glslang::TBasicType typeProxy);
  190. spv::Id createConversion(glslang::TOperator op, OpDecorations&, spv::Id destTypeId, spv::Id operand,
  191. glslang::TBasicType typeProxy);
  192. spv::Id createIntWidthConversion(glslang::TOperator op, spv::Id operand, int vectorSize);
  193. spv::Id makeSmearedConstant(spv::Id constant, int vectorSize);
  194. spv::Id createAtomicOperation(glslang::TOperator op, spv::Decoration precision, spv::Id typeId,
  195. std::vector<spv::Id>& operands, glslang::TBasicType typeProxy,
  196. const spv::Builder::AccessChain::CoherentFlags &lvalueCoherentFlags);
  197. spv::Id createInvocationsOperation(glslang::TOperator op, spv::Id typeId, std::vector<spv::Id>& operands,
  198. glslang::TBasicType typeProxy);
  199. spv::Id CreateInvocationsVectorOperation(spv::Op op, spv::GroupOperation groupOperation,
  200. spv::Id typeId, std::vector<spv::Id>& operands);
  201. spv::Id createSubgroupOperation(glslang::TOperator op, spv::Id typeId, std::vector<spv::Id>& operands,
  202. glslang::TBasicType typeProxy);
  203. spv::Id createMiscOperation(glslang::TOperator op, spv::Decoration precision, spv::Id typeId,
  204. std::vector<spv::Id>& operands, glslang::TBasicType typeProxy);
  205. spv::Id createNoArgOperation(glslang::TOperator op, spv::Decoration precision, spv::Id typeId);
  206. spv::Id getSymbolId(const glslang::TIntermSymbol* node);
  207. void addMeshNVDecoration(spv::Id id, int member, const glslang::TQualifier & qualifier);
  208. spv::Id createSpvConstant(const glslang::TIntermTyped&);
  209. spv::Id createSpvConstantFromConstUnionArray(const glslang::TType& type, const glslang::TConstUnionArray&,
  210. int& nextConst, bool specConstant);
  211. bool isTrivialLeaf(const glslang::TIntermTyped* node);
  212. bool isTrivial(const glslang::TIntermTyped* node);
  213. spv::Id createShortCircuit(glslang::TOperator, glslang::TIntermTyped& left, glslang::TIntermTyped& right);
  214. spv::Id getExtBuiltins(const char* name);
  215. std::pair<spv::Id, spv::Id> getForcedType(glslang::TBuiltInVariable builtIn, const glslang::TType&);
  216. spv::Id translateForcedType(spv::Id object);
  217. spv::Id createCompositeConstruct(spv::Id typeId, std::vector<spv::Id> constituents);
  218. glslang::SpvOptions& options;
  219. spv::Function* shaderEntry;
  220. spv::Function* currentFunction;
  221. spv::Instruction* entryPoint;
  222. int sequenceDepth;
  223. spv::SpvBuildLogger* logger;
  224. // There is a 1:1 mapping between a spv builder and a module; this is thread safe
  225. spv::Builder builder;
  226. bool inEntryPoint;
  227. bool entryPointTerminated;
  228. bool linkageOnly; // true when visiting the set of objects in the AST present only for
  229. // establishing interface, whether or not they were statically used
  230. std::set<spv::Id> iOSet; // all input/output variables from either static use or declaration of interface
  231. const glslang::TIntermediate* glslangIntermediate;
  232. bool nanMinMaxClamp; // true if use NMin/NMax/NClamp instead of FMin/FMax/FClamp
  233. spv::Id stdBuiltins;
  234. spv::Id nonSemanticDebugPrintf;
  235. std::unordered_map<const char*, spv::Id> extBuiltinMap;
  236. std::unordered_map<int, spv::Id> symbolValues;
  237. std::unordered_set<int> rValueParameters; // set of formal function parameters passed as rValues,
  238. // rather than a pointer
  239. std::unordered_map<std::string, spv::Function*> functionMap;
  240. std::unordered_map<const glslang::TTypeList*, spv::Id> structMap[glslang::ElpCount][glslang::ElmCount];
  241. // for mapping glslang block indices to spv indices (e.g., due to hidden members):
  242. std::unordered_map<int, std::vector<int>> memberRemapper;
  243. // for mapping glslang symbol struct to symbol Id
  244. std::unordered_map<const glslang::TTypeList*, int> glslangTypeToIdMap;
  245. std::stack<bool> breakForLoop; // false means break for switch
  246. std::unordered_map<std::string, const glslang::TIntermSymbol*> counterOriginator;
  247. // Map pointee types for EbtReference to their forward pointers
  248. std::map<const glslang::TType *, spv::Id> forwardPointers;
  249. // Type forcing, for when SPIR-V wants a different type than the AST,
  250. // requiring local translation to and from SPIR-V type on every access.
  251. // Maps <builtin-variable-id -> AST-required-type-id>
  252. std::unordered_map<spv::Id, spv::Id> forceType;
  253. // Used later for generating OpTraceKHR/OpExecuteCallableKHR
  254. std::unordered_map<unsigned int, glslang::TIntermSymbol *> locationToSymbol[2];
  255. };
  256. //
  257. // Helper functions for translating glslang representations to SPIR-V enumerants.
  258. //
  259. // Translate glslang profile to SPIR-V source language.
  260. spv::SourceLanguage TranslateSourceLanguage(glslang::EShSource source, EProfile profile)
  261. {
  262. #ifdef GLSLANG_WEB
  263. return spv::SourceLanguageESSL;
  264. #elif defined(GLSLANG_ANGLE)
  265. return spv::SourceLanguageGLSL;
  266. #endif
  267. switch (source) {
  268. case glslang::EShSourceGlsl:
  269. switch (profile) {
  270. case ENoProfile:
  271. case ECoreProfile:
  272. case ECompatibilityProfile:
  273. return spv::SourceLanguageGLSL;
  274. case EEsProfile:
  275. return spv::SourceLanguageESSL;
  276. default:
  277. return spv::SourceLanguageUnknown;
  278. }
  279. case glslang::EShSourceHlsl:
  280. return spv::SourceLanguageHLSL;
  281. default:
  282. return spv::SourceLanguageUnknown;
  283. }
  284. }
  285. // Translate glslang language (stage) to SPIR-V execution model.
  286. spv::ExecutionModel TranslateExecutionModel(EShLanguage stage)
  287. {
  288. switch (stage) {
  289. case EShLangVertex: return spv::ExecutionModelVertex;
  290. case EShLangFragment: return spv::ExecutionModelFragment;
  291. case EShLangCompute: return spv::ExecutionModelGLCompute;
  292. #ifndef GLSLANG_WEB
  293. case EShLangTessControl: return spv::ExecutionModelTessellationControl;
  294. case EShLangTessEvaluation: return spv::ExecutionModelTessellationEvaluation;
  295. case EShLangGeometry: return spv::ExecutionModelGeometry;
  296. case EShLangRayGen: return spv::ExecutionModelRayGenerationKHR;
  297. case EShLangIntersect: return spv::ExecutionModelIntersectionKHR;
  298. case EShLangAnyHit: return spv::ExecutionModelAnyHitKHR;
  299. case EShLangClosestHit: return spv::ExecutionModelClosestHitKHR;
  300. case EShLangMiss: return spv::ExecutionModelMissKHR;
  301. case EShLangCallable: return spv::ExecutionModelCallableKHR;
  302. case EShLangTaskNV: return spv::ExecutionModelTaskNV;
  303. case EShLangMeshNV: return spv::ExecutionModelMeshNV;
  304. #endif
  305. default:
  306. assert(0);
  307. return spv::ExecutionModelFragment;
  308. }
  309. }
  310. // Translate glslang sampler type to SPIR-V dimensionality.
  311. spv::Dim TranslateDimensionality(const glslang::TSampler& sampler)
  312. {
  313. switch (sampler.dim) {
  314. case glslang::Esd1D: return spv::Dim1D;
  315. case glslang::Esd2D: return spv::Dim2D;
  316. case glslang::Esd3D: return spv::Dim3D;
  317. case glslang::EsdCube: return spv::DimCube;
  318. case glslang::EsdRect: return spv::DimRect;
  319. case glslang::EsdBuffer: return spv::DimBuffer;
  320. case glslang::EsdSubpass: return spv::DimSubpassData;
  321. default:
  322. assert(0);
  323. return spv::Dim2D;
  324. }
  325. }
  326. // Translate glslang precision to SPIR-V precision decorations.
  327. spv::Decoration TranslatePrecisionDecoration(glslang::TPrecisionQualifier glslangPrecision)
  328. {
  329. switch (glslangPrecision) {
  330. case glslang::EpqLow: return spv::DecorationRelaxedPrecision;
  331. case glslang::EpqMedium: return spv::DecorationRelaxedPrecision;
  332. default:
  333. return spv::NoPrecision;
  334. }
  335. }
  336. // Translate glslang type to SPIR-V precision decorations.
  337. spv::Decoration TranslatePrecisionDecoration(const glslang::TType& type)
  338. {
  339. return TranslatePrecisionDecoration(type.getQualifier().precision);
  340. }
  341. // Translate glslang type to SPIR-V block decorations.
  342. spv::Decoration TranslateBlockDecoration(const glslang::TType& type, bool useStorageBuffer)
  343. {
  344. if (type.getBasicType() == glslang::EbtBlock) {
  345. switch (type.getQualifier().storage) {
  346. case glslang::EvqUniform: return spv::DecorationBlock;
  347. case glslang::EvqBuffer: return useStorageBuffer ? spv::DecorationBlock : spv::DecorationBufferBlock;
  348. case glslang::EvqVaryingIn: return spv::DecorationBlock;
  349. case glslang::EvqVaryingOut: return spv::DecorationBlock;
  350. case glslang::EvqShared: return spv::DecorationBlock;
  351. #ifndef GLSLANG_WEB
  352. case glslang::EvqPayload: return spv::DecorationBlock;
  353. case glslang::EvqPayloadIn: return spv::DecorationBlock;
  354. case glslang::EvqHitAttr: return spv::DecorationBlock;
  355. case glslang::EvqCallableData: return spv::DecorationBlock;
  356. case glslang::EvqCallableDataIn: return spv::DecorationBlock;
  357. #endif
  358. default:
  359. assert(0);
  360. break;
  361. }
  362. }
  363. return spv::DecorationMax;
  364. }
  365. // Translate glslang type to SPIR-V memory decorations.
  366. void TranslateMemoryDecoration(const glslang::TQualifier& qualifier, std::vector<spv::Decoration>& memory,
  367. bool useVulkanMemoryModel)
  368. {
  369. if (!useVulkanMemoryModel) {
  370. if (qualifier.isCoherent())
  371. memory.push_back(spv::DecorationCoherent);
  372. if (qualifier.isVolatile()) {
  373. memory.push_back(spv::DecorationVolatile);
  374. memory.push_back(spv::DecorationCoherent);
  375. }
  376. }
  377. if (qualifier.isRestrict())
  378. memory.push_back(spv::DecorationRestrict);
  379. if (qualifier.isReadOnly())
  380. memory.push_back(spv::DecorationNonWritable);
  381. if (qualifier.isWriteOnly())
  382. memory.push_back(spv::DecorationNonReadable);
  383. }
  384. // Translate glslang type to SPIR-V layout decorations.
  385. spv::Decoration TranslateLayoutDecoration(const glslang::TType& type, glslang::TLayoutMatrix matrixLayout)
  386. {
  387. if (type.isMatrix()) {
  388. switch (matrixLayout) {
  389. case glslang::ElmRowMajor:
  390. return spv::DecorationRowMajor;
  391. case glslang::ElmColumnMajor:
  392. return spv::DecorationColMajor;
  393. default:
  394. // opaque layouts don't need a majorness
  395. return spv::DecorationMax;
  396. }
  397. } else {
  398. switch (type.getBasicType()) {
  399. default:
  400. return spv::DecorationMax;
  401. break;
  402. case glslang::EbtBlock:
  403. switch (type.getQualifier().storage) {
  404. case glslang::EvqShared:
  405. case glslang::EvqUniform:
  406. case glslang::EvqBuffer:
  407. switch (type.getQualifier().layoutPacking) {
  408. case glslang::ElpShared: return spv::DecorationGLSLShared;
  409. case glslang::ElpPacked: return spv::DecorationGLSLPacked;
  410. default:
  411. return spv::DecorationMax;
  412. }
  413. case glslang::EvqVaryingIn:
  414. case glslang::EvqVaryingOut:
  415. if (type.getQualifier().isTaskMemory()) {
  416. switch (type.getQualifier().layoutPacking) {
  417. case glslang::ElpShared: return spv::DecorationGLSLShared;
  418. case glslang::ElpPacked: return spv::DecorationGLSLPacked;
  419. default: break;
  420. }
  421. } else {
  422. assert(type.getQualifier().layoutPacking == glslang::ElpNone);
  423. }
  424. return spv::DecorationMax;
  425. #ifndef GLSLANG_WEB
  426. case glslang::EvqPayload:
  427. case glslang::EvqPayloadIn:
  428. case glslang::EvqHitAttr:
  429. case glslang::EvqCallableData:
  430. case glslang::EvqCallableDataIn:
  431. return spv::DecorationMax;
  432. #endif
  433. default:
  434. assert(0);
  435. return spv::DecorationMax;
  436. }
  437. }
  438. }
  439. }
  440. // Translate glslang type to SPIR-V interpolation decorations.
  441. // Returns spv::DecorationMax when no decoration
  442. // should be applied.
  443. spv::Decoration TGlslangToSpvTraverser::TranslateInterpolationDecoration(const glslang::TQualifier& qualifier)
  444. {
  445. if (qualifier.smooth)
  446. // Smooth decoration doesn't exist in SPIR-V 1.0
  447. return spv::DecorationMax;
  448. else if (qualifier.isNonPerspective())
  449. return spv::DecorationNoPerspective;
  450. else if (qualifier.flat)
  451. return spv::DecorationFlat;
  452. else if (qualifier.isExplicitInterpolation()) {
  453. builder.addExtension(spv::E_SPV_AMD_shader_explicit_vertex_parameter);
  454. return spv::DecorationExplicitInterpAMD;
  455. }
  456. else
  457. return spv::DecorationMax;
  458. }
  459. // Translate glslang type to SPIR-V auxiliary storage decorations.
  460. // Returns spv::DecorationMax when no decoration
  461. // should be applied.
  462. spv::Decoration TGlslangToSpvTraverser::TranslateAuxiliaryStorageDecoration(const glslang::TQualifier& qualifier)
  463. {
  464. if (qualifier.centroid)
  465. return spv::DecorationCentroid;
  466. #ifndef GLSLANG_WEB
  467. else if (qualifier.patch)
  468. return spv::DecorationPatch;
  469. else if (qualifier.sample) {
  470. builder.addCapability(spv::CapabilitySampleRateShading);
  471. return spv::DecorationSample;
  472. }
  473. #endif
  474. return spv::DecorationMax;
  475. }
  476. // If glslang type is invariant, return SPIR-V invariant decoration.
  477. spv::Decoration TranslateInvariantDecoration(const glslang::TQualifier& qualifier)
  478. {
  479. if (qualifier.invariant)
  480. return spv::DecorationInvariant;
  481. else
  482. return spv::DecorationMax;
  483. }
  484. // If glslang type is noContraction, return SPIR-V NoContraction decoration.
  485. spv::Decoration TranslateNoContractionDecoration(const glslang::TQualifier& qualifier)
  486. {
  487. #ifndef GLSLANG_WEB
  488. if (qualifier.isNoContraction())
  489. return spv::DecorationNoContraction;
  490. else
  491. #endif
  492. return spv::DecorationMax;
  493. }
  494. // If glslang type is nonUniform, return SPIR-V NonUniform decoration.
  495. spv::Decoration TGlslangToSpvTraverser::TranslateNonUniformDecoration(const glslang::TQualifier& qualifier)
  496. {
  497. #ifndef GLSLANG_WEB
  498. if (qualifier.isNonUniform()) {
  499. builder.addIncorporatedExtension("SPV_EXT_descriptor_indexing", spv::Spv_1_5);
  500. builder.addCapability(spv::CapabilityShaderNonUniformEXT);
  501. return spv::DecorationNonUniformEXT;
  502. } else
  503. #endif
  504. return spv::DecorationMax;
  505. }
  506. // If lvalue flags contains nonUniform, return SPIR-V NonUniform decoration.
  507. spv::Decoration TGlslangToSpvTraverser::TranslateNonUniformDecoration(
  508. const spv::Builder::AccessChain::CoherentFlags& coherentFlags)
  509. {
  510. #ifndef GLSLANG_WEB
  511. if (coherentFlags.isNonUniform()) {
  512. builder.addIncorporatedExtension("SPV_EXT_descriptor_indexing", spv::Spv_1_5);
  513. builder.addCapability(spv::CapabilityShaderNonUniformEXT);
  514. return spv::DecorationNonUniformEXT;
  515. } else
  516. #endif
  517. return spv::DecorationMax;
  518. }
  519. spv::MemoryAccessMask TGlslangToSpvTraverser::TranslateMemoryAccess(
  520. const spv::Builder::AccessChain::CoherentFlags &coherentFlags)
  521. {
  522. spv::MemoryAccessMask mask = spv::MemoryAccessMaskNone;
  523. #ifndef GLSLANG_WEB
  524. if (!glslangIntermediate->usingVulkanMemoryModel() || coherentFlags.isImage)
  525. return mask;
  526. if (coherentFlags.isVolatile() || coherentFlags.anyCoherent()) {
  527. mask = mask | spv::MemoryAccessMakePointerAvailableKHRMask |
  528. spv::MemoryAccessMakePointerVisibleKHRMask;
  529. }
  530. if (coherentFlags.nonprivate) {
  531. mask = mask | spv::MemoryAccessNonPrivatePointerKHRMask;
  532. }
  533. if (coherentFlags.volatil) {
  534. mask = mask | spv::MemoryAccessVolatileMask;
  535. }
  536. if (mask != spv::MemoryAccessMaskNone) {
  537. builder.addCapability(spv::CapabilityVulkanMemoryModelKHR);
  538. }
  539. #endif
  540. return mask;
  541. }
  542. spv::ImageOperandsMask TGlslangToSpvTraverser::TranslateImageOperands(
  543. const spv::Builder::AccessChain::CoherentFlags &coherentFlags)
  544. {
  545. spv::ImageOperandsMask mask = spv::ImageOperandsMaskNone;
  546. #ifndef GLSLANG_WEB
  547. if (!glslangIntermediate->usingVulkanMemoryModel())
  548. return mask;
  549. if (coherentFlags.volatil ||
  550. coherentFlags.anyCoherent()) {
  551. mask = mask | spv::ImageOperandsMakeTexelAvailableKHRMask |
  552. spv::ImageOperandsMakeTexelVisibleKHRMask;
  553. }
  554. if (coherentFlags.nonprivate) {
  555. mask = mask | spv::ImageOperandsNonPrivateTexelKHRMask;
  556. }
  557. if (coherentFlags.volatil) {
  558. mask = mask | spv::ImageOperandsVolatileTexelKHRMask;
  559. }
  560. if (mask != spv::ImageOperandsMaskNone) {
  561. builder.addCapability(spv::CapabilityVulkanMemoryModelKHR);
  562. }
  563. #endif
  564. return mask;
  565. }
  566. spv::Builder::AccessChain::CoherentFlags TGlslangToSpvTraverser::TranslateCoherent(const glslang::TType& type)
  567. {
  568. spv::Builder::AccessChain::CoherentFlags flags = {};
  569. #ifndef GLSLANG_WEB
  570. flags.coherent = type.getQualifier().coherent;
  571. flags.devicecoherent = type.getQualifier().devicecoherent;
  572. flags.queuefamilycoherent = type.getQualifier().queuefamilycoherent;
  573. // shared variables are implicitly workgroupcoherent in GLSL.
  574. flags.workgroupcoherent = type.getQualifier().workgroupcoherent ||
  575. type.getQualifier().storage == glslang::EvqShared;
  576. flags.subgroupcoherent = type.getQualifier().subgroupcoherent;
  577. flags.shadercallcoherent = type.getQualifier().shadercallcoherent;
  578. flags.volatil = type.getQualifier().volatil;
  579. // *coherent variables are implicitly nonprivate in GLSL
  580. flags.nonprivate = type.getQualifier().nonprivate ||
  581. flags.anyCoherent() ||
  582. flags.volatil;
  583. flags.isImage = type.getBasicType() == glslang::EbtSampler;
  584. #endif
  585. flags.nonUniform = type.getQualifier().nonUniform;
  586. return flags;
  587. }
  588. spv::Scope TGlslangToSpvTraverser::TranslateMemoryScope(
  589. const spv::Builder::AccessChain::CoherentFlags &coherentFlags)
  590. {
  591. spv::Scope scope = spv::ScopeMax;
  592. #ifndef GLSLANG_WEB
  593. if (coherentFlags.volatil || coherentFlags.coherent) {
  594. // coherent defaults to Device scope in the old model, QueueFamilyKHR scope in the new model
  595. scope = glslangIntermediate->usingVulkanMemoryModel() ? spv::ScopeQueueFamilyKHR : spv::ScopeDevice;
  596. } else if (coherentFlags.devicecoherent) {
  597. scope = spv::ScopeDevice;
  598. } else if (coherentFlags.queuefamilycoherent) {
  599. scope = spv::ScopeQueueFamilyKHR;
  600. } else if (coherentFlags.workgroupcoherent) {
  601. scope = spv::ScopeWorkgroup;
  602. } else if (coherentFlags.subgroupcoherent) {
  603. scope = spv::ScopeSubgroup;
  604. } else if (coherentFlags.shadercallcoherent) {
  605. scope = spv::ScopeShaderCallKHR;
  606. }
  607. if (glslangIntermediate->usingVulkanMemoryModel() && scope == spv::ScopeDevice) {
  608. builder.addCapability(spv::CapabilityVulkanMemoryModelDeviceScopeKHR);
  609. }
  610. #endif
  611. return scope;
  612. }
  613. // Translate a glslang built-in variable to a SPIR-V built in decoration. Also generate
  614. // associated capabilities when required. For some built-in variables, a capability
  615. // is generated only when using the variable in an executable instruction, but not when
  616. // just declaring a struct member variable with it. This is true for PointSize,
  617. // ClipDistance, and CullDistance.
  618. spv::BuiltIn TGlslangToSpvTraverser::TranslateBuiltInDecoration(glslang::TBuiltInVariable builtIn,
  619. bool memberDeclaration)
  620. {
  621. switch (builtIn) {
  622. case glslang::EbvPointSize:
  623. #ifndef GLSLANG_WEB
  624. // Defer adding the capability until the built-in is actually used.
  625. if (! memberDeclaration) {
  626. switch (glslangIntermediate->getStage()) {
  627. case EShLangGeometry:
  628. builder.addCapability(spv::CapabilityGeometryPointSize);
  629. break;
  630. case EShLangTessControl:
  631. case EShLangTessEvaluation:
  632. builder.addCapability(spv::CapabilityTessellationPointSize);
  633. break;
  634. default:
  635. break;
  636. }
  637. }
  638. #endif
  639. return spv::BuiltInPointSize;
  640. case glslang::EbvPosition: return spv::BuiltInPosition;
  641. case glslang::EbvVertexId: return spv::BuiltInVertexId;
  642. case glslang::EbvInstanceId: return spv::BuiltInInstanceId;
  643. case glslang::EbvVertexIndex: return spv::BuiltInVertexIndex;
  644. case glslang::EbvInstanceIndex: return spv::BuiltInInstanceIndex;
  645. case glslang::EbvFragCoord: return spv::BuiltInFragCoord;
  646. case glslang::EbvPointCoord: return spv::BuiltInPointCoord;
  647. case glslang::EbvFace: return spv::BuiltInFrontFacing;
  648. case glslang::EbvFragDepth: return spv::BuiltInFragDepth;
  649. case glslang::EbvNumWorkGroups: return spv::BuiltInNumWorkgroups;
  650. case glslang::EbvWorkGroupSize: return spv::BuiltInWorkgroupSize;
  651. case glslang::EbvWorkGroupId: return spv::BuiltInWorkgroupId;
  652. case glslang::EbvLocalInvocationId: return spv::BuiltInLocalInvocationId;
  653. case glslang::EbvLocalInvocationIndex: return spv::BuiltInLocalInvocationIndex;
  654. case glslang::EbvGlobalInvocationId: return spv::BuiltInGlobalInvocationId;
  655. #ifndef GLSLANG_WEB
  656. // These *Distance capabilities logically belong here, but if the member is declared and
  657. // then never used, consumers of SPIR-V prefer the capability not be declared.
  658. // They are now generated when used, rather than here when declared.
  659. // Potentially, the specification should be more clear what the minimum
  660. // use needed is to trigger the capability.
  661. //
  662. case glslang::EbvClipDistance:
  663. if (!memberDeclaration)
  664. builder.addCapability(spv::CapabilityClipDistance);
  665. return spv::BuiltInClipDistance;
  666. case glslang::EbvCullDistance:
  667. if (!memberDeclaration)
  668. builder.addCapability(spv::CapabilityCullDistance);
  669. return spv::BuiltInCullDistance;
  670. case glslang::EbvViewportIndex:
  671. if (glslangIntermediate->getStage() == EShLangGeometry ||
  672. glslangIntermediate->getStage() == EShLangFragment) {
  673. builder.addCapability(spv::CapabilityMultiViewport);
  674. }
  675. if (glslangIntermediate->getStage() == EShLangVertex ||
  676. glslangIntermediate->getStage() == EShLangTessControl ||
  677. glslangIntermediate->getStage() == EShLangTessEvaluation) {
  678. if (builder.getSpvVersion() < spv::Spv_1_5) {
  679. builder.addIncorporatedExtension(spv::E_SPV_EXT_shader_viewport_index_layer, spv::Spv_1_5);
  680. builder.addCapability(spv::CapabilityShaderViewportIndexLayerEXT);
  681. }
  682. else
  683. builder.addCapability(spv::CapabilityShaderViewportIndex);
  684. }
  685. return spv::BuiltInViewportIndex;
  686. case glslang::EbvSampleId:
  687. builder.addCapability(spv::CapabilitySampleRateShading);
  688. return spv::BuiltInSampleId;
  689. case glslang::EbvSamplePosition:
  690. builder.addCapability(spv::CapabilitySampleRateShading);
  691. return spv::BuiltInSamplePosition;
  692. case glslang::EbvSampleMask:
  693. return spv::BuiltInSampleMask;
  694. case glslang::EbvLayer:
  695. if (glslangIntermediate->getStage() == EShLangMeshNV) {
  696. return spv::BuiltInLayer;
  697. }
  698. if (glslangIntermediate->getStage() == EShLangGeometry ||
  699. glslangIntermediate->getStage() == EShLangFragment) {
  700. builder.addCapability(spv::CapabilityGeometry);
  701. }
  702. if (glslangIntermediate->getStage() == EShLangVertex ||
  703. glslangIntermediate->getStage() == EShLangTessControl ||
  704. glslangIntermediate->getStage() == EShLangTessEvaluation) {
  705. if (builder.getSpvVersion() < spv::Spv_1_5) {
  706. builder.addIncorporatedExtension(spv::E_SPV_EXT_shader_viewport_index_layer, spv::Spv_1_5);
  707. builder.addCapability(spv::CapabilityShaderViewportIndexLayerEXT);
  708. } else
  709. builder.addCapability(spv::CapabilityShaderLayer);
  710. }
  711. return spv::BuiltInLayer;
  712. case glslang::EbvBaseVertex:
  713. builder.addIncorporatedExtension(spv::E_SPV_KHR_shader_draw_parameters, spv::Spv_1_3);
  714. builder.addCapability(spv::CapabilityDrawParameters);
  715. return spv::BuiltInBaseVertex;
  716. case glslang::EbvBaseInstance:
  717. builder.addIncorporatedExtension(spv::E_SPV_KHR_shader_draw_parameters, spv::Spv_1_3);
  718. builder.addCapability(spv::CapabilityDrawParameters);
  719. return spv::BuiltInBaseInstance;
  720. case glslang::EbvDrawId:
  721. builder.addIncorporatedExtension(spv::E_SPV_KHR_shader_draw_parameters, spv::Spv_1_3);
  722. builder.addCapability(spv::CapabilityDrawParameters);
  723. return spv::BuiltInDrawIndex;
  724. case glslang::EbvPrimitiveId:
  725. if (glslangIntermediate->getStage() == EShLangFragment)
  726. builder.addCapability(spv::CapabilityGeometry);
  727. return spv::BuiltInPrimitiveId;
  728. case glslang::EbvFragStencilRef:
  729. builder.addExtension(spv::E_SPV_EXT_shader_stencil_export);
  730. builder.addCapability(spv::CapabilityStencilExportEXT);
  731. return spv::BuiltInFragStencilRefEXT;
  732. case glslang::EbvShadingRateKHR:
  733. builder.addExtension(spv::E_SPV_KHR_fragment_shading_rate);
  734. builder.addCapability(spv::CapabilityFragmentShadingRateKHR);
  735. return spv::BuiltInShadingRateKHR;
  736. case glslang::EbvPrimitiveShadingRateKHR:
  737. builder.addExtension(spv::E_SPV_KHR_fragment_shading_rate);
  738. builder.addCapability(spv::CapabilityFragmentShadingRateKHR);
  739. return spv::BuiltInPrimitiveShadingRateKHR;
  740. case glslang::EbvInvocationId: return spv::BuiltInInvocationId;
  741. case glslang::EbvTessLevelInner: return spv::BuiltInTessLevelInner;
  742. case glslang::EbvTessLevelOuter: return spv::BuiltInTessLevelOuter;
  743. case glslang::EbvTessCoord: return spv::BuiltInTessCoord;
  744. case glslang::EbvPatchVertices: return spv::BuiltInPatchVertices;
  745. case glslang::EbvHelperInvocation: return spv::BuiltInHelperInvocation;
  746. case glslang::EbvSubGroupSize:
  747. builder.addExtension(spv::E_SPV_KHR_shader_ballot);
  748. builder.addCapability(spv::CapabilitySubgroupBallotKHR);
  749. return spv::BuiltInSubgroupSize;
  750. case glslang::EbvSubGroupInvocation:
  751. builder.addExtension(spv::E_SPV_KHR_shader_ballot);
  752. builder.addCapability(spv::CapabilitySubgroupBallotKHR);
  753. return spv::BuiltInSubgroupLocalInvocationId;
  754. case glslang::EbvSubGroupEqMask:
  755. builder.addExtension(spv::E_SPV_KHR_shader_ballot);
  756. builder.addCapability(spv::CapabilitySubgroupBallotKHR);
  757. return spv::BuiltInSubgroupEqMask;
  758. case glslang::EbvSubGroupGeMask:
  759. builder.addExtension(spv::E_SPV_KHR_shader_ballot);
  760. builder.addCapability(spv::CapabilitySubgroupBallotKHR);
  761. return spv::BuiltInSubgroupGeMask;
  762. case glslang::EbvSubGroupGtMask:
  763. builder.addExtension(spv::E_SPV_KHR_shader_ballot);
  764. builder.addCapability(spv::CapabilitySubgroupBallotKHR);
  765. return spv::BuiltInSubgroupGtMask;
  766. case glslang::EbvSubGroupLeMask:
  767. builder.addExtension(spv::E_SPV_KHR_shader_ballot);
  768. builder.addCapability(spv::CapabilitySubgroupBallotKHR);
  769. return spv::BuiltInSubgroupLeMask;
  770. case glslang::EbvSubGroupLtMask:
  771. builder.addExtension(spv::E_SPV_KHR_shader_ballot);
  772. builder.addCapability(spv::CapabilitySubgroupBallotKHR);
  773. return spv::BuiltInSubgroupLtMask;
  774. case glslang::EbvNumSubgroups:
  775. builder.addCapability(spv::CapabilityGroupNonUniform);
  776. return spv::BuiltInNumSubgroups;
  777. case glslang::EbvSubgroupID:
  778. builder.addCapability(spv::CapabilityGroupNonUniform);
  779. return spv::BuiltInSubgroupId;
  780. case glslang::EbvSubgroupSize2:
  781. builder.addCapability(spv::CapabilityGroupNonUniform);
  782. return spv::BuiltInSubgroupSize;
  783. case glslang::EbvSubgroupInvocation2:
  784. builder.addCapability(spv::CapabilityGroupNonUniform);
  785. return spv::BuiltInSubgroupLocalInvocationId;
  786. case glslang::EbvSubgroupEqMask2:
  787. builder.addCapability(spv::CapabilityGroupNonUniform);
  788. builder.addCapability(spv::CapabilityGroupNonUniformBallot);
  789. return spv::BuiltInSubgroupEqMask;
  790. case glslang::EbvSubgroupGeMask2:
  791. builder.addCapability(spv::CapabilityGroupNonUniform);
  792. builder.addCapability(spv::CapabilityGroupNonUniformBallot);
  793. return spv::BuiltInSubgroupGeMask;
  794. case glslang::EbvSubgroupGtMask2:
  795. builder.addCapability(spv::CapabilityGroupNonUniform);
  796. builder.addCapability(spv::CapabilityGroupNonUniformBallot);
  797. return spv::BuiltInSubgroupGtMask;
  798. case glslang::EbvSubgroupLeMask2:
  799. builder.addCapability(spv::CapabilityGroupNonUniform);
  800. builder.addCapability(spv::CapabilityGroupNonUniformBallot);
  801. return spv::BuiltInSubgroupLeMask;
  802. case glslang::EbvSubgroupLtMask2:
  803. builder.addCapability(spv::CapabilityGroupNonUniform);
  804. builder.addCapability(spv::CapabilityGroupNonUniformBallot);
  805. return spv::BuiltInSubgroupLtMask;
  806. case glslang::EbvBaryCoordNoPersp:
  807. builder.addExtension(spv::E_SPV_AMD_shader_explicit_vertex_parameter);
  808. return spv::BuiltInBaryCoordNoPerspAMD;
  809. case glslang::EbvBaryCoordNoPerspCentroid:
  810. builder.addExtension(spv::E_SPV_AMD_shader_explicit_vertex_parameter);
  811. return spv::BuiltInBaryCoordNoPerspCentroidAMD;
  812. case glslang::EbvBaryCoordNoPerspSample:
  813. builder.addExtension(spv::E_SPV_AMD_shader_explicit_vertex_parameter);
  814. return spv::BuiltInBaryCoordNoPerspSampleAMD;
  815. case glslang::EbvBaryCoordSmooth:
  816. builder.addExtension(spv::E_SPV_AMD_shader_explicit_vertex_parameter);
  817. return spv::BuiltInBaryCoordSmoothAMD;
  818. case glslang::EbvBaryCoordSmoothCentroid:
  819. builder.addExtension(spv::E_SPV_AMD_shader_explicit_vertex_parameter);
  820. return spv::BuiltInBaryCoordSmoothCentroidAMD;
  821. case glslang::EbvBaryCoordSmoothSample:
  822. builder.addExtension(spv::E_SPV_AMD_shader_explicit_vertex_parameter);
  823. return spv::BuiltInBaryCoordSmoothSampleAMD;
  824. case glslang::EbvBaryCoordPullModel:
  825. builder.addExtension(spv::E_SPV_AMD_shader_explicit_vertex_parameter);
  826. return spv::BuiltInBaryCoordPullModelAMD;
  827. case glslang::EbvDeviceIndex:
  828. builder.addIncorporatedExtension(spv::E_SPV_KHR_device_group, spv::Spv_1_3);
  829. builder.addCapability(spv::CapabilityDeviceGroup);
  830. return spv::BuiltInDeviceIndex;
  831. case glslang::EbvViewIndex:
  832. builder.addIncorporatedExtension(spv::E_SPV_KHR_multiview, spv::Spv_1_3);
  833. builder.addCapability(spv::CapabilityMultiView);
  834. return spv::BuiltInViewIndex;
  835. case glslang::EbvFragSizeEXT:
  836. builder.addExtension(spv::E_SPV_EXT_fragment_invocation_density);
  837. builder.addCapability(spv::CapabilityFragmentDensityEXT);
  838. return spv::BuiltInFragSizeEXT;
  839. case glslang::EbvFragInvocationCountEXT:
  840. builder.addExtension(spv::E_SPV_EXT_fragment_invocation_density);
  841. builder.addCapability(spv::CapabilityFragmentDensityEXT);
  842. return spv::BuiltInFragInvocationCountEXT;
  843. case glslang::EbvViewportMaskNV:
  844. if (!memberDeclaration) {
  845. builder.addExtension(spv::E_SPV_NV_viewport_array2);
  846. builder.addCapability(spv::CapabilityShaderViewportMaskNV);
  847. }
  848. return spv::BuiltInViewportMaskNV;
  849. case glslang::EbvSecondaryPositionNV:
  850. if (!memberDeclaration) {
  851. builder.addExtension(spv::E_SPV_NV_stereo_view_rendering);
  852. builder.addCapability(spv::CapabilityShaderStereoViewNV);
  853. }
  854. return spv::BuiltInSecondaryPositionNV;
  855. case glslang::EbvSecondaryViewportMaskNV:
  856. if (!memberDeclaration) {
  857. builder.addExtension(spv::E_SPV_NV_stereo_view_rendering);
  858. builder.addCapability(spv::CapabilityShaderStereoViewNV);
  859. }
  860. return spv::BuiltInSecondaryViewportMaskNV;
  861. case glslang::EbvPositionPerViewNV:
  862. if (!memberDeclaration) {
  863. builder.addExtension(spv::E_SPV_NVX_multiview_per_view_attributes);
  864. builder.addCapability(spv::CapabilityPerViewAttributesNV);
  865. }
  866. return spv::BuiltInPositionPerViewNV;
  867. case glslang::EbvViewportMaskPerViewNV:
  868. if (!memberDeclaration) {
  869. builder.addExtension(spv::E_SPV_NVX_multiview_per_view_attributes);
  870. builder.addCapability(spv::CapabilityPerViewAttributesNV);
  871. }
  872. return spv::BuiltInViewportMaskPerViewNV;
  873. case glslang::EbvFragFullyCoveredNV:
  874. builder.addExtension(spv::E_SPV_EXT_fragment_fully_covered);
  875. builder.addCapability(spv::CapabilityFragmentFullyCoveredEXT);
  876. return spv::BuiltInFullyCoveredEXT;
  877. case glslang::EbvFragmentSizeNV:
  878. builder.addExtension(spv::E_SPV_NV_shading_rate);
  879. builder.addCapability(spv::CapabilityShadingRateNV);
  880. return spv::BuiltInFragmentSizeNV;
  881. case glslang::EbvInvocationsPerPixelNV:
  882. builder.addExtension(spv::E_SPV_NV_shading_rate);
  883. builder.addCapability(spv::CapabilityShadingRateNV);
  884. return spv::BuiltInInvocationsPerPixelNV;
  885. // ray tracing
  886. case glslang::EbvLaunchId:
  887. return spv::BuiltInLaunchIdKHR;
  888. case glslang::EbvLaunchSize:
  889. return spv::BuiltInLaunchSizeKHR;
  890. case glslang::EbvWorldRayOrigin:
  891. return spv::BuiltInWorldRayOriginKHR;
  892. case glslang::EbvWorldRayDirection:
  893. return spv::BuiltInWorldRayDirectionKHR;
  894. case glslang::EbvObjectRayOrigin:
  895. return spv::BuiltInObjectRayOriginKHR;
  896. case glslang::EbvObjectRayDirection:
  897. return spv::BuiltInObjectRayDirectionKHR;
  898. case glslang::EbvRayTmin:
  899. return spv::BuiltInRayTminKHR;
  900. case glslang::EbvRayTmax:
  901. return spv::BuiltInRayTmaxKHR;
  902. case glslang::EbvInstanceCustomIndex:
  903. return spv::BuiltInInstanceCustomIndexKHR;
  904. case glslang::EbvHitT:
  905. {
  906. // this is a GLSL alias of RayTmax
  907. // in SPV_NV_ray_tracing it has a dedicated builtin
  908. // but in SPV_KHR_ray_tracing it gets mapped to RayTmax
  909. auto& extensions = glslangIntermediate->getRequestedExtensions();
  910. if (extensions.find("GL_NV_ray_tracing") != extensions.end()) {
  911. return spv::BuiltInHitTNV;
  912. } else {
  913. return spv::BuiltInRayTmaxKHR;
  914. }
  915. }
  916. case glslang::EbvHitKind:
  917. return spv::BuiltInHitKindKHR;
  918. case glslang::EbvObjectToWorld:
  919. case glslang::EbvObjectToWorld3x4:
  920. return spv::BuiltInObjectToWorldKHR;
  921. case glslang::EbvWorldToObject:
  922. case glslang::EbvWorldToObject3x4:
  923. return spv::BuiltInWorldToObjectKHR;
  924. case glslang::EbvIncomingRayFlags:
  925. return spv::BuiltInIncomingRayFlagsKHR;
  926. case glslang::EbvGeometryIndex:
  927. return spv::BuiltInRayGeometryIndexKHR;
  928. // barycentrics
  929. case glslang::EbvBaryCoordNV:
  930. builder.addExtension(spv::E_SPV_NV_fragment_shader_barycentric);
  931. builder.addCapability(spv::CapabilityFragmentBarycentricNV);
  932. return spv::BuiltInBaryCoordNV;
  933. case glslang::EbvBaryCoordNoPerspNV:
  934. builder.addExtension(spv::E_SPV_NV_fragment_shader_barycentric);
  935. builder.addCapability(spv::CapabilityFragmentBarycentricNV);
  936. return spv::BuiltInBaryCoordNoPerspNV;
  937. // mesh shaders
  938. case glslang::EbvTaskCountNV:
  939. return spv::BuiltInTaskCountNV;
  940. case glslang::EbvPrimitiveCountNV:
  941. return spv::BuiltInPrimitiveCountNV;
  942. case glslang::EbvPrimitiveIndicesNV:
  943. return spv::BuiltInPrimitiveIndicesNV;
  944. case glslang::EbvClipDistancePerViewNV:
  945. return spv::BuiltInClipDistancePerViewNV;
  946. case glslang::EbvCullDistancePerViewNV:
  947. return spv::BuiltInCullDistancePerViewNV;
  948. case glslang::EbvLayerPerViewNV:
  949. return spv::BuiltInLayerPerViewNV;
  950. case glslang::EbvMeshViewCountNV:
  951. return spv::BuiltInMeshViewCountNV;
  952. case glslang::EbvMeshViewIndicesNV:
  953. return spv::BuiltInMeshViewIndicesNV;
  954. // sm builtins
  955. case glslang::EbvWarpsPerSM:
  956. builder.addExtension(spv::E_SPV_NV_shader_sm_builtins);
  957. builder.addCapability(spv::CapabilityShaderSMBuiltinsNV);
  958. return spv::BuiltInWarpsPerSMNV;
  959. case glslang::EbvSMCount:
  960. builder.addExtension(spv::E_SPV_NV_shader_sm_builtins);
  961. builder.addCapability(spv::CapabilityShaderSMBuiltinsNV);
  962. return spv::BuiltInSMCountNV;
  963. case glslang::EbvWarpID:
  964. builder.addExtension(spv::E_SPV_NV_shader_sm_builtins);
  965. builder.addCapability(spv::CapabilityShaderSMBuiltinsNV);
  966. return spv::BuiltInWarpIDNV;
  967. case glslang::EbvSMID:
  968. builder.addExtension(spv::E_SPV_NV_shader_sm_builtins);
  969. builder.addCapability(spv::CapabilityShaderSMBuiltinsNV);
  970. return spv::BuiltInSMIDNV;
  971. #endif
  972. default:
  973. return spv::BuiltInMax;
  974. }
  975. }
  976. // Translate glslang image layout format to SPIR-V image format.
  977. spv::ImageFormat TGlslangToSpvTraverser::TranslateImageFormat(const glslang::TType& type)
  978. {
  979. assert(type.getBasicType() == glslang::EbtSampler);
  980. #ifdef GLSLANG_WEB
  981. return spv::ImageFormatUnknown;
  982. #endif
  983. // Check for capabilities
  984. switch (type.getQualifier().getFormat()) {
  985. case glslang::ElfRg32f:
  986. case glslang::ElfRg16f:
  987. case glslang::ElfR11fG11fB10f:
  988. case glslang::ElfR16f:
  989. case glslang::ElfRgba16:
  990. case glslang::ElfRgb10A2:
  991. case glslang::ElfRg16:
  992. case glslang::ElfRg8:
  993. case glslang::ElfR16:
  994. case glslang::ElfR8:
  995. case glslang::ElfRgba16Snorm:
  996. case glslang::ElfRg16Snorm:
  997. case glslang::ElfRg8Snorm:
  998. case glslang::ElfR16Snorm:
  999. case glslang::ElfR8Snorm:
  1000. case glslang::ElfRg32i:
  1001. case glslang::ElfRg16i:
  1002. case glslang::ElfRg8i:
  1003. case glslang::ElfR16i:
  1004. case glslang::ElfR8i:
  1005. case glslang::ElfRgb10a2ui:
  1006. case glslang::ElfRg32ui:
  1007. case glslang::ElfRg16ui:
  1008. case glslang::ElfRg8ui:
  1009. case glslang::ElfR16ui:
  1010. case glslang::ElfR8ui:
  1011. builder.addCapability(spv::CapabilityStorageImageExtendedFormats);
  1012. break;
  1013. case glslang::ElfR64ui:
  1014. case glslang::ElfR64i:
  1015. builder.addExtension(spv::E_SPV_EXT_shader_image_int64);
  1016. builder.addCapability(spv::CapabilityInt64ImageEXT);
  1017. default:
  1018. break;
  1019. }
  1020. // do the translation
  1021. switch (type.getQualifier().getFormat()) {
  1022. case glslang::ElfNone: return spv::ImageFormatUnknown;
  1023. case glslang::ElfRgba32f: return spv::ImageFormatRgba32f;
  1024. case glslang::ElfRgba16f: return spv::ImageFormatRgba16f;
  1025. case glslang::ElfR32f: return spv::ImageFormatR32f;
  1026. case glslang::ElfRgba8: return spv::ImageFormatRgba8;
  1027. case glslang::ElfRgba8Snorm: return spv::ImageFormatRgba8Snorm;
  1028. case glslang::ElfRg32f: return spv::ImageFormatRg32f;
  1029. case glslang::ElfRg16f: return spv::ImageFormatRg16f;
  1030. case glslang::ElfR11fG11fB10f: return spv::ImageFormatR11fG11fB10f;
  1031. case glslang::ElfR16f: return spv::ImageFormatR16f;
  1032. case glslang::ElfRgba16: return spv::ImageFormatRgba16;
  1033. case glslang::ElfRgb10A2: return spv::ImageFormatRgb10A2;
  1034. case glslang::ElfRg16: return spv::ImageFormatRg16;
  1035. case glslang::ElfRg8: return spv::ImageFormatRg8;
  1036. case glslang::ElfR16: return spv::ImageFormatR16;
  1037. case glslang::ElfR8: return spv::ImageFormatR8;
  1038. case glslang::ElfRgba16Snorm: return spv::ImageFormatRgba16Snorm;
  1039. case glslang::ElfRg16Snorm: return spv::ImageFormatRg16Snorm;
  1040. case glslang::ElfRg8Snorm: return spv::ImageFormatRg8Snorm;
  1041. case glslang::ElfR16Snorm: return spv::ImageFormatR16Snorm;
  1042. case glslang::ElfR8Snorm: return spv::ImageFormatR8Snorm;
  1043. case glslang::ElfRgba32i: return spv::ImageFormatRgba32i;
  1044. case glslang::ElfRgba16i: return spv::ImageFormatRgba16i;
  1045. case glslang::ElfRgba8i: return spv::ImageFormatRgba8i;
  1046. case glslang::ElfR32i: return spv::ImageFormatR32i;
  1047. case glslang::ElfRg32i: return spv::ImageFormatRg32i;
  1048. case glslang::ElfRg16i: return spv::ImageFormatRg16i;
  1049. case glslang::ElfRg8i: return spv::ImageFormatRg8i;
  1050. case glslang::ElfR16i: return spv::ImageFormatR16i;
  1051. case glslang::ElfR8i: return spv::ImageFormatR8i;
  1052. case glslang::ElfRgba32ui: return spv::ImageFormatRgba32ui;
  1053. case glslang::ElfRgba16ui: return spv::ImageFormatRgba16ui;
  1054. case glslang::ElfRgba8ui: return spv::ImageFormatRgba8ui;
  1055. case glslang::ElfR32ui: return spv::ImageFormatR32ui;
  1056. case glslang::ElfRg32ui: return spv::ImageFormatRg32ui;
  1057. case glslang::ElfRg16ui: return spv::ImageFormatRg16ui;
  1058. case glslang::ElfRgb10a2ui: return spv::ImageFormatRgb10a2ui;
  1059. case glslang::ElfRg8ui: return spv::ImageFormatRg8ui;
  1060. case glslang::ElfR16ui: return spv::ImageFormatR16ui;
  1061. case glslang::ElfR8ui: return spv::ImageFormatR8ui;
  1062. case glslang::ElfR64ui: return spv::ImageFormatR64ui;
  1063. case glslang::ElfR64i: return spv::ImageFormatR64i;
  1064. default: return spv::ImageFormatMax;
  1065. }
  1066. }
  1067. spv::SelectionControlMask TGlslangToSpvTraverser::TranslateSelectionControl(
  1068. const glslang::TIntermSelection& selectionNode) const
  1069. {
  1070. if (selectionNode.getFlatten())
  1071. return spv::SelectionControlFlattenMask;
  1072. if (selectionNode.getDontFlatten())
  1073. return spv::SelectionControlDontFlattenMask;
  1074. return spv::SelectionControlMaskNone;
  1075. }
  1076. spv::SelectionControlMask TGlslangToSpvTraverser::TranslateSwitchControl(const glslang::TIntermSwitch& switchNode)
  1077. const
  1078. {
  1079. if (switchNode.getFlatten())
  1080. return spv::SelectionControlFlattenMask;
  1081. if (switchNode.getDontFlatten())
  1082. return spv::SelectionControlDontFlattenMask;
  1083. return spv::SelectionControlMaskNone;
  1084. }
  1085. // return a non-0 dependency if the dependency argument must be set
  1086. spv::LoopControlMask TGlslangToSpvTraverser::TranslateLoopControl(const glslang::TIntermLoop& loopNode,
  1087. std::vector<unsigned int>& operands) const
  1088. {
  1089. spv::LoopControlMask control = spv::LoopControlMaskNone;
  1090. if (loopNode.getDontUnroll())
  1091. control = control | spv::LoopControlDontUnrollMask;
  1092. if (loopNode.getUnroll())
  1093. control = control | spv::LoopControlUnrollMask;
  1094. if (unsigned(loopNode.getLoopDependency()) == glslang::TIntermLoop::dependencyInfinite)
  1095. control = control | spv::LoopControlDependencyInfiniteMask;
  1096. else if (loopNode.getLoopDependency() > 0) {
  1097. control = control | spv::LoopControlDependencyLengthMask;
  1098. operands.push_back((unsigned int)loopNode.getLoopDependency());
  1099. }
  1100. if (glslangIntermediate->getSpv().spv >= glslang::EShTargetSpv_1_4) {
  1101. if (loopNode.getMinIterations() > 0) {
  1102. control = control | spv::LoopControlMinIterationsMask;
  1103. operands.push_back(loopNode.getMinIterations());
  1104. }
  1105. if (loopNode.getMaxIterations() < glslang::TIntermLoop::iterationsInfinite) {
  1106. control = control | spv::LoopControlMaxIterationsMask;
  1107. operands.push_back(loopNode.getMaxIterations());
  1108. }
  1109. if (loopNode.getIterationMultiple() > 1) {
  1110. control = control | spv::LoopControlIterationMultipleMask;
  1111. operands.push_back(loopNode.getIterationMultiple());
  1112. }
  1113. if (loopNode.getPeelCount() > 0) {
  1114. control = control | spv::LoopControlPeelCountMask;
  1115. operands.push_back(loopNode.getPeelCount());
  1116. }
  1117. if (loopNode.getPartialCount() > 0) {
  1118. control = control | spv::LoopControlPartialCountMask;
  1119. operands.push_back(loopNode.getPartialCount());
  1120. }
  1121. }
  1122. return control;
  1123. }
  1124. // Translate glslang type to SPIR-V storage class.
  1125. spv::StorageClass TGlslangToSpvTraverser::TranslateStorageClass(const glslang::TType& type)
  1126. {
  1127. if (type.getBasicType() == glslang::EbtRayQuery)
  1128. return spv::StorageClassPrivate;
  1129. if (type.getQualifier().isPipeInput())
  1130. return spv::StorageClassInput;
  1131. if (type.getQualifier().isPipeOutput())
  1132. return spv::StorageClassOutput;
  1133. if (glslangIntermediate->getSource() != glslang::EShSourceHlsl ||
  1134. type.getQualifier().storage == glslang::EvqUniform) {
  1135. if (type.isAtomic())
  1136. return spv::StorageClassAtomicCounter;
  1137. if (type.containsOpaque())
  1138. return spv::StorageClassUniformConstant;
  1139. }
  1140. if (type.getQualifier().isUniformOrBuffer() &&
  1141. type.getQualifier().isShaderRecord()) {
  1142. return spv::StorageClassShaderRecordBufferKHR;
  1143. }
  1144. if (glslangIntermediate->usingStorageBuffer() && type.getQualifier().storage == glslang::EvqBuffer) {
  1145. builder.addIncorporatedExtension(spv::E_SPV_KHR_storage_buffer_storage_class, spv::Spv_1_3);
  1146. return spv::StorageClassStorageBuffer;
  1147. }
  1148. if (type.getQualifier().isUniformOrBuffer()) {
  1149. if (type.getQualifier().isPushConstant())
  1150. return spv::StorageClassPushConstant;
  1151. if (type.getBasicType() == glslang::EbtBlock)
  1152. return spv::StorageClassUniform;
  1153. return spv::StorageClassUniformConstant;
  1154. }
  1155. if (type.getQualifier().storage == glslang::EvqShared && type.getBasicType() == glslang::EbtBlock) {
  1156. builder.addExtension(spv::E_SPV_KHR_workgroup_memory_explicit_layout);
  1157. builder.addCapability(spv::CapabilityWorkgroupMemoryExplicitLayoutKHR);
  1158. return spv::StorageClassWorkgroup;
  1159. }
  1160. switch (type.getQualifier().storage) {
  1161. case glslang::EvqGlobal: return spv::StorageClassPrivate;
  1162. case glslang::EvqConstReadOnly: return spv::StorageClassFunction;
  1163. case glslang::EvqTemporary: return spv::StorageClassFunction;
  1164. case glslang::EvqShared: return spv::StorageClassWorkgroup;
  1165. #ifndef GLSLANG_WEB
  1166. case glslang::EvqPayload: return spv::StorageClassRayPayloadKHR;
  1167. case glslang::EvqPayloadIn: return spv::StorageClassIncomingRayPayloadKHR;
  1168. case glslang::EvqHitAttr: return spv::StorageClassHitAttributeKHR;
  1169. case glslang::EvqCallableData: return spv::StorageClassCallableDataKHR;
  1170. case glslang::EvqCallableDataIn: return spv::StorageClassIncomingCallableDataKHR;
  1171. #endif
  1172. default:
  1173. assert(0);
  1174. break;
  1175. }
  1176. return spv::StorageClassFunction;
  1177. }
  1178. // Add capabilities pertaining to how an array is indexed.
