1 //===--- ASTUnit.cpp - ASTUnit utility ------------------------------------===//
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 // ASTUnit Implementation.
11 //
12 //===----------------------------------------------------------------------===//
13 
14 #include "clang/Frontend/ASTUnit.h"
15 #include "clang/AST/ASTContext.h"
16 #include "clang/AST/ASTConsumer.h"
17 #include "clang/AST/DeclVisitor.h"
18 #include "clang/AST/TypeOrdering.h"
19 #include "clang/AST/StmtVisitor.h"
20 #include "clang/Driver/Compilation.h"
21 #include "clang/Driver/Driver.h"
22 #include "clang/Driver/Job.h"
23 #include "clang/Driver/ArgList.h"
24 #include "clang/Driver/Options.h"
25 #include "clang/Driver/Tool.h"
26 #include "clang/Frontend/CompilerInstance.h"
27 #include "clang/Frontend/FrontendActions.h"
28 #include "clang/Frontend/FrontendDiagnostic.h"
29 #include "clang/Frontend/FrontendOptions.h"
30 #include "clang/Frontend/Utils.h"
31 #include "clang/Serialization/ASTReader.h"
32 #include "clang/Serialization/ASTWriter.h"
33 #include "clang/Lex/HeaderSearch.h"
34 #include "clang/Lex/Preprocessor.h"
35 #include "clang/Basic/TargetOptions.h"
36 #include "clang/Basic/TargetInfo.h"
37 #include "clang/Basic/Diagnostic.h"
38 #include "llvm/ADT/ArrayRef.h"
39 #include "llvm/ADT/StringExtras.h"
40 #include "llvm/ADT/StringSet.h"
41 #include "llvm/Support/Atomic.h"
42 #include "llvm/Support/MemoryBuffer.h"
43 #include "llvm/Support/Host.h"
44 #include "llvm/Support/Path.h"
45 #include "llvm/Support/raw_ostream.h"
46 #include "llvm/Support/Timer.h"
47 #include "llvm/Support/FileSystem.h"
48 #include "llvm/Support/Mutex.h"
49 #include "llvm/Support/MutexGuard.h"
50 #include "llvm/Support/CrashRecoveryContext.h"
51 #include <cstdlib>
52 #include <cstdio>
53 #include <sys/stat.h>
54 using namespace clang;
55 
56 using llvm::TimeRecord;
57 
58 namespace {
59   class SimpleTimer {
60     bool WantTiming;
61     TimeRecord Start;
62     std::string Output;
63 
64   public:
65     explicit SimpleTimer(bool WantTiming) : WantTiming(WantTiming) {
66       if (WantTiming)
67         Start = TimeRecord::getCurrentTime();
68     }
69 
70     void setOutput(const Twine &Output) {
71       if (WantTiming)
72         this->Output = Output.str();
73     }
74 
75     ~SimpleTimer() {
76       if (WantTiming) {
77         TimeRecord Elapsed = TimeRecord::getCurrentTime();
78         Elapsed -= Start;
79         llvm::errs() << Output << ':';
80         Elapsed.print(Elapsed, llvm::errs());
81         llvm::errs() << '\n';
82       }
83     }
84   };
85 
86   struct OnDiskData {
87     /// \brief The file in which the precompiled preamble is stored.
88     std::string PreambleFile;
89 
90     /// \brief Temporary files that should be removed when the ASTUnit is
91     /// destroyed.
92     SmallVector<llvm::sys::Path, 4> TemporaryFiles;
93 
94     /// \brief Erase temporary files.
95     void CleanTemporaryFiles();
96 
97     /// \brief Erase the preamble file.
98     void CleanPreambleFile();
99 
100     /// \brief Erase temporary files and the preamble file.
