xref: /llvm-project/clang/lib/Frontend/FrontendAction.cpp (revision 1b07d4329880c98f313da426272be5cf50c0768d)
1 //===--- FrontendAction.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/FrontendAction.h"
10 #include "clang/AST/ASTConsumer.h"
11 #include "clang/AST/ASTContext.h"
12 #include "clang/AST/DeclGroup.h"
13 #include "clang/Basic/Builtins.h"
14 #include "clang/Basic/DiagnosticOptions.h"
15 #include "clang/Basic/FileEntry.h"
16 #include "clang/Basic/LangStandard.h"
17 #include "clang/Basic/Sarif.h"
18 #include "clang/Basic/Stack.h"
19 #include "clang/Frontend/ASTUnit.h"
20 #include "clang/Frontend/CompilerInstance.h"
21 #include "clang/Frontend/FrontendDiagnostic.h"
22 #include "clang/Frontend/FrontendPluginRegistry.h"
23 #include "clang/Frontend/LayoutOverrideSource.h"
24 #include "clang/Frontend/MultiplexConsumer.h"
25 #include "clang/Frontend/SARIFDiagnosticPrinter.h"
26 #include "clang/Frontend/Utils.h"
27 #include "clang/Lex/HeaderSearch.h"
28 #include "clang/Lex/LiteralSupport.h"
29 #include "clang/Lex/Preprocessor.h"
30 #include "clang/Lex/PreprocessorOptions.h"
31 #include "clang/Parse/ParseAST.h"
32 #include "clang/Sema/HLSLExternalSemaSource.h"
33 #include "clang/Sema/MultiplexExternalSemaSource.h"
34 #include "clang/Serialization/ASTDeserializationListener.h"
35 #include "clang/Serialization/ASTReader.h"
36 #include "clang/Serialization/GlobalModuleIndex.h"
37 #include "llvm/ADT/ScopeExit.h"
38 #include "llvm/Support/BuryPointer.h"
39 #include "llvm/Support/ErrorHandling.h"
40 #include "llvm/Support/FileSystem.h"
41 #include "llvm/Support/Path.h"
42 #include "llvm/Support/Timer.h"
43 #include "llvm/Support/raw_ostream.h"
44 #include <memory>
45 #include <system_error>
46 using namespace clang;
47 
48 LLVM_INSTANTIATE_REGISTRY(FrontendPluginRegistry)
49 
50 namespace {
51 
52 class DelegatingDeserializationListener : public ASTDeserializationListener {
53   ASTDeserializationListener *Previous;
54   bool DeletePrevious;
55 
56 public:
57   explicit DelegatingDeserializationListener(
58       ASTDeserializationListener *Previous, bool DeletePrevious)
59       : Previous(Previous), DeletePrevious(DeletePrevious) {}
60   ~DelegatingDeserializationListener() override {
61     if (DeletePrevious)
62       delete Previous;
63   }
64 
65   DelegatingDeserializationListener(const DelegatingDeserializationListener &) =
66       delete;
67   DelegatingDeserializationListener &
68   operator=(const DelegatingDeserializationListener &) = delete;
69 
70   void ReaderInitialized(ASTReader *Reader) override {
71     if (Previous)
72       Previous->ReaderInitialized(Reader);
73   }
74   void IdentifierRead(serialization::IdentID ID,
75                       IdentifierInfo *II) override {
76     if (Previous)
77       Previous->IdentifierRead(ID, II);
78   }
79   void TypeRead(serialization::TypeIdx Idx, QualType T) override {
80     if (Previous)
81       Previous->TypeRead(Idx, T);
82   }
83   void DeclRead(serialization::DeclID ID, const Decl *D) override {
84     if (Previous)
85       Previous->DeclRead(ID, D);
86   }
87   void SelectorRead(serialization::SelectorID ID, Selector Sel) override {
88     if (Previous)
89       Previous->SelectorRead(ID, Sel);
90   }
91   void MacroDefinitionRead(serialization::PreprocessedEntityID PPID,
92                            MacroDefinitionRecord *MD) override {
93     if (Previous)
94       Previous->MacroDefinitionRead(PPID, MD);
95   }
96 };
97 
98 /// Dumps deserialized declarations.
99 class DeserializedDeclsDumper : public DelegatingDeserializationListener {
100 public:
101   explicit DeserializedDeclsDumper(ASTDeserializationListener *Previous,
102                                    bool DeletePrevious)
103       : DelegatingDeserializationListener(Previous, DeletePrevious) {}
104 
105   void DeclRead(serialization::DeclID ID, const Decl *D) override {
106     llvm::outs() << "PCH DECL: " << D->getDeclKindName();
107     if (const NamedDecl *ND = dyn_cast<NamedDecl>(D)) {
108       llvm::outs() << " - ";
109       ND->printQualifiedName(llvm::outs());
110     }
111     llvm::outs() << "\n";
112 
113     DelegatingDeserializationListener::DeclRead(ID, D);
114   }
115 };
116 
117 /// Checks deserialized declarations and emits error if a name
118 /// matches one given in command-line using -error-on-deserialized-decl.
119 class DeserializedDeclsChecker : public DelegatingDeserializationListener {
120   ASTContext &Ctx;
121   std::set<std::string> NamesToCheck;
122 
123 public:
124   DeserializedDeclsChecker(ASTContext &Ctx,
125                            const std::set<std::string> &NamesToCheck,
126                            ASTDeserializationListener *Previous,
127                            bool DeletePrevious)
128       : DelegatingDeserializationListener(Previous, DeletePrevious), Ctx(Ctx),
129         NamesToCheck(NamesToCheck) {}
130 
131   void DeclRead(serialization::DeclID ID, const Decl *D) override {
132     if (const NamedDecl *ND = dyn_cast<NamedDecl>(D))
133       if (NamesToCheck.find(ND->getNameAsString()) != NamesToCheck.end()) {
134         unsigned DiagID
135           = Ctx.getDiagnostics().getCustomDiagID(DiagnosticsEngine::Error,
136                                                  "%0 was deserialized");
137         Ctx.getDiagnostics().Report(Ctx.getFullLoc(D->getLocation()), DiagID)
138             << ND;
139       }
140 
141     DelegatingDeserializationListener::DeclRead(ID, D);
142   }
143 };
144 
145 } // end anonymous namespace
146 
147 FrontendAction::FrontendAction() : Instance(nullptr) {}
148 
149 FrontendAction::~FrontendAction() {}
150 
151 void FrontendAction::setCurrentInput(const FrontendInputFile &CurrentInput,
152                                      std::unique_ptr<ASTUnit> AST) {
153   this->CurrentInput = CurrentInput;
154   CurrentASTUnit = std::move(AST);
155 }
156 
157 Module *FrontendAction::getCurrentModule() const {
158   CompilerInstance &CI = getCompilerInstance();
159   return CI.getPreprocessor().getHeaderSearchInfo().lookupModule(
160       CI.getLangOpts().CurrentModule, SourceLocation(), /*AllowSearch*/false);
161 }
162 
163 std::unique_ptr<ASTConsumer>
164 FrontendAction::CreateWrappedASTConsumer(CompilerInstance &CI,
165                                          StringRef InFile) {
166   std::unique_ptr<ASTConsumer> Consumer = CreateASTConsumer(CI, InFile);
167   if (!Consumer)
168     return nullptr;
169 
170   // Validate -add-plugin args.
