optimizer.cpp 34 KB

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  1. // Copyright (c) 2016 Google Inc.
  2. //
  3. // Licensed under the Apache License, Version 2.0 (the "License");
  4. // you may not use this file except in compliance with the License.
  5. // You may obtain a copy of the License at
  6. //
  7. // http://www.apache.org/licenses/LICENSE-2.0
  8. //
  9. // Unless required by applicable law or agreed to in writing, software
  10. // distributed under the License is distributed on an "AS IS" BASIS,
  11. // WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
  12. // See the License for the specific language governing permissions and
  13. // limitations under the License.
  14. #include "spirv-tools/optimizer.hpp"
  15. #include <memory>
  16. #include <string>
  17. #include <unordered_map>
  18. #include <utility>
  19. #include <vector>
  20. #include <source/spirv_optimizer_options.h>
  21. #include "source/opt/build_module.h"
  22. #include "source/opt/graphics_robust_access_pass.h"
  23. #include "source/opt/log.h"
  24. #include "source/opt/pass_manager.h"
  25. #include "source/opt/passes.h"
  26. #include "source/util/make_unique.h"
  27. #include "source/util/string_utils.h"
  28. namespace spvtools {
  29. struct Optimizer::PassToken::Impl {
  30. Impl(std::unique_ptr<opt::Pass> p) : pass(std::move(p)) {}
  31. std::unique_ptr<opt::Pass> pass; // Internal implementation pass.
  32. };
  33. Optimizer::PassToken::PassToken(
  34. std::unique_ptr<Optimizer::PassToken::Impl> impl)
  35. : impl_(std::move(impl)) {}
  36. Optimizer::PassToken::PassToken(std::unique_ptr<opt::Pass>&& pass)
  37. : impl_(MakeUnique<Optimizer::PassToken::Impl>(std::move(pass))) {}
  38. Optimizer::PassToken::PassToken(PassToken&& that)
  39. : impl_(std::move(that.impl_)) {}
  40. Optimizer::PassToken& Optimizer::PassToken::operator=(PassToken&& that) {
  41. impl_ = std::move(that.impl_);
  42. return *this;
  43. }
  44. Optimizer::PassToken::~PassToken() {}
  45. struct Optimizer::Impl {
  46. explicit Impl(spv_target_env env) : target_env(env), pass_manager() {}
  47. spv_target_env target_env; // Target environment.
  48. opt::PassManager pass_manager; // Internal implementation pass manager.
  49. };
  50. Optimizer::Optimizer(spv_target_env env) : impl_(new Impl(env)) {}
  51. Optimizer::~Optimizer() {}
  52. void Optimizer::SetMessageConsumer(MessageConsumer c) {
  53. // All passes' message consumer needs to be updated.
  54. for (uint32_t i = 0; i < impl_->pass_manager.NumPasses(); ++i) {
  55. impl_->pass_manager.GetPass(i)->SetMessageConsumer(c);
  56. }
  57. impl_->pass_manager.SetMessageConsumer(std::move(c));
  58. }
  59. const MessageConsumer& Optimizer::consumer() const {
  60. return impl_->pass_manager.consumer();
  61. }
  62. Optimizer& Optimizer::RegisterPass(PassToken&& p) {
  63. // Change to use the pass manager's consumer.
  64. p.impl_->pass->SetMessageConsumer(consumer());
  65. impl_->pass_manager.AddPass(std::move(p.impl_->pass));
  66. return *this;
  67. }
  68. // The legalization passes take a spir-v shader generated by an HLSL front-end
  69. // and turn it into a valid vulkan spir-v shader. There are two ways in which
  70. // the code will be invalid at the start:
  71. //
  72. // 1) There will be opaque objects, like images, which will be passed around
  73. // in intermediate objects. Valid spir-v will have to replace the use of
  74. // the opaque object with an intermediate object that is the result of the
  75. // load of the global opaque object.
  76. //
  77. // 2) There will be variables that contain pointers to structured or uniform
  78. // buffers. It be legal, the variables must be eliminated, and the
  79. // references to the structured buffers must use the result of OpVariable
  80. // in the Uniform storage class.
  81. //
  82. // Optimization in this list must accept shaders with these relaxation of the
  83. // rules. There is not guarantee that this list of optimizations is able to
  84. // legalize all inputs, but it is on a best effort basis.
  85. //
  86. // The legalization problem is essentially a very general copy propagation
  87. // problem. The optimization we use are all used to either do copy propagation
  88. // or enable more copy propagation.
  89. Optimizer& Optimizer::RegisterLegalizationPasses() {
  90. return
  91. // Remove unreachable block so that merge return works.
  92. RegisterPass(CreateDeadBranchElimPass())
  93. // Merge the returns so we can inline.
  94. .RegisterPass(CreateMergeReturnPass())
  95. // Make sure uses and definitions are in the same function.
  96. .RegisterPass(CreateInlineExhaustivePass())
  97. // Make private variable function scope
  98. .RegisterPass(CreateEliminateDeadFunctionsPass())
  99. .RegisterPass(CreatePrivateToLocalPass())
  100. // Fix up the storage classes that DXC may have purposely generated
  101. // incorrectly. All functions are inlined, and a lot of dead code has
  102. // been removed.
  103. .RegisterPass(CreateFixStorageClassPass())
  104. // Propagate the value stored to the loads in very simple cases.