101     void Cleanup();
102   };
103 }
104 
105 static llvm::sys::SmartMutex<false> &getOnDiskMutex() {
106   static llvm::sys::SmartMutex<false> M(/* recursive = */ true);
107   return M;
108 }
109 
110 static void cleanupOnDiskMapAtExit(void);
111 
112 typedef llvm::DenseMap<const ASTUnit *, OnDiskData *> OnDiskDataMap;
113 static OnDiskDataMap &getOnDiskDataMap() {
114   static OnDiskDataMap M;
115   static bool hasRegisteredAtExit = false;
116   if (!hasRegisteredAtExit) {
117     hasRegisteredAtExit = true;
118     atexit(cleanupOnDiskMapAtExit);
119   }
120   return M;
121 }
122 
123 static void cleanupOnDiskMapAtExit(void) {
124   // No mutex required here since we are leaving the program.
125   OnDiskDataMap &M = getOnDiskDataMap();
126   for (OnDiskDataMap::iterator I = M.begin(), E = M.end(); I != E; ++I) {
127     // We don't worry about freeing the memory associated with OnDiskDataMap.
128     // All we care about is erasing stale files.
129     I->second->Cleanup();
130   }
131 }
132 
133 static OnDiskData &getOnDiskData(const ASTUnit *AU) {
134   // We require the mutex since we are modifying the structure of the
135   // DenseMap.
136   llvm::MutexGuard Guard(getOnDiskMutex());
137   OnDiskDataMap &M = getOnDiskDataMap();
138   OnDiskData *&D = M[AU];
139   if (!D)
140     D = new OnDiskData();
141   return *D;
142 }
143 
144 static void erasePreambleFile(const ASTUnit *AU) {
145   getOnDiskData(AU).CleanPreambleFile();
146 }
147 
148 static void removeOnDiskEntry(const ASTUnit *AU) {
149   // We require the mutex since we are modifying the structure of the
150   // DenseMap.
151   llvm::MutexGuard Guard(getOnDiskMutex());
152   OnDiskDataMap &M = getOnDiskDataMap();
153   OnDiskDataMap::iterator I = M.find(AU);
154   if (I != M.end()) {
155     I->second->Cleanup();
156     delete I->second;
157     M.erase(AU);
158   }
159 }
160 
161 static void setPreambleFile(const ASTUnit *AU, llvm::StringRef preambleFile) {
162   getOnDiskData(AU).PreambleFile = preambleFile;
163 }
164 
165 static const std::string &getPreambleFile(const ASTUnit *AU) {
166   return getOnDiskData(AU).PreambleFile;
167 }
168 
169 void OnDiskData::CleanTemporaryFiles() {
170   for (unsigned I = 0, N = TemporaryFiles.size(); I != N; ++I)
171     TemporaryFiles[I].eraseFromDisk();
172   TemporaryFiles.clear();
173 }
174 
175 void OnDiskData::CleanPreambleFile() {
176   if (!PreambleFile.empty()) {
177     llvm::sys::Path(PreambleFile).eraseFromDisk();
178     PreambleFile.clear();
179   }
180 }
181 
182 void OnDiskData::Cleanup() {
183   CleanTemporaryFiles();
184   CleanPreambleFile();
185 }
186 
187 void ASTUnit::clearFileLevelDecls() {
188   for (FileDeclsTy::iterator
189          I = FileDecls.begin(), E = FileDecls.end(); I != E; ++I)
190     delete I->second;
191   FileDecls.clear();
192 }
193 
194 void ASTUnit::CleanTemporaryFiles() {
195   getOnDiskData(this).CleanTemporaryFiles();
196 }
197 
198 void ASTUnit::addTemporaryFile(const llvm::sys::Path &TempFile) {
199   getOnDiskData(this).TemporaryFiles.push_back(TempFile);
200 }
201 
202 /// \brief After failing to build a precompiled preamble (due to
203 /// errors in the source that occurs in the preamble), the number of
204 /// reparses during which we'll skip even trying to precompile the
205 /// preamble.
206 const unsigned DefaultPreambleRebuildInterval = 5;
207 
208 /// \brief Tracks the number of ASTUnit objects that are currently active.
209 ///
210 /// Used for debugging purposes only.