171   bool FoundAllPlugins = true;
172   for (const std::string &Arg : CI.getFrontendOpts().AddPluginActions) {
173     bool Found = false;
174     for (const FrontendPluginRegistry::entry &Plugin :
175          FrontendPluginRegistry::entries()) {
176       if (Plugin.getName() == Arg)
177         Found = true;
178     }
179     if (!Found) {
180       CI.getDiagnostics().Report(diag::err_fe_invalid_plugin_name) << Arg;
181       FoundAllPlugins = false;
182     }
183   }
184   if (!FoundAllPlugins)
185     return nullptr;
186 
187   // If there are no registered plugins we don't need to wrap the consumer
188   if (FrontendPluginRegistry::begin() == FrontendPluginRegistry::end())
189     return Consumer;
190 
191   // If this is a code completion run, avoid invoking the plugin consumers
192   if (CI.hasCodeCompletionConsumer())
193     return Consumer;
194 
195   // Collect the list of plugins that go before the main action (in Consumers)
196   // or after it (in AfterConsumers)
197   std::vector<std::unique_ptr<ASTConsumer>> Consumers;
198   std::vector<std::unique_ptr<ASTConsumer>> AfterConsumers;
199   for (const FrontendPluginRegistry::entry &Plugin :
200        FrontendPluginRegistry::entries()) {
201     std::unique_ptr<PluginASTAction> P = Plugin.instantiate();
202     PluginASTAction::ActionType ActionType = P->getActionType();
203     if (ActionType == PluginASTAction::CmdlineAfterMainAction ||
204         ActionType == PluginASTAction::CmdlineBeforeMainAction) {
205       // This is O(|plugins| * |add_plugins|), but since both numbers are
206       // way below 50 in practice, that's ok.
207       if (llvm::is_contained(CI.getFrontendOpts().AddPluginActions,
208                              Plugin.getName())) {
209         if (ActionType == PluginASTAction::CmdlineBeforeMainAction)
210           ActionType = PluginASTAction::AddBeforeMainAction;
211         else
212           ActionType = PluginASTAction::AddAfterMainAction;
213       }
214     }
215     if ((ActionType == PluginASTAction::AddBeforeMainAction ||
216          ActionType == PluginASTAction::AddAfterMainAction) &&
217         P->ParseArgs(
218             CI,
219             CI.getFrontendOpts().PluginArgs[std::string(Plugin.getName())])) {
220       std::unique_ptr<ASTConsumer> PluginConsumer = P->CreateASTConsumer(CI, InFile);
221       if (ActionType == PluginASTAction::AddBeforeMainAction) {
222         Consumers.push_back(std::move(PluginConsumer));
223       } else {
224         AfterConsumers.push_back(std::move(PluginConsumer));
225       }
226     }
227   }
228 
229   // Add to Consumers the main consumer, then all the plugins that go after it
230   Consumers.push_back(std::move(Consumer));
231   if (!AfterConsumers.empty()) {
232     // If we have plugins after the main consumer, which may be the codegen
233     // action, they likely will need the ASTContext, so don't clear it in the
234     // codegen action.
235     CI.getCodeGenOpts().ClearASTBeforeBackend = false;
236     for (auto &C : AfterConsumers)
237       Consumers.push_back(std::move(C));
238   }
239 
240   return std::make_unique<MultiplexConsumer>(std::move(Consumers));
241 }
242 
243 /// For preprocessed files, if the first line is the linemarker and specifies
244 /// the original source file name, use that name as the input file name.
245 /// Returns the location of the first token after the line marker directive.
246 ///
247 /// \param CI The compiler instance.
248 /// \param InputFile Populated with the filename from the line marker.
249 /// \param IsModuleMap If \c true, add a line note corresponding to this line
250 ///        directive. (We need to do this because the directive will not be
251 ///        visited by the preprocessor.)
252 static SourceLocation ReadOriginalFileName(CompilerInstance &CI,
253                                            std::string &InputFile,
254                                            bool IsModuleMap = false) {
255   auto &SourceMgr = CI.getSourceManager();
256   auto MainFileID = SourceMgr.getMainFileID();
257 
258   auto MainFileBuf = SourceMgr.getBufferOrNone(MainFileID);
259   if (!MainFileBuf)
260     return SourceLocation();
261 
262   std::unique_ptr<Lexer> RawLexer(
263       new Lexer(MainFileID, *MainFileBuf, SourceMgr, CI.getLangOpts()));
264 
265   // If the first line has the syntax of
266   //
267   // # NUM "FILENAME"
268   //
269   // we use FILENAME as the input file name.
270   Token T;
271   if (RawLexer->LexFromRawLexer(T) || T.getKind() != tok::hash)
272     return SourceLocation();
273   if (RawLexer->LexFromRawLexer(T) || T.isAtStartOfLine() ||
274       T.getKind() != tok::numeric_constant)
275     return SourceLocation();
276 
277   unsigned LineNo;
278   SourceLocation LineNoLoc = T.getLocation();
279   if (IsModuleMap) {
280     llvm::SmallString<16> Buffer;
281     if (Lexer::getSpelling(LineNoLoc, Buffer, SourceMgr, CI.getLangOpts())
282             .getAsInteger(10, LineNo))
283       return SourceLocation();
284   }
285 
286   RawLexer->LexFromRawLexer(T);
287   if (T.isAtStartOfLine() || T.getKind() != tok::string_literal)
288     return SourceLocation();
289 
290   StringLiteralParser Literal(T, CI.getPreprocessor());
291   if (Literal.hadError)
292     return SourceLocation();
293   RawLexer->LexFromRawLexer(T);
294   if (T.isNot(tok::eof) && !T.isAtStartOfLine())
295     return SourceLocation();
296   InputFile = Literal.GetString().str();
297 
298   if (IsModuleMap)
299     CI.getSourceManager().AddLineNote(
300         LineNoLoc, LineNo, SourceMgr.getLineTableFilenameID(InputFile), false,
301         false, SrcMgr::C_User_ModuleMap);
302 
303   return T.getLocation();
304 }
305 
306 static SmallVectorImpl<char> &
307 operator+=(SmallVectorImpl<char> &Includes, StringRef RHS) {
308   Includes.append(RHS.begin(), RHS.end());
309   return Includes;
310 }
311 
312 static void addHeaderInclude(StringRef HeaderName,
313                              SmallVectorImpl<char> &Includes,
314                              const LangOptions &LangOpts,
315                              bool IsExternC) {
316   if (IsExternC && LangOpts.CPlusPlus)
317     Includes += "extern \"C\" {\n";
318   if (LangOpts.ObjC)
319     Includes += "#import \"";
320   else
321     Includes += "#include \"";
322 
323   Includes += HeaderName;
324 
325   Includes += "\"\n";
326   if (IsExternC && LangOpts.CPlusPlus)
327     Includes += "}\n";
328 }
329 
330 /// Collect the set of header includes needed to construct the given
331 /// module and update the TopHeaders file set of the module.