  1179. void TGlslangToSpvTraverser::addIndirectionIndexCapabilities(const glslang::TType& baseType,
  1180. const glslang::TType& indexType)
  1181. {
  1182. #ifndef GLSLANG_WEB
  1183. if (indexType.getQualifier().isNonUniform()) {
  1184. // deal with an asserted non-uniform index
  1185. // SPV_EXT_descriptor_indexing already added in TranslateNonUniformDecoration
  1186. if (baseType.getBasicType() == glslang::EbtSampler) {
  1187. if (baseType.getQualifier().hasAttachment())
  1188. builder.addCapability(spv::CapabilityInputAttachmentArrayNonUniformIndexingEXT);
  1189. else if (baseType.isImage() && baseType.getSampler().isBuffer())
  1190. builder.addCapability(spv::CapabilityStorageTexelBufferArrayNonUniformIndexingEXT);
  1191. else if (baseType.isTexture() && baseType.getSampler().isBuffer())
  1192. builder.addCapability(spv::CapabilityUniformTexelBufferArrayNonUniformIndexingEXT);
  1193. else if (baseType.isImage())
  1194. builder.addCapability(spv::CapabilityStorageImageArrayNonUniformIndexingEXT);
  1195. else if (baseType.isTexture())
  1196. builder.addCapability(spv::CapabilitySampledImageArrayNonUniformIndexingEXT);
  1197. } else if (baseType.getBasicType() == glslang::EbtBlock) {
  1198. if (baseType.getQualifier().storage == glslang::EvqBuffer)
  1199. builder.addCapability(spv::CapabilityStorageBufferArrayNonUniformIndexingEXT);
  1200. else if (baseType.getQualifier().storage == glslang::EvqUniform)
  1201. builder.addCapability(spv::CapabilityUniformBufferArrayNonUniformIndexingEXT);
  1202. }
  1203. } else {
  1204. // assume a dynamically uniform index
  1205. if (baseType.getBasicType() == glslang::EbtSampler) {
  1206. if (baseType.getQualifier().hasAttachment()) {
  1207. builder.addIncorporatedExtension("SPV_EXT_descriptor_indexing", spv::Spv_1_5);
  1208. builder.addCapability(spv::CapabilityInputAttachmentArrayDynamicIndexingEXT);
  1209. } else if (baseType.isImage() && baseType.getSampler().isBuffer()) {
  1210. builder.addIncorporatedExtension("SPV_EXT_descriptor_indexing", spv::Spv_1_5);
  1211. builder.addCapability(spv::CapabilityStorageTexelBufferArrayDynamicIndexingEXT);
  1212. } else if (baseType.isTexture() && baseType.getSampler().isBuffer()) {
  1213. builder.addIncorporatedExtension("SPV_EXT_descriptor_indexing", spv::Spv_1_5);
  1214. builder.addCapability(spv::CapabilityUniformTexelBufferArrayDynamicIndexingEXT);
  1215. }
  1216. }
  1217. }
  1218. #endif
  1219. }
  1220. // Return whether or not the given type is something that should be tied to a
  1221. // descriptor set.
  1222. bool IsDescriptorResource(const glslang::TType& type)
  1223. {
  1224. // uniform and buffer blocks are included, unless it is a push_constant
  1225. if (type.getBasicType() == glslang::EbtBlock)
  1226. return type.getQualifier().isUniformOrBuffer() &&
  1227. ! type.getQualifier().isShaderRecord() &&
  1228. ! type.getQualifier().isPushConstant();
  1229. // non block...
  1230. // basically samplerXXX/subpass/sampler/texture are all included
  1231. // if they are the global-scope-class, not the function parameter
  1232. // (or local, if they ever exist) class.
  1233. if (type.getBasicType() == glslang::EbtSampler ||
  1234. type.getBasicType() == glslang::EbtAccStruct)
  1235. return type.getQualifier().isUniformOrBuffer();
  1236. // None of the above.
  1237. return false;
  1238. }
  1239. void InheritQualifiers(glslang::TQualifier& child, const glslang::TQualifier& parent)
  1240. {
  1241. if (child.layoutMatrix == glslang::ElmNone)
  1242. child.layoutMatrix = parent.layoutMatrix;
  1243. if (parent.invariant)
  1244. child.invariant = true;
  1245. if (parent.flat)
  1246. child.flat = true;
  1247. if (parent.centroid)
  1248. child.centroid = true;
  1249. #ifndef GLSLANG_WEB
  1250. if (parent.nopersp)
  1251. child.nopersp = true;
  1252. if (parent.explicitInterp)
  1253. child.explicitInterp = true;
  1254. if (parent.perPrimitiveNV)
  1255. child.perPrimitiveNV = true;
  1256. if (parent.perViewNV)
  1257. child.perViewNV = true;
  1258. if (parent.perTaskNV)
  1259. child.perTaskNV = true;
  1260. if (parent.patch)
  1261. child.patch = true;
  1262. if (parent.sample)
  1263. child.sample = true;
  1264. if (parent.coherent)
  1265. child.coherent = true;
  1266. if (parent.devicecoherent)
  1267. child.devicecoherent = true;
  1268. if (parent.queuefamilycoherent)
  1269. child.queuefamilycoherent = true;
  1270. if (parent.workgroupcoherent)
  1271. child.workgroupcoherent = true;
  1272. if (parent.subgroupcoherent)
  1273. child.subgroupcoherent = true;
  1274. if (parent.shadercallcoherent)
  1275. child.shadercallcoherent = true;
  1276. if (parent.nonprivate)
  1277. child.nonprivate = true;
  1278. if (parent.volatil)
  1279. child.volatil = true;
  1280. if (parent.restrict)
  1281. child.restrict = true;
  1282. if (parent.readonly)
  1283. child.readonly = true;
  1284. if (parent.writeonly)
  1285. child.writeonly = true;
  1286. #endif
  1287. if (parent.nonUniform)
  1288. child.nonUniform = true;
  1289. }
  1290. bool HasNonLayoutQualifiers(const glslang::TType& type, const glslang::TQualifier& qualifier)
  1291. {
  1292. // This should list qualifiers that simultaneous satisfy:
  1293. // - struct members might inherit from a struct declaration
  1294. // (note that non-block structs don't explicitly inherit,
  1295. // only implicitly, meaning no decoration involved)
  1296. // - affect decorations on the struct members
  1297. // (note smooth does not, and expecting something like volatile
  1298. // to effect the whole object)
  1299. // - are not part of the offset/st430/etc or row/column-major layout
  1300. return qualifier.invariant || (qualifier.hasLocation() && type.getBasicType() == glslang::EbtBlock);
  1301. }
  1302. //
  1303. // Implement the TGlslangToSpvTraverser class.
  1304. //
  1305. TGlslangToSpvTraverser::TGlslangToSpvTraverser(unsigned int spvVersion,
  1306. const glslang::TIntermediate* glslangIntermediate,
  1307. spv::SpvBuildLogger* buildLogger, glslang::SpvOptions& options) :
  1308. TIntermTraverser(true, false, true),
  1309. options(options),
  1310. shaderEntry(nullptr), currentFunction(nullptr),
  1311. sequenceDepth(0), logger(buildLogger),
  1312. builder(spvVersion, (glslang::GetKhronosToolId() << 16) | glslang::GetSpirvGeneratorVersion(), logger),
  1313. inEntryPoint(false), entryPointTerminated(false), linkageOnly(false),
  1314. glslangIntermediate(glslangIntermediate),
  1315. nanMinMaxClamp(glslangIntermediate->getNanMinMaxClamp()),
  1316. nonSemanticDebugPrintf(0)
  1317. {
  1318. spv::ExecutionModel executionModel = TranslateExecutionModel(glslangIntermediate->getStage());
  1319. builder.clearAccessChain();
  1320. builder.setSource(TranslateSourceLanguage(glslangIntermediate->getSource(), glslangIntermediate->getProfile()),
  1321. glslangIntermediate->getVersion());
  1322. if (options.generateDebugInfo) {
  1323. builder.setEmitOpLines();
  1324. builder.setSourceFile(glslangIntermediate->getSourceFile());
  1325. // Set the source shader's text. If for SPV version 1.0, include
  1326. // a preamble in comments stating the OpModuleProcessed instructions.
  1327. // Otherwise, emit those as actual instructions.
  1328. std::string text;
  1329. const std::vector<std::string>& processes = glslangIntermediate->getProcesses();
  1330. for (int p = 0; p < (int)processes.size(); ++p) {
  1331. if (glslangIntermediate->getSpv().spv < glslang::EShTargetSpv_1_1) {
  1332. text.append("// OpModuleProcessed ");
  1333. text.append(processes[p]);
  1334. text.append("\n");
  1335. } else
  1336. builder.addModuleProcessed(processes[p]);
  1337. }
  1338. if (glslangIntermediate->getSpv().spv < glslang::EShTargetSpv_1_1 && (int)processes.size() > 0)
  1339. text.append("#line 1\n");
  1340. text.append(glslangIntermediate->getSourceText());
  1341. builder.setSourceText(text);
  1342. // Pass name and text for all included files
  1343. const std::map<std::string, std::string>& include_txt = glslangIntermediate->getIncludeText();
  1344. for (auto iItr = include_txt.begin(); iItr != include_txt.end(); ++iItr)
  1345. builder.addInclude(iItr->first, iItr->second);
  1346. }
  1347. stdBuiltins = builder.import("GLSL.std.450");
  1348. spv::AddressingModel addressingModel = spv::AddressingModelLogical;
  1349. spv::MemoryModel memoryModel = spv::MemoryModelGLSL450;
  1350. if (glslangIntermediate->usingPhysicalStorageBuffer()) {
  1351. addressingModel = spv::AddressingModelPhysicalStorageBuffer64EXT;
  1352. builder.addIncorporatedExtension(spv::E_SPV_EXT_physical_storage_buffer, spv::Spv_1_5);
  1353. builder.addCapability(spv::CapabilityPhysicalStorageBufferAddressesEXT);
  1354. }
  1355. if (glslangIntermediate->usingVulkanMemoryModel()) {
  1356. memoryModel = spv::MemoryModelVulkanKHR;
  1357. builder.addCapability(spv::CapabilityVulkanMemoryModelKHR);
  1358. builder.addIncorporatedExtension(spv::E_SPV_KHR_vulkan_memory_model, spv::Spv_1_5);
  1359. }
  1360. builder.setMemoryModel(addressingModel, memoryModel);
  1361. if (glslangIntermediate->usingVariablePointers()) {
  1362. builder.addCapability(spv::CapabilityVariablePointers);
  1363. }
  1364. shaderEntry = builder.makeEntryPoint(glslangIntermediate->getEntryPointName().c_str());
  1365. entryPoint = builder.addEntryPoint(executionModel, shaderEntry, glslangIntermediate->getEntryPointName().c_str());
  1366. // Add the source extensions
  1367. const auto& sourceExtensions = glslangIntermediate->getRequestedExtensions();
  1368. for (auto it = sourceExtensions.begin(); it != sourceExtensions.end(); ++it)
  1369. builder.addSourceExtension(it->c_str());
  1370. // Add the top-level modes for this shader.
  1371. if (glslangIntermediate->getXfbMode()) {
  1372. builder.addCapability(spv::CapabilityTransformFeedback);
  1373. builder.addExecutionMode(shaderEntry, spv::ExecutionModeXfb);
  1374. }
  1375. if (glslangIntermediate->getLayoutPrimitiveCulling()) {
  1376. builder.addCapability(spv::CapabilityRayTraversalPrimitiveCullingKHR);
  1377. }
  1378. unsigned int mode;
  1379. switch (glslangIntermediate->getStage()) {
  1380. case EShLangVertex:
  1381. builder.addCapability(spv::CapabilityShader);
  1382. break;
  1383. case EShLangFragment:
  1384. builder.addCapability(spv::CapabilityShader);
  1385. if (glslangIntermediate->getPixelCenterInteger())
  1386. builder.addExecutionMode(shaderEntry, spv::ExecutionModePixelCenterInteger);
  1387. if (glslangIntermediate->getOriginUpperLeft())
  1388. builder.addExecutionMode(shaderEntry, spv::ExecutionModeOriginUpperLeft);
  1389. else
  1390. builder.addExecutionMode(shaderEntry, spv::ExecutionModeOriginLowerLeft);
  1391. if (glslangIntermediate->getEarlyFragmentTests())
  1392. builder.addExecutionMode(shaderEntry, spv::ExecutionModeEarlyFragmentTests);
  1393. if (glslangIntermediate->getPostDepthCoverage()) {
  1394. builder.addCapability(spv::CapabilitySampleMaskPostDepthCoverage);
  1395. builder.addExecutionMode(shaderEntry, spv::ExecutionModePostDepthCoverage);
  1396. builder.addExtension(spv::E_SPV_KHR_post_depth_coverage);
  1397. }
  1398. if (glslangIntermediate->getDepth() != glslang::EldUnchanged && glslangIntermediate->isDepthReplacing())
  1399. builder.addExecutionMode(shaderEntry, spv::ExecutionModeDepthReplacing);
  1400. #ifndef GLSLANG_WEB
  1401. switch(glslangIntermediate->getDepth()) {
  1402. case glslang::EldGreater: mode = spv::ExecutionModeDepthGreater; break;
  1403. case glslang::EldLess: mode = spv::ExecutionModeDepthLess; break;
  1404. default: mode = spv::ExecutionModeMax; break;
  1405. }
  1406. if (mode != spv::ExecutionModeMax)
  1407. builder.addExecutionMode(shaderEntry, (spv::ExecutionMode)mode);
  1408. switch (glslangIntermediate->getInterlockOrdering()) {
  1409. case glslang::EioPixelInterlockOrdered: mode = spv::ExecutionModePixelInterlockOrderedEXT;
  1410. break;
  1411. case glslang::EioPixelInterlockUnordered: mode = spv::ExecutionModePixelInterlockUnorderedEXT;
  1412. break;
  1413. case glslang::EioSampleInterlockOrdered: mode = spv::ExecutionModeSampleInterlockOrderedEXT;
  1414. break;
  1415. case glslang::EioSampleInterlockUnordered: mode = spv::ExecutionModeSampleInterlockUnorderedEXT;
  1416. break;
  1417. case glslang::EioShadingRateInterlockOrdered: mode = spv::ExecutionModeShadingRateInterlockOrderedEXT;
  1418. break;
  1419. case glslang::EioShadingRateInterlockUnordered: mode = spv::ExecutionModeShadingRateInterlockUnorderedEXT;
  1420. break;
  1421. default: mode = spv::ExecutionModeMax;
  1422. break;
  1423. }
  1424. if (mode != spv::ExecutionModeMax) {
  1425. builder.addExecutionMode(shaderEntry, (spv::ExecutionMode)mode);
  1426. if (mode == spv::ExecutionModeShadingRateInterlockOrderedEXT ||
  1427. mode == spv::ExecutionModeShadingRateInterlockUnorderedEXT) {
  1428. builder.addCapability(spv::CapabilityFragmentShaderShadingRateInterlockEXT);
  1429. } else if (mode == spv::ExecutionModePixelInterlockOrderedEXT ||
  1430. mode == spv::ExecutionModePixelInterlockUnorderedEXT) {
  1431. builder.addCapability(spv::CapabilityFragmentShaderPixelInterlockEXT);
  1432. } else {
  1433. builder.addCapability(spv::CapabilityFragmentShaderSampleInterlockEXT);
  1434. }
  1435. builder.addExtension(spv::E_SPV_EXT_fragment_shader_interlock);
  1436. }
  1437. #endif
  1438. break;
  1439. case EShLangCompute:
  1440. builder.addCapability(spv::CapabilityShader);
  1441. builder.addExecutionMode(shaderEntry, spv::ExecutionModeLocalSize, glslangIntermediate->getLocalSize(0),
  1442. glslangIntermediate->getLocalSize(1),
  1443. glslangIntermediate->getLocalSize(2));
  1444. if (glslangIntermediate->getLayoutDerivativeModeNone() == glslang::LayoutDerivativeGroupQuads) {
  1445. builder.addCapability(spv::CapabilityComputeDerivativeGroupQuadsNV);
  1446. builder.addExecutionMode(shaderEntry, spv::ExecutionModeDerivativeGroupQuadsNV);
  1447. builder.addExtension(spv::E_SPV_NV_compute_shader_derivatives);
  1448. } else if (glslangIntermediate->getLayoutDerivativeModeNone() == glslang::LayoutDerivativeGroupLinear) {
  1449. builder.addCapability(spv::CapabilityComputeDerivativeGroupLinearNV);
  1450. builder.addExecutionMode(shaderEntry, spv::ExecutionModeDerivativeGroupLinearNV);
  1451. builder.addExtension(spv::E_SPV_NV_compute_shader_derivatives);
  1452. }
  1453. break;
  1454. #ifndef GLSLANG_WEB
  1455. case EShLangTessEvaluation:
  1456. case EShLangTessControl:
  1457. builder.addCapability(spv::CapabilityTessellation);
  1458. glslang::TLayoutGeometry primitive;
  1459. if (glslangIntermediate->getStage() == EShLangTessControl) {
  1460. builder.addExecutionMode(shaderEntry, spv::ExecutionModeOutputVertices,
  1461. glslangIntermediate->getVertices());
  1462. primitive = glslangIntermediate->getOutputPrimitive();
  1463. } else {
  1464. primitive = glslangIntermediate->getInputPrimitive();
  1465. }
  1466. switch (primitive) {
  1467. case glslang::ElgTriangles: mode = spv::ExecutionModeTriangles; break;
  1468. case glslang::ElgQuads: mode = spv::ExecutionModeQuads; break;
  1469. case glslang::ElgIsolines: mode = spv::ExecutionModeIsolines; break;
  1470. default: mode = spv::ExecutionModeMax; break;
  1471. }
  1472. if (mode != spv::ExecutionModeMax)
  1473. builder.addExecutionMode(shaderEntry, (spv::ExecutionMode)mode);
  1474. switch (glslangIntermediate->getVertexSpacing()) {
  1475. case glslang::EvsEqual: mode = spv::ExecutionModeSpacingEqual; break;
  1476. case glslang::EvsFractionalEven: mode = spv::ExecutionModeSpacingFractionalEven; break;
  1477. case glslang::EvsFractionalOdd: mode = spv::ExecutionModeSpacingFractionalOdd; break;
  1478. default: mode = spv::ExecutionModeMax; break;
  1479. }
  1480. if (mode != spv::ExecutionModeMax)
  1481. builder.addExecutionMode(shaderEntry, (spv::ExecutionMode)mode);
  1482. switch (glslangIntermediate->getVertexOrder()) {
  1483. case glslang::EvoCw: mode = spv::ExecutionModeVertexOrderCw; break;
  1484. case glslang::EvoCcw: mode = spv::ExecutionModeVertexOrderCcw; break;
  1485. default: mode = spv::ExecutionModeMax; break;
  1486. }
  1487. if (mode != spv::ExecutionModeMax)
  1488. builder.addExecutionMode(shaderEntry, (spv::ExecutionMode)mode);
  1489. if (glslangIntermediate->getPointMode())
  1490. builder.addExecutionMode(shaderEntry, spv::ExecutionModePointMode);
  1491. break;
  1492. case EShLangGeometry:
  1493. builder.addCapability(spv::CapabilityGeometry);
  1494. switch (glslangIntermediate->getInputPrimitive()) {
  1495. case glslang::ElgPoints: mode = spv::ExecutionModeInputPoints; break;
  1496. case glslang::ElgLines: mode = spv::ExecutionModeInputLines; break;
  1497. case glslang::ElgLinesAdjacency: mode = spv::ExecutionModeInputLinesAdjacency; break;
  1498. case glslang::ElgTriangles: mode = spv::ExecutionModeTriangles; break;
  1499. case glslang::ElgTrianglesAdjacency: mode = spv::ExecutionModeInputTrianglesAdjacency; break;
  1500. default: mode = spv::ExecutionModeMax; break;
  1501. }
  1502. if (mode != spv::ExecutionModeMax)
  1503. builder.addExecutionMode(shaderEntry, (spv::ExecutionMode)mode);
  1504. builder.addExecutionMode(shaderEntry, spv::ExecutionModeInvocations, glslangIntermediate->getInvocations());
  1505. switch (glslangIntermediate->getOutputPrimitive()) {
  1506. case glslang::ElgPoints: mode = spv::ExecutionModeOutputPoints; break;
  1507. case glslang::ElgLineStrip: mode = spv::ExecutionModeOutputLineStrip; break;
  1508. case glslang::ElgTriangleStrip: mode = spv::ExecutionModeOutputTriangleStrip; break;
  1509. default: mode = spv::ExecutionModeMax; break;
  1510. }
  1511. if (mode != spv::ExecutionModeMax)
  1512. builder.addExecutionMode(shaderEntry, (spv::ExecutionMode)mode);
  1513. builder.addExecutionMode(shaderEntry, spv::ExecutionModeOutputVertices, glslangIntermediate->getVertices());
  1514. break;
  1515. case EShLangRayGen:
  1516. case EShLangIntersect:
  1517. case EShLangAnyHit:
  1518. case EShLangClosestHit:
  1519. case EShLangMiss:
  1520. case EShLangCallable:
  1521. {
  1522. auto& extensions = glslangIntermediate->getRequestedExtensions();
  1523. if (extensions.find("GL_NV_ray_tracing") == extensions.end()) {
  1524. builder.addCapability(spv::CapabilityRayTracingKHR);
  1525. builder.addExtension("SPV_KHR_ray_tracing");
  1526. }
  1527. else {
  1528. builder.addCapability(spv::CapabilityRayTracingNV);
  1529. builder.addExtension("SPV_NV_ray_tracing");
  1530. }
  1531. break;
  1532. }
  1533. case EShLangTaskNV:
  1534. case EShLangMeshNV:
  1535. builder.addCapability(spv::CapabilityMeshShadingNV);
  1536. builder.addExtension(spv::E_SPV_NV_mesh_shader);
  1537. builder.addExecutionMode(shaderEntry, spv::ExecutionModeLocalSize, glslangIntermediate->getLocalSize(0),
  1538. glslangIntermediate->getLocalSize(1),
  1539. glslangIntermediate->getLocalSize(2));
  1540. if (glslangIntermediate->getStage() == EShLangMeshNV) {
  1541. builder.addExecutionMode(shaderEntry, spv::ExecutionModeOutputVertices,
  1542. glslangIntermediate->getVertices());
  1543. builder.addExecutionMode(shaderEntry, spv::ExecutionModeOutputPrimitivesNV,
  1544. glslangIntermediate->getPrimitives());
  1545. switch (glslangIntermediate->getOutputPrimitive()) {
  1546. case glslang::ElgPoints: mode = spv::ExecutionModeOutputPoints; break;
  1547. case glslang::ElgLines: mode = spv::ExecutionModeOutputLinesNV; break;
  1548. case glslang::ElgTriangles: mode = spv::ExecutionModeOutputTrianglesNV; break;
  1549. default: mode = spv::ExecutionModeMax; break;
  1550. }
  1551. if (mode != spv::ExecutionModeMax)
  1552. builder.addExecutionMode(shaderEntry, (spv::ExecutionMode)mode);
  1553. }
  1554. break;
  1555. #endif
  1556. default:
  1557. break;
  1558. }
  1559. }
  1560. // Finish creating SPV, after the traversal is complete.
  1561. void TGlslangToSpvTraverser::finishSpv()
  1562. {
  1563. // Finish the entry point function
  1564. if (! entryPointTerminated) {
  1565. builder.setBuildPoint(shaderEntry->getLastBlock());
  1566. builder.leaveFunction();
  1567. }
  1568. // finish off the entry-point SPV instruction by adding the Input/Output <id>
  1569. for (auto it = iOSet.cbegin(); it != iOSet.cend(); ++it)
  1570. entryPoint->addIdOperand(*it);
  1571. // Add capabilities, extensions, remove unneeded decorations, etc.,
  1572. // based on the resulting SPIR-V.
  1573. // Note: WebGPU code generation must have the opportunity to aggressively
  1574. // prune unreachable merge blocks and continue targets.
  1575. builder.postProcess();
  1576. }
  1577. // Write the SPV into 'out'.
  1578. void TGlslangToSpvTraverser::dumpSpv(std::vector<unsigned int>& out)
  1579. {
  1580. builder.dump(out);
  1581. }
  1582. //
  1583. // Implement the traversal functions.
  1584. //
  1585. // Return true from interior nodes to have the external traversal
  1586. // continue on to children. Return false if children were
  1587. // already processed.
  1588. //
  1589. //
  1590. // Symbols can turn into
  1591. // - uniform/input reads
  1592. // - output writes
  1593. // - complex lvalue base setups: foo.bar[3].... , where we see foo and start up an access chain
  1594. // - something simple that degenerates into the last bullet
  1595. //
  1596. void TGlslangToSpvTraverser::visitSymbol(glslang::TIntermSymbol* symbol)
  1597. {
  1598. SpecConstantOpModeGuard spec_constant_op_mode_setter(&builder);
  1599. if (symbol->getType().isStruct())
  1600. glslangTypeToIdMap[symbol->getType().getStruct()] = symbol->getId();
  1601. if (symbol->getType().getQualifier().isSpecConstant())
  1602. spec_constant_op_mode_setter.turnOnSpecConstantOpMode();
  1603. #ifdef ENABLE_HLSL
  1604. // Skip symbol handling if it is string-typed
  1605. if (symbol->getBasicType() == glslang::EbtString)
  1606. return;
  1607. #endif
  1608. // getSymbolId() will set up all the IO decorations on the first call.
  1609. // Formal function parameters were mapped during makeFunctions().
  1610. spv::Id id = getSymbolId(symbol);
  1611. if (builder.isPointer(id)) {
  1612. if (!symbol->getType().getQualifier().isParamInput() &&
  1613. !symbol->getType().getQualifier().isParamOutput()) {
  1614. // Include all "static use" and "linkage only" interface variables on the OpEntryPoint instruction
  1615. // Consider adding to the OpEntryPoint interface list.
  1616. // Only looking at structures if they have at least one member.
  1617. if (!symbol->getType().isStruct() || symbol->getType().getStruct()->size() > 0) {
  1618. spv::StorageClass sc = builder.getStorageClass(id);
  1619. // Before SPIR-V 1.4, we only want to include Input and Output.
  1620. // Starting with SPIR-V 1.4, we want all globals.
  1621. if ((glslangIntermediate->getSpv().spv >= glslang::EShTargetSpv_1_4 && builder.isGlobalStorage(id)) ||
  1622. (sc == spv::StorageClassInput || sc == spv::StorageClassOutput)) {
  1623. iOSet.insert(id);
  1624. }
  1625. }
  1626. }
  1627. // If the SPIR-V type is required to be different than the AST type
  1628. // (for ex SubgroupMasks or 3x4 ObjectToWorld/WorldToObject matrices),
  1629. // translate now from the SPIR-V type to the AST type, for the consuming
  1630. // operation.
  1631. // Note this turns it from an l-value to an r-value.
  1632. // Currently, all symbols needing this are inputs; avoid the map lookup when non-input.
  1633. if (symbol->getType().getQualifier().storage == glslang::EvqVaryingIn)
  1634. id = translateForcedType(id);
  1635. }
  1636. // Only process non-linkage-only nodes for generating actual static uses
  1637. if (! linkageOnly || symbol->getQualifier().isSpecConstant()) {
  1638. // Prepare to generate code for the access
  1639. // L-value chains will be computed left to right. We're on the symbol now,
  1640. // which is the left-most part of the access chain, so now is "clear" time,
  1641. // followed by setting the base.
  1642. builder.clearAccessChain();
  1643. // For now, we consider all user variables as being in memory, so they are pointers,
  1644. // except for
  1645. // A) R-Value arguments to a function, which are an intermediate object.
  1646. // See comments in handleUserFunctionCall().
  1647. // B) Specialization constants (normal constants don't even come in as a variable),
  1648. // These are also pure R-values.
  1649. // C) R-Values from type translation, see above call to translateForcedType()
  1650. glslang::TQualifier qualifier = symbol->getQualifier();
  1651. if (qualifier.isSpecConstant() || rValueParameters.find(symbol->getId()) != rValueParameters.end() ||
  1652. !builder.isPointerType(builder.getTypeId(id)))
  1653. builder.setAccessChainRValue(id);
  1654. else
  1655. builder.setAccessChainLValue(id);
  1656. }
  1657. #ifdef ENABLE_HLSL
  1658. // Process linkage-only nodes for any special additional interface work.
  1659. if (linkageOnly) {
  1660. if (glslangIntermediate->getHlslFunctionality1()) {
  1661. // Map implicit counter buffers to their originating buffers, which should have been
  1662. // seen by now, given earlier pruning of unused counters, and preservation of order
  1663. // of declaration.
  1664. if (symbol->getType().getQualifier().isUniformOrBuffer()) {
  1665. if (!glslangIntermediate->hasCounterBufferName(symbol->getName())) {
  1666. // Save possible originating buffers for counter buffers, keyed by
  1667. // making the potential counter-buffer name.
  1668. std::string keyName = symbol->getName().c_str();
  1669. keyName = glslangIntermediate->addCounterBufferName(keyName);
  1670. counterOriginator[keyName] = symbol;
  1671. } else {
  1672. // Handle a counter buffer, by finding the saved originating buffer.
  1673. std::string keyName = symbol->getName().c_str();
  1674. auto it = counterOriginator.find(keyName);
  1675. if (it != counterOriginator.end()) {
  1676. id = getSymbolId(it->second);
  1677. if (id != spv::NoResult) {
  1678. spv::Id counterId = getSymbolId(symbol);
  1679. if (counterId != spv::NoResult) {
  1680. builder.addExtension("SPV_GOOGLE_hlsl_functionality1");
  1681. builder.addDecorationId(id, spv::DecorationHlslCounterBufferGOOGLE, counterId);
  1682. }
  1683. }
  1684. }
  1685. }
  1686. }
  1687. }
  1688. }
  1689. #endif
  1690. }
  1691. bool TGlslangToSpvTraverser::visitBinary(glslang::TVisit /* visit */, glslang::TIntermBinary* node)
  1692. {
  1693. builder.setLine(node->getLoc().line, node->getLoc().getFilename());
  1694. if (node->getLeft()->getAsSymbolNode() != nullptr && node->getLeft()->getType().isStruct()) {
  1695. glslangTypeToIdMap[node->getLeft()->getType().getStruct()] = node->getLeft()->getAsSymbolNode()->getId();
  1696. }
  1697. if (node->getRight()->getAsSymbolNode() != nullptr && node->getRight()->getType().isStruct()) {
  1698. glslangTypeToIdMap[node->getRight()->getType().getStruct()] = node->getRight()->getAsSymbolNode()->getId();
  1699. }
  1700. SpecConstantOpModeGuard spec_constant_op_mode_setter(&builder);
  1701. if (node->getType().getQualifier().isSpecConstant())
  1702. spec_constant_op_mode_setter.turnOnSpecConstantOpMode();
  1703. // First, handle special cases
  1704. switch (node->getOp()) {
  1705. case glslang::EOpAssign:
  1706. case glslang::EOpAddAssign:
  1707. case glslang::EOpSubAssign:
  1708. case glslang::EOpMulAssign:
  1709. case glslang::EOpVectorTimesMatrixAssign:
  1710. case glslang::EOpVectorTimesScalarAssign:
  1711. case glslang::EOpMatrixTimesScalarAssign:
  1712. case glslang::EOpMatrixTimesMatrixAssign:
  1713. case glslang::EOpDivAssign:
  1714. case glslang::EOpModAssign:
  1715. case glslang::EOpAndAssign:
  1716. case glslang::EOpInclusiveOrAssign:
  1717. case glslang::EOpExclusiveOrAssign:
  1718. case glslang::EOpLeftShiftAssign:
  1719. case glslang::EOpRightShiftAssign:
  1720. // A bin-op assign "a += b" means the same thing as "a = a + b"
  1721. // where a is evaluated before b. For a simple assignment, GLSL
  1722. // says to evaluate the left before the right. So, always, left
  1723. // node then right node.
  1724. {
  1725. // get the left l-value, save it away
  1726. builder.clearAccessChain();
  1727. node->getLeft()->traverse(this);
  1728. spv::Builder::AccessChain lValue = builder.getAccessChain();
  1729. // evaluate the right
  1730. builder.clearAccessChain();
  1731. node->getRight()->traverse(this);
  1732. spv::Id rValue = accessChainLoad(node->getRight()->getType());
  1733. if (node->getOp() != glslang::EOpAssign) {
  1734. // the left is also an r-value
  1735. builder.setAccessChain(lValue);
  1736. spv::Id leftRValue = accessChainLoad(node->getLeft()->getType());
  1737. // do the operation
  1738. spv::Builder::AccessChain::CoherentFlags coherentFlags = TranslateCoherent(node->getLeft()->getType());
  1739. coherentFlags |= TranslateCoherent(node->getRight()->getType());
  1740. OpDecorations decorations = { TranslatePrecisionDecoration(node->getOperationPrecision()),
  1741. TranslateNoContractionDecoration(node->getType().getQualifier()),
  1742. TranslateNonUniformDecoration(coherentFlags) };
  1743. rValue = createBinaryOperation(node->getOp(), decorations,
  1744. convertGlslangToSpvType(node->getType()), leftRValue, rValue,
  1745. node->getType().getBasicType());
  1746. // these all need their counterparts in createBinaryOperation()
  1747. assert(rValue != spv::NoResult);
  1748. }
  1749. // store the result
  1750. builder.setAccessChain(lValue);
  1751. multiTypeStore(node->getLeft()->getType(), rValue);
  1752. // assignments are expressions having an rValue after they are evaluated...
  1753. builder.clearAccessChain();
  1754. builder.setAccessChainRValue(rValue);
  1755. }
  1756. return false;
  1757. case glslang::EOpIndexDirect:
  1758. case glslang::EOpIndexDirectStruct:
  1759. {
  1760. // Structure, array, matrix, or vector indirection with statically known index.
  1761. // Get the left part of the access chain.
  1762. node->getLeft()->traverse(this);
  1763. // Add the next element in the chain
  1764. const int glslangIndex = node->getRight()->getAsConstantUnion()->getConstArray()[0].getIConst();
  1765. if (! node->getLeft()->getType().isArray() &&
  1766. node->getLeft()->getType().isVector() &&
  1767. node->getOp() == glslang::EOpIndexDirect) {
  1768. // Swizzle is uniform so propagate uniform into access chain
  1769. spv::Builder::AccessChain::CoherentFlags coherentFlags = TranslateCoherent(node->getLeft()->getType());
  1770. coherentFlags.nonUniform = 0;
  1771. // This is essentially a hard-coded vector swizzle of size 1,
  1772. // so short circuit the access-chain stuff with a swizzle.
  1773. std::vector<unsigned> swizzle;
  1774. swizzle.push_back(glslangIndex);
  1775. int dummySize;
  1776. builder.accessChainPushSwizzle(swizzle, convertGlslangToSpvType(node->getLeft()->getType()),
  1777. coherentFlags,
  1778. glslangIntermediate->getBaseAlignmentScalar(
  1779. node->getLeft()->getType(), dummySize));
  1780. } else {
  1781. // Load through a block reference is performed with a dot operator that
  1782. // is mapped to EOpIndexDirectStruct. When we get to the actual reference,
  1783. // do a load and reset the access chain.
  1784. if (node->getLeft()->isReference() &&
  1785. !node->getLeft()->getType().isArray() &&
  1786. node->getOp() == glslang::EOpIndexDirectStruct)
  1787. {
  1788. spv::Id left = accessChainLoad(node->getLeft()->getType());
  1789. builder.clearAccessChain();
  1790. builder.setAccessChainLValue(left);
  1791. }
  1792. int spvIndex = glslangIndex;
  1793. if (node->getLeft()->getBasicType() == glslang::EbtBlock &&
  1794. node->getOp() == glslang::EOpIndexDirectStruct)
  1795. {
  1796. // This may be, e.g., an anonymous block-member selection, which generally need
  1797. // index remapping due to hidden members in anonymous blocks.
  1798. int glslangId = glslangTypeToIdMap[node->getLeft()->getType().getStruct()];
  1799. if (memberRemapper.find(glslangId) != memberRemapper.end()) {
  1800. std::vector<int>& remapper = memberRemapper[glslangId];
  1801. assert(remapper.size() > 0);
  1802. spvIndex = remapper[glslangIndex];
  1803. }
  1804. }
  1805. // Struct reference propagates uniform lvalue
  1806. spv::Builder::AccessChain::CoherentFlags coherentFlags =
  1807. TranslateCoherent(node->getLeft()->getType());
  1808. coherentFlags.nonUniform = 0;
  1809. // normal case for indexing array or structure or block
  1810. builder.accessChainPush(builder.makeIntConstant(spvIndex),
  1811. coherentFlags,
  1812. node->getLeft()->getType().getBufferReferenceAlignment());
  1813. // Add capabilities here for accessing PointSize and clip/cull distance.
  1814. // We have deferred generation of associated capabilities until now.
  1815. if (node->getLeft()->getType().isStruct() && ! node->getLeft()->getType().isArray())
  1816. declareUseOfStructMember(*(node->getLeft()->getType().getStruct()), glslangIndex);
  1817. }
  1818. }
  1819. return false;
  1820. case glslang::EOpIndexIndirect:
  1821. {
  1822. // Array, matrix, or vector indirection with variable index.
  1823. // Will use native SPIR-V access-chain for and array indirection;
  1824. // matrices are arrays of vectors, so will also work for a matrix.
  1825. // Will use the access chain's 'component' for variable index into a vector.
  1826. // This adapter is building access chains left to right.
  1827. // Set up the access chain to the left.
  1828. node->getLeft()->traverse(this);
  1829. // save it so that computing the right side doesn't trash it
  1830. spv::Builder::AccessChain partial = builder.getAccessChain();
  1831. // compute the next index in the chain
  1832. builder.clearAccessChain();
  1833. node->getRight()->traverse(this);
  1834. spv::Id index = accessChainLoad(node->getRight()->getType());
  1835. addIndirectionIndexCapabilities(node->getLeft()->getType(), node->getRight()->getType());
  1836. // restore the saved access chain
  1837. builder.setAccessChain(partial);
  1838. // Only if index is nonUniform should we propagate nonUniform into access chain
  1839. spv::Builder::AccessChain::CoherentFlags index_flags = TranslateCoherent(node->getRight()->getType());
  1840. spv::Builder::AccessChain::CoherentFlags coherent_flags = TranslateCoherent(node->getLeft()->getType());
  1841. coherent_flags.nonUniform = index_flags.nonUniform;
  1842. if (! node->getLeft()->getType().isArray() && node->getLeft()->getType().isVector()) {
  1843. int dummySize;
  1844. builder.accessChainPushComponent(
  1845. index, convertGlslangToSpvType(node->getLeft()->getType()), coherent_flags,
  1846. glslangIntermediate->getBaseAlignmentScalar(node->getLeft()->getType(),
  1847. dummySize));
  1848. } else
  1849. builder.accessChainPush(index, coherent_flags,
  1850. node->getLeft()->getType().getBufferReferenceAlignment());
  1851. }
  1852. return false;
  1853. case glslang::EOpVectorSwizzle:
  1854. {
  1855. node->getLeft()->traverse(this);
  1856. std::vector<unsigned> swizzle;
  1857. convertSwizzle(*node->getRight()->getAsAggregate(), swizzle);
  1858. int dummySize;
  1859. builder.accessChainPushSwizzle(swizzle, convertGlslangToSpvType(node->getLeft()->getType()),
  1860. TranslateCoherent(node->getLeft()->getType()),
  1861. glslangIntermediate->getBaseAlignmentScalar(node->getLeft()->getType(),
  1862. dummySize));
  1863. }
  1864. return false;
  1865. case glslang::EOpMatrixSwizzle:
  1866. logger->missingFunctionality("matrix swizzle");
  1867. return true;
  1868. case glslang::EOpLogicalOr:
  1869. case glslang::EOpLogicalAnd:
  1870. {
  1871. // These may require short circuiting, but can sometimes be done as straight
  1872. // binary operations. The right operand must be short circuited if it has
  1873. // side effects, and should probably be if it is complex.
  1874. if (isTrivial(node->getRight()->getAsTyped()))
  1875. break; // handle below as a normal binary operation
  1876. // otherwise, we need to do dynamic short circuiting on the right operand
  1877. spv::Id result = createShortCircuit(node->getOp(), *node->getLeft()->getAsTyped(),
  1878. *node->getRight()->getAsTyped());
  1879. builder.clearAccessChain();
  1880. builder.setAccessChainRValue(result);
  1881. }
  1882. return false;
  1883. default:
  1884. break;
  1885. }
  1886. // Assume generic binary op...
  1887. // get right operand
  1888. builder.clearAccessChain();
  1889. node->getLeft()->traverse(this);
  1890. spv::Id left = accessChainLoad(node->getLeft()->getType());
  1891. // get left operand
  1892. builder.clearAccessChain();
  1893. node->getRight()->traverse(this);
  1894. spv::Id right = accessChainLoad(node->getRight()->getType());
  1895. // get result
  1896. OpDecorations decorations = { TranslatePrecisionDecoration(node->getOperationPrecision()),
  1897. TranslateNoContractionDecoration(node->getType().getQualifier()),
  1898. TranslateNonUniformDecoration(node->getType().getQualifier()) };
  1899. spv::Id result = createBinaryOperation(node->getOp(), decorations,
  1900. convertGlslangToSpvType(node->getType()), left, right,
  1901. node->getLeft()->getType().getBasicType());
  1902. builder.clearAccessChain();
  1903. if (! result) {
  1904. logger->missingFunctionality("unknown glslang binary operation");
  1905. return true; // pick up a child as the place-holder result
  1906. } else {
  1907. builder.setAccessChainRValue(result);
  1908. return false;
  1909. }
  1910. }
  1911. // Figure out what, if any, type changes are needed when accessing a specific built-in.
  1912. // Returns <the type SPIR-V requires for declarion, the type to translate to on use>.
  1913. // Also see comment for 'forceType', regarding tracking SPIR-V-required types.
  1914. std::pair<spv::Id, spv::Id> TGlslangToSpvTraverser::getForcedType(glslang::TBuiltInVariable glslangBuiltIn,
  1915. const glslang::TType& glslangType)
  1916. {
  1917. switch(glslangBuiltIn)
  1918. {
  1919. case glslang::EbvSubGroupEqMask:
  1920. case glslang::EbvSubGroupGeMask:
  1921. case glslang::EbvSubGroupGtMask:
  1922. case glslang::EbvSubGroupLeMask:
  1923. case glslang::EbvSubGroupLtMask: {
  1924. // these require changing a 64-bit scaler -> a vector of 32-bit components
  1925. if (glslangType.isVector())
  1926. break;
  1927. spv::Id ivec4_type = builder.makeVectorType(builder.makeUintType(32), 4);
  1928. spv::Id uint64_type = builder.makeUintType(64);
  1929. std::pair<spv::Id, spv::Id> ret(ivec4_type, uint64_type);
  1930. return ret;
  1931. }
  1932. // There are no SPIR-V builtins defined for these and map onto original non-transposed
  1933. // builtins. During visitBinary we insert a transpose
  1934. case glslang::EbvWorldToObject3x4:
  1935. case glslang::EbvObjectToWorld3x4: {
  1936. spv::Id mat43 = builder.makeMatrixType(builder.makeFloatType(32), 4, 3);
  1937. spv::Id mat34 = builder.makeMatrixType(builder.makeFloatType(32), 3, 4);
  1938. std::pair<spv::Id, spv::Id> ret(mat43, mat34);
  1939. return ret;
  1940. }
  1941. default:
  1942. break;
  1943. }
  1944. std::pair<spv::Id, spv::Id> ret(spv::NoType, spv::NoType);
  1945. return ret;
  1946. }
  1947. // For an object previously identified (see getForcedType() and forceType)
  1948. // as needing type translations, do the translation needed for a load, turning
  1949. // an L-value into in R-value.
  1950. spv::Id TGlslangToSpvTraverser::translateForcedType(spv::Id object)
  1951. {
  1952. const auto forceIt = forceType.find(object);
  1953. if (forceIt == forceType.end())
  1954. return object;
  1955. spv::Id desiredTypeId = forceIt->second;
  1956. spv::Id objectTypeId = builder.getTypeId(object);
  1957. assert(builder.isPointerType(objectTypeId));
  1958. objectTypeId = builder.getContainedTypeId(objectTypeId);
  1959. if (builder.isVectorType(objectTypeId) &&
  1960. builder.getScalarTypeWidth(builder.getContainedTypeId(objectTypeId)) == 32) {
  1961. if (builder.getScalarTypeWidth(desiredTypeId) == 64) {
  1962. // handle 32-bit v.xy* -> 64-bit
  1963. builder.clearAccessChain();
  1964. builder.setAccessChainLValue(object);
  1965. object = builder.accessChainLoad(spv::NoPrecision, spv::DecorationMax, spv::DecorationMax, objectTypeId);
  1966. std::vector<spv::Id> components;
  1967. components.push_back(builder.createCompositeExtract(object, builder.getContainedTypeId(objectTypeId), 0));
  1968. components.push_back(builder.createCompositeExtract(object, builder.getContainedTypeId(objectTypeId), 1));
  1969. spv::Id vecType = builder.makeVectorType(builder.getContainedTypeId(objectTypeId), 2);
  1970. return builder.createUnaryOp(spv::OpBitcast, desiredTypeId,
  1971. builder.createCompositeConstruct(vecType, components));
  1972. } else {
  1973. logger->missingFunctionality("forcing 32-bit vector type to non 64-bit scalar");
  1974. }
  1975. } else if (builder.isMatrixType(objectTypeId)) {
  1976. // There are no SPIR-V builtins defined for 3x4 variants of ObjectToWorld/WorldToObject
  1977. // and we insert a transpose after loading the original non-transposed builtins
  1978. builder.clearAccessChain();
  1979. builder.setAccessChainLValue(object);
  1980. object = builder.accessChainLoad(spv::NoPrecision, spv::DecorationMax, spv::DecorationMax, objectTypeId);
  1981. return builder.createUnaryOp(spv::OpTranspose, desiredTypeId, object);
  1982. } else {
  1983. logger->missingFunctionality("forcing non 32-bit vector type");
  1984. }
  1985. return object;
  1986. }
  1987. bool TGlslangToSpvTraverser::visitUnary(glslang::TVisit /* visit */, glslang::TIntermUnary* node)
  1988. {
  1989. builder.setLine(node->getLoc().line, node->getLoc().getFilename());
  1990. SpecConstantOpModeGuard spec_constant_op_mode_setter(&builder);
  1991. if (node->getType().getQualifier().isSpecConstant())
  1992. spec_constant_op_mode_setter.turnOnSpecConstantOpMode();
  1993. spv::Id result = spv::NoResult;
  1994. // try texturing first
  1995. result = createImageTextureFunctionCall(node);
  1996. if (result != spv::NoResult) {
  1997. builder.clearAccessChain();
  1998. builder.setAccessChainRValue(result);
  1999. return false; // done with this node
  2000. }
  2001. // Non-texturing.
  2002. if (node->getOp() == glslang::EOpArrayLength) {
  2003. // Quite special; won't want to evaluate the operand.
  2004. // Currently, the front-end does not allow .length() on an array until it is sized,
  2005. // except for the last block membeor of an SSBO.
  2006. // TODO: If this changes, link-time sized arrays might show up here, and need their
  2007. // size extracted.
  2008. // Normal .length() would have been constant folded by the front-end.
  2009. // So, this has to be block.lastMember.length().
  2010. // SPV wants "block" and member number as the operands, go get them.
  2011. spv::Id length;
  2012. if (node->getOperand()->getType().isCoopMat()) {
  2013. spec_constant_op_mode_setter.turnOnSpecConstantOpMode();
  2014. spv::Id typeId = convertGlslangToSpvType(node->getOperand()->getType());
  2015. assert(builder.isCooperativeMatrixType(typeId));
  2016. length = builder.createCooperativeMatrixLength(typeId);
  2017. } else {
  2018. glslang::TIntermTyped* block = node->getOperand()->getAsBinaryNode()->getLeft();
  2019. block->traverse(this);
  2020. unsigned int member = node->getOperand()->getAsBinaryNode()->getRight()->getAsConstantUnion()
  2021. ->getConstArray()[0].getUConst();
  2022. length = builder.createArrayLength(builder.accessChainGetLValue(), member);
  2023. }
  2024. // GLSL semantics say the result of .length() is an int, while SPIR-V says
  2025. // signedness must be 0. So, convert from SPIR-V unsigned back to GLSL's
  2026. // AST expectation of a signed result.
  2027. if (glslangIntermediate->getSource() == glslang::EShSourceGlsl) {
  2028. if (builder.isInSpecConstCodeGenMode()) {
  2029. length = builder.createBinOp(spv::OpIAdd, builder.makeIntType(32), length, builder.makeIntConstant(0));
  2030. } else {
  2031. length = builder.createUnaryOp(spv::OpBitcast, builder.makeIntType(32), length);
  2032. }
  2033. }
  2034. builder.clearAccessChain();
  2035. builder.setAccessChainRValue(length);
  2036. return false;
  2037. }
  2038. // Start by evaluating the operand
  2039. // Does it need a swizzle inversion? If so, evaluation is inverted;
  2040. // operate first on the swizzle base, then apply the swizzle.
  2041. spv::Id invertedType = spv::NoType;
  2042. auto resultType = [&invertedType, &node, this](){ return invertedType != spv::NoType ?
  2043. invertedType : convertGlslangToSpvType(node->getType()); };
  2044. if (node->getOp() == glslang::EOpInterpolateAtCentroid)
  2045. invertedType = getInvertedSwizzleType(*node->getOperand());
  2046. builder.clearAccessChain();
  2047. TIntermNode *operandNode;
  2048. if (invertedType != spv::NoType)
  2049. operandNode = node->getOperand()->getAsBinaryNode()->getLeft();
  2050. else
  2051. operandNode = node->getOperand();
  2052. operandNode->traverse(this);
  2053. spv::Id operand = spv::NoResult;
  2054. spv::Builder::AccessChain::CoherentFlags lvalueCoherentFlags;
  2055. #ifndef GLSLANG_WEB
  2056. if (node->getOp() == glslang::EOpAtomicCounterIncrement ||
  2057. node->getOp() == glslang::EOpAtomicCounterDecrement ||
  2058. node->getOp() == glslang::EOpAtomicCounter ||
  2059. node->getOp() == glslang::EOpInterpolateAtCentroid ||
  2060. node->getOp() == glslang::EOpRayQueryProceed ||
  2061. node->getOp() == glslang::EOpRayQueryGetRayTMin ||
  2062. node->getOp() == glslang::EOpRayQueryGetRayFlags ||
  2063. node->getOp() == glslang::EOpRayQueryGetWorldRayOrigin ||
  2064. node->getOp() == glslang::EOpRayQueryGetWorldRayDirection ||
  2065. node->getOp() == glslang::EOpRayQueryGetIntersectionCandidateAABBOpaque ||
  2066. node->getOp() == glslang::EOpRayQueryTerminate ||
  2067. node->getOp() == glslang::EOpRayQueryConfirmIntersection) {
  2068. operand = builder.accessChainGetLValue(); // Special case l-value operands
  2069. lvalueCoherentFlags = builder.getAccessChain().coherentFlags;
  2070. lvalueCoherentFlags |= TranslateCoherent(operandNode->getAsTyped()->getType());
  2071. } else
  2072. #endif
  2073. {
  2074. operand = accessChainLoad(node->getOperand()->getType());
  2075. }
  2076. OpDecorations decorations = { TranslatePrecisionDecoration(node->getOperationPrecision()),
  2077. TranslateNoContractionDecoration(node->getType().getQualifier()),
  2078. TranslateNonUniformDecoration(node->getType().getQualifier()) };
  2079. // it could be a conversion
  2080. if (! result)
  2081. result = createConversion(node->getOp(), decorations, resultType(), operand,
  2082. node->getOperand()->getBasicType());
  2083. // if not, then possibly an operation
  2084. if (! result)
  2085. result = createUnaryOperation(node->getOp(), decorations, resultType(), operand,
  2086. node->getOperand()->getBasicType(), lvalueCoherentFlags);
  2087. if (result) {
  2088. if (invertedType) {
  2089. result = createInvertedSwizzle(decorations.precision, *node->getOperand(), result);
  2090. decorations.addNonUniform(builder, result);
  2091. }
  2092. builder.clearAccessChain();
  2093. builder.setAccessChainRValue(result);
  2094. return false; // done with this node
  2095. }
  2096. // it must be a special case, check...
