1 //===- CompilerInvocation.cpp ---------------------------------------------===// 2 // 3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 4 // See https://llvm.org/LICENSE.txt for license information. 5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 6 // 7 //===----------------------------------------------------------------------===// 8 9 #include "clang/Frontend/CompilerInvocation.h" 10 #include "TestModuleFileExtension.h" 11 #include "clang/Basic/Builtins.h" 12 #include "clang/Basic/CharInfo.h" 13 #include "clang/Basic/CodeGenOptions.h" 14 #include "clang/Basic/CommentOptions.h" 15 #include "clang/Basic/DebugInfoOptions.h" 16 #include "clang/Basic/Diagnostic.h" 17 #include "clang/Basic/DiagnosticDriver.h" 18 #include "clang/Basic/DiagnosticOptions.h" 19 #include "clang/Basic/FileSystemOptions.h" 20 #include "clang/Basic/LLVM.h" 21 #include "clang/Basic/LangOptions.h" 22 #include "clang/Basic/LangStandard.h" 23 #include "clang/Basic/ObjCRuntime.h" 24 #include "clang/Basic/Sanitizers.h" 25 #include "clang/Basic/SourceLocation.h" 26 #include "clang/Basic/TargetOptions.h" 27 #include "clang/Basic/Version.h" 28 #include "clang/Basic/Visibility.h" 29 #include "clang/Basic/XRayInstr.h" 30 #include "clang/Config/config.h" 31 #include "clang/Driver/Driver.h" 32 #include "clang/Driver/DriverDiagnostic.h" 33 #include "clang/Driver/Options.h" 34 #include "clang/Frontend/CommandLineSourceLoc.h" 35 #include "clang/Frontend/DependencyOutputOptions.h" 36 #include "clang/Frontend/FrontendDiagnostic.h" 37 #include "clang/Frontend/FrontendOptions.h" 38 #include "clang/Frontend/FrontendPluginRegistry.h" 39 #include "clang/Frontend/MigratorOptions.h" 40 #include "clang/Frontend/PreprocessorOutputOptions.h" 41 #include "clang/Frontend/Utils.h" 42 #include "clang/Lex/HeaderSearchOptions.h" 43 #include "clang/Lex/PreprocessorOptions.h" 44 #include "clang/Sema/CodeCompleteOptions.h" 45 #include "clang/Serialization/ASTBitCodes.h" 46 #include "clang/Serialization/ModuleFileExtension.h" 47 #include "clang/StaticAnalyzer/Core/AnalyzerOptions.h" 48 #include "llvm/ADT/APInt.h" 49 #include "llvm/ADT/ArrayRef.h" 50 #include "llvm/ADT/CachedHashString.h" 51 #include "llvm/ADT/FloatingPointMode.h" 52 #include "llvm/ADT/Hashing.h" 53 #include "llvm/ADT/None.h" 54 #include "llvm/ADT/Optional.h" 55 #include "llvm/ADT/SmallString.h" 56 #include "llvm/ADT/SmallVector.h" 57 #include "llvm/ADT/StringRef.h" 58 #include "llvm/ADT/StringSwitch.h" 59 #include "llvm/ADT/Triple.h" 60 #include "llvm/ADT/Twine.h" 61 #include "llvm/Config/llvm-config.h" 62 #include "llvm/IR/DebugInfoMetadata.h" 63 #include "llvm/Linker/Linker.h" 64 #include "llvm/MC/MCTargetOptions.h" 65 #include "llvm/Option/Arg.h" 66 #include "llvm/Option/ArgList.h" 67 #include "llvm/Option/OptSpecifier.h" 68 #include "llvm/Option/OptTable.h" 69 #include "llvm/Option/Option.h" 70 #include "llvm/ProfileData/InstrProfReader.h" 71 #include "llvm/Remarks/HotnessThresholdParser.h" 72 #include "llvm/Support/CodeGen.h" 73 #include "llvm/Support/Compiler.h" 74 #include "llvm/Support/Error.h" 75 #include "llvm/Support/ErrorHandling.h" 76 #include "llvm/Support/ErrorOr.h" 77 #include "llvm/Support/FileSystem.h" 78 #include "llvm/Support/Host.h" 79 #include "llvm/Support/MathExtras.h" 80 #include "llvm/Support/MemoryBuffer.h" 81 #include "llvm/Support/Path.h" 82 #include "llvm/Support/Process.h" 83 #include "llvm/Support/Regex.h" 84 #include "llvm/Support/VersionTuple.h" 85 #include "llvm/Support/VirtualFileSystem.h" 86 #include "llvm/Support/raw_ostream.h" 87 #include "llvm/Target/TargetOptions.h" 88 #include <algorithm> 89 #include <atomic> 90 #include <cassert> 91 #include <cstddef> 92 #include <cstring> 93 #include <memory> 94 #include <string> 95 #include <tuple> 96 #include <type_traits> 97 #include <utility> 98 #include <vector> 99 100 using namespace clang; 101 using namespace driver; 102 using namespace options; 103 using namespace llvm::opt; 104 105 //===----------------------------------------------------------------------===// 106 // Initialization. 107 //===----------------------------------------------------------------------===// 108 109 CompilerInvocationBase::CompilerInvocationBase() 110 : LangOpts(new LangOptions()), TargetOpts(new TargetOptions()), 111 DiagnosticOpts(new DiagnosticOptions()), 112 HeaderSearchOpts(new HeaderSearchOptions()), 113 PreprocessorOpts(new PreprocessorOptions()) {} 114 115 CompilerInvocationBase::CompilerInvocationBase(const CompilerInvocationBase &X) 116 : LangOpts(new LangOptions(*X.getLangOpts())), 117 TargetOpts(new TargetOptions(X.getTargetOpts())), 118 DiagnosticOpts(new DiagnosticOptions(X.getDiagnosticOpts())), 119 HeaderSearchOpts(new HeaderSearchOptions(X.getHeaderSearchOpts())), 120 PreprocessorOpts(new PreprocessorOptions(X.getPreprocessorOpts())) {} 121 122 CompilerInvocationBase::~CompilerInvocationBase() = default; 123 124 //===----------------------------------------------------------------------===// 125 // Normalizers 126 //===----------------------------------------------------------------------===// 127 128 #define SIMPLE_ENUM_VALUE_TABLE 129 #include "clang/Driver/Options.inc" 130 #undef SIMPLE_ENUM_VALUE_TABLE 131 132 static llvm::Optional<bool> 133 normalizeSimpleFlag(OptSpecifier Opt, unsigned TableIndex, const ArgList &Args, 134 DiagnosticsEngine &Diags, bool &Success) { 135 if (Args.hasArg(Opt)) 136 return true; 137 return None; 138 } 139 140 static Optional<bool> normalizeSimpleNegativeFlag(OptSpecifier Opt, unsigned, 141 const ArgList &Args, 142 DiagnosticsEngine &, 143 bool &Success) { 144 if (Args.hasArg(Opt)) 145 return false; 146 return None; 147 } 148 149 /// The tblgen-erated code passes in a fifth parameter of an arbitrary type, but 150 /// denormalizeSimpleFlags never looks at it. Avoid bloating compile-time with 151 /// unnecessary template instantiations and just ignore it with a variadic 152 /// argument. 153 static void denormalizeSimpleFlag(SmallVectorImpl<const char *> &Args, 154 const char *Spelling, 155 CompilerInvocation::StringAllocator, 156 Option::OptionClass, unsigned, /*T*/...) { 157 Args.push_back(Spelling); 158 } 159 160 template <typename T> static constexpr bool is_uint64_t_convertible() { 161 return !std::is_same<T, uint64_t>::value && 162 llvm::is_integral_or_enum<T>::value; 163 } 164 165 template <typename T, 166 std::enable_if_t<!is_uint64_t_convertible<T>(), bool> = false> 167 static auto makeFlagToValueNormalizer(T Value) { 168 return [Value](OptSpecifier Opt, unsigned, const ArgList &Args, 169 DiagnosticsEngine &, bool &Success) -> Optional<T> { 170 if (Args.hasArg(Opt)) 171 return Value; 172 return None; 173 }; 174 } 175 176 template <typename T, 177 std::enable_if_t<is_uint64_t_convertible<T>(), bool> = false> 178 static auto makeFlagToValueNormalizer(T Value) { 179 return makeFlagToValueNormalizer(uint64_t(Value)); 180 } 181 182 static auto makeBooleanOptionNormalizer(bool Value, bool OtherValue, 183 OptSpecifier OtherOpt) { 184 return [Value, OtherValue, OtherOpt](OptSpecifier Opt, unsigned, 185 const ArgList &Args, DiagnosticsEngine &, 186 bool &Success) -> Optional<bool> { 187 if (const Arg *A = Args.getLastArg(Opt, OtherOpt)) { 188 return A->getOption().matches(Opt) ? Value : OtherValue; 189 } 190 return None; 191 }; 192 } 193 194 static auto makeBooleanOptionDenormalizer(bool Value) { 195 return [Value](SmallVectorImpl<const char *> &Args, const char *Spelling, 196 CompilerInvocation::StringAllocator, Option::OptionClass, 197 unsigned, bool KeyPath) { 198 if (KeyPath == Value) 199 Args.push_back(Spelling); 200 }; 201 } 202 203 static void denormalizeStringImpl(SmallVectorImpl<const char *> &Args, 204 const char *Spelling, 205 CompilerInvocation::StringAllocator SA, 206 Option::OptionClass OptClass, unsigned, 207 Twine Value) { 208 switch (OptClass) { 209 case Option::SeparateClass: 210 case Option::JoinedOrSeparateClass: 211 Args.push_back(Spelling); 212 Args.push_back(SA(Value)); 213 break; 214 case Option::JoinedClass: 215 Args.push_back(SA(Twine(Spelling) + Value)); 216 break; 217 default: 218 llvm_unreachable("Cannot denormalize an option with option class " 219 "incompatible with string denormalization."); 220 } 221 } 222 223 template <typename T> 224 static void 225 denormalizeString(SmallVectorImpl<const char *> &Args, const char *Spelling, 226 CompilerInvocation::StringAllocator SA, 227 Option::OptionClass OptClass, unsigned TableIndex, T Value) { 228 denormalizeStringImpl(Args, Spelling, SA, OptClass, TableIndex, Twine(Value)); 229 } 230 231 static Optional<SimpleEnumValue> 232 findValueTableByName(const SimpleEnumValueTable &Table, StringRef Name) { 233 for (int I = 0, E = Table.Size; I != E; ++I) 234 if (Name == Table.Table[I].Name) 235 return Table.Table[I]; 236 237 return None; 238 } 239 240 static Optional<SimpleEnumValue> 241 findValueTableByValue(const SimpleEnumValueTable &Table, unsigned Value) { 242 for (int I = 0, E = Table.Size; I != E; ++I) 243 if (Value == Table.Table[I].Value) 244 return Table.Table[I]; 245 246 return None; 247 } 248 249 static llvm::Optional<unsigned> 250 normalizeSimpleEnum(OptSpecifier Opt, unsigned TableIndex, const ArgList &Args, 251 DiagnosticsEngine &Diags, bool &Success) { 252 assert(TableIndex < SimpleEnumValueTablesSize); 253 const SimpleEnumValueTable &Table = SimpleEnumValueTables[TableIndex]; 254 255 auto *Arg = Args.getLastArg(Opt); 256 if (!Arg) 257 return None; 258 259 StringRef ArgValue = Arg->getValue(); 260 if (auto MaybeEnumVal = findValueTableByName(Table, ArgValue)) 261 return MaybeEnumVal->Value; 262 263 Success = false; 264 Diags.Report(diag::err_drv_invalid_value) 265 << Arg->getAsString(Args) << ArgValue; 266 return None; 267 } 268 269 static void denormalizeSimpleEnumImpl(SmallVectorImpl<const char *> &Args, 270 const char *Spelling, 271 CompilerInvocation::StringAllocator SA, 272 Option::OptionClass OptClass, 273 unsigned TableIndex, unsigned Value) { 274 assert(TableIndex < SimpleEnumValueTablesSize); 275 const SimpleEnumValueTable &Table = SimpleEnumValueTables[TableIndex]; 276 if (auto MaybeEnumVal = findValueTableByValue(Table, Value)) { 277 denormalizeString(Args, Spelling, SA, OptClass, TableIndex, 278 MaybeEnumVal->Name); 279 } else { 280 llvm_unreachable("The simple enum value was not correctly defined in " 281 "the tablegen option description"); 282 } 283 } 284 285 template <typename T> 286 static void denormalizeSimpleEnum(SmallVectorImpl<const char *> &Args, 287 const char *Spelling, 288 CompilerInvocation::StringAllocator SA, 289 Option::OptionClass OptClass, 290 unsigned TableIndex, T Value) { 291 return denormalizeSimpleEnumImpl(Args, Spelling, SA, OptClass, TableIndex, 292 static_cast<unsigned>(Value)); 293 } 294 295 static Optional<std::string> normalizeString(OptSpecifier Opt, int TableIndex, 296 const ArgList &Args, 297 DiagnosticsEngine &Diags, 298 bool &Success) { 299 auto *Arg = Args.getLastArg(Opt); 300 if (!Arg) 301 return None; 302 return std::string(Arg->getValue()); 303 } 304 305 template <typename IntTy> 306 static Optional<IntTy> 307 normalizeStringIntegral(OptSpecifier Opt, int, const ArgList &Args, 308 DiagnosticsEngine &Diags, bool &Success) { 309 auto *Arg = Args.getLastArg(Opt); 310 if (!Arg) 311 return None; 312 IntTy Res; 313 if (StringRef(Arg->getValue()).getAsInteger(0, Res)) { 314 Success = false; 315 Diags.Report(diag::err_drv_invalid_int_value) 316 << Arg->getAsString(Args) << Arg->getValue(); 317 return None; 318 } 319 return Res; 320 } 321 322 static Optional<std::vector<std::string>> 323 normalizeStringVector(OptSpecifier Opt, int, const ArgList &Args, 324 DiagnosticsEngine &, bool &Success) { 325 return Args.getAllArgValues(Opt); 326 } 327 328 static void denormalizeStringVector(SmallVectorImpl<const char *> &Args, 329 const char *Spelling, 330 CompilerInvocation::StringAllocator SA, 331 Option::OptionClass OptClass, 332 unsigned TableIndex, 333 const std::vector<std::string> &Values) { 334 switch (OptClass) { 335 case Option::CommaJoinedClass: { 336 std::string CommaJoinedValue; 337 if (!Values.empty()) { 338 CommaJoinedValue.append(Values.front()); 339 for (const std::string &Value : llvm::drop_begin(Values, 1)) { 340 CommaJoinedValue.append(","); 341 CommaJoinedValue.append(Value); 342 } 343 } 344 denormalizeString(Args, Spelling, SA, Option::OptionClass::JoinedClass, 345 TableIndex, CommaJoinedValue); 346 break; 347 } 348 case Option::JoinedClass: 349 case Option::SeparateClass: 350 case Option::JoinedOrSeparateClass: 351 for (const std::string &Value : Values) 352 denormalizeString(Args, Spelling, SA, OptClass, TableIndex, Value); 353 break; 354 default: 355 llvm_unreachable("Cannot denormalize an option with option class " 356 "incompatible with string vector denormalization."); 357 } 358 } 359 360 static Optional<std::string> normalizeTriple(OptSpecifier Opt, int TableIndex, 361 const ArgList &Args, 362 DiagnosticsEngine &Diags, 363 bool &Success) { 364 auto *Arg = Args.getLastArg(Opt); 365 if (!Arg) 366 return None; 367 return llvm::Triple::normalize(Arg->getValue()); 368 } 369 370 template <typename T, typename U> 371 static T mergeForwardValue(T KeyPath, U Value) { 372 return static_cast<T>(Value); 373 } 374 375 template <typename T, typename U> static T mergeMaskValue(T KeyPath, U Value) { 376 return KeyPath | Value; 377 } 378 379 template <typename T> static T extractForwardValue(T KeyPath) { 380 return KeyPath; 381 } 382 383 template <typename T, typename U, U Value> 384 static T extractMaskValue(T KeyPath) { 385 return KeyPath & Value; 386 } 387 388 static void FixupInvocation(CompilerInvocation &Invocation, 389 DiagnosticsEngine &Diags, 390 const InputArgList &Args) { 391 LangOptions &LangOpts = *Invocation.getLangOpts(); 392 CodeGenOptions &CodeGenOpts = Invocation.getCodeGenOpts(); 393 TargetOptions &TargetOpts = Invocation.getTargetOpts(); 394 FrontendOptions &FrontendOpts = Invocation.getFrontendOpts(); 395 CodeGenOpts.XRayInstrumentFunctions = LangOpts.XRayInstrument; 396 CodeGenOpts.XRayAlwaysEmitCustomEvents = LangOpts.XRayAlwaysEmitCustomEvents; 397 CodeGenOpts.XRayAlwaysEmitTypedEvents = LangOpts.XRayAlwaysEmitTypedEvents; 398 CodeGenOpts.DisableFree = FrontendOpts.DisableFree; 399 FrontendOpts.GenerateGlobalModuleIndex = FrontendOpts.UseGlobalModuleIndex; 400 401 LangOpts.ForceEmitVTables = CodeGenOpts.ForceEmitVTables; 402 LangOpts.SpeculativeLoadHardening = CodeGenOpts.SpeculativeLoadHardening; 403 LangOpts.CurrentModule = LangOpts.ModuleName; 404 405 llvm::Triple T(TargetOpts.Triple); 406 llvm::Triple::ArchType Arch = T.getArch(); 407 408 if (LangOpts.getExceptionHandling() != llvm::ExceptionHandling::None && 409 T.isWindowsMSVCEnvironment()) 410 Diags.Report(diag::err_fe_invalid_exception_model) 411 << static_cast<unsigned>(LangOpts.getExceptionHandling()) << T.str(); 412 413 if (LangOpts.AppleKext && !LangOpts.CPlusPlus) 414 Diags.Report(diag::warn_c_kext); 415 416 if (LangOpts.NewAlignOverride && 417 !llvm::isPowerOf2_32(LangOpts.NewAlignOverride)) { 418 Arg *A = Args.getLastArg(OPT_fnew_alignment_EQ); 419 Diags.Report(diag::err_fe_invalid_alignment) 420 << A->getAsString(Args) << A->getValue(); 421 LangOpts.NewAlignOverride = 0; 422 } 423 424 if (Arg *A = Args.getLastArg(OPT_fdefault_calling_conv_EQ)) { 425 auto DefaultCC = LangOpts.getDefaultCallingConv(); 426 427 bool emitError = (DefaultCC == LangOptions::DCC_FastCall || 428 DefaultCC == LangOptions::DCC_StdCall) && 429 Arch != llvm::Triple::x86; 430 emitError |= (DefaultCC == LangOptions::DCC_VectorCall || 431 DefaultCC == LangOptions::DCC_RegCall) && 432 !T.isX86(); 433 if (emitError) 434 Diags.Report(diag::err_drv_argument_not_allowed_with) 435 << A->getSpelling() << T.getTriple(); 436 } 437 438 if (!CodeGenOpts.ProfileRemappingFile.empty() && CodeGenOpts.LegacyPassManager) 439 Diags.Report(diag::err_drv_argument_only_allowed_with) 440 << Args.getLastArg(OPT_fprofile_remapping_file_EQ)->getAsString(Args) 441 << "-fno-legacy-pass-manager"; 442 } 443 444 //===----------------------------------------------------------------------===// 445 // Deserialization (from args) 446 //===----------------------------------------------------------------------===// 447 448 static unsigned getOptimizationLevel(ArgList &Args, InputKind IK, 449 DiagnosticsEngine &Diags) { 450 unsigned DefaultOpt = llvm::CodeGenOpt::None; 451 if (IK.getLanguage() == Language::OpenCL && !Args.hasArg(OPT_cl_opt_disable)) 452 DefaultOpt = llvm::CodeGenOpt::Default; 453 454 if (Arg *A = Args.getLastArg(options::OPT_O_Group)) { 455 if (A->getOption().matches(options::OPT_O0)) 456 return llvm::CodeGenOpt::None; 457 458 if (A->getOption().matches(options::OPT_Ofast)) 459 return llvm::CodeGenOpt::Aggressive; 460 461 assert(A->getOption().matches(options::OPT_O)); 462 463 StringRef S(A->getValue()); 464 if (S == "s" || S == "z") 465 return llvm::CodeGenOpt::Default; 466 467 if (S == "g") 468 return llvm::CodeGenOpt::Less; 469 470 return getLastArgIntValue(Args, OPT_O, DefaultOpt, Diags); 471 } 472 473 return DefaultOpt; 474 } 475 476 static unsigned getOptimizationLevelSize(ArgList &Args) { 477 if (Arg *A = Args.getLastArg(options::OPT_O_Group)) { 478 if (A->getOption().matches(options::OPT_O)) { 479 switch (A->getValue()[0]) { 480 default: 481 return 0; 482 case 's': 483 return 1; 484 case 'z': 485 return 2; 486 } 487 } 488 } 489 return 0; 490 } 491 492 static void addDiagnosticArgs(ArgList &Args, OptSpecifier Group, 493 OptSpecifier GroupWithValue, 494 std::vector<std::string> &Diagnostics) { 495 for (auto *A : Args.filtered(Group)) { 496 if (A->getOption().getKind() == Option::FlagClass) { 497 // The argument is a pure flag (such as OPT_Wall or OPT_Wdeprecated). Add 498 // its name (minus the "W" or "R" at the beginning) to the warning list. 499 Diagnostics.push_back( 500 std::string(A->getOption().getName().drop_front(1))); 501 } else if (A->getOption().matches(GroupWithValue)) { 502 // This is -Wfoo= or -Rfoo=, where foo is the name of the diagnostic group. 503 Diagnostics.push_back( 504 std::string(A->getOption().getName().drop_front(1).rtrim("=-"))); 505 } else { 506 // Otherwise, add its value (for OPT_W_Joined and similar). 507 for (const auto *Arg : A->getValues()) 508 Diagnostics.emplace_back(Arg); 509 } 510 } 511 } 512 513 // Parse the Static Analyzer configuration. If \p Diags is set to nullptr, 514 // it won't verify the input. 515 static void parseAnalyzerConfigs(AnalyzerOptions &AnOpts, 516 DiagnosticsEngine *Diags); 517 518 static void getAllNoBuiltinFuncValues(ArgList &Args, 519 std::vector<std::string> &Funcs) { 520 SmallVector<const char *, 8> Values; 521 for (const auto &Arg : Args) { 522 const Option &O = Arg->getOption(); 523 if (O.matches(options::OPT_fno_builtin_)) { 524 const char *FuncName = Arg->getValue(); 525 if (Builtin::Context::isBuiltinFunc(FuncName)) 526 Values.push_back(FuncName); 527 } 528 } 529 Funcs.insert(Funcs.end(), Values.begin(), Values.end()); 530 } 531 532 static bool ParseAnalyzerArgs(AnalyzerOptions &Opts, ArgList &Args, 533 DiagnosticsEngine &Diags) { 534 bool Success = true; 535 if (Arg *A = Args.getLastArg(OPT_analyzer_store)) { 536 StringRef Name = A->getValue(); 537 AnalysisStores Value = llvm::StringSwitch<AnalysisStores>(Name) 538 #define ANALYSIS_STORE(NAME, CMDFLAG, DESC, CREATFN) \ 539 .Case(CMDFLAG, NAME##Model) 540 #include "clang/StaticAnalyzer/Core/Analyses.def" 541 .Default(NumStores); 542 if (Value == NumStores) { 543 Diags.Report(diag::err_drv_invalid_value) 544 << A->getAsString(Args) << Name; 545 Success = false; 546 } else { 547 Opts.AnalysisStoreOpt = Value; 548 } 549 } 550 551 if (Arg *A = Args.getLastArg(OPT_analyzer_constraints)) { 552 StringRef Name = A->getValue(); 553 AnalysisConstraints Value = llvm::StringSwitch<AnalysisConstraints>(Name) 554 #define ANALYSIS_CONSTRAINTS(NAME, CMDFLAG, DESC, CREATFN) \ 555 .Case(CMDFLAG, NAME##Model) 556 #include "clang/StaticAnalyzer/Core/Analyses.def" 557 .Default(NumConstraints); 558 if (Value == NumConstraints) { 559 Diags.Report(diag::err_drv_invalid_value) 560 << A->getAsString(Args) << Name; 561 Success = false; 562 } else { 563 Opts.AnalysisConstraintsOpt = Value; 564 } 565 } 566 567 if (Arg *A = Args.getLastArg(OPT_analyzer_output)) { 568 StringRef Name = A->getValue(); 569 AnalysisDiagClients Value = llvm::StringSwitch<AnalysisDiagClients>(Name) 570 #define ANALYSIS_DIAGNOSTICS(NAME, CMDFLAG, DESC, CREATFN) \ 571 .Case(CMDFLAG, PD_##NAME) 572 #include "clang/StaticAnalyzer/Core/Analyses.def" 573 .Default(NUM_ANALYSIS_DIAG_CLIENTS); 574 if (Value == NUM_ANALYSIS_DIAG_CLIENTS) { 575 Diags.Report(diag::err_drv_invalid_value) 576 << A->getAsString(Args) << Name; 577 Success = false; 578 } else { 579 Opts.AnalysisDiagOpt = Value; 580 } 581 } 582 583 if (Arg *A = Args.getLastArg(OPT_analyzer_purge)) { 584 StringRef Name = A->getValue(); 585 AnalysisPurgeMode Value = llvm::StringSwitch<AnalysisPurgeMode>(Name) 586 #define ANALYSIS_PURGE(NAME, CMDFLAG, DESC) \ 587 .Case(CMDFLAG, NAME) 588 #include "clang/StaticAnalyzer/Core/Analyses.def" 589 .Default(NumPurgeModes); 590 if (Value == NumPurgeModes) { 591 Diags.Report(diag::err_drv_invalid_value) 592 << A->getAsString(Args) << Name; 593 Success = false; 594 } else { 595 Opts.AnalysisPurgeOpt = Value; 596 } 597 } 598 599 if (Arg *A = Args.getLastArg(OPT_analyzer_inlining_mode)) { 600 StringRef Name = A->getValue(); 601 AnalysisInliningMode Value = llvm::StringSwitch<AnalysisInliningMode>(Name) 602 #define ANALYSIS_INLINING_MODE(NAME, CMDFLAG, DESC) \ 603 .Case(CMDFLAG, NAME) 604 #include "clang/StaticAnalyzer/Core/Analyses.def" 605 .Default(NumInliningModes); 606 if (Value == NumInliningModes) { 607 Diags.Report(diag::err_drv_invalid_value) 608 << A->getAsString(Args) << Name; 609 Success = false; 610 } else { 611 Opts.InliningMode = Value; 612 } 613 } 614 615 Opts.ShouldEmitErrorsOnInvalidConfigValue = 616 /* negated */!llvm::StringSwitch<bool>( 617 Args.getLastArgValue(OPT_analyzer_config_compatibility_mode)) 618 .Case("true", true) 619 .Case("false", false) 620 .Default(false); 621 622 Opts.CheckersAndPackages.clear(); 623 for (const Arg *A : 624 Args.filtered(OPT_analyzer_checker, OPT_analyzer_disable_checker)) { 625 A->claim(); 626 bool IsEnabled = A->getOption().getID() == OPT_analyzer_checker; 627 // We can have a list of comma separated checker names, e.g: 628 // '-analyzer-checker=cocoa,unix' 629 StringRef CheckerAndPackageList = A->getValue(); 630 SmallVector<StringRef, 16> CheckersAndPackages; 631 CheckerAndPackageList.split(CheckersAndPackages, ","); 632 for (const StringRef &CheckerOrPackage : CheckersAndPackages) 633 Opts.CheckersAndPackages.emplace_back(std::string(CheckerOrPackage), 634 IsEnabled); 635 } 636 637 // Go through the analyzer configuration options. 638 for (const auto *A : Args.filtered(OPT_analyzer_config)) { 639 640 // We can have a list of comma separated config names, e.g: 641 // '-analyzer-config key1=val1,key2=val2' 642 StringRef configList = A->getValue(); 643 SmallVector<StringRef, 4> configVals; 644 configList.split(configVals, ","); 645 for (const auto &configVal : configVals) { 646 StringRef key, val; 647 std::tie(key, val) = configVal.split("="); 648 if (val.empty()) { 649 Diags.Report(SourceLocation(), 650 diag::err_analyzer_config_no_value) << configVal; 651 Success = false; 652 break; 653 } 654 if (val.find('=') != StringRef::npos) { 655 Diags.Report(SourceLocation(), 656 diag::err_analyzer_config_multiple_values) 657 << configVal; 658 Success = false; 659 break; 660 } 661 662 // TODO: Check checker options too, possibly in CheckerRegistry. 663 // Leave unknown non-checker configs unclaimed. 664 if (!key.contains(":") && Opts.isUnknownAnalyzerConfig(key)) { 665 if (Opts.ShouldEmitErrorsOnInvalidConfigValue) 666 Diags.Report(diag::err_analyzer_config_unknown) << key; 667 continue; 668 } 669 670 A->claim(); 671 Opts.Config[key] = std::string(val); 672 } 673 } 674 675 if (Opts.ShouldEmitErrorsOnInvalidConfigValue) 676 parseAnalyzerConfigs(Opts, &Diags); 677 else 678 parseAnalyzerConfigs(Opts, nullptr); 679 680 llvm::raw_string_ostream os(Opts.FullCompilerInvocation); 681 for (unsigned i = 0; i < Args.getNumInputArgStrings(); ++i) { 682 if (i != 0) 683 os << " "; 684 os << Args.getArgString(i); 685 } 686 os.flush(); 687 688 return Success; 689 } 690 691 static StringRef getStringOption(AnalyzerOptions::ConfigTable &Config, 692 StringRef OptionName, StringRef DefaultVal) { 693 return Config.insert({OptionName, std::string(DefaultVal)}).first->second; 694 } 695 696 static void initOption(AnalyzerOptions::ConfigTable &Config, 697 DiagnosticsEngine *Diags, 698 StringRef &OptionField, StringRef Name, 699 StringRef DefaultVal) { 700 // String options may be known to invalid (e.g. if the expected string is a 701 // file name, but the file does not exist), those will have to be checked in 702 // parseConfigs. 703 OptionField = getStringOption(Config, Name, DefaultVal); 704 } 705 706 static void initOption(AnalyzerOptions::ConfigTable &Config, 707 DiagnosticsEngine *Diags, 708 bool &OptionField, StringRef Name, bool DefaultVal) { 709 auto PossiblyInvalidVal = llvm::StringSwitch<Optional<bool>>( 710 getStringOption(Config, Name, (DefaultVal ? "true" : "false"))) 711 .Case("true", true) 712 .Case("false", false) 713 .Default(None); 714 715 if (!PossiblyInvalidVal) { 716 if (Diags) 717 Diags->Report(diag::err_analyzer_config_invalid_input) 718 << Name << "a boolean"; 719 else 720 OptionField = DefaultVal; 721 } else 722 OptionField = PossiblyInvalidVal.getValue(); 723 } 724 725 static void initOption(AnalyzerOptions::ConfigTable &Config, 726 DiagnosticsEngine *Diags, 727 unsigned &OptionField, StringRef Name, 728 unsigned DefaultVal) { 729 730 OptionField = DefaultVal; 731 bool HasFailed = getStringOption(Config, Name, std::to_string(DefaultVal)) 732 .getAsInteger(0, OptionField); 733 if (Diags && HasFailed) 734 Diags->Report(diag::err_analyzer_config_invalid_input) 735 << Name << "an unsigned"; 736 } 737 738 static void parseAnalyzerConfigs(AnalyzerOptions &AnOpts, 739 DiagnosticsEngine *Diags) { 740 // TODO: There's no need to store the entire configtable, it'd be plenty 741 // enough tostore checker options. 742 743 #define ANALYZER_OPTION(TYPE, NAME, CMDFLAG, DESC, DEFAULT_VAL) \ 744 initOption(AnOpts.Config, Diags, AnOpts.NAME, CMDFLAG, DEFAULT_VAL); 745 746 #define ANALYZER_OPTION_DEPENDS_ON_USER_MODE(TYPE, NAME, CMDFLAG, DESC, \ 747 SHALLOW_VAL, DEEP_VAL) \ 748 switch (AnOpts.getUserMode()) { \ 749 case UMK_Shallow: \ 750 initOption(AnOpts.Config, Diags, AnOpts.NAME, CMDFLAG, SHALLOW_VAL); \ 751 break; \ 752 case UMK_Deep: \ 753 initOption(AnOpts.Config, Diags, AnOpts.NAME, CMDFLAG, DEEP_VAL); \ 754 break; \ 755 } \ 756 757 #include "clang/StaticAnalyzer/Core/AnalyzerOptions.def" 758 #undef ANALYZER_OPTION 759 #undef ANALYZER_OPTION_DEPENDS_ON_USER_MODE 760 761 // At this point, AnalyzerOptions is configured. Let's validate some options. 762 763 // FIXME: Here we try to validate the silenced checkers or packages are valid. 764 // The current approach only validates the registered checkers which does not 765 // contain the runtime enabled checkers and optimally we would validate both. 766 if (!AnOpts.RawSilencedCheckersAndPackages.empty()) { 767 std::vector<StringRef> Checkers = 768 AnOpts.getRegisteredCheckers(/*IncludeExperimental=*/true); 769 std::vector<StringRef> Packages = 770 AnOpts.getRegisteredPackages(/*IncludeExperimental=*/true); 771 772 SmallVector<StringRef, 16> CheckersAndPackages; 773 AnOpts.RawSilencedCheckersAndPackages.split(CheckersAndPackages, ";"); 774 775 for (const StringRef &CheckerOrPackage : CheckersAndPackages) { 776 if (Diags) { 777 bool IsChecker = CheckerOrPackage.contains('.'); 778 bool IsValidName = 779 IsChecker 780 ? llvm::find(Checkers, CheckerOrPackage) != Checkers.end() 781 : llvm::find(Packages, CheckerOrPackage) != Packages.end(); 782 783 if (!IsValidName) 784 Diags->Report(diag::err_unknown_analyzer_checker_or_package) 785 << CheckerOrPackage; 786 } 787 788 AnOpts.SilencedCheckersAndPackages.emplace_back(CheckerOrPackage); 789 } 790 } 791 792 if (!Diags) 793 return; 794 795 if (AnOpts.ShouldTrackConditionsDebug && !AnOpts.ShouldTrackConditions) 796 Diags->Report(diag::err_analyzer_config_invalid_input) 797 << "track-conditions-debug" << "'track-conditions' to also be enabled"; 798 799 if (!AnOpts.CTUDir.empty() && !llvm::sys::fs::is_directory(AnOpts.CTUDir)) 800 Diags->Report(diag::err_analyzer_config_invalid_input) << "ctu-dir" 801 << "a filename"; 802 803 if (!AnOpts.ModelPath.empty() && 804 !llvm::sys::fs::is_directory(AnOpts.ModelPath)) 805 Diags->Report(diag::err_analyzer_config_invalid_input) << "model-path" 806 << "a filename"; 807 } 808 809 static void ParseCommentArgs(CommentOptions &Opts, ArgList &Args) { 810 Opts.ParseAllComments = Args.hasArg(OPT_fparse_all_comments); 811 } 812 813 /// Create a new Regex instance out of the string value in \p RpassArg. 814 /// It returns a pointer to the newly generated Regex instance. 815 static std::shared_ptr<llvm::Regex> 816 GenerateOptimizationRemarkRegex(DiagnosticsEngine &Diags, ArgList &Args, 817 Arg *RpassArg) { 818 StringRef Val = RpassArg->getValue(); 819 std::string RegexError; 820 std::shared_ptr<llvm::Regex> Pattern = std::make_shared<llvm::Regex>(Val); 821 if (!Pattern->isValid(RegexError)) { 822 Diags.Report(diag::err_drv_optimization_remark_pattern) 823 << RegexError << RpassArg->getAsString(Args); 824 Pattern.reset(); 825 } 826 return Pattern; 827 } 828 829 static bool parseDiagnosticLevelMask(StringRef FlagName, 830 const std::vector<std::string> &Levels, 831 DiagnosticsEngine &Diags, 832 DiagnosticLevelMask &M) { 833 bool Success = true; 834 for (const auto &Level : Levels) { 835 DiagnosticLevelMask const PM = 836 llvm::StringSwitch<DiagnosticLevelMask>(Level) 837 .Case("note", DiagnosticLevelMask::Note) 838 .Case("remark", DiagnosticLevelMask::Remark) 839 .Case("warning", DiagnosticLevelMask::Warning) 840 .Case("error", DiagnosticLevelMask::Error) 841 .Default(DiagnosticLevelMask::None); 842 if (PM == DiagnosticLevelMask::None) { 843 Success = false; 844 Diags.Report(diag::err_drv_invalid_value) << FlagName << Level; 845 } 846 M = M | PM; 847 } 848 return Success; 849 } 850 851 static void parseSanitizerKinds(StringRef FlagName, 852 const std::vector<std::string> &Sanitizers, 853 DiagnosticsEngine &Diags, SanitizerSet &S) { 854 for (const auto &Sanitizer : Sanitizers) { 855 SanitizerMask K = parseSanitizerValue(Sanitizer, /*AllowGroups=*/false); 856 if (K == SanitizerMask()) 857 Diags.Report(diag::err_drv_invalid_value) << FlagName << Sanitizer; 858 else 859 S.set(K, true); 860 } 861 } 862 863 static void parseXRayInstrumentationBundle(StringRef FlagName, StringRef Bundle, 864 ArgList &Args, DiagnosticsEngine &D, 865 XRayInstrSet &S) { 866 llvm::SmallVector<StringRef, 2> BundleParts; 867 llvm::SplitString(Bundle, BundleParts, ","); 868 for (const auto &B : BundleParts) { 869 auto Mask = parseXRayInstrValue(B); 870 if (Mask == XRayInstrKind::None) 871 if (B != "none") 872 D.Report(diag::err_drv_invalid_value) << FlagName << Bundle; 873 else 874 S.Mask = Mask; 875 else if (Mask == XRayInstrKind::All) 876 S.Mask = Mask; 877 else 878 S.set(Mask, true); 879 } 880 } 881 882 // Set the profile kind using fprofile-instrument-use-path. 883 static void setPGOUseInstrumentor(CodeGenOptions &Opts, 884 const Twine &ProfileName) { 885 auto ReaderOrErr = llvm::IndexedInstrProfReader::create(ProfileName); 886 // In error, return silently and let Clang PGOUse report the error message. 