1 //===--- FrontendActions.cpp ----------------------------------------------===// 2 // 3 // The LLVM Compiler Infrastructure 4 // 5 // This file is distributed under the University of Illinois Open Source 6 // License. See LICENSE.TXT for details. 7 // 8 //===----------------------------------------------------------------------===// 9 10 #include "clang/Frontend/FrontendActions.h" 11 #include "clang/AST/ASTConsumer.h" 12 #include "clang/Basic/FileManager.h" 13 #include "clang/Frontend/ASTConsumers.h" 14 #include "clang/Frontend/ASTUnit.h" 15 #include "clang/Frontend/CompilerInstance.h" 16 #include "clang/Frontend/FrontendDiagnostic.h" 17 #include "clang/Frontend/MultiplexConsumer.h" 18 #include "clang/Frontend/Utils.h" 19 #include "clang/Lex/HeaderSearch.h" 20 #include "clang/Lex/Pragma.h" 21 #include "clang/Lex/Preprocessor.h" 22 #include "clang/Parse/Parser.h" 23 #include "clang/Serialization/ASTReader.h" 24 #include "clang/Serialization/ASTWriter.h" 25 #include "llvm/Support/FileSystem.h" 26 #include "llvm/Support/MemoryBuffer.h" 27 #include "llvm/Support/raw_ostream.h" 28 #include <memory> 29 #include <system_error> 30 31 using namespace clang; 32 33 //===----------------------------------------------------------------------===// 34 // Custom Actions 35 //===----------------------------------------------------------------------===// 36 37 std::unique_ptr<ASTConsumer> 38 InitOnlyAction::CreateASTConsumer(CompilerInstance &CI, StringRef InFile) { 39 return llvm::make_unique<ASTConsumer>(); 40 } 41 42 void InitOnlyAction::ExecuteAction() { 43 } 44 45 //===----------------------------------------------------------------------===// 46 // AST Consumer Actions 47 //===----------------------------------------------------------------------===// 48 49 std::unique_ptr<ASTConsumer> 50 ASTPrintAction::CreateASTConsumer(CompilerInstance &CI, StringRef InFile) { 51 if (raw_ostream *OS = CI.createDefaultOutputFile(false, InFile)) 52 return CreateASTPrinter(OS, CI.getFrontendOpts().ASTDumpFilter); 53 return nullptr; 54 } 55 56 std::unique_ptr<ASTConsumer> 57 ASTDumpAction::CreateASTConsumer(CompilerInstance &CI, StringRef InFile) { 58 return CreateASTDumper(CI.getFrontendOpts().ASTDumpFilter, 59 CI.getFrontendOpts().ASTDumpDecls, 60 CI.getFrontendOpts().ASTDumpLookups); 61 } 62 63 std::unique_ptr<ASTConsumer> 64 ASTDeclListAction::CreateASTConsumer(CompilerInstance &CI, StringRef InFile) { 65 return CreateASTDeclNodeLister(); 66 } 67 68 std::unique_ptr<ASTConsumer> 69 ASTViewAction::CreateASTConsumer(CompilerInstance &CI, StringRef InFile) { 70 return CreateASTViewer(); 71 } 72 73 std::unique_ptr<ASTConsumer> 74 DeclContextPrintAction::CreateASTConsumer(CompilerInstance &CI, 75 StringRef InFile) { 76 return CreateDeclContextPrinter(); 77 } 78 79 std::unique_ptr<ASTConsumer> 80 GeneratePCHAction::CreateASTConsumer(CompilerInstance &CI, StringRef InFile) { 81 std::string Sysroot; 82 std::string OutputFile; 83 raw_pwrite_stream *OS = 84 ComputeASTConsumerArguments(CI, InFile, Sysroot, OutputFile); 85 if (!OS) 86 return nullptr; 87 88 if (!CI.getFrontendOpts().RelocatablePCH) 89 Sysroot.clear(); 90 91 auto Buffer = std::make_shared<PCHBuffer>(); 92 std::vector<std::unique_ptr<ASTConsumer>> Consumers; 93 Consumers.push_back(llvm::make_unique<PCHGenerator>( 94 CI.getPreprocessor(), OutputFile, nullptr, Sysroot, 95 Buffer, CI.getFrontendOpts().ModuleFileExtensions)); 