  2097. switch (node->getOp()) {
  2098. case glslang::EOpPostIncrement:
  2099. case glslang::EOpPostDecrement:
  2100. case glslang::EOpPreIncrement:
  2101. case glslang::EOpPreDecrement:
  2102. {
  2103. // we need the integer value "1" or the floating point "1.0" to add/subtract
  2104. spv::Id one = 0;
  2105. if (node->getBasicType() == glslang::EbtFloat)
  2106. one = builder.makeFloatConstant(1.0F);
  2107. #ifndef GLSLANG_WEB
  2108. else if (node->getBasicType() == glslang::EbtDouble)
  2109. one = builder.makeDoubleConstant(1.0);
  2110. else if (node->getBasicType() == glslang::EbtFloat16)
  2111. one = builder.makeFloat16Constant(1.0F);
  2112. else if (node->getBasicType() == glslang::EbtInt8 || node->getBasicType() == glslang::EbtUint8)
  2113. one = builder.makeInt8Constant(1);
  2114. else if (node->getBasicType() == glslang::EbtInt16 || node->getBasicType() == glslang::EbtUint16)
  2115. one = builder.makeInt16Constant(1);
  2116. else if (node->getBasicType() == glslang::EbtInt64 || node->getBasicType() == glslang::EbtUint64)
  2117. one = builder.makeInt64Constant(1);
  2118. #endif
  2119. else
  2120. one = builder.makeIntConstant(1);
  2121. glslang::TOperator op;
  2122. if (node->getOp() == glslang::EOpPreIncrement ||
  2123. node->getOp() == glslang::EOpPostIncrement)
  2124. op = glslang::EOpAdd;
  2125. else
  2126. op = glslang::EOpSub;
  2127. spv::Id result = createBinaryOperation(op, decorations,
  2128. convertGlslangToSpvType(node->getType()), operand, one,
  2129. node->getType().getBasicType());
  2130. assert(result != spv::NoResult);
  2131. // The result of operation is always stored, but conditionally the
  2132. // consumed result. The consumed result is always an r-value.
  2133. builder.accessChainStore(result,
  2134. TranslateNonUniformDecoration(builder.getAccessChain().coherentFlags));
  2135. builder.clearAccessChain();
  2136. if (node->getOp() == glslang::EOpPreIncrement ||
  2137. node->getOp() == glslang::EOpPreDecrement)
  2138. builder.setAccessChainRValue(result);
  2139. else
  2140. builder.setAccessChainRValue(operand);
  2141. }
  2142. return false;
  2143. #ifndef GLSLANG_WEB
  2144. case glslang::EOpEmitStreamVertex:
  2145. builder.createNoResultOp(spv::OpEmitStreamVertex, operand);
  2146. return false;
  2147. case glslang::EOpEndStreamPrimitive:
  2148. builder.createNoResultOp(spv::OpEndStreamPrimitive, operand);
  2149. return false;
  2150. case glslang::EOpRayQueryTerminate:
  2151. builder.createNoResultOp(spv::OpRayQueryTerminateKHR, operand);
  2152. return false;
  2153. case glslang::EOpRayQueryConfirmIntersection:
  2154. builder.createNoResultOp(spv::OpRayQueryConfirmIntersectionKHR, operand);
  2155. return false;
  2156. #endif
  2157. default:
  2158. logger->missingFunctionality("unknown glslang unary");
  2159. return true; // pick up operand as placeholder result
  2160. }
  2161. }
  2162. // Construct a composite object, recursively copying members if their types don't match
  2163. spv::Id TGlslangToSpvTraverser::createCompositeConstruct(spv::Id resultTypeId, std::vector<spv::Id> constituents)
  2164. {
  2165. for (int c = 0; c < (int)constituents.size(); ++c) {
  2166. spv::Id& constituent = constituents[c];
  2167. spv::Id lType = builder.getContainedTypeId(resultTypeId, c);
  2168. spv::Id rType = builder.getTypeId(constituent);
  2169. if (lType != rType) {
  2170. if (glslangIntermediate->getSpv().spv >= glslang::EShTargetSpv_1_4) {
  2171. constituent = builder.createUnaryOp(spv::OpCopyLogical, lType, constituent);
  2172. } else if (builder.isStructType(rType)) {
  2173. std::vector<spv::Id> rTypeConstituents;
  2174. int numrTypeConstituents = builder.getNumTypeConstituents(rType);
  2175. for (int i = 0; i < numrTypeConstituents; ++i) {
  2176. rTypeConstituents.push_back(builder.createCompositeExtract(constituent,
  2177. builder.getContainedTypeId(rType, i), i));
  2178. }
  2179. constituents[c] = createCompositeConstruct(lType, rTypeConstituents);
  2180. } else {
  2181. assert(builder.isArrayType(rType));
  2182. std::vector<spv::Id> rTypeConstituents;
  2183. int numrTypeConstituents = builder.getNumTypeConstituents(rType);
  2184. spv::Id elementRType = builder.getContainedTypeId(rType);
  2185. for (int i = 0; i < numrTypeConstituents; ++i) {
  2186. rTypeConstituents.push_back(builder.createCompositeExtract(constituent, elementRType, i));
  2187. }
  2188. constituents[c] = createCompositeConstruct(lType, rTypeConstituents);
  2189. }
  2190. }
  2191. }
  2192. return builder.createCompositeConstruct(resultTypeId, constituents);
  2193. }
  2194. bool TGlslangToSpvTraverser::visitAggregate(glslang::TVisit visit, glslang::TIntermAggregate* node)
  2195. {
  2196. SpecConstantOpModeGuard spec_constant_op_mode_setter(&builder);
  2197. if (node->getType().getQualifier().isSpecConstant())
  2198. spec_constant_op_mode_setter.turnOnSpecConstantOpMode();
  2199. spv::Id result = spv::NoResult;
  2200. spv::Id invertedType = spv::NoType; // to use to override the natural type of the node
  2201. std::vector<spv::Builder::AccessChain> complexLvalues; // for holding swizzling l-values too complex for
  2202. // SPIR-V, for an out parameter
  2203. std::vector<spv::Id> temporaryLvalues; // temporaries to pass, as proxies for complexLValues
  2204. auto resultType = [&invertedType, &node, this](){ return invertedType != spv::NoType ?
  2205. invertedType :
  2206. convertGlslangToSpvType(node->getType()); };
  2207. // try texturing
  2208. result = createImageTextureFunctionCall(node);
  2209. if (result != spv::NoResult) {
  2210. builder.clearAccessChain();
  2211. builder.setAccessChainRValue(result);
  2212. return false;
  2213. }
  2214. #ifndef GLSLANG_WEB
  2215. else if (node->getOp() == glslang::EOpImageStore ||
  2216. node->getOp() == glslang::EOpImageStoreLod ||
  2217. node->getOp() == glslang::EOpImageAtomicStore) {
  2218. // "imageStore" is a special case, which has no result
  2219. return false;
  2220. }
  2221. #endif
  2222. glslang::TOperator binOp = glslang::EOpNull;
  2223. bool reduceComparison = true;
  2224. bool isMatrix = false;
  2225. bool noReturnValue = false;
  2226. bool atomic = false;
  2227. spv::Builder::AccessChain::CoherentFlags lvalueCoherentFlags;
  2228. assert(node->getOp());
  2229. spv::Decoration precision = TranslatePrecisionDecoration(node->getOperationPrecision());
  2230. switch (node->getOp()) {
  2231. case glslang::EOpSequence:
  2232. {
  2233. if (preVisit)
  2234. ++sequenceDepth;
  2235. else
  2236. --sequenceDepth;
  2237. if (sequenceDepth == 1) {
  2238. // If this is the parent node of all the functions, we want to see them
  2239. // early, so all call points have actual SPIR-V functions to reference.
  2240. // In all cases, still let the traverser visit the children for us.
  2241. makeFunctions(node->getAsAggregate()->getSequence());
  2242. // Also, we want all globals initializers to go into the beginning of the entry point, before
  2243. // anything else gets there, so visit out of order, doing them all now.
  2244. makeGlobalInitializers(node->getAsAggregate()->getSequence());
  2245. //Pre process linker objects for ray tracing stages
  2246. if (glslangIntermediate->isRayTracingStage())
  2247. collectRayTracingLinkerObjects();
  2248. // Initializers are done, don't want to visit again, but functions and link objects need to be processed,
  2249. // so do them manually.
  2250. visitFunctions(node->getAsAggregate()->getSequence());
  2251. return false;
  2252. }
  2253. return true;
  2254. }
  2255. case glslang::EOpLinkerObjects:
  2256. {
  2257. if (visit == glslang::EvPreVisit)
  2258. linkageOnly = true;
  2259. else
  2260. linkageOnly = false;
  2261. return true;
  2262. }
  2263. case glslang::EOpComma:
  2264. {
  2265. // processing from left to right naturally leaves the right-most
  2266. // lying around in the access chain
  2267. glslang::TIntermSequence& glslangOperands = node->getSequence();
  2268. for (int i = 0; i < (int)glslangOperands.size(); ++i)
  2269. glslangOperands[i]->traverse(this);
  2270. return false;
  2271. }
  2272. case glslang::EOpFunction:
  2273. if (visit == glslang::EvPreVisit) {
  2274. if (isShaderEntryPoint(node)) {
  2275. inEntryPoint = true;
  2276. builder.setBuildPoint(shaderEntry->getLastBlock());
  2277. currentFunction = shaderEntry;
  2278. } else {
  2279. handleFunctionEntry(node);
  2280. }
  2281. } else {
  2282. if (inEntryPoint)
  2283. entryPointTerminated = true;
  2284. builder.leaveFunction();
  2285. inEntryPoint = false;
  2286. }
  2287. return true;
  2288. case glslang::EOpParameters:
  2289. // Parameters will have been consumed by EOpFunction processing, but not
  2290. // the body, so we still visited the function node's children, making this
  2291. // child redundant.
  2292. return false;
  2293. case glslang::EOpFunctionCall:
  2294. {
  2295. builder.setLine(node->getLoc().line, node->getLoc().getFilename());
  2296. if (node->isUserDefined())
  2297. result = handleUserFunctionCall(node);
  2298. if (result) {
  2299. builder.clearAccessChain();
  2300. builder.setAccessChainRValue(result);
  2301. } else
  2302. logger->missingFunctionality("missing user function; linker needs to catch that");
  2303. return false;
  2304. }
  2305. case glslang::EOpConstructMat2x2:
  2306. case glslang::EOpConstructMat2x3:
  2307. case glslang::EOpConstructMat2x4:
  2308. case glslang::EOpConstructMat3x2:
  2309. case glslang::EOpConstructMat3x3:
  2310. case glslang::EOpConstructMat3x4:
  2311. case glslang::EOpConstructMat4x2:
  2312. case glslang::EOpConstructMat4x3:
  2313. case glslang::EOpConstructMat4x4:
  2314. case glslang::EOpConstructDMat2x2:
  2315. case glslang::EOpConstructDMat2x3:
  2316. case glslang::EOpConstructDMat2x4:
  2317. case glslang::EOpConstructDMat3x2:
  2318. case glslang::EOpConstructDMat3x3:
  2319. case glslang::EOpConstructDMat3x4:
  2320. case glslang::EOpConstructDMat4x2:
  2321. case glslang::EOpConstructDMat4x3:
  2322. case glslang::EOpConstructDMat4x4:
  2323. case glslang::EOpConstructIMat2x2:
  2324. case glslang::EOpConstructIMat2x3:
  2325. case glslang::EOpConstructIMat2x4:
  2326. case glslang::EOpConstructIMat3x2:
  2327. case glslang::EOpConstructIMat3x3:
  2328. case glslang::EOpConstructIMat3x4:
  2329. case glslang::EOpConstructIMat4x2:
  2330. case glslang::EOpConstructIMat4x3:
  2331. case glslang::EOpConstructIMat4x4:
  2332. case glslang::EOpConstructUMat2x2:
  2333. case glslang::EOpConstructUMat2x3:
  2334. case glslang::EOpConstructUMat2x4:
  2335. case glslang::EOpConstructUMat3x2:
  2336. case glslang::EOpConstructUMat3x3:
  2337. case glslang::EOpConstructUMat3x4:
  2338. case glslang::EOpConstructUMat4x2:
  2339. case glslang::EOpConstructUMat4x3:
  2340. case glslang::EOpConstructUMat4x4:
  2341. case glslang::EOpConstructBMat2x2:
  2342. case glslang::EOpConstructBMat2x3:
  2343. case glslang::EOpConstructBMat2x4:
  2344. case glslang::EOpConstructBMat3x2:
  2345. case glslang::EOpConstructBMat3x3:
  2346. case glslang::EOpConstructBMat3x4:
  2347. case glslang::EOpConstructBMat4x2:
  2348. case glslang::EOpConstructBMat4x3:
  2349. case glslang::EOpConstructBMat4x4:
  2350. case glslang::EOpConstructF16Mat2x2:
  2351. case glslang::EOpConstructF16Mat2x3:
  2352. case glslang::EOpConstructF16Mat2x4:
  2353. case glslang::EOpConstructF16Mat3x2:
  2354. case glslang::EOpConstructF16Mat3x3:
  2355. case glslang::EOpConstructF16Mat3x4:
  2356. case glslang::EOpConstructF16Mat4x2:
  2357. case glslang::EOpConstructF16Mat4x3:
  2358. case glslang::EOpConstructF16Mat4x4:
  2359. isMatrix = true;
  2360. // fall through
  2361. case glslang::EOpConstructFloat:
  2362. case glslang::EOpConstructVec2:
  2363. case glslang::EOpConstructVec3:
  2364. case glslang::EOpConstructVec4:
  2365. case glslang::EOpConstructDouble:
  2366. case glslang::EOpConstructDVec2:
  2367. case glslang::EOpConstructDVec3:
  2368. case glslang::EOpConstructDVec4:
  2369. case glslang::EOpConstructFloat16:
  2370. case glslang::EOpConstructF16Vec2:
  2371. case glslang::EOpConstructF16Vec3:
  2372. case glslang::EOpConstructF16Vec4:
  2373. case glslang::EOpConstructBool:
  2374. case glslang::EOpConstructBVec2:
  2375. case glslang::EOpConstructBVec3:
  2376. case glslang::EOpConstructBVec4:
  2377. case glslang::EOpConstructInt8:
  2378. case glslang::EOpConstructI8Vec2:
  2379. case glslang::EOpConstructI8Vec3:
  2380. case glslang::EOpConstructI8Vec4:
  2381. case glslang::EOpConstructUint8:
  2382. case glslang::EOpConstructU8Vec2:
  2383. case glslang::EOpConstructU8Vec3:
  2384. case glslang::EOpConstructU8Vec4:
  2385. case glslang::EOpConstructInt16:
  2386. case glslang::EOpConstructI16Vec2:
  2387. case glslang::EOpConstructI16Vec3:
  2388. case glslang::EOpConstructI16Vec4:
  2389. case glslang::EOpConstructUint16:
  2390. case glslang::EOpConstructU16Vec2:
  2391. case glslang::EOpConstructU16Vec3:
  2392. case glslang::EOpConstructU16Vec4:
  2393. case glslang::EOpConstructInt:
  2394. case glslang::EOpConstructIVec2:
  2395. case glslang::EOpConstructIVec3:
  2396. case glslang::EOpConstructIVec4:
  2397. case glslang::EOpConstructUint:
  2398. case glslang::EOpConstructUVec2:
  2399. case glslang::EOpConstructUVec3:
  2400. case glslang::EOpConstructUVec4:
  2401. case glslang::EOpConstructInt64:
  2402. case glslang::EOpConstructI64Vec2:
  2403. case glslang::EOpConstructI64Vec3:
  2404. case glslang::EOpConstructI64Vec4:
  2405. case glslang::EOpConstructUint64:
  2406. case glslang::EOpConstructU64Vec2:
  2407. case glslang::EOpConstructU64Vec3:
  2408. case glslang::EOpConstructU64Vec4:
  2409. case glslang::EOpConstructStruct:
  2410. case glslang::EOpConstructTextureSampler:
  2411. case glslang::EOpConstructReference:
  2412. case glslang::EOpConstructCooperativeMatrix:
  2413. {
  2414. builder.setLine(node->getLoc().line, node->getLoc().getFilename());
  2415. std::vector<spv::Id> arguments;
  2416. translateArguments(*node, arguments, lvalueCoherentFlags);
  2417. spv::Id constructed;
  2418. if (node->getOp() == glslang::EOpConstructTextureSampler)
  2419. constructed = builder.createOp(spv::OpSampledImage, resultType(), arguments);
  2420. else if (node->getOp() == glslang::EOpConstructStruct ||
  2421. node->getOp() == glslang::EOpConstructCooperativeMatrix ||
  2422. node->getType().isArray()) {
  2423. std::vector<spv::Id> constituents;
  2424. for (int c = 0; c < (int)arguments.size(); ++c)
  2425. constituents.push_back(arguments[c]);
  2426. constructed = createCompositeConstruct(resultType(), constituents);
  2427. } else if (isMatrix)
  2428. constructed = builder.createMatrixConstructor(precision, arguments, resultType());
  2429. else
  2430. constructed = builder.createConstructor(precision, arguments, resultType());
  2431. if (node->getType().getQualifier().isNonUniform()) {
  2432. builder.addDecoration(constructed, spv::DecorationNonUniformEXT);
  2433. }
  2434. builder.clearAccessChain();
  2435. builder.setAccessChainRValue(constructed);
  2436. return false;
  2437. }
  2438. // These six are component-wise compares with component-wise results.
  2439. // Forward on to createBinaryOperation(), requesting a vector result.
  2440. case glslang::EOpLessThan:
  2441. case glslang::EOpGreaterThan:
  2442. case glslang::EOpLessThanEqual:
  2443. case glslang::EOpGreaterThanEqual:
  2444. case glslang::EOpVectorEqual:
  2445. case glslang::EOpVectorNotEqual:
  2446. {
  2447. // Map the operation to a binary
  2448. binOp = node->getOp();
  2449. reduceComparison = false;
  2450. switch (node->getOp()) {
  2451. case glslang::EOpVectorEqual: binOp = glslang::EOpVectorEqual; break;
  2452. case glslang::EOpVectorNotEqual: binOp = glslang::EOpVectorNotEqual; break;
  2453. default: binOp = node->getOp(); break;
  2454. }
  2455. break;
  2456. }
  2457. case glslang::EOpMul:
  2458. // component-wise matrix multiply
  2459. binOp = glslang::EOpMul;
  2460. break;
  2461. case glslang::EOpOuterProduct:
  2462. // two vectors multiplied to make a matrix
  2463. binOp = glslang::EOpOuterProduct;
  2464. break;
  2465. case glslang::EOpDot:
  2466. {
  2467. // for scalar dot product, use multiply
  2468. glslang::TIntermSequence& glslangOperands = node->getSequence();
  2469. if (glslangOperands[0]->getAsTyped()->getVectorSize() == 1)
  2470. binOp = glslang::EOpMul;
  2471. break;
  2472. }
  2473. case glslang::EOpMod:
  2474. // when an aggregate, this is the floating-point mod built-in function,
  2475. // which can be emitted by the one in createBinaryOperation()
  2476. binOp = glslang::EOpMod;
  2477. break;
  2478. case glslang::EOpEmitVertex:
  2479. case glslang::EOpEndPrimitive:
  2480. case glslang::EOpBarrier:
  2481. case glslang::EOpMemoryBarrier:
  2482. case glslang::EOpMemoryBarrierAtomicCounter:
  2483. case glslang::EOpMemoryBarrierBuffer:
  2484. case glslang::EOpMemoryBarrierImage:
  2485. case glslang::EOpMemoryBarrierShared:
  2486. case glslang::EOpGroupMemoryBarrier:
  2487. case glslang::EOpDeviceMemoryBarrier:
  2488. case glslang::EOpAllMemoryBarrierWithGroupSync:
  2489. case glslang::EOpDeviceMemoryBarrierWithGroupSync:
  2490. case glslang::EOpWorkgroupMemoryBarrier:
  2491. case glslang::EOpWorkgroupMemoryBarrierWithGroupSync:
  2492. case glslang::EOpSubgroupBarrier:
  2493. case glslang::EOpSubgroupMemoryBarrier:
  2494. case glslang::EOpSubgroupMemoryBarrierBuffer:
  2495. case glslang::EOpSubgroupMemoryBarrierImage:
  2496. case glslang::EOpSubgroupMemoryBarrierShared:
  2497. noReturnValue = true;
  2498. // These all have 0 operands and will naturally finish up in the code below for 0 operands
  2499. break;
  2500. case glslang::EOpAtomicAdd:
  2501. case glslang::EOpAtomicMin:
  2502. case glslang::EOpAtomicMax:
  2503. case glslang::EOpAtomicAnd:
  2504. case glslang::EOpAtomicOr:
  2505. case glslang::EOpAtomicXor:
  2506. case glslang::EOpAtomicExchange:
  2507. case glslang::EOpAtomicCompSwap:
  2508. atomic = true;
  2509. break;
  2510. #ifndef GLSLANG_WEB
  2511. case glslang::EOpAtomicStore:
  2512. noReturnValue = true;
  2513. // fallthrough
  2514. case glslang::EOpAtomicLoad:
  2515. atomic = true;
  2516. break;
  2517. case glslang::EOpAtomicCounterAdd:
  2518. case glslang::EOpAtomicCounterSubtract:
  2519. case glslang::EOpAtomicCounterMin:
  2520. case glslang::EOpAtomicCounterMax:
  2521. case glslang::EOpAtomicCounterAnd:
  2522. case glslang::EOpAtomicCounterOr:
  2523. case glslang::EOpAtomicCounterXor:
  2524. case glslang::EOpAtomicCounterExchange:
  2525. case glslang::EOpAtomicCounterCompSwap:
  2526. builder.addExtension("SPV_KHR_shader_atomic_counter_ops");
  2527. builder.addCapability(spv::CapabilityAtomicStorageOps);
  2528. atomic = true;
  2529. break;
  2530. case glslang::EOpAbsDifference:
  2531. case glslang::EOpAddSaturate:
  2532. case glslang::EOpSubSaturate:
  2533. case glslang::EOpAverage:
  2534. case glslang::EOpAverageRounded:
  2535. case glslang::EOpMul32x16:
  2536. builder.addCapability(spv::CapabilityIntegerFunctions2INTEL);
  2537. builder.addExtension("SPV_INTEL_shader_integer_functions2");
  2538. binOp = node->getOp();
  2539. break;
  2540. case glslang::EOpIgnoreIntersectionNV:
  2541. case glslang::EOpTerminateRayNV:
  2542. case glslang::EOpTraceNV:
  2543. case glslang::EOpTraceKHR:
  2544. case glslang::EOpExecuteCallableNV:
  2545. case glslang::EOpExecuteCallableKHR:
  2546. case glslang::EOpWritePackedPrimitiveIndices4x8NV:
  2547. noReturnValue = true;
  2548. break;
  2549. case glslang::EOpRayQueryInitialize:
  2550. case glslang::EOpRayQueryTerminate:
  2551. case glslang::EOpRayQueryGenerateIntersection:
  2552. case glslang::EOpRayQueryConfirmIntersection:
  2553. builder.addExtension("SPV_KHR_ray_query");
  2554. builder.addCapability(spv::CapabilityRayQueryKHR);
  2555. noReturnValue = true;
  2556. break;
  2557. case glslang::EOpRayQueryProceed:
  2558. case glslang::EOpRayQueryGetIntersectionType:
  2559. case glslang::EOpRayQueryGetRayTMin:
  2560. case glslang::EOpRayQueryGetRayFlags:
  2561. case glslang::EOpRayQueryGetIntersectionT:
  2562. case glslang::EOpRayQueryGetIntersectionInstanceCustomIndex:
  2563. case glslang::EOpRayQueryGetIntersectionInstanceId:
  2564. case glslang::EOpRayQueryGetIntersectionInstanceShaderBindingTableRecordOffset:
  2565. case glslang::EOpRayQueryGetIntersectionGeometryIndex:
  2566. case glslang::EOpRayQueryGetIntersectionPrimitiveIndex:
  2567. case glslang::EOpRayQueryGetIntersectionBarycentrics:
  2568. case glslang::EOpRayQueryGetIntersectionFrontFace:
  2569. case glslang::EOpRayQueryGetIntersectionCandidateAABBOpaque:
  2570. case glslang::EOpRayQueryGetIntersectionObjectRayDirection:
  2571. case glslang::EOpRayQueryGetIntersectionObjectRayOrigin:
  2572. case glslang::EOpRayQueryGetWorldRayDirection:
  2573. case glslang::EOpRayQueryGetWorldRayOrigin:
  2574. case glslang::EOpRayQueryGetIntersectionObjectToWorld:
  2575. case glslang::EOpRayQueryGetIntersectionWorldToObject:
  2576. builder.addExtension("SPV_KHR_ray_query");
  2577. builder.addCapability(spv::CapabilityRayQueryKHR);
  2578. break;
  2579. case glslang::EOpCooperativeMatrixLoad:
  2580. case glslang::EOpCooperativeMatrixStore:
  2581. noReturnValue = true;
  2582. break;
  2583. case glslang::EOpBeginInvocationInterlock:
  2584. case glslang::EOpEndInvocationInterlock:
  2585. builder.addExtension(spv::E_SPV_EXT_fragment_shader_interlock);
  2586. noReturnValue = true;
  2587. break;
  2588. #endif
  2589. case glslang::EOpDebugPrintf:
  2590. noReturnValue = true;
  2591. break;
  2592. default:
  2593. break;
  2594. }
  2595. //
  2596. // See if it maps to a regular operation.
  2597. //
  2598. if (binOp != glslang::EOpNull) {
  2599. glslang::TIntermTyped* left = node->getSequence()[0]->getAsTyped();
  2600. glslang::TIntermTyped* right = node->getSequence()[1]->getAsTyped();
  2601. assert(left && right);
  2602. builder.clearAccessChain();
  2603. left->traverse(this);
  2604. spv::Id leftId = accessChainLoad(left->getType());
  2605. builder.clearAccessChain();
  2606. right->traverse(this);
  2607. spv::Id rightId = accessChainLoad(right->getType());
  2608. builder.setLine(node->getLoc().line, node->getLoc().getFilename());
  2609. OpDecorations decorations = { precision,
  2610. TranslateNoContractionDecoration(node->getType().getQualifier()),
  2611. TranslateNonUniformDecoration(node->getType().getQualifier()) };
  2612. result = createBinaryOperation(binOp, decorations,
  2613. resultType(), leftId, rightId,
  2614. left->getType().getBasicType(), reduceComparison);
  2615. // code above should only make binOp that exists in createBinaryOperation
  2616. assert(result != spv::NoResult);
  2617. builder.clearAccessChain();
  2618. builder.setAccessChainRValue(result);
  2619. return false;
  2620. }
  2621. //
  2622. // Create the list of operands.
  2623. //
  2624. glslang::TIntermSequence& glslangOperands = node->getSequence();
  2625. std::vector<spv::Id> operands;
  2626. std::vector<spv::IdImmediate> memoryAccessOperands;
  2627. for (int arg = 0; arg < (int)glslangOperands.size(); ++arg) {
  2628. // special case l-value operands; there are just a few
  2629. bool lvalue = false;
  2630. switch (node->getOp()) {
  2631. case glslang::EOpModf:
  2632. if (arg == 1)
  2633. lvalue = true;
  2634. break;
  2635. case glslang::EOpRayQueryInitialize:
  2636. case glslang::EOpRayQueryTerminate:
  2637. case glslang::EOpRayQueryConfirmIntersection:
  2638. case glslang::EOpRayQueryProceed:
  2639. case glslang::EOpRayQueryGenerateIntersection:
  2640. case glslang::EOpRayQueryGetIntersectionType:
  2641. case glslang::EOpRayQueryGetIntersectionT:
  2642. case glslang::EOpRayQueryGetIntersectionInstanceCustomIndex:
  2643. case glslang::EOpRayQueryGetIntersectionInstanceId:
  2644. case glslang::EOpRayQueryGetIntersectionInstanceShaderBindingTableRecordOffset:
  2645. case glslang::EOpRayQueryGetIntersectionGeometryIndex:
  2646. case glslang::EOpRayQueryGetIntersectionPrimitiveIndex:
  2647. case glslang::EOpRayQueryGetIntersectionBarycentrics:
  2648. case glslang::EOpRayQueryGetIntersectionFrontFace:
  2649. case glslang::EOpRayQueryGetIntersectionObjectRayDirection:
  2650. case glslang::EOpRayQueryGetIntersectionObjectRayOrigin:
  2651. case glslang::EOpRayQueryGetIntersectionObjectToWorld:
  2652. case glslang::EOpRayQueryGetIntersectionWorldToObject:
  2653. if (arg == 0)
  2654. lvalue = true;
  2655. break;
  2656. case glslang::EOpAtomicAdd:
  2657. case glslang::EOpAtomicMin:
  2658. case glslang::EOpAtomicMax:
  2659. case glslang::EOpAtomicAnd:
  2660. case glslang::EOpAtomicOr:
  2661. case glslang::EOpAtomicXor:
  2662. case glslang::EOpAtomicExchange:
  2663. case glslang::EOpAtomicCompSwap:
  2664. if (arg == 0)
  2665. lvalue = true;
  2666. break;
  2667. #ifndef GLSLANG_WEB
  2668. case glslang::EOpFrexp:
  2669. if (arg == 1)
  2670. lvalue = true;
  2671. break;
  2672. case glslang::EOpInterpolateAtSample:
  2673. case glslang::EOpInterpolateAtOffset:
  2674. case glslang::EOpInterpolateAtVertex:
  2675. if (arg == 0) {
  2676. lvalue = true;
  2677. // Does it need a swizzle inversion? If so, evaluation is inverted;
  2678. // operate first on the swizzle base, then apply the swizzle.
  2679. // That is, we transform
  2680. //
  2681. // interpolate(v.zy) -> interpolate(v).zy
  2682. //
  2683. if (glslangOperands[0]->getAsOperator() &&
  2684. glslangOperands[0]->getAsOperator()->getOp() == glslang::EOpVectorSwizzle)
  2685. invertedType = convertGlslangToSpvType(
  2686. glslangOperands[0]->getAsBinaryNode()->getLeft()->getType());
  2687. }
  2688. break;
  2689. case glslang::EOpAtomicLoad:
  2690. case glslang::EOpAtomicStore:
  2691. case glslang::EOpAtomicCounterAdd:
  2692. case glslang::EOpAtomicCounterSubtract:
  2693. case glslang::EOpAtomicCounterMin:
  2694. case glslang::EOpAtomicCounterMax:
  2695. case glslang::EOpAtomicCounterAnd:
  2696. case glslang::EOpAtomicCounterOr:
  2697. case glslang::EOpAtomicCounterXor:
  2698. case glslang::EOpAtomicCounterExchange:
  2699. case glslang::EOpAtomicCounterCompSwap:
  2700. if (arg == 0)
  2701. lvalue = true;
  2702. break;
  2703. case glslang::EOpAddCarry:
  2704. case glslang::EOpSubBorrow:
  2705. if (arg == 2)
  2706. lvalue = true;
  2707. break;
  2708. case glslang::EOpUMulExtended:
  2709. case glslang::EOpIMulExtended:
  2710. if (arg >= 2)
  2711. lvalue = true;
  2712. break;
  2713. case glslang::EOpCooperativeMatrixLoad:
  2714. if (arg == 0 || arg == 1)
  2715. lvalue = true;
  2716. break;
  2717. case glslang::EOpCooperativeMatrixStore:
  2718. if (arg == 1)
  2719. lvalue = true;
  2720. break;
  2721. #endif
  2722. default:
  2723. break;
  2724. }
  2725. builder.clearAccessChain();
  2726. if (invertedType != spv::NoType && arg == 0)
  2727. glslangOperands[0]->getAsBinaryNode()->getLeft()->traverse(this);
  2728. else
  2729. glslangOperands[arg]->traverse(this);
  2730. #ifndef GLSLANG_WEB
  2731. if (node->getOp() == glslang::EOpCooperativeMatrixLoad ||
  2732. node->getOp() == glslang::EOpCooperativeMatrixStore) {
  2733. if (arg == 1) {
  2734. // fold "element" parameter into the access chain
  2735. spv::Builder::AccessChain save = builder.getAccessChain();
  2736. builder.clearAccessChain();
  2737. glslangOperands[2]->traverse(this);
  2738. spv::Id elementId = accessChainLoad(glslangOperands[2]->getAsTyped()->getType());
  2739. builder.setAccessChain(save);
  2740. // Point to the first element of the array.
  2741. builder.accessChainPush(elementId,
  2742. TranslateCoherent(glslangOperands[arg]->getAsTyped()->getType()),
  2743. glslangOperands[arg]->getAsTyped()->getType().getBufferReferenceAlignment());
  2744. spv::Builder::AccessChain::CoherentFlags coherentFlags = builder.getAccessChain().coherentFlags;
  2745. unsigned int alignment = builder.getAccessChain().alignment;
  2746. int memoryAccess = TranslateMemoryAccess(coherentFlags);
  2747. if (node->getOp() == glslang::EOpCooperativeMatrixLoad)
  2748. memoryAccess &= ~spv::MemoryAccessMakePointerAvailableKHRMask;
  2749. if (node->getOp() == glslang::EOpCooperativeMatrixStore)
  2750. memoryAccess &= ~spv::MemoryAccessMakePointerVisibleKHRMask;
  2751. if (builder.getStorageClass(builder.getAccessChain().base) ==
  2752. spv::StorageClassPhysicalStorageBufferEXT) {
  2753. memoryAccess = (spv::MemoryAccessMask)(memoryAccess | spv::MemoryAccessAlignedMask);
  2754. }
  2755. memoryAccessOperands.push_back(spv::IdImmediate(false, memoryAccess));
  2756. if (memoryAccess & spv::MemoryAccessAlignedMask) {
  2757. memoryAccessOperands.push_back(spv::IdImmediate(false, alignment));
  2758. }
  2759. if (memoryAccess &
  2760. (spv::MemoryAccessMakePointerAvailableKHRMask | spv::MemoryAccessMakePointerVisibleKHRMask)) {
  2761. memoryAccessOperands.push_back(spv::IdImmediate(true,
  2762. builder.makeUintConstant(TranslateMemoryScope(coherentFlags))));
  2763. }
  2764. } else if (arg == 2) {
  2765. continue;
  2766. }
  2767. }
  2768. #endif
  2769. // for l-values, pass the address, for r-values, pass the value
  2770. if (lvalue) {
  2771. if (invertedType == spv::NoType && !builder.isSpvLvalue()) {
  2772. // SPIR-V cannot represent an l-value containing a swizzle that doesn't
  2773. // reduce to a simple access chain. So, we need a temporary vector to
  2774. // receive the result, and must later swizzle that into the original
  2775. // l-value.
  2776. complexLvalues.push_back(builder.getAccessChain());
  2777. temporaryLvalues.push_back(builder.createVariable(
  2778. spv::NoPrecision, spv::StorageClassFunction,
  2779. builder.accessChainGetInferredType(), "swizzleTemp"));
  2780. operands.push_back(temporaryLvalues.back());
  2781. } else {
  2782. operands.push_back(builder.accessChainGetLValue());
  2783. }
  2784. lvalueCoherentFlags = builder.getAccessChain().coherentFlags;
  2785. lvalueCoherentFlags |= TranslateCoherent(glslangOperands[arg]->getAsTyped()->getType());
  2786. } else {
  2787. builder.setLine(node->getLoc().line, node->getLoc().getFilename());
  2788. glslang::TOperator glslangOp = node->getOp();
  2789. if (arg == 1 &&
  2790. (glslangOp == glslang::EOpRayQueryGetIntersectionType ||
  2791. glslangOp == glslang::EOpRayQueryGetIntersectionT ||
  2792. glslangOp == glslang::EOpRayQueryGetIntersectionInstanceCustomIndex ||
  2793. glslangOp == glslang::EOpRayQueryGetIntersectionInstanceId ||
  2794. glslangOp == glslang::EOpRayQueryGetIntersectionInstanceShaderBindingTableRecordOffset ||
  2795. glslangOp == glslang::EOpRayQueryGetIntersectionGeometryIndex ||
  2796. glslangOp == glslang::EOpRayQueryGetIntersectionPrimitiveIndex ||
  2797. glslangOp == glslang::EOpRayQueryGetIntersectionBarycentrics ||
  2798. glslangOp == glslang::EOpRayQueryGetIntersectionFrontFace ||
  2799. glslangOp == glslang::EOpRayQueryGetIntersectionObjectRayDirection ||
  2800. glslangOp == glslang::EOpRayQueryGetIntersectionObjectRayOrigin ||
  2801. glslangOp == glslang::EOpRayQueryGetIntersectionObjectToWorld ||
  2802. glslangOp == glslang::EOpRayQueryGetIntersectionWorldToObject
  2803. )) {
  2804. bool cond = glslangOperands[arg]->getAsConstantUnion()->getConstArray()[0].getBConst();
  2805. operands.push_back(builder.makeIntConstant(cond ? 1 : 0));
  2806. } else if ((arg == 10 && glslangOp == glslang::EOpTraceKHR) ||
  2807. (arg == 1 && glslangOp == glslang::EOpExecuteCallableKHR)) {
  2808. const int opdNum = glslangOp == glslang::EOpTraceKHR ? 10 : 1;
  2809. const int set = glslangOp == glslang::EOpTraceKHR ? 0 : 1;
  2810. const int location = glslangOperands[opdNum]->getAsConstantUnion()->getConstArray()[0].getUConst();
  2811. auto itNode = locationToSymbol[set].find(location);
  2812. visitSymbol(itNode->second);
  2813. spv::Id symId = getSymbolId(itNode->second);
  2814. operands.push_back(symId);
  2815. } else {
  2816. operands.push_back(accessChainLoad(glslangOperands[arg]->getAsTyped()->getType()));
  2817. }
  2818. }
  2819. }
  2820. builder.setLine(node->getLoc().line, node->getLoc().getFilename());
  2821. #ifndef GLSLANG_WEB
  2822. if (node->getOp() == glslang::EOpCooperativeMatrixLoad) {
  2823. std::vector<spv::IdImmediate> idImmOps;
  2824. idImmOps.push_back(spv::IdImmediate(true, operands[1])); // buf
  2825. idImmOps.push_back(spv::IdImmediate(true, operands[2])); // stride
  2826. idImmOps.push_back(spv::IdImmediate(true, operands[3])); // colMajor
  2827. idImmOps.insert(idImmOps.end(), memoryAccessOperands.begin(), memoryAccessOperands.end());
  2828. // get the pointee type
  2829. spv::Id typeId = builder.getContainedTypeId(builder.getTypeId(operands[0]));
  2830. assert(builder.isCooperativeMatrixType(typeId));
  2831. // do the op
  2832. spv::Id result = builder.createOp(spv::OpCooperativeMatrixLoadNV, typeId, idImmOps);
  2833. // store the result to the pointer (out param 'm')
  2834. builder.createStore(result, operands[0]);
  2835. result = 0;
  2836. } else if (node->getOp() == glslang::EOpCooperativeMatrixStore) {
  2837. std::vector<spv::IdImmediate> idImmOps;
  2838. idImmOps.push_back(spv::IdImmediate(true, operands[1])); // buf
  2839. idImmOps.push_back(spv::IdImmediate(true, operands[0])); // object
  2840. idImmOps.push_back(spv::IdImmediate(true, operands[2])); // stride
  2841. idImmOps.push_back(spv::IdImmediate(true, operands[3])); // colMajor
  2842. idImmOps.insert(idImmOps.end(), memoryAccessOperands.begin(), memoryAccessOperands.end());
  2843. builder.createNoResultOp(spv::OpCooperativeMatrixStoreNV, idImmOps);
  2844. result = 0;
  2845. } else
  2846. #endif
  2847. if (atomic) {
  2848. // Handle all atomics
  2849. result = createAtomicOperation(node->getOp(), precision, resultType(), operands, node->getBasicType(),
  2850. lvalueCoherentFlags);
  2851. } else if (node->getOp() == glslang::EOpDebugPrintf) {
  2852. if (!nonSemanticDebugPrintf) {
  2853. nonSemanticDebugPrintf = builder.import("NonSemantic.DebugPrintf");
  2854. }
  2855. result = builder.createBuiltinCall(builder.makeVoidType(), nonSemanticDebugPrintf, spv::NonSemanticDebugPrintfDebugPrintf, operands);
  2856. builder.addExtension(spv::E_SPV_KHR_non_semantic_info);
  2857. } else {
  2858. // Pass through to generic operations.
  2859. switch (glslangOperands.size()) {
  2860. case 0:
  2861. result = createNoArgOperation(node->getOp(), precision, resultType());
  2862. break;
  2863. case 1:
  2864. {
  2865. OpDecorations decorations = { precision,
  2866. TranslateNoContractionDecoration(node->getType().getQualifier()),
  2867. TranslateNonUniformDecoration(node->getType().getQualifier()) };
  2868. result = createUnaryOperation(
  2869. node->getOp(), decorations,
  2870. resultType(), operands.front(),
  2871. glslangOperands[0]->getAsTyped()->getBasicType(), lvalueCoherentFlags);
  2872. }
  2873. break;
  2874. default:
  2875. result = createMiscOperation(node->getOp(), precision, resultType(), operands, node->getBasicType());
  2876. break;
  2877. }
  2878. if (invertedType != spv::NoResult)
  2879. result = createInvertedSwizzle(precision, *glslangOperands[0]->getAsBinaryNode(), result);
  2880. for (unsigned int i = 0; i < temporaryLvalues.size(); ++i) {
  2881. builder.setAccessChain(complexLvalues[i]);
  2882. builder.accessChainStore(builder.createLoad(temporaryLvalues[i], spv::NoPrecision),
  2883. TranslateNonUniformDecoration(complexLvalues[i].coherentFlags));
  2884. }
  2885. }
  2886. if (noReturnValue)
  2887. return false;
  2888. if (! result) {
  2889. logger->missingFunctionality("unknown glslang aggregate");
  2890. return true; // pick up a child as a placeholder operand
  2891. } else {
  2892. builder.clearAccessChain();
  2893. builder.setAccessChainRValue(result);
  2894. return false;
  2895. }
  2896. }
  2897. // This path handles both if-then-else and ?:
  2898. // The if-then-else has a node type of void, while
  2899. // ?: has either a void or a non-void node type
  2900. //
  2901. // Leaving the result, when not void:
  2902. // GLSL only has r-values as the result of a :?, but
  2903. // if we have an l-value, that can be more efficient if it will
  2904. // become the base of a complex r-value expression, because the
  2905. // next layer copies r-values into memory to use the access-chain mechanism
  2906. bool TGlslangToSpvTraverser::visitSelection(glslang::TVisit /* visit */, glslang::TIntermSelection* node)
  2907. {
  2908. // see if OpSelect can handle it
  2909. const auto isOpSelectable = [&]() {
  2910. if (node->getBasicType() == glslang::EbtVoid)
  2911. return false;
  2912. // OpSelect can do all other types starting with SPV 1.4
  2913. if (glslangIntermediate->getSpv().spv < glslang::EShTargetSpv_1_4) {
  2914. // pre-1.4, only scalars and vectors can be handled
  2915. if ((!node->getType().isScalar() && !node->getType().isVector()))
  2916. return false;
  2917. }
  2918. return true;
  2919. };
  2920. // See if it simple and safe, or required, to execute both sides.
  2921. // Crucially, side effects must be either semantically required or avoided,
  2922. // and there are performance trade-offs.
  2923. // Return true if required or a good idea (and safe) to execute both sides,
  2924. // false otherwise.
  2925. const auto bothSidesPolicy = [&]() -> bool {
  2926. // do we have both sides?
  2927. if (node->getTrueBlock() == nullptr ||
  2928. node->getFalseBlock() == nullptr)
  2929. return false;
  2930. // required? (unless we write additional code to look for side effects
  2931. // and make performance trade-offs if none are present)
  2932. if (!node->getShortCircuit())
  2933. return true;
  2934. // if not required to execute both, decide based on performance/practicality...
  2935. if (!isOpSelectable())
  2936. return false;
  2937. assert(node->getType() == node->getTrueBlock() ->getAsTyped()->getType() &&
  2938. node->getType() == node->getFalseBlock()->getAsTyped()->getType());
  2939. // return true if a single operand to ? : is okay for OpSelect
  2940. const auto operandOkay = [](glslang::TIntermTyped* node) {
  2941. return node->getAsSymbolNode() || node->getType().getQualifier().isConstant();
  2942. };
  2943. return operandOkay(node->getTrueBlock() ->getAsTyped()) &&
  2944. operandOkay(node->getFalseBlock()->getAsTyped());
  2945. };
  2946. spv::Id result = spv::NoResult; // upcoming result selecting between trueValue and falseValue
  2947. // emit the condition before doing anything with selection
  2948. node->getCondition()->traverse(this);
  2949. spv::Id condition = accessChainLoad(node->getCondition()->getType());
  2950. // Find a way of executing both sides and selecting the right result.
  2951. const auto executeBothSides = [&]() -> void {
  2952. // execute both sides
  2953. node->getTrueBlock()->traverse(this);
  2954. spv::Id trueValue = accessChainLoad(node->getTrueBlock()->getAsTyped()->getType());
  2955. node->getFalseBlock()->traverse(this);
  2956. spv::Id falseValue = accessChainLoad(node->getTrueBlock()->getAsTyped()->getType());
  2957. builder.setLine(node->getLoc().line, node->getLoc().getFilename());
  2958. // done if void
  2959. if (node->getBasicType() == glslang::EbtVoid)
  2960. return;
  2961. // emit code to select between trueValue and falseValue
  2962. // see if OpSelect can handle it
  2963. if (isOpSelectable()) {
  2964. // Emit OpSelect for this selection.
  2965. // smear condition to vector, if necessary (AST is always scalar)
  2966. // Before 1.4, smear like for mix(), starting with 1.4, keep it scalar
  2967. if (glslangIntermediate->getSpv().spv < glslang::EShTargetSpv_1_4 && builder.isVector(trueValue)) {
  2968. condition = builder.smearScalar(spv::NoPrecision, condition,
  2969. builder.makeVectorType(builder.makeBoolType(),
  2970. builder.getNumComponents(trueValue)));
  2971. }
  2972. // OpSelect
  2973. result = builder.createTriOp(spv::OpSelect,
  2974. convertGlslangToSpvType(node->getType()), condition,
  2975. trueValue, falseValue);
  2976. builder.clearAccessChain();
  2977. builder.setAccessChainRValue(result);
  2978. } else {
  2979. // We need control flow to select the result.
  2980. // TODO: Once SPIR-V OpSelect allows arbitrary types, eliminate this path.
  2981. result = builder.createVariable(TranslatePrecisionDecoration(node->getType()),
  2982. spv::StorageClassFunction, convertGlslangToSpvType(node->getType()));
  2983. // Selection control:
  2984. const spv::SelectionControlMask control = TranslateSelectionControl(*node);
  2985. // make an "if" based on the value created by the condition
  2986. spv::Builder::If ifBuilder(condition, control, builder);
  2987. // emit the "then" statement
  2988. builder.createStore(trueValue, result);
  2989. ifBuilder.makeBeginElse();
  2990. // emit the "else" statement
  2991. builder.createStore(falseValue, result);
  2992. // finish off the control flow
  2993. ifBuilder.makeEndIf();
  2994. builder.clearAccessChain();
  2995. builder.setAccessChainLValue(result);
  2996. }
  2997. };
  2998. // Execute the one side needed, as per the condition
  2999. const auto executeOneSide = [&]() {
  3000. // Always emit control flow.
  3001. if (node->getBasicType() != glslang::EbtVoid) {
  3002. result = builder.createVariable(TranslatePrecisionDecoration(node->getType()), spv::StorageClassFunction,
  3003. convertGlslangToSpvType(node->getType()));
  3004. }
  3005. // Selection control:
  3006. const spv::SelectionControlMask control = TranslateSelectionControl(*node);
  3007. // make an "if" based on the value created by the condition
  3008. spv::Builder::If ifBuilder(condition, control, builder);
  3009. // emit the "then" statement
  3010. if (node->getTrueBlock() != nullptr) {
  3011. node->getTrueBlock()->traverse(this);
  3012. if (result != spv::NoResult)
  3013. builder.createStore(accessChainLoad(node->getTrueBlock()->getAsTyped()->getType()), result);
  3014. }
  3015. if (node->getFalseBlock() != nullptr) {
  3016. ifBuilder.makeBeginElse();
  3017. // emit the "else" statement
  3018. node->getFalseBlock()->traverse(this);
  3019. if (result != spv::NoResult)
  3020. builder.createStore(accessChainLoad(node->getFalseBlock()->getAsTyped()->getType()), result);
  3021. }
  3022. // finish off the control flow
  3023. ifBuilder.makeEndIf();
  3024. if (result != spv::NoResult) {
  3025. builder.clearAccessChain();
  3026. builder.setAccessChainLValue(result);
  3027. }
  3028. };
  3029. // Try for OpSelect (or a requirement to execute both sides)
  3030. if (bothSidesPolicy()) {
  3031. SpecConstantOpModeGuard spec_constant_op_mode_setter(&builder);
  3032. if (node->getType().getQualifier().isSpecConstant())
  3033. spec_constant_op_mode_setter.turnOnSpecConstantOpMode();
  3034. executeBothSides();
  3035. } else
  3036. executeOneSide();
  3037. return false;
  3038. }
  3039. bool TGlslangToSpvTraverser::visitSwitch(glslang::TVisit /* visit */, glslang::TIntermSwitch* node)
  3040. {
  3041. // emit and get the condition before doing anything with switch
  3042. node->getCondition()->traverse(this);
  3043. spv::Id selector = accessChainLoad(node->getCondition()->getAsTyped()->getType());
  3044. // Selection control:
  3045. const spv::SelectionControlMask control = TranslateSwitchControl(*node);
  3046. // browse the children to sort out code segments
  3047. int defaultSegment = -1;
  3048. std::vector<TIntermNode*> codeSegments;
  3049. glslang::TIntermSequence& sequence = node->getBody()->getSequence();
  3050. std::vector<int> caseValues;
  3051. std::vector<int> valueIndexToSegment(sequence.size()); // note: probably not all are used, it is an overestimate
  3052. for (glslang::TIntermSequence::iterator c = sequence.begin(); c != sequence.end(); ++c) {
  3053. TIntermNode* child = *c;
  3054. if (child->getAsBranchNode() && child->getAsBranchNode()->getFlowOp() == glslang::EOpDefault)
  3055. defaultSegment = (int)codeSegments.size();
  3056. else if (child->getAsBranchNode() && child->getAsBranchNode()->getFlowOp() == glslang::EOpCase) {
  3057. valueIndexToSegment[caseValues.size()] = (int)codeSegments.size();
  3058. caseValues.push_back(child->getAsBranchNode()->getExpression()->getAsConstantUnion()
  3059. ->getConstArray()[0].getIConst());
  3060. } else
  3061. codeSegments.push_back(child);
  3062. }
  3063. // handle the case where the last code segment is missing, due to no code
  3064. // statements between the last case and the end of the switch statement
  3065. if ((caseValues.size() && (int)codeSegments.size() == valueIndexToSegment[caseValues.size() - 1]) ||
  3066. (int)codeSegments.size() == defaultSegment)
  3067. codeSegments.push_back(nullptr);
  3068. // make the switch statement
  3069. std::vector<spv::Block*> segmentBlocks; // returned, as the blocks allocated in the call
  3070. builder.makeSwitch(selector, control, (int)codeSegments.size(), caseValues, valueIndexToSegment, defaultSegment,
  3071. segmentBlocks);
  3072. // emit all the code in the segments
  3073. breakForLoop.push(false);
  3074. for (unsigned int s = 0; s < codeSegments.size(); ++s) {
  3075. builder.nextSwitchSegment(segmentBlocks, s);
  3076. if (codeSegments[s])
  3077. codeSegments[s]->traverse(this);
  3078. else
  3079. builder.addSwitchBreak();
  3080. }
  3081. breakForLoop.pop();
  3082. builder.endSwitch(segmentBlocks);
  3083. return false;
  3084. }
  3085. void TGlslangToSpvTraverser::visitConstantUnion(glslang::TIntermConstantUnion* node)
  3086. {
  3087. int nextConst = 0;
  3088. spv::Id constant = createSpvConstantFromConstUnionArray(node->getType(), node->getConstArray(), nextConst, false);
  3089. builder.clearAccessChain();
  3090. builder.setAccessChainRValue(constant);
  3091. }
  3092. bool TGlslangToSpvTraverser::visitLoop(glslang::TVisit /* visit */, glslang::TIntermLoop* node)
  3093. {
  3094. auto blocks = builder.makeNewLoop();
  3095. builder.createBranch(&blocks.head);
  3096. // Loop control:
  3097. std::vector<unsigned int> operands;
  3098. const spv::LoopControlMask control = TranslateLoopControl(*node, operands);
  3099. // Spec requires back edges to target header blocks, and every header block
  3100. // must dominate its merge block. Make a header block first to ensure these
  3101. // conditions are met. By definition, it will contain OpLoopMerge, followed
  3102. // by a block-ending branch. But we don't want to put any other body/test
  3103. // instructions in it, since the body/test may have arbitrary instructions,
  3104. // including merges of its own.
  3105. builder.setLine(node->getLoc().line, node->getLoc().getFilename());
  3106. builder.setBuildPoint(&blocks.head);
  3107. builder.createLoopMerge(&blocks.merge, &blocks.continue_target, control, operands);
  3108. if (node->testFirst() && node->getTest()) {
  3109. spv::Block& test = builder.makeNewBlock();
  3110. builder.createBranch(&test);
  3111. builder.setBuildPoint(&test);
  3112. node->getTest()->traverse(this);
  3113. spv::Id condition = accessChainLoad(node->getTest()->getType());
  3114. builder.createConditionalBranch(condition, &blocks.body, &blocks.merge);
  3115. builder.setBuildPoint(&blocks.body);
  3116. breakForLoop.push(true);
  3117. if (node->getBody())
  3118. node->getBody()->traverse(this);
  3119. builder.createBranch(&blocks.continue_target);
  3120. breakForLoop.pop();
  3121. builder.setBuildPoint(&blocks.continue_target);
  3122. if (node->getTerminal())
  3123. node->getTerminal()->traverse(this);
  3124. builder.createBranch(&blocks.head);
  3125. } else {
  3126. builder.setLine(node->getLoc().line, node->getLoc().getFilename());
  3127. builder.createBranch(&blocks.body);
  3128. breakForLoop.push(true);
  3129. builder.setBuildPoint(&blocks.body);
  3130. if (node->getBody())
  3131. node->getBody()->traverse(this);
  3132. builder.createBranch(&blocks.continue_target);
  3133. breakForLoop.pop();
  3134. builder.setBuildPoint(&blocks.continue_target);
  3135. if (node->getTerminal())
  3136. node->getTerminal()->traverse(this);
  3137. if (node->getTest()) {
  3138. node->getTest()->traverse(this);
  3139. spv::Id condition =
  3140. accessChainLoad(node->getTest()->getType());
  3141. builder.createConditionalBranch(condition, &blocks.head, &blocks.merge);
  3142. } else {
  3143. // TODO: unless there was a break/return/discard instruction
  3144. // somewhere in the body, this is an infinite loop, so we should
  3145. // issue a warning.