887 if (auto E = ReaderOrErr.takeError()) { 888 llvm::consumeError(std::move(E)); 889 Opts.setProfileUse(CodeGenOptions::ProfileClangInstr); 890 return; 891 } 892 std::unique_ptr<llvm::IndexedInstrProfReader> PGOReader = 893 std::move(ReaderOrErr.get()); 894 if (PGOReader->isIRLevelProfile()) { 895 if (PGOReader->hasCSIRLevelProfile()) 896 Opts.setProfileUse(CodeGenOptions::ProfileCSIRInstr); 897 else 898 Opts.setProfileUse(CodeGenOptions::ProfileIRInstr); 899 } else 900 Opts.setProfileUse(CodeGenOptions::ProfileClangInstr); 901 } 902 903 static bool ParseCodeGenArgs(CodeGenOptions &Opts, ArgList &Args, InputKind IK, 904 DiagnosticsEngine &Diags, 905 const TargetOptions &TargetOpts, 906 const FrontendOptions &FrontendOpts) { 907 bool Success = true; 908 llvm::Triple Triple = llvm::Triple(TargetOpts.Triple); 909 910 unsigned OptimizationLevel = getOptimizationLevel(Args, IK, Diags); 911 // TODO: This could be done in Driver 912 unsigned MaxOptLevel = 3; 913 if (OptimizationLevel > MaxOptLevel) { 914 // If the optimization level is not supported, fall back on the default 915 // optimization 916 Diags.Report(diag::warn_drv_optimization_value) 917 << Args.getLastArg(OPT_O)->getAsString(Args) << "-O" << MaxOptLevel; 918 OptimizationLevel = MaxOptLevel; 919 } 920 Opts.OptimizationLevel = OptimizationLevel; 921 922 // At O0 we want to fully disable inlining outside of cases marked with 923 // 'alwaysinline' that are required for correctness. 924 Opts.setInlining((Opts.OptimizationLevel == 0) 925 ? CodeGenOptions::OnlyAlwaysInlining 926 : CodeGenOptions::NormalInlining); 927 // Explicit inlining flags can disable some or all inlining even at 928 // optimization levels above zero. 929 if (Arg *InlineArg = Args.getLastArg( 930 options::OPT_finline_functions, options::OPT_finline_hint_functions, 931 options::OPT_fno_inline_functions, options::OPT_fno_inline)) { 932 if (Opts.OptimizationLevel > 0) { 933 const Option &InlineOpt = InlineArg->getOption(); 934 if (InlineOpt.matches(options::OPT_finline_functions)) 935 Opts.setInlining(CodeGenOptions::NormalInlining); 936 else if (InlineOpt.matches(options::OPT_finline_hint_functions)) 937 Opts.setInlining(CodeGenOptions::OnlyHintInlining); 938 else 939 Opts.setInlining(CodeGenOptions::OnlyAlwaysInlining); 940 } 941 } 942 943 // PIC defaults to -fno-direct-access-external-data while non-PIC defaults to 944 // -fdirect-access-external-data. 945 Opts.DirectAccessExternalData = 946 Args.hasArg(OPT_fdirect_access_external_data) || 947 (!Args.hasArg(OPT_fno_direct_access_external_data) && 948 getLastArgIntValue(Args, OPT_pic_level, 0, Diags) == 0); 949 950 // If -fuse-ctor-homing is set and limited debug info is already on, then use 951 // constructor homing. 952 if (Args.getLastArg(OPT_fuse_ctor_homing)) 953 if (Opts.getDebugInfo() == codegenoptions::LimitedDebugInfo) 954 Opts.setDebugInfo(codegenoptions::DebugInfoConstructor); 955 956 for (const auto &Arg : Args.getAllArgValues(OPT_fdebug_prefix_map_EQ)) { 957 auto Split = StringRef(Arg).split('='); 958 Opts.DebugPrefixMap.insert( 959 {std::string(Split.first), std::string(Split.second)}); 960 } 961 962 const llvm::Triple::ArchType DebugEntryValueArchs[] = { 963 llvm::Triple::x86, llvm::Triple::x86_64, llvm::Triple::aarch64, 964 llvm::Triple::arm, llvm::Triple::armeb, llvm::Triple::mips, 965 llvm::Triple::mipsel, llvm::Triple::mips64, llvm::Triple::mips64el}; 966 967 llvm::Triple T(TargetOpts.Triple); 968 if (Opts.OptimizationLevel > 0 && Opts.hasReducedDebugInfo() && 969 llvm::is_contained(DebugEntryValueArchs, T.getArch())) 970 Opts.EmitCallSiteInfo = true; 971 972 Opts.NewStructPathTBAA = !Args.hasArg(OPT_no_struct_path_tbaa) && 973 Args.hasArg(OPT_new_struct_path_tbaa); 974 Opts.OptimizeSize = getOptimizationLevelSize(Args); 975 Opts.SimplifyLibCalls = !(Args.hasArg(OPT_fno_builtin) || 976 Args.hasArg(OPT_ffreestanding)); 977 if (Opts.SimplifyLibCalls) 978 getAllNoBuiltinFuncValues(Args, Opts.NoBuiltinFuncs); 979 Opts.UnrollLoops = 980 Args.hasFlag(OPT_funroll_loops, OPT_fno_unroll_loops, 981 (Opts.OptimizationLevel > 1)); 982 983 Opts.DebugNameTable = static_cast<unsigned>( 984 Args.hasArg(OPT_ggnu_pubnames) 985 ? llvm::DICompileUnit::DebugNameTableKind::GNU 986 : Args.hasArg(OPT_gpubnames) 987 ? llvm::DICompileUnit::DebugNameTableKind::Default 988 : llvm::DICompileUnit::DebugNameTableKind::None); 989 990 if (!Opts.ProfileInstrumentUsePath.empty()) 991 setPGOUseInstrumentor(Opts, Opts.ProfileInstrumentUsePath); 992 993 Opts.CodeModel = TargetOpts.CodeModel; 994 995 if (const Arg *A = Args.getLastArg(OPT_ftime_report, OPT_ftime_report_EQ)) { 996 Opts.TimePasses = true; 997 998 // -ftime-report= is only for new pass manager. 999 if (A->getOption().getID() == OPT_ftime_report_EQ) { 1000 if (Opts.LegacyPassManager) 1001 Diags.Report(diag::err_drv_argument_only_allowed_with) 1002 << A->getAsString(Args) << "-fno-legacy-pass-manager"; 1003 1004 StringRef Val = A->getValue(); 1005 if (Val == "per-pass") 1006 Opts.TimePassesPerRun = false; 1007 else if (Val == "per-pass-run") 1008 Opts.TimePassesPerRun = true; 1009 else 1010 Diags.Report(diag::err_drv_invalid_value) 1011 << A->getAsString(Args) << A->getValue(); 1012 } 1013 } 1014 1015 // Basic Block Sections implies Function Sections. 1016 Opts.FunctionSections = 1017 Args.hasArg(OPT_ffunction_sections) || 1018 (Opts.BBSections != "none" && Opts.BBSections != "labels"); 1019 1020 Opts.PrepareForLTO = Args.hasArg(OPT_flto, OPT_flto_EQ); 1021 Opts.PrepareForThinLTO = false; 1022 if (Arg *A = Args.getLastArg(OPT_flto_EQ)) { 1023 StringRef S = A->getValue(); 1024 if (S == "thin") 1025 Opts.PrepareForThinLTO = true; 1026 else if (S != "full") 1027 Diags.Report(diag::err_drv_invalid_value) << A->getAsString(Args) << S; 1028 } 1029 if (Arg *A = Args.getLastArg(OPT_fthinlto_index_EQ)) { 1030 if (IK.getLanguage() != Language::LLVM_IR) 1031 Diags.Report(diag::err_drv_argument_only_allowed_with) 1032 << A->getAsString(Args) << "-x ir"; 1033 Opts.ThinLTOIndexFile = 1034 std::string(Args.getLastArgValue(OPT_fthinlto_index_EQ)); 1035 } 1036 if (Arg *A = Args.getLastArg(OPT_save_temps_EQ)) 1037 Opts.SaveTempsFilePrefix = 1038 llvm::StringSwitch<std::string>(A->getValue()) 1039 .Case("obj", FrontendOpts.OutputFile) 1040 .Default(llvm::sys::path::filename(FrontendOpts.OutputFile).str()); 1041 1042 // The memory profile runtime appends the pid to make this name more unique. 1043 const char *MemProfileBasename = "memprof.profraw"; 1044 if (Args.hasArg(OPT_fmemory_profile_EQ)) { 1045 SmallString<128> Path( 1046 std::string(Args.getLastArgValue(OPT_fmemory_profile_EQ))); 1047 llvm::sys::path::append(Path, MemProfileBasename); 1048 Opts.MemoryProfileOutput = std::string(Path); 1049 } else if (Args.hasArg(OPT_fmemory_profile)) 1050 Opts.MemoryProfileOutput = MemProfileBasename; 1051 1052 if (Opts.EmitGcovArcs || Opts.EmitGcovNotes) { 1053 if (Args.hasArg(OPT_coverage_version_EQ)) { 1054 StringRef CoverageVersion = Args.getLastArgValue(OPT_coverage_version_EQ); 1055 if (CoverageVersion.size() != 4) { 1056 Diags.Report(diag::err_drv_invalid_value) 1057 << Args.getLastArg(OPT_coverage_version_EQ)->getAsString(Args) 1058 << CoverageVersion; 1059 } else { 1060 memcpy(Opts.CoverageVersion, CoverageVersion.data(), 4); 1061 } 1062 } 1063 } 1064 // FIXME: For backend options that are not yet recorded as function 1065 // attributes in the IR, keep track of them so we can embed them in a 1066 // separate data section and use them when building the bitcode. 1067 for (const auto &A : Args) { 1068 // Do not encode output and input. 1069 if (A->getOption().getID() == options::OPT_o || 1070 A->getOption().getID() == options::OPT_INPUT || 1071 A->getOption().getID() == options::OPT_x || 1072 A->getOption().getID() == options::OPT_fembed_bitcode || 1073 A->getOption().matches(options::OPT_W_Group)) 1074 continue; 1075 ArgStringList ASL; 1076 A->render(Args, ASL); 1077 for (const auto &arg : ASL) { 1078 StringRef ArgStr(arg); 1079 Opts.CmdArgs.insert(Opts.CmdArgs.end(), ArgStr.begin(), ArgStr.end()); 1080 // using \00 to separate each commandline options. 1081 Opts.CmdArgs.push_back('\0'); 1082 } 1083 } 1084 1085 auto XRayInstrBundles = 1086 Args.getAllArgValues(OPT_fxray_instrumentation_bundle); 1087 if (XRayInstrBundles.empty()) 1088 Opts.XRayInstrumentationBundle.Mask = XRayInstrKind::All; 1089 else 1090 for (const auto &A : XRayInstrBundles) 1091 parseXRayInstrumentationBundle("-fxray-instrumentation-bundle=", A, Args, 1092 Diags, Opts.XRayInstrumentationBundle); 1093 1094 if (const Arg *A = Args.getLastArg(OPT_fcf_protection_EQ)) { 1095 StringRef Name = A->getValue(); 1096 if (Name == "full") { 1097 Opts.CFProtectionReturn = 1; 1098 Opts.CFProtectionBranch = 1; 1099 } else if (Name == "return") 1100 Opts.CFProtectionReturn = 1; 1101 else if (Name == "branch") 1102 Opts.CFProtectionBranch = 1; 1103 else if (Name != "none") { 1104 Diags.Report(diag::err_drv_invalid_value) << A->getAsString(Args) << Name; 1105 Success = false; 1106 } 1107 } 1108 1109 for (auto *A : 1110 Args.filtered(OPT_mlink_bitcode_file, OPT_mlink_builtin_bitcode)) { 1111 CodeGenOptions::BitcodeFileToLink F; 1112 F.Filename = A->getValue(); 1113 if (A->getOption().matches(OPT_mlink_builtin_bitcode)) { 1114 F.LinkFlags = llvm::Linker::Flags::LinkOnlyNeeded; 1115 // When linking CUDA bitcode, propagate function attributes so that 1116 // e.g. libdevice gets fast-math attrs if we're building with fast-math. 1117 F.PropagateAttrs = true; 1118 F.Internalize = true; 1119 } 1120 Opts.LinkBitcodeFiles.push_back(F); 1121 } 1122 1123 if (Args.getLastArg(OPT_femulated_tls) || 1124 Args.getLastArg(OPT_fno_emulated_tls)) { 1125 Opts.ExplicitEmulatedTLS = true; 1126 } 1127 1128 if (Arg *A = Args.getLastArg(OPT_fdenormal_fp_math_EQ)) { 1129 StringRef Val = A->getValue(); 1130 Opts.FPDenormalMode = llvm::parseDenormalFPAttribute(Val); 1131 if (!Opts.FPDenormalMode.isValid()) 1132 Diags.Report(diag::err_drv_invalid_value) << A->getAsString(Args) << Val; 1133 } 1134 1135 if (Arg *A = Args.getLastArg(OPT_fdenormal_fp_math_f32_EQ)) { 1136 StringRef Val = A->getValue(); 1137 Opts.FP32DenormalMode = llvm::parseDenormalFPAttribute(Val); 1138 if (!Opts.FP32DenormalMode.isValid()) 1139 Diags.Report(diag::err_drv_invalid_value) << A->getAsString(Args) << Val; 1140 } 1141 1142 // X86_32 has -fppc-struct-return and -freg-struct-return. 1143 // PPC32 has -maix-struct-return and -msvr4-struct-return. 1144 if (Arg *A = 1145 Args.getLastArg(OPT_fpcc_struct_return, OPT_freg_struct_return, 1146 OPT_maix_struct_return, OPT_msvr4_struct_return)) { 1147 // TODO: We might want to consider enabling these options on AIX in the 1148 // future. 1149 if (T.isOSAIX()) 1150 Diags.Report(diag::err_drv_unsupported_opt_for_target) 1151 << A->getSpelling() << T.str(); 1152 1153 const Option &O = A->getOption(); 1154 if (O.matches(OPT_fpcc_struct_return) || 1155 O.matches(OPT_maix_struct_return)) { 1156 Opts.setStructReturnConvention(CodeGenOptions::SRCK_OnStack); 1157 } else { 1158 assert(O.matches(OPT_freg_struct_return) || 1159 O.matches(OPT_msvr4_struct_return)); 1160 Opts.setStructReturnConvention(CodeGenOptions::SRCK_InRegs); 1161 } 1162 } 1163 1164 if (T.isOSAIX() && (Args.hasArg(OPT_mignore_xcoff_visibility) || 1165 !Args.hasArg(OPT_fvisibility))) 1166 Opts.IgnoreXCOFFVisibility = 1; 1167 1168 if (Arg *A = 1169 Args.getLastArg(OPT_mabi_EQ_vec_default, OPT_mabi_EQ_vec_extabi)) { 1170 if (!T.isOSAIX()) 1171 Diags.Report(diag::err_drv_unsupported_opt_for_target) 1172 << A->getSpelling() << T.str(); 1173 1174 const Option &O = A->getOption(); 1175 if (O.matches(OPT_mabi_EQ_vec_default)) 1176 Diags.Report(diag::err_aix_default_altivec_abi) 1177 << A->getSpelling() << T.str(); 1178 else { 1179 assert(O.matches(OPT_mabi_EQ_vec_extabi)); 1180 Opts.EnableAIXExtendedAltivecABI = 1; 1181 } 1182 } 1183 1184 bool NeedLocTracking = false; 1185 1186 if (!Opts.OptRecordFile.empty()) 1187 NeedLocTracking = true; 1188 1189 if (Arg *A = Args.getLastArg(OPT_opt_record_passes)) { 1190 Opts.OptRecordPasses = A->getValue(); 1191 NeedLocTracking = true; 1192 } 1193 1194 if (Arg *A = Args.getLastArg(OPT_opt_record_format)) { 1195 Opts.OptRecordFormat = A->getValue(); 1196 NeedLocTracking = true; 1197 } 1198 1199 if (Arg *A = Args.getLastArg(OPT_Rpass_EQ)) { 1200 Opts.OptimizationRemarkPattern = 1201 GenerateOptimizationRemarkRegex(Diags, Args, A); 1202 NeedLocTracking = true; 1203 } 1204 1205 if (Arg *A = Args.getLastArg(OPT_Rpass_missed_EQ)) { 1206 Opts.OptimizationRemarkMissedPattern = 1207 GenerateOptimizationRemarkRegex(Diags, Args, A); 1208 NeedLocTracking = true; 1209 } 1210 1211 if (Arg *A = Args.getLastArg(OPT_Rpass_analysis_EQ)) { 1212 Opts.OptimizationRemarkAnalysisPattern = 1213 GenerateOptimizationRemarkRegex(Diags, Args, A); 1214 NeedLocTracking = true; 1215 } 1216 1217 bool UsingSampleProfile = !Opts.SampleProfileFile.empty(); 1218 bool UsingProfile = UsingSampleProfile || 1219 (Opts.getProfileUse() != CodeGenOptions::ProfileNone); 1220 1221 if (Opts.DiagnosticsWithHotness && !UsingProfile && 1222 // An IR file will contain PGO as metadata 1223 IK.getLanguage() != Language::LLVM_IR) 1224 Diags.Report(diag::warn_drv_diagnostics_hotness_requires_pgo) 1225 << "-fdiagnostics-show-hotness"; 1226 1227 // Parse remarks hotness threshold. Valid value is either integer or 'auto'. 1228 if (auto *arg = 1229 Args.getLastArg(options::OPT_fdiagnostics_hotness_threshold_EQ)) { 1230 auto ResultOrErr = 1231 llvm::remarks::parseHotnessThresholdOption(arg->getValue()); 1232 1233 if (!ResultOrErr) { 1234 Diags.Report(diag::err_drv_invalid_diagnotics_hotness_threshold) 1235 << "-fdiagnostics-hotness-threshold="; 1236 } else { 1237 Opts.DiagnosticsHotnessThreshold = *ResultOrErr; 1238 if ((!Opts.DiagnosticsHotnessThreshold.hasValue() || 1239 Opts.DiagnosticsHotnessThreshold.getValue() > 0) && 1240 !UsingProfile) 1241 Diags.Report(diag::warn_drv_diagnostics_hotness_requires_pgo) 1242 << "-fdiagnostics-hotness-threshold="; 1243 } 1244 } 1245 1246 // If the user requested to use a sample profile for PGO, then the 1247 // backend will need to track source location information so the profile 1248 // can be incorporated into the IR. 1249 if (UsingSampleProfile) 1250 NeedLocTracking = true; 1251 1252 // If the user requested a flag that requires source locations available in 1253 // the backend, make sure that the backend tracks source location information. 1254 if (NeedLocTracking && Opts.getDebugInfo() == codegenoptions::NoDebugInfo) 1255 Opts.setDebugInfo(codegenoptions::LocTrackingOnly); 1256 1257 // Parse -fsanitize-recover= arguments. 1258 // FIXME: Report unrecoverable sanitizers incorrectly specified here. 1259 parseSanitizerKinds("-fsanitize-recover=", 1260 Args.getAllArgValues(OPT_fsanitize_recover_EQ), Diags, 1261 Opts.SanitizeRecover); 1262 parseSanitizerKinds("-fsanitize-trap=", 1263 Args.getAllArgValues(OPT_fsanitize_trap_EQ), Diags, 1264 Opts.SanitizeTrap); 1265 1266 Opts.EmitVersionIdentMetadata = Args.hasFlag(OPT_Qy, OPT_Qn, true); 1267 1268 return Success; 1269 } 1270 1271 static void ParseDependencyOutputArgs(DependencyOutputOptions &Opts, 1272 ArgList &Args) { 1273 if (Args.hasArg(OPT_show_includes)) { 1274 // Writing both /showIncludes and preprocessor output to stdout 1275 // would produce interleaved output, so use stderr for /showIncludes. 