211 static llvm::sys::cas_flag ActiveASTUnitObjects;
212 
213 ASTUnit::ASTUnit(bool _MainFileIsAST)
214   : Reader(0), OnlyLocalDecls(false), CaptureDiagnostics(false),
215     MainFileIsAST(_MainFileIsAST),
216     TUKind(TU_Complete), WantTiming(getenv("LIBCLANG_TIMING")),
217     OwnsRemappedFileBuffers(true),
218     NumStoredDiagnosticsFromDriver(0),
219     PreambleRebuildCounter(0), SavedMainFileBuffer(0), PreambleBuffer(0),
220     ShouldCacheCodeCompletionResults(false),
221     NestedMacroExpansions(true),
222     CompletionCacheTopLevelHashValue(0),
223     PreambleTopLevelHashValue(0),
224     CurrentTopLevelHashValue(0),
225     UnsafeToFree(false) {
226   if (getenv("LIBCLANG_OBJTRACKING")) {
227     llvm::sys::AtomicIncrement(&ActiveASTUnitObjects);
228     fprintf(stderr, "+++ %d translation units\n", ActiveASTUnitObjects);
229   }
230 }
231 
232 ASTUnit::~ASTUnit() {
233   clearFileLevelDecls();
234 
235   // Clean up the temporary files and the preamble file.
236   removeOnDiskEntry(this);
237 
238   // Free the buffers associated with remapped files. We are required to
239   // perform this operation here because we explicitly request that the
240   // compiler instance *not* free these buffers for each invocation of the
241   // parser.
242   if (Invocation.getPtr() && OwnsRemappedFileBuffers) {
243     PreprocessorOptions &PPOpts = Invocation->getPreprocessorOpts();
244     for (PreprocessorOptions::remapped_file_buffer_iterator
245            FB = PPOpts.remapped_file_buffer_begin(),
246            FBEnd = PPOpts.remapped_file_buffer_end();
247          FB != FBEnd;
248          ++FB)
249       delete FB->second;
250   }
251 
252   delete SavedMainFileBuffer;
253   delete PreambleBuffer;
254 
255   ClearCachedCompletionResults();
256 
257   if (getenv("LIBCLANG_OBJTRACKING")) {
258     llvm::sys::AtomicDecrement(&ActiveASTUnitObjects);
259     fprintf(stderr, "--- %d translation units\n", ActiveASTUnitObjects);
260   }
261 }
262 
263 /// \brief Determine the set of code-completion contexts in which this
264 /// declaration should be shown.
265 static unsigned getDeclShowContexts(NamedDecl *ND,
266                                     const LangOptions &LangOpts,
267                                     bool &IsNestedNameSpecifier) {
268   IsNestedNameSpecifier = false;
269 
270   if (isa<UsingShadowDecl>(ND))
271     ND = dyn_cast<NamedDecl>(ND->getUnderlyingDecl());
272   if (!ND)
273     return 0;
274 
275   unsigned Contexts = 0;
276   if (isa<TypeDecl>(ND) || isa<ObjCInterfaceDecl>(ND) ||
277       isa<ClassTemplateDecl>(ND) || isa<TemplateTemplateParmDecl>(ND)) {
278     // Types can appear in these contexts.
279     if (LangOpts.CPlusPlus || !isa<TagDecl>(ND))
280       Contexts |= (1 << (CodeCompletionContext::CCC_TopLevel - 1))
281                 | (1 << (CodeCompletionContext::CCC_ObjCIvarList - 1))
282                 | (1 << (CodeCompletionContext::CCC_ClassStructUnion - 1))
283                 | (1 << (CodeCompletionContext::CCC_Statement - 1))
284                 | (1 << (CodeCompletionContext::CCC_Type - 1))
285               | (1 << (CodeCompletionContext::CCC_ParenthesizedExpression - 1));
286 
287     // In C++, types can appear in expressions contexts (for functional casts).