  105. .RegisterPass(CreateLocalSingleBlockLoadStoreElimPass())
  106. .RegisterPass(CreateLocalSingleStoreElimPass())
  107. .RegisterPass(CreateAggressiveDCEPass())
  108. // Split up aggregates so they are easier to deal with.
  109. .RegisterPass(CreateScalarReplacementPass(0))
  110. // Remove loads and stores so everything is in intermediate values.
  111. // Takes care of copy propagation of non-members.
  112. .RegisterPass(CreateLocalSingleBlockLoadStoreElimPass())
  113. .RegisterPass(CreateLocalSingleStoreElimPass())
  114. .RegisterPass(CreateAggressiveDCEPass())
  115. .RegisterPass(CreateLocalMultiStoreElimPass())
  116. .RegisterPass(CreateAggressiveDCEPass())
  117. // Propagate constants to get as many constant conditions on branches
  118. // as possible.
  119. .RegisterPass(CreateCCPPass())
  120. .RegisterPass(CreateLoopUnrollPass(true))
  121. .RegisterPass(CreateDeadBranchElimPass())
  122. // Copy propagate members. Cleans up code sequences generated by
  123. // scalar replacement. Also important for removing OpPhi nodes.
  124. .RegisterPass(CreateSimplificationPass())
  125. .RegisterPass(CreateAggressiveDCEPass())
  126. .RegisterPass(CreateCopyPropagateArraysPass())
  127. // May need loop unrolling here see
  128. // https://github.com/Microsoft/DirectXShaderCompiler/pull/930
  129. // Get rid of unused code that contain traces of illegal code
  130. // or unused references to unbound external objects
  131. .RegisterPass(CreateVectorDCEPass())
  132. .RegisterPass(CreateDeadInsertElimPass())
  133. .RegisterPass(CreateReduceLoadSizePass())
  134. .RegisterPass(CreateAggressiveDCEPass());
  135. }
  136. Optimizer& Optimizer::RegisterPerformancePasses() {
  137. return RegisterPass(CreateDeadBranchElimPass())
  138. .RegisterPass(CreateMergeReturnPass())
  139. .RegisterPass(CreateInlineExhaustivePass())
  140. .RegisterPass(CreateAggressiveDCEPass())
  141. .RegisterPass(CreatePrivateToLocalPass())
  142. .RegisterPass(CreateLocalSingleBlockLoadStoreElimPass())
  143. .RegisterPass(CreateLocalSingleStoreElimPass())
  144. .RegisterPass(CreateAggressiveDCEPass())
  145. .RegisterPass(CreateScalarReplacementPass())
  146. .RegisterPass(CreateLocalAccessChainConvertPass())
  147. .RegisterPass(CreateLocalSingleBlockLoadStoreElimPass())
  148. .RegisterPass(CreateLocalSingleStoreElimPass())
  149. .RegisterPass(CreateAggressiveDCEPass())
  150. .RegisterPass(CreateLocalMultiStoreElimPass())
  151. .RegisterPass(CreateAggressiveDCEPass())
  152. .RegisterPass(CreateCCPPass())
  153. .RegisterPass(CreateAggressiveDCEPass())
  154. .RegisterPass(CreateRedundancyEliminationPass())
  155. .RegisterPass(CreateCombineAccessChainsPass())
  156. .RegisterPass(CreateSimplificationPass())
  157. .RegisterPass(CreateVectorDCEPass())
  158. .RegisterPass(CreateDeadInsertElimPass())
  159. .RegisterPass(CreateDeadBranchElimPass())
  160. .RegisterPass(CreateSimplificationPass())
  161. .RegisterPass(CreateIfConversionPass())
  162. .RegisterPass(CreateCopyPropagateArraysPass())
  163. .RegisterPass(CreateReduceLoadSizePass())
  164. .RegisterPass(CreateAggressiveDCEPass())
  165. .RegisterPass(CreateBlockMergePass())
  166. .RegisterPass(CreateRedundancyEliminationPass())
  167. .RegisterPass(CreateDeadBranchElimPass())
  168. .RegisterPass(CreateBlockMergePass())
  169. .RegisterPass(CreateSimplificationPass());
  170. }
  171. Optimizer& Optimizer::RegisterSizePasses() {
  172. return RegisterPass(CreateDeadBranchElimPass())
  173. .RegisterPass(CreateMergeReturnPass())
  174. .RegisterPass(CreateInlineExhaustivePass())
  175. .RegisterPass(CreateAggressiveDCEPass())
  176. .RegisterPass(CreatePrivateToLocalPass())
  177. .RegisterPass(CreateScalarReplacementPass())
  178. .RegisterPass(CreateLocalAccessChainConvertPass())
  179. .RegisterPass(CreateLocalSingleBlockLoadStoreElimPass())
  180. .RegisterPass(CreateLocalSingleStoreElimPass())
  181. .RegisterPass(CreateAggressiveDCEPass())
  182. .RegisterPass(CreateSimplificationPass())
  183. .RegisterPass(CreateDeadInsertElimPass())
  184. .RegisterPass(CreateLocalMultiStoreElimPass())
  185. .RegisterPass(CreateAggressiveDCEPass())
  186. .RegisterPass(CreateCCPPass())
  187. .RegisterPass(CreateAggressiveDCEPass())
  188. .RegisterPass(CreateDeadBranchElimPass())
  189. .RegisterPass(CreateIfConversionPass())
  190. .RegisterPass(CreateAggressiveDCEPass())
  191. .RegisterPass(CreateBlockMergePass())
  192. .RegisterPass(CreateSimplificationPass())
