1 //===--- FrontendAction.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/FrontendAction.h"
11 #include "clang/AST/ASTConsumer.h"
12 #include "clang/AST/ASTContext.h"
13 #include "clang/AST/DeclGroup.h"
14 #include "clang/Lex/HeaderSearch.h"
15 #include "clang/Lex/Preprocessor.h"
16 #include "clang/Frontend/ASTUnit.h"
17 #include "clang/Frontend/ChainedIncludesSource.h"
18 #include "clang/Frontend/CompilerInstance.h"
19 #include "clang/Frontend/FrontendDiagnostic.h"
20 #include "clang/Frontend/FrontendPluginRegistry.h"
21 #include "clang/Frontend/LayoutOverrideSource.h"
22 #include "clang/Frontend/MultiplexConsumer.h"
23 #include "clang/Parse/ParseAST.h"
24 #include "clang/Serialization/ASTDeserializationListener.h"
25 #include "clang/Serialization/ASTReader.h"
26 #include "llvm/Support/MemoryBuffer.h"
27 #include "llvm/Support/Timer.h"
28 #include "llvm/Support/ErrorHandling.h"
29 #include "llvm/Support/raw_ostream.h"
30 using namespace clang;
31 
32 namespace {
33 
34 class DelegatingDeserializationListener : public ASTDeserializationListener {
35   ASTDeserializationListener *Previous;
36 
37 public:
38   explicit DelegatingDeserializationListener(
39                                            ASTDeserializationListener *Previous)
40     : Previous(Previous) { }
41 
42   virtual void ReaderInitialized(ASTReader *Reader) {
43     if (Previous)
44       Previous->ReaderInitialized(Reader);
45   }
46   virtual void IdentifierRead(serialization::IdentID ID,
47                               IdentifierInfo *II) {
48     if (Previous)
49       Previous->IdentifierRead(ID, II);
50   }
51   virtual void TypeRead(serialization::TypeIdx Idx, QualType T) {
52     if (Previous)
53       Previous->TypeRead(Idx, T);
54   }
55   virtual void DeclRead(serialization::DeclID ID, const Decl *D) {
56     if (Previous)
57       Previous->DeclRead(ID, D);
58   }
59   virtual void SelectorRead(serialization::SelectorID ID, Selector Sel) {
60     if (Previous)
61       Previous->SelectorRead(ID, Sel);
62   }
63   virtual void MacroDefinitionRead(serialization::PreprocessedEntityID PPID,
64                                    MacroDefinition *MD) {
65     if (Previous)
66       Previous->MacroDefinitionRead(PPID, MD);
67   }
68 };
69 
70 /// \brief Dumps deserialized declarations.
71 class DeserializedDeclsDumper : public DelegatingDeserializationListener {
72 public:
73   explicit DeserializedDeclsDumper(ASTDeserializationListener *Previous)
74     : DelegatingDeserializationListener(Previous) { }
75 
76   virtual void DeclRead(serialization::DeclID ID, const Decl *D) {
77     llvm::outs() << "PCH DECL: " << D->getDeclKindName();
78     if (const NamedDecl *ND = dyn_cast<NamedDecl>(D))
79       llvm::outs() << " - " << *ND;
80     llvm::outs() << "\n";
81 
82     DelegatingDeserializationListener::DeclRead(ID, D);
83   }
84 };
85 
86 /// \brief Checks deserialized declarations and emits error if a name
87 /// matches one given in command-line using -error-on-deserialized-decl.
88 class DeserializedDeclsChecker : public DelegatingDeserializationListener {
89   ASTContext &Ctx;
90   std::set<std::string> NamesToCheck;
91 
92 public:
93   DeserializedDeclsChecker(ASTContext &Ctx,
94                            const std::set<std::string> &NamesToCheck,
95                            ASTDeserializationListener *Previous)
96     : DelegatingDeserializationListener(Previous),
97       Ctx(Ctx), NamesToCheck(NamesToCheck) { }
98 
99   virtual void DeclRead(serialization::DeclID ID, const Decl *D) {
100     if (const NamedDecl *ND = dyn_cast<NamedDecl>(D))
101       if (NamesToCheck.find(ND->getNameAsString()) != NamesToCheck.end()) {
102         unsigned DiagID
103           = Ctx.getDiagnostics().getCustomDiagID(DiagnosticsEngine::Error,
104                                                  "%0 was deserialized");
105         Ctx.getDiagnostics().Report(Ctx.getFullLoc(D->getLocation()), DiagID)
106             << ND->getNameAsString();
107       }
108 
109     DelegatingDeserializationListener::DeclRead(ID, D);
110   }
111 };
112 
113 } // end anonymous namespace
114 
115 FrontendAction::FrontendAction() : Instance(0) {}
116 
117 FrontendAction::~FrontendAction() {}
118 
119 void FrontendAction::setCurrentInput(const FrontendInputFile &CurrentInput,
120                                      ASTUnit *AST) {
121   this->CurrentInput = CurrentInput;
122   CurrentASTUnit.reset(AST);
123 }
124 
125 ASTConsumer* FrontendAction::CreateWrappedASTConsumer(CompilerInstance &CI,
126                                                       StringRef InFile) {
127   ASTConsumer* Consumer = CreateASTConsumer(CI, InFile);
128   if (!Consumer)
129     return 0;
130 
131   if (CI.getFrontendOpts().AddPluginActions.size() == 0)
132     return Consumer;
133 
134   // Make sure the non-plugin consumer is first, so that plugins can't
135   // modifiy the AST.