96 Consumers.push_back(CI.getPCHContainerWriter().CreatePCHContainerGenerator( 97 CI, InFile, OutputFile, OS, Buffer)); 98 99 return llvm::make_unique<MultiplexConsumer>(std::move(Consumers)); 100 } 101 102 raw_pwrite_stream *GeneratePCHAction::ComputeASTConsumerArguments( 103 CompilerInstance &CI, StringRef InFile, std::string &Sysroot, 104 std::string &OutputFile) { 105 Sysroot = CI.getHeaderSearchOpts().Sysroot; 106 if (CI.getFrontendOpts().RelocatablePCH && Sysroot.empty()) { 107 CI.getDiagnostics().Report(diag::err_relocatable_without_isysroot); 108 return nullptr; 109 } 110 111 // We use createOutputFile here because this is exposed via libclang, and we 112 // must disable the RemoveFileOnSignal behavior. 113 // We use a temporary to avoid race conditions. 114 raw_pwrite_stream *OS = 115 CI.createOutputFile(CI.getFrontendOpts().OutputFile, /*Binary=*/true, 116 /*RemoveFileOnSignal=*/false, InFile, 117 /*Extension=*/"", /*useTemporary=*/true); 118 if (!OS) 119 return nullptr; 120 121 OutputFile = CI.getFrontendOpts().OutputFile; 122 return OS; 123 } 124 125 std::unique_ptr<ASTConsumer> 126 GenerateModuleAction::CreateASTConsumer(CompilerInstance &CI, 127 StringRef InFile) { 128 std::string Sysroot; 129 std::string OutputFile; 130 raw_pwrite_stream *OS = 131 ComputeASTConsumerArguments(CI, InFile, Sysroot, OutputFile); 132 if (!OS) 133 return nullptr; 134 135 auto Buffer = std::make_shared<PCHBuffer>(); 136 std::vector<std::unique_ptr<ASTConsumer>> Consumers; 137 138 Consumers.push_back(llvm::make_unique<PCHGenerator>( 139 CI.getPreprocessor(), OutputFile, Module, Sysroot, 140 Buffer, CI.getFrontendOpts().ModuleFileExtensions, 141 /*AllowASTWithErrors=*/false, 142 /*IncludeTimestamps=*/ 143 +CI.getFrontendOpts().BuildingImplicitModule)); 144 Consumers.push_back(CI.getPCHContainerWriter().CreatePCHContainerGenerator( 145 CI, InFile, OutputFile, OS, Buffer)); 146 return llvm::make_unique<MultiplexConsumer>(std::move(Consumers)); 147 } 148 149 static SmallVectorImpl<char> & 150 operator+=(SmallVectorImpl<char> &Includes, StringRef RHS) { 151 Includes.append(RHS.begin(), RHS.end()); 152 return Includes; 153 } 154 155 static void addHeaderInclude(StringRef HeaderName, 156 SmallVectorImpl<char> &Includes, 157 const LangOptions &LangOpts, 158 bool IsExternC) { 159 if (IsExternC && LangOpts.CPlusPlus) 160 Includes += "extern \"C\" {\n"; 161 if (LangOpts.ObjC1) 162 Includes += "#import \""; 163 else 164 Includes += "#include \""; 165 166 Includes += HeaderName; 167 168 Includes += "\"\n"; 169 if (IsExternC && LangOpts.CPlusPlus) 170 Includes += "}\n"; 171 } 172 173 /// \brief Collect the set of header includes needed to construct the given 174 /// module and update the TopHeaders file set of the module. 175 /// 176 /// \param Module The module we're collecting includes from. 177 /// 178 /// \param Includes Will be augmented with the set of \#includes or \#imports 179 /// needed to load all of the named headers. 180 static std::error_code 181 collectModuleHeaderIncludes(const LangOptions &LangOpts, FileManager &FileMgr, 182 ModuleMap &ModMap, clang::Module *Module, 183 SmallVectorImpl<char> &Includes) { 184 // Don't collect any headers for unavailable modules. 185 if (!Module->isAvailable()) 186 return std::error_code(); 187 188 // Add includes for each of these headers. 