288     if (LangOpts.CPlusPlus)
289       Contexts |= (1 << (CodeCompletionContext::CCC_Expression - 1));
290 
291     // In Objective-C, message sends can send interfaces. In Objective-C++,
292     // all types are available due to functional casts.
293     if (LangOpts.CPlusPlus || isa<ObjCInterfaceDecl>(ND))
294       Contexts |= (1 << (CodeCompletionContext::CCC_ObjCMessageReceiver - 1));
295 
296     // In Objective-C, you can only be a subclass of another Objective-C class
297     if (isa<ObjCInterfaceDecl>(ND))
298       Contexts |= (1 << (CodeCompletionContext::CCC_ObjCInterfaceName - 1));
299 
300     // Deal with tag names.
301     if (isa<EnumDecl>(ND)) {
302       Contexts |= (1 << (CodeCompletionContext::CCC_EnumTag - 1));
303 
304       // Part of the nested-name-specifier in C++0x.
305       if (LangOpts.CPlusPlus0x)
306         IsNestedNameSpecifier = true;
307     } else if (RecordDecl *Record = dyn_cast<RecordDecl>(ND)) {
308       if (Record->isUnion())
309         Contexts |= (1 << (CodeCompletionContext::CCC_UnionTag - 1));
310       else
311         Contexts |= (1 << (CodeCompletionContext::CCC_ClassOrStructTag - 1));
312 
313       if (LangOpts.CPlusPlus)
314         IsNestedNameSpecifier = true;
315     } else if (isa<ClassTemplateDecl>(ND))
316       IsNestedNameSpecifier = true;
317   } else if (isa<ValueDecl>(ND) || isa<FunctionTemplateDecl>(ND)) {
318     // Values can appear in these contexts.
319     Contexts = (1 << (CodeCompletionContext::CCC_Statement - 1))
320              | (1 << (CodeCompletionContext::CCC_Expression - 1))
321              | (1 << (CodeCompletionContext::CCC_ParenthesizedExpression - 1))
322              | (1 << (CodeCompletionContext::CCC_ObjCMessageReceiver - 1));
323   } else if (isa<ObjCProtocolDecl>(ND)) {
324     Contexts = (1 << (CodeCompletionContext::CCC_ObjCProtocolName - 1));
325   } else if (isa<ObjCCategoryDecl>(ND)) {
326     Contexts = (1 << (CodeCompletionContext::CCC_ObjCCategoryName - 1));
327   } else if (isa<NamespaceDecl>(ND) || isa<NamespaceAliasDecl>(ND)) {
328     Contexts = (1 << (CodeCompletionContext::CCC_Namespace - 1));
329 
330     // Part of the nested-name-specifier.
331     IsNestedNameSpecifier = true;
332   }
333 
334   return Contexts;
335 }
336 
337 void ASTUnit::CacheCodeCompletionResults() {
338   if (!TheSema)
339     return;
340 
341   SimpleTimer Timer(WantTiming);
342   Timer.setOutput("Cache global code completions for " + getMainFileName());
343 
344   // Clear out the previous results.
345   ClearCachedCompletionResults();
346 
347   // Gather the set of global code completions.
348   typedef CodeCompletionResult Result;
349   SmallVector<Result, 8> Results;
350   CachedCompletionAllocator = new GlobalCodeCompletionAllocator;
351   TheSema->GatherGlobalCodeCompletions(*CachedCompletionAllocator, Results);
352 
353   // Translate global code completions into cached completions.
354   llvm::DenseMap<CanQualType, unsigned> CompletionTypes;
355 
356   for (unsigned I = 0, N = Results.size(); I != N; ++I) {
357     switch (Results[I].Kind) {
358     case Result::RK_Declaration: {
359       bool IsNestedNameSpecifier = false;
360       CachedCodeCompletionResult CachedResult;
361       CachedResult.Completion = Results[I].CreateCodeCompletionString(*TheSema,
362                                                     *CachedCompletionAllocator);
363       CachedResult.ShowInContexts = getDeclShowContexts(Results[I].Declaration,
364                                                         Ctx->getLangOptions(),
365                                                         IsNestedNameSpecifier);
366       CachedResult.Priority = Results[I].Priority;
367       CachedResult.Kind = Results[I].CursorKind;
368       CachedResult.Availability = Results[I].Availability;
369 
370       // Keep track of the type of this completion in an ASTContext-agnostic
371       // way.