136   std::vector<ASTConsumer*> Consumers(1, Consumer);
137 
138   for (size_t i = 0, e = CI.getFrontendOpts().AddPluginActions.size();
139        i != e; ++i) {
140     // This is O(|plugins| * |add_plugins|), but since both numbers are
141     // way below 50 in practice, that's ok.
142     for (FrontendPluginRegistry::iterator
143         it = FrontendPluginRegistry::begin(),
144         ie = FrontendPluginRegistry::end();
145         it != ie; ++it) {
146       if (it->getName() == CI.getFrontendOpts().AddPluginActions[i]) {
147         OwningPtr<PluginASTAction> P(it->instantiate());
148         FrontendAction* c = P.get();
149         if (P->ParseArgs(CI, CI.getFrontendOpts().AddPluginArgs[i]))
150           Consumers.push_back(c->CreateASTConsumer(CI, InFile));
151       }
152     }
153   }
154 
155   return new MultiplexConsumer(Consumers);
156 }
157 
158 bool FrontendAction::BeginSourceFile(CompilerInstance &CI,
159                                      const FrontendInputFile &Input) {
160   assert(!Instance && "Already processing a source file!");
161   assert(!Input.File.empty() && "Unexpected empty filename!");
162   setCurrentInput(Input);
163   setCompilerInstance(&CI);
164 
165   if (!BeginInvocation(CI))
166     goto failure;
167 
168   // AST files follow a very different path, since they share objects via the
169   // AST unit.
170   if (Input.Kind == IK_AST) {
171     assert(!usesPreprocessorOnly() &&
172            "Attempt to pass AST file to preprocessor only action!");
173     assert(hasASTFileSupport() &&
174            "This action does not have AST file support!");
175 
176     IntrusiveRefCntPtr<DiagnosticsEngine> Diags(&CI.getDiagnostics());
177     std::string Error;
178     ASTUnit *AST = ASTUnit::LoadFromASTFile(Input.File, Diags,
179                                             CI.getFileSystemOpts());
180     if (!AST)
181       goto failure;
182 
183     setCurrentInput(Input, AST);
184 
185     // Set the shared objects, these are reset when we finish processing the
186     // file, otherwise the CompilerInstance will happily destroy them.
187     CI.setFileManager(&AST->getFileManager());
188     CI.setSourceManager(&AST->getSourceManager());
189     CI.setPreprocessor(&AST->getPreprocessor());
190     CI.setASTContext(&AST->getASTContext());
191 
192     // Initialize the action.
193     if (!BeginSourceFileAction(CI, Input.File))
194       goto failure;
195 
196     /// Create the AST consumer.
197     CI.setASTConsumer(CreateWrappedASTConsumer(CI, Input.File));
198     if (!CI.hasASTConsumer())
199       goto failure;
200 
201     return true;
202   }
203 
204   // Set up the file and source managers, if needed.
205   if (!CI.hasFileManager())
206     CI.createFileManager();
207   if (!CI.hasSourceManager())
208     CI.createSourceManager(CI.getFileManager());
209 
210   // IR files bypass the rest of initialization.
211   if (Input.Kind == IK_LLVM_IR) {
212     assert(hasIRSupport() &&
213            "This action does not have IR file support!");
214 
215     // Inform the diagnostic client we are processing a source file.
216     CI.getDiagnosticClient().BeginSourceFile(CI.getLangOpts(), 0);
217 
218     // Initialize the action.
219     if (!BeginSourceFileAction(CI, Input.File))
220       goto failure;
221 
222     return true;
223   }
224 
225   // Set up the preprocessor.
226   CI.createPreprocessor();
227 
228   // Inform the diagnostic client we are processing a source file.
229   CI.getDiagnosticClient().BeginSourceFile(CI.getLangOpts(),
230                                            &CI.getPreprocessor());
231 
232   // Initialize the action.
233   if (!BeginSourceFileAction(CI, Input.File))
234     goto failure;
235 
236   /// Create the AST context and consumer unless this is a preprocessor only
237   /// action.