189 for (auto HK : {Module::HK_Normal, Module::HK_Private}) { 190 for (Module::Header &H : Module->Headers[HK]) { 191 Module->addTopHeader(H.Entry); 192 // Use the path as specified in the module map file. We'll look for this 193 // file relative to the module build directory (the directory containing 194 // the module map file) so this will find the same file that we found 195 // while parsing the module map. 196 addHeaderInclude(H.NameAsWritten, Includes, LangOpts, Module->IsExternC); 197 } 198 } 199 // Note that Module->PrivateHeaders will not be a TopHeader. 200 201 if (Module::Header UmbrellaHeader = Module->getUmbrellaHeader()) { 202 Module->addTopHeader(UmbrellaHeader.Entry); 203 if (Module->Parent) 204 // Include the umbrella header for submodules. 205 addHeaderInclude(UmbrellaHeader.NameAsWritten, Includes, LangOpts, 206 Module->IsExternC); 207 } else if (Module::DirectoryName UmbrellaDir = Module->getUmbrellaDir()) { 208 // Add all of the headers we find in this subdirectory. 209 std::error_code EC; 210 SmallString<128> DirNative; 211 llvm::sys::path::native(UmbrellaDir.Entry->getName(), DirNative); 212 for (llvm::sys::fs::recursive_directory_iterator Dir(DirNative, EC), 213 DirEnd; 214 Dir != DirEnd && !EC; Dir.increment(EC)) { 215 // Check whether this entry has an extension typically associated with 216 // headers. 217 if (!llvm::StringSwitch<bool>(llvm::sys::path::extension(Dir->path())) 218 .Cases(".h", ".H", ".hh", ".hpp", true) 219 .Default(false)) 220 continue; 221 222 const FileEntry *Header = FileMgr.getFile(Dir->path()); 223 // FIXME: This shouldn't happen unless there is a file system race. Is 224 // that worth diagnosing? 225 if (!Header) 226 continue; 227 228 // If this header is marked 'unavailable' in this module, don't include 229 // it. 230 if (ModMap.isHeaderUnavailableInModule(Header, Module)) 231 continue; 232 233 // Compute the relative path from the directory to this file. 234 SmallVector<StringRef, 16> Components; 235 auto PathIt = llvm::sys::path::rbegin(Dir->path()); 236 for (int I = 0; I != Dir.level() + 1; ++I, ++PathIt) 237 Components.push_back(*PathIt); 238 SmallString<128> RelativeHeader(UmbrellaDir.NameAsWritten); 239 for (auto It = Components.rbegin(), End = Components.rend(); It != End; 240 ++It) 241 llvm::sys::path::append(RelativeHeader, *It); 242 243 // Include this header as part of the umbrella directory. 244 Module->addTopHeader(Header); 245 addHeaderInclude(RelativeHeader, Includes, LangOpts, Module->IsExternC); 246 } 247 248 if (EC) 249 return EC; 250 } 251 252 // Recurse into submodules. 253 for (clang::Module::submodule_iterator Sub = Module->submodule_begin(), 254 SubEnd = Module->submodule_end(); 255 Sub != SubEnd; ++Sub) 256 if (std::error_code Err = collectModuleHeaderIncludes( 257 LangOpts, FileMgr, ModMap, *Sub, Includes)) 258 return Err; 259 260 return std::error_code(); 261 } 262 263 bool GenerateModuleAction::BeginSourceFileAction(CompilerInstance &CI, 264 StringRef Filename) { 265 CI.getLangOpts().CompilingModule = true; 266 267 // Find the module map file. 268 const FileEntry *ModuleMap = 269 CI.getFileManager().getFile(Filename, /*openFile*/true); 270 if (!ModuleMap) { 271 CI.getDiagnostics().Report(diag::err_module_map_not_found) 272 << Filename; 273 return false; 274 } 275 276 // Set up embedding for any specified files. Do this before we load any 277 // source files, including the primary module map for the compilation. 