332 ///
333 /// \param Module The module we're collecting includes from.
334 ///
335 /// \param Includes Will be augmented with the set of \#includes or \#imports
336 /// needed to load all of the named headers.
337 static std::error_code collectModuleHeaderIncludes(
338     const LangOptions &LangOpts, FileManager &FileMgr, DiagnosticsEngine &Diag,
339     ModuleMap &ModMap, clang::Module *Module, SmallVectorImpl<char> &Includes) {
340   // Don't collect any headers for unavailable modules.
341   if (!Module->isAvailable())
342     return std::error_code();
343 
344   // Resolve all lazy header directives to header files.
345   ModMap.resolveHeaderDirectives(Module, /*File=*/std::nullopt);
346 
347   // If any headers are missing, we can't build this module. In most cases,
348   // diagnostics for this should have already been produced; we only get here
349   // if explicit stat information was provided.
350   // FIXME: If the name resolves to a file with different stat information,
351   // produce a better diagnostic.
352   if (!Module->MissingHeaders.empty()) {
353     auto &MissingHeader = Module->MissingHeaders.front();
354     Diag.Report(MissingHeader.FileNameLoc, diag::err_module_header_missing)
355       << MissingHeader.IsUmbrella << MissingHeader.FileName;
356     return std::error_code();
357   }
358 
359   // Add includes for each of these headers.
360   for (auto HK : {Module::HK_Normal, Module::HK_Private}) {
361     for (Module::Header &H : Module->Headers[HK]) {
362       Module->addTopHeader(H.Entry);
363       // Use the path as specified in the module map file. We'll look for this
364       // file relative to the module build directory (the directory containing
365       // the module map file) so this will find the same file that we found
366       // while parsing the module map.
367       addHeaderInclude(H.PathRelativeToRootModuleDirectory, Includes, LangOpts,
368                        Module->IsExternC);
369     }
370   }
371   // Note that Module->PrivateHeaders will not be a TopHeader.
372 
373   if (std::optional<Module::Header> UmbrellaHeader =
374           Module->getUmbrellaHeaderAsWritten()) {
375     Module->addTopHeader(UmbrellaHeader->Entry);
376     if (Module->Parent)
377       // Include the umbrella header for submodules.
378       addHeaderInclude(UmbrellaHeader->PathRelativeToRootModuleDirectory,
379                        Includes, LangOpts, Module->IsExternC);
380   } else if (std::optional<Module::DirectoryName> UmbrellaDir =
381                  Module->getUmbrellaDirAsWritten()) {
382     // Add all of the headers we find in this subdirectory.
383     std::error_code EC;
384     SmallString<128> DirNative;
385     llvm::sys::path::native(UmbrellaDir->Entry.getName(), DirNative);
386 
387     llvm::vfs::FileSystem &FS = FileMgr.getVirtualFileSystem();
388     SmallVector<std::pair<std::string, FileEntryRef>, 8> Headers;
389     for (llvm::vfs::recursive_directory_iterator Dir(FS, DirNative, EC), End;
390          Dir != End && !EC; Dir.increment(EC)) {
391       // Check whether this entry has an extension typically associated with
392       // headers.
393       if (!llvm::StringSwitch<bool>(llvm::sys::path::extension(Dir->path()))
394                .Cases(".h", ".H", ".hh", ".hpp", true)
395                .Default(false))
396         continue;
397 
398       auto Header = FileMgr.getOptionalFileRef(Dir->path());
399       // FIXME: This shouldn't happen unless there is a file system race. Is
400       // that worth diagnosing?
401       if (!Header)
402         continue;
403 
404       // If this header is marked 'unavailable' in this module, don't include
405       // it.
406       if (ModMap.isHeaderUnavailableInModule(*Header, Module))
407         continue;
408 
409       // Compute the relative path from the directory to this file.
410       SmallVector<StringRef, 16> Components;
411       auto PathIt = llvm::sys::path::rbegin(Dir->path());
412       for (int I = 0; I != Dir.level() + 1; ++I, ++PathIt)
413         Components.push_back(*PathIt);
414       SmallString<128> RelativeHeader(
415           UmbrellaDir->PathRelativeToRootModuleDirectory);
416       for (auto It = Components.rbegin(), End = Components.rend(); It != End;
417            ++It)
418         llvm::sys::path::append(RelativeHeader, *It);
419 
420       std::string RelName = RelativeHeader.c_str();
421       Headers.push_back(std::make_pair(RelName, *Header));
422     }
423 
424     if (EC)
425       return EC;
426 
427     // Sort header paths and make the header inclusion order deterministic
428     // across different OSs and filesystems.
429     llvm::sort(Headers, llvm::less_first());
430     for (auto &H : Headers) {
431       // Include this header as part of the umbrella directory.
432       Module->addTopHeader(H.second);
433       addHeaderInclude(H.first, Includes, LangOpts, Module->IsExternC);
434     }
435   }
436 
437   // Recurse into submodules.
438   for (auto *Submodule : Module->submodules())
439     if (std::error_code Err = collectModuleHeaderIncludes(
440             LangOpts, FileMgr, Diag, ModMap, Submodule, Includes))
441       return Err;
442 
443   return std::error_code();
444 }
445 
446 static bool loadModuleMapForModuleBuild(CompilerInstance &CI, bool IsSystem,
447                                         bool IsPreprocessed,
448                                         std::string &PresumedModuleMapFile,
449                                         unsigned &Offset) {
450   auto &SrcMgr = CI.getSourceManager();
451   HeaderSearch &HS = CI.getPreprocessor().getHeaderSearchInfo();
452 
453   // Map the current input to a file.
454   FileID ModuleMapID = SrcMgr.getMainFileID();
455   OptionalFileEntryRef ModuleMap = SrcMgr.getFileEntryRefForID(ModuleMapID);
456   assert(ModuleMap && "MainFileID without FileEntry");
457 
458   // If the module map is preprocessed, handle the initial line marker;
459   // line directives are not part of the module map syntax in general.
460   Offset = 0;
461   if (IsPreprocessed) {
462     SourceLocation EndOfLineMarker =
463         ReadOriginalFileName(CI, PresumedModuleMapFile, /*IsModuleMap*/ true);
464     if (EndOfLineMarker.isValid())
465       Offset = CI.getSourceManager().getDecomposedLoc(EndOfLineMarker).second;
466   }
467 
468   // Load the module map file.
469   if (HS.loadModuleMapFile(*ModuleMap, IsSystem, ModuleMapID, &Offset,
470                            PresumedModuleMapFile))
471     return true;
472 
473   if (SrcMgr.getBufferOrFake(ModuleMapID).getBufferSize() == Offset)
474     Offset = 0;
475 
476   // Infer framework module if possible.