238   if (!usesPreprocessorOnly()) {
239     CI.createASTContext();
240 
241     OwningPtr<ASTConsumer> Consumer(
242                                    CreateWrappedASTConsumer(CI, Input.File));
243     if (!Consumer)
244       goto failure;
245 
246     CI.getASTContext().setASTMutationListener(Consumer->GetASTMutationListener());
247 
248     if (!CI.getPreprocessorOpts().ChainedIncludes.empty()) {
249       // Convert headers to PCH and chain them.
250       OwningPtr<ExternalASTSource> source;
251       source.reset(ChainedIncludesSource::create(CI));
252       if (!source)
253         goto failure;
254       CI.getASTContext().setExternalSource(source);
255 
256     } else if (!CI.getPreprocessorOpts().ImplicitPCHInclude.empty()) {
257       // Use PCH.
258       assert(hasPCHSupport() && "This action does not have PCH support!");
259       ASTDeserializationListener *DeserialListener =
260           Consumer->GetASTDeserializationListener();
261       if (CI.getPreprocessorOpts().DumpDeserializedPCHDecls)
262         DeserialListener = new DeserializedDeclsDumper(DeserialListener);
263       if (!CI.getPreprocessorOpts().DeserializedPCHDeclsToErrorOn.empty())
264         DeserialListener = new DeserializedDeclsChecker(CI.getASTContext(),
265                          CI.getPreprocessorOpts().DeserializedPCHDeclsToErrorOn,
266                                                         DeserialListener);
267       CI.createPCHExternalASTSource(
268                                 CI.getPreprocessorOpts().ImplicitPCHInclude,
269                                 CI.getPreprocessorOpts().DisablePCHValidation,
270                                 CI.getPreprocessorOpts().DisableStatCache,
271                             CI.getPreprocessorOpts().AllowPCHWithCompilerErrors,
272                                 DeserialListener);
273       if (!CI.getASTContext().getExternalSource())
274         goto failure;
275     }
276 
277     CI.setASTConsumer(Consumer.take());
278     if (!CI.hasASTConsumer())
279       goto failure;
280   }
281 
282   // Initialize built-in info as long as we aren't using an external AST
283   // source.
284   if (!CI.hasASTContext() || !CI.getASTContext().getExternalSource()) {
285     Preprocessor &PP = CI.getPreprocessor();
286     PP.getBuiltinInfo().InitializeBuiltins(PP.getIdentifierTable(),
287                                            PP.getLangOpts());
288   }
289 
290   // If there is a layout overrides file, attach an external AST source that
291   // provides the layouts from that file.
292   if (!CI.getFrontendOpts().OverrideRecordLayoutsFile.empty() &&
293       CI.hasASTContext() && !CI.getASTContext().getExternalSource()) {
294     OwningPtr<ExternalASTSource>
295       Override(new LayoutOverrideSource(
296                      CI.getFrontendOpts().OverrideRecordLayoutsFile));
297     CI.getASTContext().setExternalSource(Override);
298   }
299 
300   return true;
301 
302   // If we failed, reset state since the client will not end up calling the
303   // matching EndSourceFile().
304   failure:
305   if (isCurrentFileAST()) {
306     CI.setASTContext(0);
307     CI.setPreprocessor(0);
308     CI.setSourceManager(0);
309     CI.setFileManager(0);
310   }
311 
312   CI.getDiagnosticClient().EndSourceFile();
313   setCurrentInput(FrontendInputFile());
314   setCompilerInstance(0);
315   return false;
316 }
317 
318 bool FrontendAction::Execute() {
319   CompilerInstance &CI = getCompilerInstance();
320 
321   // Initialize the main file entry. This needs to be delayed until after PCH
322   // has loaded.
323   if (!isCurrentFileAST()) {
324     if (!CI.InitializeSourceManager(getCurrentFile(),
325                                     getCurrentInput().IsSystem
326                                       ? SrcMgr::C_System
327                                       : SrcMgr::C_User))
328       return false;
329   }
330 
331   if (CI.hasFrontendTimer()) {
332     llvm::TimeRegion Timer(CI.getFrontendTimer());
333     ExecuteAction();
334   }
335   else ExecuteAction();
336 
337   return true;
338 }
339 
340 void FrontendAction::EndSourceFile() {
341   CompilerInstance &CI = getCompilerInstance();
342 
343   // Inform the diagnostic client we are done with this source file.
344   CI.getDiagnosticClient().EndSourceFile();
345 
346   // Finalize the action.
347   EndSourceFileAction();
348 
349   // Release the consumer and the AST, in that order since the consumer may
350   // perform actions in its destructor which require the context.
351   //
352   // FIXME: There is more per-file stuff we could just drop here?