278 for (const auto &F : CI.getFrontendOpts().ModulesEmbedFiles) { 279 if (const auto *FE = CI.getFileManager().getFile(F, /*openFile*/true)) 280 CI.getSourceManager().setFileIsTransient(FE); 281 else 282 CI.getDiagnostics().Report(diag::err_modules_embed_file_not_found) << F; 283 } 284 if (CI.getFrontendOpts().ModulesEmbedAllFiles) 285 CI.getSourceManager().setAllFilesAreTransient(true); 286 287 // Parse the module map file. 288 HeaderSearch &HS = CI.getPreprocessor().getHeaderSearchInfo(); 289 if (HS.loadModuleMapFile(ModuleMap, IsSystem)) 290 return false; 291 292 if (CI.getLangOpts().CurrentModule.empty()) { 293 CI.getDiagnostics().Report(diag::err_missing_module_name); 294 295 // FIXME: Eventually, we could consider asking whether there was just 296 // a single module described in the module map, and use that as a 297 // default. Then it would be fairly trivial to just "compile" a module 298 // map with a single module (the common case). 299 return false; 300 } 301 302 // If we're being run from the command-line, the module build stack will not 303 // have been filled in yet, so complete it now in order to allow us to detect 304 // module cycles. 305 SourceManager &SourceMgr = CI.getSourceManager(); 306 if (SourceMgr.getModuleBuildStack().empty()) 307 SourceMgr.pushModuleBuildStack(CI.getLangOpts().CurrentModule, 308 FullSourceLoc(SourceLocation(), SourceMgr)); 309 310 // Dig out the module definition. 311 Module = HS.lookupModule(CI.getLangOpts().CurrentModule, 312 /*AllowSearch=*/false); 313 if (!Module) { 314 CI.getDiagnostics().Report(diag::err_missing_module) 315 << CI.getLangOpts().CurrentModule << Filename; 316 317 return false; 318 } 319 320 // Check whether we can build this module at all. 321 clang::Module::Requirement Requirement; 322 clang::Module::UnresolvedHeaderDirective MissingHeader; 323 if (!Module->isAvailable(CI.getLangOpts(), CI.getTarget(), Requirement, 324 MissingHeader)) { 325 if (MissingHeader.FileNameLoc.isValid()) { 326 CI.getDiagnostics().Report(MissingHeader.FileNameLoc, 327 diag::err_module_header_missing) 328 << MissingHeader.IsUmbrella << MissingHeader.FileName; 329 } else { 330 CI.getDiagnostics().Report(diag::err_module_unavailable) 331 << Module->getFullModuleName() 332 << Requirement.second << Requirement.first; 333 } 334 335 return false; 336 } 337 338 if (ModuleMapForUniquing && ModuleMapForUniquing != ModuleMap) { 339 Module->IsInferred = true; 340 HS.getModuleMap().setInferredModuleAllowedBy(Module, ModuleMapForUniquing); 341 } else { 342 ModuleMapForUniquing = ModuleMap; 343 } 344 345 FileManager &FileMgr = CI.getFileManager(); 346 347 // Collect the set of #includes we need to build the module. 348 SmallString<256> HeaderContents; 349 std::error_code Err = std::error_code(); 350 if (Module::Header UmbrellaHeader = Module->getUmbrellaHeader()) 351 addHeaderInclude(UmbrellaHeader.NameAsWritten, HeaderContents, 352 CI.getLangOpts(), Module->IsExternC); 353 Err = collectModuleHeaderIncludes( 354 CI.getLangOpts(), FileMgr, 355 CI.getPreprocessor().getHeaderSearchInfo().getModuleMap(), Module, 356 HeaderContents); 357 358 if (Err) { 359 CI.getDiagnostics().Report(diag::err_module_cannot_create_includes) 360 << Module->getFullModuleName() << Err.message(); 361 return false; 362 } 363 364 // Inform the preprocessor that includes from within the input buffer should 365 // be resolved relative to the build directory of the module map file. 366 CI.getPreprocessor().setMainFileDir(Module->Directory); 367 368 std::unique_ptr<llvm::MemoryBuffer> InputBuffer = 369 llvm::MemoryBuffer::getMemBufferCopy(HeaderContents, 370 Module::getModuleInputBufferName()); 371 // Ownership of InputBuffer will be transferred to the SourceManager. 