477   if (HS.getModuleMap().canInferFrameworkModule(ModuleMap->getDir())) {
478     SmallString<128> InferredFrameworkPath = ModuleMap->getDir().getName();
479     llvm::sys::path::append(InferredFrameworkPath,
480                             CI.getLangOpts().ModuleName + ".framework");
481     if (auto Dir =
482             CI.getFileManager().getOptionalDirectoryRef(InferredFrameworkPath))
483       (void)HS.getModuleMap().inferFrameworkModule(*Dir, IsSystem, nullptr);
484   }
485 
486   return false;
487 }
488 
489 static Module *prepareToBuildModule(CompilerInstance &CI,
490                                     StringRef ModuleMapFilename) {
491   if (CI.getLangOpts().CurrentModule.empty()) {
492     CI.getDiagnostics().Report(diag::err_missing_module_name);
493 
494     // FIXME: Eventually, we could consider asking whether there was just
495     // a single module described in the module map, and use that as a
496     // default. Then it would be fairly trivial to just "compile" a module
497     // map with a single module (the common case).
498     return nullptr;
499   }
500 
501   // Dig out the module definition.
502   HeaderSearch &HS = CI.getPreprocessor().getHeaderSearchInfo();
503   Module *M = HS.lookupModule(CI.getLangOpts().CurrentModule, SourceLocation(),
504                               /*AllowSearch=*/true);
505   if (!M) {
506     CI.getDiagnostics().Report(diag::err_missing_module)
507       << CI.getLangOpts().CurrentModule << ModuleMapFilename;
508 
509     return nullptr;
510   }
511 
512   // Check whether we can build this module at all.
513   if (Preprocessor::checkModuleIsAvailable(CI.getLangOpts(), CI.getTarget(),
514                                            CI.getDiagnostics(), M))
515     return nullptr;
516 
517   // Inform the preprocessor that includes from within the input buffer should
518   // be resolved relative to the build directory of the module map file.
519   CI.getPreprocessor().setMainFileDir(*M->Directory);
520 
521   // If the module was inferred from a different module map (via an expanded
522   // umbrella module definition), track that fact.
523   // FIXME: It would be preferable to fill this in as part of processing
524   // the module map, rather than adding it after the fact.
525   StringRef OriginalModuleMapName = CI.getFrontendOpts().OriginalModuleMap;
526   if (!OriginalModuleMapName.empty()) {
527     auto OriginalModuleMap =
528         CI.getFileManager().getOptionalFileRef(OriginalModuleMapName,
529                                                /*openFile*/ true);
530     if (!OriginalModuleMap) {
531       CI.getDiagnostics().Report(diag::err_module_map_not_found)
532         << OriginalModuleMapName;
533       return nullptr;
534     }
535     if (*OriginalModuleMap != CI.getSourceManager().getFileEntryRefForID(
536                                   CI.getSourceManager().getMainFileID())) {
537       M->IsInferred = true;
538       CI.getPreprocessor().getHeaderSearchInfo().getModuleMap()
539         .setInferredModuleAllowedBy(M, *OriginalModuleMap);
540     }
541   }
542 
543   // If we're being run from the command-line, the module build stack will not
544   // have been filled in yet, so complete it now in order to allow us to detect
545   // module cycles.
546   SourceManager &SourceMgr = CI.getSourceManager();
547   if (SourceMgr.getModuleBuildStack().empty())
548     SourceMgr.pushModuleBuildStack(CI.getLangOpts().CurrentModule,
549                                    FullSourceLoc(SourceLocation(), SourceMgr));
550   return M;
551 }
552 
553 /// Compute the input buffer that should be used to build the specified module.
554 static std::unique_ptr<llvm::MemoryBuffer>
555 getInputBufferForModule(CompilerInstance &CI, Module *M) {
556   FileManager &FileMgr = CI.getFileManager();
557 
558   // Collect the set of #includes we need to build the module.
559   SmallString<256> HeaderContents;
560   std::error_code Err = std::error_code();
561   if (std::optional<Module::Header> UmbrellaHeader =
562           M->getUmbrellaHeaderAsWritten())
563     addHeaderInclude(UmbrellaHeader->PathRelativeToRootModuleDirectory,
564                      HeaderContents, CI.getLangOpts(), M->IsExternC);
565   Err = collectModuleHeaderIncludes(
566       CI.getLangOpts(), FileMgr, CI.getDiagnostics(),
567       CI.getPreprocessor().getHeaderSearchInfo().getModuleMap(), M,
568       HeaderContents);
569 
570   if (Err) {
571     CI.getDiagnostics().Report(diag::err_module_cannot_create_includes)
572       << M->getFullModuleName() << Err.message();
573     return nullptr;
574   }
575 
576   return llvm::MemoryBuffer::getMemBufferCopy(
577       HeaderContents, Module::getModuleInputBufferName());
578 }
579 
580 bool FrontendAction::BeginSourceFile(CompilerInstance &CI,
581                                      const FrontendInputFile &RealInput) {
582   FrontendInputFile Input(RealInput);
583   assert(!Instance && "Already processing a source file!");
584   assert(!Input.isEmpty() && "Unexpected empty filename!");
585   setCurrentInput(Input);
586   setCompilerInstance(&CI);
587 
588   bool HasBegunSourceFile = false;
589   bool ReplayASTFile = Input.getKind().getFormat() == InputKind::Precompiled &&
590                        usesPreprocessorOnly();
591 
592   // If we fail, reset state since the client will not end up calling the
593   // matching EndSourceFile(). All paths that return true should release this.
594   auto FailureCleanup = llvm::make_scope_exit([&]() {
595     if (HasBegunSourceFile)
596       CI.getDiagnosticClient().EndSourceFile();
597     CI.setASTConsumer(nullptr);
598     CI.clearOutputFiles(/*EraseFiles=*/true);
599     CI.getLangOpts().setCompilingModule(LangOptions::CMK_None);
600     setCurrentInput(FrontendInputFile());
601     setCompilerInstance(nullptr);
602   });
603 
604   if (!BeginInvocation(CI))
605     return false;
606 
607   // If we're replaying the build of an AST file, import it and set up
608   // the initial state from its build.
609   if (ReplayASTFile) {
610     IntrusiveRefCntPtr<DiagnosticsEngine> Diags(&CI.getDiagnostics());
611 
612     // The AST unit populates its own diagnostics engine rather than ours.
613     IntrusiveRefCntPtr<DiagnosticsEngine> ASTDiags(
614         new DiagnosticsEngine(Diags->getDiagnosticIDs(),
615                               &Diags->getDiagnosticOptions()));
616     ASTDiags->setClient(Diags->getClient(), /*OwnsClient*/false);
617 
618     // FIXME: What if the input is a memory buffer?
619     StringRef InputFile = Input.getFile();
620 
621     std::unique_ptr<ASTUnit> AST = ASTUnit::LoadFromASTFile(
622         std::string(InputFile), CI.getPCHContainerReader(),
623         ASTUnit::LoadPreprocessorOnly, ASTDiags, CI.getFileSystemOpts(),
624         /*HeaderSearchOptions=*/nullptr, CI.getCodeGenOpts().DebugTypeExtRefs);
625     if (!AST)
626       return false;
627 
628     // Options relating to how we treat the input (but not what we do with it)
629     // are inherited from the AST unit.
630     CI.getHeaderSearchOpts() = AST->getHeaderSearchOpts();
631     CI.getPreprocessorOpts() = AST->getPreprocessorOpts();
632     CI.getLangOpts() = AST->getLangOpts();
633 
634     // Set the shared objects, these are reset when we finish processing the
635     // file, otherwise the CompilerInstance will happily destroy them.