  3146. builder.createBranch(&blocks.head);
  3147. }
  3148. }
  3149. builder.setBuildPoint(&blocks.merge);
  3150. builder.closeLoop();
  3151. return false;
  3152. }
  3153. bool TGlslangToSpvTraverser::visitBranch(glslang::TVisit /* visit */, glslang::TIntermBranch* node)
  3154. {
  3155. if (node->getExpression())
  3156. node->getExpression()->traverse(this);
  3157. builder.setLine(node->getLoc().line, node->getLoc().getFilename());
  3158. switch (node->getFlowOp()) {
  3159. case glslang::EOpKill:
  3160. builder.makeStatementTerminator(spv::OpKill, "post-discard");
  3161. break;
  3162. case glslang::EOpTerminateInvocation:
  3163. builder.addExtension(spv::E_SPV_KHR_terminate_invocation);
  3164. builder.makeStatementTerminator(spv::OpTerminateInvocation, "post-terminate-invocation");
  3165. break;
  3166. case glslang::EOpBreak:
  3167. if (breakForLoop.top())
  3168. builder.createLoopExit();
  3169. else
  3170. builder.addSwitchBreak();
  3171. break;
  3172. case glslang::EOpContinue:
  3173. builder.createLoopContinue();
  3174. break;
  3175. case glslang::EOpReturn:
  3176. if (node->getExpression() != nullptr) {
  3177. const glslang::TType& glslangReturnType = node->getExpression()->getType();
  3178. spv::Id returnId = accessChainLoad(glslangReturnType);
  3179. if (builder.getTypeId(returnId) != currentFunction->getReturnType() ||
  3180. TranslatePrecisionDecoration(glslangReturnType) != currentFunction->getReturnPrecision()) {
  3181. builder.clearAccessChain();
  3182. spv::Id copyId = builder.createVariable(currentFunction->getReturnPrecision(),
  3183. spv::StorageClassFunction, currentFunction->getReturnType());
  3184. builder.setAccessChainLValue(copyId);
  3185. multiTypeStore(glslangReturnType, returnId);
  3186. returnId = builder.createLoad(copyId, currentFunction->getReturnPrecision());
  3187. }
  3188. builder.makeReturn(false, returnId);
  3189. } else
  3190. builder.makeReturn(false);
  3191. builder.clearAccessChain();
  3192. break;
  3193. #ifndef GLSLANG_WEB
  3194. case glslang::EOpDemote:
  3195. builder.createNoResultOp(spv::OpDemoteToHelperInvocationEXT);
  3196. builder.addExtension(spv::E_SPV_EXT_demote_to_helper_invocation);
  3197. builder.addCapability(spv::CapabilityDemoteToHelperInvocationEXT);
  3198. break;
  3199. case glslang::EOpTerminateRayKHR:
  3200. builder.makeStatementTerminator(spv::OpTerminateRayKHR, "post-terminateRayKHR");
  3201. break;
  3202. case glslang::EOpIgnoreIntersectionKHR:
  3203. builder.makeStatementTerminator(spv::OpIgnoreIntersectionKHR, "post-ignoreIntersectionKHR");
  3204. break;
  3205. #endif
  3206. default:
  3207. assert(0);
  3208. break;
  3209. }
  3210. return false;
  3211. }
  3212. spv::Id TGlslangToSpvTraverser::createSpvVariable(const glslang::TIntermSymbol* node, spv::Id forcedType)
  3213. {
  3214. // First, steer off constants, which are not SPIR-V variables, but
  3215. // can still have a mapping to a SPIR-V Id.
  3216. // This includes specialization constants.
  3217. if (node->getQualifier().isConstant()) {
  3218. spv::Id result = createSpvConstant(*node);
  3219. if (result != spv::NoResult)
  3220. return result;
  3221. }
  3222. // Now, handle actual variables
  3223. spv::StorageClass storageClass = TranslateStorageClass(node->getType());
  3224. spv::Id spvType = forcedType == spv::NoType ? convertGlslangToSpvType(node->getType())
  3225. : forcedType;
  3226. const bool contains16BitType = node->getType().contains16BitFloat() ||
  3227. node->getType().contains16BitInt();
  3228. if (contains16BitType) {
  3229. switch (storageClass) {
  3230. case spv::StorageClassInput:
  3231. case spv::StorageClassOutput:
  3232. builder.addIncorporatedExtension(spv::E_SPV_KHR_16bit_storage, spv::Spv_1_3);
  3233. builder.addCapability(spv::CapabilityStorageInputOutput16);
  3234. break;
  3235. case spv::StorageClassUniform:
  3236. builder.addIncorporatedExtension(spv::E_SPV_KHR_16bit_storage, spv::Spv_1_3);
  3237. if (node->getType().getQualifier().storage == glslang::EvqBuffer)
  3238. builder.addCapability(spv::CapabilityStorageUniformBufferBlock16);
  3239. else
  3240. builder.addCapability(spv::CapabilityStorageUniform16);
  3241. break;
  3242. #ifndef GLSLANG_WEB
  3243. case spv::StorageClassPushConstant:
  3244. builder.addIncorporatedExtension(spv::E_SPV_KHR_16bit_storage, spv::Spv_1_3);
  3245. builder.addCapability(spv::CapabilityStoragePushConstant16);
  3246. break;
  3247. case spv::StorageClassStorageBuffer:
  3248. case spv::StorageClassPhysicalStorageBufferEXT:
  3249. builder.addIncorporatedExtension(spv::E_SPV_KHR_16bit_storage, spv::Spv_1_3);
  3250. builder.addCapability(spv::CapabilityStorageUniformBufferBlock16);
  3251. break;
  3252. #endif
  3253. default:
  3254. if (storageClass == spv::StorageClassWorkgroup &&
  3255. node->getType().getBasicType() == glslang::EbtBlock) {
  3256. builder.addCapability(spv::CapabilityWorkgroupMemoryExplicitLayout16BitAccessKHR);
  3257. break;
  3258. }
  3259. if (node->getType().contains16BitFloat())
  3260. builder.addCapability(spv::CapabilityFloat16);
  3261. if (node->getType().contains16BitInt())
  3262. builder.addCapability(spv::CapabilityInt16);
  3263. break;
  3264. }
  3265. }
  3266. if (node->getType().contains8BitInt()) {
  3267. if (storageClass == spv::StorageClassPushConstant) {
  3268. builder.addIncorporatedExtension(spv::E_SPV_KHR_8bit_storage, spv::Spv_1_5);
  3269. builder.addCapability(spv::CapabilityStoragePushConstant8);
  3270. } else if (storageClass == spv::StorageClassUniform) {
  3271. builder.addIncorporatedExtension(spv::E_SPV_KHR_8bit_storage, spv::Spv_1_5);
  3272. builder.addCapability(spv::CapabilityUniformAndStorageBuffer8BitAccess);
  3273. } else if (storageClass == spv::StorageClassStorageBuffer) {
  3274. builder.addIncorporatedExtension(spv::E_SPV_KHR_8bit_storage, spv::Spv_1_5);
  3275. builder.addCapability(spv::CapabilityStorageBuffer8BitAccess);
  3276. } else if (storageClass == spv::StorageClassWorkgroup &&
  3277. node->getType().getBasicType() == glslang::EbtBlock) {
  3278. builder.addCapability(spv::CapabilityWorkgroupMemoryExplicitLayout8BitAccessKHR);
  3279. } else {
  3280. builder.addCapability(spv::CapabilityInt8);
  3281. }
  3282. }
  3283. const char* name = node->getName().c_str();
  3284. if (glslang::IsAnonymous(name))
  3285. name = "";
  3286. spv::Id initializer = spv::NoResult;
  3287. if (node->getType().getQualifier().storage == glslang::EvqUniform && !node->getConstArray().empty()) {
  3288. int nextConst = 0;
  3289. initializer = createSpvConstantFromConstUnionArray(node->getType(),
  3290. node->getConstArray(),
  3291. nextConst,
  3292. false /* specConst */);
  3293. } else if (node->getType().getQualifier().isNullInit()) {
  3294. initializer = builder.makeNullConstant(spvType);
  3295. }
  3296. return builder.createVariable(spv::NoPrecision, storageClass, spvType, name, initializer);
  3297. }
  3298. // Return type Id of the sampled type.
  3299. spv::Id TGlslangToSpvTraverser::getSampledType(const glslang::TSampler& sampler)
  3300. {
  3301. switch (sampler.type) {
  3302. case glslang::EbtInt: return builder.makeIntType(32);
  3303. case glslang::EbtUint: return builder.makeUintType(32);
  3304. case glslang::EbtFloat: return builder.makeFloatType(32);
  3305. #ifndef GLSLANG_WEB
  3306. case glslang::EbtFloat16:
  3307. builder.addExtension(spv::E_SPV_AMD_gpu_shader_half_float_fetch);
  3308. builder.addCapability(spv::CapabilityFloat16ImageAMD);
  3309. return builder.makeFloatType(16);
  3310. case glslang::EbtInt64: return builder.makeIntType(64);
  3311. builder.addExtension(spv::E_SPV_EXT_shader_image_int64);
  3312. builder.addCapability(spv::CapabilityFloat16ImageAMD);
  3313. case glslang::EbtUint64: return builder.makeUintType(64);
  3314. builder.addExtension(spv::E_SPV_EXT_shader_image_int64);
  3315. builder.addCapability(spv::CapabilityFloat16ImageAMD);
  3316. #endif
  3317. default:
  3318. assert(0);
  3319. return builder.makeFloatType(32);
  3320. }
  3321. }
  3322. // If node is a swizzle operation, return the type that should be used if
  3323. // the swizzle base is first consumed by another operation, before the swizzle
  3324. // is applied.
  3325. spv::Id TGlslangToSpvTraverser::getInvertedSwizzleType(const glslang::TIntermTyped& node)
  3326. {
  3327. if (node.getAsOperator() &&
  3328. node.getAsOperator()->getOp() == glslang::EOpVectorSwizzle)
  3329. return convertGlslangToSpvType(node.getAsBinaryNode()->getLeft()->getType());
  3330. else
  3331. return spv::NoType;
  3332. }
  3333. // When inverting a swizzle with a parent op, this function
  3334. // will apply the swizzle operation to a completed parent operation.
  3335. spv::Id TGlslangToSpvTraverser::createInvertedSwizzle(spv::Decoration precision, const glslang::TIntermTyped& node,
  3336. spv::Id parentResult)
  3337. {
  3338. std::vector<unsigned> swizzle;
  3339. convertSwizzle(*node.getAsBinaryNode()->getRight()->getAsAggregate(), swizzle);
  3340. return builder.createRvalueSwizzle(precision, convertGlslangToSpvType(node.getType()), parentResult, swizzle);
  3341. }
  3342. // Convert a glslang AST swizzle node to a swizzle vector for building SPIR-V.
  3343. void TGlslangToSpvTraverser::convertSwizzle(const glslang::TIntermAggregate& node, std::vector<unsigned>& swizzle)
  3344. {
  3345. const glslang::TIntermSequence& swizzleSequence = node.getSequence();
  3346. for (int i = 0; i < (int)swizzleSequence.size(); ++i)
  3347. swizzle.push_back(swizzleSequence[i]->getAsConstantUnion()->getConstArray()[0].getIConst());
  3348. }
  3349. // Convert from a glslang type to an SPV type, by calling into a
  3350. // recursive version of this function. This establishes the inherited
  3351. // layout state rooted from the top-level type.
  3352. spv::Id TGlslangToSpvTraverser::convertGlslangToSpvType(const glslang::TType& type, bool forwardReferenceOnly)
  3353. {
  3354. return convertGlslangToSpvType(type, getExplicitLayout(type), type.getQualifier(), false, forwardReferenceOnly);
  3355. }
  3356. // Do full recursive conversion of an arbitrary glslang type to a SPIR-V Id.
  3357. // explicitLayout can be kept the same throughout the hierarchical recursive walk.
  3358. // Mutually recursive with convertGlslangStructToSpvType().
  3359. spv::Id TGlslangToSpvTraverser::convertGlslangToSpvType(const glslang::TType& type,
  3360. glslang::TLayoutPacking explicitLayout, const glslang::TQualifier& qualifier,
  3361. bool lastBufferBlockMember, bool forwardReferenceOnly)
  3362. {
  3363. spv::Id spvType = spv::NoResult;
  3364. switch (type.getBasicType()) {
  3365. case glslang::EbtVoid:
  3366. spvType = builder.makeVoidType();
  3367. assert (! type.isArray());
  3368. break;
  3369. case glslang::EbtBool:
  3370. // "transparent" bool doesn't exist in SPIR-V. The GLSL convention is
  3371. // a 32-bit int where non-0 means true.
  3372. if (explicitLayout != glslang::ElpNone)
  3373. spvType = builder.makeUintType(32);
  3374. else
  3375. spvType = builder.makeBoolType();
  3376. break;
  3377. case glslang::EbtInt:
  3378. spvType = builder.makeIntType(32);
  3379. break;
  3380. case glslang::EbtUint:
  3381. spvType = builder.makeUintType(32);
  3382. break;
  3383. case glslang::EbtFloat:
  3384. spvType = builder.makeFloatType(32);
  3385. break;
  3386. #ifndef GLSLANG_WEB
  3387. case glslang::EbtDouble:
  3388. spvType = builder.makeFloatType(64);
  3389. break;
  3390. case glslang::EbtFloat16:
  3391. spvType = builder.makeFloatType(16);
  3392. break;
  3393. case glslang::EbtInt8:
  3394. spvType = builder.makeIntType(8);
  3395. break;
  3396. case glslang::EbtUint8:
  3397. spvType = builder.makeUintType(8);
  3398. break;
  3399. case glslang::EbtInt16:
  3400. spvType = builder.makeIntType(16);
  3401. break;
  3402. case glslang::EbtUint16:
  3403. spvType = builder.makeUintType(16);
  3404. break;
  3405. case glslang::EbtInt64:
  3406. spvType = builder.makeIntType(64);
  3407. break;
  3408. case glslang::EbtUint64:
  3409. spvType = builder.makeUintType(64);
  3410. break;
  3411. case glslang::EbtAtomicUint:
  3412. builder.addCapability(spv::CapabilityAtomicStorage);
  3413. spvType = builder.makeUintType(32);
  3414. break;
  3415. case glslang::EbtAccStruct:
  3416. switch (glslangIntermediate->getStage()) {
  3417. case EShLangRayGen:
  3418. case EShLangIntersect:
  3419. case EShLangAnyHit:
  3420. case EShLangClosestHit:
  3421. case EShLangMiss:
  3422. case EShLangCallable:
  3423. // these all should have the RayTracingNV/KHR capability already
  3424. break;
  3425. default:
  3426. {
  3427. auto& extensions = glslangIntermediate->getRequestedExtensions();
  3428. if (extensions.find("GL_EXT_ray_query") != extensions.end()) {
  3429. builder.addExtension(spv::E_SPV_KHR_ray_query);
  3430. builder.addCapability(spv::CapabilityRayQueryKHR);
  3431. }
  3432. }
  3433. break;
  3434. }
  3435. spvType = builder.makeAccelerationStructureType();
  3436. break;
  3437. case glslang::EbtRayQuery:
  3438. {
  3439. auto& extensions = glslangIntermediate->getRequestedExtensions();
  3440. if (extensions.find("GL_EXT_ray_query") != extensions.end()) {
  3441. builder.addExtension(spv::E_SPV_KHR_ray_query);
  3442. builder.addCapability(spv::CapabilityRayQueryKHR);
  3443. }
  3444. spvType = builder.makeRayQueryType();
  3445. }
  3446. break;
  3447. case glslang::EbtReference:
  3448. {
  3449. // Make the forward pointer, then recurse to convert the structure type, then
  3450. // patch up the forward pointer with a real pointer type.
  3451. if (forwardPointers.find(type.getReferentType()) == forwardPointers.end()) {
  3452. spv::Id forwardId = builder.makeForwardPointer(spv::StorageClassPhysicalStorageBufferEXT);
  3453. forwardPointers[type.getReferentType()] = forwardId;
  3454. }
  3455. spvType = forwardPointers[type.getReferentType()];
  3456. if (!forwardReferenceOnly) {
  3457. spv::Id referentType = convertGlslangToSpvType(*type.getReferentType());
  3458. builder.makePointerFromForwardPointer(spv::StorageClassPhysicalStorageBufferEXT,
  3459. forwardPointers[type.getReferentType()],
  3460. referentType);
  3461. }
  3462. }
  3463. break;
  3464. #endif
  3465. case glslang::EbtSampler:
  3466. {
  3467. const glslang::TSampler& sampler = type.getSampler();
  3468. if (sampler.isPureSampler()) {
  3469. spvType = builder.makeSamplerType();
  3470. } else {
  3471. // an image is present, make its type
  3472. spvType = builder.makeImageType(getSampledType(sampler), TranslateDimensionality(sampler),
  3473. sampler.isShadow(), sampler.isArrayed(), sampler.isMultiSample(),
  3474. sampler.isImageClass() ? 2 : 1, TranslateImageFormat(type));
  3475. if (sampler.isCombined()) {
  3476. // already has both image and sampler, make the combined type
  3477. spvType = builder.makeSampledImageType(spvType);
  3478. }
  3479. }
  3480. }
  3481. break;
  3482. case glslang::EbtStruct:
  3483. case glslang::EbtBlock:
  3484. {
  3485. // If we've seen this struct type, return it
  3486. const glslang::TTypeList* glslangMembers = type.getStruct();
  3487. // Try to share structs for different layouts, but not yet for other
  3488. // kinds of qualification (primarily not yet including interpolant qualification).
  3489. if (! HasNonLayoutQualifiers(type, qualifier))
  3490. spvType = structMap[explicitLayout][qualifier.layoutMatrix][glslangMembers];
  3491. if (spvType != spv::NoResult)
  3492. break;
  3493. // else, we haven't seen it...
  3494. if (type.getBasicType() == glslang::EbtBlock)
  3495. memberRemapper[glslangTypeToIdMap[glslangMembers]].resize(glslangMembers->size());
  3496. spvType = convertGlslangStructToSpvType(type, glslangMembers, explicitLayout, qualifier);
  3497. }
  3498. break;
  3499. case glslang::EbtString:
  3500. // no type used for OpString
  3501. return 0;
  3502. default:
  3503. assert(0);
  3504. break;
  3505. }
  3506. if (type.isMatrix())
  3507. spvType = builder.makeMatrixType(spvType, type.getMatrixCols(), type.getMatrixRows());
  3508. else {
  3509. // If this variable has a vector element count greater than 1, create a SPIR-V vector
  3510. if (type.getVectorSize() > 1)
  3511. spvType = builder.makeVectorType(spvType, type.getVectorSize());
  3512. }
  3513. if (type.isCoopMat()) {
  3514. builder.addCapability(spv::CapabilityCooperativeMatrixNV);
  3515. builder.addExtension(spv::E_SPV_NV_cooperative_matrix);
  3516. if (type.getBasicType() == glslang::EbtFloat16)
  3517. builder.addCapability(spv::CapabilityFloat16);
  3518. if (type.getBasicType() == glslang::EbtUint8 ||
  3519. type.getBasicType() == glslang::EbtInt8) {
  3520. builder.addCapability(spv::CapabilityInt8);
  3521. }
  3522. spv::Id scope = makeArraySizeId(*type.getTypeParameters(), 1);
  3523. spv::Id rows = makeArraySizeId(*type.getTypeParameters(), 2);
  3524. spv::Id cols = makeArraySizeId(*type.getTypeParameters(), 3);
  3525. spvType = builder.makeCooperativeMatrixType(spvType, scope, rows, cols);
  3526. }
  3527. if (type.isArray()) {
  3528. int stride = 0; // keep this 0 unless doing an explicit layout; 0 will mean no decoration, no stride
  3529. // Do all but the outer dimension
  3530. if (type.getArraySizes()->getNumDims() > 1) {
  3531. // We need to decorate array strides for types needing explicit layout, except blocks.
  3532. if (explicitLayout != glslang::ElpNone && type.getBasicType() != glslang::EbtBlock) {
  3533. // Use a dummy glslang type for querying internal strides of
  3534. // arrays of arrays, but using just a one-dimensional array.
  3535. glslang::TType simpleArrayType(type, 0); // deference type of the array
  3536. while (simpleArrayType.getArraySizes()->getNumDims() > 1)
  3537. simpleArrayType.getArraySizes()->dereference();
  3538. // Will compute the higher-order strides here, rather than making a whole
  3539. // pile of types and doing repetitive recursion on their contents.
  3540. stride = getArrayStride(simpleArrayType, explicitLayout, qualifier.layoutMatrix);
  3541. }
  3542. // make the arrays
  3543. for (int dim = type.getArraySizes()->getNumDims() - 1; dim > 0; --dim) {
  3544. spvType = builder.makeArrayType(spvType, makeArraySizeId(*type.getArraySizes(), dim), stride);
  3545. if (stride > 0)
  3546. builder.addDecoration(spvType, spv::DecorationArrayStride, stride);
  3547. stride *= type.getArraySizes()->getDimSize(dim);
  3548. }
  3549. } else {
  3550. // single-dimensional array, and don't yet have stride
  3551. // We need to decorate array strides for types needing explicit layout, except blocks.
  3552. if (explicitLayout != glslang::ElpNone && type.getBasicType() != glslang::EbtBlock)
  3553. stride = getArrayStride(type, explicitLayout, qualifier.layoutMatrix);
  3554. }
  3555. // Do the outer dimension, which might not be known for a runtime-sized array.
  3556. // (Unsized arrays that survive through linking will be runtime-sized arrays)
  3557. if (type.isSizedArray())
  3558. spvType = builder.makeArrayType(spvType, makeArraySizeId(*type.getArraySizes(), 0), stride);
  3559. else {
  3560. #ifndef GLSLANG_WEB
  3561. if (!lastBufferBlockMember) {
  3562. builder.addIncorporatedExtension("SPV_EXT_descriptor_indexing", spv::Spv_1_5);
  3563. builder.addCapability(spv::CapabilityRuntimeDescriptorArrayEXT);
  3564. }
  3565. #endif
  3566. spvType = builder.makeRuntimeArray(spvType);
  3567. }
  3568. if (stride > 0)
  3569. builder.addDecoration(spvType, spv::DecorationArrayStride, stride);
  3570. }
  3571. return spvType;
  3572. }
  3573. // TODO: this functionality should exist at a higher level, in creating the AST
  3574. //
  3575. // Identify interface members that don't have their required extension turned on.
  3576. //
  3577. bool TGlslangToSpvTraverser::filterMember(const glslang::TType& member)
  3578. {
  3579. #ifndef GLSLANG_WEB
  3580. auto& extensions = glslangIntermediate->getRequestedExtensions();
  3581. if (member.getFieldName() == "gl_SecondaryViewportMaskNV" &&
  3582. extensions.find("GL_NV_stereo_view_rendering") == extensions.end())
  3583. return true;
  3584. if (member.getFieldName() == "gl_SecondaryPositionNV" &&
  3585. extensions.find("GL_NV_stereo_view_rendering") == extensions.end())
  3586. return true;
  3587. if (glslangIntermediate->getStage() != EShLangMeshNV) {
  3588. if (member.getFieldName() == "gl_ViewportMask" &&
  3589. extensions.find("GL_NV_viewport_array2") == extensions.end())
  3590. return true;
  3591. if (member.getFieldName() == "gl_PositionPerViewNV" &&
  3592. extensions.find("GL_NVX_multiview_per_view_attributes") == extensions.end())
  3593. return true;
  3594. if (member.getFieldName() == "gl_ViewportMaskPerViewNV" &&
  3595. extensions.find("GL_NVX_multiview_per_view_attributes") == extensions.end())
  3596. return true;
  3597. }
  3598. #endif
  3599. return false;
  3600. };
  3601. // Do full recursive conversion of a glslang structure (or block) type to a SPIR-V Id.
  3602. // explicitLayout can be kept the same throughout the hierarchical recursive walk.
  3603. // Mutually recursive with convertGlslangToSpvType().
  3604. spv::Id TGlslangToSpvTraverser::convertGlslangStructToSpvType(const glslang::TType& type,
  3605. const glslang::TTypeList* glslangMembers,
  3606. glslang::TLayoutPacking explicitLayout,
  3607. const glslang::TQualifier& qualifier)
  3608. {
  3609. // Create a vector of struct types for SPIR-V to consume
  3610. std::vector<spv::Id> spvMembers;
  3611. int memberDelta = 0; // how much the member's index changes from glslang to SPIR-V, normally 0,
  3612. // except sometimes for blocks
  3613. std::vector<std::pair<glslang::TType*, glslang::TQualifier> > deferredForwardPointers;
  3614. for (int i = 0; i < (int)glslangMembers->size(); i++) {
  3615. glslang::TType& glslangMember = *(*glslangMembers)[i].type;
  3616. if (glslangMember.hiddenMember()) {
  3617. ++memberDelta;
  3618. if (type.getBasicType() == glslang::EbtBlock)
  3619. memberRemapper[glslangTypeToIdMap[glslangMembers]][i] = -1;
  3620. } else {
  3621. if (type.getBasicType() == glslang::EbtBlock) {
  3622. if (filterMember(glslangMember)) {
  3623. memberDelta++;
  3624. memberRemapper[glslangTypeToIdMap[glslangMembers]][i] = -1;
  3625. continue;
  3626. }
  3627. memberRemapper[glslangTypeToIdMap[glslangMembers]][i] = i - memberDelta;
  3628. }
  3629. // modify just this child's view of the qualifier
  3630. glslang::TQualifier memberQualifier = glslangMember.getQualifier();
  3631. InheritQualifiers(memberQualifier, qualifier);
  3632. // manually inherit location
  3633. if (! memberQualifier.hasLocation() && qualifier.hasLocation())
  3634. memberQualifier.layoutLocation = qualifier.layoutLocation;
  3635. // recurse
  3636. bool lastBufferBlockMember = qualifier.storage == glslang::EvqBuffer &&
  3637. i == (int)glslangMembers->size() - 1;
  3638. // Make forward pointers for any pointer members, and create a list of members to
  3639. // convert to spirv types after creating the struct.
  3640. if (glslangMember.isReference()) {
  3641. if (forwardPointers.find(glslangMember.getReferentType()) == forwardPointers.end()) {
  3642. deferredForwardPointers.push_back(std::make_pair(&glslangMember, memberQualifier));
  3643. }
  3644. spvMembers.push_back(
  3645. convertGlslangToSpvType(glslangMember, explicitLayout, memberQualifier, lastBufferBlockMember,
  3646. true));
  3647. } else {
  3648. spvMembers.push_back(
  3649. convertGlslangToSpvType(glslangMember, explicitLayout, memberQualifier, lastBufferBlockMember,
  3650. false));
  3651. }
  3652. }
  3653. }
  3654. // Make the SPIR-V type
  3655. spv::Id spvType = builder.makeStructType(spvMembers, type.getTypeName().c_str());
  3656. if (! HasNonLayoutQualifiers(type, qualifier))
  3657. structMap[explicitLayout][qualifier.layoutMatrix][glslangMembers] = spvType;
  3658. // Decorate it
  3659. decorateStructType(type, glslangMembers, explicitLayout, qualifier, spvType);
  3660. for (int i = 0; i < (int)deferredForwardPointers.size(); ++i) {
  3661. auto it = deferredForwardPointers[i];
  3662. convertGlslangToSpvType(*it.first, explicitLayout, it.second, false);
  3663. }
  3664. return spvType;
  3665. }
  3666. void TGlslangToSpvTraverser::decorateStructType(const glslang::TType& type,
  3667. const glslang::TTypeList* glslangMembers,
  3668. glslang::TLayoutPacking explicitLayout,
  3669. const glslang::TQualifier& qualifier,
  3670. spv::Id spvType)
  3671. {
  3672. // Name and decorate the non-hidden members
  3673. int offset = -1;
  3674. int locationOffset = 0; // for use within the members of this struct
  3675. bool memberLocationInvalid = type.isArrayOfArrays() ||
  3676. (type.isArray() && (type.getQualifier().isArrayedIo(glslangIntermediate->getStage()) == false));
  3677. for (int i = 0; i < (int)glslangMembers->size(); i++) {
  3678. glslang::TType& glslangMember = *(*glslangMembers)[i].type;
  3679. int member = i;
  3680. if (type.getBasicType() == glslang::EbtBlock) {
  3681. member = memberRemapper[glslangTypeToIdMap[glslangMembers]][i];
  3682. if (filterMember(glslangMember))
  3683. continue;
  3684. }
  3685. // modify just this child's view of the qualifier
  3686. glslang::TQualifier memberQualifier = glslangMember.getQualifier();
  3687. InheritQualifiers(memberQualifier, qualifier);
  3688. // using -1 above to indicate a hidden member
  3689. if (member < 0)
  3690. continue;
  3691. builder.addMemberName(spvType, member, glslangMember.getFieldName().c_str());
  3692. builder.addMemberDecoration(spvType, member,
  3693. TranslateLayoutDecoration(glslangMember, memberQualifier.layoutMatrix));
  3694. builder.addMemberDecoration(spvType, member, TranslatePrecisionDecoration(glslangMember));
  3695. // Add interpolation and auxiliary storage decorations only to
  3696. // top-level members of Input and Output storage classes
  3697. if (type.getQualifier().storage == glslang::EvqVaryingIn ||
  3698. type.getQualifier().storage == glslang::EvqVaryingOut) {
  3699. if (type.getBasicType() == glslang::EbtBlock ||
  3700. glslangIntermediate->getSource() == glslang::EShSourceHlsl) {
  3701. builder.addMemberDecoration(spvType, member, TranslateInterpolationDecoration(memberQualifier));
  3702. builder.addMemberDecoration(spvType, member, TranslateAuxiliaryStorageDecoration(memberQualifier));
  3703. #ifndef GLSLANG_WEB
  3704. addMeshNVDecoration(spvType, member, memberQualifier);
  3705. #endif
  3706. }
  3707. }
  3708. builder.addMemberDecoration(spvType, member, TranslateInvariantDecoration(memberQualifier));
  3709. #ifndef GLSLANG_WEB
  3710. if (type.getBasicType() == glslang::EbtBlock &&
  3711. qualifier.storage == glslang::EvqBuffer) {
  3712. // Add memory decorations only to top-level members of shader storage block
  3713. std::vector<spv::Decoration> memory;
  3714. TranslateMemoryDecoration(memberQualifier, memory, glslangIntermediate->usingVulkanMemoryModel());
  3715. for (unsigned int i = 0; i < memory.size(); ++i)
  3716. builder.addMemberDecoration(spvType, member, memory[i]);
  3717. }
  3718. #endif
  3719. // Location assignment was already completed correctly by the front end,
  3720. // just track whether a member needs to be decorated.
  3721. // Ignore member locations if the container is an array, as that's
  3722. // ill-specified and decisions have been made to not allow this.
  3723. if (!memberLocationInvalid && memberQualifier.hasLocation())
  3724. builder.addMemberDecoration(spvType, member, spv::DecorationLocation, memberQualifier.layoutLocation);
  3725. if (qualifier.hasLocation()) // track for upcoming inheritance
  3726. locationOffset += glslangIntermediate->computeTypeLocationSize(
  3727. glslangMember, glslangIntermediate->getStage());
  3728. // component, XFB, others
  3729. if (glslangMember.getQualifier().hasComponent())
  3730. builder.addMemberDecoration(spvType, member, spv::DecorationComponent,
  3731. glslangMember.getQualifier().layoutComponent);
  3732. if (glslangMember.getQualifier().hasXfbOffset())
  3733. builder.addMemberDecoration(spvType, member, spv::DecorationOffset,
  3734. glslangMember.getQualifier().layoutXfbOffset);
  3735. else if (explicitLayout != glslang::ElpNone) {
  3736. // figure out what to do with offset, which is accumulating
  3737. int nextOffset;
  3738. updateMemberOffset(type, glslangMember, offset, nextOffset, explicitLayout, memberQualifier.layoutMatrix);
  3739. if (offset >= 0)
  3740. builder.addMemberDecoration(spvType, member, spv::DecorationOffset, offset);
  3741. offset = nextOffset;
  3742. }
  3743. if (glslangMember.isMatrix() && explicitLayout != glslang::ElpNone)
  3744. builder.addMemberDecoration(spvType, member, spv::DecorationMatrixStride,
  3745. getMatrixStride(glslangMember, explicitLayout, memberQualifier.layoutMatrix));
  3746. // built-in variable decorations
  3747. spv::BuiltIn builtIn = TranslateBuiltInDecoration(glslangMember.getQualifier().builtIn, true);
  3748. if (builtIn != spv::BuiltInMax)
  3749. builder.addMemberDecoration(spvType, member, spv::DecorationBuiltIn, (int)builtIn);
  3750. #ifndef GLSLANG_WEB
  3751. // nonuniform
  3752. builder.addMemberDecoration(spvType, member, TranslateNonUniformDecoration(glslangMember.getQualifier()));
  3753. if (glslangIntermediate->getHlslFunctionality1() && memberQualifier.semanticName != nullptr) {
  3754. builder.addExtension("SPV_GOOGLE_hlsl_functionality1");
  3755. builder.addMemberDecoration(spvType, member, (spv::Decoration)spv::DecorationHlslSemanticGOOGLE,
  3756. memberQualifier.semanticName);
  3757. }
  3758. if (builtIn == spv::BuiltInLayer) {
  3759. // SPV_NV_viewport_array2 extension
  3760. if (glslangMember.getQualifier().layoutViewportRelative){
  3761. builder.addMemberDecoration(spvType, member, (spv::Decoration)spv::DecorationViewportRelativeNV);
  3762. builder.addCapability(spv::CapabilityShaderViewportMaskNV);
  3763. builder.addExtension(spv::E_SPV_NV_viewport_array2);
  3764. }
  3765. if (glslangMember.getQualifier().layoutSecondaryViewportRelativeOffset != -2048){
  3766. builder.addMemberDecoration(spvType, member,
  3767. (spv::Decoration)spv::DecorationSecondaryViewportRelativeNV,
  3768. glslangMember.getQualifier().layoutSecondaryViewportRelativeOffset);
  3769. builder.addCapability(spv::CapabilityShaderStereoViewNV);
  3770. builder.addExtension(spv::E_SPV_NV_stereo_view_rendering);
  3771. }
  3772. }
  3773. if (glslangMember.getQualifier().layoutPassthrough) {
  3774. builder.addMemberDecoration(spvType, member, (spv::Decoration)spv::DecorationPassthroughNV);
  3775. builder.addCapability(spv::CapabilityGeometryShaderPassthroughNV);
  3776. builder.addExtension(spv::E_SPV_NV_geometry_shader_passthrough);
  3777. }
  3778. #endif
  3779. }
  3780. // Decorate the structure
  3781. builder.addDecoration(spvType, TranslateLayoutDecoration(type, qualifier.layoutMatrix));
  3782. builder.addDecoration(spvType, TranslateBlockDecoration(type, glslangIntermediate->usingStorageBuffer()));
  3783. }
  3784. // Turn the expression forming the array size into an id.
  3785. // This is not quite trivial, because of specialization constants.
  3786. // Sometimes, a raw constant is turned into an Id, and sometimes
  3787. // a specialization constant expression is.
  3788. spv::Id TGlslangToSpvTraverser::makeArraySizeId(const glslang::TArraySizes& arraySizes, int dim)
  3789. {
  3790. // First, see if this is sized with a node, meaning a specialization constant:
  3791. glslang::TIntermTyped* specNode = arraySizes.getDimNode(dim);
  3792. if (specNode != nullptr) {
  3793. builder.clearAccessChain();
  3794. specNode->traverse(this);
  3795. return accessChainLoad(specNode->getAsTyped()->getType());
  3796. }
  3797. // Otherwise, need a compile-time (front end) size, get it:
  3798. int size = arraySizes.getDimSize(dim);
  3799. assert(size > 0);
  3800. return builder.makeUintConstant(size);
  3801. }
  3802. // Wrap the builder's accessChainLoad to:
  3803. // - localize handling of RelaxedPrecision
  3804. // - use the SPIR-V inferred type instead of another conversion of the glslang type
  3805. // (avoids unnecessary work and possible type punning for structures)
  3806. // - do conversion of concrete to abstract type
  3807. spv::Id TGlslangToSpvTraverser::accessChainLoad(const glslang::TType& type)
  3808. {
  3809. spv::Id nominalTypeId = builder.accessChainGetInferredType();
  3810. spv::Builder::AccessChain::CoherentFlags coherentFlags = builder.getAccessChain().coherentFlags;
  3811. coherentFlags |= TranslateCoherent(type);
  3812. unsigned int alignment = builder.getAccessChain().alignment;
  3813. alignment |= type.getBufferReferenceAlignment();
  3814. spv::Id loadedId = builder.accessChainLoad(TranslatePrecisionDecoration(type),
  3815. TranslateNonUniformDecoration(builder.getAccessChain().coherentFlags),
  3816. TranslateNonUniformDecoration(type.getQualifier()),
  3817. nominalTypeId,
  3818. spv::MemoryAccessMask(TranslateMemoryAccess(coherentFlags) & ~spv::MemoryAccessMakePointerAvailableKHRMask),
  3819. TranslateMemoryScope(coherentFlags),
  3820. alignment);
  3821. // Need to convert to abstract types when necessary
  3822. if (type.getBasicType() == glslang::EbtBool) {
  3823. if (builder.isScalarType(nominalTypeId)) {
  3824. // Conversion for bool
  3825. spv::Id boolType = builder.makeBoolType();
  3826. if (nominalTypeId != boolType)
  3827. loadedId = builder.createBinOp(spv::OpINotEqual, boolType, loadedId, builder.makeUintConstant(0));
  3828. } else if (builder.isVectorType(nominalTypeId)) {
  3829. // Conversion for bvec
  3830. int vecSize = builder.getNumTypeComponents(nominalTypeId);
  3831. spv::Id bvecType = builder.makeVectorType(builder.makeBoolType(), vecSize);
  3832. if (nominalTypeId != bvecType)
  3833. loadedId = builder.createBinOp(spv::OpINotEqual, bvecType, loadedId,
  3834. makeSmearedConstant(builder.makeUintConstant(0), vecSize));
  3835. }
  3836. }
  3837. return loadedId;
  3838. }
  3839. // Wrap the builder's accessChainStore to:
  3840. // - do conversion of concrete to abstract type
  3841. //
  3842. // Implicitly uses the existing builder.accessChain as the storage target.
  3843. void TGlslangToSpvTraverser::accessChainStore(const glslang::TType& type, spv::Id rvalue)
  3844. {
  3845. // Need to convert to abstract types when necessary
  3846. if (type.getBasicType() == glslang::EbtBool) {
  3847. spv::Id nominalTypeId = builder.accessChainGetInferredType();
  3848. if (builder.isScalarType(nominalTypeId)) {
  3849. // Conversion for bool
  3850. spv::Id boolType = builder.makeBoolType();
  3851. if (nominalTypeId != boolType) {
  3852. // keep these outside arguments, for determinant order-of-evaluation
  3853. spv::Id one = builder.makeUintConstant(1);
  3854. spv::Id zero = builder.makeUintConstant(0);
  3855. rvalue = builder.createTriOp(spv::OpSelect, nominalTypeId, rvalue, one, zero);
  3856. } else if (builder.getTypeId(rvalue) != boolType)
  3857. rvalue = builder.createBinOp(spv::OpINotEqual, boolType, rvalue, builder.makeUintConstant(0));
  3858. } else if (builder.isVectorType(nominalTypeId)) {
  3859. // Conversion for bvec
  3860. int vecSize = builder.getNumTypeComponents(nominalTypeId);
  3861. spv::Id bvecType = builder.makeVectorType(builder.makeBoolType(), vecSize);
  3862. if (nominalTypeId != bvecType) {
  3863. // keep these outside arguments, for determinant order-of-evaluation
  3864. spv::Id one = makeSmearedConstant(builder.makeUintConstant(1), vecSize);
  3865. spv::Id zero = makeSmearedConstant(builder.makeUintConstant(0), vecSize);
  3866. rvalue = builder.createTriOp(spv::OpSelect, nominalTypeId, rvalue, one, zero);
  3867. } else if (builder.getTypeId(rvalue) != bvecType)
  3868. rvalue = builder.createBinOp(spv::OpINotEqual, bvecType, rvalue,
  3869. makeSmearedConstant(builder.makeUintConstant(0), vecSize));
  3870. }
  3871. }
  3872. spv::Builder::AccessChain::CoherentFlags coherentFlags = builder.getAccessChain().coherentFlags;
  3873. coherentFlags |= TranslateCoherent(type);
  3874. unsigned int alignment = builder.getAccessChain().alignment;
  3875. alignment |= type.getBufferReferenceAlignment();
  3876. builder.accessChainStore(rvalue, TranslateNonUniformDecoration(builder.getAccessChain().coherentFlags),
  3877. spv::MemoryAccessMask(TranslateMemoryAccess(coherentFlags) &
  3878. ~spv::MemoryAccessMakePointerVisibleKHRMask),
  3879. TranslateMemoryScope(coherentFlags), alignment);
  3880. }
  3881. // For storing when types match at the glslang level, but not might match at the
  3882. // SPIR-V level.
  3883. //
  3884. // This especially happens when a single glslang type expands to multiple
  3885. // SPIR-V types, like a struct that is used in a member-undecorated way as well
  3886. // as in a member-decorated way.
  3887. //
  3888. // NOTE: This function can handle any store request; if it's not special it
  3889. // simplifies to a simple OpStore.
  3890. //
  3891. // Implicitly uses the existing builder.accessChain as the storage target.
  3892. void TGlslangToSpvTraverser::multiTypeStore(const glslang::TType& type, spv::Id rValue)
  3893. {
  3894. // we only do the complex path here if it's an aggregate
  3895. if (! type.isStruct() && ! type.isArray()) {
  3896. accessChainStore(type, rValue);
  3897. return;
  3898. }
  3899. // and, it has to be a case of type aliasing
  3900. spv::Id rType = builder.getTypeId(rValue);
  3901. spv::Id lValue = builder.accessChainGetLValue();
  3902. spv::Id lType = builder.getContainedTypeId(builder.getTypeId(lValue));
  3903. if (lType == rType) {
  3904. accessChainStore(type, rValue);
  3905. return;
  3906. }
  3907. // Recursively (as needed) copy an aggregate type to a different aggregate type,
  3908. // where the two types were the same type in GLSL. This requires member
  3909. // by member copy, recursively.
  3910. // SPIR-V 1.4 added an instruction to do help do this.
  3911. if (glslangIntermediate->getSpv().spv >= glslang::EShTargetSpv_1_4) {
  3912. // However, bool in uniform space is changed to int, so
  3913. // OpCopyLogical does not work for that.
  3914. // TODO: It would be more robust to do a full recursive verification of the types satisfying SPIR-V rules.
  3915. bool rBool = builder.containsType(builder.getTypeId(rValue), spv::OpTypeBool, 0);
  3916. bool lBool = builder.containsType(lType, spv::OpTypeBool, 0);
  3917. if (lBool == rBool) {
  3918. spv::Id logicalCopy = builder.createUnaryOp(spv::OpCopyLogical, lType, rValue);
  3919. accessChainStore(type, logicalCopy);
  3920. return;
  3921. }
  3922. }
  3923. // If an array, copy element by element.
  3924. if (type.isArray()) {
  3925. glslang::TType glslangElementType(type, 0);
  3926. spv::Id elementRType = builder.getContainedTypeId(rType);
  3927. for (int index = 0; index < type.getOuterArraySize(); ++index) {
  3928. // get the source member
  3929. spv::Id elementRValue = builder.createCompositeExtract(rValue, elementRType, index);
  3930. // set up the target storage
  3931. builder.clearAccessChain();
  3932. builder.setAccessChainLValue(lValue);
  3933. builder.accessChainPush(builder.makeIntConstant(index), TranslateCoherent(type),
  3934. type.getBufferReferenceAlignment());
  3935. // store the member
  3936. multiTypeStore(glslangElementType, elementRValue);
  3937. }
  3938. } else {
  3939. assert(type.isStruct());
  3940. // loop over structure members
  3941. const glslang::TTypeList& members = *type.getStruct();
  3942. for (int m = 0; m < (int)members.size(); ++m) {
  3943. const glslang::TType& glslangMemberType = *members[m].type;
  3944. // get the source member
  3945. spv::Id memberRType = builder.getContainedTypeId(rType, m);
  3946. spv::Id memberRValue = builder.createCompositeExtract(rValue, memberRType, m);
  3947. // set up the target storage
  3948. builder.clearAccessChain();
  3949. builder.setAccessChainLValue(lValue);
  3950. builder.accessChainPush(builder.makeIntConstant(m), TranslateCoherent(type),
  3951. type.getBufferReferenceAlignment());
  3952. // store the member
  3953. multiTypeStore(glslangMemberType, memberRValue);
  3954. }
  3955. }
  3956. }
  3957. // Decide whether or not this type should be
  3958. // decorated with offsets and strides, and if so
  3959. // whether std140 or std430 rules should be applied.
  3960. glslang::TLayoutPacking TGlslangToSpvTraverser::getExplicitLayout(const glslang::TType& type) const
  3961. {
  3962. // has to be a block
  3963. if (type.getBasicType() != glslang::EbtBlock)
  3964. return glslang::ElpNone;
  3965. // has to be a uniform or buffer block or task in/out blocks
  3966. if (type.getQualifier().storage != glslang::EvqUniform &&
  3967. type.getQualifier().storage != glslang::EvqBuffer &&
  3968. type.getQualifier().storage != glslang::EvqShared &&
  3969. !type.getQualifier().isTaskMemory())
  3970. return glslang::ElpNone;
  3971. // return the layout to use
  3972. switch (type.getQualifier().layoutPacking) {
  3973. case glslang::ElpStd140:
  3974. case glslang::ElpStd430:
  3975. case glslang::ElpScalar:
  3976. return type.getQualifier().layoutPacking;
  3977. default:
  3978. return glslang::ElpNone;
  3979. }
  3980. }
  3981. // Given an array type, returns the integer stride required for that array
  3982. int TGlslangToSpvTraverser::getArrayStride(const glslang::TType& arrayType, glslang::TLayoutPacking explicitLayout,
  3983. glslang::TLayoutMatrix matrixLayout)
  3984. {
  3985. int size;
  3986. int stride;
  3987. glslangIntermediate->getMemberAlignment(arrayType, size, stride, explicitLayout,
  3988. matrixLayout == glslang::ElmRowMajor);
  3989. return stride;
  3990. }
  3991. // Given a matrix type, or array (of array) of matrixes type, returns the integer stride required for that matrix
  3992. // when used as a member of an interface block
  3993. int TGlslangToSpvTraverser::getMatrixStride(const glslang::TType& matrixType, glslang::TLayoutPacking explicitLayout,
  3994. glslang::TLayoutMatrix matrixLayout)
  3995. {
  3996. glslang::TType elementType;
  3997. elementType.shallowCopy(matrixType);
  3998. elementType.clearArraySizes();
  3999. int size;
  4000. int stride;
  4001. glslangIntermediate->getMemberAlignment(elementType, size, stride, explicitLayout,
  4002. matrixLayout == glslang::ElmRowMajor);
  4003. return stride;
  4004. }
  4005. // Given a member type of a struct, realign the current offset for it, and compute
  4006. // the next (not yet aligned) offset for the next member, which will get aligned
  4007. // on the next call.
  4008. // 'currentOffset' should be passed in already initialized, ready to modify, and reflecting
  4009. // the migration of data from nextOffset -> currentOffset. It should be -1 on the first call.
  4010. // -1 means a non-forced member offset (no decoration needed).
  4011. void TGlslangToSpvTraverser::updateMemberOffset(const glslang::TType& structType, const glslang::TType& memberType,
  4012. int& currentOffset, int& nextOffset, glslang::TLayoutPacking explicitLayout, glslang::TLayoutMatrix matrixLayout)
  4013. {
  4014. // this will get a positive value when deemed necessary
  4015. nextOffset = -1;
  4016. // override anything in currentOffset with user-set offset
  4017. if (memberType.getQualifier().hasOffset())
  4018. currentOffset = memberType.getQualifier().layoutOffset;
  4019. // It could be that current linker usage in glslang updated all the layoutOffset,
  4020. // in which case the following code does not matter. But, that's not quite right
  4021. // once cross-compilation unit GLSL validation is done, as the original user
  4022. // settings are needed in layoutOffset, and then the following will come into play.
  4023. if (explicitLayout == glslang::ElpNone) {
  4024. if (! memberType.getQualifier().hasOffset())
  4025. currentOffset = -1;
  4026. return;
  4027. }
  4028. // Getting this far means we need explicit offsets
  4029. if (currentOffset < 0)
  4030. currentOffset = 0;
  4031. // Now, currentOffset is valid (either 0, or from a previous nextOffset),
  4032. // but possibly not yet correctly aligned.
  4033. int memberSize;
  4034. int dummyStride;
  4035. int memberAlignment = glslangIntermediate->getMemberAlignment(memberType, memberSize, dummyStride, explicitLayout,
  4036. matrixLayout == glslang::ElmRowMajor);
  4037. // Adjust alignment for HLSL rules
  4038. // TODO: make this consistent in early phases of code:
  4039. // adjusting this late means inconsistencies with earlier code, which for reflection is an issue
  4040. // Until reflection is brought in sync with these adjustments, don't apply to $Global,
  4041. // which is the most likely to rely on reflection, and least likely to rely implicit layouts
  4042. if (glslangIntermediate->usingHlslOffsets() &&
  4043. ! memberType.isArray() && memberType.isVector() && structType.getTypeName().compare("$Global") != 0) {
  4044. int dummySize;
  4045. int componentAlignment = glslangIntermediate->getBaseAlignmentScalar(memberType, dummySize);
  4046. if (componentAlignment <= 4)
  4047. memberAlignment = componentAlignment;
  4048. }
  4049. // Bump up to member alignment
  4050. glslang::RoundToPow2(currentOffset, memberAlignment);
  4051. // Bump up to vec4 if there is a bad straddle
  4052. if (explicitLayout != glslang::ElpScalar && glslangIntermediate->improperStraddle(memberType, memberSize,
  4053. currentOffset))
  4054. glslang::RoundToPow2(currentOffset, 16);
  4055. nextOffset = currentOffset + memberSize;
  4056. }
  4057. void TGlslangToSpvTraverser::declareUseOfStructMember(const glslang::TTypeList& members, int glslangMember)
  4058. {
  4059. const glslang::TBuiltInVariable glslangBuiltIn = members[glslangMember].type->getQualifier().builtIn;
  4060. switch (glslangBuiltIn)
  4061. {
  4062. case glslang::EbvPointSize:
  4063. #ifndef GLSLANG_WEB
  4064. case glslang::EbvClipDistance:
  4065. case glslang::EbvCullDistance:
  4066. case glslang::EbvViewportMaskNV:
  4067. case glslang::EbvSecondaryPositionNV:
  4068. case glslang::EbvSecondaryViewportMaskNV:
  4069. case glslang::EbvPositionPerViewNV:
  4070. case glslang::EbvViewportMaskPerViewNV:
  4071. case glslang::EbvTaskCountNV:
  4072. case glslang::EbvPrimitiveCountNV:
  4073. case glslang::EbvPrimitiveIndicesNV:
  4074. case glslang::EbvClipDistancePerViewNV:
  4075. case glslang::EbvCullDistancePerViewNV:
  4076. case glslang::EbvLayerPerViewNV:
  4077. case glslang::EbvMeshViewCountNV:
  4078. case glslang::EbvMeshViewIndicesNV:
  4079. #endif
  4080. // Generate the associated capability. Delegate to TranslateBuiltInDecoration.
  4081. // Alternately, we could just call this for any glslang built-in, since the
  4082. // capability already guards against duplicates.
  4083. TranslateBuiltInDecoration(glslangBuiltIn, false);
  4084. break;
  4085. default:
  4086. // Capabilities were already generated when the struct was declared.
  4087. break;
  4088. }
  4089. }
  4090. bool TGlslangToSpvTraverser::isShaderEntryPoint(const glslang::TIntermAggregate* node)
  4091. {
  4092. return node->getName().compare(glslangIntermediate->getEntryPointMangledName().c_str()) == 0;
  4093. }
  4094. // Does parameter need a place to keep writes, separate from the original?
  4095. // Assumes called after originalParam(), which filters out block/buffer/opaque-based
  4096. // qualifiers such that we should have only in/out/inout/constreadonly here.
  4097. bool TGlslangToSpvTraverser::writableParam(glslang::TStorageQualifier qualifier) const
  4098. {
  4099. assert(qualifier == glslang::EvqIn ||
  4100. qualifier == glslang::EvqOut ||
  4101. qualifier == glslang::EvqInOut ||
  4102. qualifier == glslang::EvqUniform ||
  4103. qualifier == glslang::EvqConstReadOnly);
  4104. return qualifier != glslang::EvqConstReadOnly &&
  4105. qualifier != glslang::EvqUniform;
  4106. }
  4107. // Is parameter pass-by-original?
  4108. bool TGlslangToSpvTraverser::originalParam(glslang::TStorageQualifier qualifier, const glslang::TType& paramType,
  4109. bool implicitThisParam)
  4110. {
  4111. if (implicitThisParam) // implicit this
  4112. return true;
  4113. if (glslangIntermediate->getSource() == glslang::EShSourceHlsl)
  4114. return paramType.getBasicType() == glslang::EbtBlock;
  4115. return paramType.containsOpaque() || // sampler, etc.
  4116. (paramType.getBasicType() == glslang::EbtBlock && qualifier == glslang::EvqBuffer); // SSBO
  4117. }
  4118. // Make all the functions, skeletally, without actually visiting their bodies.