372 setCurrentInput(FrontendInputFile(InputBuffer.release(), getCurrentFileKind(), 373 Module->IsSystem)); 374 return true; 375 } 376 377 raw_pwrite_stream *GenerateModuleAction::ComputeASTConsumerArguments( 378 CompilerInstance &CI, StringRef InFile, std::string &Sysroot, 379 std::string &OutputFile) { 380 // If no output file was provided, figure out where this module would go 381 // in the module cache. 382 if (CI.getFrontendOpts().OutputFile.empty()) { 383 HeaderSearch &HS = CI.getPreprocessor().getHeaderSearchInfo(); 384 CI.getFrontendOpts().OutputFile = 385 HS.getModuleFileName(CI.getLangOpts().CurrentModule, 386 ModuleMapForUniquing->getName()); 387 } 388 389 // We use createOutputFile here because this is exposed via libclang, and we 390 // must disable the RemoveFileOnSignal behavior. 391 // We use a temporary to avoid race conditions. 392 raw_pwrite_stream *OS = 393 CI.createOutputFile(CI.getFrontendOpts().OutputFile, /*Binary=*/true, 394 /*RemoveFileOnSignal=*/false, InFile, 395 /*Extension=*/"", /*useTemporary=*/true, 396 /*CreateMissingDirectories=*/true); 397 if (!OS) 398 return nullptr; 399 400 OutputFile = CI.getFrontendOpts().OutputFile; 401 return OS; 402 } 403 404 SyntaxOnlyAction::~SyntaxOnlyAction() { 405 } 406 407 std::unique_ptr<ASTConsumer> 408 SyntaxOnlyAction::CreateASTConsumer(CompilerInstance &CI, StringRef InFile) { 409 return llvm::make_unique<ASTConsumer>(); 410 } 411 412 std::unique_ptr<ASTConsumer> 413 DumpModuleInfoAction::CreateASTConsumer(CompilerInstance &CI, 414 StringRef InFile) { 415 return llvm::make_unique<ASTConsumer>(); 416 } 417 418 std::unique_ptr<ASTConsumer> 419 VerifyPCHAction::CreateASTConsumer(CompilerInstance &CI, StringRef InFile) { 420 return llvm::make_unique<ASTConsumer>(); 421 } 422 423 void VerifyPCHAction::ExecuteAction() { 424 CompilerInstance &CI = getCompilerInstance(); 425 bool Preamble = CI.getPreprocessorOpts().PrecompiledPreambleBytes.first != 0; 426 const std::string &Sysroot = CI.getHeaderSearchOpts().Sysroot; 427 std::unique_ptr<ASTReader> Reader(new ASTReader( 428 CI.getPreprocessor(), CI.getASTContext(), CI.getPCHContainerReader(), 429 CI.getFrontendOpts().ModuleFileExtensions, 430 Sysroot.empty() ? "" : Sysroot.c_str(), 431 /*DisableValidation*/ false, 432 /*AllowPCHWithCompilerErrors*/ false, 433 /*AllowConfigurationMismatch*/ true, 434 /*ValidateSystemInputs*/ true)); 435 436 Reader->ReadAST(getCurrentFile(), 437 Preamble ? serialization::MK_Preamble 438 : serialization::MK_PCH, 439 SourceLocation(), 440 ASTReader::ARR_ConfigurationMismatch); 441 } 442 443 namespace { 444 /// \brief AST reader listener that dumps module information for a module 445 /// file. 446 class DumpModuleInfoListener : public ASTReaderListener { 447 llvm::raw_ostream &Out; 448 449 public: 450 DumpModuleInfoListener(llvm::raw_ostream &Out) : Out(Out) { } 451 452 #define DUMP_BOOLEAN(Value, Text) \ 453 Out.indent(4) << Text << ": " << (Value? "Yes" : "No") << "\n" 454 455 bool ReadFullVersionInformation(StringRef FullVersion) override { 456 