1276 // This behaves the same as cl.exe, when /E, /EP or /P are passed. 1277 if (Args.hasArg(options::OPT_E) || Args.hasArg(options::OPT_P)) 1278 Opts.ShowIncludesDest = ShowIncludesDestination::Stderr; 1279 else 1280 Opts.ShowIncludesDest = ShowIncludesDestination::Stdout; 1281 } else { 1282 Opts.ShowIncludesDest = ShowIncludesDestination::None; 1283 } 1284 // Add sanitizer blacklists as extra dependencies. 1285 // They won't be discovered by the regular preprocessor, so 1286 // we let make / ninja to know about this implicit dependency. 1287 if (!Args.hasArg(OPT_fno_sanitize_blacklist)) { 1288 for (const auto *A : Args.filtered(OPT_fsanitize_blacklist)) { 1289 StringRef Val = A->getValue(); 1290 if (Val.find('=') == StringRef::npos) 1291 Opts.ExtraDeps.push_back(std::string(Val)); 1292 } 1293 if (Opts.IncludeSystemHeaders) { 1294 for (const auto *A : Args.filtered(OPT_fsanitize_system_blacklist)) { 1295 StringRef Val = A->getValue(); 1296 if (Val.find('=') == StringRef::npos) 1297 Opts.ExtraDeps.push_back(std::string(Val)); 1298 } 1299 } 1300 } 1301 1302 // Propagate the extra dependencies. 1303 for (const auto *A : Args.filtered(OPT_fdepfile_entry)) { 1304 Opts.ExtraDeps.push_back(A->getValue()); 1305 } 1306 1307 // Only the -fmodule-file=<file> form. 1308 for (const auto *A : Args.filtered(OPT_fmodule_file)) { 1309 StringRef Val = A->getValue(); 1310 if (Val.find('=') == StringRef::npos) 1311 Opts.ExtraDeps.push_back(std::string(Val)); 1312 } 1313 } 1314 1315 static bool parseShowColorsArgs(const ArgList &Args, bool DefaultColor) { 1316 // Color diagnostics default to auto ("on" if terminal supports) in the driver 1317 // but default to off in cc1, needing an explicit OPT_fdiagnostics_color. 1318 // Support both clang's -f[no-]color-diagnostics and gcc's 1319 // -f[no-]diagnostics-colors[=never|always|auto]. 1320 enum { 1321 Colors_On, 1322 Colors_Off, 1323 Colors_Auto 1324 } ShowColors = DefaultColor ? Colors_Auto : Colors_Off; 1325 for (auto *A : Args) { 1326 const Option &O = A->getOption(); 1327 if (O.matches(options::OPT_fcolor_diagnostics) || 1328 O.matches(options::OPT_fdiagnostics_color)) { 1329 ShowColors = Colors_On; 1330 } else if (O.matches(options::OPT_fno_color_diagnostics) || 1331 O.matches(options::OPT_fno_diagnostics_color)) { 1332 ShowColors = Colors_Off; 1333 } else if (O.matches(options::OPT_fdiagnostics_color_EQ)) { 1334 StringRef Value(A->getValue()); 1335 if (Value == "always") 1336 ShowColors = Colors_On; 1337 else if (Value == "never") 1338 ShowColors = Colors_Off; 1339 else if (Value == "auto") 1340 ShowColors = Colors_Auto; 1341 } 1342 } 1343 return ShowColors == Colors_On || 1344 (ShowColors == Colors_Auto && 1345 llvm::sys::Process::StandardErrHasColors()); 1346 } 1347 1348 static bool checkVerifyPrefixes(const std::vector<std::string> &VerifyPrefixes, 1349 DiagnosticsEngine &Diags) { 1350 bool Success = true; 1351 for (const auto &Prefix : VerifyPrefixes) { 1352 // Every prefix must start with a letter and contain only alphanumeric 1353 // characters, hyphens, and underscores. 1354 auto BadChar = llvm::find_if(Prefix, [](char C) { 1355 return !isAlphanumeric(C) && C != '-' && C != '_'; 1356 }); 1357 if (BadChar != Prefix.end() || !isLetter(Prefix[0])) { 1358 Success = false; 1359 Diags.Report(diag::err_drv_invalid_value) << "-verify=" << Prefix; 1360 Diags.Report(diag::note_drv_verify_prefix_spelling); 1361 } 1362 } 1363 return Success; 1364 } 1365 1366 #define PARSE_OPTION_WITH_MARSHALLING(ARGS, DIAGS, SUCCESS, ID, FLAGS, PARAM, \ 1367 SHOULD_PARSE, KEYPATH, DEFAULT_VALUE, \ 1368 IMPLIED_CHECK, IMPLIED_VALUE, \ 1369 NORMALIZER, MERGER, TABLE_INDEX) \ 1370 if ((FLAGS)&options::CC1Option) { \ 1371 KEYPATH = MERGER(KEYPATH, DEFAULT_VALUE); \ 1372 if (IMPLIED_CHECK) \ 1373 KEYPATH = MERGER(KEYPATH, IMPLIED_VALUE); \ 1374 if (SHOULD_PARSE) \ 1375 if (auto MaybeValue = \ 1376 NORMALIZER(OPT_##ID, TABLE_INDEX, ARGS, DIAGS, SUCCESS)) \ 1377 KEYPATH = \ 1378 MERGER(KEYPATH, static_cast<decltype(KEYPATH)>(*MaybeValue)); \ 1379 } 1380 1381 bool CompilerInvocation::parseSimpleArgs(const ArgList &Args, 1382 DiagnosticsEngine &Diags) { 1383 bool Success = true; 1384 1385 #define OPTION_WITH_MARSHALLING( \ 1386 PREFIX_TYPE, NAME, ID, KIND, GROUP, ALIAS, ALIASARGS, FLAGS, PARAM, \ 1387 HELPTEXT, METAVAR, VALUES, SPELLING, SHOULD_PARSE, ALWAYS_EMIT, KEYPATH, \ 1388 DEFAULT_VALUE, IMPLIED_CHECK, IMPLIED_VALUE, NORMALIZER, DENORMALIZER, \ 1389 MERGER, EXTRACTOR, TABLE_INDEX) \ 1390 PARSE_OPTION_WITH_MARSHALLING(Args, Diags, Success, ID, FLAGS, PARAM, \ 1391 SHOULD_PARSE, this->KEYPATH, DEFAULT_VALUE, \ 1392 IMPLIED_CHECK, IMPLIED_VALUE, NORMALIZER, \ 1393 MERGER, TABLE_INDEX) 1394 #include "clang/Driver/Options.inc" 1395 #undef OPTION_WITH_MARSHALLING 1396 1397 return Success; 1398 } 1399 1400 bool clang::ParseDiagnosticArgs(DiagnosticOptions &Opts, ArgList &Args, 1401 DiagnosticsEngine *Diags, 1402 bool DefaultDiagColor) { 1403 Optional<DiagnosticsEngine> IgnoringDiags; 1404 if (!Diags) { 1405 IgnoringDiags.emplace(new DiagnosticIDs(), new DiagnosticOptions(), 1406 new IgnoringDiagConsumer()); 1407 Diags = &*IgnoringDiags; 1408 } 1409 1410 bool Success = true; 1411 1412 #define DIAG_OPTION_WITH_MARSHALLING( \ 1413 PREFIX_TYPE, NAME, ID, KIND, GROUP, ALIAS, ALIASARGS, FLAGS, PARAM, \ 1414 HELPTEXT, METAVAR, VALUES, SPELLING, SHOULD_PARSE, ALWAYS_EMIT, KEYPATH, \ 1415 DEFAULT_VALUE, IMPLIED_CHECK, IMPLIED_VALUE, NORMALIZER, DENORMALIZER, \ 1416 MERGER, EXTRACTOR, TABLE_INDEX) \ 1417 PARSE_OPTION_WITH_MARSHALLING(Args, *Diags, Success, ID, FLAGS, PARAM, \ 1418 SHOULD_PARSE, Opts.KEYPATH, DEFAULT_VALUE, \ 1419 IMPLIED_CHECK, IMPLIED_VALUE, NORMALIZER, \ 1420 MERGER, TABLE_INDEX) 1421 #include "clang/Driver/Options.inc" 1422 #undef DIAG_OPTION_WITH_MARSHALLING 1423 1424 llvm::sys::Process::UseANSIEscapeCodes(Opts.UseANSIEscapeCodes); 1425 1426 if (Arg *A = 1427 Args.getLastArg(OPT_diagnostic_serialized_file, OPT__serialize_diags)) 1428 Opts.DiagnosticSerializationFile = A->getValue(); 1429 Opts.ShowColors = parseShowColorsArgs(Args, DefaultDiagColor); 1430 1431 if (Args.getLastArgValue(OPT_fdiagnostics_format) == "msvc-fallback") 1432 Opts.CLFallbackMode = true; 1433 1434 Opts.VerifyDiagnostics = Args.hasArg(OPT_verify) || Args.hasArg(OPT_verify_EQ); 1435 if (Args.hasArg(OPT_verify)) 1436 Opts.VerifyPrefixes.push_back("expected"); 1437 // Keep VerifyPrefixes in its original order for the sake of diagnostics, and 1438 // then sort it to prepare for fast lookup using std::binary_search. 1439 if (!checkVerifyPrefixes(Opts.VerifyPrefixes, *Diags)) { 1440 Opts.VerifyDiagnostics = false; 1441 Success = false; 1442 } 1443 else 1444 llvm::sort(Opts.VerifyPrefixes); 1445 DiagnosticLevelMask DiagMask = DiagnosticLevelMask::None; 1446 Success &= parseDiagnosticLevelMask("-verify-ignore-unexpected=", 1447 Args.getAllArgValues(OPT_verify_ignore_unexpected_EQ), 1448 *Diags, DiagMask); 1449 if (Args.hasArg(OPT_verify_ignore_unexpected)) 1450 DiagMask = DiagnosticLevelMask::All; 1451 Opts.setVerifyIgnoreUnexpected(DiagMask); 1452 if (Opts.TabStop == 0 || Opts.TabStop > DiagnosticOptions::MaxTabStop) { 1453 Opts.TabStop = DiagnosticOptions::DefaultTabStop; 1454 Diags->Report(diag::warn_ignoring_ftabstop_value) 1455 << Opts.TabStop << DiagnosticOptions::DefaultTabStop; 1456 } 1457 1458 addDiagnosticArgs(Args, OPT_W_Group, OPT_W_value_Group, Opts.Warnings); 1459 addDiagnosticArgs(Args, OPT_R_Group, OPT_R_value_Group, Opts.Remarks); 1460 1461 return Success; 1462 } 1463 1464 #undef PARSE_OPTION_WITH_MARSHALLING 1465 1466 /// Parse the argument to the -ftest-module-file-extension 1467 /// command-line argument. 1468 /// 1469 /// \returns true on error, false on success. 1470 static bool parseTestModuleFileExtensionArg(StringRef Arg, 1471 std::string &BlockName, 1472 unsigned &MajorVersion, 1473 unsigned &MinorVersion, 1474 bool &Hashed, 1475 std::string &UserInfo) { 1476 SmallVector<StringRef, 5> Args; 1477 Arg.split(Args, ':', 5); 1478 if (Args.size() < 5) 1479 return true; 1480 1481 BlockName = std::string(Args[0]); 1482 if (Args[1].getAsInteger(10, MajorVersion)) return true; 1483 if (Args[2].getAsInteger(10, MinorVersion)) return true; 1484 if (Args[3].getAsInteger(2, Hashed)) return true; 1485 if (Args.size() > 4) 1486 UserInfo = std::string(Args[4]); 1487 return false; 1488 } 1489 1490 static InputKind ParseFrontendArgs(FrontendOptions &Opts, ArgList &Args, 1491 DiagnosticsEngine &Diags, 1492 bool &IsHeaderFile) { 1493 Opts.ProgramAction = frontend::ParseSyntaxOnly; 1494 if (const Arg *A = Args.getLastArg(OPT_Action_Group)) { 1495 switch (A->getOption().getID()) { 1496 default: 1497 llvm_unreachable("Invalid option in group!"); 1498 case OPT_ast_list: 1499 Opts.ProgramAction = frontend::ASTDeclList; break; 1500 case OPT_ast_dump_all_EQ: 1501 case OPT_ast_dump_EQ: { 1502 unsigned Val = llvm::StringSwitch<unsigned>(A->getValue()) 1503 .CaseLower("default", ADOF_Default) 1504 .CaseLower("json", ADOF_JSON) 1505 .Default(std::numeric_limits<unsigned>::max()); 1506 1507 if (Val != std::numeric_limits<unsigned>::max()) 1508 Opts.ASTDumpFormat = static_cast<ASTDumpOutputFormat>(Val); 1509 else { 1510 Diags.Report(diag::err_drv_invalid_value) 1511 << A->getAsString(Args) << A->getValue(); 1512 Opts.ASTDumpFormat = ADOF_Default; 1513 } 1514 LLVM_FALLTHROUGH; 1515 } 1516 case OPT_ast_dump: 1517 case OPT_ast_dump_all: 1518 case OPT_ast_dump_lookups: 1519 case OPT_ast_dump_decl_types: 1520 Opts.ProgramAction = frontend::ASTDump; break; 1521 case OPT_ast_print: 1522 Opts.ProgramAction = frontend::ASTPrint; break; 1523 case OPT_ast_view: 1524 Opts.ProgramAction = frontend::ASTView; break; 1525 case OPT_compiler_options_dump: 1526 Opts.ProgramAction = frontend::DumpCompilerOptions; break; 1527 case OPT_dump_raw_tokens: 1528 Opts.ProgramAction = frontend::DumpRawTokens; break; 1529 case OPT_dump_tokens: 1530 Opts.ProgramAction = frontend::DumpTokens; break; 1531 case OPT_S: 1532 Opts.ProgramAction = frontend::EmitAssembly; break; 1533 case OPT_emit_llvm_bc: 1534 Opts.ProgramAction = frontend::EmitBC; break; 1535 case OPT_emit_html: 1536 Opts.ProgramAction = frontend::EmitHTML; break; 1537 case OPT_emit_llvm: 1538 Opts.ProgramAction = frontend::EmitLLVM; break; 1539 case OPT_emit_llvm_only: 1540 Opts.ProgramAction = frontend::EmitLLVMOnly; break; 1541 case OPT_emit_codegen_only: 1542 Opts.ProgramAction = frontend::EmitCodeGenOnly; break; 1543 case OPT_emit_obj: 1544 Opts.ProgramAction = frontend::EmitObj; break; 1545 case OPT_fixit_EQ: 1546 Opts.FixItSuffix = A->getValue(); 1547 LLVM_FALLTHROUGH; 1548 case OPT_fixit: 1549 Opts.ProgramAction = frontend::FixIt; break; 1550 case OPT_emit_module: 1551 Opts.ProgramAction = frontend::GenerateModule; break; 1552 case OPT_emit_module_interface: 1553 Opts.ProgramAction = frontend::GenerateModuleInterface; break; 1554 case OPT_emit_header_module: 1555 Opts.ProgramAction = frontend::GenerateHeaderModule; break; 1556 case OPT_emit_pch: 1557 Opts.ProgramAction = frontend::GeneratePCH; break; 1558 case OPT_emit_interface_stubs: { 1559 StringRef ArgStr = 1560 Args.hasArg(OPT_interface_stub_version_EQ) 1561 ? Args.getLastArgValue(OPT_interface_stub_version_EQ) 1562 : "experimental-ifs-v2"; 1563 if (ArgStr == "experimental-yaml-elf-v1" || 1564 ArgStr == "experimental-ifs-v1" || 1565 ArgStr == "experimental-tapi-elf-v1") { 1566 std::string ErrorMessage = 1567 "Invalid interface stub format: " + ArgStr.str() + 1568 " is deprecated."; 1569 Diags.Report(diag::err_drv_invalid_value) 1570 << "Must specify a valid interface stub format type, ie: " 1571 "-interface-stub-version=experimental-ifs-v2" 1572 << ErrorMessage; 1573 } else if (!ArgStr.startswith("experimental-ifs-")) { 1574 std::string ErrorMessage = 1575 "Invalid interface stub format: " + ArgStr.str() + "."; 1576 Diags.Report(diag::err_drv_invalid_value) 1577 << "Must specify a valid interface stub format type, ie: " 1578 "-interface-stub-version=experimental-ifs-v2" 1579 << ErrorMessage; 1580 } else { 1581 Opts.ProgramAction = frontend::GenerateInterfaceStubs; 1582 } 1583 break; 1584 } 1585 case OPT_init_only: 1586 Opts.ProgramAction = frontend::InitOnly; break; 1587 case OPT_fsyntax_only: 1588 Opts.ProgramAction = frontend::ParseSyntaxOnly; break; 1589 case OPT_module_file_info: 1590 Opts.ProgramAction = frontend::ModuleFileInfo; break; 1591 case OPT_verify_pch: 1592 Opts.ProgramAction = frontend::VerifyPCH; break; 1593 case OPT_print_preamble: 1594 Opts.ProgramAction = frontend::PrintPreamble; break; 1595 case OPT_E: 1596 Opts.ProgramAction = frontend::PrintPreprocessedInput; break; 1597 case OPT_templight_dump: 1598 Opts.ProgramAction = frontend::TemplightDump; break; 1599 case OPT_rewrite_macros: 1600 Opts.ProgramAction = frontend::RewriteMacros; break; 1601 case OPT_rewrite_objc: 1602 Opts.ProgramAction = frontend::RewriteObjC; break; 1603 case OPT_rewrite_test: 1604 Opts.ProgramAction = frontend::RewriteTest; break; 1605 case OPT_analyze: 1606 Opts.ProgramAction = frontend::RunAnalysis; break; 1607 case OPT_migrate: 1608 Opts.ProgramAction = frontend::MigrateSource; break; 1609 case OPT_Eonly: 1610 Opts.ProgramAction = frontend::RunPreprocessorOnly; break; 1611 case OPT_print_dependency_directives_minimized_source: 1612 Opts.ProgramAction = 1613 frontend::PrintDependencyDirectivesSourceMinimizerOutput; 1614 break; 1615 } 1616 } 1617 1618 if (const Arg* A = Args.getLastArg(OPT_plugin)) { 1619 Opts.Plugins.emplace_back(A->getValue(0)); 1620 Opts.ProgramAction = frontend::PluginAction; 1621 Opts.ActionName = A->getValue(); 1622 } 1623 Opts.AddPluginActions = Args.getAllArgValues(OPT_add_plugin); 1624 for (const auto *AA : Args.filtered(OPT_plugin_arg)) 1625 Opts.PluginArgs[AA->getValue(0)].emplace_back(AA->getValue(1)); 1626 1627 for (const std::string &Arg : 1628 Args.getAllArgValues(OPT_ftest_module_file_extension_EQ)) { 1629 std::string BlockName; 1630 unsigned MajorVersion; 1631 unsigned MinorVersion; 1632 bool Hashed; 1633 std::string UserInfo; 1634 if (parseTestModuleFileExtensionArg(Arg, BlockName, MajorVersion, 1635 MinorVersion, Hashed, UserInfo)) { 1636 Diags.Report(diag::err_test_module_file_extension_format) << Arg; 1637 1638 continue; 1639 } 1640 1641 // Add the testing module file extension. 