636     CI.setFileManager(&AST->getFileManager());
637     CI.createSourceManager(CI.getFileManager());
638     CI.getSourceManager().initializeForReplay(AST->getSourceManager());
639 
640     // Preload all the module files loaded transitively by the AST unit. Also
641     // load all module map files that were parsed as part of building the AST
642     // unit.
643     if (auto ASTReader = AST->getASTReader()) {
644       auto &MM = ASTReader->getModuleManager();
645       auto &PrimaryModule = MM.getPrimaryModule();
646 
647       for (serialization::ModuleFile &MF : MM)
648         if (&MF != &PrimaryModule)
649           CI.getFrontendOpts().ModuleFiles.push_back(MF.FileName);
650 
651       ASTReader->visitTopLevelModuleMaps(PrimaryModule, [&](FileEntryRef FE) {
652         CI.getFrontendOpts().ModuleMapFiles.push_back(
653             std::string(FE.getName()));
654       });
655     }
656 
657     // Set up the input file for replay purposes.
658     auto Kind = AST->getInputKind();
659     if (Kind.getFormat() == InputKind::ModuleMap) {
660       Module *ASTModule =
661           AST->getPreprocessor().getHeaderSearchInfo().lookupModule(
662               AST->getLangOpts().CurrentModule, SourceLocation(),
663               /*AllowSearch*/ false);
664       assert(ASTModule && "module file does not define its own module");
665       Input = FrontendInputFile(ASTModule->PresumedModuleMapFile, Kind);
666     } else {
667       auto &OldSM = AST->getSourceManager();
668       FileID ID = OldSM.getMainFileID();
669       if (auto File = OldSM.getFileEntryRefForID(ID))
670         Input = FrontendInputFile(File->getName(), Kind);
671       else
672         Input = FrontendInputFile(OldSM.getBufferOrFake(ID), Kind);
673     }
674     setCurrentInput(Input, std::move(AST));
675   }
676 
677   // AST files follow a very different path, since they share objects via the
678   // AST unit.
679   if (Input.getKind().getFormat() == InputKind::Precompiled) {
680     assert(!usesPreprocessorOnly() && "this case was handled above");
681     assert(hasASTFileSupport() &&
682            "This action does not have AST file support!");
683 
684     IntrusiveRefCntPtr<DiagnosticsEngine> Diags(&CI.getDiagnostics());
685 
686     // FIXME: What if the input is a memory buffer?
687     StringRef InputFile = Input.getFile();
688 
689     std::unique_ptr<ASTUnit> AST = ASTUnit::LoadFromASTFile(
690         std::string(InputFile), CI.getPCHContainerReader(),
691         ASTUnit::LoadEverything, Diags, CI.getFileSystemOpts(),
692         CI.getHeaderSearchOptsPtr(),
693         CI.getCodeGenOpts().DebugTypeExtRefs);
694 
695     if (!AST)
696       return false;
697 
698     // Inform the diagnostic client we are processing a source file.
699     CI.getDiagnosticClient().BeginSourceFile(CI.getLangOpts(), nullptr);
700     HasBegunSourceFile = true;
701 
702     // Set the shared objects, these are reset when we finish processing the
703     // file, otherwise the CompilerInstance will happily destroy them.
704     CI.setFileManager(&AST->getFileManager());
705     CI.setSourceManager(&AST->getSourceManager());
706     CI.setPreprocessor(AST->getPreprocessorPtr());
707     Preprocessor &PP = CI.getPreprocessor();
708     PP.getBuiltinInfo().initializeBuiltins(PP.getIdentifierTable(),
709                                            PP.getLangOpts());
710     CI.setASTContext(&AST->getASTContext());
711 
712     setCurrentInput(Input, std::move(AST));
713 
714     // Initialize the action.
715     if (!BeginSourceFileAction(CI))
716       return false;
717 
718     // Create the AST consumer.
719     CI.setASTConsumer(CreateWrappedASTConsumer(CI, InputFile));
720     if (!CI.hasASTConsumer())
721       return false;
722 
723     FailureCleanup.release();
724     return true;
725   }
726 
727   // Set up the file and source managers, if needed.
728   if (!CI.hasFileManager()) {
729     if (!CI.createFileManager()) {
730       return false;
731     }
732   }
733   if (!CI.hasSourceManager()) {
734     CI.createSourceManager(CI.getFileManager());
735     if (CI.getDiagnosticOpts().getFormat() == DiagnosticOptions::SARIF) {
736       static_cast<SARIFDiagnosticPrinter *>(&CI.getDiagnosticClient())
737           ->setSarifWriter(
738               std::make_unique<SarifDocumentWriter>(CI.getSourceManager()));
739     }
740   }
741 
742   // Set up embedding for any specified files. Do this before we load any
743   // source files, including the primary module map for the compilation.
744   for (const auto &F : CI.getFrontendOpts().ModulesEmbedFiles) {
745     if (auto FE = CI.getFileManager().getFile(F, /*openFile*/true))
746       CI.getSourceManager().setFileIsTransient(*FE);
747     else
748       CI.getDiagnostics().Report(diag::err_modules_embed_file_not_found) << F;
749   }
750   if (CI.getFrontendOpts().ModulesEmbedAllFiles)
751     CI.getSourceManager().setAllFilesAreTransient(true);
752 
753   // IR files bypass the rest of initialization.
754   if (Input.getKind().getLanguage() == Language::LLVM_IR) {
755     assert(hasIRSupport() &&
756            "This action does not have IR file support!");
757 
758     // Inform the diagnostic client we are processing a source file.
759     CI.getDiagnosticClient().BeginSourceFile(CI.getLangOpts(), nullptr);
760     HasBegunSourceFile = true;
761 
762     // Initialize the action.
763     if (!BeginSourceFileAction(CI))
764       return false;
765 
766     // Initialize the main file entry.
767     if (!CI.InitializeSourceManager(CurrentInput))
768       return false;
769 
770     FailureCleanup.release();
771     return true;
772   }
773 
774   // If the implicit PCH include is actually a directory, rather than
775   // a single file, search for a suitable PCH file in that directory.
776   if (!CI.getPreprocessorOpts().ImplicitPCHInclude.empty()) {
777     FileManager &FileMgr = CI.getFileManager();
778     PreprocessorOptions &PPOpts = CI.getPreprocessorOpts();
779     StringRef PCHInclude = PPOpts.ImplicitPCHInclude;
780     std::string SpecificModuleCachePath = CI.getSpecificModuleCachePath();
781     if (auto PCHDir = FileMgr.getOptionalDirectoryRef(PCHInclude)) {
782       std::error_code EC;
783       SmallString<128> DirNative;
784       llvm::sys::path::native(PCHDir->getName(), DirNative);
785       bool Found = false;
786       llvm::vfs::FileSystem &FS = FileMgr.getVirtualFileSystem();
787       for (llvm::vfs::directory_iterator Dir = FS.dir_begin(DirNative, EC),
788                                          DirEnd;
789            Dir != DirEnd && !EC; Dir.increment(EC)) {
790         // Check whether this is an acceptable AST file.