  193. .RegisterPass(CreateDeadInsertElimPass())
  194. .RegisterPass(CreateRedundancyEliminationPass())
  195. .RegisterPass(CreateCFGCleanupPass())
  196. .RegisterPass(CreateAggressiveDCEPass());
  197. }
  198. Optimizer& Optimizer::RegisterVulkanToWebGPUPasses() {
  199. return RegisterPass(CreateStripDebugInfoPass())
  200. .RegisterPass(CreateStripAtomicCounterMemoryPass())
  201. .RegisterPass(CreateGenerateWebGPUInitializersPass())
  202. .RegisterPass(CreateLegalizeVectorShufflePass())
  203. .RegisterPass(CreateSplitInvalidUnreachablePass())
  204. .RegisterPass(CreateEliminateDeadConstantPass())
  205. .RegisterPass(CreateFlattenDecorationPass())
  206. .RegisterPass(CreateAggressiveDCEPass())
  207. .RegisterPass(CreateDeadBranchElimPass())
  208. .RegisterPass(CreateCompactIdsPass());
  209. }
  210. Optimizer& Optimizer::RegisterWebGPUToVulkanPasses() {
  211. return RegisterPass(CreateDecomposeInitializedVariablesPass())
  212. .RegisterPass(CreateCompactIdsPass());
  213. }
  214. bool Optimizer::RegisterPassesFromFlags(const std::vector<std::string>& flags) {
  215. for (const auto& flag : flags) {
  216. if (!RegisterPassFromFlag(flag)) {
  217. return false;
  218. }
  219. }
  220. return true;
  221. }
  222. bool Optimizer::FlagHasValidForm(const std::string& flag) const {
  223. if (flag == "-O" || flag == "-Os") {
  224. return true;
  225. } else if (flag.size() > 2 && flag.substr(0, 2) == "--") {
  226. return true;
  227. }
  228. Errorf(consumer(), nullptr, {},
  229. "%s is not a valid flag. Flag passes should have the form "
  230. "'--pass_name[=pass_args]'. Special flag names also accepted: -O "
  231. "and -Os.",
  232. flag.c_str());
  233. return false;
  234. }
  235. bool Optimizer::RegisterPassFromFlag(const std::string& flag) {
  236. if (!FlagHasValidForm(flag)) {
  237. return false;
  238. }
  239. // Split flags of the form --pass_name=pass_args.
  240. auto p = utils::SplitFlagArgs(flag);
  241. std::string pass_name = p.first;
  242. std::string pass_args = p.second;
  243. // FIXME(dnovillo): This should be re-factored so that pass names can be
  244. // automatically checked against Pass::name() and PassToken instances created
  245. // via a template function. Additionally, class Pass should have a desc()
  246. // method that describes the pass (so it can be used in --help).
  247. //
  248. // Both Pass::name() and Pass::desc() should be static class members so they
  249. // can be invoked without creating a pass instance.
  250. if (pass_name == "strip-atomic-counter-memory") {
  251. RegisterPass(CreateStripAtomicCounterMemoryPass());
  252. } else if (pass_name == "strip-debug") {
  253. RegisterPass(CreateStripDebugInfoPass());
  254. } else if (pass_name == "strip-reflect") {
  255. RegisterPass(CreateStripReflectInfoPass());
  256. } else if (pass_name == "set-spec-const-default-value") {
  257. if (pass_args.size() > 0) {
  258. auto spec_ids_vals =
  259. opt::SetSpecConstantDefaultValuePass::ParseDefaultValuesString(
  260. pass_args.c_str());
  261. if (!spec_ids_vals) {
  262. Errorf(consumer(), nullptr, {},
  263. "Invalid argument for --set-spec-const-default-value: %s",
  264. pass_args.c_str());
  265. return false;
  266. }
  267. RegisterPass(
  268. CreateSetSpecConstantDefaultValuePass(std::move(*spec_ids_vals)));
  269. } else {
  270. Errorf(consumer(), nullptr, {},
  271. "Invalid spec constant value string '%s'. Expected a string of "
  272. "<spec id>:<default value> pairs.",
  273. pass_args.c_str());
  274. return false;
  275. }
  276. } else if (pass_name == "if-conversion") {
  277. RegisterPass(CreateIfConversionPass());
  278. } else if (pass_name == "freeze-spec-const") {
  279. RegisterPass(CreateFreezeSpecConstantValuePass());
  280. } else if (pass_name == "inline-entry-points-exhaustive") {
  281. RegisterPass(CreateInlineExhaustivePass());
  282. } else if (pass_name == "inline-entry-points-opaque") {
  283. RegisterPass(CreateInlineOpaquePass());
  284. } else if (pass_name == "combine-access-chains") {
  285. RegisterPass(CreateCombineAccessChainsPass());
  286. } else if (pass_name == "convert-local-access-chains") {
  287. RegisterPass(CreateLocalAccessChainConvertPass());
  288. } else if (pass_name == "descriptor-scalar-replacement") {
  289. RegisterPass(CreateDescriptorScalarReplacementPass());
  290. } else if (pass_name == "eliminate-dead-code-aggressive") {
  291. RegisterPass(CreateAggressiveDCEPass());