1642 Opts.ModuleFileExtensions.push_back( 1643 std::make_shared<TestModuleFileExtension>( 1644 BlockName, MajorVersion, MinorVersion, Hashed, UserInfo)); 1645 } 1646 1647 if (const Arg *A = Args.getLastArg(OPT_code_completion_at)) { 1648 Opts.CodeCompletionAt = 1649 ParsedSourceLocation::FromString(A->getValue()); 1650 if (Opts.CodeCompletionAt.FileName.empty()) 1651 Diags.Report(diag::err_drv_invalid_value) 1652 << A->getAsString(Args) << A->getValue(); 1653 } 1654 1655 Opts.Plugins = Args.getAllArgValues(OPT_load); 1656 Opts.ASTDumpDecls = Args.hasArg(OPT_ast_dump, OPT_ast_dump_EQ); 1657 Opts.ASTDumpAll = Args.hasArg(OPT_ast_dump_all, OPT_ast_dump_all_EQ); 1658 // Only the -fmodule-file=<file> form. 1659 for (const auto *A : Args.filtered(OPT_fmodule_file)) { 1660 StringRef Val = A->getValue(); 1661 if (Val.find('=') == StringRef::npos) 1662 Opts.ModuleFiles.push_back(std::string(Val)); 1663 } 1664 Opts.AllowPCMWithCompilerErrors = Args.hasArg(OPT_fallow_pcm_with_errors); 1665 1666 if (Opts.ProgramAction != frontend::GenerateModule && Opts.IsSystemModule) 1667 Diags.Report(diag::err_drv_argument_only_allowed_with) << "-fsystem-module" 1668 << "-emit-module"; 1669 1670 if (Args.hasArg(OPT_aux_target_cpu)) 1671 Opts.AuxTargetCPU = std::string(Args.getLastArgValue(OPT_aux_target_cpu)); 1672 if (Args.hasArg(OPT_aux_target_feature)) 1673 Opts.AuxTargetFeatures = Args.getAllArgValues(OPT_aux_target_feature); 1674 1675 if (Opts.ARCMTAction != FrontendOptions::ARCMT_None && 1676 Opts.ObjCMTAction != FrontendOptions::ObjCMT_None) { 1677 Diags.Report(diag::err_drv_argument_not_allowed_with) 1678 << "ARC migration" << "ObjC migration"; 1679 } 1680 1681 InputKind DashX(Language::Unknown); 1682 if (const Arg *A = Args.getLastArg(OPT_x)) { 1683 StringRef XValue = A->getValue(); 1684 1685 // Parse suffixes: '<lang>(-header|[-module-map][-cpp-output])'. 1686 // FIXME: Supporting '<lang>-header-cpp-output' would be useful. 1687 bool Preprocessed = XValue.consume_back("-cpp-output"); 1688 bool ModuleMap = XValue.consume_back("-module-map"); 1689 IsHeaderFile = !Preprocessed && !ModuleMap && 1690 XValue != "precompiled-header" && 1691 XValue.consume_back("-header"); 1692 1693 // Principal languages. 1694 DashX = llvm::StringSwitch<InputKind>(XValue) 1695 .Case("c", Language::C) 1696 .Case("cl", Language::OpenCL) 1697 .Case("cuda", Language::CUDA) 1698 .Case("hip", Language::HIP) 1699 .Case("c++", Language::CXX) 1700 .Case("objective-c", Language::ObjC) 1701 .Case("objective-c++", Language::ObjCXX) 1702 .Case("renderscript", Language::RenderScript) 1703 .Default(Language::Unknown); 1704 1705 // "objc[++]-cpp-output" is an acceptable synonym for 1706 // "objective-c[++]-cpp-output". 1707 if (DashX.isUnknown() && Preprocessed && !IsHeaderFile && !ModuleMap) 1708 DashX = llvm::StringSwitch<InputKind>(XValue) 1709 .Case("objc", Language::ObjC) 1710 .Case("objc++", Language::ObjCXX) 1711 .Default(Language::Unknown); 1712 1713 // Some special cases cannot be combined with suffixes. 1714 if (DashX.isUnknown() && !Preprocessed && !ModuleMap && !IsHeaderFile) 1715 DashX = llvm::StringSwitch<InputKind>(XValue) 1716 .Case("cpp-output", InputKind(Language::C).getPreprocessed()) 1717 .Case("assembler-with-cpp", Language::Asm) 1718 .Cases("ast", "pcm", "precompiled-header", 1719 InputKind(Language::Unknown, InputKind::Precompiled)) 1720 .Case("ir", Language::LLVM_IR) 1721 .Default(Language::Unknown); 1722 1723 if (DashX.isUnknown()) 1724 Diags.Report(diag::err_drv_invalid_value) 1725 << A->getAsString(Args) << A->getValue(); 1726 1727 if (Preprocessed) 1728 DashX = DashX.getPreprocessed(); 1729 if (ModuleMap) 1730 DashX = DashX.withFormat(InputKind::ModuleMap); 1731 } 1732 1733 // '-' is the default input if none is given. 1734 std::vector<std::string> Inputs = Args.getAllArgValues(OPT_INPUT); 1735 Opts.Inputs.clear(); 1736 if (Inputs.empty()) 1737 Inputs.push_back("-"); 1738 for (unsigned i = 0, e = Inputs.size(); i != e; ++i) { 1739 InputKind IK = DashX; 1740 if (IK.isUnknown()) { 1741 IK = FrontendOptions::getInputKindForExtension( 1742 StringRef(Inputs[i]).rsplit('.').second); 1743 // FIXME: Warn on this? 1744 if (IK.isUnknown()) 1745 IK = Language::C; 1746 // FIXME: Remove this hack. 1747 if (i == 0) 1748 DashX = IK; 1749 } 1750 1751 bool IsSystem = false; 1752 1753 // The -emit-module action implicitly takes a module map. 1754 if (Opts.ProgramAction == frontend::GenerateModule && 1755 IK.getFormat() == InputKind::Source) { 1756 IK = IK.withFormat(InputKind::ModuleMap); 1757 IsSystem = Opts.IsSystemModule; 1758 } 1759 1760 Opts.Inputs.emplace_back(std::move(Inputs[i]), IK, IsSystem); 1761 } 1762 1763 return DashX; 1764 } 1765 1766 std::string CompilerInvocation::GetResourcesPath(const char *Argv0, 1767 void *MainAddr) { 1768 std::string ClangExecutable = 1769 llvm::sys::fs::getMainExecutable(Argv0, MainAddr); 1770 return Driver::GetResourcesPath(ClangExecutable, CLANG_RESOURCE_DIR); 1771 } 1772 1773 static void ParseHeaderSearchArgs(HeaderSearchOptions &Opts, ArgList &Args, 1774 const std::string &WorkingDir) { 1775 if (const Arg *A = Args.getLastArg(OPT_stdlib_EQ)) 1776 Opts.UseLibcxx = (strcmp(A->getValue(), "libc++") == 0); 1777 1778 // Canonicalize -fmodules-cache-path before storing it. 1779 SmallString<128> P(Args.getLastArgValue(OPT_fmodules_cache_path)); 1780 if (!(P.empty() || llvm::sys::path::is_absolute(P))) { 1781 if (WorkingDir.empty()) 1782 llvm::sys::fs::make_absolute(P); 1783 else 1784 llvm::sys::fs::make_absolute(WorkingDir, P); 1785 } 1786 llvm::sys::path::remove_dots(P); 1787 Opts.ModuleCachePath = std::string(P.str()); 1788 1789 // Only the -fmodule-file=<name>=<file> form. 1790 for (const auto *A : Args.filtered(OPT_fmodule_file)) { 1791 StringRef Val = A->getValue(); 1792 if (Val.find('=') != StringRef::npos){ 1793 auto Split = Val.split('='); 1794 Opts.PrebuiltModuleFiles.insert( 1795 {std::string(Split.first), std::string(Split.second)}); 1796 } 1797 } 1798 for (const auto *A : Args.filtered(OPT_fprebuilt_module_path)) 1799 Opts.AddPrebuiltModulePath(A->getValue()); 1800 1801 for (const auto *A : Args.filtered(OPT_fmodules_ignore_macro)) { 1802 StringRef MacroDef = A->getValue(); 1803 Opts.ModulesIgnoreMacros.insert( 1804 llvm::CachedHashString(MacroDef.split('=').first)); 1805 } 1806 1807 // Add -I..., -F..., and -index-header-map options in order. 1808 bool IsIndexHeaderMap = false; 1809 bool IsSysrootSpecified = 1810 Args.hasArg(OPT__sysroot_EQ) || Args.hasArg(OPT_isysroot); 1811 for (const auto *A : Args.filtered(OPT_I, OPT_F, OPT_index_header_map)) { 1812 if (A->getOption().matches(OPT_index_header_map)) { 1813 // -index-header-map applies to the next -I or -F. 1814 IsIndexHeaderMap = true; 1815 continue; 1816 } 1817 1818 frontend::IncludeDirGroup Group = 1819 IsIndexHeaderMap ? frontend::IndexHeaderMap : frontend::Angled; 1820 1821 bool IsFramework = A->getOption().matches(OPT_F); 1822 std::string Path = A->getValue(); 1823 1824 if (IsSysrootSpecified && !IsFramework && A->getValue()[0] == '=') { 1825 SmallString<32> Buffer; 1826 llvm::sys::path::append(Buffer, Opts.Sysroot, 1827 llvm::StringRef(A->getValue()).substr(1)); 1828 Path = std::string(Buffer.str()); 1829 } 1830 1831 Opts.AddPath(Path, Group, IsFramework, 1832 /*IgnoreSysroot*/ true); 1833 IsIndexHeaderMap = false; 1834 } 1835 1836 // Add -iprefix/-iwithprefix/-iwithprefixbefore options. 1837 StringRef Prefix = ""; // FIXME: This isn't the correct default prefix. 1838 for (const auto *A : 1839 Args.filtered(OPT_iprefix, OPT_iwithprefix, OPT_iwithprefixbefore)) { 1840 if (A->getOption().matches(OPT_iprefix)) 1841 Prefix = A->getValue(); 1842 else if (A->getOption().matches(OPT_iwithprefix)) 1843 Opts.AddPath(Prefix.str() + A->getValue(), frontend::After, false, true); 1844 else 1845 Opts.AddPath(Prefix.str() + A->getValue(), frontend::Angled, false, true); 1846 } 1847 1848 for (const auto *A : Args.filtered(OPT_idirafter)) 1849 Opts.AddPath(A->getValue(), frontend::After, false, true); 1850 for (const auto *A : Args.filtered(OPT_iquote)) 1851 Opts.AddPath(A->getValue(), frontend::Quoted, false, true); 1852 for (const auto *A : Args.filtered(OPT_isystem, OPT_iwithsysroot)) 1853 Opts.AddPath(A->getValue(), frontend::System, false, 1854 !A->getOption().matches(OPT_iwithsysroot)); 1855 for (const auto *A : Args.filtered(OPT_iframework)) 1856 Opts.AddPath(A->getValue(), frontend::System, true, true); 1857 for (const auto *A : Args.filtered(OPT_iframeworkwithsysroot)) 1858 Opts.AddPath(A->getValue(), frontend::System, /*IsFramework=*/true, 1859 /*IgnoreSysRoot=*/false); 1860 1861 // Add the paths for the various language specific isystem flags. 1862 for (const auto *A : Args.filtered(OPT_c_isystem)) 1863 Opts.AddPath(A->getValue(), frontend::CSystem, false, true); 1864 for (const auto *A : Args.filtered(OPT_cxx_isystem)) 1865 Opts.AddPath(A->getValue(), frontend::CXXSystem, false, true); 1866 for (const auto *A : Args.filtered(OPT_objc_isystem)) 1867 Opts.AddPath(A->getValue(), frontend::ObjCSystem, false,true); 1868 for (const auto *A : Args.filtered(OPT_objcxx_isystem)) 1869 Opts.AddPath(A->getValue(), frontend::ObjCXXSystem, false, true); 1870 1871 // Add the internal paths from a driver that detects standard include paths. 1872 for (const auto *A : 1873 Args.filtered(OPT_internal_isystem, OPT_internal_externc_isystem)) { 1874 frontend::IncludeDirGroup Group = frontend::System; 1875 if (A->getOption().matches(OPT_internal_externc_isystem)) 1876 Group = frontend::ExternCSystem; 1877 Opts.AddPath(A->getValue(), Group, false, true); 1878 } 1879 1880 // Add the path prefixes which are implicitly treated as being system headers. 1881 for (const auto *A : 1882 Args.filtered(OPT_system_header_prefix, OPT_no_system_header_prefix)) 1883 Opts.AddSystemHeaderPrefix( 1884 A->getValue(), A->getOption().matches(OPT_system_header_prefix)); 1885 1886 for (const auto *A : Args.filtered(OPT_ivfsoverlay)) 1887 Opts.AddVFSOverlayFile(A->getValue()); 1888 } 1889 1890 void CompilerInvocation::setLangDefaults(LangOptions &Opts, InputKind IK, 1891 const llvm::Triple &T, 1892 PreprocessorOptions &PPOpts, 1893 LangStandard::Kind LangStd) { 1894 // Set some properties which depend solely on the input kind; it would be nice 1895 // to move these to the language standard, and have the driver resolve the 1896 // input kind + language standard. 1897 // 1898 // FIXME: Perhaps a better model would be for a single source file to have 1899 // multiple language standards (C / C++ std, ObjC std, OpenCL std, OpenMP std) 1900 // simultaneously active? 1901 if (IK.getLanguage() == Language::Asm) { 1902 Opts.AsmPreprocessor = 1; 1903 } else if (IK.isObjectiveC()) { 1904 Opts.ObjC = 1; 1905 } 1906 1907 if (LangStd == LangStandard::lang_unspecified) { 1908 // Based on the base language, pick one. 1909 switch (IK.getLanguage()) { 1910 case Language::Unknown: 1911 case Language::LLVM_IR: 1912 llvm_unreachable("Invalid input kind!"); 1913 case Language::OpenCL: 1914 LangStd = LangStandard::lang_opencl10; 1915 break; 1916 case Language::CUDA: 1917 LangStd = LangStandard::lang_cuda; 1918 break; 1919 case Language::Asm: 1920 case Language::C: 1921 #if defined(CLANG_DEFAULT_STD_C) 1922 LangStd = CLANG_DEFAULT_STD_C; 1923 #else 1924 // The PS4 uses C99 as the default C standard. 1925 if (T.isPS4()) 1926 LangStd = LangStandard::lang_gnu99; 1927 else 1928 LangStd = LangStandard::lang_gnu17; 1929 #endif 1930 break; 1931 case Language::ObjC: 1932 #if defined(CLANG_DEFAULT_STD_C) 1933 LangStd = CLANG_DEFAULT_STD_C; 1934 #else 1935 LangStd = LangStandard::lang_gnu11; 1936 #endif 1937 break; 1938 case Language::CXX: 1939 case Language::ObjCXX: 1940 #if defined(CLANG_DEFAULT_STD_CXX) 1941 LangStd = CLANG_DEFAULT_STD_CXX; 1942 #else 1943 LangStd = LangStandard::lang_gnucxx14; 1944 #endif 1945 break; 1946 case Language::RenderScript: 1947 LangStd = LangStandard::lang_c99; 1948 break; 1949 case Language::HIP: 1950 LangStd = LangStandard::lang_hip; 1951 break; 1952 } 1953 } 1954 1955 const LangStandard &Std = LangStandard::getLangStandardForKind(LangStd); 1956 Opts.LineComment = Std.hasLineComments(); 1957 Opts.C99 = Std.isC99(); 1958 Opts.C11 = Std.isC11(); 1959 Opts.C17 = Std.isC17(); 1960 Opts.C2x = Std.isC2x(); 1961 Opts.CPlusPlus = Std.isCPlusPlus(); 1962 Opts.CPlusPlus11 = Std.isCPlusPlus11(); 1963 Opts.CPlusPlus14 = Std.isCPlusPlus14(); 1964 Opts.CPlusPlus17 = Std.isCPlusPlus17(); 1965 Opts.CPlusPlus20 = Std.isCPlusPlus20(); 1966 Opts.CPlusPlus2b = Std.isCPlusPlus2b(); 1967 Opts.Digraphs = Std.hasDigraphs(); 1968 Opts.GNUMode = Std.isGNUMode(); 1969 Opts.GNUInline = !Opts.C99 && !Opts.CPlusPlus; 1970 Opts.GNUCVersion = 0; 1971 Opts.HexFloats = Std.hasHexFloats(); 1972 Opts.ImplicitInt = Std.hasImplicitInt(); 1973 1974 // Set OpenCL Version. 1975 Opts.OpenCL = Std.isOpenCL(); 1976 if (LangStd == LangStandard::lang_opencl10) 1977 Opts.OpenCLVersion = 100; 1978 else if (LangStd == LangStandard::lang_opencl11) 1979 Opts.OpenCLVersion = 110; 1980 else if (LangStd == LangStandard::lang_opencl12) 1981 Opts.OpenCLVersion = 120; 1982 else if (LangStd == LangStandard::lang_opencl20) 1983 Opts.OpenCLVersion = 200; 1984 else if (LangStd == LangStandard::lang_opencl30) 1985 Opts.OpenCLVersion = 300; 1986 else if (LangStd == LangStandard::lang_openclcpp) 1987 Opts.OpenCLCPlusPlusVersion = 100; 1988 1989 // OpenCL has some additional defaults. 1990 if (Opts.OpenCL) { 1991 Opts.AltiVec = 0; 1992 Opts.ZVector = 0; 1993 Opts.setLaxVectorConversions(LangOptions::LaxVectorConversionKind::None); 1994 Opts.setDefaultFPContractMode(LangOptions::FPM_On); 1995 Opts.NativeHalfType = 1; 1996 Opts.NativeHalfArgsAndReturns = 1; 1997 Opts.OpenCLCPlusPlus = Opts.CPlusPlus; 1998 1999 // Include default header file for OpenCL. 2000 if (Opts.IncludeDefaultHeader) { 2001 if (Opts.DeclareOpenCLBuiltins) { 2002 // Only include base header file for builtin types and constants. 2003 PPOpts.Includes.push_back("opencl-c-base.h"); 2004 } else { 2005 PPOpts.Includes.push_back("opencl-c.h"); 2006 } 2007 } 2008 } 2009 2010 Opts.HIP = IK.getLanguage() == Language::HIP; 2011 Opts.CUDA = IK.getLanguage() == Language::CUDA || Opts.HIP; 2012 if (Opts.HIP) { 2013 // HIP toolchain does not support 'Fast' FPOpFusion in backends since it 2014 // fuses multiplication/addition instructions without contract flag from 2015 // device library functions in LLVM bitcode, which causes accuracy loss in 2016 // certain math functions, e.g. tan(-1e20) becomes -0.933 instead of 0.8446. 2017 // For device library functions in bitcode to work, 'Strict' or 'Standard' 2018 // FPOpFusion options in backends is needed. Therefore 'fast-honor-pragmas' 2019 // FP contract option is used to allow fuse across statements in frontend 2020 // whereas respecting contract flag in backend. 2021 Opts.setDefaultFPContractMode(LangOptions::FPM_FastHonorPragmas); 2022 } else if (Opts.CUDA) { 2023 // Allow fuse across statements disregarding pragmas. 2024 Opts.setDefaultFPContractMode(LangOptions::FPM_Fast); 2025 } 2026 2027 Opts.RenderScript = IK.getLanguage() == Language::RenderScript; 2028 if (Opts.RenderScript) { 2029 Opts.NativeHalfType = 1; 2030 Opts.NativeHalfArgsAndReturns = 1; 2031 } 2032 2033 // OpenCL and C++ both have bool, true, false keywords. 2034 Opts.Bool = Opts.OpenCL || Opts.CPlusPlus; 2035 2036 // OpenCL has half keyword 2037 Opts.Half = Opts.OpenCL; 2038 2039 // C++ has wchar_t keyword. 2040 Opts.WChar = Opts.CPlusPlus; 2041 2042 Opts.GNUKeywords = Opts.GNUMode; 2043 Opts.CXXOperatorNames = Opts.CPlusPlus; 2044 2045 Opts.AlignedAllocation = Opts.CPlusPlus17; 2046 2047 Opts.DollarIdents = !Opts.AsmPreprocessor; 2048 2049 // Enable [[]] attributes in C++11 and C2x by default. 2050 Opts.DoubleSquareBracketAttributes = Opts.CPlusPlus11 || Opts.C2x; 2051 } 2052 2053 /// Attempt to parse a visibility value out of the given argument. 2054 static Visibility parseVisibility(Arg *arg, ArgList &args, 2055 DiagnosticsEngine &diags) { 2056 StringRef value = arg->getValue(); 2057 if (value == "default") { 2058 return DefaultVisibility; 2059 } else if (value == "hidden" || value == "internal") { 2060 return HiddenVisibility; 2061 } else if (value == "protected") { 2062 // FIXME: diagnose if target does not support protected visibility 2063 return ProtectedVisibility; 2064 } 2065 2066 diags.Report(diag::err_drv_invalid_value) 2067 << arg->getAsString(args) << value; 2068 return DefaultVisibility; 2069 } 2070 2071 /// Check if input file kind and language standard are compatible. 