Out.indent(2) 457 << "Generated by " 458 << (FullVersion == getClangFullRepositoryVersion()? "this" 459 : "a different") 460 << " Clang: " << FullVersion << "\n"; 461 return ASTReaderListener::ReadFullVersionInformation(FullVersion); 462 } 463 464 void ReadModuleName(StringRef ModuleName) override { 465 Out.indent(2) << "Module name: " << ModuleName << "\n"; 466 } 467 void ReadModuleMapFile(StringRef ModuleMapPath) override { 468 Out.indent(2) << "Module map file: " << ModuleMapPath << "\n"; 469 } 470 471 bool ReadLanguageOptions(const LangOptions &LangOpts, bool Complain, 472 bool AllowCompatibleDifferences) override { 473 Out.indent(2) << "Language options:\n"; 474 #define LANGOPT(Name, Bits, Default, Description) \ 475 DUMP_BOOLEAN(LangOpts.Name, Description); 476 #define ENUM_LANGOPT(Name, Type, Bits, Default, Description) \ 477 Out.indent(4) << Description << ": " \ 478 << static_cast<unsigned>(LangOpts.get##Name()) << "\n"; 479 #define VALUE_LANGOPT(Name, Bits, Default, Description) \ 480 Out.indent(4) << Description << ": " << LangOpts.Name << "\n"; 481 #define BENIGN_LANGOPT(Name, Bits, Default, Description) 482 #define BENIGN_ENUM_LANGOPT(Name, Type, Bits, Default, Description) 483 #include "clang/Basic/LangOptions.def" 484 485 if (!LangOpts.ModuleFeatures.empty()) { 486 Out.indent(4) << "Module features:\n"; 487 for (StringRef Feature : LangOpts.ModuleFeatures) 488 Out.indent(6) << Feature << "\n"; 489 } 490 491 return false; 492 } 493 494 bool ReadTargetOptions(const TargetOptions &TargetOpts, bool Complain, 495 bool AllowCompatibleDifferences) override { 496 Out.indent(2) << "Target options:\n"; 497 Out.indent(4) << " Triple: " << TargetOpts.Triple << "\n"; 498 Out.indent(4) << " CPU: " << TargetOpts.CPU << "\n"; 499 Out.indent(4) << " ABI: " << TargetOpts.ABI << "\n"; 500 501 if (!TargetOpts.FeaturesAsWritten.empty()) { 502 Out.indent(4) << "Target features:\n"; 503 for (unsigned I = 0, N = TargetOpts.FeaturesAsWritten.size(); 504 I != N; ++I) { 505 Out.indent(6) << TargetOpts.FeaturesAsWritten[I] << "\n"; 506 } 507 } 508 509 return false; 510 } 511 512 bool ReadDiagnosticOptions(IntrusiveRefCntPtr<DiagnosticOptions> DiagOpts, 513 bool Complain) override { 514 Out.indent(2) << "Diagnostic options:\n"; 515 #define DIAGOPT(Name, Bits, Default) DUMP_BOOLEAN(DiagOpts->Name, #Name); 516 #define ENUM_DIAGOPT(Name, Type, Bits, Default) \ 517 Out.indent(4) << #Name << ": " << DiagOpts->get##Name() << "\n"; 518 #define VALUE_DIAGOPT(Name, Bits, Default) \ 519 Out.indent(4) << #Name << ": " << DiagOpts->Name << "\n"; 520 #include "clang/Basic/DiagnosticOptions.def" 521 522 Out.indent(4) << "Diagnostic flags:\n"; 523 for (const std::string &Warning : DiagOpts->Warnings) 524 Out.indent(6) << "-W" << Warning << "\n"; 525 for (const std::string &Remark : DiagOpts->Remarks) 526 Out.indent(6) << "-R" << Remark << "\n"; 527 528 return false; 529 } 530 531 bool ReadHeaderSearchOptions(const HeaderSearchOptions &HSOpts, 532 StringRef SpecificModuleCachePath, 533 bool Complain) override { 534 Out.indent(2) << "Header search options:\n"; 535 Out.indent(4) << "System root [-isysroot=]: '" << HSOpts.Sysroot << "'\n"; 536 Out.indent(4) << "Module Cache: '" << SpecificModuleCachePath << "'\n"; 537 DUMP_BOOLEAN(HSOpts.UseBuiltinIncludes, 538 "Use builtin include directories [-nobuiltininc]"); 539 DUMP_BOOLEAN(HSOpts.UseStandardSystemIncludes, 