  292. } else if (pass_name == "propagate-line-info") {
  293. RegisterPass(CreatePropagateLineInfoPass());
  294. } else if (pass_name == "eliminate-redundant-line-info") {
  295. RegisterPass(CreateRedundantLineInfoElimPass());
  296. } else if (pass_name == "eliminate-insert-extract") {
  297. RegisterPass(CreateInsertExtractElimPass());
  298. } else if (pass_name == "eliminate-local-single-block") {
  299. RegisterPass(CreateLocalSingleBlockLoadStoreElimPass());
  300. } else if (pass_name == "eliminate-local-single-store") {
  301. RegisterPass(CreateLocalSingleStoreElimPass());
  302. } else if (pass_name == "merge-blocks") {
  303. RegisterPass(CreateBlockMergePass());
  304. } else if (pass_name == "merge-return") {
  305. RegisterPass(CreateMergeReturnPass());
  306. } else if (pass_name == "eliminate-dead-branches") {
  307. RegisterPass(CreateDeadBranchElimPass());
  308. } else if (pass_name == "eliminate-dead-functions") {
  309. RegisterPass(CreateEliminateDeadFunctionsPass());
  310. } else if (pass_name == "eliminate-local-multi-store") {
  311. RegisterPass(CreateLocalMultiStoreElimPass());
  312. } else if (pass_name == "eliminate-dead-const") {
  313. RegisterPass(CreateEliminateDeadConstantPass());
  314. } else if (pass_name == "eliminate-dead-inserts") {
  315. RegisterPass(CreateDeadInsertElimPass());
  316. } else if (pass_name == "eliminate-dead-variables") {
  317. RegisterPass(CreateDeadVariableEliminationPass());
  318. } else if (pass_name == "eliminate-dead-members") {
  319. RegisterPass(CreateEliminateDeadMembersPass());
  320. } else if (pass_name == "fold-spec-const-op-composite") {
  321. RegisterPass(CreateFoldSpecConstantOpAndCompositePass());
  322. } else if (pass_name == "loop-unswitch") {
  323. RegisterPass(CreateLoopUnswitchPass());
  324. } else if (pass_name == "scalar-replacement") {
  325. if (pass_args.size() == 0) {
  326. RegisterPass(CreateScalarReplacementPass());
  327. } else {
  328. int limit = -1;
  329. if (pass_args.find_first_not_of("0123456789") == std::string::npos) {
  330. limit = atoi(pass_args.c_str());
  331. }
  332. if (limit >= 0) {
  333. RegisterPass(CreateScalarReplacementPass(limit));
  334. } else {
  335. Error(consumer(), nullptr, {},
  336. "--scalar-replacement must have no arguments or a non-negative "
  337. "integer argument");
  338. return false;
  339. }
  340. }
  341. } else if (pass_name == "strength-reduction") {
  342. RegisterPass(CreateStrengthReductionPass());
  343. } else if (pass_name == "unify-const") {
  344. RegisterPass(CreateUnifyConstantPass());
  345. } else if (pass_name == "flatten-decorations") {
  346. RegisterPass(CreateFlattenDecorationPass());
  347. } else if (pass_name == "compact-ids") {
  348. RegisterPass(CreateCompactIdsPass());
  349. } else if (pass_name == "cfg-cleanup") {
  350. RegisterPass(CreateCFGCleanupPass());
  351. } else if (pass_name == "local-redundancy-elimination") {
  352. RegisterPass(CreateLocalRedundancyEliminationPass());
  353. } else if (pass_name == "loop-invariant-code-motion") {
  354. RegisterPass(CreateLoopInvariantCodeMotionPass());
  355. } else if (pass_name == "reduce-load-size") {
  356. RegisterPass(CreateReduceLoadSizePass());
  357. } else if (pass_name == "redundancy-elimination") {
  358. RegisterPass(CreateRedundancyEliminationPass());
  359. } else if (pass_name == "private-to-local") {
  360. RegisterPass(CreatePrivateToLocalPass());
  361. } else if (pass_name == "remove-duplicates") {
  362. RegisterPass(CreateRemoveDuplicatesPass());
  363. } else if (pass_name == "workaround-1209") {
  364. RegisterPass(CreateWorkaround1209Pass());
  365. } else if (pass_name == "replace-invalid-opcode") {
  366. RegisterPass(CreateReplaceInvalidOpcodePass());
  367. } else if (pass_name == "inst-bindless-check") {
  368. RegisterPass(CreateInstBindlessCheckPass(7, 23, true, true, 2));
  369. RegisterPass(CreateSimplificationPass());
  370. RegisterPass(CreateDeadBranchElimPass());
  371. RegisterPass(CreateBlockMergePass());
  372. RegisterPass(CreateAggressiveDCEPass());
  373. } else if (pass_name == "simplify-instructions") {
  374. RegisterPass(CreateSimplificationPass());
  375. } else if (pass_name == "ssa-rewrite") {
  376. RegisterPass(CreateSSARewritePass());
  377. } else if (pass_name == "copy-propagate-arrays") {
  378. RegisterPass(CreateCopyPropagateArraysPass());
  379. } else if (pass_name == "loop-fission") {
  380. int register_threshold_to_split =