  4119. void TGlslangToSpvTraverser::makeFunctions(const glslang::TIntermSequence& glslFunctions)
  4120. {
  4121. const auto getParamDecorations = [&](std::vector<spv::Decoration>& decorations, const glslang::TType& type,
  4122. bool useVulkanMemoryModel) {
  4123. spv::Decoration paramPrecision = TranslatePrecisionDecoration(type);
  4124. if (paramPrecision != spv::NoPrecision)
  4125. decorations.push_back(paramPrecision);
  4126. TranslateMemoryDecoration(type.getQualifier(), decorations, useVulkanMemoryModel);
  4127. if (type.isReference()) {
  4128. // Original and non-writable params pass the pointer directly and
  4129. // use restrict/aliased, others are stored to a pointer in Function
  4130. // memory and use RestrictPointer/AliasedPointer.
  4131. if (originalParam(type.getQualifier().storage, type, false) ||
  4132. !writableParam(type.getQualifier().storage)) {
  4133. decorations.push_back(type.getQualifier().isRestrict() ? spv::DecorationRestrict :
  4134. spv::DecorationAliased);
  4135. } else {
  4136. decorations.push_back(type.getQualifier().isRestrict() ? spv::DecorationRestrictPointerEXT :
  4137. spv::DecorationAliasedPointerEXT);
  4138. }
  4139. }
  4140. };
  4141. for (int f = 0; f < (int)glslFunctions.size(); ++f) {
  4142. glslang::TIntermAggregate* glslFunction = glslFunctions[f]->getAsAggregate();
  4143. if (! glslFunction || glslFunction->getOp() != glslang::EOpFunction || isShaderEntryPoint(glslFunction))
  4144. continue;
  4145. // We're on a user function. Set up the basic interface for the function now,
  4146. // so that it's available to call. Translating the body will happen later.
  4147. //
  4148. // Typically (except for a "const in" parameter), an address will be passed to the
  4149. // function. What it is an address of varies:
  4150. //
  4151. // - "in" parameters not marked as "const" can be written to without modifying the calling
  4152. // argument so that write needs to be to a copy, hence the address of a copy works.
  4153. //
  4154. // - "const in" parameters can just be the r-value, as no writes need occur.
  4155. //
  4156. // - "out" and "inout" arguments can't be done as pointers to the calling argument, because
  4157. // GLSL has copy-in/copy-out semantics. They can be handled though with a pointer to a copy.
  4158. std::vector<spv::Id> paramTypes;
  4159. std::vector<std::vector<spv::Decoration>> paramDecorations; // list of decorations per parameter
  4160. glslang::TIntermSequence& parameters = glslFunction->getSequence()[0]->getAsAggregate()->getSequence();
  4161. #ifdef ENABLE_HLSL
  4162. bool implicitThis = (int)parameters.size() > 0 && parameters[0]->getAsSymbolNode()->getName() ==
  4163. glslangIntermediate->implicitThisName;
  4164. #else
  4165. bool implicitThis = false;
  4166. #endif
  4167. paramDecorations.resize(parameters.size());
  4168. for (int p = 0; p < (int)parameters.size(); ++p) {
  4169. const glslang::TType& paramType = parameters[p]->getAsTyped()->getType();
  4170. spv::Id typeId = convertGlslangToSpvType(paramType);
  4171. if (originalParam(paramType.getQualifier().storage, paramType, implicitThis && p == 0))
  4172. typeId = builder.makePointer(TranslateStorageClass(paramType), typeId);
  4173. else if (writableParam(paramType.getQualifier().storage))
  4174. typeId = builder.makePointer(spv::StorageClassFunction, typeId);
  4175. else
  4176. rValueParameters.insert(parameters[p]->getAsSymbolNode()->getId());
  4177. getParamDecorations(paramDecorations[p], paramType, glslangIntermediate->usingVulkanMemoryModel());
  4178. paramTypes.push_back(typeId);
  4179. }
  4180. spv::Block* functionBlock;
  4181. spv::Function *function = builder.makeFunctionEntry(TranslatePrecisionDecoration(glslFunction->getType()),
  4182. convertGlslangToSpvType(glslFunction->getType()),
  4183. glslFunction->getName().c_str(), paramTypes,
  4184. paramDecorations, &functionBlock);
  4185. if (implicitThis)
  4186. function->setImplicitThis();
  4187. // Track function to emit/call later
  4188. functionMap[glslFunction->getName().c_str()] = function;
  4189. // Set the parameter id's
  4190. for (int p = 0; p < (int)parameters.size(); ++p) {
  4191. symbolValues[parameters[p]->getAsSymbolNode()->getId()] = function->getParamId(p);
  4192. // give a name too
  4193. builder.addName(function->getParamId(p), parameters[p]->getAsSymbolNode()->getName().c_str());
  4194. const glslang::TType& paramType = parameters[p]->getAsTyped()->getType();
  4195. if (paramType.contains8BitInt())
  4196. builder.addCapability(spv::CapabilityInt8);
  4197. if (paramType.contains16BitInt())
  4198. builder.addCapability(spv::CapabilityInt16);
  4199. if (paramType.contains16BitFloat())
  4200. builder.addCapability(spv::CapabilityFloat16);
  4201. }
  4202. }
  4203. }
  4204. // Process all the initializers, while skipping the functions and link objects
  4205. void TGlslangToSpvTraverser::makeGlobalInitializers(const glslang::TIntermSequence& initializers)
  4206. {
  4207. builder.setBuildPoint(shaderEntry->getLastBlock());
  4208. for (int i = 0; i < (int)initializers.size(); ++i) {
  4209. glslang::TIntermAggregate* initializer = initializers[i]->getAsAggregate();
  4210. if (initializer && initializer->getOp() != glslang::EOpFunction && initializer->getOp() !=
  4211. glslang::EOpLinkerObjects) {
  4212. // We're on a top-level node that's not a function. Treat as an initializer, whose
  4213. // code goes into the beginning of the entry point.
  4214. initializer->traverse(this);
  4215. }
  4216. }
  4217. }
  4218. // Walk over all linker objects to create a map for payload and callable data linker objects
  4219. // and their location to be used during codegen for OpTraceKHR and OpExecuteCallableKHR
  4220. // This is done here since it is possible that these linker objects are not be referenced in the AST
  4221. void TGlslangToSpvTraverser::collectRayTracingLinkerObjects()
  4222. {
  4223. glslang::TIntermAggregate* linkerObjects = glslangIntermediate->findLinkerObjects();
  4224. for (auto& objSeq : linkerObjects->getSequence()) {
  4225. auto objNode = objSeq->getAsSymbolNode();
  4226. if (objNode != nullptr) {
  4227. if (objNode->getQualifier().hasLocation()) {
  4228. unsigned int location = objNode->getQualifier().layoutLocation;
  4229. auto st = objNode->getQualifier().storage;
  4230. int set;
  4231. switch (st)
  4232. {
  4233. case glslang::EvqPayload:
  4234. case glslang::EvqPayloadIn:
  4235. set = 0;
  4236. break;
  4237. case glslang::EvqCallableData:
  4238. case glslang::EvqCallableDataIn:
  4239. set = 1;
  4240. break;
  4241. default:
  4242. set = -1;
  4243. }
  4244. if (set != -1)
  4245. locationToSymbol[set].insert(std::make_pair(location, objNode));
  4246. }
  4247. }
  4248. }
  4249. }
  4250. // Process all the functions, while skipping initializers.
  4251. void TGlslangToSpvTraverser::visitFunctions(const glslang::TIntermSequence& glslFunctions)
  4252. {
  4253. for (int f = 0; f < (int)glslFunctions.size(); ++f) {
  4254. glslang::TIntermAggregate* node = glslFunctions[f]->getAsAggregate();
  4255. if (node && (node->getOp() == glslang::EOpFunction || node->getOp() == glslang::EOpLinkerObjects))
  4256. node->traverse(this);
  4257. }
  4258. }
  4259. void TGlslangToSpvTraverser::handleFunctionEntry(const glslang::TIntermAggregate* node)
  4260. {
  4261. // SPIR-V functions should already be in the functionMap from the prepass
  4262. // that called makeFunctions().
  4263. currentFunction = functionMap[node->getName().c_str()];
  4264. spv::Block* functionBlock = currentFunction->getEntryBlock();
  4265. builder.setBuildPoint(functionBlock);
  4266. }
  4267. void TGlslangToSpvTraverser::translateArguments(const glslang::TIntermAggregate& node, std::vector<spv::Id>& arguments,
  4268. spv::Builder::AccessChain::CoherentFlags &lvalueCoherentFlags)
  4269. {
  4270. const glslang::TIntermSequence& glslangArguments = node.getSequence();
  4271. glslang::TSampler sampler = {};
  4272. bool cubeCompare = false;
  4273. #ifndef GLSLANG_WEB
  4274. bool f16ShadowCompare = false;
  4275. #endif
  4276. if (node.isTexture() || node.isImage()) {
  4277. sampler = glslangArguments[0]->getAsTyped()->getType().getSampler();
  4278. cubeCompare = sampler.dim == glslang::EsdCube && sampler.arrayed && sampler.shadow;
  4279. #ifndef GLSLANG_WEB
  4280. f16ShadowCompare = sampler.shadow &&
  4281. glslangArguments[1]->getAsTyped()->getType().getBasicType() == glslang::EbtFloat16;
  4282. #endif
  4283. }
  4284. for (int i = 0; i < (int)glslangArguments.size(); ++i) {
  4285. builder.clearAccessChain();
  4286. glslangArguments[i]->traverse(this);
  4287. #ifndef GLSLANG_WEB
  4288. // Special case l-value operands
  4289. bool lvalue = false;
  4290. switch (node.getOp()) {
  4291. case glslang::EOpImageAtomicAdd:
  4292. case glslang::EOpImageAtomicMin:
  4293. case glslang::EOpImageAtomicMax:
  4294. case glslang::EOpImageAtomicAnd:
  4295. case glslang::EOpImageAtomicOr:
  4296. case glslang::EOpImageAtomicXor:
  4297. case glslang::EOpImageAtomicExchange:
  4298. case glslang::EOpImageAtomicCompSwap:
  4299. case glslang::EOpImageAtomicLoad:
  4300. case glslang::EOpImageAtomicStore:
  4301. if (i == 0)
  4302. lvalue = true;
  4303. break;
  4304. case glslang::EOpSparseImageLoad:
  4305. if ((sampler.ms && i == 3) || (! sampler.ms && i == 2))
  4306. lvalue = true;
  4307. break;
  4308. case glslang::EOpSparseTexture:
  4309. if (((cubeCompare || f16ShadowCompare) && i == 3) || (! (cubeCompare || f16ShadowCompare) && i == 2))
  4310. lvalue = true;
  4311. break;
  4312. case glslang::EOpSparseTextureClamp:
  4313. if (((cubeCompare || f16ShadowCompare) && i == 4) || (! (cubeCompare || f16ShadowCompare) && i == 3))
  4314. lvalue = true;
  4315. break;
  4316. case glslang::EOpSparseTextureLod:
  4317. case glslang::EOpSparseTextureOffset:
  4318. if ((f16ShadowCompare && i == 4) || (! f16ShadowCompare && i == 3))
  4319. lvalue = true;
  4320. break;
  4321. case glslang::EOpSparseTextureFetch:
  4322. if ((sampler.dim != glslang::EsdRect && i == 3) || (sampler.dim == glslang::EsdRect && i == 2))
  4323. lvalue = true;
  4324. break;
  4325. case glslang::EOpSparseTextureFetchOffset:
  4326. if ((sampler.dim != glslang::EsdRect && i == 4) || (sampler.dim == glslang::EsdRect && i == 3))
  4327. lvalue = true;
  4328. break;
  4329. case glslang::EOpSparseTextureLodOffset:
  4330. case glslang::EOpSparseTextureGrad:
  4331. case glslang::EOpSparseTextureOffsetClamp:
  4332. if ((f16ShadowCompare && i == 5) || (! f16ShadowCompare && i == 4))
  4333. lvalue = true;
  4334. break;
  4335. case glslang::EOpSparseTextureGradOffset:
  4336. case glslang::EOpSparseTextureGradClamp:
  4337. if ((f16ShadowCompare && i == 6) || (! f16ShadowCompare && i == 5))
  4338. lvalue = true;
  4339. break;
  4340. case glslang::EOpSparseTextureGradOffsetClamp:
  4341. if ((f16ShadowCompare && i == 7) || (! f16ShadowCompare && i == 6))
  4342. lvalue = true;
  4343. break;
  4344. case glslang::EOpSparseTextureGather:
  4345. if ((sampler.shadow && i == 3) || (! sampler.shadow && i == 2))
  4346. lvalue = true;
  4347. break;
  4348. case glslang::EOpSparseTextureGatherOffset:
  4349. case glslang::EOpSparseTextureGatherOffsets:
  4350. if ((sampler.shadow && i == 4) || (! sampler.shadow && i == 3))
  4351. lvalue = true;
  4352. break;
  4353. case glslang::EOpSparseTextureGatherLod:
  4354. if (i == 3)
  4355. lvalue = true;
  4356. break;
  4357. case glslang::EOpSparseTextureGatherLodOffset:
  4358. case glslang::EOpSparseTextureGatherLodOffsets:
  4359. if (i == 4)
  4360. lvalue = true;
  4361. break;
  4362. case glslang::EOpSparseImageLoadLod:
  4363. if (i == 3)
  4364. lvalue = true;
  4365. break;
  4366. case glslang::EOpImageSampleFootprintNV:
  4367. if (i == 4)
  4368. lvalue = true;
  4369. break;
  4370. case glslang::EOpImageSampleFootprintClampNV:
  4371. case glslang::EOpImageSampleFootprintLodNV:
  4372. if (i == 5)
  4373. lvalue = true;
  4374. break;
  4375. case glslang::EOpImageSampleFootprintGradNV:
  4376. if (i == 6)
  4377. lvalue = true;
  4378. break;
  4379. case glslang::EOpImageSampleFootprintGradClampNV:
  4380. if (i == 7)
  4381. lvalue = true;
  4382. break;
  4383. default:
  4384. break;
  4385. }
  4386. if (lvalue) {
  4387. spv::Id lvalue_id = builder.accessChainGetLValue();
  4388. arguments.push_back(lvalue_id);
  4389. lvalueCoherentFlags = builder.getAccessChain().coherentFlags;
  4390. builder.addDecoration(lvalue_id, TranslateNonUniformDecoration(lvalueCoherentFlags));
  4391. lvalueCoherentFlags |= TranslateCoherent(glslangArguments[i]->getAsTyped()->getType());
  4392. } else
  4393. #endif
  4394. arguments.push_back(accessChainLoad(glslangArguments[i]->getAsTyped()->getType()));
  4395. }
  4396. }
  4397. void TGlslangToSpvTraverser::translateArguments(glslang::TIntermUnary& node, std::vector<spv::Id>& arguments)
  4398. {
  4399. builder.clearAccessChain();
  4400. node.getOperand()->traverse(this);
  4401. arguments.push_back(accessChainLoad(node.getOperand()->getType()));
  4402. }
  4403. spv::Id TGlslangToSpvTraverser::createImageTextureFunctionCall(glslang::TIntermOperator* node)
  4404. {
  4405. if (! node->isImage() && ! node->isTexture())
  4406. return spv::NoResult;
  4407. builder.setLine(node->getLoc().line, node->getLoc().getFilename());
  4408. // Process a GLSL texturing op (will be SPV image)
  4409. const glslang::TType &imageType = node->getAsAggregate()
  4410. ? node->getAsAggregate()->getSequence()[0]->getAsTyped()->getType()
  4411. : node->getAsUnaryNode()->getOperand()->getAsTyped()->getType();
  4412. const glslang::TSampler sampler = imageType.getSampler();
  4413. #ifdef GLSLANG_WEB
  4414. const bool f16ShadowCompare = false;
  4415. #else
  4416. bool f16ShadowCompare = (sampler.shadow && node->getAsAggregate())
  4417. ? node->getAsAggregate()->getSequence()[1]->getAsTyped()->getType().getBasicType() == glslang::EbtFloat16
  4418. : false;
  4419. #endif
  4420. const auto signExtensionMask = [&]() {
  4421. if (builder.getSpvVersion() >= spv::Spv_1_4) {
  4422. if (sampler.type == glslang::EbtUint)
  4423. return spv::ImageOperandsZeroExtendMask;
  4424. else if (sampler.type == glslang::EbtInt)
  4425. return spv::ImageOperandsSignExtendMask;
  4426. }
  4427. return spv::ImageOperandsMaskNone;
  4428. };
  4429. spv::Builder::AccessChain::CoherentFlags lvalueCoherentFlags;
  4430. std::vector<spv::Id> arguments;
  4431. if (node->getAsAggregate())
  4432. translateArguments(*node->getAsAggregate(), arguments, lvalueCoherentFlags);
  4433. else
  4434. translateArguments(*node->getAsUnaryNode(), arguments);
  4435. spv::Decoration precision = TranslatePrecisionDecoration(node->getType());
  4436. spv::Builder::TextureParameters params = { };
  4437. params.sampler = arguments[0];
  4438. glslang::TCrackedTextureOp cracked;
  4439. node->crackTexture(sampler, cracked);
  4440. const bool isUnsignedResult = node->getType().getBasicType() == glslang::EbtUint;
  4441. if (builder.isSampledImage(params.sampler) &&
  4442. ((cracked.query && node->getOp() != glslang::EOpTextureQueryLod) || cracked.fragMask || cracked.fetch)) {
  4443. params.sampler = builder.createUnaryOp(spv::OpImage, builder.getImageType(params.sampler), params.sampler);
  4444. if (imageType.getQualifier().isNonUniform()) {
  4445. builder.addDecoration(params.sampler, spv::DecorationNonUniformEXT);
  4446. }
  4447. }
  4448. // Check for queries
  4449. if (cracked.query) {
  4450. switch (node->getOp()) {
  4451. case glslang::EOpImageQuerySize:
  4452. case glslang::EOpTextureQuerySize:
  4453. if (arguments.size() > 1) {
  4454. params.lod = arguments[1];
  4455. return builder.createTextureQueryCall(spv::OpImageQuerySizeLod, params, isUnsignedResult);
  4456. } else
  4457. return builder.createTextureQueryCall(spv::OpImageQuerySize, params, isUnsignedResult);
  4458. #ifndef GLSLANG_WEB
  4459. case glslang::EOpImageQuerySamples:
  4460. case glslang::EOpTextureQuerySamples:
  4461. return builder.createTextureQueryCall(spv::OpImageQuerySamples, params, isUnsignedResult);
  4462. case glslang::EOpTextureQueryLod:
  4463. params.coords = arguments[1];
  4464. return builder.createTextureQueryCall(spv::OpImageQueryLod, params, isUnsignedResult);
  4465. case glslang::EOpTextureQueryLevels:
  4466. return builder.createTextureQueryCall(spv::OpImageQueryLevels, params, isUnsignedResult);
  4467. case glslang::EOpSparseTexelsResident:
  4468. return builder.createUnaryOp(spv::OpImageSparseTexelsResident, builder.makeBoolType(), arguments[0]);
  4469. #endif
  4470. default:
  4471. assert(0);
  4472. break;
  4473. }
  4474. }
  4475. int components = node->getType().getVectorSize();
  4476. if (node->getOp() == glslang::EOpTextureFetch) {
  4477. // These must produce 4 components, per SPIR-V spec. We'll add a conversion constructor if needed.
  4478. // This will only happen through the HLSL path for operator[], so we do not have to handle e.g.
  4479. // the EOpTexture/Proj/Lod/etc family. It would be harmless to do so, but would need more logic
  4480. // here around e.g. which ones return scalars or other types.
  4481. components = 4;
  4482. }
  4483. glslang::TType returnType(node->getType().getBasicType(), glslang::EvqTemporary, components);
  4484. auto resultType = [&returnType,this]{ return convertGlslangToSpvType(returnType); };
  4485. // Check for image functions other than queries
  4486. if (node->isImage()) {
  4487. std::vector<spv::IdImmediate> operands;
  4488. auto opIt = arguments.begin();
  4489. spv::IdImmediate image = { true, *(opIt++) };
  4490. operands.push_back(image);
  4491. // Handle subpass operations
  4492. // TODO: GLSL should change to have the "MS" only on the type rather than the
  4493. // built-in function.
  4494. if (cracked.subpass) {
  4495. // add on the (0,0) coordinate
  4496. spv::Id zero = builder.makeIntConstant(0);
  4497. std::vector<spv::Id> comps;
  4498. comps.push_back(zero);
  4499. comps.push_back(zero);
  4500. spv::IdImmediate coord = { true,
  4501. builder.makeCompositeConstant(builder.makeVectorType(builder.makeIntType(32), 2), comps) };
  4502. operands.push_back(coord);
  4503. spv::IdImmediate imageOperands = { false, spv::ImageOperandsMaskNone };
  4504. imageOperands.word = imageOperands.word | signExtensionMask();
  4505. if (sampler.isMultiSample()) {
  4506. imageOperands.word = imageOperands.word | spv::ImageOperandsSampleMask;
  4507. }
  4508. if (imageOperands.word != spv::ImageOperandsMaskNone) {
  4509. operands.push_back(imageOperands);
  4510. if (sampler.isMultiSample()) {
  4511. spv::IdImmediate imageOperand = { true, *(opIt++) };
  4512. operands.push_back(imageOperand);
  4513. }
  4514. }
  4515. spv::Id result = builder.createOp(spv::OpImageRead, resultType(), operands);
  4516. builder.setPrecision(result, precision);
  4517. return result;
  4518. }
  4519. spv::IdImmediate coord = { true, *(opIt++) };
  4520. operands.push_back(coord);
  4521. if (node->getOp() == glslang::EOpImageLoad || node->getOp() == glslang::EOpImageLoadLod) {
  4522. spv::ImageOperandsMask mask = spv::ImageOperandsMaskNone;
  4523. if (sampler.isMultiSample()) {
  4524. mask = mask | spv::ImageOperandsSampleMask;
  4525. }
  4526. if (cracked.lod) {
  4527. builder.addExtension(spv::E_SPV_AMD_shader_image_load_store_lod);
  4528. builder.addCapability(spv::CapabilityImageReadWriteLodAMD);
  4529. mask = mask | spv::ImageOperandsLodMask;
  4530. }
  4531. mask = mask | TranslateImageOperands(TranslateCoherent(imageType));
  4532. mask = (spv::ImageOperandsMask)(mask & ~spv::ImageOperandsMakeTexelAvailableKHRMask);
  4533. mask = mask | signExtensionMask();
  4534. if (mask != spv::ImageOperandsMaskNone) {
  4535. spv::IdImmediate imageOperands = { false, (unsigned int)mask };
  4536. operands.push_back(imageOperands);
  4537. }
  4538. if (mask & spv::ImageOperandsSampleMask) {
  4539. spv::IdImmediate imageOperand = { true, *opIt++ };
  4540. operands.push_back(imageOperand);
  4541. }
  4542. if (mask & spv::ImageOperandsLodMask) {
  4543. spv::IdImmediate imageOperand = { true, *opIt++ };
  4544. operands.push_back(imageOperand);
  4545. }
  4546. if (mask & spv::ImageOperandsMakeTexelVisibleKHRMask) {
  4547. spv::IdImmediate imageOperand = { true,
  4548. builder.makeUintConstant(TranslateMemoryScope(TranslateCoherent(imageType))) };
  4549. operands.push_back(imageOperand);
  4550. }
  4551. if (builder.getImageTypeFormat(builder.getImageType(operands.front().word)) == spv::ImageFormatUnknown)
  4552. builder.addCapability(spv::CapabilityStorageImageReadWithoutFormat);
  4553. std::vector<spv::Id> result(1, builder.createOp(spv::OpImageRead, resultType(), operands));
  4554. builder.setPrecision(result[0], precision);
  4555. // If needed, add a conversion constructor to the proper size.
  4556. if (components != node->getType().getVectorSize())
  4557. result[0] = builder.createConstructor(precision, result, convertGlslangToSpvType(node->getType()));
  4558. return result[0];
  4559. } else if (node->getOp() == glslang::EOpImageStore || node->getOp() == glslang::EOpImageStoreLod) {
  4560. // Push the texel value before the operands
  4561. if (sampler.isMultiSample() || cracked.lod) {
  4562. spv::IdImmediate texel = { true, *(opIt + 1) };
  4563. operands.push_back(texel);
  4564. } else {
  4565. spv::IdImmediate texel = { true, *opIt };
  4566. operands.push_back(texel);
  4567. }
  4568. spv::ImageOperandsMask mask = spv::ImageOperandsMaskNone;
  4569. if (sampler.isMultiSample()) {
  4570. mask = mask | spv::ImageOperandsSampleMask;
  4571. }
  4572. if (cracked.lod) {
  4573. builder.addExtension(spv::E_SPV_AMD_shader_image_load_store_lod);
  4574. builder.addCapability(spv::CapabilityImageReadWriteLodAMD);
  4575. mask = mask | spv::ImageOperandsLodMask;
  4576. }
  4577. mask = mask | TranslateImageOperands(TranslateCoherent(imageType));
  4578. mask = (spv::ImageOperandsMask)(mask & ~spv::ImageOperandsMakeTexelVisibleKHRMask);
  4579. mask = mask | signExtensionMask();
  4580. if (mask != spv::ImageOperandsMaskNone) {
  4581. spv::IdImmediate imageOperands = { false, (unsigned int)mask };
  4582. operands.push_back(imageOperands);
  4583. }
  4584. if (mask & spv::ImageOperandsSampleMask) {
  4585. spv::IdImmediate imageOperand = { true, *opIt++ };
  4586. operands.push_back(imageOperand);
  4587. }
  4588. if (mask & spv::ImageOperandsLodMask) {
  4589. spv::IdImmediate imageOperand = { true, *opIt++ };
  4590. operands.push_back(imageOperand);
  4591. }
  4592. if (mask & spv::ImageOperandsMakeTexelAvailableKHRMask) {
  4593. spv::IdImmediate imageOperand = { true,
  4594. builder.makeUintConstant(TranslateMemoryScope(TranslateCoherent(imageType))) };
  4595. operands.push_back(imageOperand);
  4596. }
  4597. builder.createNoResultOp(spv::OpImageWrite, operands);
  4598. if (builder.getImageTypeFormat(builder.getImageType(operands.front().word)) == spv::ImageFormatUnknown)
  4599. builder.addCapability(spv::CapabilityStorageImageWriteWithoutFormat);
  4600. return spv::NoResult;
  4601. } else if (node->getOp() == glslang::EOpSparseImageLoad ||
  4602. node->getOp() == glslang::EOpSparseImageLoadLod) {
  4603. builder.addCapability(spv::CapabilitySparseResidency);
  4604. if (builder.getImageTypeFormat(builder.getImageType(operands.front().word)) == spv::ImageFormatUnknown)
  4605. builder.addCapability(spv::CapabilityStorageImageReadWithoutFormat);
  4606. spv::ImageOperandsMask mask = spv::ImageOperandsMaskNone;
  4607. if (sampler.isMultiSample()) {
  4608. mask = mask | spv::ImageOperandsSampleMask;
  4609. }
  4610. if (cracked.lod) {
  4611. builder.addExtension(spv::E_SPV_AMD_shader_image_load_store_lod);
  4612. builder.addCapability(spv::CapabilityImageReadWriteLodAMD);
  4613. mask = mask | spv::ImageOperandsLodMask;
  4614. }
  4615. mask = mask | TranslateImageOperands(TranslateCoherent(imageType));
  4616. mask = (spv::ImageOperandsMask)(mask & ~spv::ImageOperandsMakeTexelAvailableKHRMask);
  4617. mask = mask | signExtensionMask();
  4618. if (mask != spv::ImageOperandsMaskNone) {
  4619. spv::IdImmediate imageOperands = { false, (unsigned int)mask };
  4620. operands.push_back(imageOperands);
  4621. }
  4622. if (mask & spv::ImageOperandsSampleMask) {
  4623. spv::IdImmediate imageOperand = { true, *opIt++ };
  4624. operands.push_back(imageOperand);
  4625. }
  4626. if (mask & spv::ImageOperandsLodMask) {
  4627. spv::IdImmediate imageOperand = { true, *opIt++ };
  4628. operands.push_back(imageOperand);
  4629. }
  4630. if (mask & spv::ImageOperandsMakeTexelVisibleKHRMask) {
  4631. spv::IdImmediate imageOperand = { true, builder.makeUintConstant(TranslateMemoryScope(
  4632. TranslateCoherent(imageType))) };
  4633. operands.push_back(imageOperand);
  4634. }
  4635. // Create the return type that was a special structure
  4636. spv::Id texelOut = *opIt;
  4637. spv::Id typeId0 = resultType();
  4638. spv::Id typeId1 = builder.getDerefTypeId(texelOut);
  4639. spv::Id resultTypeId = builder.makeStructResultType(typeId0, typeId1);
  4640. spv::Id resultId = builder.createOp(spv::OpImageSparseRead, resultTypeId, operands);
  4641. // Decode the return type
  4642. builder.createStore(builder.createCompositeExtract(resultId, typeId1, 1), texelOut);
  4643. return builder.createCompositeExtract(resultId, typeId0, 0);
  4644. } else {
  4645. // Process image atomic operations
  4646. // GLSL "IMAGE_PARAMS" will involve in constructing an image texel pointer and this pointer,
  4647. // as the first source operand, is required by SPIR-V atomic operations.
  4648. // For non-MS, the sample value should be 0
  4649. spv::IdImmediate sample = { true, sampler.isMultiSample() ? *(opIt++) : builder.makeUintConstant(0) };
  4650. operands.push_back(sample);
  4651. spv::Id resultTypeId;
  4652. // imageAtomicStore has a void return type so base the pointer type on
  4653. // the type of the value operand.
  4654. if (node->getOp() == glslang::EOpImageAtomicStore) {
  4655. resultTypeId = builder.makePointer(spv::StorageClassImage, builder.getTypeId(*opIt));
  4656. } else {
  4657. resultTypeId = builder.makePointer(spv::StorageClassImage, resultType());
  4658. }
  4659. spv::Id pointer = builder.createOp(spv::OpImageTexelPointer, resultTypeId, operands);
  4660. if (imageType.getQualifier().nonUniform) {
  4661. builder.addDecoration(pointer, spv::DecorationNonUniformEXT);
  4662. }
  4663. std::vector<spv::Id> operands;
  4664. operands.push_back(pointer);
  4665. for (; opIt != arguments.end(); ++opIt)
  4666. operands.push_back(*opIt);
  4667. return createAtomicOperation(node->getOp(), precision, resultType(), operands, node->getBasicType(),
  4668. lvalueCoherentFlags);
  4669. }
  4670. }
  4671. #ifndef GLSLANG_WEB
  4672. // Check for fragment mask functions other than queries
  4673. if (cracked.fragMask) {
  4674. assert(sampler.ms);
  4675. auto opIt = arguments.begin();
  4676. std::vector<spv::Id> operands;
  4677. operands.push_back(params.sampler);
  4678. ++opIt;
  4679. if (sampler.isSubpass()) {
  4680. // add on the (0,0) coordinate
  4681. spv::Id zero = builder.makeIntConstant(0);
  4682. std::vector<spv::Id> comps;
  4683. comps.push_back(zero);
  4684. comps.push_back(zero);
  4685. operands.push_back(builder.makeCompositeConstant(
  4686. builder.makeVectorType(builder.makeIntType(32), 2), comps));
  4687. }
  4688. for (; opIt != arguments.end(); ++opIt)
  4689. operands.push_back(*opIt);
  4690. spv::Op fragMaskOp = spv::OpNop;
  4691. if (node->getOp() == glslang::EOpFragmentMaskFetch)
  4692. fragMaskOp = spv::OpFragmentMaskFetchAMD;
  4693. else if (node->getOp() == glslang::EOpFragmentFetch)
  4694. fragMaskOp = spv::OpFragmentFetchAMD;
  4695. builder.addExtension(spv::E_SPV_AMD_shader_fragment_mask);
  4696. builder.addCapability(spv::CapabilityFragmentMaskAMD);
  4697. return builder.createOp(fragMaskOp, resultType(), operands);
  4698. }
  4699. #endif
  4700. // Check for texture functions other than queries
  4701. bool sparse = node->isSparseTexture();
  4702. bool imageFootprint = node->isImageFootprint();
  4703. bool cubeCompare = sampler.dim == glslang::EsdCube && sampler.isArrayed() && sampler.isShadow();
  4704. // check for bias argument
  4705. bool bias = false;
  4706. if (! cracked.lod && ! cracked.grad && ! cracked.fetch && ! cubeCompare) {
  4707. int nonBiasArgCount = 2;
  4708. if (cracked.gather)
  4709. ++nonBiasArgCount; // comp argument should be present when bias argument is present
  4710. if (f16ShadowCompare)
  4711. ++nonBiasArgCount;
  4712. if (cracked.offset)
  4713. ++nonBiasArgCount;
  4714. else if (cracked.offsets)
  4715. ++nonBiasArgCount;
  4716. if (cracked.grad)
  4717. nonBiasArgCount += 2;
  4718. if (cracked.lodClamp)
  4719. ++nonBiasArgCount;
  4720. if (sparse)
  4721. ++nonBiasArgCount;
  4722. if (imageFootprint)
  4723. //Following three extra arguments
  4724. // int granularity, bool coarse, out gl_TextureFootprint2DNV footprint
  4725. nonBiasArgCount += 3;
  4726. if ((int)arguments.size() > nonBiasArgCount)
  4727. bias = true;
  4728. }
  4729. #ifndef GLSLANG_WEB
  4730. if (cracked.gather) {
  4731. const auto& sourceExtensions = glslangIntermediate->getRequestedExtensions();
  4732. if (bias || cracked.lod ||
  4733. sourceExtensions.find(glslang::E_GL_AMD_texture_gather_bias_lod) != sourceExtensions.end()) {
  4734. builder.addExtension(spv::E_SPV_AMD_texture_gather_bias_lod);
  4735. builder.addCapability(spv::CapabilityImageGatherBiasLodAMD);
  4736. }
  4737. }
  4738. #endif
  4739. // set the rest of the arguments
  4740. params.coords = arguments[1];
  4741. int extraArgs = 0;
  4742. bool noImplicitLod = false;
  4743. // sort out where Dref is coming from
  4744. if (cubeCompare || f16ShadowCompare) {
  4745. params.Dref = arguments[2];
  4746. ++extraArgs;
  4747. } else if (sampler.shadow && cracked.gather) {
  4748. params.Dref = arguments[2];
  4749. ++extraArgs;
  4750. } else if (sampler.shadow) {
  4751. std::vector<spv::Id> indexes;
  4752. int dRefComp;
  4753. if (cracked.proj)
  4754. dRefComp = 2; // "The resulting 3rd component of P in the shadow forms is used as Dref"
  4755. else
  4756. dRefComp = builder.getNumComponents(params.coords) - 1;
  4757. indexes.push_back(dRefComp);
  4758. params.Dref = builder.createCompositeExtract(params.coords,
  4759. builder.getScalarTypeId(builder.getTypeId(params.coords)), indexes);
  4760. }
  4761. // lod
  4762. if (cracked.lod) {
  4763. params.lod = arguments[2 + extraArgs];
  4764. ++extraArgs;
  4765. } else if (glslangIntermediate->getStage() != EShLangFragment &&
  4766. !(glslangIntermediate->getStage() == EShLangCompute &&
  4767. glslangIntermediate->hasLayoutDerivativeModeNone())) {
  4768. // we need to invent the default lod for an explicit lod instruction for a non-fragment stage
  4769. noImplicitLod = true;
  4770. }
  4771. // multisample
  4772. if (sampler.isMultiSample()) {
  4773. params.sample = arguments[2 + extraArgs]; // For MS, "sample" should be specified
  4774. ++extraArgs;
  4775. }
  4776. // gradient
  4777. if (cracked.grad) {
  4778. params.gradX = arguments[2 + extraArgs];
  4779. params.gradY = arguments[3 + extraArgs];
  4780. extraArgs += 2;
  4781. }
  4782. // offset and offsets
  4783. if (cracked.offset) {
  4784. params.offset = arguments[2 + extraArgs];
  4785. ++extraArgs;
  4786. } else if (cracked.offsets) {
  4787. params.offsets = arguments[2 + extraArgs];
  4788. ++extraArgs;
  4789. }
  4790. #ifndef GLSLANG_WEB
  4791. // lod clamp
  4792. if (cracked.lodClamp) {
  4793. params.lodClamp = arguments[2 + extraArgs];
  4794. ++extraArgs;
  4795. }
  4796. // sparse
  4797. if (sparse) {
  4798. params.texelOut = arguments[2 + extraArgs];
  4799. ++extraArgs;
  4800. }
  4801. // gather component
  4802. if (cracked.gather && ! sampler.shadow) {
  4803. // default component is 0, if missing, otherwise an argument
  4804. if (2 + extraArgs < (int)arguments.size()) {
  4805. params.component = arguments[2 + extraArgs];
  4806. ++extraArgs;
  4807. } else
  4808. params.component = builder.makeIntConstant(0);
  4809. }
  4810. spv::Id resultStruct = spv::NoResult;
  4811. if (imageFootprint) {
  4812. //Following three extra arguments
  4813. // int granularity, bool coarse, out gl_TextureFootprint2DNV footprint
  4814. params.granularity = arguments[2 + extraArgs];
  4815. params.coarse = arguments[3 + extraArgs];
  4816. resultStruct = arguments[4 + extraArgs];
  4817. extraArgs += 3;
  4818. }
  4819. #endif
  4820. // bias
  4821. if (bias) {
  4822. params.bias = arguments[2 + extraArgs];
  4823. ++extraArgs;
  4824. }
  4825. #ifndef GLSLANG_WEB
  4826. if (imageFootprint) {
  4827. builder.addExtension(spv::E_SPV_NV_shader_image_footprint);
  4828. builder.addCapability(spv::CapabilityImageFootprintNV);
  4829. //resultStructType(OpenGL type) contains 5 elements:
  4830. //struct gl_TextureFootprint2DNV {
  4831. // uvec2 anchor;
  4832. // uvec2 offset;
  4833. // uvec2 mask;
  4834. // uint lod;
  4835. // uint granularity;
  4836. //};
  4837. //or
  4838. //struct gl_TextureFootprint3DNV {
  4839. // uvec3 anchor;
  4840. // uvec3 offset;
  4841. // uvec2 mask;
  4842. // uint lod;
  4843. // uint granularity;
  4844. //};
  4845. spv::Id resultStructType = builder.getContainedTypeId(builder.getTypeId(resultStruct));
  4846. assert(builder.isStructType(resultStructType));
  4847. //resType (SPIR-V type) contains 6 elements:
  4848. //Member 0 must be a Boolean type scalar(LOD),
  4849. //Member 1 must be a vector of integer type, whose Signedness operand is 0(anchor),
  4850. //Member 2 must be a vector of integer type, whose Signedness operand is 0(offset),
  4851. //Member 3 must be a vector of integer type, whose Signedness operand is 0(mask),
  4852. //Member 4 must be a scalar of integer type, whose Signedness operand is 0(lod),
  4853. //Member 5 must be a scalar of integer type, whose Signedness operand is 0(granularity).
  4854. std::vector<spv::Id> members;
  4855. members.push_back(resultType());
  4856. for (int i = 0; i < 5; i++) {
  4857. members.push_back(builder.getContainedTypeId(resultStructType, i));
  4858. }
  4859. spv::Id resType = builder.makeStructType(members, "ResType");
  4860. //call ImageFootprintNV
  4861. spv::Id res = builder.createTextureCall(precision, resType, sparse, cracked.fetch, cracked.proj,
  4862. cracked.gather, noImplicitLod, params, signExtensionMask());
  4863. //copy resType (SPIR-V type) to resultStructType(OpenGL type)
  4864. for (int i = 0; i < 5; i++) {
  4865. builder.clearAccessChain();
  4866. builder.setAccessChainLValue(resultStruct);
  4867. //Accessing to a struct we created, no coherent flag is set
  4868. spv::Builder::AccessChain::CoherentFlags flags;
  4869. flags.clear();
  4870. builder.accessChainPush(builder.makeIntConstant(i), flags, 0);
  4871. builder.accessChainStore(builder.createCompositeExtract(res, builder.getContainedTypeId(resType, i+1),
  4872. i+1), TranslateNonUniformDecoration(imageType.getQualifier()));
  4873. }
  4874. return builder.createCompositeExtract(res, resultType(), 0);
  4875. }
  4876. #endif
  4877. // projective component (might not to move)
  4878. // GLSL: "The texture coordinates consumed from P, not including the last component of P,
  4879. // are divided by the last component of P."
  4880. // SPIR-V: "... (u [, v] [, w], q)... It may be a vector larger than needed, but all
  4881. // unused components will appear after all used components."
  4882. if (cracked.proj) {
  4883. int projSourceComp = builder.getNumComponents(params.coords) - 1;
  4884. int projTargetComp;
  4885. switch (sampler.dim) {
  4886. case glslang::Esd1D: projTargetComp = 1; break;
  4887. case glslang::Esd2D: projTargetComp = 2; break;
  4888. case glslang::EsdRect: projTargetComp = 2; break;
  4889. default: projTargetComp = projSourceComp; break;
  4890. }
  4891. // copy the projective coordinate if we have to
  4892. if (projTargetComp != projSourceComp) {
  4893. spv::Id projComp = builder.createCompositeExtract(params.coords,
  4894. builder.getScalarTypeId(builder.getTypeId(params.coords)), projSourceComp);
  4895. params.coords = builder.createCompositeInsert(projComp, params.coords,
  4896. builder.getTypeId(params.coords), projTargetComp);
  4897. }
  4898. }
  4899. #ifndef GLSLANG_WEB
  4900. // nonprivate
  4901. if (imageType.getQualifier().nonprivate) {
  4902. params.nonprivate = true;
  4903. }
  4904. // volatile
  4905. if (imageType.getQualifier().volatil) {
  4906. params.volatil = true;
  4907. }
  4908. #endif
  4909. std::vector<spv::Id> result( 1,
  4910. builder.createTextureCall(precision, resultType(), sparse, cracked.fetch, cracked.proj, cracked.gather,
  4911. noImplicitLod, params, signExtensionMask())
  4912. );
  4913. if (components != node->getType().getVectorSize())
  4914. result[0] = builder.createConstructor(precision, result, convertGlslangToSpvType(node->getType()));
  4915. return result[0];
  4916. }
  4917. spv::Id TGlslangToSpvTraverser::handleUserFunctionCall(const glslang::TIntermAggregate* node)
  4918. {
  4919. // Grab the function's pointer from the previously created function
  4920. spv::Function* function = functionMap[node->getName().c_str()];
  4921. if (! function)
  4922. return 0;
  4923. const glslang::TIntermSequence& glslangArgs = node->getSequence();
  4924. const glslang::TQualifierList& qualifiers = node->getQualifierList();
  4925. // See comments in makeFunctions() for details about the semantics for parameter passing.
  4926. //
  4927. // These imply we need a four step process:
  4928. // 1. Evaluate the arguments
  4929. // 2. Allocate and make copies of in, out, and inout arguments
  4930. // 3. Make the call
  4931. // 4. Copy back the results
  4932. // 1. Evaluate the arguments and their types
  4933. std::vector<spv::Builder::AccessChain> lValues;
  4934. std::vector<spv::Id> rValues;
  4935. std::vector<const glslang::TType*> argTypes;
  4936. for (int a = 0; a < (int)glslangArgs.size(); ++a) {
  4937. argTypes.push_back(&glslangArgs[a]->getAsTyped()->getType());
  4938. // build l-value
  4939. builder.clearAccessChain();
  4940. glslangArgs[a]->traverse(this);
  4941. // keep outputs and pass-by-originals as l-values, evaluate others as r-values
  4942. if (originalParam(qualifiers[a], *argTypes[a], function->hasImplicitThis() && a == 0) ||
  4943. writableParam(qualifiers[a])) {
  4944. // save l-value
  4945. lValues.push_back(builder.getAccessChain());
  4946. } else {
  4947. // process r-value
  4948. rValues.push_back(accessChainLoad(*argTypes.back()));
  4949. }
  4950. }
  4951. // 2. Allocate space for anything needing a copy, and if it's "in" or "inout"
  4952. // copy the original into that space.
  4953. //
  4954. // Also, build up the list of actual arguments to pass in for the call
  4955. int lValueCount = 0;
  4956. int rValueCount = 0;
  4957. std::vector<spv::Id> spvArgs;
  4958. for (int a = 0; a < (int)glslangArgs.size(); ++a) {
  4959. spv::Id arg;
  4960. if (originalParam(qualifiers[a], *argTypes[a], function->hasImplicitThis() && a == 0)) {
  4961. builder.setAccessChain(lValues[lValueCount]);
  4962. arg = builder.accessChainGetLValue();
  4963. ++lValueCount;
  4964. } else if (writableParam(qualifiers[a])) {
  4965. // need space to hold the copy
  4966. arg = builder.createVariable(function->getParamPrecision(a), spv::StorageClassFunction,
  4967. builder.getContainedTypeId(function->getParamType(a)), "param");
  4968. if (qualifiers[a] == glslang::EvqIn || qualifiers[a] == glslang::EvqInOut) {
  4969. // need to copy the input into output space
  4970. builder.setAccessChain(lValues[lValueCount]);
  4971. spv::Id copy = accessChainLoad(*argTypes[a]);
  4972. builder.clearAccessChain();
  4973. builder.setAccessChainLValue(arg);
  4974. multiTypeStore(*argTypes[a], copy);
  4975. }
  4976. ++lValueCount;
  4977. } else {
  4978. // process r-value, which involves a copy for a type mismatch
  4979. if (function->getParamType(a) != convertGlslangToSpvType(*argTypes[a]) ||
  4980. TranslatePrecisionDecoration(*argTypes[a]) != function->getParamPrecision(a))
  4981. {
  4982. spv::Id argCopy = builder.createVariable(function->getParamPrecision(a), spv::StorageClassFunction, function->getParamType(a), "arg");
  4983. builder.clearAccessChain();
  4984. builder.setAccessChainLValue(argCopy);
  4985. multiTypeStore(*argTypes[a], rValues[rValueCount]);
  4986. arg = builder.createLoad(argCopy, function->getParamPrecision(a));
  4987. } else
  4988. arg = rValues[rValueCount];
  4989. ++rValueCount;
  4990. }
  4991. spvArgs.push_back(arg);
  4992. }
  4993. // 3. Make the call.
  4994. spv::Id result = builder.createFunctionCall(function, spvArgs);
  4995. builder.setPrecision(result, TranslatePrecisionDecoration(node->getType()));
  4996. builder.addDecoration(result, TranslateNonUniformDecoration(node->getType().getQualifier()));
  4997. // 4. Copy back out an "out" arguments.
  4998. lValueCount = 0;
  4999. for (int a = 0; a < (int)glslangArgs.size(); ++a) {
  5000. if (originalParam(qualifiers[a], *argTypes[a], function->hasImplicitThis() && a == 0))
  5001. ++lValueCount;
  5002. else if (writableParam(qualifiers[a])) {
  5003. if (qualifiers[a] == glslang::EvqOut || qualifiers[a] == glslang::EvqInOut) {
  5004. spv::Id copy = builder.createLoad(spvArgs[a], spv::NoPrecision);
  5005. builder.addDecoration(copy, TranslateNonUniformDecoration(argTypes[a]->getQualifier()));
  5006. builder.setAccessChain(lValues[lValueCount]);
  5007. multiTypeStore(*argTypes[a], copy);
  5008. }
  5009. ++lValueCount;
  5010. }
  5011. }
  5012. return result;
  5013. }
  5014. // Translate AST operation to SPV operation, already having SPV-based operands/types.
  5015. spv::Id TGlslangToSpvTraverser::createBinaryOperation(glslang::TOperator op, OpDecorations& decorations,
  5016. spv::Id typeId, spv::Id left, spv::Id right,
  5017. glslang::TBasicType typeProxy, bool reduceComparison)
  5018. {
  5019. bool isUnsigned = isTypeUnsignedInt(typeProxy);
  5020. bool isFloat = isTypeFloat(typeProxy);
  5021. bool isBool = typeProxy == glslang::EbtBool;
  5022. spv::Op binOp = spv::OpNop;
  5023. bool needMatchingVectors = true; // for non-matrix ops, would a scalar need to smear to match a vector?
  5024. bool comparison = false;
  5025. switch (op) {
  5026. case glslang::EOpAdd:
  5027. case glslang::EOpAddAssign:
  5028. if (isFloat)
  5029. binOp = spv::OpFAdd;
  5030. else
  5031. binOp = spv::OpIAdd;
  5032. break;
  5033. case glslang::EOpSub:
  5034. case glslang::EOpSubAssign:
  5035. if (isFloat)
  5036. binOp = spv::OpFSub;
  5037. else
  5038. binOp = spv::OpISub;
  5039. break;
  5040. case glslang::EOpMul:
  5041. case glslang::EOpMulAssign:
  5042. if (isFloat)
  5043. binOp = spv::OpFMul;
  5044. else
  5045. binOp = spv::OpIMul;
  5046. break;
  5047. case glslang::EOpVectorTimesScalar:
  5048. case glslang::EOpVectorTimesScalarAssign:
  5049. if (isFloat && (builder.isVector(left) || builder.isVector(right))) {
  5050. if (builder.isVector(right))
  5051. std::swap(left, right);
  5052. assert(builder.isScalar(right));
  5053. needMatchingVectors = false;
  5054. binOp = spv::OpVectorTimesScalar;
  5055. } else if (isFloat)
  5056. binOp = spv::OpFMul;
  5057. else
  5058. binOp = spv::OpIMul;
  5059. break;
  5060. case glslang::EOpVectorTimesMatrix:
  5061. case glslang::EOpVectorTimesMatrixAssign:
  5062. binOp = spv::OpVectorTimesMatrix;
  5063. break;
  5064. case glslang::EOpMatrixTimesVector:
  5065. binOp = spv::OpMatrixTimesVector;
  5066. break;
  5067. case glslang::EOpMatrixTimesScalar:
  5068. case glslang::EOpMatrixTimesScalarAssign:
  5069. binOp = spv::OpMatrixTimesScalar;
  5070. break;
  5071. case glslang::EOpMatrixTimesMatrix:
  5072. case glslang::EOpMatrixTimesMatrixAssign:
  5073. binOp = spv::OpMatrixTimesMatrix;
  5074. break;
  5075. case glslang::EOpOuterProduct:
  5076. binOp = spv::OpOuterProduct;
  5077. needMatchingVectors = false;
  5078. break;
  5079. case glslang::EOpDiv:
  5080. case glslang::EOpDivAssign:
  5081. if (isFloat)
  5082. binOp = spv::OpFDiv;
  5083. else if (isUnsigned)
  5084. binOp = spv::OpUDiv;
  5085. else
  5086. binOp = spv::OpSDiv;
  5087. break;
  5088. case glslang::EOpMod:
  5089. case glslang::EOpModAssign:
  5090. if (isFloat)
  5091. binOp = spv::OpFMod;
  5092. else if (isUnsigned)
  5093. binOp = spv::OpUMod;
  5094. else
  5095. binOp = spv::OpSMod;
  5096. break;
  5097. case glslang::EOpRightShift:
  5098. case glslang::EOpRightShiftAssign:
  5099. if (isUnsigned)
  5100. binOp = spv::OpShiftRightLogical;
  5101. else
  5102. binOp = spv::OpShiftRightArithmetic;
  5103. break;
  5104. case glslang::EOpLeftShift:
  5105. case glslang::EOpLeftShiftAssign:
  5106. binOp = spv::OpShiftLeftLogical;
  5107. break;
  5108. case glslang::EOpAnd:
  5109. case glslang::EOpAndAssign:
  5110. binOp = spv::OpBitwiseAnd;
  5111. break;
  5112. case glslang::EOpLogicalAnd:
  5113. needMatchingVectors = false;
  5114. binOp = spv::OpLogicalAnd;
  5115. break;
  5116. case glslang::EOpInclusiveOr:
  5117. case glslang::EOpInclusiveOrAssign:
  5118. binOp = spv::OpBitwiseOr;
  5119. break;
  5120. case glslang::EOpLogicalOr:
  5121. needMatchingVectors = false;
  5122. binOp = spv::OpLogicalOr;
  5123. break;
  5124. case glslang::EOpExclusiveOr:
  5125. case glslang::EOpExclusiveOrAssign:
  5126. binOp = spv::OpBitwiseXor;
  5127. break;
  5128. case glslang::EOpLogicalXor:
  5129. needMatchingVectors = false;
  5130. binOp = spv::OpLogicalNotEqual;
  5131. break;
  5132. case glslang::EOpAbsDifference:
  5133. binOp = isUnsigned ? spv::OpAbsUSubINTEL : spv::OpAbsISubINTEL;
  5134. break;
  5135. case glslang::EOpAddSaturate:
  5136. binOp = isUnsigned ? spv::OpUAddSatINTEL : spv::OpIAddSatINTEL;
  5137. break;
  5138. case glslang::EOpSubSaturate:
  5139. binOp = isUnsigned ? spv::OpUSubSatINTEL : spv::OpISubSatINTEL;
  5140. break;
  5141. case glslang::EOpAverage:
  5142. binOp = isUnsigned ? spv::OpUAverageINTEL : spv::OpIAverageINTEL;
  5143. break;
  5144. case glslang::EOpAverageRounded:
  5145. binOp = isUnsigned ? spv::OpUAverageRoundedINTEL : spv::OpIAverageRoundedINTEL;
  5146. break;
  5147. case glslang::EOpMul32x16:
  5148. binOp = isUnsigned ? spv::OpUMul32x16INTEL : spv::OpIMul32x16INTEL;
  5149. break;
  5150. case glslang::EOpLessThan:
  5151. case glslang::EOpGreaterThan:
  5152. case glslang::EOpLessThanEqual:
  5153. case glslang::EOpGreaterThanEqual:
  5154. case glslang::EOpEqual:
  5155. case glslang::EOpNotEqual:
  5156. case glslang::EOpVectorEqual:
  5157. case glslang::EOpVectorNotEqual:
  5158. comparison = true;
  5159. break;
  5160. default:
  5161. break;
  5162. }
  5163. // handle mapped binary operations (should be non-comparison)
  5164. if (binOp != spv::OpNop) {
  5165. assert(comparison == false);
  5166. if (builder.isMatrix(left) || builder.isMatrix(right) ||
  5167. builder.isCooperativeMatrix(left) || builder.isCooperativeMatrix(right))
  5168. return createBinaryMatrixOperation(binOp, decorations, typeId, left, right);
  5169. // No matrix involved; make both operands be the same number of components, if needed
  5170. if (needMatchingVectors)
  5171. builder.promoteScalar(decorations.precision, left, right);
  5172. spv::Id result = builder.createBinOp(binOp, typeId, left, right);
  5173. decorations.addNoContraction(builder, result);
  5174. decorations.addNonUniform(builder, result);
  5175. return builder.setPrecision(result, decorations.precision);
  5176. }
  5177. if (! comparison)
  5178. return 0;
  5179. // Handle comparison instructions
  5180. if (reduceComparison && (op == glslang::EOpEqual || op == glslang::EOpNotEqual)
  5181. && (builder.isVector(left) || builder.isMatrix(left) || builder.isAggregate(left))) {
  5182. spv::Id result = builder.createCompositeCompare(decorations.precision, left, right, op == glslang::EOpEqual);
  5183. decorations.addNonUniform(builder, result);
  5184. return result;
  5185. }
  5186. switch (op) {
  5187. case glslang::EOpLessThan:
  5188. if (isFloat)
  5189. binOp = spv::OpFOrdLessThan;
  5190. else if (isUnsigned)
  5191. binOp = spv::OpULessThan;
  5192. else
  5193. binOp = spv::OpSLessThan;
  5194. break;
  5195. case glslang::EOpGreaterThan:
  5196. if (isFloat)
  5197. binOp = spv::OpFOrdGreaterThan;
  5198. else if (isUnsigned)
  5199. binOp = spv::OpUGreaterThan;
  5200. else
  5201. binOp = spv::OpSGreaterThan;
  5202. break;
  5203. case glslang::EOpLessThanEqual:
  5204. if (isFloat)
  5205. binOp = spv::OpFOrdLessThanEqual;
  5206. else if (isUnsigned)
  5207. binOp = spv::OpULessThanEqual;
  5208. else
  5209. binOp = spv::OpSLessThanEqual;
  5210. break;
  5211. case glslang::EOpGreaterThanEqual:
  5212. if (isFloat)
  5213. binOp = spv::OpFOrdGreaterThanEqual;
  5214. else if (isUnsigned)
  5215. binOp = spv::OpUGreaterThanEqual;
  5216. else
  5217. binOp = spv::OpSGreaterThanEqual;
  5218. break;
  5219. case glslang::EOpEqual:
  5220. case glslang::EOpVectorEqual:
  5221. if (isFloat)
  5222. binOp = spv::OpFOrdEqual;
  5223. else if (isBool)
  5224. binOp = spv::OpLogicalEqual;
  5225. else
  5226. binOp = spv::OpIEqual;
  5227. break;
  5228. case glslang::EOpNotEqual:
  5229. case glslang::EOpVectorNotEqual:
  5230. if (isFloat)
  5231. binOp = spv::OpFUnordNotEqual;
  5232. else if (isBool)
  5233. binOp = spv::OpLogicalNotEqual;
  5234. else
  5235. binOp = spv::OpINotEqual;
  5236. break;
  5237. default:
  5238. break;
  5239. }
  5240. if (binOp != spv::OpNop) {
  5241. spv::Id result = builder.createBinOp(binOp, typeId, left, right);
  5242. decorations.addNoContraction(builder, result);
  5243. decorations.addNonUniform(builder, result);
  5244. return builder.setPrecision(result, decorations.precision);
  5245. }
  5246. return 0;
  5247. }
  5248. //
  5249. // Translate AST matrix operation to SPV operation, already having SPV-based operands/types.