372       QualType UsageType = getDeclUsageType(*Ctx, Results[I].Declaration);
373       if (UsageType.isNull()) {
374         CachedResult.TypeClass = STC_Void;
375         CachedResult.Type = 0;
376       } else {
377         CanQualType CanUsageType
378           = Ctx->getCanonicalType(UsageType.getUnqualifiedType());
379         CachedResult.TypeClass = getSimplifiedTypeClass(CanUsageType);
380 
381         // Determine whether we have already seen this type. If so, we save
382         // ourselves the work of formatting the type string by using the
383         // temporary, CanQualType-based hash table to find the associated value.
384         unsigned &TypeValue = CompletionTypes[CanUsageType];
385         if (TypeValue == 0) {
386           TypeValue = CompletionTypes.size();
387           CachedCompletionTypes[QualType(CanUsageType).getAsString()]
388             = TypeValue;
389         }
390 
391         CachedResult.Type = TypeValue;
392       }
393 
394       CachedCompletionResults.push_back(CachedResult);
395 
396       /// Handle nested-name-specifiers in C++.
397       if (TheSema->Context.getLangOptions().CPlusPlus &&
398           IsNestedNameSpecifier && !Results[I].StartsNestedNameSpecifier) {
399         // The contexts in which a nested-name-specifier can appear in C++.
400         unsigned NNSContexts
401           = (1 << (CodeCompletionContext::CCC_TopLevel - 1))
402           | (1 << (CodeCompletionContext::CCC_ObjCIvarList - 1))
403           | (1 << (CodeCompletionContext::CCC_ClassStructUnion - 1))
404           | (1 << (CodeCompletionContext::CCC_Statement - 1))
405           | (1 << (CodeCompletionContext::CCC_Expression - 1))
406           | (1 << (CodeCompletionContext::CCC_ObjCMessageReceiver - 1))
407           | (1 << (CodeCompletionContext::CCC_EnumTag - 1))
408           | (1 << (CodeCompletionContext::CCC_UnionTag - 1))
409           | (1 << (CodeCompletionContext::CCC_ClassOrStructTag - 1))
410           | (1 << (CodeCompletionContext::CCC_Type - 1))
411           | (1 << (CodeCompletionContext::CCC_PotentiallyQualifiedName - 1))
412           | (1 << (CodeCompletionContext::CCC_ParenthesizedExpression - 1));
413 
414         if (isa<NamespaceDecl>(Results[I].Declaration) ||
415             isa<NamespaceAliasDecl>(Results[I].Declaration))
416           NNSContexts |= (1 << (CodeCompletionContext::CCC_Namespace - 1));
417 
418         if (unsigned RemainingContexts
419                                 = NNSContexts & ~CachedResult.ShowInContexts) {
420           // If there any contexts where this completion can be a
421           // nested-name-specifier but isn't already an option, create a
422           // nested-name-specifier completion.
423           Results[I].StartsNestedNameSpecifier = true;
424           CachedResult.Completion
425             = Results[I].CreateCodeCompletionString(*TheSema,
426                                                     *CachedCompletionAllocator);
427           CachedResult.ShowInContexts = RemainingContexts;
428           CachedResult.Priority = CCP_NestedNameSpecifier;
429           CachedResult.TypeClass = STC_Void;
430           CachedResult.Type = 0;
431           CachedCompletionResults.push_back(CachedResult);
432         }
433       }
434       break;
435     }
436 
437     case Result::RK_Keyword:
438     case Result::RK_Pattern:
439       // Ignore keywords and patterns; we don't care, since they are so
440       // easily regenerated.