2072 static bool IsInputCompatibleWithStandard(InputKind IK, 2073 const LangStandard &S) { 2074 switch (IK.getLanguage()) { 2075 case Language::Unknown: 2076 case Language::LLVM_IR: 2077 llvm_unreachable("should not parse language flags for this input"); 2078 2079 case Language::C: 2080 case Language::ObjC: 2081 case Language::RenderScript: 2082 return S.getLanguage() == Language::C; 2083 2084 case Language::OpenCL: 2085 return S.getLanguage() == Language::OpenCL; 2086 2087 case Language::CXX: 2088 case Language::ObjCXX: 2089 return S.getLanguage() == Language::CXX; 2090 2091 case Language::CUDA: 2092 // FIXME: What -std= values should be permitted for CUDA compilations? 2093 return S.getLanguage() == Language::CUDA || 2094 S.getLanguage() == Language::CXX; 2095 2096 case Language::HIP: 2097 return S.getLanguage() == Language::CXX || S.getLanguage() == Language::HIP; 2098 2099 case Language::Asm: 2100 // Accept (and ignore) all -std= values. 2101 // FIXME: The -std= value is not ignored; it affects the tokenization 2102 // and preprocessing rules if we're preprocessing this asm input. 2103 return true; 2104 } 2105 2106 llvm_unreachable("unexpected input language"); 2107 } 2108 2109 /// Get language name for given input kind. 2110 static const StringRef GetInputKindName(InputKind IK) { 2111 switch (IK.getLanguage()) { 2112 case Language::C: 2113 return "C"; 2114 case Language::ObjC: 2115 return "Objective-C"; 2116 case Language::CXX: 2117 return "C++"; 2118 case Language::ObjCXX: 2119 return "Objective-C++"; 2120 case Language::OpenCL: 2121 return "OpenCL"; 2122 case Language::CUDA: 2123 return "CUDA"; 2124 case Language::RenderScript: 2125 return "RenderScript"; 2126 case Language::HIP: 2127 return "HIP"; 2128 2129 case Language::Asm: 2130 return "Asm"; 2131 case Language::LLVM_IR: 2132 return "LLVM IR"; 2133 2134 case Language::Unknown: 2135 break; 2136 } 2137 llvm_unreachable("unknown input language"); 2138 } 2139 2140 static void ParseLangArgs(LangOptions &Opts, ArgList &Args, InputKind IK, 2141 const TargetOptions &TargetOpts, 2142 PreprocessorOptions &PPOpts, 2143 DiagnosticsEngine &Diags) { 2144 // FIXME: Cleanup per-file based stuff. 2145 LangStandard::Kind LangStd = LangStandard::lang_unspecified; 2146 if (const Arg *A = Args.getLastArg(OPT_std_EQ)) { 2147 LangStd = LangStandard::getLangKind(A->getValue()); 2148 if (LangStd == LangStandard::lang_unspecified) { 2149 Diags.Report(diag::err_drv_invalid_value) 2150 << A->getAsString(Args) << A->getValue(); 2151 // Report supported standards with short description. 2152 for (unsigned KindValue = 0; 2153 KindValue != LangStandard::lang_unspecified; 2154 ++KindValue) { 2155 const LangStandard &Std = LangStandard::getLangStandardForKind( 2156 static_cast<LangStandard::Kind>(KindValue)); 2157 if (IsInputCompatibleWithStandard(IK, Std)) { 2158 auto Diag = Diags.Report(diag::note_drv_use_standard); 2159 Diag << Std.getName() << Std.getDescription(); 2160 unsigned NumAliases = 0; 2161 #define LANGSTANDARD(id, name, lang, desc, features) 2162 #define LANGSTANDARD_ALIAS(id, alias) \ 2163 if (KindValue == LangStandard::lang_##id) ++NumAliases; 2164 #define LANGSTANDARD_ALIAS_DEPR(id, alias) 2165 #include "clang/Basic/LangStandards.def" 2166 Diag << NumAliases; 2167 #define LANGSTANDARD(id, name, lang, desc, features) 2168 #define LANGSTANDARD_ALIAS(id, alias) \ 2169 if (KindValue == LangStandard::lang_##id) Diag << alias; 2170 #define LANGSTANDARD_ALIAS_DEPR(id, alias) 2171 #include "clang/Basic/LangStandards.def" 2172 } 2173 } 2174 } else { 2175 // Valid standard, check to make sure language and standard are 2176 // compatible. 2177 const LangStandard &Std = LangStandard::getLangStandardForKind(LangStd); 2178 if (!IsInputCompatibleWithStandard(IK, Std)) { 2179 Diags.Report(diag::err_drv_argument_not_allowed_with) 2180 << A->getAsString(Args) << GetInputKindName(IK); 2181 } 2182 } 2183 } 2184 2185 if (const Arg *A = Args.getLastArg(OPT_fcf_protection_EQ)) { 2186 StringRef Name = A->getValue(); 2187 if (Name == "full" || Name == "branch") { 2188 Opts.CFProtectionBranch = 1; 2189 } 2190 } 2191 // -cl-std only applies for OpenCL language standards. 2192 // Override the -std option in this case. 2193 if (const Arg *A = Args.getLastArg(OPT_cl_std_EQ)) { 2194 LangStandard::Kind OpenCLLangStd 2195 = llvm::StringSwitch<LangStandard::Kind>(A->getValue()) 2196 .Cases("cl", "CL", LangStandard::lang_opencl10) 2197 .Cases("cl1.0", "CL1.0", LangStandard::lang_opencl10) 2198 .Cases("cl1.1", "CL1.1", LangStandard::lang_opencl11) 2199 .Cases("cl1.2", "CL1.2", LangStandard::lang_opencl12) 2200 .Cases("cl2.0", "CL2.0", LangStandard::lang_opencl20) 2201 .Cases("cl3.0", "CL3.0", LangStandard::lang_opencl30) 2202 .Cases("clc++", "CLC++", LangStandard::lang_openclcpp) 2203 .Default(LangStandard::lang_unspecified); 2204 2205 if (OpenCLLangStd == LangStandard::lang_unspecified) { 2206 Diags.Report(diag::err_drv_invalid_value) 2207 << A->getAsString(Args) << A->getValue(); 2208 } 2209 else 2210 LangStd = OpenCLLangStd; 2211 } 2212 2213 Opts.SYCLIsDevice = Opts.SYCL && Args.hasArg(options::OPT_fsycl_is_device); 2214 2215 llvm::Triple T(TargetOpts.Triple); 2216 CompilerInvocation::setLangDefaults(Opts, IK, T, PPOpts, LangStd); 2217 2218 // -cl-strict-aliasing needs to emit diagnostic in the case where CL > 1.0. 2219 // This option should be deprecated for CL > 1.0 because 2220 // this option was added for compatibility with OpenCL 1.0. 2221 if (Args.getLastArg(OPT_cl_strict_aliasing) 2222 && Opts.OpenCLVersion > 100) { 2223 Diags.Report(diag::warn_option_invalid_ocl_version) 2224 << Opts.getOpenCLVersionTuple().getAsString() 2225 << Args.getLastArg(OPT_cl_strict_aliasing)->getAsString(Args); 2226 } 2227 2228 // We abuse '-f[no-]gnu-keywords' to force overriding all GNU-extension 2229 // keywords. This behavior is provided by GCC's poorly named '-fasm' flag, 2230 // while a subset (the non-C++ GNU keywords) is provided by GCC's 2231 // '-fgnu-keywords'. Clang conflates the two for simplicity under the single 2232 // name, as it doesn't seem a useful distinction. 2233 Opts.GNUKeywords = Args.hasFlag(OPT_fgnu_keywords, OPT_fno_gnu_keywords, 2234 Opts.GNUKeywords); 2235 2236 Opts.Digraphs = Args.hasFlag(OPT_fdigraphs, OPT_fno_digraphs, Opts.Digraphs); 2237 2238 if (Args.hasArg(OPT_fno_operator_names)) 2239 Opts.CXXOperatorNames = 0; 2240 2241 if (Opts.CUDAIsDevice && Args.hasArg(OPT_fcuda_approx_transcendentals)) 2242 Opts.CUDADeviceApproxTranscendentals = 1; 2243 2244 if (Args.hasArg(OPT_fgpu_allow_device_init)) { 2245 if (Opts.HIP) 2246 Opts.GPUAllowDeviceInit = 1; 2247 else 2248 Diags.Report(diag::warn_ignored_hip_only_option) 2249 << Args.getLastArg(OPT_fgpu_allow_device_init)->getAsString(Args); 2250 } 2251 if (Opts.HIP) 2252 Opts.GPUMaxThreadsPerBlock = getLastArgIntValue( 2253 Args, OPT_gpu_max_threads_per_block_EQ, Opts.GPUMaxThreadsPerBlock); 2254 else if (Args.hasArg(OPT_gpu_max_threads_per_block_EQ)) 2255 Diags.Report(diag::warn_ignored_hip_only_option) 2256 << Args.getLastArg(OPT_gpu_max_threads_per_block_EQ)->getAsString(Args); 2257 2258 if (Opts.ObjC) { 2259 if (Arg *arg = Args.getLastArg(OPT_fobjc_runtime_EQ)) { 2260 StringRef value = arg->getValue(); 2261 if (Opts.ObjCRuntime.tryParse(value)) 2262 Diags.Report(diag::err_drv_unknown_objc_runtime) << value; 2263 } 2264 2265 if (Args.hasArg(OPT_fobjc_gc_only)) 2266 Opts.setGC(LangOptions::GCOnly); 2267 else if (Args.hasArg(OPT_fobjc_gc)) 2268 Opts.setGC(LangOptions::HybridGC); 2269 else if (Args.hasArg(OPT_fobjc_arc)) { 2270 Opts.ObjCAutoRefCount = 1; 2271 if (!Opts.ObjCRuntime.allowsARC()) 2272 Diags.Report(diag::err_arc_unsupported_on_runtime); 2273 } 2274 2275 // ObjCWeakRuntime tracks whether the runtime supports __weak, not 2276 // whether the feature is actually enabled. This is predominantly 2277 // determined by -fobjc-runtime, but we allow it to be overridden 2278 // from the command line for testing purposes. 2279 if (Args.hasArg(OPT_fobjc_runtime_has_weak)) 2280 Opts.ObjCWeakRuntime = 1; 2281 else 2282 Opts.ObjCWeakRuntime = Opts.ObjCRuntime.allowsWeak(); 2283 2284 // ObjCWeak determines whether __weak is actually enabled. 2285 // Note that we allow -fno-objc-weak to disable this even in ARC mode. 2286 if (auto weakArg = Args.getLastArg(OPT_fobjc_weak, OPT_fno_objc_weak)) { 2287 if (!weakArg->getOption().matches(OPT_fobjc_weak)) { 2288 assert(!Opts.ObjCWeak); 2289 } else if (Opts.getGC() != LangOptions::NonGC) { 2290 Diags.Report(diag::err_objc_weak_with_gc); 2291 } else if (!Opts.ObjCWeakRuntime) { 2292 Diags.Report(diag::err_objc_weak_unsupported); 2293 } else { 2294 Opts.ObjCWeak = 1; 2295 } 2296 } else if (Opts.ObjCAutoRefCount) { 2297 Opts.ObjCWeak = Opts.ObjCWeakRuntime; 2298 } 2299 2300 if (Args.hasArg(OPT_fobjc_subscripting_legacy_runtime)) 2301 Opts.ObjCSubscriptingLegacyRuntime = 2302 (Opts.ObjCRuntime.getKind() == ObjCRuntime::FragileMacOSX); 2303 } 2304 2305 if (Arg *A = Args.getLastArg(options::OPT_fgnuc_version_EQ)) { 2306 // Check that the version has 1 to 3 components and the minor and patch 2307 // versions fit in two decimal digits. 2308 VersionTuple GNUCVer; 2309 bool Invalid = GNUCVer.tryParse(A->getValue()); 2310 unsigned Major = GNUCVer.getMajor(); 2311 unsigned Minor = GNUCVer.getMinor().getValueOr(0); 2312 unsigned Patch = GNUCVer.getSubminor().getValueOr(0); 2313 if (Invalid || GNUCVer.getBuild() || Minor >= 100 || Patch >= 100) { 2314 Diags.Report(diag::err_drv_invalid_value) 2315 << A->getAsString(Args) << A->getValue(); 2316 } 2317 Opts.GNUCVersion = Major * 100 * 100 + Minor * 100 + Patch; 2318 } 2319 2320 if (Args.hasArg(OPT_fgnu89_inline)) { 2321 if (Opts.CPlusPlus) 2322 Diags.Report(diag::err_drv_argument_not_allowed_with) 2323 << "-fgnu89-inline" << GetInputKindName(IK); 2324 else 2325 Opts.GNUInline = 1; 2326 } 2327 2328 // The type-visibility mode defaults to the value-visibility mode. 2329 if (Arg *typeVisOpt = Args.getLastArg(OPT_ftype_visibility)) { 2330 Opts.setTypeVisibilityMode(parseVisibility(typeVisOpt, Args, Diags)); 2331 } else { 2332 Opts.setTypeVisibilityMode(Opts.getValueVisibilityMode()); 2333 } 2334 2335 if (Args.hasArg(OPT_fvisibility_from_dllstorageclass)) { 2336 Opts.VisibilityFromDLLStorageClass = 1; 2337 2338 // Translate dllexport defintions to default visibility, by default. 2339 if (Arg *O = Args.getLastArg(OPT_fvisibility_dllexport_EQ)) 2340 Opts.setDLLExportVisibility(parseVisibility(O, Args, Diags)); 2341 else 2342 Opts.setDLLExportVisibility(DefaultVisibility); 2343 2344 // Translate defintions without an explict DLL storage class to hidden 2345 // visibility, by default. 2346 if (Arg *O = Args.getLastArg(OPT_fvisibility_nodllstorageclass_EQ)) 2347 Opts.setNoDLLStorageClassVisibility(parseVisibility(O, Args, Diags)); 2348 else 2349 Opts.setNoDLLStorageClassVisibility(HiddenVisibility); 2350 2351 // Translate dllimport external declarations to default visibility, by 2352 // default. 2353 if (Arg *O = Args.getLastArg(OPT_fvisibility_externs_dllimport_EQ)) 2354 Opts.setExternDeclDLLImportVisibility(parseVisibility(O, Args, Diags)); 2355 else 2356 Opts.setExternDeclDLLImportVisibility(DefaultVisibility); 2357 2358 // Translate external declarations without an explicit DLL storage class 2359 // to hidden visibility, by default. 2360 if (Arg *O = Args.getLastArg(OPT_fvisibility_externs_nodllstorageclass_EQ)) 2361 Opts.setExternDeclNoDLLStorageClassVisibility( 2362 parseVisibility(O, Args, Diags)); 2363 else 2364 Opts.setExternDeclNoDLLStorageClassVisibility(HiddenVisibility); 2365 } 2366 2367 if (Args.hasArg(OPT_ftrapv)) { 2368 Opts.setSignedOverflowBehavior(LangOptions::SOB_Trapping); 2369 // Set the handler, if one is specified. 2370 Opts.OverflowHandler = 2371 std::string(Args.getLastArgValue(OPT_ftrapv_handler)); 2372 } 2373 else if (Args.hasArg(OPT_fwrapv)) 2374 Opts.setSignedOverflowBehavior(LangOptions::SOB_Defined); 2375 2376 Opts.MicrosoftExt = Opts.MSVCCompat || Args.hasArg(OPT_fms_extensions); 2377 Opts.AsmBlocks = Args.hasArg(OPT_fasm_blocks) || Opts.MicrosoftExt; 2378 Opts.MSCompatibilityVersion = 0; 2379 if (const Arg *A = Args.getLastArg(OPT_fms_compatibility_version)) { 2380 VersionTuple VT; 2381 if (VT.tryParse(A->getValue())) 2382 Diags.Report(diag::err_drv_invalid_value) << A->getAsString(Args) 2383 << A->getValue(); 2384 Opts.MSCompatibilityVersion = VT.getMajor() * 10000000 + 2385 VT.getMinor().getValueOr(0) * 100000 + 2386 VT.getSubminor().getValueOr(0); 2387 } 2388 2389 // Mimicking gcc's behavior, trigraphs are only enabled if -trigraphs 2390 // is specified, or -std is set to a conforming mode. 2391 // Trigraphs are disabled by default in c++1z onwards. 2392 // For z/OS, trigraphs are enabled by default (without regard to the above). 2393 Opts.Trigraphs = 2394 (!Opts.GNUMode && !Opts.MSVCCompat && !Opts.CPlusPlus17) || T.isOSzOS(); 2395 Opts.Trigraphs = 2396 Args.hasFlag(OPT_ftrigraphs, OPT_fno_trigraphs, Opts.Trigraphs); 2397 2398 Opts.DollarIdents = Args.hasFlag(OPT_fdollars_in_identifiers, 2399 OPT_fno_dollars_in_identifiers, 2400 Opts.DollarIdents); 2401 2402 // -ffixed-point 2403 Opts.FixedPoint = 2404 Args.hasFlag(OPT_ffixed_point, OPT_fno_fixed_point, /*Default=*/false) && 2405 !Opts.CPlusPlus; 2406 Opts.PaddingOnUnsignedFixedPoint = 2407 Args.hasFlag(OPT_fpadding_on_unsigned_fixed_point, 2408 OPT_fno_padding_on_unsigned_fixed_point, 2409 /*Default=*/false) && 2410 Opts.FixedPoint; 2411 2412 Opts.RTTI = Opts.CPlusPlus && !Args.hasArg(OPT_fno_rtti); 2413 Opts.RTTIData = Opts.RTTI && !Args.hasArg(OPT_fno_rtti_data); 2414 Opts.Blocks = Args.hasArg(OPT_fblocks) || (Opts.OpenCL 2415 && Opts.OpenCLVersion == 200); 2416 Opts.Coroutines = Opts.CPlusPlus20 || Args.hasArg(OPT_fcoroutines_ts); 2417 2418 Opts.ConvergentFunctions = Opts.OpenCL || (Opts.CUDA && Opts.CUDAIsDevice) || 2419 Opts.SYCLIsDevice || 2420 Args.hasArg(OPT_fconvergent_functions); 2421 2422 Opts.DoubleSquareBracketAttributes = 2423 Args.hasFlag(OPT_fdouble_square_bracket_attributes, 2424 OPT_fno_double_square_bracket_attributes, 2425 Opts.DoubleSquareBracketAttributes); 2426 2427 Opts.CPlusPlusModules = Opts.CPlusPlus20; 2428 Opts.Modules = 2429 Args.hasArg(OPT_fmodules) || Opts.ModulesTS || Opts.CPlusPlusModules; 2430 Opts.ModulesDeclUse = 2431 Args.hasArg(OPT_fmodules_decluse) || Opts.ModulesStrictDeclUse; 2432 // FIXME: We only need this in C++ modules / Modules TS if we might textually 2433 // enter a different module (eg, when building a header unit). 2434 Opts.ModulesLocalVisibility = 2435 Args.hasArg(OPT_fmodules_local_submodule_visibility) || Opts.ModulesTS || 2436 Opts.CPlusPlusModules; 2437 Opts.ModulesSearchAll = Opts.Modules && 2438 !Args.hasArg(OPT_fno_modules_search_all) && 2439 Args.hasArg(OPT_fmodules_search_all); 2440 Opts.CharIsSigned = Opts.OpenCL || !Args.hasArg(OPT_fno_signed_char); 2441 Opts.WChar = Opts.CPlusPlus && !Args.hasArg(OPT_fno_wchar); 2442 Opts.Char8 = Args.hasFlag(OPT_fchar8__t, OPT_fno_char8__t, Opts.CPlusPlus20); 2443 Opts.NoBuiltin = Args.hasArg(OPT_fno_builtin) || Opts.Freestanding; 2444 if (!Opts.NoBuiltin) 2445 getAllNoBuiltinFuncValues(Args, Opts.NoBuiltinFuncs); 2446 Opts.AlignedAllocation = 2447 Args.hasFlag(OPT_faligned_allocation, OPT_fno_aligned_allocation, 2448 Opts.AlignedAllocation); 2449 Opts.AlignedAllocationUnavailable = 2450 Opts.AlignedAllocation && Args.hasArg(OPT_aligned_alloc_unavailable); 2451 if (Args.hasArg(OPT_fconcepts_ts)) 2452 Diags.Report(diag::warn_fe_concepts_ts_flag); 2453 Opts.MathErrno = !Opts.OpenCL && Args.hasArg(OPT_fmath_errno); 2454 Opts.LongDoubleSize = Args.hasArg(OPT_mlong_double_128) 2455 ? 