  381. (pass_args.size() > 0) ? atoi(pass_args.c_str()) : -1;
  382. if (register_threshold_to_split > 0) {
  383. RegisterPass(CreateLoopFissionPass(
  384. static_cast<size_t>(register_threshold_to_split)));
  385. } else {
  386. Error(consumer(), nullptr, {},
  387. "--loop-fission must have a positive integer argument");
  388. return false;
  389. }
  390. } else if (pass_name == "loop-fusion") {
  391. int max_registers_per_loop =
  392. (pass_args.size() > 0) ? atoi(pass_args.c_str()) : -1;
  393. if (max_registers_per_loop > 0) {
  394. RegisterPass(
  395. CreateLoopFusionPass(static_cast<size_t>(max_registers_per_loop)));
  396. } else {
  397. Error(consumer(), nullptr, {},
  398. "--loop-fusion must have a positive integer argument");
  399. return false;
  400. }
  401. } else if (pass_name == "loop-unroll") {
  402. RegisterPass(CreateLoopUnrollPass(true));
  403. } else if (pass_name == "upgrade-memory-model") {
  404. RegisterPass(CreateUpgradeMemoryModelPass());
  405. } else if (pass_name == "vector-dce") {
  406. RegisterPass(CreateVectorDCEPass());
  407. } else if (pass_name == "loop-unroll-partial") {
  408. int factor = (pass_args.size() > 0) ? atoi(pass_args.c_str()) : 0;
  409. if (factor > 0) {
  410. RegisterPass(CreateLoopUnrollPass(false, factor));
  411. } else {
  412. Error(consumer(), nullptr, {},
  413. "--loop-unroll-partial must have a positive integer argument");
  414. return false;
  415. }
  416. } else if (pass_name == "loop-peeling") {
  417. RegisterPass(CreateLoopPeelingPass());
  418. } else if (pass_name == "loop-peeling-threshold") {
  419. int factor = (pass_args.size() > 0) ? atoi(pass_args.c_str()) : 0;
  420. if (factor > 0) {
  421. opt::LoopPeelingPass::SetLoopPeelingThreshold(factor);
  422. } else {
  423. Error(consumer(), nullptr, {},
  424. "--loop-peeling-threshold must have a positive integer argument");
  425. return false;
  426. }
  427. } else if (pass_name == "ccp") {
  428. RegisterPass(CreateCCPPass());
  429. } else if (pass_name == "code-sink") {
  430. RegisterPass(CreateCodeSinkingPass());
  431. } else if (pass_name == "fix-storage-class") {
  432. RegisterPass(CreateFixStorageClassPass());
  433. } else if (pass_name == "O") {
  434. RegisterPerformancePasses();
  435. } else if (pass_name == "Os") {
  436. RegisterSizePasses();
  437. } else if (pass_name == "legalize-hlsl") {
  438. RegisterLegalizationPasses();
  439. } else if (pass_name == "generate-webgpu-initializers") {
  440. RegisterPass(CreateGenerateWebGPUInitializersPass());
  441. } else if (pass_name == "legalize-vector-shuffle") {
  442. RegisterPass(CreateLegalizeVectorShufflePass());
  443. } else if (pass_name == "split-invalid-unreachable") {
  444. RegisterPass(CreateLegalizeVectorShufflePass());
  445. } else if (pass_name == "decompose-initialized-variables") {
  446. RegisterPass(CreateDecomposeInitializedVariablesPass());
  447. } else if (pass_name == "graphics-robust-access") {
  448. RegisterPass(CreateGraphicsRobustAccessPass());
  449. } else {
  450. Errorf(consumer(), nullptr, {},
  451. "Unknown flag '--%s'. Use --help for a list of valid flags",
  452. pass_name.c_str());
  453. return false;
  454. }
  455. return true;
  456. }
  457. void Optimizer::SetTargetEnv(const spv_target_env env) {
  458. impl_->target_env = env;
  459. }
  460. bool Optimizer::Run(const uint32_t* original_binary,
  461. const size_t original_binary_size,
  462. std::vector<uint32_t>* optimized_binary) const {
  463. return Run(original_binary, original_binary_size, optimized_binary,
  464. OptimizerOptions());
  465. }
  466. bool Optimizer::Run(const uint32_t* original_binary,
  467. const size_t original_binary_size,
  468. std::vector<uint32_t>* optimized_binary,
  469. const ValidatorOptions& validator_options,
  470. bool skip_validation) const {
  471. OptimizerOptions opt_options;
  472. opt_options.set_run_validator(!skip_validation);
  473. opt_options.set_validator_options(validator_options);
  474. return Run(original_binary, original_binary_size, optimized_binary,
  475. opt_options);
  476. }
  477. bool Optimizer::Run(const uint32_t* original_binary,
  478. const size_t original_binary_size,
  479. std::vector<uint32_t>* optimized_binary,
  480. const spv_optimizer_options opt_options) const {
  481. spvtools::SpirvTools tools(impl_->target_env);
  482. tools.SetMessageConsumer(impl_->pass_manager.consumer());
  483. if (opt_options->run_validator_ &&
