1 /* 2 * Copyright (C) 2014 The Android Open Source Project 3 * 4 * Licensed under the Apache License, Version 2.0 (the "License"); 5 * you may not use this file except in compliance with the License. 6 * You may obtain a copy of the License at 7 * 8 * http://www.apache.org/licenses/LICENSE-2.0 9 * 10 * Unless required by applicable law or agreed to in writing, software 11 * distributed under the License is distributed on an "AS IS" BASIS, 12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. 13 * See the License for the specific language governing permissions and 14 * limitations under the License. 15 */ 16 17 #ifndef ART_COMPILER_DRIVER_COMPILER_OPTIONS_H_ 18 #define ART_COMPILER_DRIVER_COMPILER_OPTIONS_H_ 19 20 #include <memory> 21 #include <ostream> 22 #include <string> 23 #include <vector> 24 25 #include "base/compiler_filter.h" 26 #include "base/globals.h" 27 #include "base/hash_set.h" 28 #include "base/macros.h" 29 #include "base/stl_util.h" 30 #include "base/utils.h" 31 #include "optimizing/register_allocator.h" 32 33 namespace art { 34 35 namespace jit { 36 class JitCompiler; 37 } // namespace jit 38 39 namespace verifier { 40 class VerifierDepsTest; 41 } // namespace verifier 42 43 namespace linker { 44 class Arm64RelativePatcherTest; 45 } // namespace linker 46 47 class DexFile; 48 enum class InstructionSet; 49 class InstructionSetFeatures; 50 class ProfileCompilationInfo; 51 class VerificationResults; 52 53 // Enum for CheckProfileMethodsCompiled. Outside CompilerOptions so it can be forward-declared. 54 enum class ProfileMethodsCheck : uint8_t { 55 kNone, 56 kLog, 57 kAbort, 58 }; 59 60 class CompilerOptions final { 61 public: 62 // Guide heuristics to determine whether to compile method if profile data not available. 63 static const size_t kDefaultHugeMethodThreshold = 10000; 64 static const size_t kDefaultLargeMethodThreshold = 600; 65 static const size_t kDefaultNumDexMethodsThreshold = 900; 66 static constexpr double kDefaultTopKProfileThreshold = 90.0; 67 static const bool kDefaultGenerateDebugInfo = false; 68 static const bool kDefaultGenerateMiniDebugInfo = true; 69 static const size_t kDefaultInlineMaxCodeUnits = 32; 70 static constexpr size_t kUnsetInlineMaxCodeUnits = -1; 71 72 enum class CompilerType : uint8_t { 73 kAotCompiler, // AOT compiler. 74 kJitCompiler, // Normal JIT compiler. 75 kSharedCodeJitCompiler, // Zygote JIT producing code in the shared region area, putting 76 // restrictions on, for example, how literals are being generated. 77 }; 78 79 enum class ImageType : uint8_t { 80 kNone, // JIT or AOT app compilation producing only an oat file but no image. 81 kBootImage, // Creating boot image. 82 kBootImageExtension, // Creating boot image extension. 83 kAppImage, // Creating app image. 84 }; 85 86 CompilerOptions(); 87 ~CompilerOptions(); 88 GetCompilerFilter()89 CompilerFilter::Filter GetCompilerFilter() const { 90 return compiler_filter_; 91 } 92 SetCompilerFilter(CompilerFilter::Filter compiler_filter)93 void SetCompilerFilter(CompilerFilter::Filter compiler_filter) { 94 compiler_filter_ = compiler_filter; 95 } 96 IsAotCompilationEnabled()97 bool IsAotCompilationEnabled() const { 98 return CompilerFilter::IsAotCompilationEnabled(compiler_filter_); 99 } 100 IsJniCompilationEnabled()101 bool IsJniCompilationEnabled() const { 102 return CompilerFilter::IsJniCompilationEnabled(compiler_filter_); 103 } 104 IsVerificationEnabled()105 bool IsVerificationEnabled() const { 106 return CompilerFilter::IsVerificationEnabled(compiler_filter_); 107 } 108 AssumeDexFilesAreVerified()109 bool AssumeDexFilesAreVerified() const { 110 return compiler_filter_ == CompilerFilter::kAssumeVerified; 111 } 112 AssumeClassesAreVerified()113 bool AssumeClassesAreVerified() const { 114 return compiler_filter_ == CompilerFilter::kAssumeVerified; 115 } 116 VerifyAtRuntime()117 bool VerifyAtRuntime() const { 118 return compiler_filter_ == CompilerFilter::kExtract; 119 } 120 IsAnyCompilationEnabled()121 bool IsAnyCompilationEnabled() const { 122 return CompilerFilter::IsAnyCompilationEnabled(compiler_filter_); 123 } 124 GetHugeMethodThreshold()125 size_t GetHugeMethodThreshold() const { 126 return huge_method_threshold_; 127 } 128 GetLargeMethodThreshold()129 size_t GetLargeMethodThreshold() const { 130 return large_method_threshold_; 131 } 132 IsHugeMethod(size_t num_dalvik_instructions)133 bool IsHugeMethod(size_t num_dalvik_instructions) const { 134 return num_dalvik_instructions > huge_method_threshold_; 135 } 136 IsLargeMethod(size_t num_dalvik_instructions)137 bool IsLargeMethod(size_t num_dalvik_instructions) const { 138 return num_dalvik_instructions > large_method_threshold_; 139 } 140 GetNumDexMethodsThreshold()141 size_t GetNumDexMethodsThreshold() const { 142 return num_dex_methods_threshold_; 143 } 144 GetInlineMaxCodeUnits()145 size_t GetInlineMaxCodeUnits() const { 146 return inline_max_code_units_; 147 } SetInlineMaxCodeUnits(size_t units)148 void SetInlineMaxCodeUnits(size_t units) { 149 inline_max_code_units_ = units; 150 } 151 GetTopKProfileThreshold()152 double GetTopKProfileThreshold() const { 153 return top_k_profile_threshold_; 154 } 155 GetDebuggable()156 bool GetDebuggable() const { 157 return debuggable_; 158 } 159 SetDebuggable(bool value)160 void SetDebuggable(bool value) { 161 debuggable_ = value; 162 } 163 GetNativeDebuggable()164 bool GetNativeDebuggable() const { 165 return GetDebuggable() && GetGenerateDebugInfo(); 166 } 167 168 // This flag controls whether the compiler collects debugging information. 169 // The other flags control how the information is written to disk. GenerateAnyDebugInfo()170 bool GenerateAnyDebugInfo() const { 171 return GetGenerateDebugInfo() || GetGenerateMiniDebugInfo(); 172 } 173 GetGenerateDebugInfo()174 bool GetGenerateDebugInfo() const { 175 return generate_debug_info_; 176 } 177 GetGenerateMiniDebugInfo()178 bool GetGenerateMiniDebugInfo() const { 179 return generate_mini_debug_info_; 180 } 181 182 // Should run-time checks be emitted in debug mode? 183 bool EmitRunTimeChecksInDebugMode() const; 184 GetGenerateBuildId()185 bool GetGenerateBuildId() const { 186 return generate_build_id_; 187 } 188 GetImplicitNullChecks()189 bool GetImplicitNullChecks() const { 190 return implicit_null_checks_; 191 } 192 GetImplicitStackOverflowChecks()193 bool GetImplicitStackOverflowChecks() const { 194 return implicit_so_checks_; 195 } 196 IsAotCompiler()197 bool IsAotCompiler() const { 198 return compiler_type_ == CompilerType::kAotCompiler; 199 } 200 IsJitCompiler()201 bool IsJitCompiler() const { 202 return compiler_type_ == CompilerType::kJitCompiler || 203 compiler_type_ == CompilerType::kSharedCodeJitCompiler; 204 } 205 IsJitCompilerForSharedCode()206 bool IsJitCompilerForSharedCode() const { 207 return compiler_type_ == CompilerType::kSharedCodeJitCompiler; 208 } 209 GetImplicitSuspendChecks()210 bool GetImplicitSuspendChecks() const { 211 return implicit_suspend_checks_; 212 } 213 IsGeneratingImage()214 bool IsGeneratingImage() const { 215 return IsBootImage() || IsBootImageExtension() || IsAppImage(); 216 } 217 218 // Are we compiling a boot image? IsBootImage()219 bool IsBootImage() const { 220 return image_type_ == ImageType::kBootImage; 221 } 222 223 // Are we compiling a boot image extension? IsBootImageExtension()224 bool IsBootImageExtension() const { 225 return image_type_ == ImageType::kBootImageExtension; 226 } 227 IsBaseline()228 bool IsBaseline() const { 229 return baseline_; 230 } 231 232 // Are we compiling an app image? IsAppImage()233 bool IsAppImage() const { 234 return image_type_ == ImageType::kAppImage; 235 } 236 IsMultiImage()237 bool IsMultiImage() const { 238 return multi_image_; 239 } 240 241 // Returns whether we are running ART tests. 242 // The compiler will use that information for checking invariants. CompileArtTest()243 bool CompileArtTest() const { 244 return compile_art_test_; 245 } 246 247 // Should the code be compiled as position independent? GetCompilePic()248 bool GetCompilePic() const { 249 return compile_pic_; 250 } 251 GetProfileCompilationInfo()252 const ProfileCompilationInfo* GetProfileCompilationInfo() const { 253 return profile_compilation_info_; 254 } 255 HasVerboseMethods()256 bool HasVerboseMethods() const { 257 return !verbose_methods_.empty(); 258 } 259 IsVerboseMethod(const std::string & pretty_method)260 bool IsVerboseMethod(const std::string& pretty_method) const { 261 for (const std::string& cur_method : verbose_methods_) { 262 if (pretty_method.find(cur_method) != std::string::npos) { 