128 2456 : Args.hasArg(OPT_mlong_double_64) ? 64 : 0; 2457 Opts.EnableAIXExtendedAltivecABI = Args.hasArg(OPT_mabi_EQ_vec_extabi); 2458 Opts.PICLevel = getLastArgIntValue(Args, OPT_pic_level, 0, Diags); 2459 Opts.DumpRecordLayouts = Opts.DumpRecordLayoutsSimple 2460 || Args.hasArg(OPT_fdump_record_layouts); 2461 if (Opts.FastRelaxedMath) 2462 Opts.setDefaultFPContractMode(LangOptions::FPM_Fast); 2463 Opts.XLPragmaPack = Args.hasArg(OPT_fxl_pragma_pack); 2464 llvm::sort(Opts.ModuleFeatures); 2465 Opts.NativeHalfType |= Args.hasArg(OPT_fnative_half_type); 2466 Opts.NativeHalfArgsAndReturns |= Args.hasArg(OPT_fnative_half_arguments_and_returns); 2467 // Enable HalfArgsAndReturns if present in Args or if NativeHalfArgsAndReturns 2468 // is enabled. 2469 Opts.HalfArgsAndReturns = Args.hasArg(OPT_fallow_half_arguments_and_returns) 2470 | Opts.NativeHalfArgsAndReturns; 2471 2472 Opts.ArmSveVectorBits = 2473 getLastArgIntValue(Args, options::OPT_msve_vector_bits_EQ, 0, Diags); 2474 2475 // __declspec is enabled by default for the PS4 by the driver, and also 2476 // enabled for Microsoft Extensions or Borland Extensions, here. 2477 // 2478 // FIXME: __declspec is also currently enabled for CUDA, but isn't really a 2479 // CUDA extension. However, it is required for supporting 2480 // __clang_cuda_builtin_vars.h, which uses __declspec(property). Once that has 2481 // been rewritten in terms of something more generic, remove the Opts.CUDA 2482 // term here. 2483 Opts.DeclSpecKeyword = 2484 Args.hasFlag(OPT_fdeclspec, OPT_fno_declspec, 2485 (Opts.MicrosoftExt || Opts.Borland || Opts.CUDA)); 2486 2487 // -mrtd option 2488 if (Arg *A = Args.getLastArg(OPT_mrtd)) { 2489 if (Opts.getDefaultCallingConv() != LangOptions::DCC_None) 2490 Diags.Report(diag::err_drv_argument_not_allowed_with) 2491 << A->getSpelling() << "-fdefault-calling-conv"; 2492 else { 2493 llvm::Triple T(TargetOpts.Triple); 2494 if (T.getArch() != llvm::Triple::x86) 2495 Diags.Report(diag::err_drv_argument_not_allowed_with) 2496 << A->getSpelling() << T.getTriple(); 2497 else 2498 Opts.setDefaultCallingConv(LangOptions::DCC_StdCall); 2499 } 2500 } 2501 2502 // Check if -fopenmp-simd is specified. 2503 bool IsSimdSpecified = 2504 Args.hasFlag(options::OPT_fopenmp_simd, options::OPT_fno_openmp_simd, 2505 /*Default=*/false); 2506 Opts.OpenMPSimd = !Opts.OpenMP && IsSimdSpecified; 2507 Opts.OpenMPUseTLS = 2508 Opts.OpenMP && !Args.hasArg(options::OPT_fnoopenmp_use_tls); 2509 Opts.OpenMPIsDevice = 2510 Opts.OpenMP && Args.hasArg(options::OPT_fopenmp_is_device); 2511 Opts.OpenMPIRBuilder = 2512 Opts.OpenMP && Args.hasArg(options::OPT_fopenmp_enable_irbuilder); 2513 bool IsTargetSpecified = 2514 Opts.OpenMPIsDevice || Args.hasArg(options::OPT_fopenmp_targets_EQ); 2515 2516 if (Opts.OpenMP || Opts.OpenMPSimd) { 2517 if (int Version = getLastArgIntValue( 2518 Args, OPT_fopenmp_version_EQ, 2519 (IsSimdSpecified || IsTargetSpecified) ? 50 : Opts.OpenMP, Diags)) 2520 Opts.OpenMP = Version; 2521 // Provide diagnostic when a given target is not expected to be an OpenMP 2522 // device or host. 2523 if (!Opts.OpenMPIsDevice) { 2524 switch (T.getArch()) { 2525 default: 2526 break; 2527 // Add unsupported host targets here: 2528 case llvm::Triple::nvptx: 2529 case llvm::Triple::nvptx64: 2530 Diags.Report(diag::err_drv_omp_host_target_not_supported) 2531 << TargetOpts.Triple; 2532 break; 2533 } 2534 } 2535 } 2536 2537 // Set the flag to prevent the implementation from emitting device exception 2538 // handling code for those requiring so. 2539 if ((Opts.OpenMPIsDevice && (T.isNVPTX() || T.isAMDGCN())) || 2540 Opts.OpenCLCPlusPlus) { 2541 Opts.Exceptions = 0; 2542 Opts.CXXExceptions = 0; 2543 } 2544 if (Opts.OpenMPIsDevice && T.isNVPTX()) { 2545 Opts.OpenMPCUDANumSMs = 2546 getLastArgIntValue(Args, options::OPT_fopenmp_cuda_number_of_sm_EQ, 2547 Opts.OpenMPCUDANumSMs, Diags); 2548 Opts.OpenMPCUDABlocksPerSM = 2549 getLastArgIntValue(Args, options::OPT_fopenmp_cuda_blocks_per_sm_EQ, 2550 Opts.OpenMPCUDABlocksPerSM, Diags); 2551 Opts.OpenMPCUDAReductionBufNum = getLastArgIntValue( 2552 Args, options::OPT_fopenmp_cuda_teams_reduction_recs_num_EQ, 2553 Opts.OpenMPCUDAReductionBufNum, Diags); 2554 } 2555 2556 // Get the OpenMP target triples if any. 2557 if (Arg *A = Args.getLastArg(options::OPT_fopenmp_targets_EQ)) { 2558 enum ArchPtrSize { Arch16Bit, Arch32Bit, Arch64Bit }; 2559 auto getArchPtrSize = [](const llvm::Triple &T) { 2560 if (T.isArch16Bit()) 2561 return Arch16Bit; 2562 if (T.isArch32Bit()) 2563 return Arch32Bit; 2564 assert(T.isArch64Bit() && "Expected 64-bit architecture"); 2565 return Arch64Bit; 2566 }; 2567 2568 for (unsigned i = 0; i < A->getNumValues(); ++i) { 2569 llvm::Triple TT(A->getValue(i)); 2570 2571 if (TT.getArch() == llvm::Triple::UnknownArch || 2572 !(TT.getArch() == llvm::Triple::aarch64 || TT.isPPC() || 2573 TT.getArch() == llvm::Triple::nvptx || 2574 TT.getArch() == llvm::Triple::nvptx64 || 2575 TT.getArch() == llvm::Triple::amdgcn || 2576 TT.getArch() == llvm::Triple::x86 || 2577 TT.getArch() == llvm::Triple::x86_64)) 2578 Diags.Report(diag::err_drv_invalid_omp_target) << A->getValue(i); 2579 else if (getArchPtrSize(T) != getArchPtrSize(TT)) 2580 Diags.Report(diag::err_drv_incompatible_omp_arch) 2581 << A->getValue(i) << T.str(); 2582 else 2583 Opts.OMPTargetTriples.push_back(TT); 2584 } 2585 } 2586 2587 // Get OpenMP host file path if any and report if a non existent file is 2588 // found 2589 if (Arg *A = Args.getLastArg(options::OPT_fopenmp_host_ir_file_path)) { 2590 Opts.OMPHostIRFile = A->getValue(); 2591 if (!llvm::sys::fs::exists(Opts.OMPHostIRFile)) 2592 Diags.Report(diag::err_drv_omp_host_ir_file_not_found) 2593 << Opts.OMPHostIRFile; 2594 } 2595 2596 // Set CUDA mode for OpenMP target NVPTX/AMDGCN if specified in options 2597 Opts.OpenMPCUDAMode = Opts.OpenMPIsDevice && (T.isNVPTX() || T.isAMDGCN()) && 2598 Args.hasArg(options::OPT_fopenmp_cuda_mode); 2599 2600 // Set CUDA support for parallel execution of target regions for OpenMP target 2601 // NVPTX/AMDGCN if specified in options. 2602 Opts.OpenMPCUDATargetParallel = 2603 Opts.OpenMPIsDevice && (T.isNVPTX() || T.isAMDGCN()) && 2604 Args.hasArg(options::OPT_fopenmp_cuda_parallel_target_regions); 2605 2606 // Set CUDA mode for OpenMP target NVPTX/AMDGCN if specified in options 2607 Opts.OpenMPCUDAForceFullRuntime = 2608 Opts.OpenMPIsDevice && (T.isNVPTX() || T.isAMDGCN()) && 2609 Args.hasArg(options::OPT_fopenmp_cuda_force_full_runtime); 2610 2611 // Record whether the __DEPRECATED define was requested. 2612 Opts.Deprecated = Args.hasFlag(OPT_fdeprecated_macro, 2613 OPT_fno_deprecated_macro, 2614 Opts.Deprecated); 2615 2616 // FIXME: Eliminate this dependency. 2617 unsigned Opt = getOptimizationLevel(Args, IK, Diags), 2618 OptSize = getOptimizationLevelSize(Args); 2619 Opts.Optimize = Opt != 0; 2620 Opts.OptimizeSize = OptSize != 0; 2621 2622 // This is the __NO_INLINE__ define, which just depends on things like the 2623 // optimization level and -fno-inline, not actually whether the backend has 2624 // inlining enabled. 2625 Opts.NoInlineDefine = !Opts.Optimize; 2626 if (Arg *InlineArg = Args.getLastArg( 2627 options::OPT_finline_functions, options::OPT_finline_hint_functions, 2628 options::OPT_fno_inline_functions, options::OPT_fno_inline)) 2629 if (InlineArg->getOption().matches(options::OPT_fno_inline)) 2630 Opts.NoInlineDefine = true; 2631 2632 if (Arg *A = Args.getLastArg(OPT_ffp_contract)) { 2633 StringRef Val = A->getValue(); 2634 if (Val == "fast") 2635 Opts.setDefaultFPContractMode(LangOptions::FPM_Fast); 2636 else if (Val == "on") 2637 Opts.setDefaultFPContractMode(LangOptions::FPM_On); 2638 else if (Val == "off") 2639 Opts.setDefaultFPContractMode(LangOptions::FPM_Off); 2640 else if (Val == "fast-honor-pragmas") 2641 Opts.setDefaultFPContractMode(LangOptions::FPM_FastHonorPragmas); 2642 else 2643 Diags.Report(diag::err_drv_invalid_value) << A->getAsString(Args) << Val; 2644 } 2645 2646 LangOptions::FPExceptionModeKind FPEB = LangOptions::FPE_Ignore; 2647 if (Arg *A = Args.getLastArg(OPT_ffp_exception_behavior_EQ)) { 2648 StringRef Val = A->getValue(); 2649 if (Val.equals("ignore")) 2650 FPEB = LangOptions::FPE_Ignore; 2651 else if (Val.equals("maytrap")) 2652 FPEB = LangOptions::FPE_MayTrap; 2653 else if (Val.equals("strict")) 2654 FPEB = LangOptions::FPE_Strict; 2655 else 2656 Diags.Report(diag::err_drv_invalid_value) << A->getAsString(Args) << Val; 2657 } 2658 Opts.setFPExceptionMode(FPEB); 2659 2660 // Parse -fsanitize= arguments. 2661 parseSanitizerKinds("-fsanitize=", Args.getAllArgValues(OPT_fsanitize_EQ), 2662 Diags, Opts.Sanitize); 2663 std::vector<std::string> systemBlacklists = 2664 Args.getAllArgValues(OPT_fsanitize_system_blacklist); 2665 Opts.SanitizerBlacklistFiles.insert(Opts.SanitizerBlacklistFiles.end(), 2666 systemBlacklists.begin(), 2667 systemBlacklists.end()); 2668 2669 if (Arg *A = Args.getLastArg(OPT_fclang_abi_compat_EQ)) { 2670 Opts.setClangABICompat(LangOptions::ClangABI::Latest); 2671 2672 StringRef Ver = A->getValue(); 2673 std::pair<StringRef, StringRef> VerParts = Ver.split('.'); 2674 unsigned Major, Minor = 0; 2675 2676 // Check the version number is valid: either 3.x (0 <= x <= 9) or 2677 // y or y.0 (4 <= y <= current version). 2678 if (!VerParts.first.startswith("0") && 2679 !VerParts.first.getAsInteger(10, Major) && 2680 3 <= Major && Major <= CLANG_VERSION_MAJOR && 2681 (Major == 3 ? VerParts.second.size() == 1 && 2682 !VerParts.second.getAsInteger(10, Minor) 2683 : VerParts.first.size() == Ver.size() || 2684 VerParts.second == "0")) { 2685 // Got a valid version number. 2686 if (Major == 3 && Minor <= 8) 2687 Opts.setClangABICompat(LangOptions::ClangABI::Ver3_8); 2688 else if (Major <= 4) 2689 Opts.setClangABICompat(LangOptions::ClangABI::Ver4); 2690 else if (Major <= 6) 2691 Opts.setClangABICompat(LangOptions::ClangABI::Ver6); 2692 else if (Major <= 7) 2693 Opts.setClangABICompat(LangOptions::ClangABI::Ver7); 2694 else if (Major <= 9) 2695 Opts.setClangABICompat(LangOptions::ClangABI::Ver9); 2696 else if (Major <= 11) 2697 Opts.setClangABICompat(LangOptions::ClangABI::Ver11); 2698 } else if (Ver != "latest") { 2699 Diags.Report(diag::err_drv_invalid_value) 2700 << A->getAsString(Args) << A->getValue(); 2701 } 2702 } 2703 2704 if (Arg *A = Args.getLastArg(OPT_msign_return_address_EQ)) { 2705 StringRef SignScope = A->getValue(); 2706 2707 if (SignScope.equals_lower("none")) 2708 Opts.setSignReturnAddressScope( 2709 LangOptions::SignReturnAddressScopeKind::None); 2710 else if (SignScope.equals_lower("all")) 2711 Opts.setSignReturnAddressScope( 2712 LangOptions::SignReturnAddressScopeKind::All); 2713 else if (SignScope.equals_lower("non-leaf")) 2714 Opts.setSignReturnAddressScope( 2715 LangOptions::SignReturnAddressScopeKind::NonLeaf); 2716 else 2717 Diags.Report(diag::err_drv_invalid_value) 2718 << A->getAsString(Args) << SignScope; 2719 2720 if (Arg *A = Args.getLastArg(OPT_msign_return_address_key_EQ)) { 2721 StringRef SignKey = A->getValue(); 2722 if (!SignScope.empty() && !SignKey.empty()) { 2723 if (SignKey.equals_lower("a_key")) 2724 Opts.setSignReturnAddressKey( 2725 LangOptions::SignReturnAddressKeyKind::AKey); 2726 else if (SignKey.equals_lower("b_key")) 2727 Opts.setSignReturnAddressKey( 2728 LangOptions::SignReturnAddressKeyKind::BKey); 2729 else 2730 Diags.Report(diag::err_drv_invalid_value) 2731 << A->getAsString(Args) << SignKey; 2732 } 2733 } 2734 } 2735 2736 std::string ThreadModel = 2737 std::string(Args.getLastArgValue(OPT_mthread_model, "posix")); 2738 if (ThreadModel != "posix" && ThreadModel != "single") 2739 Diags.Report(diag::err_drv_invalid_value) 2740 << Args.getLastArg(OPT_mthread_model)->getAsString(Args) << ThreadModel; 2741 Opts.setThreadModel( 2742 llvm::StringSwitch<LangOptions::ThreadModelKind>(ThreadModel) 2743 .Case("posix", LangOptions::ThreadModelKind::POSIX) 2744 .Case("single", LangOptions::ThreadModelKind::Single)); 2745 } 2746 2747 static bool isStrictlyPreprocessorAction(frontend::ActionKind Action) { 2748 switch (Action) { 2749 case frontend::ASTDeclList: 2750 case frontend::ASTDump: 2751 case frontend::ASTPrint: 2752 case frontend::ASTView: 2753 case frontend::EmitAssembly: 2754 case frontend::EmitBC: 2755 case frontend::EmitHTML: 2756 case frontend::EmitLLVM: 2757 case frontend::EmitLLVMOnly: 2758 case frontend::EmitCodeGenOnly: 2759 case frontend::EmitObj: 2760 case frontend::FixIt: 2761 case frontend::GenerateModule: 2762 case frontend::GenerateModuleInterface: 2763 case frontend::GenerateHeaderModule: 2764 case frontend::GeneratePCH: 2765 case frontend::GenerateInterfaceStubs: 2766 case frontend::ParseSyntaxOnly: 2767 case frontend::ModuleFileInfo: 2768 case frontend::VerifyPCH: 2769 case frontend::PluginAction: 2770 case frontend::RewriteObjC: 2771 case frontend::RewriteTest: 2772 case frontend::RunAnalysis: 2773 case frontend::TemplightDump: 2774 case frontend::MigrateSource: 2775 return false; 2776 2777 case frontend::DumpCompilerOptions: 2778 case frontend::DumpRawTokens: 2779 case frontend::DumpTokens: 2780 case frontend::InitOnly: 2781 case frontend::PrintPreamble: 2782 case frontend::PrintPreprocessedInput: 2783 case frontend::RewriteMacros: 2784 case frontend::RunPreprocessorOnly: 2785 case frontend::PrintDependencyDirectivesSourceMinimizerOutput: 2786 return true; 2787 } 2788 llvm_unreachable("invalid frontend action"); 2789 } 2790 2791 static void ParsePreprocessorArgs(PreprocessorOptions &Opts, ArgList &Args, 2792 DiagnosticsEngine &Diags, 2793 frontend::ActionKind Action) { 2794 Opts.PCHWithHdrStop = Args.hasArg(OPT_pch_through_hdrstop_create) || 2795 Args.hasArg(OPT_pch_through_hdrstop_use); 2796 Opts.AllowPCHWithCompilerErrors = 2797 Args.hasArg(OPT_fallow_pch_with_errors, OPT_fallow_pcm_with_errors); 2798 2799 for (const auto *A : Args.filtered(OPT_error_on_deserialized_pch_decl)) 2800 Opts.DeserializedPCHDeclsToErrorOn.insert(A->getValue()); 2801 2802 for (const auto &A : Args.getAllArgValues(OPT_fmacro_prefix_map_EQ)) { 2803 auto Split = StringRef(A).split('='); 2804 Opts.MacroPrefixMap.insert( 2805 {std::string(Split.first), std::string(Split.second)}); 2806 } 2807 2808 if (const Arg *A = Args.getLastArg(OPT_preamble_bytes_EQ)) { 2809 StringRef Value(A->getValue()); 2810 size_t Comma = Value.find(','); 2811 unsigned Bytes = 0; 2812 unsigned EndOfLine = 0; 2813 2814 if (Comma == StringRef::npos || 2815 Value.substr(0, Comma).getAsInteger(10, Bytes) || 2816 Value.substr(Comma + 1).getAsInteger(10, EndOfLine)) 2817 Diags.Report(diag::err_drv_preamble_format); 2818 else { 2819 Opts.PrecompiledPreambleBytes.first = Bytes; 2820 Opts.PrecompiledPreambleBytes.second = (EndOfLine != 0); 2821 } 2822 } 2823 2824 // Add the __CET__ macro if a CFProtection option is set. 2825 if (const Arg *A = Args.getLastArg(OPT_fcf_protection_EQ)) { 2826 StringRef Name = A->getValue(); 2827 if (Name == "branch") 2828 Opts.addMacroDef("__CET__=1"); 2829 else if (Name == "return") 2830 Opts.addMacroDef("__CET__=2"); 2831 else if (Name == "full") 2832 Opts.addMacroDef("__CET__=3"); 2833 } 2834 2835 // Add macros from the command line. 2836 for (const auto *A : Args.filtered(OPT_D, OPT_U)) { 2837 if (A->getOption().matches(OPT_D)) 2838 Opts.addMacroDef(A->getValue()); 2839 else 2840 Opts.addMacroUndef(A->getValue()); 2841 } 2842 2843 // Add the ordered list of -includes. 