791         if (ASTReader::isAcceptableASTFile(
792                 Dir->path(), FileMgr, CI.getModuleCache(),
793                 CI.getPCHContainerReader(), CI.getLangOpts(),
794                 CI.getTargetOpts(), CI.getPreprocessorOpts(),
795                 SpecificModuleCachePath, /*RequireStrictOptionMatches=*/true)) {
796           PPOpts.ImplicitPCHInclude = std::string(Dir->path());
797           Found = true;
798           break;
799         }
800       }
801 
802       if (!Found) {
803         CI.getDiagnostics().Report(diag::err_fe_no_pch_in_dir) << PCHInclude;
804         return false;
805       }
806     }
807   }
808 
809   // Set up the preprocessor if needed. When parsing model files the
810   // preprocessor of the original source is reused.
811   if (!isModelParsingAction())
812     CI.createPreprocessor(getTranslationUnitKind());
813 
814   // Inform the diagnostic client we are processing a source file.
815   CI.getDiagnosticClient().BeginSourceFile(CI.getLangOpts(),
816                                            &CI.getPreprocessor());
817   HasBegunSourceFile = true;
818 
819   // Handle C++20 header units.
820   // Here, the user has the option to specify that the header name should be
821   // looked up in the pre-processor search paths (and the main filename as
822   // passed by the driver might therefore be incomplete until that look-up).
823   if (CI.getLangOpts().CPlusPlusModules && Input.getKind().isHeaderUnit() &&
824       !Input.getKind().isPreprocessed()) {
825     StringRef FileName = Input.getFile();
826     InputKind Kind = Input.getKind();
827     if (Kind.getHeaderUnitKind() != InputKind::HeaderUnit_Abs) {
828       assert(CI.hasPreprocessor() &&
829              "trying to build a header unit without a Pre-processor?");
830       HeaderSearch &HS = CI.getPreprocessor().getHeaderSearchInfo();
831       // Relative searches begin from CWD.
832       auto Dir = CI.getFileManager().getOptionalDirectoryRef(".");
833       SmallVector<std::pair<const FileEntry *, DirectoryEntryRef>, 1> CWD;
834       CWD.push_back({nullptr, *Dir});
835       OptionalFileEntryRef FE =
836           HS.LookupFile(FileName, SourceLocation(),
837                         /*Angled*/ Input.getKind().getHeaderUnitKind() ==
838                             InputKind::HeaderUnit_System,
839                         nullptr, nullptr, CWD, nullptr, nullptr, nullptr,
840                         nullptr, nullptr, nullptr);
841       if (!FE) {
842         CI.getDiagnostics().Report(diag::err_module_header_file_not_found)
843             << FileName;
844         return false;
845       }
846       // We now have the filename...
847       FileName = FE->getName();
848       // ... still a header unit, but now use the path as written.
849       Kind = Input.getKind().withHeaderUnit(InputKind::HeaderUnit_Abs);
850       Input = FrontendInputFile(FileName, Kind, Input.isSystem());
851     }
852     // Unless the user has overridden the name, the header unit module name is
853     // the pathname for the file.
854     if (CI.getLangOpts().ModuleName.empty())
855       CI.getLangOpts().ModuleName = std::string(FileName);
856     CI.getLangOpts().CurrentModule = CI.getLangOpts().ModuleName;
857   }
858 
859   if (!CI.InitializeSourceManager(Input))
860     return false;
861 
862   if (CI.getLangOpts().CPlusPlusModules && Input.getKind().isHeaderUnit() &&
863       Input.getKind().isPreprocessed() && !usesPreprocessorOnly()) {
864     // We have an input filename like foo.iih, but we want to find the right
865     // module name (and original file, to build the map entry).
866     // Check if the first line specifies the original source file name with a
867     // linemarker.
868     std::string PresumedInputFile = std::string(getCurrentFileOrBufferName());
869     ReadOriginalFileName(CI, PresumedInputFile);
870     // Unless the user overrides this, the module name is the name by which the
871     // original file was known.
872     if (CI.getLangOpts().ModuleName.empty())
873       CI.getLangOpts().ModuleName = std::string(PresumedInputFile);
874     CI.getLangOpts().CurrentModule = CI.getLangOpts().ModuleName;
875   }
876 
877   // For module map files, we first parse the module map and synthesize a
878   // "<module-includes>" buffer before more conventional processing.
879   if (Input.getKind().getFormat() == InputKind::ModuleMap) {
880     CI.getLangOpts().setCompilingModule(LangOptions::CMK_ModuleMap);
881 
882     std::string PresumedModuleMapFile;
883     unsigned OffsetToContents;
884     if (loadModuleMapForModuleBuild(CI, Input.isSystem(),
885                                     Input.isPreprocessed(),
886                                     PresumedModuleMapFile, OffsetToContents))
887       return false;
888 
889     auto *CurrentModule = prepareToBuildModule(CI, Input.getFile());
890     if (!CurrentModule)
891       return false;
892 
893     CurrentModule->PresumedModuleMapFile = PresumedModuleMapFile;
894 
895     if (OffsetToContents)
896       // If the module contents are in the same file, skip to them.
897       CI.getPreprocessor().setSkipMainFilePreamble(OffsetToContents, true);
898     else {
899       // Otherwise, convert the module description to a suitable input buffer.
900       auto Buffer = getInputBufferForModule(CI, CurrentModule);
901       if (!Buffer)
902         return false;
903 
904       // Reinitialize the main file entry to refer to the new input.
905       auto Kind = CurrentModule->IsSystem ? SrcMgr::C_System : SrcMgr::C_User;
906       auto &SourceMgr = CI.getSourceManager();
907       auto BufferID = SourceMgr.createFileID(std::move(Buffer), Kind);
908       assert(BufferID.isValid() && "couldn't create module buffer ID");
909       SourceMgr.setMainFileID(BufferID);
910     }
911   }
912 
913   // Initialize the action.
914   if (!BeginSourceFileAction(CI))
915     return false;
916 
917   // If we were asked to load any module map files, do so now.
918   for (const auto &Filename : CI.getFrontendOpts().ModuleMapFiles) {
919     if (auto File = CI.getFileManager().getOptionalFileRef(Filename))
920       CI.getPreprocessor().getHeaderSearchInfo().loadModuleMapFile(
921           *File, /*IsSystem*/false);
922     else
923       CI.getDiagnostics().Report(diag::err_module_map_not_found) << Filename;
924   }
925 
926   // If compiling implementation of a module, load its module map file now.
927   (void)CI.getPreprocessor().getCurrentModuleImplementation();
928 
929   // Add a module declaration scope so that modules from -fmodule-map-file
930   // arguments may shadow modules found implicitly in search paths.
931   CI.getPreprocessor()
932       .getHeaderSearchInfo()
933       .getModuleMap()
934       .finishModuleDeclarationScope();
935 
936   // Create the AST context and consumer unless this is a preprocessor only
937   // action.
938   if (!usesPreprocessorOnly()) {
939     // Parsing a model file should reuse the existing ASTContext.
940     if (!isModelParsingAction())
941       CI.createASTContext();
942 
943     // For preprocessed files, check if the first line specifies the original
944     // source file name with a linemarker.