  484. !tools.Validate(original_binary, original_binary_size,
  485. &opt_options->val_options_)) {
  486. return false;
  487. }
  488. std::unique_ptr<opt::IRContext> context = BuildModule(
  489. impl_->target_env, consumer(), original_binary, original_binary_size);
  490. if (context == nullptr) return false;
  491. context->set_max_id_bound(opt_options->max_id_bound_);
  492. context->set_preserve_bindings(opt_options->preserve_bindings_);
  493. context->set_preserve_spec_constants(opt_options->preserve_spec_constants_);
  494. impl_->pass_manager.SetValidatorOptions(&opt_options->val_options_);
  495. impl_->pass_manager.SetTargetEnv(impl_->target_env);
  496. auto status = impl_->pass_manager.Run(context.get());
  497. bool binary_changed = false;
  498. if (status == opt::Pass::Status::SuccessWithChange) {
  499. binary_changed = true;
  500. } else if (status == opt::Pass::Status::SuccessWithoutChange) {
  501. if (optimized_binary->size() != original_binary_size ||
  502. (memcmp(optimized_binary->data(), original_binary,
  503. original_binary_size) != 0)) {
  504. binary_changed = true;
  505. Log(consumer(), SPV_MSG_WARNING, nullptr, {},
  506. "Binary unexpectedly changed despite optimizer saying there was no "
  507. "change");
  508. }
  509. }
  510. if (binary_changed) {
  511. optimized_binary->clear();
  512. context->module()->ToBinary(optimized_binary, /* skip_nop = */ true);
  513. }
  514. return status != opt::Pass::Status::Failure;
  515. }
  516. Optimizer& Optimizer::SetPrintAll(std::ostream* out) {
  517. impl_->pass_manager.SetPrintAll(out);
  518. return *this;
  519. }
  520. Optimizer& Optimizer::SetTimeReport(std::ostream* out) {
  521. impl_->pass_manager.SetTimeReport(out);
  522. return *this;
  523. }
  524. Optimizer& Optimizer::SetValidateAfterAll(bool validate) {
  525. impl_->pass_manager.SetValidateAfterAll(validate);
  526. return *this;
  527. }
  528. Optimizer::PassToken CreateNullPass() {
  529. return MakeUnique<Optimizer::PassToken::Impl>(MakeUnique<opt::NullPass>());
  530. }
  531. Optimizer::PassToken CreateStripAtomicCounterMemoryPass() {
  532. return MakeUnique<Optimizer::PassToken::Impl>(
  533. MakeUnique<opt::StripAtomicCounterMemoryPass>());
  534. }
  535. Optimizer::PassToken CreateStripDebugInfoPass() {
  536. return MakeUnique<Optimizer::PassToken::Impl>(
  537. MakeUnique<opt::StripDebugInfoPass>());
  538. }
  539. Optimizer::PassToken CreateStripReflectInfoPass() {
  540. return MakeUnique<Optimizer::PassToken::Impl>(
  541. MakeUnique<opt::StripReflectInfoPass>());
  542. }
  543. Optimizer::PassToken CreateEliminateDeadFunctionsPass() {
  544. return MakeUnique<Optimizer::PassToken::Impl>(
  545. MakeUnique<opt::EliminateDeadFunctionsPass>());
  546. }
  547. Optimizer::PassToken CreateEliminateDeadMembersPass() {
  548. return MakeUnique<Optimizer::PassToken::Impl>(
  549. MakeUnique<opt::EliminateDeadMembersPass>());
  550. }
  551. Optimizer::PassToken CreateSetSpecConstantDefaultValuePass(
  552. const std::unordered_map<uint32_t, std::string>& id_value_map) {
  553. return MakeUnique<Optimizer::PassToken::Impl>(
  554. MakeUnique<opt::SetSpecConstantDefaultValuePass>(id_value_map));
  555. }
  556. Optimizer::PassToken CreateSetSpecConstantDefaultValuePass(
  557. const std::unordered_map<uint32_t, std::vector<uint32_t>>& id_value_map) {
  558. return MakeUnique<Optimizer::PassToken::Impl>(
  559. MakeUnique<opt::SetSpecConstantDefaultValuePass>(id_value_map));
  560. }
  561. Optimizer::PassToken CreateFlattenDecorationPass() {
  562. return MakeUnique<Optimizer::PassToken::Impl>(
  563. MakeUnique<opt::FlattenDecorationPass>());
  564. }
  565. Optimizer::PassToken CreateFreezeSpecConstantValuePass() {
  566. return MakeUnique<Optimizer::PassToken::Impl>(
  567. MakeUnique<opt::FreezeSpecConstantValuePass>());
  568. }
  569. Optimizer::PassToken CreateFoldSpecConstantOpAndCompositePass() {
  570. return MakeUnique<Optimizer::PassToken::Impl>(
  571. MakeUnique<opt::FoldSpecConstantOpAndCompositePass>());
  572. }
  573. Optimizer::PassToken CreateUnifyConstantPass() {
  574. return MakeUnique<Optimizer::PassToken::Impl>(
  575. MakeUnique<opt::UnifyConstantPass>());
  576. }
  577. Optimizer::PassToken CreateEliminateDeadConstantPass() {
  578. return MakeUnique<Optimizer::PassToken::Impl>(
  579. MakeUnique<opt::EliminateDeadConstantPass>());
  580. }
  581. Optimizer::PassToken CreateDeadVariableEliminationPass() {