2844 for (const auto *A : Args.filtered(OPT_include)) 2845 Opts.Includes.emplace_back(A->getValue()); 2846 2847 for (const auto *A : Args.filtered(OPT_chain_include)) 2848 Opts.ChainedIncludes.emplace_back(A->getValue()); 2849 2850 for (const auto *A : Args.filtered(OPT_remap_file)) { 2851 std::pair<StringRef, StringRef> Split = StringRef(A->getValue()).split(';'); 2852 2853 if (Split.second.empty()) { 2854 Diags.Report(diag::err_drv_invalid_remap_file) << A->getAsString(Args); 2855 continue; 2856 } 2857 2858 Opts.addRemappedFile(Split.first, Split.second); 2859 } 2860 2861 // Always avoid lexing editor placeholders when we're just running the 2862 // preprocessor as we never want to emit the 2863 // "editor placeholder in source file" error in PP only mode. 2864 if (isStrictlyPreprocessorAction(Action)) 2865 Opts.LexEditorPlaceholders = false; 2866 } 2867 2868 static void ParsePreprocessorOutputArgs(PreprocessorOutputOptions &Opts, 2869 ArgList &Args, 2870 frontend::ActionKind Action) { 2871 if (isStrictlyPreprocessorAction(Action)) 2872 Opts.ShowCPP = !Args.hasArg(OPT_dM); 2873 else 2874 Opts.ShowCPP = 0; 2875 2876 Opts.ShowMacros = Args.hasArg(OPT_dM) || Args.hasArg(OPT_dD); 2877 } 2878 2879 static void ParseTargetArgs(TargetOptions &Opts, ArgList &Args, 2880 DiagnosticsEngine &Diags) { 2881 Opts.AllowAMDGPUUnsafeFPAtomics = 2882 Args.hasFlag(options::OPT_munsafe_fp_atomics, 2883 options::OPT_mno_unsafe_fp_atomics, false); 2884 if (Arg *A = Args.getLastArg(options::OPT_target_sdk_version_EQ)) { 2885 llvm::VersionTuple Version; 2886 if (Version.tryParse(A->getValue())) 2887 Diags.Report(diag::err_drv_invalid_value) 2888 << A->getAsString(Args) << A->getValue(); 2889 else 2890 Opts.SDKVersion = Version; 2891 } 2892 } 2893 2894 bool CompilerInvocation::CreateFromArgs(CompilerInvocation &Res, 2895 ArrayRef<const char *> CommandLineArgs, 2896 DiagnosticsEngine &Diags, 2897 const char *Argv0) { 2898 bool Success = true; 2899 2900 // Parse the arguments. 2901 const OptTable &Opts = getDriverOptTable(); 2902 const unsigned IncludedFlagsBitmask = options::CC1Option; 2903 unsigned MissingArgIndex, MissingArgCount; 2904 InputArgList Args = Opts.ParseArgs(CommandLineArgs, MissingArgIndex, 2905 MissingArgCount, IncludedFlagsBitmask); 2906 LangOptions &LangOpts = *Res.getLangOpts(); 2907 2908 // Check for missing argument error. 2909 if (MissingArgCount) { 2910 Diags.Report(diag::err_drv_missing_argument) 2911 << Args.getArgString(MissingArgIndex) << MissingArgCount; 2912 Success = false; 2913 } 2914 2915 // Issue errors on unknown arguments. 2916 for (const auto *A : Args.filtered(OPT_UNKNOWN)) { 2917 auto ArgString = A->getAsString(Args); 2918 std::string Nearest; 2919 if (Opts.findNearest(ArgString, Nearest, IncludedFlagsBitmask) > 1) 2920 Diags.Report(diag::err_drv_unknown_argument) << ArgString; 2921 else 2922 Diags.Report(diag::err_drv_unknown_argument_with_suggestion) 2923 << ArgString << Nearest; 2924 Success = false; 2925 } 2926 2927 Success &= Res.parseSimpleArgs(Args, Diags); 2928 2929 Success &= ParseAnalyzerArgs(*Res.getAnalyzerOpts(), Args, Diags); 2930 ParseDependencyOutputArgs(Res.getDependencyOutputOpts(), Args); 2931 if (!Res.getDependencyOutputOpts().OutputFile.empty() && 2932 Res.getDependencyOutputOpts().Targets.empty()) { 2933 Diags.Report(diag::err_fe_dependency_file_requires_MT); 2934 Success = false; 2935 } 2936 Success &= ParseDiagnosticArgs(Res.getDiagnosticOpts(), Args, &Diags, 2937 /*DefaultDiagColor=*/false); 2938 ParseCommentArgs(LangOpts.CommentOpts, Args); 2939 // FIXME: We shouldn't have to pass the DashX option around here 2940 InputKind DashX = ParseFrontendArgs(Res.getFrontendOpts(), Args, Diags, 2941 LangOpts.IsHeaderFile); 2942 ParseTargetArgs(Res.getTargetOpts(), Args, Diags); 2943 Success &= ParseCodeGenArgs(Res.getCodeGenOpts(), Args, DashX, Diags, 2944 Res.getTargetOpts(), Res.getFrontendOpts()); 2945 ParseHeaderSearchArgs(Res.getHeaderSearchOpts(), Args, 2946 Res.getFileSystemOpts().WorkingDir); 2947 llvm::Triple T(Res.getTargetOpts().Triple); 2948 if (DashX.getFormat() == InputKind::Precompiled || 2949 DashX.getLanguage() == Language::LLVM_IR) { 2950 // ObjCAAutoRefCount and Sanitize LangOpts are used to setup the 2951 // PassManager in BackendUtil.cpp. They need to be initializd no matter 2952 // what the input type is. 2953 if (Args.hasArg(OPT_fobjc_arc)) 2954 LangOpts.ObjCAutoRefCount = 1; 2955 // PIClevel and PIELevel are needed during code generation and this should be 2956 // set regardless of the input type. 2957 LangOpts.PICLevel = getLastArgIntValue(Args, OPT_pic_level, 0, Diags); 2958 parseSanitizerKinds("-fsanitize=", Args.getAllArgValues(OPT_fsanitize_EQ), 2959 Diags, LangOpts.Sanitize); 2960 } else { 2961 // Other LangOpts are only initialized when the input is not AST or LLVM IR. 2962 // FIXME: Should we really be calling this for an Language::Asm input? 2963 ParseLangArgs(LangOpts, Args, DashX, Res.getTargetOpts(), 2964 Res.getPreprocessorOpts(), Diags); 2965 if (Res.getFrontendOpts().ProgramAction == frontend::RewriteObjC) 2966 LangOpts.ObjCExceptions = 1; 2967 if (T.isOSDarwin() && DashX.isPreprocessed()) { 2968 // Supress the darwin-specific 'stdlibcxx-not-found' diagnostic for 2969 // preprocessed input as we don't expect it to be used with -std=libc++ 2970 // anyway. 2971 Res.getDiagnosticOpts().Warnings.push_back("no-stdlibcxx-not-found"); 2972 } 2973 } 2974 2975 if (LangOpts.CUDA) { 2976 // During CUDA device-side compilation, the aux triple is the 2977 // triple used for host compilation. 2978 if (LangOpts.CUDAIsDevice) 2979 Res.getTargetOpts().HostTriple = Res.getFrontendOpts().AuxTriple; 2980 } 2981 2982 // Set the triple of the host for OpenMP device compile. 2983 if (LangOpts.OpenMPIsDevice) 2984 Res.getTargetOpts().HostTriple = Res.getFrontendOpts().AuxTriple; 2985 2986 // FIXME: Override value name discarding when asan or msan is used because the 2987 // backend passes depend on the name of the alloca in order to print out 2988 // names. 2989 Res.getCodeGenOpts().DiscardValueNames &= 2990 !LangOpts.Sanitize.has(SanitizerKind::Address) && 2991 !LangOpts.Sanitize.has(SanitizerKind::KernelAddress) && 2992 !LangOpts.Sanitize.has(SanitizerKind::Memory) && 2993 !LangOpts.Sanitize.has(SanitizerKind::KernelMemory); 2994 2995 ParsePreprocessorArgs(Res.getPreprocessorOpts(), Args, Diags, 2996 Res.getFrontendOpts().ProgramAction); 2997 ParsePreprocessorOutputArgs(Res.getPreprocessorOutputOpts(), Args, 2998 Res.getFrontendOpts().ProgramAction); 2999 3000 // Turn on -Wspir-compat for SPIR target. 3001 if (T.isSPIR()) 3002 Res.getDiagnosticOpts().Warnings.push_back("spir-compat"); 3003 3004 // If sanitizer is enabled, disable OPT_ffine_grained_bitfield_accesses. 3005 if (Res.getCodeGenOpts().FineGrainedBitfieldAccesses && 3006 !Res.getLangOpts()->Sanitize.empty()) { 3007 Res.getCodeGenOpts().FineGrainedBitfieldAccesses = false; 3008 Diags.Report(diag::warn_drv_fine_grained_bitfield_accesses_ignored); 3009 } 3010 3011 // Store the command-line for using in the CodeView backend. 3012 Res.getCodeGenOpts().Argv0 = Argv0; 3013 Res.getCodeGenOpts().CommandLineArgs = CommandLineArgs; 3014 3015 FixupInvocation(Res, Diags, Args); 3016 3017 return Success; 3018 } 3019 3020 std::string CompilerInvocation::getModuleHash() const { 3021 // Note: For QoI reasons, the things we use as a hash here should all be 3022 // dumped via the -module-info flag. 3023 using llvm::hash_code; 3024 using llvm::hash_value; 3025 using llvm::hash_combine; 3026 using llvm::hash_combine_range; 3027 3028 // Start the signature with the compiler version. 3029 // FIXME: We'd rather use something more cryptographically sound than 3030 // CityHash, but this will do for now. 3031 hash_code code = hash_value(getClangFullRepositoryVersion()); 3032 3033 // Also include the serialization version, in case LLVM_APPEND_VC_REV is off 3034 // and getClangFullRepositoryVersion() doesn't include git revision. 3035 code = hash_combine(code, serialization::VERSION_MAJOR, 3036 serialization::VERSION_MINOR); 3037 3038 // Extend the signature with the language options 3039 #define LANGOPT(Name, Bits, Default, Description) \ 3040 code = hash_combine(code, LangOpts->Name); 3041 #define ENUM_LANGOPT(Name, Type, Bits, Default, Description) \ 3042 code = hash_combine(code, static_cast<unsigned>(LangOpts->get##Name())); 3043 #define BENIGN_LANGOPT(Name, Bits, Default, Description) 3044 #define BENIGN_ENUM_LANGOPT(Name, Type, Bits, Default, Description) 3045 #include "clang/Basic/LangOptions.def" 3046 3047 for (StringRef Feature : LangOpts->ModuleFeatures) 3048 code = hash_combine(code, Feature); 3049 3050 code = hash_combine(code, LangOpts->ObjCRuntime); 3051 const auto &BCN = LangOpts->CommentOpts.BlockCommandNames; 3052 code = hash_combine(code, hash_combine_range(BCN.begin(), BCN.end())); 3053 3054 // Extend the signature with the target options. 3055 code = hash_combine(code, TargetOpts->Triple, TargetOpts->CPU, 3056 TargetOpts->TuneCPU, TargetOpts->ABI); 3057 for (const auto &FeatureAsWritten : TargetOpts->FeaturesAsWritten) 3058 code = hash_combine(code, FeatureAsWritten); 3059 3060 // Extend the signature with preprocessor options. 3061 const PreprocessorOptions &ppOpts = getPreprocessorOpts(); 3062 const HeaderSearchOptions &hsOpts = getHeaderSearchOpts(); 3063 code = hash_combine(code, ppOpts.UsePredefines, ppOpts.DetailedRecord); 3064 3065 for (const auto &I : getPreprocessorOpts().Macros) { 3066 // If we're supposed to ignore this macro for the purposes of modules, 3067 // don't put it into the hash. 3068 if (!hsOpts.ModulesIgnoreMacros.empty()) { 3069 // Check whether we're ignoring this macro. 3070 StringRef MacroDef = I.first; 3071 if (hsOpts.ModulesIgnoreMacros.count( 3072 llvm::CachedHashString(MacroDef.split('=').first))) 3073 continue; 3074 } 3075 3076 code = hash_combine(code, I.first, I.second); 3077 } 3078 3079 // Extend the signature with the sysroot and other header search options. 3080 code = hash_combine(code, hsOpts.Sysroot, 3081 hsOpts.ModuleFormat, 3082 hsOpts.UseDebugInfo, 3083 hsOpts.UseBuiltinIncludes, 3084 hsOpts.UseStandardSystemIncludes, 3085 hsOpts.UseStandardCXXIncludes, 3086 hsOpts.UseLibcxx, 3087 hsOpts.ModulesValidateDiagnosticOptions); 3088 code = hash_combine(code, hsOpts.ResourceDir); 3089 3090 if (hsOpts.ModulesStrictContextHash) { 3091 hash_code SHPC = hash_combine_range(hsOpts.SystemHeaderPrefixes.begin(), 3092 hsOpts.SystemHeaderPrefixes.end()); 3093 hash_code UEC = hash_combine_range(hsOpts.UserEntries.begin(), 3094 hsOpts.UserEntries.end()); 3095 code = hash_combine(code, hsOpts.SystemHeaderPrefixes.size(), SHPC, 3096 hsOpts.UserEntries.size(), UEC); 3097 3098 const DiagnosticOptions &diagOpts = getDiagnosticOpts(); 3099 #define DIAGOPT(Name, Bits, Default) \ 3100 code = hash_combine(code, diagOpts.Name); 3101 #define ENUM_DIAGOPT(Name, Type, Bits, Default) \ 3102 code = hash_combine(code, diagOpts.get##Name()); 3103 #include "clang/Basic/DiagnosticOptions.def" 3104 #undef DIAGOPT 3105 #undef ENUM_DIAGOPT 3106 } 3107 3108 // Extend the signature with the user build path. 3109 code = hash_combine(code, hsOpts.ModuleUserBuildPath); 3110 3111 // Extend the signature with the module file extensions. 3112 const FrontendOptions &frontendOpts = getFrontendOpts(); 3113 for (const auto &ext : frontendOpts.ModuleFileExtensions) { 3114 code = ext->hashExtension(code); 3115 } 3116 3117 // When compiling with -gmodules, also hash -fdebug-prefix-map as it 3118 // affects the debug info in the PCM. 3119 if (getCodeGenOpts().DebugTypeExtRefs) 3120 for (const auto &KeyValue : getCodeGenOpts().DebugPrefixMap) 3121 code = hash_combine(code, KeyValue.first, KeyValue.second); 3122 3123 // Extend the signature with the enabled sanitizers, if at least one is 3124 // enabled. Sanitizers which cannot affect AST generation aren't hashed. 3125 SanitizerSet SanHash = LangOpts->Sanitize; 3126 SanHash.clear(getPPTransparentSanitizers()); 3127 if (!SanHash.empty()) 3128 code = hash_combine(code, SanHash.Mask); 3129 3130 return llvm::APInt(64, code).toString(36, /*Signed=*/false); 3131 } 3132 3133 void CompilerInvocation::generateCC1CommandLine( 3134 SmallVectorImpl<const char *> &Args, StringAllocator SA) const { 3135 // Capture the extracted value as a lambda argument to avoid potential issues 3136 // with lifetime extension of the reference. 3137 #define GENERATE_OPTION_WITH_MARSHALLING( \ 3138 ARGS, STRING_ALLOCATOR, KIND, FLAGS, SPELLING, ALWAYS_EMIT, KEYPATH, \ 3139 DEFAULT_VALUE, IMPLIED_CHECK, IMPLIED_VALUE, DENORMALIZER, EXTRACTOR, \ 3140 TABLE_INDEX) \ 3141 if ((FLAGS)&options::CC1Option) { \ 3142 [&](const auto &Extracted) { \ 3143 if (ALWAYS_EMIT || \ 3144 (Extracted != \ 3145 static_cast<decltype(KEYPATH)>((IMPLIED_CHECK) ? (IMPLIED_VALUE) \ 3146 : (DEFAULT_VALUE)))) \ 3147 DENORMALIZER(ARGS, SPELLING, STRING_ALLOCATOR, Option::KIND##Class, \ 3148 TABLE_INDEX, Extracted); \ 3149 }(EXTRACTOR(KEYPATH)); \ 3150 } 3151 3152 #define OPTION_WITH_MARSHALLING( \ 3153 PREFIX_TYPE, NAME, ID, KIND, GROUP, ALIAS, ALIASARGS, FLAGS, PARAM, \ 3154 HELPTEXT, METAVAR, VALUES, SPELLING, SHOULD_PARSE, ALWAYS_EMIT, KEYPATH, \ 3155 DEFAULT_VALUE, IMPLIED_CHECK, IMPLIED_VALUE, NORMALIZER, DENORMALIZER, \ 3156 MERGER, EXTRACTOR, TABLE_INDEX) \ 3157 GENERATE_OPTION_WITH_MARSHALLING(Args, SA, KIND, FLAGS, SPELLING, \ 3158 ALWAYS_EMIT, this->KEYPATH, DEFAULT_VALUE, \ 3159 IMPLIED_CHECK, IMPLIED_VALUE, DENORMALIZER, \ 3160 EXTRACTOR, TABLE_INDEX) 3161 3162 #define DIAG_OPTION_WITH_MARSHALLING( \ 3163 PREFIX_TYPE, NAME, ID, KIND, GROUP, ALIAS, ALIASARGS, FLAGS, PARAM, \ 3164 HELPTEXT, METAVAR, VALUES, SPELLING, SHOULD_PARSE, ALWAYS_EMIT, KEYPATH, \ 3165 DEFAULT_VALUE, IMPLIED_CHECK, IMPLIED_VALUE, NORMALIZER, DENORMALIZER, \ 3166 MERGER, EXTRACTOR, TABLE_INDEX) \ 3167 GENERATE_OPTION_WITH_MARSHALLING( \ 3168 Args, SA, KIND, FLAGS, SPELLING, ALWAYS_EMIT, \ 3169 this->DiagnosticOpts->KEYPATH, DEFAULT_VALUE, IMPLIED_CHECK, \ 3170 IMPLIED_VALUE, DENORMALIZER, EXTRACTOR, TABLE_INDEX) 3171 3172 #include "clang/Driver/Options.inc" 3173 3174 #undef DIAG_OPTION_WITH_MARSHALLING 3175 #undef OPTION_WITH_MARSHALLING 3176 #undef GENERATE_OPTION_WITH_MARSHALLING 3177 } 3178 3179 IntrusiveRefCntPtr<llvm::vfs::FileSystem> 3180 clang::createVFSFromCompilerInvocation(const CompilerInvocation &CI, 3181 DiagnosticsEngine &Diags) { 3182 return createVFSFromCompilerInvocation(CI, Diags, 3183 llvm::vfs::getRealFileSystem()); 3184 } 3185 3186 IntrusiveRefCntPtr<llvm::vfs::FileSystem> 3187 clang::createVFSFromCompilerInvocation( 3188 const CompilerInvocation &CI, DiagnosticsEngine &Diags, 3189 IntrusiveRefCntPtr<llvm::vfs::FileSystem> BaseFS) { 3190 if (CI.getHeaderSearchOpts().VFSOverlayFiles.empty()) 3191 return BaseFS; 3192 3193 IntrusiveRefCntPtr<llvm::vfs::FileSystem> Result = BaseFS; 3194 // earlier vfs files are on the bottom 3195 for (const auto &File : CI.getHeaderSearchOpts().VFSOverlayFiles) { 3196 llvm::ErrorOr<std::unique_ptr<llvm::MemoryBuffer>> Buffer = 3197 Result->getBufferForFile(File); 3198 if (!Buffer) { 3199 Diags.Report(diag::err_missing_vfs_overlay_file) << File; 3200 continue; 3201 } 3202 3203 IntrusiveRefCntPtr<llvm::vfs::FileSystem> FS = llvm::vfs::getVFSFromYAML( 3204 std::move(Buffer.get()), /*DiagHandler*/ nullptr, File, 3205 /*DiagContext*/ nullptr, Result); 3206 if (!FS) { 3207 Diags.Report(diag::err_invalid_vfs_overlay) << File; 3208 continue; 3209 } 3210 3211 Result = FS; 3212 } 3213 return Result; 3214 } 3215