  5250. // These can be any of:
  5251. //
  5252. // matrix * scalar
  5253. // scalar * matrix
  5254. // matrix * matrix linear algebraic
  5255. // matrix * vector
  5256. // vector * matrix
  5257. // matrix * matrix componentwise
  5258. // matrix op matrix op in {+, -, /}
  5259. // matrix op scalar op in {+, -, /}
  5260. // scalar op matrix op in {+, -, /}
  5261. //
  5262. spv::Id TGlslangToSpvTraverser::createBinaryMatrixOperation(spv::Op op, OpDecorations& decorations, spv::Id typeId,
  5263. spv::Id left, spv::Id right)
  5264. {
  5265. bool firstClass = true;
  5266. // First, handle first-class matrix operations (* and matrix/scalar)
  5267. switch (op) {
  5268. case spv::OpFDiv:
  5269. if (builder.isMatrix(left) && builder.isScalar(right)) {
  5270. // turn matrix / scalar into a multiply...
  5271. spv::Id resultType = builder.getTypeId(right);
  5272. right = builder.createBinOp(spv::OpFDiv, resultType, builder.makeFpConstant(resultType, 1.0), right);
  5273. op = spv::OpMatrixTimesScalar;
  5274. } else
  5275. firstClass = false;
  5276. break;
  5277. case spv::OpMatrixTimesScalar:
  5278. if (builder.isMatrix(right) || builder.isCooperativeMatrix(right))
  5279. std::swap(left, right);
  5280. assert(builder.isScalar(right));
  5281. break;
  5282. case spv::OpVectorTimesMatrix:
  5283. assert(builder.isVector(left));
  5284. assert(builder.isMatrix(right));
  5285. break;
  5286. case spv::OpMatrixTimesVector:
  5287. assert(builder.isMatrix(left));
  5288. assert(builder.isVector(right));
  5289. break;
  5290. case spv::OpMatrixTimesMatrix:
  5291. assert(builder.isMatrix(left));
  5292. assert(builder.isMatrix(right));
  5293. break;
  5294. default:
  5295. firstClass = false;
  5296. break;
  5297. }
  5298. if (builder.isCooperativeMatrix(left) || builder.isCooperativeMatrix(right))
  5299. firstClass = true;
  5300. if (firstClass) {
  5301. spv::Id result = builder.createBinOp(op, typeId, left, right);
  5302. decorations.addNoContraction(builder, result);
  5303. decorations.addNonUniform(builder, result);
  5304. return builder.setPrecision(result, decorations.precision);
  5305. }
  5306. // Handle component-wise +, -, *, %, and / for all combinations of type.
  5307. // The result type of all of them is the same type as the (a) matrix operand.
  5308. // The algorithm is to:
  5309. // - break the matrix(es) into vectors
  5310. // - smear any scalar to a vector
  5311. // - do vector operations
  5312. // - make a matrix out the vector results
  5313. switch (op) {
  5314. case spv::OpFAdd:
  5315. case spv::OpFSub:
  5316. case spv::OpFDiv:
  5317. case spv::OpFMod:
  5318. case spv::OpFMul:
  5319. {
  5320. // one time set up...
  5321. bool leftMat = builder.isMatrix(left);
  5322. bool rightMat = builder.isMatrix(right);
  5323. unsigned int numCols = leftMat ? builder.getNumColumns(left) : builder.getNumColumns(right);
  5324. int numRows = leftMat ? builder.getNumRows(left) : builder.getNumRows(right);
  5325. spv::Id scalarType = builder.getScalarTypeId(typeId);
  5326. spv::Id vecType = builder.makeVectorType(scalarType, numRows);
  5327. std::vector<spv::Id> results;
  5328. spv::Id smearVec = spv::NoResult;
  5329. if (builder.isScalar(left))
  5330. smearVec = builder.smearScalar(decorations.precision, left, vecType);
  5331. else if (builder.isScalar(right))
  5332. smearVec = builder.smearScalar(decorations.precision, right, vecType);
  5333. // do each vector op
  5334. for (unsigned int c = 0; c < numCols; ++c) {
  5335. std::vector<unsigned int> indexes;
  5336. indexes.push_back(c);
  5337. spv::Id leftVec = leftMat ? builder.createCompositeExtract( left, vecType, indexes) : smearVec;
  5338. spv::Id rightVec = rightMat ? builder.createCompositeExtract(right, vecType, indexes) : smearVec;
  5339. spv::Id result = builder.createBinOp(op, vecType, leftVec, rightVec);
  5340. decorations.addNoContraction(builder, result);
  5341. decorations.addNonUniform(builder, result);
  5342. results.push_back(builder.setPrecision(result, decorations.precision));
  5343. }
  5344. // put the pieces together
  5345. spv::Id result = builder.setPrecision(builder.createCompositeConstruct(typeId, results), decorations.precision);
  5346. decorations.addNonUniform(builder, result);
  5347. return result;
  5348. }
  5349. default:
  5350. assert(0);
  5351. return spv::NoResult;
  5352. }
  5353. }
  5354. spv::Id TGlslangToSpvTraverser::createUnaryOperation(glslang::TOperator op, OpDecorations& decorations, spv::Id typeId,
  5355. spv::Id operand, glslang::TBasicType typeProxy, const spv::Builder::AccessChain::CoherentFlags &lvalueCoherentFlags)
  5356. {
  5357. spv::Op unaryOp = spv::OpNop;
  5358. int extBuiltins = -1;
  5359. int libCall = -1;
  5360. bool isUnsigned = isTypeUnsignedInt(typeProxy);
  5361. bool isFloat = isTypeFloat(typeProxy);
  5362. switch (op) {
  5363. case glslang::EOpNegative:
  5364. if (isFloat) {
  5365. unaryOp = spv::OpFNegate;
  5366. if (builder.isMatrixType(typeId))
  5367. return createUnaryMatrixOperation(unaryOp, decorations, typeId, operand, typeProxy);
  5368. } else
  5369. unaryOp = spv::OpSNegate;
  5370. break;
  5371. case glslang::EOpLogicalNot:
  5372. case glslang::EOpVectorLogicalNot:
  5373. unaryOp = spv::OpLogicalNot;
  5374. break;
  5375. case glslang::EOpBitwiseNot:
  5376. unaryOp = spv::OpNot;
  5377. break;
  5378. case glslang::EOpDeterminant:
  5379. libCall = spv::GLSLstd450Determinant;
  5380. break;
  5381. case glslang::EOpMatrixInverse:
  5382. libCall = spv::GLSLstd450MatrixInverse;
  5383. break;
  5384. case glslang::EOpTranspose:
  5385. unaryOp = spv::OpTranspose;
  5386. break;
  5387. case glslang::EOpRadians:
  5388. libCall = spv::GLSLstd450Radians;
  5389. break;
  5390. case glslang::EOpDegrees:
  5391. libCall = spv::GLSLstd450Degrees;
  5392. break;
  5393. case glslang::EOpSin:
  5394. libCall = spv::GLSLstd450Sin;
  5395. break;
  5396. case glslang::EOpCos:
  5397. libCall = spv::GLSLstd450Cos;
  5398. break;
  5399. case glslang::EOpTan:
  5400. libCall = spv::GLSLstd450Tan;
  5401. break;
  5402. case glslang::EOpAcos:
  5403. libCall = spv::GLSLstd450Acos;
  5404. break;
  5405. case glslang::EOpAsin:
  5406. libCall = spv::GLSLstd450Asin;
  5407. break;
  5408. case glslang::EOpAtan:
  5409. libCall = spv::GLSLstd450Atan;
  5410. break;
  5411. case glslang::EOpAcosh:
  5412. libCall = spv::GLSLstd450Acosh;
  5413. break;
  5414. case glslang::EOpAsinh:
  5415. libCall = spv::GLSLstd450Asinh;
  5416. break;
  5417. case glslang::EOpAtanh:
  5418. libCall = spv::GLSLstd450Atanh;
  5419. break;
  5420. case glslang::EOpTanh:
  5421. libCall = spv::GLSLstd450Tanh;
  5422. break;
  5423. case glslang::EOpCosh:
  5424. libCall = spv::GLSLstd450Cosh;
  5425. break;
  5426. case glslang::EOpSinh:
  5427. libCall = spv::GLSLstd450Sinh;
  5428. break;
  5429. case glslang::EOpLength:
  5430. libCall = spv::GLSLstd450Length;
  5431. break;
  5432. case glslang::EOpNormalize:
  5433. libCall = spv::GLSLstd450Normalize;
  5434. break;
  5435. case glslang::EOpExp:
  5436. libCall = spv::GLSLstd450Exp;
  5437. break;
  5438. case glslang::EOpLog:
  5439. libCall = spv::GLSLstd450Log;
  5440. break;
  5441. case glslang::EOpExp2:
  5442. libCall = spv::GLSLstd450Exp2;
  5443. break;
  5444. case glslang::EOpLog2:
  5445. libCall = spv::GLSLstd450Log2;
  5446. break;
  5447. case glslang::EOpSqrt:
  5448. libCall = spv::GLSLstd450Sqrt;
  5449. break;
  5450. case glslang::EOpInverseSqrt:
  5451. libCall = spv::GLSLstd450InverseSqrt;
  5452. break;
  5453. case glslang::EOpFloor:
  5454. libCall = spv::GLSLstd450Floor;
  5455. break;
  5456. case glslang::EOpTrunc:
  5457. libCall = spv::GLSLstd450Trunc;
  5458. break;
  5459. case glslang::EOpRound:
  5460. libCall = spv::GLSLstd450Round;
  5461. break;
  5462. case glslang::EOpRoundEven:
  5463. libCall = spv::GLSLstd450RoundEven;
  5464. break;
  5465. case glslang::EOpCeil:
  5466. libCall = spv::GLSLstd450Ceil;
  5467. break;
  5468. case glslang::EOpFract:
  5469. libCall = spv::GLSLstd450Fract;
  5470. break;
  5471. case glslang::EOpIsNan:
  5472. unaryOp = spv::OpIsNan;
  5473. break;
  5474. case glslang::EOpIsInf:
  5475. unaryOp = spv::OpIsInf;
  5476. break;
  5477. case glslang::EOpIsFinite:
  5478. unaryOp = spv::OpIsFinite;
  5479. break;
  5480. case glslang::EOpFloatBitsToInt:
  5481. case glslang::EOpFloatBitsToUint:
  5482. case glslang::EOpIntBitsToFloat:
  5483. case glslang::EOpUintBitsToFloat:
  5484. case glslang::EOpDoubleBitsToInt64:
  5485. case glslang::EOpDoubleBitsToUint64:
  5486. case glslang::EOpInt64BitsToDouble:
  5487. case glslang::EOpUint64BitsToDouble:
  5488. case glslang::EOpFloat16BitsToInt16:
  5489. case glslang::EOpFloat16BitsToUint16:
  5490. case glslang::EOpInt16BitsToFloat16:
  5491. case glslang::EOpUint16BitsToFloat16:
  5492. unaryOp = spv::OpBitcast;
  5493. break;
  5494. case glslang::EOpPackSnorm2x16:
  5495. libCall = spv::GLSLstd450PackSnorm2x16;
  5496. break;
  5497. case glslang::EOpUnpackSnorm2x16:
  5498. libCall = spv::GLSLstd450UnpackSnorm2x16;
  5499. break;
  5500. case glslang::EOpPackUnorm2x16:
  5501. libCall = spv::GLSLstd450PackUnorm2x16;
  5502. break;
  5503. case glslang::EOpUnpackUnorm2x16:
  5504. libCall = spv::GLSLstd450UnpackUnorm2x16;
  5505. break;
  5506. case glslang::EOpPackHalf2x16:
  5507. libCall = spv::GLSLstd450PackHalf2x16;
  5508. break;
  5509. case glslang::EOpUnpackHalf2x16:
  5510. libCall = spv::GLSLstd450UnpackHalf2x16;
  5511. break;
  5512. #ifndef GLSLANG_WEB
  5513. case glslang::EOpPackSnorm4x8:
  5514. libCall = spv::GLSLstd450PackSnorm4x8;
  5515. break;
  5516. case glslang::EOpUnpackSnorm4x8:
  5517. libCall = spv::GLSLstd450UnpackSnorm4x8;
  5518. break;
  5519. case glslang::EOpPackUnorm4x8:
  5520. libCall = spv::GLSLstd450PackUnorm4x8;
  5521. break;
  5522. case glslang::EOpUnpackUnorm4x8:
  5523. libCall = spv::GLSLstd450UnpackUnorm4x8;
  5524. break;
  5525. case glslang::EOpPackDouble2x32:
  5526. libCall = spv::GLSLstd450PackDouble2x32;
  5527. break;
  5528. case glslang::EOpUnpackDouble2x32:
  5529. libCall = spv::GLSLstd450UnpackDouble2x32;
  5530. break;
  5531. #endif
  5532. case glslang::EOpPackInt2x32:
  5533. case glslang::EOpUnpackInt2x32:
  5534. case glslang::EOpPackUint2x32:
  5535. case glslang::EOpUnpackUint2x32:
  5536. case glslang::EOpPack16:
  5537. case glslang::EOpPack32:
  5538. case glslang::EOpPack64:
  5539. case glslang::EOpUnpack32:
  5540. case glslang::EOpUnpack16:
  5541. case glslang::EOpUnpack8:
  5542. case glslang::EOpPackInt2x16:
  5543. case glslang::EOpUnpackInt2x16:
  5544. case glslang::EOpPackUint2x16:
  5545. case glslang::EOpUnpackUint2x16:
  5546. case glslang::EOpPackInt4x16:
  5547. case glslang::EOpUnpackInt4x16:
  5548. case glslang::EOpPackUint4x16:
  5549. case glslang::EOpUnpackUint4x16:
  5550. case glslang::EOpPackFloat2x16:
  5551. case glslang::EOpUnpackFloat2x16:
  5552. unaryOp = spv::OpBitcast;
  5553. break;
  5554. case glslang::EOpDPdx:
  5555. unaryOp = spv::OpDPdx;
  5556. break;
  5557. case glslang::EOpDPdy:
  5558. unaryOp = spv::OpDPdy;
  5559. break;
  5560. case glslang::EOpFwidth:
  5561. unaryOp = spv::OpFwidth;
  5562. break;
  5563. case glslang::EOpAny:
  5564. unaryOp = spv::OpAny;
  5565. break;
  5566. case glslang::EOpAll:
  5567. unaryOp = spv::OpAll;
  5568. break;
  5569. case glslang::EOpAbs:
  5570. if (isFloat)
  5571. libCall = spv::GLSLstd450FAbs;
  5572. else
  5573. libCall = spv::GLSLstd450SAbs;
  5574. break;
  5575. case glslang::EOpSign:
  5576. if (isFloat)
  5577. libCall = spv::GLSLstd450FSign;
  5578. else
  5579. libCall = spv::GLSLstd450SSign;
  5580. break;
  5581. #ifndef GLSLANG_WEB
  5582. case glslang::EOpDPdxFine:
  5583. unaryOp = spv::OpDPdxFine;
  5584. break;
  5585. case glslang::EOpDPdyFine:
  5586. unaryOp = spv::OpDPdyFine;
  5587. break;
  5588. case glslang::EOpFwidthFine:
  5589. unaryOp = spv::OpFwidthFine;
  5590. break;
  5591. case glslang::EOpDPdxCoarse:
  5592. unaryOp = spv::OpDPdxCoarse;
  5593. break;
  5594. case glslang::EOpDPdyCoarse:
  5595. unaryOp = spv::OpDPdyCoarse;
  5596. break;
  5597. case glslang::EOpFwidthCoarse:
  5598. unaryOp = spv::OpFwidthCoarse;
  5599. break;
  5600. case glslang::EOpRayQueryProceed:
  5601. unaryOp = spv::OpRayQueryProceedKHR;
  5602. break;
  5603. case glslang::EOpRayQueryGetRayTMin:
  5604. unaryOp = spv::OpRayQueryGetRayTMinKHR;
  5605. break;
  5606. case glslang::EOpRayQueryGetRayFlags:
  5607. unaryOp = spv::OpRayQueryGetRayFlagsKHR;
  5608. break;
  5609. case glslang::EOpRayQueryGetWorldRayOrigin:
  5610. unaryOp = spv::OpRayQueryGetWorldRayOriginKHR;
  5611. break;
  5612. case glslang::EOpRayQueryGetWorldRayDirection:
  5613. unaryOp = spv::OpRayQueryGetWorldRayDirectionKHR;
  5614. break;
  5615. case glslang::EOpRayQueryGetIntersectionCandidateAABBOpaque:
  5616. unaryOp = spv::OpRayQueryGetIntersectionCandidateAABBOpaqueKHR;
  5617. break;
  5618. case glslang::EOpInterpolateAtCentroid:
  5619. if (typeProxy == glslang::EbtFloat16)
  5620. builder.addExtension(spv::E_SPV_AMD_gpu_shader_half_float);
  5621. libCall = spv::GLSLstd450InterpolateAtCentroid;
  5622. break;
  5623. case glslang::EOpAtomicCounterIncrement:
  5624. case glslang::EOpAtomicCounterDecrement:
  5625. case glslang::EOpAtomicCounter:
  5626. {
  5627. // Handle all of the atomics in one place, in createAtomicOperation()
  5628. std::vector<spv::Id> operands;
  5629. operands.push_back(operand);
  5630. return createAtomicOperation(op, decorations.precision, typeId, operands, typeProxy, lvalueCoherentFlags);
  5631. }
  5632. case glslang::EOpBitFieldReverse:
  5633. unaryOp = spv::OpBitReverse;
  5634. break;
  5635. case glslang::EOpBitCount:
  5636. unaryOp = spv::OpBitCount;
  5637. break;
  5638. case glslang::EOpFindLSB:
  5639. libCall = spv::GLSLstd450FindILsb;
  5640. break;
  5641. case glslang::EOpFindMSB:
  5642. if (isUnsigned)
  5643. libCall = spv::GLSLstd450FindUMsb;
  5644. else
  5645. libCall = spv::GLSLstd450FindSMsb;
  5646. break;
  5647. case glslang::EOpCountLeadingZeros:
  5648. builder.addCapability(spv::CapabilityIntegerFunctions2INTEL);
  5649. builder.addExtension("SPV_INTEL_shader_integer_functions2");
  5650. unaryOp = spv::OpUCountLeadingZerosINTEL;
  5651. break;
  5652. case glslang::EOpCountTrailingZeros:
  5653. builder.addCapability(spv::CapabilityIntegerFunctions2INTEL);
  5654. builder.addExtension("SPV_INTEL_shader_integer_functions2");
  5655. unaryOp = spv::OpUCountTrailingZerosINTEL;
  5656. break;
  5657. case glslang::EOpBallot:
  5658. case glslang::EOpReadFirstInvocation:
  5659. case glslang::EOpAnyInvocation:
  5660. case glslang::EOpAllInvocations:
  5661. case glslang::EOpAllInvocationsEqual:
  5662. case glslang::EOpMinInvocations:
  5663. case glslang::EOpMaxInvocations:
  5664. case glslang::EOpAddInvocations:
  5665. case glslang::EOpMinInvocationsNonUniform:
  5666. case glslang::EOpMaxInvocationsNonUniform:
  5667. case glslang::EOpAddInvocationsNonUniform:
  5668. case glslang::EOpMinInvocationsInclusiveScan:
  5669. case glslang::EOpMaxInvocationsInclusiveScan:
  5670. case glslang::EOpAddInvocationsInclusiveScan:
  5671. case glslang::EOpMinInvocationsInclusiveScanNonUniform:
  5672. case glslang::EOpMaxInvocationsInclusiveScanNonUniform:
  5673. case glslang::EOpAddInvocationsInclusiveScanNonUniform:
  5674. case glslang::EOpMinInvocationsExclusiveScan:
  5675. case glslang::EOpMaxInvocationsExclusiveScan:
  5676. case glslang::EOpAddInvocationsExclusiveScan:
  5677. case glslang::EOpMinInvocationsExclusiveScanNonUniform:
  5678. case glslang::EOpMaxInvocationsExclusiveScanNonUniform:
  5679. case glslang::EOpAddInvocationsExclusiveScanNonUniform:
  5680. {
  5681. std::vector<spv::Id> operands;
  5682. operands.push_back(operand);
  5683. return createInvocationsOperation(op, typeId, operands, typeProxy);
  5684. }
  5685. case glslang::EOpSubgroupAll:
  5686. case glslang::EOpSubgroupAny:
  5687. case glslang::EOpSubgroupAllEqual:
  5688. case glslang::EOpSubgroupBroadcastFirst:
  5689. case glslang::EOpSubgroupBallot:
  5690. case glslang::EOpSubgroupInverseBallot:
  5691. case glslang::EOpSubgroupBallotBitCount:
  5692. case glslang::EOpSubgroupBallotInclusiveBitCount:
  5693. case glslang::EOpSubgroupBallotExclusiveBitCount:
  5694. case glslang::EOpSubgroupBallotFindLSB:
  5695. case glslang::EOpSubgroupBallotFindMSB:
  5696. case glslang::EOpSubgroupAdd:
  5697. case glslang::EOpSubgroupMul:
  5698. case glslang::EOpSubgroupMin:
  5699. case glslang::EOpSubgroupMax:
  5700. case glslang::EOpSubgroupAnd:
  5701. case glslang::EOpSubgroupOr:
  5702. case glslang::EOpSubgroupXor:
  5703. case glslang::EOpSubgroupInclusiveAdd:
  5704. case glslang::EOpSubgroupInclusiveMul:
  5705. case glslang::EOpSubgroupInclusiveMin:
  5706. case glslang::EOpSubgroupInclusiveMax:
  5707. case glslang::EOpSubgroupInclusiveAnd:
  5708. case glslang::EOpSubgroupInclusiveOr:
  5709. case glslang::EOpSubgroupInclusiveXor:
  5710. case glslang::EOpSubgroupExclusiveAdd:
  5711. case glslang::EOpSubgroupExclusiveMul:
  5712. case glslang::EOpSubgroupExclusiveMin:
  5713. case glslang::EOpSubgroupExclusiveMax:
  5714. case glslang::EOpSubgroupExclusiveAnd:
  5715. case glslang::EOpSubgroupExclusiveOr:
  5716. case glslang::EOpSubgroupExclusiveXor:
  5717. case glslang::EOpSubgroupQuadSwapHorizontal:
  5718. case glslang::EOpSubgroupQuadSwapVertical:
  5719. case glslang::EOpSubgroupQuadSwapDiagonal: {
  5720. std::vector<spv::Id> operands;
  5721. operands.push_back(operand);
  5722. return createSubgroupOperation(op, typeId, operands, typeProxy);
  5723. }
  5724. case glslang::EOpMbcnt:
  5725. extBuiltins = getExtBuiltins(spv::E_SPV_AMD_shader_ballot);
  5726. libCall = spv::MbcntAMD;
  5727. break;
  5728. case glslang::EOpCubeFaceIndex:
  5729. extBuiltins = getExtBuiltins(spv::E_SPV_AMD_gcn_shader);
  5730. libCall = spv::CubeFaceIndexAMD;
  5731. break;
  5732. case glslang::EOpCubeFaceCoord:
  5733. extBuiltins = getExtBuiltins(spv::E_SPV_AMD_gcn_shader);
  5734. libCall = spv::CubeFaceCoordAMD;
  5735. break;
  5736. case glslang::EOpSubgroupPartition:
  5737. unaryOp = spv::OpGroupNonUniformPartitionNV;
  5738. break;
  5739. case glslang::EOpConstructReference:
  5740. unaryOp = spv::OpBitcast;
  5741. break;
  5742. case glslang::EOpConvUint64ToAccStruct:
  5743. case glslang::EOpConvUvec2ToAccStruct:
  5744. unaryOp = spv::OpConvertUToAccelerationStructureKHR;
  5745. break;
  5746. #endif
  5747. case glslang::EOpCopyObject:
  5748. unaryOp = spv::OpCopyObject;
  5749. break;
  5750. default:
  5751. return 0;
  5752. }
  5753. spv::Id id;
  5754. if (libCall >= 0) {
  5755. std::vector<spv::Id> args;
  5756. args.push_back(operand);
  5757. id = builder.createBuiltinCall(typeId, extBuiltins >= 0 ? extBuiltins : stdBuiltins, libCall, args);
  5758. } else {
  5759. id = builder.createUnaryOp(unaryOp, typeId, operand);
  5760. }
  5761. decorations.addNoContraction(builder, id);
  5762. decorations.addNonUniform(builder, id);
  5763. return builder.setPrecision(id, decorations.precision);
  5764. }
  5765. // Create a unary operation on a matrix
  5766. spv::Id TGlslangToSpvTraverser::createUnaryMatrixOperation(spv::Op op, OpDecorations& decorations, spv::Id typeId,
  5767. spv::Id operand, glslang::TBasicType /* typeProxy */)
  5768. {
  5769. // Handle unary operations vector by vector.
  5770. // The result type is the same type as the original type.
  5771. // The algorithm is to:
  5772. // - break the matrix into vectors
  5773. // - apply the operation to each vector
  5774. // - make a matrix out the vector results
  5775. // get the types sorted out
  5776. int numCols = builder.getNumColumns(operand);
  5777. int numRows = builder.getNumRows(operand);
  5778. spv::Id srcVecType = builder.makeVectorType(builder.getScalarTypeId(builder.getTypeId(operand)), numRows);
  5779. spv::Id destVecType = builder.makeVectorType(builder.getScalarTypeId(typeId), numRows);
  5780. std::vector<spv::Id> results;
  5781. // do each vector op
  5782. for (int c = 0; c < numCols; ++c) {
  5783. std::vector<unsigned int> indexes;
  5784. indexes.push_back(c);
  5785. spv::Id srcVec = builder.createCompositeExtract(operand, srcVecType, indexes);
  5786. spv::Id destVec = builder.createUnaryOp(op, destVecType, srcVec);
  5787. decorations.addNoContraction(builder, destVec);
  5788. decorations.addNonUniform(builder, destVec);
  5789. results.push_back(builder.setPrecision(destVec, decorations.precision));
  5790. }
  5791. // put the pieces together
  5792. spv::Id result = builder.setPrecision(builder.createCompositeConstruct(typeId, results), decorations.precision);
  5793. decorations.addNonUniform(builder, result);
  5794. return result;
  5795. }
  5796. // For converting integers where both the bitwidth and the signedness could
  5797. // change, but only do the width change here. The caller is still responsible
  5798. // for the signedness conversion.
  5799. spv::Id TGlslangToSpvTraverser::createIntWidthConversion(glslang::TOperator op, spv::Id operand, int vectorSize)
  5800. {
  5801. // Get the result type width, based on the type to convert to.
  5802. int width = 32;
  5803. switch(op) {
  5804. case glslang::EOpConvInt16ToUint8:
  5805. case glslang::EOpConvIntToUint8:
  5806. case glslang::EOpConvInt64ToUint8:
  5807. case glslang::EOpConvUint16ToInt8:
  5808. case glslang::EOpConvUintToInt8:
  5809. case glslang::EOpConvUint64ToInt8:
  5810. width = 8;
  5811. break;
  5812. case glslang::EOpConvInt8ToUint16:
  5813. case glslang::EOpConvIntToUint16:
  5814. case glslang::EOpConvInt64ToUint16:
  5815. case glslang::EOpConvUint8ToInt16:
  5816. case glslang::EOpConvUintToInt16:
  5817. case glslang::EOpConvUint64ToInt16:
  5818. width = 16;
  5819. break;
  5820. case glslang::EOpConvInt8ToUint:
  5821. case glslang::EOpConvInt16ToUint:
  5822. case glslang::EOpConvInt64ToUint:
  5823. case glslang::EOpConvUint8ToInt:
  5824. case glslang::EOpConvUint16ToInt:
  5825. case glslang::EOpConvUint64ToInt:
  5826. width = 32;
  5827. break;
  5828. case glslang::EOpConvInt8ToUint64:
  5829. case glslang::EOpConvInt16ToUint64:
  5830. case glslang::EOpConvIntToUint64:
  5831. case glslang::EOpConvUint8ToInt64:
  5832. case glslang::EOpConvUint16ToInt64:
  5833. case glslang::EOpConvUintToInt64:
  5834. width = 64;
  5835. break;
  5836. default:
  5837. assert(false && "Default missing");
  5838. break;
  5839. }
  5840. // Get the conversion operation and result type,
  5841. // based on the target width, but the source type.
  5842. spv::Id type = spv::NoType;
  5843. spv::Op convOp = spv::OpNop;
  5844. switch(op) {
  5845. case glslang::EOpConvInt8ToUint16:
  5846. case glslang::EOpConvInt8ToUint:
  5847. case glslang::EOpConvInt8ToUint64:
  5848. case glslang::EOpConvInt16ToUint8:
  5849. case glslang::EOpConvInt16ToUint:
  5850. case glslang::EOpConvInt16ToUint64:
  5851. case glslang::EOpConvIntToUint8:
  5852. case glslang::EOpConvIntToUint16:
  5853. case glslang::EOpConvIntToUint64:
  5854. case glslang::EOpConvInt64ToUint8:
  5855. case glslang::EOpConvInt64ToUint16:
  5856. case glslang::EOpConvInt64ToUint:
  5857. convOp = spv::OpSConvert;
  5858. type = builder.makeIntType(width);
  5859. break;
  5860. default:
  5861. convOp = spv::OpUConvert;
  5862. type = builder.makeUintType(width);
  5863. break;
  5864. }
  5865. if (vectorSize > 0)
  5866. type = builder.makeVectorType(type, vectorSize);
  5867. return builder.createUnaryOp(convOp, type, operand);
  5868. }
  5869. spv::Id TGlslangToSpvTraverser::createConversion(glslang::TOperator op, OpDecorations& decorations, spv::Id destType,
  5870. spv::Id operand, glslang::TBasicType typeProxy)
  5871. {
  5872. spv::Op convOp = spv::OpNop;
  5873. spv::Id zero = 0;
  5874. spv::Id one = 0;
  5875. int vectorSize = builder.isVectorType(destType) ? builder.getNumTypeComponents(destType) : 0;
  5876. switch (op) {
  5877. case glslang::EOpConvIntToBool:
  5878. case glslang::EOpConvUintToBool:
  5879. zero = builder.makeUintConstant(0);
  5880. zero = makeSmearedConstant(zero, vectorSize);
  5881. return builder.createBinOp(spv::OpINotEqual, destType, operand, zero);
  5882. case glslang::EOpConvFloatToBool:
  5883. zero = builder.makeFloatConstant(0.0F);
  5884. zero = makeSmearedConstant(zero, vectorSize);
  5885. return builder.createBinOp(spv::OpFUnordNotEqual, destType, operand, zero);
  5886. case glslang::EOpConvBoolToFloat:
  5887. convOp = spv::OpSelect;
  5888. zero = builder.makeFloatConstant(0.0F);
  5889. one = builder.makeFloatConstant(1.0F);
  5890. break;
  5891. case glslang::EOpConvBoolToInt:
  5892. case glslang::EOpConvBoolToInt64:
  5893. #ifndef GLSLANG_WEB
  5894. if (op == glslang::EOpConvBoolToInt64) {
  5895. zero = builder.makeInt64Constant(0);
  5896. one = builder.makeInt64Constant(1);
  5897. } else
  5898. #endif
  5899. {
  5900. zero = builder.makeIntConstant(0);
  5901. one = builder.makeIntConstant(1);
  5902. }
  5903. convOp = spv::OpSelect;
  5904. break;
  5905. case glslang::EOpConvBoolToUint:
  5906. case glslang::EOpConvBoolToUint64:
  5907. #ifndef GLSLANG_WEB
  5908. if (op == glslang::EOpConvBoolToUint64) {
  5909. zero = builder.makeUint64Constant(0);
  5910. one = builder.makeUint64Constant(1);
  5911. } else
  5912. #endif
  5913. {
  5914. zero = builder.makeUintConstant(0);
  5915. one = builder.makeUintConstant(1);
  5916. }
  5917. convOp = spv::OpSelect;
  5918. break;
  5919. case glslang::EOpConvInt8ToFloat16:
  5920. case glslang::EOpConvInt8ToFloat:
  5921. case glslang::EOpConvInt8ToDouble:
  5922. case glslang::EOpConvInt16ToFloat16:
  5923. case glslang::EOpConvInt16ToFloat:
  5924. case glslang::EOpConvInt16ToDouble:
  5925. case glslang::EOpConvIntToFloat16:
  5926. case glslang::EOpConvIntToFloat:
  5927. case glslang::EOpConvIntToDouble:
  5928. case glslang::EOpConvInt64ToFloat:
  5929. case glslang::EOpConvInt64ToDouble:
  5930. case glslang::EOpConvInt64ToFloat16:
  5931. convOp = spv::OpConvertSToF;
  5932. break;
  5933. case glslang::EOpConvUint8ToFloat16:
  5934. case glslang::EOpConvUint8ToFloat:
  5935. case glslang::EOpConvUint8ToDouble:
  5936. case glslang::EOpConvUint16ToFloat16:
  5937. case glslang::EOpConvUint16ToFloat:
  5938. case glslang::EOpConvUint16ToDouble:
  5939. case glslang::EOpConvUintToFloat16:
  5940. case glslang::EOpConvUintToFloat:
  5941. case glslang::EOpConvUintToDouble:
  5942. case glslang::EOpConvUint64ToFloat:
  5943. case glslang::EOpConvUint64ToDouble:
  5944. case glslang::EOpConvUint64ToFloat16:
  5945. convOp = spv::OpConvertUToF;
  5946. break;
  5947. case glslang::EOpConvFloat16ToInt8:
  5948. case glslang::EOpConvFloatToInt8:
  5949. case glslang::EOpConvDoubleToInt8:
  5950. case glslang::EOpConvFloat16ToInt16:
  5951. case glslang::EOpConvFloatToInt16:
  5952. case glslang::EOpConvDoubleToInt16:
  5953. case glslang::EOpConvFloat16ToInt:
  5954. case glslang::EOpConvFloatToInt:
  5955. case glslang::EOpConvDoubleToInt:
  5956. case glslang::EOpConvFloat16ToInt64:
  5957. case glslang::EOpConvFloatToInt64:
  5958. case glslang::EOpConvDoubleToInt64:
  5959. convOp = spv::OpConvertFToS;
  5960. break;
  5961. case glslang::EOpConvUint8ToInt8:
  5962. case glslang::EOpConvInt8ToUint8:
  5963. case glslang::EOpConvUint16ToInt16:
  5964. case glslang::EOpConvInt16ToUint16:
  5965. case glslang::EOpConvUintToInt:
  5966. case glslang::EOpConvIntToUint:
  5967. case glslang::EOpConvUint64ToInt64:
  5968. case glslang::EOpConvInt64ToUint64:
  5969. if (builder.isInSpecConstCodeGenMode()) {
  5970. // Build zero scalar or vector for OpIAdd.
  5971. #ifndef GLSLANG_WEB
  5972. if(op == glslang::EOpConvUint8ToInt8 || op == glslang::EOpConvInt8ToUint8) {
  5973. zero = builder.makeUint8Constant(0);
  5974. } else if (op == glslang::EOpConvUint16ToInt16 || op == glslang::EOpConvInt16ToUint16) {
  5975. zero = builder.makeUint16Constant(0);
  5976. } else if (op == glslang::EOpConvUint64ToInt64 || op == glslang::EOpConvInt64ToUint64) {
  5977. zero = builder.makeUint64Constant(0);
  5978. } else
  5979. #endif
  5980. {
  5981. zero = builder.makeUintConstant(0);
  5982. }
  5983. zero = makeSmearedConstant(zero, vectorSize);
  5984. // Use OpIAdd, instead of OpBitcast to do the conversion when
  5985. // generating for OpSpecConstantOp instruction.
  5986. return builder.createBinOp(spv::OpIAdd, destType, operand, zero);
  5987. }
  5988. // For normal run-time conversion instruction, use OpBitcast.
  5989. convOp = spv::OpBitcast;
  5990. break;
  5991. case glslang::EOpConvFloat16ToUint8:
  5992. case glslang::EOpConvFloatToUint8:
  5993. case glslang::EOpConvDoubleToUint8:
  5994. case glslang::EOpConvFloat16ToUint16:
  5995. case glslang::EOpConvFloatToUint16:
  5996. case glslang::EOpConvDoubleToUint16:
  5997. case glslang::EOpConvFloat16ToUint:
  5998. case glslang::EOpConvFloatToUint:
  5999. case glslang::EOpConvDoubleToUint:
  6000. case glslang::EOpConvFloatToUint64:
  6001. case glslang::EOpConvDoubleToUint64:
  6002. case glslang::EOpConvFloat16ToUint64:
  6003. convOp = spv::OpConvertFToU;
  6004. break;
  6005. #ifndef GLSLANG_WEB
  6006. case glslang::EOpConvInt8ToBool:
  6007. case glslang::EOpConvUint8ToBool:
  6008. zero = builder.makeUint8Constant(0);
  6009. zero = makeSmearedConstant(zero, vectorSize);
  6010. return builder.createBinOp(spv::OpINotEqual, destType, operand, zero);
  6011. case glslang::EOpConvInt16ToBool:
  6012. case glslang::EOpConvUint16ToBool:
  6013. zero = builder.makeUint16Constant(0);
  6014. zero = makeSmearedConstant(zero, vectorSize);
  6015. return builder.createBinOp(spv::OpINotEqual, destType, operand, zero);
  6016. case glslang::EOpConvInt64ToBool:
  6017. case glslang::EOpConvUint64ToBool:
  6018. zero = builder.makeUint64Constant(0);
  6019. zero = makeSmearedConstant(zero, vectorSize);
  6020. return builder.createBinOp(spv::OpINotEqual, destType, operand, zero);
  6021. case glslang::EOpConvDoubleToBool:
  6022. zero = builder.makeDoubleConstant(0.0);
  6023. zero = makeSmearedConstant(zero, vectorSize);
  6024. return builder.createBinOp(spv::OpFUnordNotEqual, destType, operand, zero);
  6025. case glslang::EOpConvFloat16ToBool:
  6026. zero = builder.makeFloat16Constant(0.0F);
  6027. zero = makeSmearedConstant(zero, vectorSize);
  6028. return builder.createBinOp(spv::OpFUnordNotEqual, destType, operand, zero);
  6029. case glslang::EOpConvBoolToDouble:
  6030. convOp = spv::OpSelect;
  6031. zero = builder.makeDoubleConstant(0.0);
  6032. one = builder.makeDoubleConstant(1.0);
  6033. break;
  6034. case glslang::EOpConvBoolToFloat16:
  6035. convOp = spv::OpSelect;
  6036. zero = builder.makeFloat16Constant(0.0F);
  6037. one = builder.makeFloat16Constant(1.0F);
  6038. break;
  6039. case glslang::EOpConvBoolToInt8:
  6040. zero = builder.makeInt8Constant(0);
  6041. one = builder.makeInt8Constant(1);
  6042. convOp = spv::OpSelect;
  6043. break;
  6044. case glslang::EOpConvBoolToUint8:
  6045. zero = builder.makeUint8Constant(0);
  6046. one = builder.makeUint8Constant(1);
  6047. convOp = spv::OpSelect;
  6048. break;
  6049. case glslang::EOpConvBoolToInt16:
  6050. zero = builder.makeInt16Constant(0);
  6051. one = builder.makeInt16Constant(1);
  6052. convOp = spv::OpSelect;
  6053. break;
  6054. case glslang::EOpConvBoolToUint16:
  6055. zero = builder.makeUint16Constant(0);
  6056. one = builder.makeUint16Constant(1);
  6057. convOp = spv::OpSelect;
  6058. break;
  6059. case glslang::EOpConvDoubleToFloat:
  6060. case glslang::EOpConvFloatToDouble:
  6061. case glslang::EOpConvDoubleToFloat16:
  6062. case glslang::EOpConvFloat16ToDouble:
  6063. case glslang::EOpConvFloatToFloat16:
  6064. case glslang::EOpConvFloat16ToFloat:
  6065. convOp = spv::OpFConvert;
  6066. if (builder.isMatrixType(destType))
  6067. return createUnaryMatrixOperation(convOp, decorations, destType, operand, typeProxy);
  6068. break;
  6069. case glslang::EOpConvInt8ToInt16:
  6070. case glslang::EOpConvInt8ToInt:
  6071. case glslang::EOpConvInt8ToInt64:
  6072. case glslang::EOpConvInt16ToInt8:
  6073. case glslang::EOpConvInt16ToInt:
  6074. case glslang::EOpConvInt16ToInt64:
  6075. case glslang::EOpConvIntToInt8:
  6076. case glslang::EOpConvIntToInt16:
  6077. case glslang::EOpConvIntToInt64:
  6078. case glslang::EOpConvInt64ToInt8:
  6079. case glslang::EOpConvInt64ToInt16:
  6080. case glslang::EOpConvInt64ToInt:
  6081. convOp = spv::OpSConvert;
  6082. break;
  6083. case glslang::EOpConvUint8ToUint16:
  6084. case glslang::EOpConvUint8ToUint:
  6085. case glslang::EOpConvUint8ToUint64:
  6086. case glslang::EOpConvUint16ToUint8:
  6087. case glslang::EOpConvUint16ToUint:
  6088. case glslang::EOpConvUint16ToUint64:
  6089. case glslang::EOpConvUintToUint8:
  6090. case glslang::EOpConvUintToUint16:
  6091. case glslang::EOpConvUintToUint64:
  6092. case glslang::EOpConvUint64ToUint8:
  6093. case glslang::EOpConvUint64ToUint16:
  6094. case glslang::EOpConvUint64ToUint:
  6095. convOp = spv::OpUConvert;
  6096. break;
  6097. case glslang::EOpConvInt8ToUint16:
  6098. case glslang::EOpConvInt8ToUint:
  6099. case glslang::EOpConvInt8ToUint64:
  6100. case glslang::EOpConvInt16ToUint8:
  6101. case glslang::EOpConvInt16ToUint:
  6102. case glslang::EOpConvInt16ToUint64:
  6103. case glslang::EOpConvIntToUint8:
  6104. case glslang::EOpConvIntToUint16:
  6105. case glslang::EOpConvIntToUint64:
  6106. case glslang::EOpConvInt64ToUint8:
  6107. case glslang::EOpConvInt64ToUint16:
  6108. case glslang::EOpConvInt64ToUint:
  6109. case glslang::EOpConvUint8ToInt16:
  6110. case glslang::EOpConvUint8ToInt:
  6111. case glslang::EOpConvUint8ToInt64:
  6112. case glslang::EOpConvUint16ToInt8:
  6113. case glslang::EOpConvUint16ToInt:
  6114. case glslang::EOpConvUint16ToInt64:
  6115. case glslang::EOpConvUintToInt8:
  6116. case glslang::EOpConvUintToInt16:
  6117. case glslang::EOpConvUintToInt64:
  6118. case glslang::EOpConvUint64ToInt8:
  6119. case glslang::EOpConvUint64ToInt16:
  6120. case glslang::EOpConvUint64ToInt:
  6121. // OpSConvert/OpUConvert + OpBitCast
  6122. operand = createIntWidthConversion(op, operand, vectorSize);
  6123. if (builder.isInSpecConstCodeGenMode()) {
  6124. // Build zero scalar or vector for OpIAdd.
  6125. switch(op) {
  6126. case glslang::EOpConvInt16ToUint8:
  6127. case glslang::EOpConvIntToUint8:
  6128. case glslang::EOpConvInt64ToUint8:
  6129. case glslang::EOpConvUint16ToInt8:
  6130. case glslang::EOpConvUintToInt8:
  6131. case glslang::EOpConvUint64ToInt8:
  6132. zero = builder.makeUint8Constant(0);
  6133. break;
  6134. case glslang::EOpConvInt8ToUint16:
  6135. case glslang::EOpConvIntToUint16:
  6136. case glslang::EOpConvInt64ToUint16:
  6137. case glslang::EOpConvUint8ToInt16:
  6138. case glslang::EOpConvUintToInt16:
  6139. case glslang::EOpConvUint64ToInt16:
  6140. zero = builder.makeUint16Constant(0);
  6141. break;
  6142. case glslang::EOpConvInt8ToUint:
  6143. case glslang::EOpConvInt16ToUint:
  6144. case glslang::EOpConvInt64ToUint:
  6145. case glslang::EOpConvUint8ToInt:
  6146. case glslang::EOpConvUint16ToInt:
  6147. case glslang::EOpConvUint64ToInt:
  6148. zero = builder.makeUintConstant(0);
  6149. break;
  6150. case glslang::EOpConvInt8ToUint64:
  6151. case glslang::EOpConvInt16ToUint64:
  6152. case glslang::EOpConvIntToUint64:
  6153. case glslang::EOpConvUint8ToInt64:
  6154. case glslang::EOpConvUint16ToInt64:
  6155. case glslang::EOpConvUintToInt64:
  6156. zero = builder.makeUint64Constant(0);
  6157. break;
  6158. default:
  6159. assert(false && "Default missing");
  6160. break;
  6161. }
  6162. zero = makeSmearedConstant(zero, vectorSize);
  6163. // Use OpIAdd, instead of OpBitcast to do the conversion when
  6164. // generating for OpSpecConstantOp instruction.
  6165. return builder.createBinOp(spv::OpIAdd, destType, operand, zero);
  6166. }
  6167. // For normal run-time conversion instruction, use OpBitcast.
  6168. convOp = spv::OpBitcast;
  6169. break;
  6170. case glslang::EOpConvUint64ToPtr:
  6171. convOp = spv::OpConvertUToPtr;
  6172. break;
  6173. case glslang::EOpConvPtrToUint64:
  6174. convOp = spv::OpConvertPtrToU;
  6175. break;
  6176. case glslang::EOpConvPtrToUvec2:
  6177. case glslang::EOpConvUvec2ToPtr:
  6178. if (builder.isVector(operand))
  6179. builder.promoteIncorporatedExtension(spv::E_SPV_EXT_physical_storage_buffer,
  6180. spv::E_SPV_KHR_physical_storage_buffer, spv::Spv_1_5);
  6181. convOp = spv::OpBitcast;
  6182. break;
  6183. #endif
  6184. default:
  6185. break;
  6186. }
  6187. spv::Id result = 0;
  6188. if (convOp == spv::OpNop)
  6189. return result;
  6190. if (convOp == spv::OpSelect) {
  6191. zero = makeSmearedConstant(zero, vectorSize);
  6192. one = makeSmearedConstant(one, vectorSize);
  6193. result = builder.createTriOp(convOp, destType, operand, one, zero);
  6194. } else
  6195. result = builder.createUnaryOp(convOp, destType, operand);
  6196. result = builder.setPrecision(result, decorations.precision);
  6197. decorations.addNonUniform(builder, result);
  6198. return result;
  6199. }
  6200. spv::Id TGlslangToSpvTraverser::makeSmearedConstant(spv::Id constant, int vectorSize)
  6201. {
  6202. if (vectorSize == 0)
  6203. return constant;
  6204. spv::Id vectorTypeId = builder.makeVectorType(builder.getTypeId(constant), vectorSize);
  6205. std::vector<spv::Id> components;
  6206. for (int c = 0; c < vectorSize; ++c)
  6207. components.push_back(constant);
  6208. return builder.makeCompositeConstant(vectorTypeId, components);
  6209. }
  6210. // For glslang ops that map to SPV atomic opCodes
  6211. spv::Id TGlslangToSpvTraverser::createAtomicOperation(glslang::TOperator op, spv::Decoration /*precision*/,
  6212. spv::Id typeId, std::vector<spv::Id>& operands, glslang::TBasicType typeProxy,
  6213. const spv::Builder::AccessChain::CoherentFlags &lvalueCoherentFlags)
  6214. {
  6215. spv::Op opCode = spv::OpNop;
  6216. switch (op) {
  6217. case glslang::EOpAtomicAdd:
  6218. case glslang::EOpImageAtomicAdd:
  6219. case glslang::EOpAtomicCounterAdd:
  6220. opCode = spv::OpAtomicIAdd;
  6221. if (typeProxy == glslang::EbtFloat || typeProxy == glslang::EbtDouble) {
  6222. opCode = spv::OpAtomicFAddEXT;
  6223. builder.addExtension(spv::E_SPV_EXT_shader_atomic_float_add);
  6224. if (typeProxy == glslang::EbtFloat)
  6225. builder.addCapability(spv::CapabilityAtomicFloat32AddEXT);
  6226. else
  6227. builder.addCapability(spv::CapabilityAtomicFloat64AddEXT);
  6228. }
  6229. break;
  6230. case glslang::EOpAtomicCounterSubtract:
  6231. opCode = spv::OpAtomicISub;
  6232. break;
  6233. case glslang::EOpAtomicMin:
  6234. case glslang::EOpImageAtomicMin:
  6235. case glslang::EOpAtomicCounterMin:
  6236. opCode = (typeProxy == glslang::EbtUint || typeProxy == glslang::EbtUint64) ?
  6237. spv::OpAtomicUMin : spv::OpAtomicSMin;
  6238. break;
  6239. case glslang::EOpAtomicMax:
  6240. case glslang::EOpImageAtomicMax:
  6241. case glslang::EOpAtomicCounterMax:
  6242. opCode = (typeProxy == glslang::EbtUint || typeProxy == glslang::EbtUint64) ?