540 "Use standard system include directories [-nostdinc]"); 541 DUMP_BOOLEAN(HSOpts.UseStandardCXXIncludes, 542 "Use standard C++ include directories [-nostdinc++]"); 543 DUMP_BOOLEAN(HSOpts.UseLibcxx, 544 "Use libc++ (rather than libstdc++) [-stdlib=]"); 545 return false; 546 } 547 548 bool ReadPreprocessorOptions(const PreprocessorOptions &PPOpts, 549 bool Complain, 550 std::string &SuggestedPredefines) override { 551 Out.indent(2) << "Preprocessor options:\n"; 552 DUMP_BOOLEAN(PPOpts.UsePredefines, 553 "Uses compiler/target-specific predefines [-undef]"); 554 DUMP_BOOLEAN(PPOpts.DetailedRecord, 555 "Uses detailed preprocessing record (for indexing)"); 556 557 if (!PPOpts.Macros.empty()) { 558 Out.indent(4) << "Predefined macros:\n"; 559 } 560 561 for (std::vector<std::pair<std::string, bool/*isUndef*/> >::const_iterator 562 I = PPOpts.Macros.begin(), IEnd = PPOpts.Macros.end(); 563 I != IEnd; ++I) { 564 Out.indent(6); 565 if (I->second) 566 Out << "-U"; 567 else 568 Out << "-D"; 569 Out << I->first << "\n"; 570 } 571 return false; 572 } 573 574 /// Indicates that a particular module file extension has been read. 575 void readModuleFileExtension( 576 const ModuleFileExtensionMetadata &Metadata) override { 577 Out.indent(2) << "Module file extension '" 578 << Metadata.BlockName << "' " << Metadata.MajorVersion 579 << "." << Metadata.MinorVersion; 580 if (!Metadata.UserInfo.empty()) { 581 Out << ": "; 582 Out.write_escaped(Metadata.UserInfo); 583 } 584 585 Out << "\n"; 586 } 587 #undef DUMP_BOOLEAN 588 }; 589 } 590 591 void DumpModuleInfoAction::ExecuteAction() { 592 // Set up the output file. 593 std::unique_ptr<llvm::raw_fd_ostream> OutFile; 594 StringRef OutputFileName = getCompilerInstance().getFrontendOpts().OutputFile; 595 if (!OutputFileName.empty() && OutputFileName != "-") { 596 std::error_code EC; 597 OutFile.reset(new llvm::raw_fd_ostream(OutputFileName.str(), EC, 598 llvm::sys::fs::F_Text)); 599 } 600 llvm::raw_ostream &Out = OutFile.get()? *OutFile.get() : llvm::outs(); 601 602 Out << "Information for module file '" << getCurrentFile() << "':\n"; 603 DumpModuleInfoListener Listener(Out); 604 ASTReader::readASTFileControlBlock( 605 getCurrentFile(), getCompilerInstance().getFileManager(), 606 getCompilerInstance().getPCHContainerReader(), 607 /*FindModuleFileExtensions=*/true, Listener); 608 } 609 610 //===----------------------------------------------------------------------===// 611 // Preprocessor Actions 612 //===----------------------------------------------------------------------===// 613 614 void DumpRawTokensAction::ExecuteAction() { 615 Preprocessor &PP = getCompilerInstance().getPreprocessor(); 616 SourceManager &SM = PP.getSourceManager(); 617 618 // Start lexing the specified input file. 619 const llvm::MemoryBuffer *FromFile = SM.getBuffer(SM.getMainFileID()); 620 Lexer RawLex(SM.getMainFileID(), FromFile, SM, PP.getLangOpts()); 621 RawLex.SetKeepWhitespaceMode(true); 622 623 Token RawTok; 624 RawLex.LexFromRawLexer(RawTok); 625 while (RawTok.isNot(tok::eof)) { 626 PP.DumpToken(RawTok, true); 627 llvm::errs() << "\n"; 628 RawLex.LexFromRawLexer(RawTok); 629 } 630 } 631 632 void DumpTokensAction::ExecuteAction() { 633 Preprocessor &PP = getCompilerInstance().getPreprocessor(); 634 // Start preprocessing the specified input file. 635 Token Tok; 636 PP.EnterMainSourceFile(); 637 do { 638 PP.Lex(Tok); 639 PP.DumpToken(Tok, true); 640 llvm::errs() << "\n"; 641 } while (Tok.isNot(tok::eof)); 642 } 643 644 void GeneratePTHAction::ExecuteAction() { 645 CompilerInstance &CI = getCompilerInstance(); 646 raw_pwrite_stream *OS = CI.createDefaultOutputFile(true, getCurrentFile()); 647 if (!OS) 648 return; 649 650 CacheTokens(CI.getPreprocessor(), OS); 651 } 652 653 void PreprocessOnlyAction::ExecuteAction() { 654 Preprocessor &PP = getCompilerInstance().getPreprocessor(); 655 656 // Ignore unknown pragmas. 