263 return true; 264 } 265 } 266 return false; 267 } 268 GetInitFailureOutput()269 std::ostream* GetInitFailureOutput() const { 270 return init_failure_output_.get(); 271 } 272 AbortOnHardVerifierFailure()273 bool AbortOnHardVerifierFailure() const { 274 return abort_on_hard_verifier_failure_; 275 } AbortOnSoftVerifierFailure()276 bool AbortOnSoftVerifierFailure() const { 277 return abort_on_soft_verifier_failure_; 278 } 279 GetInstructionSet()280 InstructionSet GetInstructionSet() const { 281 return instruction_set_; 282 } 283 GetInstructionSetFeatures()284 const InstructionSetFeatures* GetInstructionSetFeatures() const { 285 return instruction_set_features_.get(); 286 } 287 288 GetNoInlineFromDexFile()289 const std::vector<const DexFile*>& GetNoInlineFromDexFile() const { 290 return no_inline_from_; 291 } 292 GetDexFilesForOatFile()293 const std::vector<const DexFile*>& GetDexFilesForOatFile() const { 294 return dex_files_for_oat_file_; 295 } 296 GetImageClasses()297 const HashSet<std::string>& GetImageClasses() const { 298 return image_classes_; 299 } 300 301 bool IsImageClass(const char* descriptor) const; 302 303 const VerificationResults* GetVerificationResults() const; 304 305 bool ParseCompilerOptions(const std::vector<std::string>& options, 306 bool ignore_unrecognized, 307 std::string* error_msg); 308 SetNonPic()309 void SetNonPic() { 310 compile_pic_ = false; 311 } 312 GetDumpCfgFileName()313 const std::string& GetDumpCfgFileName() const { 314 return dump_cfg_file_name_; 315 } 316 GetDumpCfgAppend()317 bool GetDumpCfgAppend() const { 318 return dump_cfg_append_; 319 } 320 IsForceDeterminism()321 bool IsForceDeterminism() const { 322 return force_determinism_; 323 } 324 IsCheckLinkageConditions()325 bool IsCheckLinkageConditions() const { 326 return check_linkage_conditions_; 327 } 328 IsCrashOnLinkageViolation()329 bool IsCrashOnLinkageViolation() const { 330 return crash_on_linkage_violation_; 331 } 332 DeduplicateCode()333 bool DeduplicateCode() const { 334 return deduplicate_code_; 335 } 336 GetRegisterAllocationStrategy()337 RegisterAllocator::Strategy GetRegisterAllocationStrategy() const { 338 return register_allocation_strategy_; 339 } 340 GetPassesToRun()341 const std::vector<std::string>* GetPassesToRun() const { 342 return passes_to_run_; 343 } 344 GetDumpTimings()345 bool GetDumpTimings() const { 346 return dump_timings_; 347 } 348 GetDumpPassTimings()349 bool GetDumpPassTimings() const { 350 return dump_pass_timings_; 351 } 352 GetDumpStats()353 bool GetDumpStats() const { 354 return dump_stats_; 355 } 356 CountHotnessInCompiledCode()357 bool CountHotnessInCompiledCode() const { 358 return count_hotness_in_compiled_code_; 359 } 360 ResolveStartupConstStrings()361 bool ResolveStartupConstStrings() const { 362 return resolve_startup_const_strings_; 363 } 364 CheckProfiledMethodsCompiled()365 ProfileMethodsCheck CheckProfiledMethodsCompiled() const { 366 return check_profiled_methods_; 367 } 368 MaxImageBlockSize()369 uint32_t MaxImageBlockSize() const { 370 return max_image_block_size_; 371 } 372 SetMaxImageBlockSize(uint32_t size)373 void SetMaxImageBlockSize(uint32_t size) { 374 max_image_block_size_ = size; 375 } 376 InitializeAppImageClasses()377 bool InitializeAppImageClasses() const { 378 return initialize_app_image_classes_; 379 } 380 381 // Returns true if `dex_file` is within an oat file we're producing right now. WithinOatFile(const DexFile * dex_file)382 bool WithinOatFile(const DexFile* dex_file) const { 383 return ContainsElement(GetDexFilesForOatFile(), dex_file); 384 } 385 386 private: 387 bool ParseDumpInitFailures(const std::string& option, std::string* error_msg); 388 bool ParseRegisterAllocationStrategy(const std::string& option, std::string* error_msg); 389 390 CompilerFilter::Filter compiler_filter_; 391 size_t huge_method_threshold_; 392 size_t large_method_threshold_; 393 size_t num_dex_methods_threshold_; 394 size_t inline_max_code_units_; 395 396 InstructionSet instruction_set_; 397 std::unique_ptr<const InstructionSetFeatures> instruction_set_features_; 398 399 // Dex files from which we should not inline code. Does not own the dex files. 400 // This is usually a very short list (i.e. a single dex file), so we 401 // prefer vector<> over a lookup-oriented container, such as set<>. 