  6243. spv::OpAtomicUMax : spv::OpAtomicSMax;
  6244. break;
  6245. case glslang::EOpAtomicAnd:
  6246. case glslang::EOpImageAtomicAnd:
  6247. case glslang::EOpAtomicCounterAnd:
  6248. opCode = spv::OpAtomicAnd;
  6249. break;
  6250. case glslang::EOpAtomicOr:
  6251. case glslang::EOpImageAtomicOr:
  6252. case glslang::EOpAtomicCounterOr:
  6253. opCode = spv::OpAtomicOr;
  6254. break;
  6255. case glslang::EOpAtomicXor:
  6256. case glslang::EOpImageAtomicXor:
  6257. case glslang::EOpAtomicCounterXor:
  6258. opCode = spv::OpAtomicXor;
  6259. break;
  6260. case glslang::EOpAtomicExchange:
  6261. case glslang::EOpImageAtomicExchange:
  6262. case glslang::EOpAtomicCounterExchange:
  6263. opCode = spv::OpAtomicExchange;
  6264. break;
  6265. case glslang::EOpAtomicCompSwap:
  6266. case glslang::EOpImageAtomicCompSwap:
  6267. case glslang::EOpAtomicCounterCompSwap:
  6268. opCode = spv::OpAtomicCompareExchange;
  6269. break;
  6270. case glslang::EOpAtomicCounterIncrement:
  6271. opCode = spv::OpAtomicIIncrement;
  6272. break;
  6273. case glslang::EOpAtomicCounterDecrement:
  6274. opCode = spv::OpAtomicIDecrement;
  6275. break;
  6276. case glslang::EOpAtomicCounter:
  6277. case glslang::EOpImageAtomicLoad:
  6278. case glslang::EOpAtomicLoad:
  6279. opCode = spv::OpAtomicLoad;
  6280. break;
  6281. case glslang::EOpAtomicStore:
  6282. case glslang::EOpImageAtomicStore:
  6283. opCode = spv::OpAtomicStore;
  6284. break;
  6285. default:
  6286. assert(0);
  6287. break;
  6288. }
  6289. if (typeProxy == glslang::EbtInt64 || typeProxy == glslang::EbtUint64)
  6290. builder.addCapability(spv::CapabilityInt64Atomics);
  6291. // Sort out the operands
  6292. // - mapping from glslang -> SPV
  6293. // - there are extra SPV operands that are optional in glslang
  6294. // - compare-exchange swaps the value and comparator
  6295. // - compare-exchange has an extra memory semantics
  6296. // - EOpAtomicCounterDecrement needs a post decrement
  6297. spv::Id pointerId = 0, compareId = 0, valueId = 0;
  6298. // scope defaults to Device in the old model, QueueFamilyKHR in the new model
  6299. spv::Id scopeId;
  6300. if (glslangIntermediate->usingVulkanMemoryModel()) {
  6301. scopeId = builder.makeUintConstant(spv::ScopeQueueFamilyKHR);
  6302. } else {
  6303. scopeId = builder.makeUintConstant(spv::ScopeDevice);
  6304. }
  6305. // semantics default to relaxed
  6306. spv::Id semanticsId = builder.makeUintConstant(lvalueCoherentFlags.isVolatile() &&
  6307. glslangIntermediate->usingVulkanMemoryModel() ?
  6308. spv::MemorySemanticsVolatileMask :
  6309. spv::MemorySemanticsMaskNone);
  6310. spv::Id semanticsId2 = semanticsId;
  6311. pointerId = operands[0];
  6312. if (opCode == spv::OpAtomicIIncrement || opCode == spv::OpAtomicIDecrement) {
  6313. // no additional operands
  6314. } else if (opCode == spv::OpAtomicCompareExchange) {
  6315. compareId = operands[1];
  6316. valueId = operands[2];
  6317. if (operands.size() > 3) {
  6318. scopeId = operands[3];
  6319. semanticsId = builder.makeUintConstant(
  6320. builder.getConstantScalar(operands[4]) | builder.getConstantScalar(operands[5]));
  6321. semanticsId2 = builder.makeUintConstant(
  6322. builder.getConstantScalar(operands[6]) | builder.getConstantScalar(operands[7]));
  6323. }
  6324. } else if (opCode == spv::OpAtomicLoad) {
  6325. if (operands.size() > 1) {
  6326. scopeId = operands[1];
  6327. semanticsId = builder.makeUintConstant(
  6328. builder.getConstantScalar(operands[2]) | builder.getConstantScalar(operands[3]));
  6329. }
  6330. } else {
  6331. // atomic store or RMW
  6332. valueId = operands[1];
  6333. if (operands.size() > 2) {
  6334. scopeId = operands[2];
  6335. semanticsId = builder.makeUintConstant
  6336. (builder.getConstantScalar(operands[3]) | builder.getConstantScalar(operands[4]));
  6337. }
  6338. }
  6339. // Check for capabilities
  6340. unsigned semanticsImmediate = builder.getConstantScalar(semanticsId) | builder.getConstantScalar(semanticsId2);
  6341. if (semanticsImmediate & (spv::MemorySemanticsMakeAvailableKHRMask |
  6342. spv::MemorySemanticsMakeVisibleKHRMask |
  6343. spv::MemorySemanticsOutputMemoryKHRMask |
  6344. spv::MemorySemanticsVolatileMask)) {
  6345. builder.addCapability(spv::CapabilityVulkanMemoryModelKHR);
  6346. }
  6347. if (builder.getConstantScalar(scopeId) == spv::ScopeQueueFamily) {
  6348. builder.addCapability(spv::CapabilityVulkanMemoryModelKHR);
  6349. }
  6350. if (glslangIntermediate->usingVulkanMemoryModel() && builder.getConstantScalar(scopeId) == spv::ScopeDevice) {
  6351. builder.addCapability(spv::CapabilityVulkanMemoryModelDeviceScopeKHR);
  6352. }
  6353. std::vector<spv::Id> spvAtomicOperands; // hold the spv operands
  6354. spvAtomicOperands.push_back(pointerId);
  6355. spvAtomicOperands.push_back(scopeId);
  6356. spvAtomicOperands.push_back(semanticsId);
  6357. if (opCode == spv::OpAtomicCompareExchange) {
  6358. spvAtomicOperands.push_back(semanticsId2);
  6359. spvAtomicOperands.push_back(valueId);
  6360. spvAtomicOperands.push_back(compareId);
  6361. } else if (opCode != spv::OpAtomicLoad && opCode != spv::OpAtomicIIncrement && opCode != spv::OpAtomicIDecrement) {
  6362. spvAtomicOperands.push_back(valueId);
  6363. }
  6364. if (opCode == spv::OpAtomicStore) {
  6365. builder.createNoResultOp(opCode, spvAtomicOperands);
  6366. return 0;
  6367. } else {
  6368. spv::Id resultId = builder.createOp(opCode, typeId, spvAtomicOperands);
  6369. // GLSL and HLSL atomic-counter decrement return post-decrement value,
  6370. // while SPIR-V returns pre-decrement value. Translate between these semantics.
  6371. if (op == glslang::EOpAtomicCounterDecrement)
  6372. resultId = builder.createBinOp(spv::OpISub, typeId, resultId, builder.makeIntConstant(1));
  6373. return resultId;
  6374. }
  6375. }
  6376. // Create group invocation operations.
  6377. spv::Id TGlslangToSpvTraverser::createInvocationsOperation(glslang::TOperator op, spv::Id typeId,
  6378. std::vector<spv::Id>& operands, glslang::TBasicType typeProxy)
  6379. {
  6380. bool isUnsigned = isTypeUnsignedInt(typeProxy);
  6381. bool isFloat = isTypeFloat(typeProxy);
  6382. spv::Op opCode = spv::OpNop;
  6383. std::vector<spv::IdImmediate> spvGroupOperands;
  6384. spv::GroupOperation groupOperation = spv::GroupOperationMax;
  6385. if (op == glslang::EOpBallot || op == glslang::EOpReadFirstInvocation ||
  6386. op == glslang::EOpReadInvocation) {
  6387. builder.addExtension(spv::E_SPV_KHR_shader_ballot);
  6388. builder.addCapability(spv::CapabilitySubgroupBallotKHR);
  6389. } else if (op == glslang::EOpAnyInvocation ||
  6390. op == glslang::EOpAllInvocations ||
  6391. op == glslang::EOpAllInvocationsEqual) {
  6392. builder.addExtension(spv::E_SPV_KHR_subgroup_vote);
  6393. builder.addCapability(spv::CapabilitySubgroupVoteKHR);
  6394. } else {
  6395. builder.addCapability(spv::CapabilityGroups);
  6396. if (op == glslang::EOpMinInvocationsNonUniform ||
  6397. op == glslang::EOpMaxInvocationsNonUniform ||
  6398. op == glslang::EOpAddInvocationsNonUniform ||
  6399. op == glslang::EOpMinInvocationsInclusiveScanNonUniform ||
  6400. op == glslang::EOpMaxInvocationsInclusiveScanNonUniform ||
  6401. op == glslang::EOpAddInvocationsInclusiveScanNonUniform ||
  6402. op == glslang::EOpMinInvocationsExclusiveScanNonUniform ||
  6403. op == glslang::EOpMaxInvocationsExclusiveScanNonUniform ||
  6404. op == glslang::EOpAddInvocationsExclusiveScanNonUniform)
  6405. builder.addExtension(spv::E_SPV_AMD_shader_ballot);
  6406. switch (op) {
  6407. case glslang::EOpMinInvocations:
  6408. case glslang::EOpMaxInvocations:
  6409. case glslang::EOpAddInvocations:
  6410. case glslang::EOpMinInvocationsNonUniform:
  6411. case glslang::EOpMaxInvocationsNonUniform:
  6412. case glslang::EOpAddInvocationsNonUniform:
  6413. groupOperation = spv::GroupOperationReduce;
  6414. break;
  6415. case glslang::EOpMinInvocationsInclusiveScan:
  6416. case glslang::EOpMaxInvocationsInclusiveScan:
  6417. case glslang::EOpAddInvocationsInclusiveScan:
  6418. case glslang::EOpMinInvocationsInclusiveScanNonUniform:
  6419. case glslang::EOpMaxInvocationsInclusiveScanNonUniform:
  6420. case glslang::EOpAddInvocationsInclusiveScanNonUniform:
  6421. groupOperation = spv::GroupOperationInclusiveScan;
  6422. break;
  6423. case glslang::EOpMinInvocationsExclusiveScan:
  6424. case glslang::EOpMaxInvocationsExclusiveScan:
  6425. case glslang::EOpAddInvocationsExclusiveScan:
  6426. case glslang::EOpMinInvocationsExclusiveScanNonUniform:
  6427. case glslang::EOpMaxInvocationsExclusiveScanNonUniform:
  6428. case glslang::EOpAddInvocationsExclusiveScanNonUniform:
  6429. groupOperation = spv::GroupOperationExclusiveScan;
  6430. break;
  6431. default:
  6432. break;
  6433. }
  6434. spv::IdImmediate scope = { true, builder.makeUintConstant(spv::ScopeSubgroup) };
  6435. spvGroupOperands.push_back(scope);
  6436. if (groupOperation != spv::GroupOperationMax) {
  6437. spv::IdImmediate groupOp = { false, (unsigned)groupOperation };
  6438. spvGroupOperands.push_back(groupOp);
  6439. }
  6440. }
  6441. for (auto opIt = operands.begin(); opIt != operands.end(); ++opIt) {
  6442. spv::IdImmediate op = { true, *opIt };
  6443. spvGroupOperands.push_back(op);
  6444. }
  6445. switch (op) {
  6446. case glslang::EOpAnyInvocation:
  6447. opCode = spv::OpSubgroupAnyKHR;
  6448. break;
  6449. case glslang::EOpAllInvocations:
  6450. opCode = spv::OpSubgroupAllKHR;
  6451. break;
  6452. case glslang::EOpAllInvocationsEqual:
  6453. opCode = spv::OpSubgroupAllEqualKHR;
  6454. break;
  6455. case glslang::EOpReadInvocation:
  6456. opCode = spv::OpSubgroupReadInvocationKHR;
  6457. if (builder.isVectorType(typeId))
  6458. return CreateInvocationsVectorOperation(opCode, groupOperation, typeId, operands);
  6459. break;
  6460. case glslang::EOpReadFirstInvocation:
  6461. opCode = spv::OpSubgroupFirstInvocationKHR;
  6462. break;
  6463. case glslang::EOpBallot:
  6464. {
  6465. // NOTE: According to the spec, the result type of "OpSubgroupBallotKHR" must be a 4 component vector of 32
  6466. // bit integer types. The GLSL built-in function "ballotARB()" assumes the maximum number of invocations in
  6467. // a subgroup is 64. Thus, we have to convert uvec4.xy to uint64_t as follow:
  6468. //
  6469. // result = Bitcast(SubgroupBallotKHR(Predicate).xy)
  6470. //
  6471. spv::Id uintType = builder.makeUintType(32);
  6472. spv::Id uvec4Type = builder.makeVectorType(uintType, 4);
  6473. spv::Id result = builder.createOp(spv::OpSubgroupBallotKHR, uvec4Type, spvGroupOperands);
  6474. std::vector<spv::Id> components;
  6475. components.push_back(builder.createCompositeExtract(result, uintType, 0));
  6476. components.push_back(builder.createCompositeExtract(result, uintType, 1));
  6477. spv::Id uvec2Type = builder.makeVectorType(uintType, 2);
  6478. return builder.createUnaryOp(spv::OpBitcast, typeId,
  6479. builder.createCompositeConstruct(uvec2Type, components));
  6480. }
  6481. case glslang::EOpMinInvocations:
  6482. case glslang::EOpMaxInvocations:
  6483. case glslang::EOpAddInvocations:
  6484. case glslang::EOpMinInvocationsInclusiveScan:
  6485. case glslang::EOpMaxInvocationsInclusiveScan:
  6486. case glslang::EOpAddInvocationsInclusiveScan:
  6487. case glslang::EOpMinInvocationsExclusiveScan:
  6488. case glslang::EOpMaxInvocationsExclusiveScan:
  6489. case glslang::EOpAddInvocationsExclusiveScan:
  6490. if (op == glslang::EOpMinInvocations ||
  6491. op == glslang::EOpMinInvocationsInclusiveScan ||
  6492. op == glslang::EOpMinInvocationsExclusiveScan) {
  6493. if (isFloat)
  6494. opCode = spv::OpGroupFMin;
  6495. else {
  6496. if (isUnsigned)
  6497. opCode = spv::OpGroupUMin;
  6498. else
  6499. opCode = spv::OpGroupSMin;
  6500. }
  6501. } else if (op == glslang::EOpMaxInvocations ||
  6502. op == glslang::EOpMaxInvocationsInclusiveScan ||
  6503. op == glslang::EOpMaxInvocationsExclusiveScan) {
  6504. if (isFloat)
  6505. opCode = spv::OpGroupFMax;
  6506. else {
  6507. if (isUnsigned)
  6508. opCode = spv::OpGroupUMax;
  6509. else
  6510. opCode = spv::OpGroupSMax;
  6511. }
  6512. } else {
  6513. if (isFloat)
  6514. opCode = spv::OpGroupFAdd;
  6515. else
  6516. opCode = spv::OpGroupIAdd;
  6517. }
  6518. if (builder.isVectorType(typeId))
  6519. return CreateInvocationsVectorOperation(opCode, groupOperation, typeId, operands);
  6520. break;
  6521. case glslang::EOpMinInvocationsNonUniform:
  6522. case glslang::EOpMaxInvocationsNonUniform:
  6523. case glslang::EOpAddInvocationsNonUniform:
  6524. case glslang::EOpMinInvocationsInclusiveScanNonUniform:
  6525. case glslang::EOpMaxInvocationsInclusiveScanNonUniform:
  6526. case glslang::EOpAddInvocationsInclusiveScanNonUniform:
  6527. case glslang::EOpMinInvocationsExclusiveScanNonUniform:
  6528. case glslang::EOpMaxInvocationsExclusiveScanNonUniform:
  6529. case glslang::EOpAddInvocationsExclusiveScanNonUniform:
  6530. if (op == glslang::EOpMinInvocationsNonUniform ||
  6531. op == glslang::EOpMinInvocationsInclusiveScanNonUniform ||
  6532. op == glslang::EOpMinInvocationsExclusiveScanNonUniform) {
  6533. if (isFloat)
  6534. opCode = spv::OpGroupFMinNonUniformAMD;
  6535. else {
  6536. if (isUnsigned)
  6537. opCode = spv::OpGroupUMinNonUniformAMD;
  6538. else
  6539. opCode = spv::OpGroupSMinNonUniformAMD;
  6540. }
  6541. }
  6542. else if (op == glslang::EOpMaxInvocationsNonUniform ||
  6543. op == glslang::EOpMaxInvocationsInclusiveScanNonUniform ||
  6544. op == glslang::EOpMaxInvocationsExclusiveScanNonUniform) {
  6545. if (isFloat)
  6546. opCode = spv::OpGroupFMaxNonUniformAMD;
  6547. else {
  6548. if (isUnsigned)
  6549. opCode = spv::OpGroupUMaxNonUniformAMD;
  6550. else
  6551. opCode = spv::OpGroupSMaxNonUniformAMD;
  6552. }
  6553. }
  6554. else {
  6555. if (isFloat)
  6556. opCode = spv::OpGroupFAddNonUniformAMD;
  6557. else
  6558. opCode = spv::OpGroupIAddNonUniformAMD;
  6559. }
  6560. if (builder.isVectorType(typeId))
  6561. return CreateInvocationsVectorOperation(opCode, groupOperation, typeId, operands);
  6562. break;
  6563. default:
  6564. logger->missingFunctionality("invocation operation");
  6565. return spv::NoResult;
  6566. }
  6567. assert(opCode != spv::OpNop);
  6568. return builder.createOp(opCode, typeId, spvGroupOperands);
  6569. }
  6570. // Create group invocation operations on a vector
  6571. spv::Id TGlslangToSpvTraverser::CreateInvocationsVectorOperation(spv::Op op, spv::GroupOperation groupOperation,
  6572. spv::Id typeId, std::vector<spv::Id>& operands)
  6573. {
  6574. assert(op == spv::OpGroupFMin || op == spv::OpGroupUMin || op == spv::OpGroupSMin ||
  6575. op == spv::OpGroupFMax || op == spv::OpGroupUMax || op == spv::OpGroupSMax ||
  6576. op == spv::OpGroupFAdd || op == spv::OpGroupIAdd || op == spv::OpGroupBroadcast ||
  6577. op == spv::OpSubgroupReadInvocationKHR ||
  6578. op == spv::OpGroupFMinNonUniformAMD || op == spv::OpGroupUMinNonUniformAMD ||
  6579. op == spv::OpGroupSMinNonUniformAMD ||
  6580. op == spv::OpGroupFMaxNonUniformAMD || op == spv::OpGroupUMaxNonUniformAMD ||
  6581. op == spv::OpGroupSMaxNonUniformAMD ||
  6582. op == spv::OpGroupFAddNonUniformAMD || op == spv::OpGroupIAddNonUniformAMD);
  6583. // Handle group invocation operations scalar by scalar.
  6584. // The result type is the same type as the original type.
  6585. // The algorithm is to:
  6586. // - break the vector into scalars
  6587. // - apply the operation to each scalar
  6588. // - make a vector out the scalar results
  6589. // get the types sorted out
  6590. int numComponents = builder.getNumComponents(operands[0]);
  6591. spv::Id scalarType = builder.getScalarTypeId(builder.getTypeId(operands[0]));
  6592. std::vector<spv::Id> results;
  6593. // do each scalar op
  6594. for (int comp = 0; comp < numComponents; ++comp) {
  6595. std::vector<unsigned int> indexes;
  6596. indexes.push_back(comp);
  6597. spv::IdImmediate scalar = { true, builder.createCompositeExtract(operands[0], scalarType, indexes) };
  6598. std::vector<spv::IdImmediate> spvGroupOperands;
  6599. if (op == spv::OpSubgroupReadInvocationKHR) {
  6600. spvGroupOperands.push_back(scalar);
  6601. spv::IdImmediate operand = { true, operands[1] };
  6602. spvGroupOperands.push_back(operand);
  6603. } else if (op == spv::OpGroupBroadcast) {
  6604. spv::IdImmediate scope = { true, builder.makeUintConstant(spv::ScopeSubgroup) };
  6605. spvGroupOperands.push_back(scope);
  6606. spvGroupOperands.push_back(scalar);
  6607. spv::IdImmediate operand = { true, operands[1] };
  6608. spvGroupOperands.push_back(operand);
  6609. } else {
  6610. spv::IdImmediate scope = { true, builder.makeUintConstant(spv::ScopeSubgroup) };
  6611. spvGroupOperands.push_back(scope);
  6612. spv::IdImmediate groupOp = { false, (unsigned)groupOperation };
  6613. spvGroupOperands.push_back(groupOp);
  6614. spvGroupOperands.push_back(scalar);
  6615. }
  6616. results.push_back(builder.createOp(op, scalarType, spvGroupOperands));
  6617. }
  6618. // put the pieces together
  6619. return builder.createCompositeConstruct(typeId, results);
  6620. }
  6621. // Create subgroup invocation operations.
  6622. spv::Id TGlslangToSpvTraverser::createSubgroupOperation(glslang::TOperator op, spv::Id typeId,
  6623. std::vector<spv::Id>& operands, glslang::TBasicType typeProxy)
  6624. {
  6625. // Add the required capabilities.
  6626. switch (op) {
  6627. case glslang::EOpSubgroupElect:
  6628. builder.addCapability(spv::CapabilityGroupNonUniform);
  6629. break;
  6630. case glslang::EOpSubgroupAll:
  6631. case glslang::EOpSubgroupAny:
  6632. case glslang::EOpSubgroupAllEqual:
  6633. builder.addCapability(spv::CapabilityGroupNonUniform);
  6634. builder.addCapability(spv::CapabilityGroupNonUniformVote);
  6635. break;
  6636. case glslang::EOpSubgroupBroadcast:
  6637. case glslang::EOpSubgroupBroadcastFirst:
  6638. case glslang::EOpSubgroupBallot:
  6639. case glslang::EOpSubgroupInverseBallot:
  6640. case glslang::EOpSubgroupBallotBitExtract:
  6641. case glslang::EOpSubgroupBallotBitCount:
  6642. case glslang::EOpSubgroupBallotInclusiveBitCount:
  6643. case glslang::EOpSubgroupBallotExclusiveBitCount:
  6644. case glslang::EOpSubgroupBallotFindLSB:
  6645. case glslang::EOpSubgroupBallotFindMSB:
  6646. builder.addCapability(spv::CapabilityGroupNonUniform);
  6647. builder.addCapability(spv::CapabilityGroupNonUniformBallot);
  6648. break;
  6649. case glslang::EOpSubgroupShuffle:
  6650. case glslang::EOpSubgroupShuffleXor:
  6651. builder.addCapability(spv::CapabilityGroupNonUniform);
  6652. builder.addCapability(spv::CapabilityGroupNonUniformShuffle);
  6653. break;
  6654. case glslang::EOpSubgroupShuffleUp:
  6655. case glslang::EOpSubgroupShuffleDown:
  6656. builder.addCapability(spv::CapabilityGroupNonUniform);
  6657. builder.addCapability(spv::CapabilityGroupNonUniformShuffleRelative);
  6658. break;
  6659. case glslang::EOpSubgroupAdd:
  6660. case glslang::EOpSubgroupMul:
  6661. case glslang::EOpSubgroupMin:
  6662. case glslang::EOpSubgroupMax:
  6663. case glslang::EOpSubgroupAnd:
  6664. case glslang::EOpSubgroupOr:
  6665. case glslang::EOpSubgroupXor:
  6666. case glslang::EOpSubgroupInclusiveAdd:
  6667. case glslang::EOpSubgroupInclusiveMul:
  6668. case glslang::EOpSubgroupInclusiveMin:
  6669. case glslang::EOpSubgroupInclusiveMax:
  6670. case glslang::EOpSubgroupInclusiveAnd:
  6671. case glslang::EOpSubgroupInclusiveOr:
  6672. case glslang::EOpSubgroupInclusiveXor:
  6673. case glslang::EOpSubgroupExclusiveAdd:
  6674. case glslang::EOpSubgroupExclusiveMul:
  6675. case glslang::EOpSubgroupExclusiveMin:
  6676. case glslang::EOpSubgroupExclusiveMax:
  6677. case glslang::EOpSubgroupExclusiveAnd:
  6678. case glslang::EOpSubgroupExclusiveOr:
  6679. case glslang::EOpSubgroupExclusiveXor:
  6680. builder.addCapability(spv::CapabilityGroupNonUniform);
  6681. builder.addCapability(spv::CapabilityGroupNonUniformArithmetic);
  6682. break;
  6683. case glslang::EOpSubgroupClusteredAdd:
  6684. case glslang::EOpSubgroupClusteredMul:
  6685. case glslang::EOpSubgroupClusteredMin:
  6686. case glslang::EOpSubgroupClusteredMax:
  6687. case glslang::EOpSubgroupClusteredAnd:
  6688. case glslang::EOpSubgroupClusteredOr:
  6689. case glslang::EOpSubgroupClusteredXor:
  6690. builder.addCapability(spv::CapabilityGroupNonUniform);
  6691. builder.addCapability(spv::CapabilityGroupNonUniformClustered);
  6692. break;
  6693. case glslang::EOpSubgroupQuadBroadcast:
  6694. case glslang::EOpSubgroupQuadSwapHorizontal:
  6695. case glslang::EOpSubgroupQuadSwapVertical:
  6696. case glslang::EOpSubgroupQuadSwapDiagonal:
  6697. builder.addCapability(spv::CapabilityGroupNonUniform);
  6698. builder.addCapability(spv::CapabilityGroupNonUniformQuad);
  6699. break;
  6700. case glslang::EOpSubgroupPartitionedAdd:
  6701. case glslang::EOpSubgroupPartitionedMul:
  6702. case glslang::EOpSubgroupPartitionedMin:
  6703. case glslang::EOpSubgroupPartitionedMax:
  6704. case glslang::EOpSubgroupPartitionedAnd:
  6705. case glslang::EOpSubgroupPartitionedOr:
  6706. case glslang::EOpSubgroupPartitionedXor:
  6707. case glslang::EOpSubgroupPartitionedInclusiveAdd:
  6708. case glslang::EOpSubgroupPartitionedInclusiveMul:
  6709. case glslang::EOpSubgroupPartitionedInclusiveMin:
  6710. case glslang::EOpSubgroupPartitionedInclusiveMax:
  6711. case glslang::EOpSubgroupPartitionedInclusiveAnd:
  6712. case glslang::EOpSubgroupPartitionedInclusiveOr:
  6713. case glslang::EOpSubgroupPartitionedInclusiveXor:
  6714. case glslang::EOpSubgroupPartitionedExclusiveAdd:
  6715. case glslang::EOpSubgroupPartitionedExclusiveMul:
  6716. case glslang::EOpSubgroupPartitionedExclusiveMin:
  6717. case glslang::EOpSubgroupPartitionedExclusiveMax:
  6718. case glslang::EOpSubgroupPartitionedExclusiveAnd:
  6719. case glslang::EOpSubgroupPartitionedExclusiveOr:
  6720. case glslang::EOpSubgroupPartitionedExclusiveXor:
  6721. builder.addExtension(spv::E_SPV_NV_shader_subgroup_partitioned);
  6722. builder.addCapability(spv::CapabilityGroupNonUniformPartitionedNV);
  6723. break;
  6724. default: assert(0 && "Unhandled subgroup operation!");
  6725. }
  6726. const bool isUnsigned = isTypeUnsignedInt(typeProxy);
  6727. const bool isFloat = isTypeFloat(typeProxy);
  6728. const bool isBool = typeProxy == glslang::EbtBool;
  6729. spv::Op opCode = spv::OpNop;
  6730. // Figure out which opcode to use.
  6731. switch (op) {
  6732. case glslang::EOpSubgroupElect: opCode = spv::OpGroupNonUniformElect; break;
  6733. case glslang::EOpSubgroupAll: opCode = spv::OpGroupNonUniformAll; break;
  6734. case glslang::EOpSubgroupAny: opCode = spv::OpGroupNonUniformAny; break;
  6735. case glslang::EOpSubgroupAllEqual: opCode = spv::OpGroupNonUniformAllEqual; break;
  6736. case glslang::EOpSubgroupBroadcast: opCode = spv::OpGroupNonUniformBroadcast; break;
  6737. case glslang::EOpSubgroupBroadcastFirst: opCode = spv::OpGroupNonUniformBroadcastFirst; break;
  6738. case glslang::EOpSubgroupBallot: opCode = spv::OpGroupNonUniformBallot; break;
  6739. case glslang::EOpSubgroupInverseBallot: opCode = spv::OpGroupNonUniformInverseBallot; break;
  6740. case glslang::EOpSubgroupBallotBitExtract: opCode = spv::OpGroupNonUniformBallotBitExtract; break;
  6741. case glslang::EOpSubgroupBallotBitCount:
  6742. case glslang::EOpSubgroupBallotInclusiveBitCount:
  6743. case glslang::EOpSubgroupBallotExclusiveBitCount: opCode = spv::OpGroupNonUniformBallotBitCount; break;
  6744. case glslang::EOpSubgroupBallotFindLSB: opCode = spv::OpGroupNonUniformBallotFindLSB; break;
  6745. case glslang::EOpSubgroupBallotFindMSB: opCode = spv::OpGroupNonUniformBallotFindMSB; break;
  6746. case glslang::EOpSubgroupShuffle: opCode = spv::OpGroupNonUniformShuffle; break;
  6747. case glslang::EOpSubgroupShuffleXor: opCode = spv::OpGroupNonUniformShuffleXor; break;
  6748. case glslang::EOpSubgroupShuffleUp: opCode = spv::OpGroupNonUniformShuffleUp; break;
  6749. case glslang::EOpSubgroupShuffleDown: opCode = spv::OpGroupNonUniformShuffleDown; break;
  6750. case glslang::EOpSubgroupAdd:
  6751. case glslang::EOpSubgroupInclusiveAdd:
  6752. case glslang::EOpSubgroupExclusiveAdd:
  6753. case glslang::EOpSubgroupClusteredAdd:
  6754. case glslang::EOpSubgroupPartitionedAdd:
  6755. case glslang::EOpSubgroupPartitionedInclusiveAdd:
  6756. case glslang::EOpSubgroupPartitionedExclusiveAdd:
  6757. if (isFloat) {
  6758. opCode = spv::OpGroupNonUniformFAdd;
  6759. } else {
  6760. opCode = spv::OpGroupNonUniformIAdd;
  6761. }
  6762. break;
  6763. case glslang::EOpSubgroupMul:
  6764. case glslang::EOpSubgroupInclusiveMul:
  6765. case glslang::EOpSubgroupExclusiveMul:
  6766. case glslang::EOpSubgroupClusteredMul:
  6767. case glslang::EOpSubgroupPartitionedMul:
  6768. case glslang::EOpSubgroupPartitionedInclusiveMul:
  6769. case glslang::EOpSubgroupPartitionedExclusiveMul:
  6770. if (isFloat) {
  6771. opCode = spv::OpGroupNonUniformFMul;
  6772. } else {
  6773. opCode = spv::OpGroupNonUniformIMul;
  6774. }
  6775. break;
  6776. case glslang::EOpSubgroupMin:
  6777. case glslang::EOpSubgroupInclusiveMin:
  6778. case glslang::EOpSubgroupExclusiveMin:
  6779. case glslang::EOpSubgroupClusteredMin:
  6780. case glslang::EOpSubgroupPartitionedMin:
  6781. case glslang::EOpSubgroupPartitionedInclusiveMin:
  6782. case glslang::EOpSubgroupPartitionedExclusiveMin:
  6783. if (isFloat) {
  6784. opCode = spv::OpGroupNonUniformFMin;
  6785. } else if (isUnsigned) {
  6786. opCode = spv::OpGroupNonUniformUMin;
  6787. } else {
  6788. opCode = spv::OpGroupNonUniformSMin;
  6789. }
  6790. break;
  6791. case glslang::EOpSubgroupMax:
  6792. case glslang::EOpSubgroupInclusiveMax:
  6793. case glslang::EOpSubgroupExclusiveMax:
  6794. case glslang::EOpSubgroupClusteredMax:
  6795. case glslang::EOpSubgroupPartitionedMax:
  6796. case glslang::EOpSubgroupPartitionedInclusiveMax:
  6797. case glslang::EOpSubgroupPartitionedExclusiveMax:
  6798. if (isFloat) {
  6799. opCode = spv::OpGroupNonUniformFMax;
  6800. } else if (isUnsigned) {
  6801. opCode = spv::OpGroupNonUniformUMax;
  6802. } else {
  6803. opCode = spv::OpGroupNonUniformSMax;
  6804. }
  6805. break;
  6806. case glslang::EOpSubgroupAnd:
  6807. case glslang::EOpSubgroupInclusiveAnd:
  6808. case glslang::EOpSubgroupExclusiveAnd:
  6809. case glslang::EOpSubgroupClusteredAnd:
  6810. case glslang::EOpSubgroupPartitionedAnd:
  6811. case glslang::EOpSubgroupPartitionedInclusiveAnd:
  6812. case glslang::EOpSubgroupPartitionedExclusiveAnd:
  6813. if (isBool) {
  6814. opCode = spv::OpGroupNonUniformLogicalAnd;
  6815. } else {
  6816. opCode = spv::OpGroupNonUniformBitwiseAnd;
  6817. }
  6818. break;
  6819. case glslang::EOpSubgroupOr:
  6820. case glslang::EOpSubgroupInclusiveOr:
  6821. case glslang::EOpSubgroupExclusiveOr:
  6822. case glslang::EOpSubgroupClusteredOr:
  6823. case glslang::EOpSubgroupPartitionedOr:
  6824. case glslang::EOpSubgroupPartitionedInclusiveOr:
  6825. case glslang::EOpSubgroupPartitionedExclusiveOr:
  6826. if (isBool) {
  6827. opCode = spv::OpGroupNonUniformLogicalOr;
  6828. } else {
  6829. opCode = spv::OpGroupNonUniformBitwiseOr;
  6830. }
  6831. break;
  6832. case glslang::EOpSubgroupXor:
  6833. case glslang::EOpSubgroupInclusiveXor:
  6834. case glslang::EOpSubgroupExclusiveXor:
  6835. case glslang::EOpSubgroupClusteredXor:
  6836. case glslang::EOpSubgroupPartitionedXor:
  6837. case glslang::EOpSubgroupPartitionedInclusiveXor:
  6838. case glslang::EOpSubgroupPartitionedExclusiveXor:
  6839. if (isBool) {
  6840. opCode = spv::OpGroupNonUniformLogicalXor;
  6841. } else {
  6842. opCode = spv::OpGroupNonUniformBitwiseXor;
  6843. }
  6844. break;
  6845. case glslang::EOpSubgroupQuadBroadcast: opCode = spv::OpGroupNonUniformQuadBroadcast; break;
  6846. case glslang::EOpSubgroupQuadSwapHorizontal:
  6847. case glslang::EOpSubgroupQuadSwapVertical:
  6848. case glslang::EOpSubgroupQuadSwapDiagonal: opCode = spv::OpGroupNonUniformQuadSwap; break;
  6849. default: assert(0 && "Unhandled subgroup operation!");
  6850. }
  6851. // get the right Group Operation
  6852. spv::GroupOperation groupOperation = spv::GroupOperationMax;
  6853. switch (op) {
  6854. default:
  6855. break;
  6856. case glslang::EOpSubgroupBallotBitCount:
  6857. case glslang::EOpSubgroupAdd:
  6858. case glslang::EOpSubgroupMul:
  6859. case glslang::EOpSubgroupMin:
  6860. case glslang::EOpSubgroupMax:
  6861. case glslang::EOpSubgroupAnd:
  6862. case glslang::EOpSubgroupOr:
  6863. case glslang::EOpSubgroupXor:
  6864. groupOperation = spv::GroupOperationReduce;
  6865. break;
  6866. case glslang::EOpSubgroupBallotInclusiveBitCount:
  6867. case glslang::EOpSubgroupInclusiveAdd:
  6868. case glslang::EOpSubgroupInclusiveMul:
  6869. case glslang::EOpSubgroupInclusiveMin:
  6870. case glslang::EOpSubgroupInclusiveMax:
  6871. case glslang::EOpSubgroupInclusiveAnd:
  6872. case glslang::EOpSubgroupInclusiveOr:
  6873. case glslang::EOpSubgroupInclusiveXor:
  6874. groupOperation = spv::GroupOperationInclusiveScan;
  6875. break;
  6876. case glslang::EOpSubgroupBallotExclusiveBitCount:
  6877. case glslang::EOpSubgroupExclusiveAdd:
  6878. case glslang::EOpSubgroupExclusiveMul:
  6879. case glslang::EOpSubgroupExclusiveMin:
  6880. case glslang::EOpSubgroupExclusiveMax:
  6881. case glslang::EOpSubgroupExclusiveAnd:
  6882. case glslang::EOpSubgroupExclusiveOr:
  6883. case glslang::EOpSubgroupExclusiveXor:
  6884. groupOperation = spv::GroupOperationExclusiveScan;
  6885. break;
  6886. case glslang::EOpSubgroupClusteredAdd:
  6887. case glslang::EOpSubgroupClusteredMul:
  6888. case glslang::EOpSubgroupClusteredMin:
  6889. case glslang::EOpSubgroupClusteredMax:
  6890. case glslang::EOpSubgroupClusteredAnd:
  6891. case glslang::EOpSubgroupClusteredOr:
  6892. case glslang::EOpSubgroupClusteredXor:
  6893. groupOperation = spv::GroupOperationClusteredReduce;
  6894. break;
  6895. case glslang::EOpSubgroupPartitionedAdd:
  6896. case glslang::EOpSubgroupPartitionedMul:
  6897. case glslang::EOpSubgroupPartitionedMin:
  6898. case glslang::EOpSubgroupPartitionedMax:
  6899. case glslang::EOpSubgroupPartitionedAnd:
  6900. case glslang::EOpSubgroupPartitionedOr:
  6901. case glslang::EOpSubgroupPartitionedXor:
  6902. groupOperation = spv::GroupOperationPartitionedReduceNV;
  6903. break;
  6904. case glslang::EOpSubgroupPartitionedInclusiveAdd:
  6905. case glslang::EOpSubgroupPartitionedInclusiveMul:
  6906. case glslang::EOpSubgroupPartitionedInclusiveMin:
  6907. case glslang::EOpSubgroupPartitionedInclusiveMax:
  6908. case glslang::EOpSubgroupPartitionedInclusiveAnd:
  6909. case glslang::EOpSubgroupPartitionedInclusiveOr:
  6910. case glslang::EOpSubgroupPartitionedInclusiveXor:
  6911. groupOperation = spv::GroupOperationPartitionedInclusiveScanNV;
  6912. break;
  6913. case glslang::EOpSubgroupPartitionedExclusiveAdd:
  6914. case glslang::EOpSubgroupPartitionedExclusiveMul:
  6915. case glslang::EOpSubgroupPartitionedExclusiveMin:
  6916. case glslang::EOpSubgroupPartitionedExclusiveMax:
  6917. case glslang::EOpSubgroupPartitionedExclusiveAnd:
  6918. case glslang::EOpSubgroupPartitionedExclusiveOr:
  6919. case glslang::EOpSubgroupPartitionedExclusiveXor:
  6920. groupOperation = spv::GroupOperationPartitionedExclusiveScanNV;
  6921. break;
  6922. }
  6923. // build the instruction
  6924. std::vector<spv::IdImmediate> spvGroupOperands;
  6925. // Every operation begins with the Execution Scope operand.
  6926. spv::IdImmediate executionScope = { true, builder.makeUintConstant(spv::ScopeSubgroup) };
  6927. spvGroupOperands.push_back(executionScope);
  6928. // Next, for all operations that use a Group Operation, push that as an operand.
  6929. if (groupOperation != spv::GroupOperationMax) {
  6930. spv::IdImmediate groupOperand = { false, (unsigned)groupOperation };
  6931. spvGroupOperands.push_back(groupOperand);
  6932. }
  6933. // Push back the operands next.
  6934. for (auto opIt = operands.cbegin(); opIt != operands.cend(); ++opIt) {
  6935. spv::IdImmediate operand = { true, *opIt };
  6936. spvGroupOperands.push_back(operand);
  6937. }
  6938. // Some opcodes have additional operands.
  6939. spv::Id directionId = spv::NoResult;
  6940. switch (op) {
  6941. default: break;
  6942. case glslang::EOpSubgroupQuadSwapHorizontal: directionId = builder.makeUintConstant(0); break;
  6943. case glslang::EOpSubgroupQuadSwapVertical: directionId = builder.makeUintConstant(1); break;
  6944. case glslang::EOpSubgroupQuadSwapDiagonal: directionId = builder.makeUintConstant(2); break;
  6945. }
  6946. if (directionId != spv::NoResult) {
  6947. spv::IdImmediate direction = { true, directionId };
  6948. spvGroupOperands.push_back(direction);
  6949. }
  6950. return builder.createOp(opCode, typeId, spvGroupOperands);
  6951. }
  6952. spv::Id TGlslangToSpvTraverser::createMiscOperation(glslang::TOperator op, spv::Decoration precision,
  6953. spv::Id typeId, std::vector<spv::Id>& operands, glslang::TBasicType typeProxy)
  6954. {
  6955. bool isUnsigned = isTypeUnsignedInt(typeProxy);
  6956. bool isFloat = isTypeFloat(typeProxy);
  6957. spv::Op opCode = spv::OpNop;
  6958. int extBuiltins = -1;
  6959. int libCall = -1;
  6960. size_t consumedOperands = operands.size();
  6961. spv::Id typeId0 = 0;
  6962. if (consumedOperands > 0)
  6963. typeId0 = builder.getTypeId(operands[0]);
  6964. spv::Id typeId1 = 0;
  6965. if (consumedOperands > 1)
  6966. typeId1 = builder.getTypeId(operands[1]);
  6967. spv::Id frexpIntType = 0;
  6968. switch (op) {
  6969. case glslang::EOpMin:
  6970. if (isFloat)
  6971. libCall = nanMinMaxClamp ? spv::GLSLstd450NMin : spv::GLSLstd450FMin;
  6972. else if (isUnsigned)
  6973. libCall = spv::GLSLstd450UMin;
  6974. else
  6975. libCall = spv::GLSLstd450SMin;
  6976. builder.promoteScalar(precision, operands.front(), operands.back());
  6977. break;
  6978. case glslang::EOpModf:
  6979. libCall = spv::GLSLstd450Modf;
  6980. break;
  6981. case glslang::EOpMax:
  6982. if (isFloat)
  6983. libCall = nanMinMaxClamp ? spv::GLSLstd450NMax : spv::GLSLstd450FMax;
  6984. else if (isUnsigned)
  6985. libCall = spv::GLSLstd450UMax;
  6986. else
  6987. libCall = spv::GLSLstd450SMax;
  6988. builder.promoteScalar(precision, operands.front(), operands.back());
  6989. break;
  6990. case glslang::EOpPow:
  6991. libCall = spv::GLSLstd450Pow;
  6992. break;
  6993. case glslang::EOpDot:
  6994. opCode = spv::OpDot;
  6995. break;
  6996. case glslang::EOpAtan:
  6997. libCall = spv::GLSLstd450Atan2;
  6998. break;
  6999. case glslang::EOpClamp:
  7000. if (isFloat)
  7001. libCall = nanMinMaxClamp ? spv::GLSLstd450NClamp : spv::GLSLstd450FClamp;
  7002. else if (isUnsigned)
  7003. libCall = spv::GLSLstd450UClamp;
  7004. else
  7005. libCall = spv::GLSLstd450SClamp;
  7006. builder.promoteScalar(precision, operands.front(), operands[1]);
  7007. builder.promoteScalar(precision, operands.front(), operands[2]);
  7008. break;
  7009. case glslang::EOpMix:
  7010. if (! builder.isBoolType(builder.getScalarTypeId(builder.getTypeId(operands.back())))) {
  7011. assert(isFloat);
  7012. libCall = spv::GLSLstd450FMix;
  7013. } else {
  7014. opCode = spv::OpSelect;
  7015. std::swap(operands.front(), operands.back());
  7016. }
  7017. builder.promoteScalar(precision, operands.front(), operands.back());
  7018. break;
  7019. case glslang::EOpStep:
  7020. libCall = spv::GLSLstd450Step;
  7021. builder.promoteScalar(precision, operands.front(), operands.back());
  7022. break;
  7023. case glslang::EOpSmoothStep:
  7024. libCall = spv::GLSLstd450SmoothStep;
  7025. builder.promoteScalar(precision, operands[0], operands[2]);
  7026. builder.promoteScalar(precision, operands[1], operands[2]);
  7027. break;
  7028. case glslang::EOpDistance:
  7029. libCall = spv::GLSLstd450Distance;
  7030. break;
  7031. case glslang::EOpCross:
  7032. libCall = spv::GLSLstd450Cross;
  7033. break;
  7034. case glslang::EOpFaceForward:
  7035. libCall = spv::GLSLstd450FaceForward;
  7036. break;
  7037. case glslang::EOpReflect:
  7038. libCall = spv::GLSLstd450Reflect;
  7039. break;
  7040. case glslang::EOpRefract:
  7041. libCall = spv::GLSLstd450Refract;
  7042. break;
  7043. case glslang::EOpBarrier:
  7044. {
  7045. // This is for the extended controlBarrier function, with four operands.
  7046. // The unextended barrier() goes through createNoArgOperation.
  7047. assert(operands.size() == 4);
  7048. unsigned int executionScope = builder.getConstantScalar(operands[0]);
  7049. unsigned int memoryScope = builder.getConstantScalar(operands[1]);
  7050. unsigned int semantics = builder.getConstantScalar(operands[2]) | builder.getConstantScalar(operands[3]);
  7051. builder.createControlBarrier((spv::Scope)executionScope, (spv::Scope)memoryScope,
  7052. (spv::MemorySemanticsMask)semantics);
  7053. if (semantics & (spv::MemorySemanticsMakeAvailableKHRMask |
  7054. spv::MemorySemanticsMakeVisibleKHRMask |
  7055. spv::MemorySemanticsOutputMemoryKHRMask |
  7056. spv::MemorySemanticsVolatileMask)) {
  7057. builder.addCapability(spv::CapabilityVulkanMemoryModelKHR);
  7058. }
  7059. if (glslangIntermediate->usingVulkanMemoryModel() && (executionScope == spv::ScopeDevice ||
  7060. memoryScope == spv::ScopeDevice)) {
  7061. builder.addCapability(spv::CapabilityVulkanMemoryModelDeviceScopeKHR);
  7062. }
  7063. return 0;
  7064. }
  7065. break;
  7066. case glslang::EOpMemoryBarrier:
  7067. {
  7068. // This is for the extended memoryBarrier function, with three operands.
  7069. // The unextended memoryBarrier() goes through createNoArgOperation.
  7070. assert(operands.size() == 3);
  7071. unsigned int memoryScope = builder.getConstantScalar(operands[0]);
  7072. unsigned int semantics = builder.getConstantScalar(operands[1]) | builder.getConstantScalar(operands[2]);
  7073. builder.createMemoryBarrier((spv::Scope)memoryScope, (spv::MemorySemanticsMask)semantics);
  7074. if (semantics & (spv::MemorySemanticsMakeAvailableKHRMask |
  7075. spv::MemorySemanticsMakeVisibleKHRMask |
  7076. spv::MemorySemanticsOutputMemoryKHRMask |
  7077. spv::MemorySemanticsVolatileMask)) {
  7078. builder.addCapability(spv::CapabilityVulkanMemoryModelKHR);
  7079. }
  7080. if (glslangIntermediate->usingVulkanMemoryModel() && memoryScope == spv::ScopeDevice) {
  7081. builder.addCapability(spv::CapabilityVulkanMemoryModelDeviceScopeKHR);
  7082. }
  7083. return 0;
  7084. }
  7085. break;
  7086. #ifndef GLSLANG_WEB
  7087. case glslang::EOpInterpolateAtSample:
  7088. if (typeProxy == glslang::EbtFloat16)
  7089. builder.addExtension(spv::E_SPV_AMD_gpu_shader_half_float);
  7090. libCall = spv::GLSLstd450InterpolateAtSample;
  7091. break;
  7092. case glslang::EOpInterpolateAtOffset:
  7093. if (typeProxy == glslang::EbtFloat16)
  7094. builder.addExtension(spv::E_SPV_AMD_gpu_shader_half_float);
  7095. libCall = spv::GLSLstd450InterpolateAtOffset;
  7096. break;
  7097. case glslang::EOpAddCarry:
  7098. opCode = spv::OpIAddCarry;
  7099. typeId = builder.makeStructResultType(typeId0, typeId0);
  7100. consumedOperands = 2;
  7101. break;
  7102. case glslang::EOpSubBorrow:
  7103. opCode = spv::OpISubBorrow;
  7104. typeId = builder.makeStructResultType(typeId0, typeId0);
  7105. consumedOperands = 2;
  7106. break;
  7107. case glslang::EOpUMulExtended:
  7108. opCode = spv::OpUMulExtended;
  7109. typeId = builder.makeStructResultType(typeId0, typeId0);
  7110. consumedOperands = 2;
  7111. break;
  7112. case glslang::EOpIMulExtended:
  7113. opCode = spv::OpSMulExtended;
  7114. typeId = builder.makeStructResultType(typeId0, typeId0);
  7115. consumedOperands = 2;
  7116. break;
  7117. case glslang::EOpBitfieldExtract:
  7118. if (isUnsigned)
  7119. opCode = spv::OpBitFieldUExtract;
  7120. else
  7121. opCode = spv::OpBitFieldSExtract;
  7122. break;
  7123. case glslang::EOpBitfieldInsert:
  7124. opCode = spv::OpBitFieldInsert;
  7125. break;
  7126. case glslang::EOpFma:
  7127. libCall = spv::GLSLstd450Fma;
  7128. break;
  7129. case glslang::EOpFrexp:
  7130. {
  7131. libCall = spv::GLSLstd450FrexpStruct;
  7132. assert(builder.isPointerType(typeId1));
  7133. typeId1 = builder.getContainedTypeId(typeId1);
  7134. int width = builder.getScalarTypeWidth(typeId1);
  7135. if (width == 16)
  7136. // Using 16-bit exp operand, enable extension SPV_AMD_gpu_shader_int16
  7137. builder.addExtension(spv::E_SPV_AMD_gpu_shader_int16);
  7138. if (builder.getNumComponents(operands[0]) == 1)
  7139. frexpIntType = builder.makeIntegerType(width, true);
  7140. else
  7141. frexpIntType = builder.makeVectorType(builder.makeIntegerType(width, true),
  7142. builder.getNumComponents(operands[0]));
  7143. typeId = builder.makeStructResultType(typeId0, frexpIntType);
  7144. consumedOperands = 1;
  7145. }
  7146. break;
  7147. case glslang::EOpLdexp:
  7148. libCall = spv::GLSLstd450Ldexp;
  7149. break;
  7150. case glslang::EOpReadInvocation:
  7151. return createInvocationsOperation(op, typeId, operands, typeProxy);
  7152. case glslang::EOpSubgroupBroadcast:
  7153. case glslang::EOpSubgroupBallotBitExtract:
  7154. case glslang::EOpSubgroupShuffle:
  7155. case glslang::EOpSubgroupShuffleXor:
  7156. case glslang::EOpSubgroupShuffleUp:
  7157. case glslang::EOpSubgroupShuffleDown:
  7158. case glslang::EOpSubgroupClusteredAdd:
  7159. case glslang::EOpSubgroupClusteredMul:
  7160. case glslang::EOpSubgroupClusteredMin:
  7161. case glslang::EOpSubgroupClusteredMax:
  7162. case glslang::EOpSubgroupClusteredAnd:
  7163. case glslang::EOpSubgroupClusteredOr:
  7164. case glslang::EOpSubgroupClusteredXor:
  7165. case glslang::EOpSubgroupQuadBroadcast:
  7166. case glslang::EOpSubgroupPartitionedAdd:
  7167. case glslang::EOpSubgroupPartitionedMul:
  7168. case glslang::EOpSubgroupPartitionedMin:
  7169. case glslang::EOpSubgroupPartitionedMax:
  7170. case glslang::EOpSubgroupPartitionedAnd:
  7171. case glslang::EOpSubgroupPartitionedOr:
  7172. case glslang::EOpSubgroupPartitionedXor:
  7173. case glslang::EOpSubgroupPartitionedInclusiveAdd:
  7174. case glslang::EOpSubgroupPartitionedInclusiveMul:
  7175. case glslang::EOpSubgroupPartitionedInclusiveMin:
  7176. case glslang::EOpSubgroupPartitionedInclusiveMax:
  7177. case glslang::EOpSubgroupPartitionedInclusiveAnd:
  7178. case glslang::EOpSubgroupPartitionedInclusiveOr:
  7179. case glslang::EOpSubgroupPartitionedInclusiveXor:
  7180. case glslang::EOpSubgroupPartitionedExclusiveAdd:
  7181. case glslang::EOpSubgroupPartitionedExclusiveMul:
  7182. case glslang::EOpSubgroupPartitionedExclusiveMin:
  7183. case glslang::EOpSubgroupPartitionedExclusiveMax:
  7184. case glslang::EOpSubgroupPartitionedExclusiveAnd:
  7185. case glslang::EOpSubgroupPartitionedExclusiveOr:
  7186. case glslang::EOpSubgroupPartitionedExclusiveXor:
  7187. return createSubgroupOperation(op, typeId, operands, typeProxy);
  7188. case glslang::EOpSwizzleInvocations:
  7189. extBuiltins = getExtBuiltins(spv::E_SPV_AMD_shader_ballot);
  7190. libCall = spv::SwizzleInvocationsAMD;
  7191. break;
  7192. case glslang::EOpSwizzleInvocationsMasked:
  7193. extBuiltins = getExtBuiltins(spv::E_SPV_AMD_shader_ballot);
  7194. libCall = spv::SwizzleInvocationsMaskedAMD;
  7195. break;
  7196. case glslang::EOpWriteInvocation:
  7197. extBuiltins = getExtBuiltins(spv::E_SPV_AMD_shader_ballot);
  7198. libCall = spv::WriteInvocationAMD;
  7199. break;
  7200. case glslang::EOpMin3:
  7201. extBuiltins = getExtBuiltins(spv::E_SPV_AMD_shader_trinary_minmax);
  7202. if (isFloat)
  7203. libCall = spv::FMin3AMD;
  7204. else {
  7205. if (isUnsigned)
  7206. libCall = spv::UMin3AMD;
  7207. else
  7208. libCall = spv::SMin3AMD;
  7209. }
  7210. break;
  7211. case glslang::EOpMax3:
  7212. extBuiltins = getExtBuiltins(spv::E_SPV_AMD_shader_trinary_minmax);
  7213. if (isFloat)
  7214. libCall = spv::FMax3AMD;
  7215. else {
  7216. if (isUnsigned)
  7217. libCall = spv::UMax3AMD;
  7218. else
  7219. libCall = spv::SMax3AMD;
  7220. }
  7221. break;
  7222. case glslang::EOpMid3:
  7223. extBuiltins = getExtBuiltins(spv::E_SPV_AMD_shader_trinary_minmax);
  7224. if (isFloat)
  7225. libCall = spv::FMid3AMD;
  7226. else {
  7227. if (isUnsigned)
  7228. libCall = spv::UMid3AMD;
  7229. else
  7230. libCall = spv::SMid3AMD;
  7231. }
  7232. break;
  7233. case glslang::EOpInterpolateAtVertex:
  7234. if (typeProxy == glslang::EbtFloat16)
  7235. builder.addExtension(spv::E_SPV_AMD_gpu_shader_half_float);
  7236. extBuiltins = getExtBuiltins(spv::E_SPV_AMD_shader_explicit_vertex_parameter);
  7237. libCall = spv::InterpolateAtVertexAMD;
  7238. break;
  7239. case glslang::EOpReportIntersection:
  7240. typeId = builder.makeBoolType();
  7241. opCode = spv::OpReportIntersectionKHR;
  7242. break;
  7243. case glslang::EOpTraceNV:
  7244. builder.createNoResultOp(spv::OpTraceNV, operands);
  7245. return 0;
  7246. case glslang::EOpTraceKHR:
  7247. builder.createNoResultOp(spv::OpTraceRayKHR, operands);
  7248. return 0;
  7249. case glslang::EOpExecuteCallableNV:
  7250. builder.createNoResultOp(spv::OpExecuteCallableNV, operands);
  7251. return 0;
  7252. case glslang::EOpExecuteCallableKHR:
  7253. builder.createNoResultOp(spv::OpExecuteCallableKHR, operands);
  7254. return 0;
  7255. case glslang::EOpRayQueryInitialize:
  7256. builder.createNoResultOp(spv::OpRayQueryInitializeKHR, operands);
  7257. return 0;
  7258. case glslang::EOpRayQueryTerminate:
  7259. builder.createNoResultOp(spv::OpRayQueryTerminateKHR, operands);
  7260. return 0;
  7261. case glslang::EOpRayQueryGenerateIntersection:
  7262. builder.createNoResultOp(spv::OpRayQueryGenerateIntersectionKHR, operands);
  7263. return 0;
  7264. case glslang::EOpRayQueryConfirmIntersection:
  7265. builder.createNoResultOp(spv::OpRayQueryConfirmIntersectionKHR, operands);
  7266. return 0;
  7267. case glslang::EOpRayQueryProceed:
  7268. typeId = builder.makeBoolType();
  7269. opCode = spv::OpRayQueryProceedKHR;
  7270. break;
  7271. case glslang::EOpRayQueryGetIntersectionType:
  7272. typeId = builder.makeUintType(32);
  7273. opCode = spv::OpRayQueryGetIntersectionTypeKHR;
  7274. break;
  7275. case glslang::EOpRayQueryGetRayTMin:
  7276. typeId = builder.makeFloatType(32);
  7277. opCode = spv::OpRayQueryGetRayTMinKHR;
  7278. break;
  7279. case glslang::EOpRayQueryGetRayFlags:
  7280. typeId = builder.makeIntType(32);
  7281. opCode = spv::OpRayQueryGetRayFlagsKHR;
  7282. break;
  7283. case glslang::EOpRayQueryGetIntersectionT:
  7284. typeId = builder.makeFloatType(32);
  7285. opCode = spv::OpRayQueryGetIntersectionTKHR;
  7286. break;
  7287. case glslang::EOpRayQueryGetIntersectionInstanceCustomIndex:
  7288. typeId = builder.makeIntType(32);
  7289. opCode = spv::OpRayQueryGetIntersectionInstanceCustomIndexKHR;
  7290. break;
  7291. case glslang::EOpRayQueryGetIntersectionInstanceId:
  7292. typeId = builder.makeIntType(32);
  7293. opCode = spv::OpRayQueryGetIntersectionInstanceIdKHR;
  7294. break;
  7295. case glslang::EOpRayQueryGetIntersectionInstanceShaderBindingTableRecordOffset:
  7296. typeId = builder.makeUintType(32);
  7297. opCode = spv::OpRayQueryGetIntersectionInstanceShaderBindingTableRecordOffsetKHR;
  7298. break;
  7299. case glslang::EOpRayQueryGetIntersectionGeometryIndex:
  7300. typeId = builder.makeIntType(32);
  7301. opCode = spv::OpRayQueryGetIntersectionGeometryIndexKHR;
  7302. break;
  7303. case glslang::EOpRayQueryGetIntersectionPrimitiveIndex:
  7304. typeId = builder.makeIntType(32);
  7305. opCode = spv::OpRayQueryGetIntersectionPrimitiveIndexKHR;
  7306. break;
  7307. case glslang::EOpRayQueryGetIntersectionBarycentrics:
  7308. typeId = builder.makeVectorType(builder.makeFloatType(32), 2);
  7309. opCode = spv::OpRayQueryGetIntersectionBarycentricsKHR;
  7310. break;
  7311. case glslang::EOpRayQueryGetIntersectionFrontFace:
  7312. typeId = builder.makeBoolType();
  7313. opCode = spv::OpRayQueryGetIntersectionFrontFaceKHR;
  7314. break;
  7315. case glslang::EOpRayQueryGetIntersectionCandidateAABBOpaque:
  7316. typeId = builder.makeBoolType();
  7317. opCode = spv::OpRayQueryGetIntersectionCandidateAABBOpaqueKHR;
  7318. break;
  7319. case glslang::EOpRayQueryGetIntersectionObjectRayDirection:
  7320. typeId = builder.makeVectorType(builder.makeFloatType(32), 3);
  7321. opCode = spv::OpRayQueryGetIntersectionObjectRayDirectionKHR;
  7322. break;
  7323. case glslang::EOpRayQueryGetIntersectionObjectRayOrigin:
  7324. typeId = builder.makeVectorType(builder.makeFloatType(32), 3);
  7325. opCode = spv::OpRayQueryGetIntersectionObjectRayOriginKHR;
  7326. break;
  7327. case glslang::EOpRayQueryGetWorldRayDirection:
  7328. typeId = builder.makeVectorType(builder.makeFloatType(32), 3);
  7329. opCode = spv::OpRayQueryGetWorldRayDirectionKHR;
  7330. break;
  7331. case glslang::EOpRayQueryGetWorldRayOrigin:
  7332. typeId = builder.makeVectorType(builder.makeFloatType(32), 3);
  7333. opCode = spv::OpRayQueryGetWorldRayOriginKHR;
  7334. break;
  7335. case glslang::EOpRayQueryGetIntersectionObjectToWorld:
  7336. typeId = builder.makeMatrixType(builder.makeFloatType(32), 4, 3);
  7337. opCode = spv::OpRayQueryGetIntersectionObjectToWorldKHR;
  7338. break;
  7339. case glslang::EOpRayQueryGetIntersectionWorldToObject:
  7340. typeId = builder.makeMatrixType(builder.makeFloatType(32), 4, 3);
  7341. opCode = spv::OpRayQueryGetIntersectionWorldToObjectKHR;
  7342. break;
  7343. case glslang::EOpWritePackedPrimitiveIndices4x8NV:
  7344. builder.createNoResultOp(spv::OpWritePackedPrimitiveIndices4x8NV, operands);
  7345. return 0;
  7346. case glslang::EOpCooperativeMatrixMulAdd:
  7347. opCode = spv::OpCooperativeMatrixMulAddNV;
  7348. break;
  7349. #endif // GLSLANG_WEB
  7350. default:
  7351. return 0;
  7352. }
  7353. spv::Id id = 0;
  7354. if (libCall >= 0) {
  7355. // Use an extended instruction from the standard library.