  582. return MakeUnique<Optimizer::PassToken::Impl>(
  583. MakeUnique<opt::DeadVariableElimination>());
  584. }
  585. Optimizer::PassToken CreateStrengthReductionPass() {
  586. return MakeUnique<Optimizer::PassToken::Impl>(
  587. MakeUnique<opt::StrengthReductionPass>());
  588. }
  589. Optimizer::PassToken CreateBlockMergePass() {
  590. return MakeUnique<Optimizer::PassToken::Impl>(
  591. MakeUnique<opt::BlockMergePass>());
  592. }
  593. Optimizer::PassToken CreateInlineExhaustivePass() {
  594. return MakeUnique<Optimizer::PassToken::Impl>(
  595. MakeUnique<opt::InlineExhaustivePass>());
  596. }
  597. Optimizer::PassToken CreateInlineOpaquePass() {
  598. return MakeUnique<Optimizer::PassToken::Impl>(
  599. MakeUnique<opt::InlineOpaquePass>());
  600. }
  601. Optimizer::PassToken CreateLocalAccessChainConvertPass() {
  602. return MakeUnique<Optimizer::PassToken::Impl>(
  603. MakeUnique<opt::LocalAccessChainConvertPass>());
  604. }
  605. Optimizer::PassToken CreateLocalSingleBlockLoadStoreElimPass() {
  606. return MakeUnique<Optimizer::PassToken::Impl>(
  607. MakeUnique<opt::LocalSingleBlockLoadStoreElimPass>());
  608. }
  609. Optimizer::PassToken CreateLocalSingleStoreElimPass() {
  610. return MakeUnique<Optimizer::PassToken::Impl>(
  611. MakeUnique<opt::LocalSingleStoreElimPass>());
  612. }
  613. Optimizer::PassToken CreateInsertExtractElimPass() {
  614. return MakeUnique<Optimizer::PassToken::Impl>(
  615. MakeUnique<opt::SimplificationPass>());
  616. }
  617. Optimizer::PassToken CreateDeadInsertElimPass() {
  618. return MakeUnique<Optimizer::PassToken::Impl>(
  619. MakeUnique<opt::DeadInsertElimPass>());
  620. }
  621. Optimizer::PassToken CreateDeadBranchElimPass() {
  622. return MakeUnique<Optimizer::PassToken::Impl>(
  623. MakeUnique<opt::DeadBranchElimPass>());
  624. }
  625. Optimizer::PassToken CreateLocalMultiStoreElimPass() {
  626. return MakeUnique<Optimizer::PassToken::Impl>(
  627. MakeUnique<opt::LocalMultiStoreElimPass>());
  628. }
  629. Optimizer::PassToken CreateAggressiveDCEPass() {
  630. return MakeUnique<Optimizer::PassToken::Impl>(
  631. MakeUnique<opt::AggressiveDCEPass>());
  632. }
  633. Optimizer::PassToken CreatePropagateLineInfoPass() {
  634. return MakeUnique<Optimizer::PassToken::Impl>(
  635. MakeUnique<opt::ProcessLinesPass>(opt::kLinesPropagateLines));
  636. }
  637. Optimizer::PassToken CreateRedundantLineInfoElimPass() {
  638. return MakeUnique<Optimizer::PassToken::Impl>(
  639. MakeUnique<opt::ProcessLinesPass>(opt::kLinesEliminateDeadLines));
  640. }
  641. Optimizer::PassToken CreateCompactIdsPass() {
  642. return MakeUnique<Optimizer::PassToken::Impl>(
  643. MakeUnique<opt::CompactIdsPass>());
  644. }
  645. Optimizer::PassToken CreateMergeReturnPass() {
  646. return MakeUnique<Optimizer::PassToken::Impl>(
  647. MakeUnique<opt::MergeReturnPass>());
  648. }
  649. std::vector<const char*> Optimizer::GetPassNames() const {
  650. std::vector<const char*> v;
  651. for (uint32_t i = 0; i < impl_->pass_manager.NumPasses(); i++) {
  652. v.push_back(impl_->pass_manager.GetPass(i)->name());
  653. }
  654. return v;
  655. }
  656. Optimizer::PassToken CreateCFGCleanupPass() {
  657. return MakeUnique<Optimizer::PassToken::Impl>(
  658. MakeUnique<opt::CFGCleanupPass>());
  659. }
  660. Optimizer::PassToken CreateLocalRedundancyEliminationPass() {
  661. return MakeUnique<Optimizer::PassToken::Impl>(
  662. MakeUnique<opt::LocalRedundancyEliminationPass>());
  663. }
  664. Optimizer::PassToken CreateLoopFissionPass(size_t threshold) {
  665. return MakeUnique<Optimizer::PassToken::Impl>(
  666. MakeUnique<opt::LoopFissionPass>(threshold));
  667. }
  668. Optimizer::PassToken CreateLoopFusionPass(size_t max_registers_per_loop) {
  669. return MakeUnique<Optimizer::PassToken::Impl>(
  670. MakeUnique<opt::LoopFusionPass>(max_registers_per_loop));
  671. }
  672. Optimizer::PassToken CreateLoopInvariantCodeMotionPass() {
  673. return MakeUnique<Optimizer::PassToken::Impl>(MakeUnique<opt::LICMPass>());
  674. }
  675. Optimizer::PassToken CreateLoopPeelingPass() {
  676. return MakeUnique<Optimizer::PassToken::Impl>(
  677. MakeUnique<opt::LoopPeelingPass>());
  678. }
  679. Optimizer::PassToken CreateLoopUnswitchPass() {
  680. return MakeUnique<Optimizer::PassToken::Impl>(
  681. MakeUnique<opt::LoopUnswitchPass>());
  682. }
  683. Optimizer::PassToken CreateRedundancyEliminationPass() {
  684. return MakeUnique<Optimizer::PassToken::Impl>(