402 std::vector<const DexFile*> no_inline_from_; 403 404 // List of dex files associated with the oat file, empty for JIT. 405 std::vector<const DexFile*> dex_files_for_oat_file_; 406 407 // Image classes, specifies the classes that will be included in the image if creating an image. 408 // Must not be empty for real boot image, only for tests pretending to compile boot image. 409 HashSet<std::string> image_classes_; 410 411 // Results of AOT verification. 412 const VerificationResults* verification_results_; 413 414 CompilerType compiler_type_; 415 ImageType image_type_; 416 bool multi_image_; 417 bool compile_art_test_; 418 bool baseline_; 419 bool debuggable_; 420 bool generate_debug_info_; 421 bool generate_mini_debug_info_; 422 bool generate_build_id_; 423 bool implicit_null_checks_; 424 bool implicit_so_checks_; 425 bool implicit_suspend_checks_; 426 bool compile_pic_; 427 bool dump_timings_; 428 bool dump_pass_timings_; 429 bool dump_stats_; 430 431 // When using a profile file only the top K% of the profiled samples will be compiled. 432 double top_k_profile_threshold_; 433 434 // Info for profile guided compilation. 435 const ProfileCompilationInfo* profile_compilation_info_; 436 437 // Vector of methods to have verbose output enabled for. 438 std::vector<std::string> verbose_methods_; 439 440 // Abort compilation with an error if we find a class that fails verification with a hard 441 // failure. 442 bool abort_on_hard_verifier_failure_; 443 // Same for soft failures. 444 bool abort_on_soft_verifier_failure_; 445 446 // Log initialization of initialization failures to this stream if not null. 447 std::unique_ptr<std::ostream> init_failure_output_; 448 449 std::string dump_cfg_file_name_; 450 bool dump_cfg_append_; 451 452 // Whether the compiler should trade performance for determinism to guarantee exactly reproducible 453 // outcomes. 454 bool force_determinism_; 455 456 // Whether the compiler should check for violation of the conditions required to perform AOT 457 // "linkage". 458 bool check_linkage_conditions_; 459 // Whether the compiler should crash when encountering a violation of one of 460 // the conditions required to perform AOT "linkage". 461 bool crash_on_linkage_violation_; 462 463 // Whether code should be deduplicated. 464 bool deduplicate_code_; 465 466 // Whether compiled code should increment the hotness count of ArtMethod. Note that the increments 467 // won't be atomic for performance reasons, so we accept races, just like in interpreter. 468 bool count_hotness_in_compiled_code_; 469 470 // Whether we eagerly resolve all of the const strings that are loaded from startup methods in the 471 // profile. 472 bool resolve_startup_const_strings_; 473 474 // Whether we attempt to run class initializers for app image classes. 475 bool initialize_app_image_classes_; 476 477 // When running profile-guided compilation, check that methods intended to be compiled end 478 // up compiled and are not punted. 479 ProfileMethodsCheck check_profiled_methods_; 480 481 // Maximum solid block size in the generated image. 482 uint32_t max_image_block_size_; 483 484 RegisterAllocator::Strategy register_allocation_strategy_; 485 486 // If not null, specifies optimization passes which will be run instead of defaults. 487 // Note that passes_to_run_ is not checked for correctness and providing an incorrect 488 // list of passes can lead to unexpected compiler behaviour. This is caused by dependencies 489 // between passes. Failing to satisfy them can for example lead to compiler crashes. 490 // Passing pass names which are not recognized by the compiler will result in 491 // compiler-dependant behavior. 492 const std::vector<std::string>* passes_to_run_; 493 494 friend class Dex2Oat; 495 friend class CommonCompilerDriverTest; 496 friend class CommonCompilerTestImpl; 497 friend class jit::JitCompiler; 498 friend class verifier::VerifierDepsTest; 499 friend class linker::Arm64RelativePatcherTest; 500 501 template <class Base> 502 friend bool ReadCompilerOptions(Base& map, CompilerOptions* options, std::string* error_msg); 503 504 DISALLOW_COPY_AND_ASSIGN(CompilerOptions); 505 }; 506 507 } // namespace art 508 509 #endif // ART_COMPILER_DRIVER_COMPILER_OPTIONS_H_ 510