441       break;
442 
443     case Result::RK_Macro: {
444       CachedCodeCompletionResult CachedResult;
445       CachedResult.Completion
446         = Results[I].CreateCodeCompletionString(*TheSema,
447                                                 *CachedCompletionAllocator);
448       CachedResult.ShowInContexts
449         = (1 << (CodeCompletionContext::CCC_TopLevel - 1))
450         | (1 << (CodeCompletionContext::CCC_ObjCInterface - 1))
451         | (1 << (CodeCompletionContext::CCC_ObjCImplementation - 1))
452         | (1 << (CodeCompletionContext::CCC_ObjCIvarList - 1))
453         | (1 << (CodeCompletionContext::CCC_ClassStructUnion - 1))
454         | (1 << (CodeCompletionContext::CCC_Statement - 1))
455         | (1 << (CodeCompletionContext::CCC_Expression - 1))
456         | (1 << (CodeCompletionContext::CCC_ObjCMessageReceiver - 1))
457         | (1 << (CodeCompletionContext::CCC_MacroNameUse - 1))
458         | (1 << (CodeCompletionContext::CCC_PreprocessorExpression - 1))
459         | (1 << (CodeCompletionContext::CCC_ParenthesizedExpression - 1))
460         | (1 << (CodeCompletionContext::CCC_OtherWithMacros - 1));
461 
462       CachedResult.Priority = Results[I].Priority;
463       CachedResult.Kind = Results[I].CursorKind;
464       CachedResult.Availability = Results[I].Availability;
465       CachedResult.TypeClass = STC_Void;
466       CachedResult.Type = 0;
467       CachedCompletionResults.push_back(CachedResult);
468       break;
469     }
470     }
471   }
472 
473   // Save the current top-level hash value.
474   CompletionCacheTopLevelHashValue = CurrentTopLevelHashValue;
475 }
476 
477 void ASTUnit::ClearCachedCompletionResults() {
478   CachedCompletionResults.clear();
479   CachedCompletionTypes.clear();
480   CachedCompletionAllocator = 0;
481 }
482 
483 namespace {
484 
485 /// \brief Gathers information from ASTReader that will be used to initialize
486 /// a Preprocessor.
487 class ASTInfoCollector : public ASTReaderListener {
488   Preprocessor &PP;
489   ASTContext &Context;
490   LangOptions &LangOpt;
491   HeaderSearch &HSI;
492   llvm::IntrusiveRefCntPtr<TargetInfo> &Target;
493   std::string &Predefines;
494   unsigned &Counter;
495 
496   unsigned NumHeaderInfos;
497 
498   bool InitializedLanguage;
499 public:
500   ASTInfoCollector(Preprocessor &PP, ASTContext &Context, LangOptions &LangOpt,
501                    HeaderSearch &HSI,
502                    llvm::IntrusiveRefCntPtr<TargetInfo> &Target,
503                    std::string &Predefines,
504                    unsigned &Counter)
505     : PP(PP), Context(Context), LangOpt(LangOpt), HSI(HSI), Target(Target),
506       Predefines(Predefines), Counter(Counter), NumHeaderInfos(0),
507       InitializedLanguage(false) {}
508 
509   virtual bool ReadLanguageOptions(const LangOptions &LangOpts) {
510     if (InitializedLanguage)
511       return false;
512 
513     LangOpt = LangOpts;
514 
515     // Initialize the preprocessor.
516     PP.Initialize(*Target);
517 
518     // Initialize the ASTContext
519     Context.InitBuiltinTypes(*Target);
520 
521     InitializedLanguage = true;
522     return false;
523   }
524 
525   virtual bool ReadTargetTriple(StringRef Triple) {
526     // If we've already initialized the target, don't do it again.
527     if (Target)
528       return false;
529 
530     // FIXME: This is broken, we should store the TargetOptions in the AST file.