353   if (CI.getFrontendOpts().DisableFree) {
354     CI.takeASTConsumer();
355     if (!isCurrentFileAST()) {
356       CI.takeSema();
357       CI.resetAndLeakASTContext();
358     }
359   } else {
360     if (!isCurrentFileAST()) {
361       CI.setSema(0);
362       CI.setASTContext(0);
363     }
364     CI.setASTConsumer(0);
365   }
366 
367   // Inform the preprocessor we are done.
368   if (CI.hasPreprocessor())
369     CI.getPreprocessor().EndSourceFile();
370 
371   if (CI.getFrontendOpts().ShowStats) {
372     llvm::errs() << "\nSTATISTICS FOR '" << getCurrentFile() << "':\n";
373     CI.getPreprocessor().PrintStats();
374     CI.getPreprocessor().getIdentifierTable().PrintStats();
375     CI.getPreprocessor().getHeaderSearchInfo().PrintStats();
376     CI.getSourceManager().PrintStats();
377     llvm::errs() << "\n";
378   }
379 
380   // Cleanup the output streams, and erase the output files if we encountered
381   // an error.
382   CI.clearOutputFiles(/*EraseFiles=*/CI.getDiagnostics().hasErrorOccurred());
383 
384   if (isCurrentFileAST()) {
385     CI.takeSema();
386     CI.resetAndLeakASTContext();
387     CI.resetAndLeakPreprocessor();
388     CI.resetAndLeakSourceManager();
389     CI.resetAndLeakFileManager();
390   }
391 
392   setCompilerInstance(0);
393   setCurrentInput(FrontendInputFile());
394 }
395 
396 //===----------------------------------------------------------------------===//
397 // Utility Actions
398 //===----------------------------------------------------------------------===//
399 
400 void ASTFrontendAction::ExecuteAction() {
401   CompilerInstance &CI = getCompilerInstance();
402 
403   // FIXME: Move the truncation aspect of this into Sema, we delayed this till
404   // here so the source manager would be initialized.
405   if (hasCodeCompletionSupport() &&
406       !CI.getFrontendOpts().CodeCompletionAt.FileName.empty())
407     CI.createCodeCompletionConsumer();
408 
409   // Use a code completion consumer?
410   CodeCompleteConsumer *CompletionConsumer = 0;
411   if (CI.hasCodeCompletionConsumer())
412     CompletionConsumer = &CI.getCodeCompletionConsumer();
413 
414   if (!CI.hasSema())
415     CI.createSema(getTranslationUnitKind(), CompletionConsumer);
416 
417   ParseAST(CI.getSema(), CI.getFrontendOpts().ShowStats,
418            CI.getFrontendOpts().SkipFunctionBodies);
419 }
420 
421 void PluginASTAction::anchor() { }
422 
423 ASTConsumer *
424 PreprocessorFrontendAction::CreateASTConsumer(CompilerInstance &CI,
425                                               StringRef InFile) {
426   llvm_unreachable("Invalid CreateASTConsumer on preprocessor action!");
427 }
428 
429 ASTConsumer *WrapperFrontendAction::CreateASTConsumer(CompilerInstance &CI,
430                                                       StringRef InFile) {
431   return WrappedAction->CreateASTConsumer(CI, InFile);
432 }
433 bool WrapperFrontendAction::BeginInvocation(CompilerInstance &CI) {
434   return WrappedAction->BeginInvocation(CI);
435 }
436 bool WrapperFrontendAction::BeginSourceFileAction(CompilerInstance &CI,
437                                                   StringRef Filename) {
438   WrappedAction->setCurrentInput(getCurrentInput());
439   WrappedAction->setCompilerInstance(&CI);
440   return WrappedAction->BeginSourceFileAction(CI, Filename);
441 }
442 void WrapperFrontendAction::ExecuteAction() {
443   WrappedAction->ExecuteAction();
444 }
445 void WrapperFrontendAction::EndSourceFileAction() {
446   WrappedAction->EndSourceFileAction();
447 }
448 
449 bool WrapperFrontendAction::usesPreprocessorOnly() const {
450   return WrappedAction->usesPreprocessorOnly();
451 }
452 TranslationUnitKind WrapperFrontendAction::getTranslationUnitKind() {
453   return WrappedAction->getTranslationUnitKind();
454 }
455 bool WrapperFrontendAction::hasPCHSupport() const {
456   return WrappedAction->hasPCHSupport();
457 }
458 bool WrapperFrontendAction::hasASTFileSupport() const {
459   return WrappedAction->hasASTFileSupport();
460 }
461 bool WrapperFrontendAction::hasIRSupport() const {
462   return WrappedAction->hasIRSupport();
463 }
464 bool WrapperFrontendAction::hasCodeCompletionSupport() const {
465   return WrappedAction->hasCodeCompletionSupport();
466 }
467 
468 WrapperFrontendAction::WrapperFrontendAction(FrontendAction *WrappedAction)
469   : WrappedAction(WrappedAction) {}
470 
471