  685. MakeUnique<opt::RedundancyEliminationPass>());
  686. }
  687. Optimizer::PassToken CreateRemoveDuplicatesPass() {
  688. return MakeUnique<Optimizer::PassToken::Impl>(
  689. MakeUnique<opt::RemoveDuplicatesPass>());
  690. }
  691. Optimizer::PassToken CreateScalarReplacementPass(uint32_t size_limit) {
  692. return MakeUnique<Optimizer::PassToken::Impl>(
  693. MakeUnique<opt::ScalarReplacementPass>(size_limit));
  694. }
  695. Optimizer::PassToken CreatePrivateToLocalPass() {
  696. return MakeUnique<Optimizer::PassToken::Impl>(
  697. MakeUnique<opt::PrivateToLocalPass>());
  698. }
  699. Optimizer::PassToken CreateCCPPass() {
  700. return MakeUnique<Optimizer::PassToken::Impl>(MakeUnique<opt::CCPPass>());
  701. }
  702. Optimizer::PassToken CreateWorkaround1209Pass() {
  703. return MakeUnique<Optimizer::PassToken::Impl>(
  704. MakeUnique<opt::Workaround1209>());
  705. }
  706. Optimizer::PassToken CreateIfConversionPass() {
  707. return MakeUnique<Optimizer::PassToken::Impl>(
  708. MakeUnique<opt::IfConversion>());
  709. }
  710. Optimizer::PassToken CreateReplaceInvalidOpcodePass() {
  711. return MakeUnique<Optimizer::PassToken::Impl>(
  712. MakeUnique<opt::ReplaceInvalidOpcodePass>());
  713. }
  714. Optimizer::PassToken CreateSimplificationPass() {
  715. return MakeUnique<Optimizer::PassToken::Impl>(
  716. MakeUnique<opt::SimplificationPass>());
  717. }
  718. Optimizer::PassToken CreateLoopUnrollPass(bool fully_unroll, int factor) {
  719. return MakeUnique<Optimizer::PassToken::Impl>(
  720. MakeUnique<opt::LoopUnroller>(fully_unroll, factor));
  721. }
  722. Optimizer::PassToken CreateSSARewritePass() {
  723. return MakeUnique<Optimizer::PassToken::Impl>(
  724. MakeUnique<opt::SSARewritePass>());
  725. }
  726. Optimizer::PassToken CreateCopyPropagateArraysPass() {
  727. return MakeUnique<Optimizer::PassToken::Impl>(
  728. MakeUnique<opt::CopyPropagateArrays>());
  729. }
  730. Optimizer::PassToken CreateVectorDCEPass() {
  731. return MakeUnique<Optimizer::PassToken::Impl>(MakeUnique<opt::VectorDCE>());
  732. }
  733. Optimizer::PassToken CreateReduceLoadSizePass() {
  734. return MakeUnique<Optimizer::PassToken::Impl>(
  735. MakeUnique<opt::ReduceLoadSize>());
  736. }
  737. Optimizer::PassToken CreateCombineAccessChainsPass() {
  738. return MakeUnique<Optimizer::PassToken::Impl>(
  739. MakeUnique<opt::CombineAccessChains>());
  740. }
  741. Optimizer::PassToken CreateUpgradeMemoryModelPass() {
  742. return MakeUnique<Optimizer::PassToken::Impl>(
  743. MakeUnique<opt::UpgradeMemoryModel>());
  744. }
  745. Optimizer::PassToken CreateInstBindlessCheckPass(uint32_t desc_set,
  746. uint32_t shader_id,
  747. bool input_length_enable,
  748. bool input_init_enable,
  749. uint32_t version) {
  750. return MakeUnique<Optimizer::PassToken::Impl>(
  751. MakeUnique<opt::InstBindlessCheckPass>(desc_set, shader_id,
  752. input_length_enable,
  753. input_init_enable, version));
  754. }
  755. Optimizer::PassToken CreateCodeSinkingPass() {
  756. return MakeUnique<Optimizer::PassToken::Impl>(
  757. MakeUnique<opt::CodeSinkingPass>());
  758. }
  759. Optimizer::PassToken CreateGenerateWebGPUInitializersPass() {
  760. return MakeUnique<Optimizer::PassToken::Impl>(
  761. MakeUnique<opt::GenerateWebGPUInitializersPass>());
  762. }
  763. Optimizer::PassToken CreateFixStorageClassPass() {
  764. return MakeUnique<Optimizer::PassToken::Impl>(
  765. MakeUnique<opt::FixStorageClass>());
  766. }
  767. Optimizer::PassToken CreateLegalizeVectorShufflePass() {
  768. return MakeUnique<Optimizer::PassToken::Impl>(
  769. MakeUnique<opt::LegalizeVectorShufflePass>());
  770. }
  771. Optimizer::PassToken CreateDecomposeInitializedVariablesPass() {
  772. return MakeUnique<Optimizer::PassToken::Impl>(
  773. MakeUnique<opt::DecomposeInitializedVariablesPass>());
  774. }
  775. Optimizer::PassToken CreateSplitInvalidUnreachablePass() {
  776. return MakeUnique<Optimizer::PassToken::Impl>(
  777. MakeUnique<opt::SplitInvalidUnreachablePass>());
  778. }
  779. Optimizer::PassToken CreateGraphicsRobustAccessPass() {
  780. return MakeUnique<Optimizer::PassToken::Impl>(
  781. MakeUnique<opt::GraphicsRobustAccessPass>());
  782. }
  783. Optimizer::PassToken CreateDescriptorScalarReplacementPass() {
  784. return MakeUnique<Optimizer::PassToken::Impl>(
  785. MakeUnique<opt::DescriptorScalarReplacement>());
  786. }
  787. } // namespace spvtools