  7356. // Construct the call arguments, without modifying the original operands vector.
  7357. // We might need the remaining arguments, e.g. in the EOpFrexp case.
  7358. std::vector<spv::Id> callArguments(operands.begin(), operands.begin() + consumedOperands);
  7359. id = builder.createBuiltinCall(typeId, extBuiltins >= 0 ? extBuiltins : stdBuiltins, libCall, callArguments);
  7360. } else if (opCode == spv::OpDot && !isFloat) {
  7361. // int dot(int, int)
  7362. // NOTE: never called for scalar/vector1, this is turned into simple mul before this can be reached
  7363. const int componentCount = builder.getNumComponents(operands[0]);
  7364. spv::Id mulOp = builder.createBinOp(spv::OpIMul, builder.getTypeId(operands[0]), operands[0], operands[1]);
  7365. builder.setPrecision(mulOp, precision);
  7366. id = builder.createCompositeExtract(mulOp, typeId, 0);
  7367. for (int i = 1; i < componentCount; ++i) {
  7368. builder.setPrecision(id, precision);
  7369. id = builder.createBinOp(spv::OpIAdd, typeId, id, builder.createCompositeExtract(mulOp, typeId, i));
  7370. }
  7371. } else {
  7372. switch (consumedOperands) {
  7373. case 0:
  7374. // should all be handled by visitAggregate and createNoArgOperation
  7375. assert(0);
  7376. return 0;
  7377. case 1:
  7378. // should all be handled by createUnaryOperation
  7379. assert(0);
  7380. return 0;
  7381. case 2:
  7382. id = builder.createBinOp(opCode, typeId, operands[0], operands[1]);
  7383. break;
  7384. default:
  7385. // anything 3 or over doesn't have l-value operands, so all should be consumed
  7386. assert(consumedOperands == operands.size());
  7387. id = builder.createOp(opCode, typeId, operands);
  7388. break;
  7389. }
  7390. }
  7391. #ifndef GLSLANG_WEB
  7392. // Decode the return types that were structures
  7393. switch (op) {
  7394. case glslang::EOpAddCarry:
  7395. case glslang::EOpSubBorrow:
  7396. builder.createStore(builder.createCompositeExtract(id, typeId0, 1), operands[2]);
  7397. id = builder.createCompositeExtract(id, typeId0, 0);
  7398. break;
  7399. case glslang::EOpUMulExtended:
  7400. case glslang::EOpIMulExtended:
  7401. builder.createStore(builder.createCompositeExtract(id, typeId0, 0), operands[3]);
  7402. builder.createStore(builder.createCompositeExtract(id, typeId0, 1), operands[2]);
  7403. break;
  7404. case glslang::EOpFrexp:
  7405. {
  7406. assert(operands.size() == 2);
  7407. if (builder.isFloatType(builder.getScalarTypeId(typeId1))) {
  7408. // "exp" is floating-point type (from HLSL intrinsic)
  7409. spv::Id member1 = builder.createCompositeExtract(id, frexpIntType, 1);
  7410. member1 = builder.createUnaryOp(spv::OpConvertSToF, typeId1, member1);
  7411. builder.createStore(member1, operands[1]);
  7412. } else
  7413. // "exp" is integer type (from GLSL built-in function)
  7414. builder.createStore(builder.createCompositeExtract(id, frexpIntType, 1), operands[1]);
  7415. id = builder.createCompositeExtract(id, typeId0, 0);
  7416. }
  7417. break;
  7418. default:
  7419. break;
  7420. }
  7421. #endif
  7422. return builder.setPrecision(id, precision);
  7423. }
  7424. // Intrinsics with no arguments (or no return value, and no precision).
  7425. spv::Id TGlslangToSpvTraverser::createNoArgOperation(glslang::TOperator op, spv::Decoration precision, spv::Id typeId)
  7426. {
  7427. // GLSL memory barriers use queuefamily scope in new model, device scope in old model
  7428. spv::Scope memoryBarrierScope = glslangIntermediate->usingVulkanMemoryModel() ?
  7429. spv::ScopeQueueFamilyKHR : spv::ScopeDevice;
  7430. switch (op) {
  7431. case glslang::EOpBarrier:
  7432. if (glslangIntermediate->getStage() == EShLangTessControl) {
  7433. if (glslangIntermediate->usingVulkanMemoryModel()) {
  7434. builder.createControlBarrier(spv::ScopeWorkgroup, spv::ScopeWorkgroup,
  7435. spv::MemorySemanticsOutputMemoryKHRMask |
  7436. spv::MemorySemanticsAcquireReleaseMask);
  7437. builder.addCapability(spv::CapabilityVulkanMemoryModelKHR);
  7438. } else {
  7439. builder.createControlBarrier(spv::ScopeWorkgroup, spv::ScopeInvocation, spv::MemorySemanticsMaskNone);
  7440. }
  7441. } else {
  7442. builder.createControlBarrier(spv::ScopeWorkgroup, spv::ScopeWorkgroup,
  7443. spv::MemorySemanticsWorkgroupMemoryMask |
  7444. spv::MemorySemanticsAcquireReleaseMask);
  7445. }
  7446. return 0;
  7447. case glslang::EOpMemoryBarrier:
  7448. builder.createMemoryBarrier(memoryBarrierScope, spv::MemorySemanticsAllMemory |
  7449. spv::MemorySemanticsAcquireReleaseMask);
  7450. return 0;
  7451. case glslang::EOpMemoryBarrierBuffer:
  7452. builder.createMemoryBarrier(memoryBarrierScope, spv::MemorySemanticsUniformMemoryMask |
  7453. spv::MemorySemanticsAcquireReleaseMask);
  7454. return 0;
  7455. case glslang::EOpMemoryBarrierShared:
  7456. builder.createMemoryBarrier(memoryBarrierScope, spv::MemorySemanticsWorkgroupMemoryMask |
  7457. spv::MemorySemanticsAcquireReleaseMask);
  7458. return 0;
  7459. case glslang::EOpGroupMemoryBarrier:
  7460. builder.createMemoryBarrier(spv::ScopeWorkgroup, spv::MemorySemanticsAllMemory |
  7461. spv::MemorySemanticsAcquireReleaseMask);
  7462. return 0;
  7463. #ifndef GLSLANG_WEB
  7464. case glslang::EOpMemoryBarrierAtomicCounter:
  7465. builder.createMemoryBarrier(memoryBarrierScope, spv::MemorySemanticsAtomicCounterMemoryMask |
  7466. spv::MemorySemanticsAcquireReleaseMask);
  7467. return 0;
  7468. case glslang::EOpMemoryBarrierImage:
  7469. builder.createMemoryBarrier(memoryBarrierScope, spv::MemorySemanticsImageMemoryMask |
  7470. spv::MemorySemanticsAcquireReleaseMask);
  7471. return 0;
  7472. case glslang::EOpAllMemoryBarrierWithGroupSync:
  7473. builder.createControlBarrier(spv::ScopeWorkgroup, spv::ScopeDevice,
  7474. spv::MemorySemanticsAllMemory |
  7475. spv::MemorySemanticsAcquireReleaseMask);
  7476. return 0;
  7477. case glslang::EOpDeviceMemoryBarrier:
  7478. builder.createMemoryBarrier(spv::ScopeDevice, spv::MemorySemanticsUniformMemoryMask |
  7479. spv::MemorySemanticsImageMemoryMask |
  7480. spv::MemorySemanticsAcquireReleaseMask);
  7481. return 0;
  7482. case glslang::EOpDeviceMemoryBarrierWithGroupSync:
  7483. builder.createControlBarrier(spv::ScopeWorkgroup, spv::ScopeDevice, spv::MemorySemanticsUniformMemoryMask |
  7484. spv::MemorySemanticsImageMemoryMask |
  7485. spv::MemorySemanticsAcquireReleaseMask);
  7486. return 0;
  7487. case glslang::EOpWorkgroupMemoryBarrier:
  7488. builder.createMemoryBarrier(spv::ScopeWorkgroup, spv::MemorySemanticsWorkgroupMemoryMask |
  7489. spv::MemorySemanticsAcquireReleaseMask);
  7490. return 0;
  7491. case glslang::EOpWorkgroupMemoryBarrierWithGroupSync:
  7492. builder.createControlBarrier(spv::ScopeWorkgroup, spv::ScopeWorkgroup,
  7493. spv::MemorySemanticsWorkgroupMemoryMask |
  7494. spv::MemorySemanticsAcquireReleaseMask);
  7495. return 0;
  7496. case glslang::EOpSubgroupBarrier:
  7497. builder.createControlBarrier(spv::ScopeSubgroup, spv::ScopeSubgroup, spv::MemorySemanticsAllMemory |
  7498. spv::MemorySemanticsAcquireReleaseMask);
  7499. return spv::NoResult;
  7500. case glslang::EOpSubgroupMemoryBarrier:
  7501. builder.createMemoryBarrier(spv::ScopeSubgroup, spv::MemorySemanticsAllMemory |
  7502. spv::MemorySemanticsAcquireReleaseMask);
  7503. return spv::NoResult;
  7504. case glslang::EOpSubgroupMemoryBarrierBuffer:
  7505. builder.createMemoryBarrier(spv::ScopeSubgroup, spv::MemorySemanticsUniformMemoryMask |
  7506. spv::MemorySemanticsAcquireReleaseMask);
  7507. return spv::NoResult;
  7508. case glslang::EOpSubgroupMemoryBarrierImage:
  7509. builder.createMemoryBarrier(spv::ScopeSubgroup, spv::MemorySemanticsImageMemoryMask |
  7510. spv::MemorySemanticsAcquireReleaseMask);
  7511. return spv::NoResult;
  7512. case glslang::EOpSubgroupMemoryBarrierShared:
  7513. builder.createMemoryBarrier(spv::ScopeSubgroup, spv::MemorySemanticsWorkgroupMemoryMask |
  7514. spv::MemorySemanticsAcquireReleaseMask);
  7515. return spv::NoResult;
  7516. case glslang::EOpEmitVertex:
  7517. builder.createNoResultOp(spv::OpEmitVertex);
  7518. return 0;
  7519. case glslang::EOpEndPrimitive:
  7520. builder.createNoResultOp(spv::OpEndPrimitive);
  7521. return 0;
  7522. case glslang::EOpSubgroupElect: {
  7523. std::vector<spv::Id> operands;
  7524. return createSubgroupOperation(op, typeId, operands, glslang::EbtVoid);
  7525. }
  7526. case glslang::EOpTime:
  7527. {
  7528. std::vector<spv::Id> args; // Dummy arguments
  7529. spv::Id id = builder.createBuiltinCall(typeId, getExtBuiltins(spv::E_SPV_AMD_gcn_shader), spv::TimeAMD, args);
  7530. return builder.setPrecision(id, precision);
  7531. }
  7532. case glslang::EOpIgnoreIntersectionNV:
  7533. builder.createNoResultOp(spv::OpIgnoreIntersectionNV);
  7534. return 0;
  7535. case glslang::EOpTerminateRayNV:
  7536. builder.createNoResultOp(spv::OpTerminateRayNV);
  7537. return 0;
  7538. case glslang::EOpRayQueryInitialize:
  7539. builder.createNoResultOp(spv::OpRayQueryInitializeKHR);
  7540. return 0;
  7541. case glslang::EOpRayQueryTerminate:
  7542. builder.createNoResultOp(spv::OpRayQueryTerminateKHR);
  7543. return 0;
  7544. case glslang::EOpRayQueryGenerateIntersection:
  7545. builder.createNoResultOp(spv::OpRayQueryGenerateIntersectionKHR);
  7546. return 0;
  7547. case glslang::EOpRayQueryConfirmIntersection:
  7548. builder.createNoResultOp(spv::OpRayQueryConfirmIntersectionKHR);
  7549. return 0;
  7550. case glslang::EOpBeginInvocationInterlock:
  7551. builder.createNoResultOp(spv::OpBeginInvocationInterlockEXT);
  7552. return 0;
  7553. case glslang::EOpEndInvocationInterlock:
  7554. builder.createNoResultOp(spv::OpEndInvocationInterlockEXT);
  7555. return 0;
  7556. case glslang::EOpIsHelperInvocation:
  7557. {
  7558. std::vector<spv::Id> args; // Dummy arguments
  7559. builder.addExtension(spv::E_SPV_EXT_demote_to_helper_invocation);
  7560. builder.addCapability(spv::CapabilityDemoteToHelperInvocationEXT);
  7561. return builder.createOp(spv::OpIsHelperInvocationEXT, typeId, args);
  7562. }
  7563. case glslang::EOpReadClockSubgroupKHR: {
  7564. std::vector<spv::Id> args;
  7565. args.push_back(builder.makeUintConstant(spv::ScopeSubgroup));
  7566. builder.addExtension(spv::E_SPV_KHR_shader_clock);
  7567. builder.addCapability(spv::CapabilityShaderClockKHR);
  7568. return builder.createOp(spv::OpReadClockKHR, typeId, args);
  7569. }
  7570. case glslang::EOpReadClockDeviceKHR: {
  7571. std::vector<spv::Id> args;
  7572. args.push_back(builder.makeUintConstant(spv::ScopeDevice));
  7573. builder.addExtension(spv::E_SPV_KHR_shader_clock);
  7574. builder.addCapability(spv::CapabilityShaderClockKHR);
  7575. return builder.createOp(spv::OpReadClockKHR, typeId, args);
  7576. }
  7577. #endif
  7578. default:
  7579. break;
  7580. }
  7581. logger->missingFunctionality("unknown operation with no arguments");
  7582. return 0;
  7583. }
  7584. spv::Id TGlslangToSpvTraverser::getSymbolId(const glslang::TIntermSymbol* symbol)
  7585. {
  7586. auto iter = symbolValues.find(symbol->getId());
  7587. spv::Id id;
  7588. if (symbolValues.end() != iter) {
  7589. id = iter->second;
  7590. return id;
  7591. }
  7592. // it was not found, create it
  7593. spv::BuiltIn builtIn = TranslateBuiltInDecoration(symbol->getQualifier().builtIn, false);
  7594. auto forcedType = getForcedType(symbol->getQualifier().builtIn, symbol->getType());
  7595. id = createSpvVariable(symbol, forcedType.first);
  7596. symbolValues[symbol->getId()] = id;
  7597. if (forcedType.second != spv::NoType)
  7598. forceType[id] = forcedType.second;
  7599. if (symbol->getBasicType() != glslang::EbtBlock) {
  7600. builder.addDecoration(id, TranslatePrecisionDecoration(symbol->getType()));
  7601. builder.addDecoration(id, TranslateInterpolationDecoration(symbol->getType().getQualifier()));
  7602. builder.addDecoration(id, TranslateAuxiliaryStorageDecoration(symbol->getType().getQualifier()));
  7603. #ifndef GLSLANG_WEB
  7604. addMeshNVDecoration(id, /*member*/ -1, symbol->getType().getQualifier());
  7605. if (symbol->getQualifier().hasComponent())
  7606. builder.addDecoration(id, spv::DecorationComponent, symbol->getQualifier().layoutComponent);
  7607. if (symbol->getQualifier().hasIndex())
  7608. builder.addDecoration(id, spv::DecorationIndex, symbol->getQualifier().layoutIndex);
  7609. #endif
  7610. if (symbol->getType().getQualifier().hasSpecConstantId())
  7611. builder.addDecoration(id, spv::DecorationSpecId, symbol->getType().getQualifier().layoutSpecConstantId);
  7612. // atomic counters use this:
  7613. if (symbol->getQualifier().hasOffset())
  7614. builder.addDecoration(id, spv::DecorationOffset, symbol->getQualifier().layoutOffset);
  7615. }
  7616. if (symbol->getQualifier().hasLocation())
  7617. builder.addDecoration(id, spv::DecorationLocation, symbol->getQualifier().layoutLocation);
  7618. builder.addDecoration(id, TranslateInvariantDecoration(symbol->getType().getQualifier()));
  7619. if (symbol->getQualifier().hasStream() && glslangIntermediate->isMultiStream()) {
  7620. builder.addCapability(spv::CapabilityGeometryStreams);
  7621. builder.addDecoration(id, spv::DecorationStream, symbol->getQualifier().layoutStream);
  7622. }
  7623. if (symbol->getQualifier().hasSet())
  7624. builder.addDecoration(id, spv::DecorationDescriptorSet, symbol->getQualifier().layoutSet);
  7625. else if (IsDescriptorResource(symbol->getType())) {
  7626. // default to 0
  7627. builder.addDecoration(id, spv::DecorationDescriptorSet, 0);
  7628. }
  7629. if (symbol->getQualifier().hasBinding())
  7630. builder.addDecoration(id, spv::DecorationBinding, symbol->getQualifier().layoutBinding);
  7631. else if (IsDescriptorResource(symbol->getType())) {
  7632. // default to 0
  7633. builder.addDecoration(id, spv::DecorationBinding, 0);
  7634. }
  7635. if (symbol->getQualifier().hasAttachment())
  7636. builder.addDecoration(id, spv::DecorationInputAttachmentIndex, symbol->getQualifier().layoutAttachment);
  7637. if (glslangIntermediate->getXfbMode()) {
  7638. builder.addCapability(spv::CapabilityTransformFeedback);
  7639. if (symbol->getQualifier().hasXfbBuffer()) {
  7640. builder.addDecoration(id, spv::DecorationXfbBuffer, symbol->getQualifier().layoutXfbBuffer);
  7641. unsigned stride = glslangIntermediate->getXfbStride(symbol->getQualifier().layoutXfbBuffer);
  7642. if (stride != glslang::TQualifier::layoutXfbStrideEnd)
  7643. builder.addDecoration(id, spv::DecorationXfbStride, stride);
  7644. }
  7645. if (symbol->getQualifier().hasXfbOffset())
  7646. builder.addDecoration(id, spv::DecorationOffset, symbol->getQualifier().layoutXfbOffset);
  7647. }
  7648. // add built-in variable decoration
  7649. if (builtIn != spv::BuiltInMax) {
  7650. builder.addDecoration(id, spv::DecorationBuiltIn, (int)builtIn);
  7651. }
  7652. #ifndef GLSLANG_WEB
  7653. // Subgroup builtins which have input storage class are volatile for ray tracing stages.
  7654. if (symbol->getType().isImage() || symbol->getQualifier().isPipeInput()) {
  7655. std::vector<spv::Decoration> memory;
  7656. TranslateMemoryDecoration(symbol->getType().getQualifier(), memory,
  7657. glslangIntermediate->usingVulkanMemoryModel());
  7658. for (unsigned int i = 0; i < memory.size(); ++i)
  7659. builder.addDecoration(id, memory[i]);
  7660. }
  7661. if (builtIn == spv::BuiltInSampleMask) {
  7662. spv::Decoration decoration;
  7663. // GL_NV_sample_mask_override_coverage extension
  7664. if (glslangIntermediate->getLayoutOverrideCoverage())
  7665. decoration = (spv::Decoration)spv::DecorationOverrideCoverageNV;
  7666. else
  7667. decoration = (spv::Decoration)spv::DecorationMax;
  7668. builder.addDecoration(id, decoration);
  7669. if (decoration != spv::DecorationMax) {
  7670. builder.addCapability(spv::CapabilitySampleMaskOverrideCoverageNV);
  7671. builder.addExtension(spv::E_SPV_NV_sample_mask_override_coverage);
  7672. }
  7673. }
  7674. else if (builtIn == spv::BuiltInLayer) {
  7675. // SPV_NV_viewport_array2 extension
  7676. if (symbol->getQualifier().layoutViewportRelative) {
  7677. builder.addDecoration(id, (spv::Decoration)spv::DecorationViewportRelativeNV);
  7678. builder.addCapability(spv::CapabilityShaderViewportMaskNV);
  7679. builder.addExtension(spv::E_SPV_NV_viewport_array2);
  7680. }
  7681. if (symbol->getQualifier().layoutSecondaryViewportRelativeOffset != -2048) {
  7682. builder.addDecoration(id, (spv::Decoration)spv::DecorationSecondaryViewportRelativeNV,
  7683. symbol->getQualifier().layoutSecondaryViewportRelativeOffset);
  7684. builder.addCapability(spv::CapabilityShaderStereoViewNV);
  7685. builder.addExtension(spv::E_SPV_NV_stereo_view_rendering);
  7686. }
  7687. }
  7688. if (symbol->getQualifier().layoutPassthrough) {
  7689. builder.addDecoration(id, spv::DecorationPassthroughNV);
  7690. builder.addCapability(spv::CapabilityGeometryShaderPassthroughNV);
  7691. builder.addExtension(spv::E_SPV_NV_geometry_shader_passthrough);
  7692. }
  7693. if (symbol->getQualifier().pervertexNV) {
  7694. builder.addDecoration(id, spv::DecorationPerVertexNV);
  7695. builder.addCapability(spv::CapabilityFragmentBarycentricNV);
  7696. builder.addExtension(spv::E_SPV_NV_fragment_shader_barycentric);
  7697. }
  7698. if (glslangIntermediate->getHlslFunctionality1() && symbol->getType().getQualifier().semanticName != nullptr) {
  7699. builder.addExtension("SPV_GOOGLE_hlsl_functionality1");
  7700. builder.addDecoration(id, (spv::Decoration)spv::DecorationHlslSemanticGOOGLE,
  7701. symbol->getType().getQualifier().semanticName);
  7702. }
  7703. if (symbol->isReference()) {
  7704. builder.addDecoration(id, symbol->getType().getQualifier().restrict ?
  7705. spv::DecorationRestrictPointerEXT : spv::DecorationAliasedPointerEXT);
  7706. }
  7707. #endif
  7708. return id;
  7709. }
  7710. #ifndef GLSLANG_WEB
  7711. // add per-primitive, per-view. per-task decorations to a struct member (member >= 0) or an object
  7712. void TGlslangToSpvTraverser::addMeshNVDecoration(spv::Id id, int member, const glslang::TQualifier& qualifier)
  7713. {
  7714. if (member >= 0) {
  7715. if (qualifier.perPrimitiveNV) {
  7716. // Need to add capability/extension for fragment shader.
  7717. // Mesh shader already adds this by default.
  7718. if (glslangIntermediate->getStage() == EShLangFragment) {
  7719. builder.addCapability(spv::CapabilityMeshShadingNV);
  7720. builder.addExtension(spv::E_SPV_NV_mesh_shader);
  7721. }
  7722. builder.addMemberDecoration(id, (unsigned)member, spv::DecorationPerPrimitiveNV);
  7723. }
  7724. if (qualifier.perViewNV)
  7725. builder.addMemberDecoration(id, (unsigned)member, spv::DecorationPerViewNV);
  7726. if (qualifier.perTaskNV)
  7727. builder.addMemberDecoration(id, (unsigned)member, spv::DecorationPerTaskNV);
  7728. } else {
  7729. if (qualifier.perPrimitiveNV) {
  7730. // Need to add capability/extension for fragment shader.
  7731. // Mesh shader already adds this by default.
  7732. if (glslangIntermediate->getStage() == EShLangFragment) {
  7733. builder.addCapability(spv::CapabilityMeshShadingNV);
  7734. builder.addExtension(spv::E_SPV_NV_mesh_shader);
  7735. }
  7736. builder.addDecoration(id, spv::DecorationPerPrimitiveNV);
  7737. }
  7738. if (qualifier.perViewNV)
  7739. builder.addDecoration(id, spv::DecorationPerViewNV);
  7740. if (qualifier.perTaskNV)
  7741. builder.addDecoration(id, spv::DecorationPerTaskNV);
  7742. }
  7743. }
  7744. #endif
  7745. // Make a full tree of instructions to build a SPIR-V specialization constant,
  7746. // or regular constant if possible.
  7747. //
  7748. // TBD: this is not yet done, nor verified to be the best design, it does do the leaf symbols though
  7749. //
  7750. // Recursively walk the nodes. The nodes form a tree whose leaves are
  7751. // regular constants, which themselves are trees that createSpvConstant()
  7752. // recursively walks. So, this function walks the "top" of the tree:
  7753. // - emit specialization constant-building instructions for specConstant
  7754. // - when running into a non-spec-constant, switch to createSpvConstant()
  7755. spv::Id TGlslangToSpvTraverser::createSpvConstant(const glslang::TIntermTyped& node)
  7756. {
  7757. assert(node.getQualifier().isConstant());
  7758. // Handle front-end constants first (non-specialization constants).
  7759. if (! node.getQualifier().specConstant) {
  7760. // hand off to the non-spec-constant path
  7761. assert(node.getAsConstantUnion() != nullptr || node.getAsSymbolNode() != nullptr);
  7762. int nextConst = 0;
  7763. return createSpvConstantFromConstUnionArray(node.getType(), node.getAsConstantUnion() ?
  7764. node.getAsConstantUnion()->getConstArray() : node.getAsSymbolNode()->getConstArray(),
  7765. nextConst, false);
  7766. }
  7767. // We now know we have a specialization constant to build
  7768. // Extra capabilities may be needed.
  7769. if (node.getType().contains8BitInt())
  7770. builder.addCapability(spv::CapabilityInt8);
  7771. if (node.getType().contains16BitFloat())
  7772. builder.addCapability(spv::CapabilityFloat16);
  7773. if (node.getType().contains16BitInt())
  7774. builder.addCapability(spv::CapabilityInt16);
  7775. if (node.getType().contains64BitInt())
  7776. builder.addCapability(spv::CapabilityInt64);
  7777. if (node.getType().containsDouble())
  7778. builder.addCapability(spv::CapabilityFloat64);
  7779. // gl_WorkGroupSize is a special case until the front-end handles hierarchical specialization constants,
  7780. // even then, it's specialization ids are handled by special case syntax in GLSL: layout(local_size_x = ...
  7781. if (node.getType().getQualifier().builtIn == glslang::EbvWorkGroupSize) {
  7782. std::vector<spv::Id> dimConstId;
  7783. for (int dim = 0; dim < 3; ++dim) {
  7784. bool specConst = (glslangIntermediate->getLocalSizeSpecId(dim) != glslang::TQualifier::layoutNotSet);
  7785. dimConstId.push_back(builder.makeUintConstant(glslangIntermediate->getLocalSize(dim), specConst));
  7786. if (specConst) {
  7787. builder.addDecoration(dimConstId.back(), spv::DecorationSpecId,
  7788. glslangIntermediate->getLocalSizeSpecId(dim));
  7789. }
  7790. }
  7791. return builder.makeCompositeConstant(builder.makeVectorType(builder.makeUintType(32), 3), dimConstId, true);
  7792. }
  7793. // An AST node labelled as specialization constant should be a symbol node.
  7794. // Its initializer should either be a sub tree with constant nodes, or a constant union array.
  7795. if (auto* sn = node.getAsSymbolNode()) {
  7796. spv::Id result;
  7797. if (auto* sub_tree = sn->getConstSubtree()) {
  7798. // Traverse the constant constructor sub tree like generating normal run-time instructions.
  7799. // During the AST traversal, if the node is marked as 'specConstant', SpecConstantOpModeGuard
  7800. // will set the builder into spec constant op instruction generating mode.
  7801. sub_tree->traverse(this);
  7802. result = accessChainLoad(sub_tree->getType());
  7803. } else if (auto* const_union_array = &sn->getConstArray()) {
  7804. int nextConst = 0;
  7805. result = createSpvConstantFromConstUnionArray(sn->getType(), *const_union_array, nextConst, true);
  7806. } else {
  7807. logger->missingFunctionality("Invalid initializer for spec onstant.");
  7808. return spv::NoResult;
  7809. }
  7810. builder.addName(result, sn->getName().c_str());
  7811. return result;
  7812. }
  7813. // Neither a front-end constant node, nor a specialization constant node with constant union array or
  7814. // constant sub tree as initializer.
  7815. logger->missingFunctionality("Neither a front-end constant nor a spec constant.");
  7816. return spv::NoResult;
  7817. }
  7818. // Use 'consts' as the flattened glslang source of scalar constants to recursively
  7819. // build the aggregate SPIR-V constant.
  7820. //
  7821. // If there are not enough elements present in 'consts', 0 will be substituted;
  7822. // an empty 'consts' can be used to create a fully zeroed SPIR-V constant.
  7823. //
  7824. spv::Id TGlslangToSpvTraverser::createSpvConstantFromConstUnionArray(const glslang::TType& glslangType,
  7825. const glslang::TConstUnionArray& consts, int& nextConst, bool specConstant)
  7826. {
  7827. // vector of constants for SPIR-V
  7828. std::vector<spv::Id> spvConsts;
  7829. // Type is used for struct and array constants
  7830. spv::Id typeId = convertGlslangToSpvType(glslangType);
  7831. if (glslangType.isArray()) {
  7832. glslang::TType elementType(glslangType, 0);
  7833. for (int i = 0; i < glslangType.getOuterArraySize(); ++i)
  7834. spvConsts.push_back(createSpvConstantFromConstUnionArray(elementType, consts, nextConst, false));
  7835. } else if (glslangType.isMatrix()) {
  7836. glslang::TType vectorType(glslangType, 0);
  7837. for (int col = 0; col < glslangType.getMatrixCols(); ++col)
  7838. spvConsts.push_back(createSpvConstantFromConstUnionArray(vectorType, consts, nextConst, false));
  7839. } else if (glslangType.isCoopMat()) {
  7840. glslang::TType componentType(glslangType.getBasicType());
  7841. spvConsts.push_back(createSpvConstantFromConstUnionArray(componentType, consts, nextConst, false));
  7842. } else if (glslangType.isStruct()) {
  7843. glslang::TVector<glslang::TTypeLoc>::const_iterator iter;
  7844. for (iter = glslangType.getStruct()->begin(); iter != glslangType.getStruct()->end(); ++iter)
  7845. spvConsts.push_back(createSpvConstantFromConstUnionArray(*iter->type, consts, nextConst, false));
  7846. } else if (glslangType.getVectorSize() > 1) {
  7847. for (unsigned int i = 0; i < (unsigned int)glslangType.getVectorSize(); ++i) {
  7848. bool zero = nextConst >= consts.size();
  7849. switch (glslangType.getBasicType()) {
  7850. case glslang::EbtInt:
  7851. spvConsts.push_back(builder.makeIntConstant(zero ? 0 : consts[nextConst].getIConst()));
  7852. break;
  7853. case glslang::EbtUint:
  7854. spvConsts.push_back(builder.makeUintConstant(zero ? 0 : consts[nextConst].getUConst()));
  7855. break;
  7856. case glslang::EbtFloat:
  7857. spvConsts.push_back(builder.makeFloatConstant(zero ? 0.0F : (float)consts[nextConst].getDConst()));
  7858. break;
  7859. case glslang::EbtBool:
  7860. spvConsts.push_back(builder.makeBoolConstant(zero ? false : consts[nextConst].getBConst()));
  7861. break;
  7862. #ifndef GLSLANG_WEB
  7863. case glslang::EbtInt8:
  7864. spvConsts.push_back(builder.makeInt8Constant(zero ? 0 : consts[nextConst].getI8Const()));
  7865. break;
  7866. case glslang::EbtUint8:
  7867. spvConsts.push_back(builder.makeUint8Constant(zero ? 0 : consts[nextConst].getU8Const()));
  7868. break;
  7869. case glslang::EbtInt16:
  7870. spvConsts.push_back(builder.makeInt16Constant(zero ? 0 : consts[nextConst].getI16Const()));
  7871. break;
  7872. case glslang::EbtUint16:
  7873. spvConsts.push_back(builder.makeUint16Constant(zero ? 0 : consts[nextConst].getU16Const()));
  7874. break;
  7875. case glslang::EbtInt64:
  7876. spvConsts.push_back(builder.makeInt64Constant(zero ? 0 : consts[nextConst].getI64Const()));
  7877. break;
  7878. case glslang::EbtUint64:
  7879. spvConsts.push_back(builder.makeUint64Constant(zero ? 0 : consts[nextConst].getU64Const()));
  7880. break;
  7881. case glslang::EbtDouble:
  7882. spvConsts.push_back(builder.makeDoubleConstant(zero ? 0.0 : consts[nextConst].getDConst()));
  7883. break;
  7884. case glslang::EbtFloat16:
  7885. spvConsts.push_back(builder.makeFloat16Constant(zero ? 0.0F : (float)consts[nextConst].getDConst()));
  7886. break;
  7887. #endif
  7888. default:
  7889. assert(0);
  7890. break;
  7891. }
  7892. ++nextConst;
  7893. }
  7894. } else {
  7895. // we have a non-aggregate (scalar) constant
  7896. bool zero = nextConst >= consts.size();
  7897. spv::Id scalar = 0;
  7898. switch (glslangType.getBasicType()) {
  7899. case glslang::EbtInt:
  7900. scalar = builder.makeIntConstant(zero ? 0 : consts[nextConst].getIConst(), specConstant);
  7901. break;
  7902. case glslang::EbtUint:
  7903. scalar = builder.makeUintConstant(zero ? 0 : consts[nextConst].getUConst(), specConstant);
  7904. break;
  7905. case glslang::EbtFloat:
  7906. scalar = builder.makeFloatConstant(zero ? 0.0F : (float)consts[nextConst].getDConst(), specConstant);
  7907. break;
  7908. case glslang::EbtBool:
  7909. scalar = builder.makeBoolConstant(zero ? false : consts[nextConst].getBConst(), specConstant);
  7910. break;
  7911. #ifndef GLSLANG_WEB
  7912. case glslang::EbtInt8:
  7913. scalar = builder.makeInt8Constant(zero ? 0 : consts[nextConst].getI8Const(), specConstant);
  7914. break;
  7915. case glslang::EbtUint8:
  7916. scalar = builder.makeUint8Constant(zero ? 0 : consts[nextConst].getU8Const(), specConstant);
  7917. break;
  7918. case glslang::EbtInt16:
  7919. scalar = builder.makeInt16Constant(zero ? 0 : consts[nextConst].getI16Const(), specConstant);
  7920. break;
  7921. case glslang::EbtUint16:
  7922. scalar = builder.makeUint16Constant(zero ? 0 : consts[nextConst].getU16Const(), specConstant);
  7923. break;
  7924. case glslang::EbtInt64:
  7925. scalar = builder.makeInt64Constant(zero ? 0 : consts[nextConst].getI64Const(), specConstant);
  7926. break;
  7927. case glslang::EbtUint64:
  7928. scalar = builder.makeUint64Constant(zero ? 0 : consts[nextConst].getU64Const(), specConstant);
  7929. break;
  7930. case glslang::EbtDouble:
  7931. scalar = builder.makeDoubleConstant(zero ? 0.0 : consts[nextConst].getDConst(), specConstant);
  7932. break;
  7933. case glslang::EbtFloat16:
  7934. scalar = builder.makeFloat16Constant(zero ? 0.0F : (float)consts[nextConst].getDConst(), specConstant);
  7935. break;
  7936. case glslang::EbtReference:
  7937. scalar = builder.makeUint64Constant(zero ? 0 : consts[nextConst].getU64Const(), specConstant);
  7938. scalar = builder.createUnaryOp(spv::OpBitcast, typeId, scalar);
  7939. break;
  7940. #endif
  7941. case glslang::EbtString:
  7942. scalar = builder.getStringId(consts[nextConst].getSConst()->c_str());
  7943. break;
  7944. default:
  7945. assert(0);
  7946. break;
  7947. }
  7948. ++nextConst;
  7949. return scalar;
  7950. }
  7951. return builder.makeCompositeConstant(typeId, spvConsts);
  7952. }
  7953. // Return true if the node is a constant or symbol whose reading has no
  7954. // non-trivial observable cost or effect.
  7955. bool TGlslangToSpvTraverser::isTrivialLeaf(const glslang::TIntermTyped* node)
  7956. {
  7957. // don't know what this is
  7958. if (node == nullptr)
  7959. return false;
  7960. // a constant is safe
  7961. if (node->getAsConstantUnion() != nullptr)
  7962. return true;
  7963. // not a symbol means non-trivial
  7964. if (node->getAsSymbolNode() == nullptr)
  7965. return false;
  7966. // a symbol, depends on what's being read
  7967. switch (node->getType().getQualifier().storage) {
  7968. case glslang::EvqTemporary:
  7969. case glslang::EvqGlobal:
  7970. case glslang::EvqIn:
  7971. case glslang::EvqInOut:
  7972. case glslang::EvqConst:
  7973. case glslang::EvqConstReadOnly:
  7974. case glslang::EvqUniform:
  7975. return true;
  7976. default:
  7977. return false;
  7978. }
  7979. }
  7980. // A node is trivial if it is a single operation with no side effects.
  7981. // HLSL (and/or vectors) are always trivial, as it does not short circuit.
  7982. // Otherwise, error on the side of saying non-trivial.
  7983. // Return true if trivial.
  7984. bool TGlslangToSpvTraverser::isTrivial(const glslang::TIntermTyped* node)
  7985. {
  7986. if (node == nullptr)
  7987. return false;
  7988. // count non scalars as trivial, as well as anything coming from HLSL
  7989. if (! node->getType().isScalarOrVec1() || glslangIntermediate->getSource() == glslang::EShSourceHlsl)
  7990. return true;
  7991. // symbols and constants are trivial
  7992. if (isTrivialLeaf(node))
  7993. return true;
  7994. // otherwise, it needs to be a simple operation or one or two leaf nodes
  7995. // not a simple operation
  7996. const glslang::TIntermBinary* binaryNode = node->getAsBinaryNode();
  7997. const glslang::TIntermUnary* unaryNode = node->getAsUnaryNode();
  7998. if (binaryNode == nullptr && unaryNode == nullptr)
  7999. return false;
  8000. // not on leaf nodes
  8001. if (binaryNode && (! isTrivialLeaf(binaryNode->getLeft()) || ! isTrivialLeaf(binaryNode->getRight())))
  8002. return false;
  8003. if (unaryNode && ! isTrivialLeaf(unaryNode->getOperand())) {
  8004. return false;
  8005. }
  8006. switch (node->getAsOperator()->getOp()) {
  8007. case glslang::EOpLogicalNot:
  8008. case glslang::EOpConvIntToBool:
  8009. case glslang::EOpConvUintToBool:
  8010. case glslang::EOpConvFloatToBool:
  8011. case glslang::EOpConvDoubleToBool:
  8012. case glslang::EOpEqual:
  8013. case glslang::EOpNotEqual:
  8014. case glslang::EOpLessThan:
  8015. case glslang::EOpGreaterThan:
  8016. case glslang::EOpLessThanEqual:
  8017. case glslang::EOpGreaterThanEqual:
  8018. case glslang::EOpIndexDirect:
  8019. case glslang::EOpIndexDirectStruct:
  8020. case glslang::EOpLogicalXor:
  8021. case glslang::EOpAny:
  8022. case glslang::EOpAll:
  8023. return true;
  8024. default:
  8025. return false;
  8026. }
  8027. }
  8028. // Emit short-circuiting code, where 'right' is never evaluated unless
  8029. // the left side is true (for &&) or false (for ||).
  8030. spv::Id TGlslangToSpvTraverser::createShortCircuit(glslang::TOperator op, glslang::TIntermTyped& left,
  8031. glslang::TIntermTyped& right)
  8032. {
  8033. spv::Id boolTypeId = builder.makeBoolType();
  8034. // emit left operand
  8035. builder.clearAccessChain();
  8036. left.traverse(this);
  8037. spv::Id leftId = accessChainLoad(left.getType());
  8038. // Operands to accumulate OpPhi operands
  8039. std::vector<spv::Id> phiOperands;
  8040. // accumulate left operand's phi information
  8041. phiOperands.push_back(leftId);
  8042. phiOperands.push_back(builder.getBuildPoint()->getId());
  8043. // Make the two kinds of operation symmetric with a "!"
  8044. // || => emit "if (! left) result = right"
  8045. // && => emit "if ( left) result = right"
  8046. //
  8047. // TODO: this runtime "not" for || could be avoided by adding functionality
  8048. // to 'builder' to have an "else" without an "then"
  8049. if (op == glslang::EOpLogicalOr)
  8050. leftId = builder.createUnaryOp(spv::OpLogicalNot, boolTypeId, leftId);
  8051. // make an "if" based on the left value
  8052. spv::Builder::If ifBuilder(leftId, spv::SelectionControlMaskNone, builder);
  8053. // emit right operand as the "then" part of the "if"
  8054. builder.clearAccessChain();
  8055. right.traverse(this);
  8056. spv::Id rightId = accessChainLoad(right.getType());
  8057. // accumulate left operand's phi information
  8058. phiOperands.push_back(rightId);
  8059. phiOperands.push_back(builder.getBuildPoint()->getId());
  8060. // finish the "if"
  8061. ifBuilder.makeEndIf();
  8062. // phi together the two results
  8063. return builder.createOp(spv::OpPhi, boolTypeId, phiOperands);
  8064. }
  8065. #ifndef GLSLANG_WEB
  8066. // Return type Id of the imported set of extended instructions corresponds to the name.
  8067. // Import this set if it has not been imported yet.
  8068. spv::Id TGlslangToSpvTraverser::getExtBuiltins(const char* name)
  8069. {
  8070. if (extBuiltinMap.find(name) != extBuiltinMap.end())
  8071. return extBuiltinMap[name];
  8072. else {
  8073. builder.addExtension(name);
  8074. spv::Id extBuiltins = builder.import(name);
  8075. extBuiltinMap[name] = extBuiltins;
  8076. return extBuiltins;
  8077. }
  8078. }
  8079. #endif
  8080. }; // end anonymous namespace
  8081. namespace glslang {
  8082. void GetSpirvVersion(std::string& version)
  8083. {
  8084. const int bufSize = 100;
  8085. char buf[bufSize];
  8086. snprintf(buf, bufSize, "0x%08x, Revision %d", spv::Version, spv::Revision);
  8087. version = buf;
  8088. }
  8089. // For low-order part of the generator's magic number. Bump up
  8090. // when there is a change in the style (e.g., if SSA form changes,
  8091. // or a different instruction sequence to do something gets used).
  8092. int GetSpirvGeneratorVersion()
  8093. {
  8094. // return 1; // start
  8095. // return 2; // EOpAtomicCounterDecrement gets a post decrement, to map between GLSL -> SPIR-V
  8096. // return 3; // change/correct barrier-instruction operands, to match memory model group decisions
  8097. // return 4; // some deeper access chains: for dynamic vector component, and local Boolean component
  8098. // return 5; // make OpArrayLength result type be an int with signedness of 0
  8099. // return 6; // revert version 5 change, which makes a different (new) kind of incorrect code,
  8100. // versions 4 and 6 each generate OpArrayLength as it has long been done
  8101. // return 7; // GLSL volatile keyword maps to both SPIR-V decorations Volatile and Coherent
  8102. // return 8; // switch to new dead block eliminator; use OpUnreachable
  8103. // return 9; // don't include opaque function parameters in OpEntryPoint global's operand list
  8104. return 10; // Generate OpFUnordNotEqual for != comparisons
  8105. }
  8106. // Write SPIR-V out to a binary file
  8107. void OutputSpvBin(const std::vector<unsigned int>& spirv, const char* baseName)
  8108. {
  8109. std::ofstream out;
  8110. out.open(baseName, std::ios::binary | std::ios::out);
  8111. if (out.fail())
  8112. printf("ERROR: Failed to open file: %s\n", baseName);
  8113. for (int i = 0; i < (int)spirv.size(); ++i) {
  8114. unsigned int word = spirv[i];
  8115. out.write((const char*)&word, 4);
  8116. }
  8117. out.close();
  8118. }
  8119. // Write SPIR-V out to a text file with 32-bit hexadecimal words
  8120. void OutputSpvHex(const std::vector<unsigned int>& spirv, const char* baseName, const char* varName)
  8121. {
  8122. #if !defined(GLSLANG_WEB) && !defined(GLSLANG_ANGLE)
  8123. std::ofstream out;
  8124. out.open(baseName, std::ios::binary | std::ios::out);
  8125. if (out.fail())
  8126. printf("ERROR: Failed to open file: %s\n", baseName);
  8127. out << "\t// " <<
  8128. GetSpirvGeneratorVersion() <<
  8129. GLSLANG_VERSION_MAJOR << "." << GLSLANG_VERSION_MINOR << "." << GLSLANG_VERSION_PATCH <<
  8130. GLSLANG_VERSION_FLAVOR << std::endl;
  8131. if (varName != nullptr) {
  8132. out << "\t #pragma once" << std::endl;
  8133. out << "const uint32_t " << varName << "[] = {" << std::endl;
  8134. }
  8135. const int WORDS_PER_LINE = 8;
  8136. for (int i = 0; i < (int)spirv.size(); i += WORDS_PER_LINE) {
  8137. out << "\t";
  8138. for (int j = 0; j < WORDS_PER_LINE && i + j < (int)spirv.size(); ++j) {
  8139. const unsigned int word = spirv[i + j];
  8140. out << "0x" << std::hex << std::setw(8) << std::setfill('0') << word;
  8141. if (i + j + 1 < (int)spirv.size()) {
  8142. out << ",";
  8143. }
  8144. }
  8145. out << std::endl;
  8146. }
  8147. if (varName != nullptr) {
  8148. out << "};";
  8149. out << std::endl;
  8150. }
  8151. out.close();
  8152. #endif
  8153. }
  8154. //
  8155. // Set up the glslang traversal
  8156. //
  8157. void GlslangToSpv(const TIntermediate& intermediate, std::vector<unsigned int>& spirv, SpvOptions* options)
  8158. {
  8159. spv::SpvBuildLogger logger;
  8160. GlslangToSpv(intermediate, spirv, &logger, options);
  8161. }
  8162. void GlslangToSpv(const TIntermediate& intermediate, std::vector<unsigned int>& spirv,
  8163. spv::SpvBuildLogger* logger, SpvOptions* options)
  8164. {
  8165. TIntermNode* root = intermediate.getTreeRoot();
  8166. if (root == 0)
  8167. return;
  8168. SpvOptions defaultOptions;
  8169. if (options == nullptr)
  8170. options = &defaultOptions;
  8171. GetThreadPoolAllocator().push();
  8172. TGlslangToSpvTraverser it(intermediate.getSpv().spv, &intermediate, logger, *options);
  8173. root->traverse(&it);
  8174. it.finishSpv();
  8175. it.dumpSpv(spirv);
  8176. #if ENABLE_OPT
  8177. // If from HLSL, run spirv-opt to "legalize" the SPIR-V for Vulkan
  8178. // eg. forward and remove memory writes of opaque types.
  8179. bool prelegalization = intermediate.getSource() == EShSourceHlsl;
  8180. if ((prelegalization || options->optimizeSize) && !options->disableOptimizer) {
  8181. SpirvToolsTransform(intermediate, spirv, logger, options);
  8182. prelegalization = false;
  8183. }
  8184. else if (options->stripDebugInfo) {
  8185. // Strip debug info even if optimization is disabled.
  8186. SpirvToolsStripDebugInfo(intermediate, spirv, logger);
  8187. }
  8188. if (options->validate)
  8189. SpirvToolsValidate(intermediate, spirv, logger, prelegalization);
  8190. if (options->disassemble)
  8191. SpirvToolsDisassemble(std::cout, spirv);
  8192. #endif
  8193. GetThreadPoolAllocator().pop();
  8194. }
  8195. }; // end namespace glslang