657 PP.IgnorePragmas(); 658 659 Token Tok; 660 // Start parsing the specified input file. 661 PP.EnterMainSourceFile(); 662 do { 663 PP.Lex(Tok); 664 } while (Tok.isNot(tok::eof)); 665 } 666 667 void PrintPreprocessedAction::ExecuteAction() { 668 CompilerInstance &CI = getCompilerInstance(); 669 // Output file may need to be set to 'Binary', to avoid converting Unix style 670 // line feeds (<LF>) to Microsoft style line feeds (<CR><LF>). 671 // 672 // Look to see what type of line endings the file uses. If there's a 673 // CRLF, then we won't open the file up in binary mode. If there is 674 // just an LF or CR, then we will open the file up in binary mode. 675 // In this fashion, the output format should match the input format, unless 676 // the input format has inconsistent line endings. 677 // 678 // This should be a relatively fast operation since most files won't have 679 // all of their source code on a single line. However, that is still a 680 // concern, so if we scan for too long, we'll just assume the file should 681 // be opened in binary mode. 682 bool BinaryMode = true; 683 bool InvalidFile = false; 684 const SourceManager& SM = CI.getSourceManager(); 685 const llvm::MemoryBuffer *Buffer = SM.getBuffer(SM.getMainFileID(), 686 &InvalidFile); 687 if (!InvalidFile) { 688 const char *cur = Buffer->getBufferStart(); 689 const char *end = Buffer->getBufferEnd(); 690 const char *next = (cur != end) ? cur + 1 : end; 691 692 // Limit ourselves to only scanning 256 characters into the source 693 // file. This is mostly a sanity check in case the file has no 694 // newlines whatsoever. 695 if (end - cur > 256) end = cur + 256; 696 697 while (next < end) { 698 if (*cur == 0x0D) { // CR 699 if (*next == 0x0A) // CRLF 700 BinaryMode = false; 701 702 break; 703 } else if (*cur == 0x0A) // LF 704 break; 705 706 ++cur; 707 ++next; 708 } 709 } 710 711 raw_ostream *OS = CI.createDefaultOutputFile(BinaryMode, getCurrentFile()); 712 if (!OS) return; 713 714 DoPrintPreprocessedInput(CI.getPreprocessor(), OS, 715 CI.getPreprocessorOutputOpts()); 716 } 717 718 void PrintPreambleAction::ExecuteAction() { 719 switch (getCurrentFileKind()) { 720 case IK_C: 721 case IK_CXX: 722 case IK_ObjC: 723 case IK_ObjCXX: 724 case IK_OpenCL: 725 case IK_CUDA: 726 break; 727 728 case IK_None: 729 case IK_Asm: 730 case IK_PreprocessedC: 731 case IK_PreprocessedCuda: 732 case IK_PreprocessedCXX: 733 case IK_PreprocessedObjC: 734 case IK_PreprocessedObjCXX: 735 case IK_AST: 736 case IK_LLVM_IR: 737 // We can't do anything with these. 738 return; 739 } 740 741 CompilerInstance &CI = getCompilerInstance(); 742 auto Buffer = CI.getFileManager().getBufferForFile(getCurrentFile()); 743 if (Buffer) { 744 unsigned Preamble = 745 Lexer::ComputePreamble((*Buffer)->getBuffer(), CI.getLangOpts()).first; 746 llvm::outs().write((*Buffer)->getBufferStart(), Preamble); 747 } 748 } 749