945     std::string PresumedInputFile = std::string(getCurrentFileOrBufferName());
946     if (Input.isPreprocessed())
947       ReadOriginalFileName(CI, PresumedInputFile);
948 
949     std::unique_ptr<ASTConsumer> Consumer =
950         CreateWrappedASTConsumer(CI, PresumedInputFile);
951     if (!Consumer)
952       return false;
953 
954     // FIXME: should not overwrite ASTMutationListener when parsing model files?
955     if (!isModelParsingAction())
956       CI.getASTContext().setASTMutationListener(Consumer->GetASTMutationListener());
957 
958     if (!CI.getPreprocessorOpts().ChainedIncludes.empty()) {
959       // Convert headers to PCH and chain them.
960       IntrusiveRefCntPtr<ExternalSemaSource> source, FinalReader;
961       source = createChainedIncludesSource(CI, FinalReader);
962       if (!source)
963         return false;
964       CI.setASTReader(static_cast<ASTReader *>(FinalReader.get()));
965       CI.getASTContext().setExternalSource(source);
966     } else if (CI.getLangOpts().Modules ||
967                !CI.getPreprocessorOpts().ImplicitPCHInclude.empty()) {
968       // Use PCM or PCH.
969       assert(hasPCHSupport() && "This action does not have PCH support!");
970       ASTDeserializationListener *DeserialListener =
971           Consumer->GetASTDeserializationListener();
972       bool DeleteDeserialListener = false;
973       if (CI.getPreprocessorOpts().DumpDeserializedPCHDecls) {
974         DeserialListener = new DeserializedDeclsDumper(DeserialListener,
975                                                        DeleteDeserialListener);
976         DeleteDeserialListener = true;
977       }
978       if (!CI.getPreprocessorOpts().DeserializedPCHDeclsToErrorOn.empty()) {
979         DeserialListener = new DeserializedDeclsChecker(
980             CI.getASTContext(),
981             CI.getPreprocessorOpts().DeserializedPCHDeclsToErrorOn,
982             DeserialListener, DeleteDeserialListener);
983         DeleteDeserialListener = true;
984       }
985       if (!CI.getPreprocessorOpts().ImplicitPCHInclude.empty()) {
986         CI.createPCHExternalASTSource(
987             CI.getPreprocessorOpts().ImplicitPCHInclude,
988             CI.getPreprocessorOpts().DisablePCHOrModuleValidation,
989             CI.getPreprocessorOpts().AllowPCHWithCompilerErrors,
990             DeserialListener, DeleteDeserialListener);
991         if (!CI.getASTContext().getExternalSource())
992           return false;
993       }
994       // If modules are enabled, create the AST reader before creating
995       // any builtins, so that all declarations know that they might be
996       // extended by an external source.
997       if (CI.getLangOpts().Modules || !CI.hasASTContext() ||
998           !CI.getASTContext().getExternalSource()) {
999         CI.createASTReader();
1000         CI.getASTReader()->setDeserializationListener(DeserialListener,
1001                                                       DeleteDeserialListener);
1002       }
1003     }
1004 
1005     CI.setASTConsumer(std::move(Consumer));
1006     if (!CI.hasASTConsumer())
1007       return false;
1008   }
1009 
1010   // Initialize built-in info as long as we aren't using an external AST
1011   // source.
1012   if (CI.getLangOpts().Modules || !CI.hasASTContext() ||
1013       !CI.getASTContext().getExternalSource()) {
1014     Preprocessor &PP = CI.getPreprocessor();
1015     PP.getBuiltinInfo().initializeBuiltins(PP.getIdentifierTable(),
1016                                            PP.getLangOpts());
1017   } else {
1018     // FIXME: If this is a problem, recover from it by creating a multiplex
1019     // source.
1020     assert((!CI.getLangOpts().Modules || CI.getASTReader()) &&
1021            "modules enabled but created an external source that "
1022            "doesn't support modules");
1023   }
1024 
1025   // If we were asked to load any module files, do so now.
1026   for (const auto &ModuleFile : CI.getFrontendOpts().ModuleFiles) {
1027     serialization::ModuleFile *Loaded = nullptr;
1028     if (!CI.loadModuleFile(ModuleFile, Loaded))
1029       return false;
1030 
1031     if (Loaded && Loaded->StandardCXXModule)
1032       CI.getDiagnostics().Report(
1033           diag::warn_eagerly_load_for_standard_cplusplus_modules);
1034   }
1035 
1036   // If there is a layout overrides file, attach an external AST source that
1037   // provides the layouts from that file.
1038   if (!CI.getFrontendOpts().OverrideRecordLayoutsFile.empty() &&
1039       CI.hasASTContext() && !CI.getASTContext().getExternalSource()) {
1040     IntrusiveRefCntPtr<ExternalASTSource>
1041       Override(new LayoutOverrideSource(
1042                      CI.getFrontendOpts().OverrideRecordLayoutsFile));
1043     CI.getASTContext().setExternalSource(Override);
1044   }
1045 
1046   // Setup HLSL External Sema Source
1047   if (CI.getLangOpts().HLSL && CI.hasASTContext()) {
1048     IntrusiveRefCntPtr<ExternalSemaSource> HLSLSema(
1049         new HLSLExternalSemaSource());
1050     if (auto *SemaSource = dyn_cast_if_present<ExternalSemaSource>(
1051             CI.getASTContext().getExternalSource())) {
1052       IntrusiveRefCntPtr<ExternalSemaSource> MultiSema(
1053           new MultiplexExternalSemaSource(SemaSource, HLSLSema.get()));
1054       CI.getASTContext().setExternalSource(MultiSema);
1055     } else
1056       CI.getASTContext().setExternalSource(HLSLSema);
1057   }
1058 
1059   FailureCleanup.release();
1060   return true;
1061 }
1062 
1063 llvm::Error FrontendAction::Execute() {
1064   CompilerInstance &CI = getCompilerInstance();
1065 
1066   if (CI.hasFrontendTimer()) {
1067     llvm::TimeRegion Timer(CI.getFrontendTimer());
1068     ExecuteAction();
1069   }
1070   else ExecuteAction();
1071 
1072   // If we are supposed to rebuild the global module index, do so now unless
1073   // there were any module-build failures.
1074   if (CI.shouldBuildGlobalModuleIndex() && CI.hasFileManager() &&
1075       CI.hasPreprocessor()) {
1076     StringRef Cache =
1077         CI.getPreprocessor().getHeaderSearchInfo().getModuleCachePath();
1078     if (!Cache.empty()) {
1079       if (llvm::Error Err = GlobalModuleIndex::writeIndex(
1080               CI.getFileManager(), CI.getPCHContainerReader(), Cache)) {
1081         // FIXME this drops the error on the floor, but
1082         // Index/pch-from-libclang.c seems to rely on dropping at least some of
1083         // the error conditions!
1084         consumeError(std::move(Err));
1085       }
1086     }
1087   }
1088 
1089   return llvm::Error::success();
1090 }
1091 
1092 void FrontendAction::EndSourceFile() {
1093   CompilerInstance &CI = getCompilerInstance();
1094 
1095   // Inform the diagnostic client we are done with this source file.
1096   CI.getDiagnosticClient().EndSourceFile();
1097 
1098   // Inform the preprocessor we are done.
1099   if (CI.hasPreprocessor())
1100     CI.getPreprocessor().EndSourceFile();
1101 
1102   // Finalize the action.
1103   EndSourceFileAction();
1104 
1105   // Sema references the ast consumer, so reset sema first.
1106   //
1107   // FIXME: There is more per-file stuff we could just drop here?
1108   bool DisableFree = CI.getFrontendOpts().DisableFree;
1109   if (DisableFree) {
1110     CI.resetAndLeakSema();
1111     CI.resetAndLeakASTContext();
1112     llvm::BuryPointer(CI.takeASTConsumer().get());
1113   } else {
1114     CI.setSema(nullptr);
1115     CI.setASTContext(nullptr);
1116     CI.setASTConsumer(nullptr);
1117   }
1118 
1119   if (CI.getFrontendOpts().ShowStats) {
1120     llvm::errs() << "\nSTATISTICS FOR '" << getCurrentFileOrBufferName() << "':\n";
1121     CI.getPreprocessor().PrintStats();
1122     CI.getPreprocessor().getIdentifierTable().PrintStats();
1123     CI.getPreprocessor().getHeaderSearchInfo().PrintStats();
1124     CI.getSourceManager().PrintStats();
1125     llvm::errs() << "\n";
1126   }
1127 
1128   // Cleanup the output streams, and erase the output files if instructed by the
1129   // FrontendAction.
1130   CI.clearOutputFiles(/*EraseFiles=*/shouldEraseOutputFiles());
1131 
1132   // The resources are owned by AST when the current file is AST.
1133   // So we reset the resources here to avoid users accessing it
1134   // accidently.
1135   if (isCurrentFileAST()) {
1136     if (DisableFree) {
1137       CI.resetAndLeakPreprocessor();
1138       CI.resetAndLeakSourceManager();
1139       CI.resetAndLeakFileManager();
1140       llvm::BuryPointer(std::move(CurrentASTUnit));
1141     } else {
1142       CI.setPreprocessor(nullptr);
1143       CI.setSourceManager(nullptr);
1144       CI.setFileManager(nullptr);
1145     }
1146   }
1147 
1148   setCompilerInstance(nullptr);
1149   setCurrentInput(FrontendInputFile());
1150   CI.getLangOpts().setCompilingModule(LangOptions::CMK_None);
1151 }
1152 
1153 bool FrontendAction::shouldEraseOutputFiles() {
1154   return getCompilerInstance().getDiagnostics().hasErrorOccurred();
1155 }
1156 
1157 //===----------------------------------------------------------------------===//
1158 // Utility Actions
1159 //===----------------------------------------------------------------------===//
1160 
1161 void ASTFrontendAction::ExecuteAction() {
1162   CompilerInstance &CI = getCompilerInstance();
1163   if (!CI.hasPreprocessor())
1164     return;
1165   // This is a fallback: If the client forgets to invoke this, we mark the
1166   // current stack as the bottom. Though not optimal, this could help prevent
1167   // stack overflow during deep recursion.
1168   clang::noteBottomOfStack();
1169 
1170   // FIXME: Move the truncation aspect of this into Sema, we delayed this till
1171   // here so the source manager would be initialized.
1172   if (hasCodeCompletionSupport() &&
1173       !CI.getFrontendOpts().CodeCompletionAt.FileName.empty())
1174     CI.createCodeCompletionConsumer();
1175 
1176   // Use a code completion consumer?
1177   CodeCompleteConsumer *CompletionConsumer = nullptr;
1178   if (CI.hasCodeCompletionConsumer())
1179     CompletionConsumer = &CI.getCodeCompletionConsumer();
1180 
1181   if (!CI.hasSema())
1182     CI.createSema(getTranslationUnitKind(), CompletionConsumer);
1183 
1184   ParseAST(CI.getSema(), CI.getFrontendOpts().ShowStats,
1185            CI.getFrontendOpts().SkipFunctionBodies);
1186 }
1187 
1188 void PluginASTAction::anchor() { }
1189 
1190 std::unique_ptr<ASTConsumer>
1191 PreprocessorFrontendAction::CreateASTConsumer(CompilerInstance &CI,
1192                                               StringRef InFile) {
1193   llvm_unreachable("Invalid CreateASTConsumer on preprocessor action!");
1194 }
1195 
1196 bool WrapperFrontendAction::PrepareToExecuteAction(CompilerInstance &CI) {
1197   return WrappedAction->PrepareToExecuteAction(CI);
1198 }
1199 std::unique_ptr<ASTConsumer>
1200 WrapperFrontendAction::CreateASTConsumer(CompilerInstance &CI,
1201                                          StringRef InFile) {
1202   return WrappedAction->CreateASTConsumer(CI, InFile);
1203 }
1204 bool WrapperFrontendAction::BeginInvocation(CompilerInstance &CI) {
1205   return WrappedAction->BeginInvocation(CI);
1206 }
1207 bool WrapperFrontendAction::BeginSourceFileAction(CompilerInstance &CI) {
1208   WrappedAction->setCurrentInput(getCurrentInput());
1209   WrappedAction->setCompilerInstance(&CI);
1210   auto Ret = WrappedAction->BeginSourceFileAction(CI);
1211   // BeginSourceFileAction may change CurrentInput, e.g. during module builds.
1212   setCurrentInput(WrappedAction->getCurrentInput());
1213   return Ret;
1214 }
1215 void WrapperFrontendAction::ExecuteAction() {
1216   WrappedAction->ExecuteAction();
1217 }
1218 void WrapperFrontendAction::EndSourceFile() { WrappedAction->EndSourceFile(); }
1219 void WrapperFrontendAction::EndSourceFileAction() {
1220   WrappedAction->EndSourceFileAction();
1221 }
1222 bool WrapperFrontendAction::shouldEraseOutputFiles() {
1223   return WrappedAction->shouldEraseOutputFiles();
1224 }
1225 
1226 bool WrapperFrontendAction::usesPreprocessorOnly() const {
1227   return WrappedAction->usesPreprocessorOnly();
1228 }
1229 TranslationUnitKind WrapperFrontendAction::getTranslationUnitKind() {
1230   return WrappedAction->getTranslationUnitKind();
1231 }
1232 bool WrapperFrontendAction::hasPCHSupport() const {
1233   return WrappedAction->hasPCHSupport();
1234 }
1235 bool WrapperFrontendAction::hasASTFileSupport() const {
1236   return WrappedAction->hasASTFileSupport();
1237 }
1238 bool WrapperFrontendAction::hasIRSupport() const {
1239   return WrappedAction->hasIRSupport();
1240 }
1241 bool WrapperFrontendAction::hasCodeCompletionSupport() const {
1242   return WrappedAction->hasCodeCompletionSupport();
1243 }
1244 
1245 WrapperFrontendAction::WrapperFrontendAction(
1246     std::unique_ptr<FrontendAction> WrappedAction)
1247   : WrappedAction(std::move(WrappedAction)) {}
1248