531     TargetOptions TargetOpts;
532     TargetOpts.ABI = "";
533     TargetOpts.CXXABI = "";
534     TargetOpts.CPU = "";
535     TargetOpts.Features.clear();
536     TargetOpts.Triple = Triple;
537     Target = TargetInfo::CreateTargetInfo(PP.getDiagnostics(), TargetOpts);
538     return false;
539   }
540 
541   virtual bool ReadPredefinesBuffer(const PCHPredefinesBlocks &Buffers,
542                                     StringRef OriginalFileName,
543                                     std::string &SuggestedPredefines,
544                                     FileManager &FileMgr) {
545     Predefines = Buffers[0].Data;
546     for (unsigned I = 1, N = Buffers.size(); I != N; ++I) {
547       Predefines += Buffers[I].Data;
548     }
549     return false;
550   }
551 
552   virtual void ReadHeaderFileInfo(const HeaderFileInfo &HFI, unsigned ID) {
553     HSI.setHeaderFileInfoForUID(HFI, NumHeaderInfos++);
554   }
555 
556   virtual void ReadCounter(unsigned Value) {
557     Counter = Value;
558   }
559 };
560 
561 class StoredDiagnosticConsumer : public DiagnosticConsumer {
562   SmallVectorImpl<StoredDiagnostic> &StoredDiags;
563 
564 public:
565   explicit StoredDiagnosticConsumer(
566                           SmallVectorImpl<StoredDiagnostic> &StoredDiags)
567     : StoredDiags(StoredDiags) { }
568 
569   virtual void HandleDiagnostic(DiagnosticsEngine::Level Level,
570                                 const Diagnostic &Info);
571 
572   DiagnosticConsumer *clone(DiagnosticsEngine &Diags) const {
573     // Just drop any diagnostics that come from cloned consumers; they'll
574     // have different source managers anyway.
575     return new IgnoringDiagConsumer();
576   }
577 };
578 
579 /// \brief RAII object that optionally captures diagnostics, if
580 /// there is no diagnostic client to capture them already.
581 class CaptureDroppedDiagnostics {
582   DiagnosticsEngine &Diags;
583   StoredDiagnosticConsumer Client;
584   DiagnosticConsumer *PreviousClient;
585 
586 public:
587   CaptureDroppedDiagnostics(bool RequestCapture, DiagnosticsEngine &Diags,
588                           SmallVectorImpl<StoredDiagnostic> &StoredDiags)
589     : Diags(Diags), Client(StoredDiags), PreviousClient(0)
590   {
591     if (RequestCapture || Diags.getClient() == 0) {
592       PreviousClient = Diags.takeClient();
593       Diags.setClient(&Client);
594     }
595   }
596 
597   ~CaptureDroppedDiagnostics() {
598     if (Diags.getClient() == &Client) {
599       Diags.takeClient();
600       Diags.setClient(PreviousClient);
601     }
602   }
603 };
604 
605 } // anonymous namespace
606 
607 void StoredDiagnosticConsumer::HandleDiagnostic(DiagnosticsEngine::Level Level,
608                                               const Diagnostic &Info) {
609   // Default implementation (Warnings/errors count).
610   DiagnosticConsumer::HandleDiagnostic(Level, Info);
611 
612   StoredDiags.push_back(StoredDiagnostic(Level, Info));
613 }
614 
615 const std::string &ASTUnit::getOriginalSourceFileName() {
616   return OriginalSourceFile;
617 }
618 
619 llvm::MemoryBuffer *ASTUnit::getBufferForFile(StringRef Filename,
620                                               std::string *ErrorStr) {
621   assert(FileMgr);
622   return FileMgr->getBufferForFile(Filename, ErrorStr);
623 }
624 
625 /// \brief Configure the diagnostics object for use with ASTUnit.
626 void ASTUnit::ConfigureDiags(llvm::IntrusiveRefCntPtr<DiagnosticsEngine> &Diags,
627                              const char **ArgBegin, const char **ArgEnd,
628                              ASTUnit &AST, bool CaptureDiagnostics) {
629   if (!Diags.getPtr()) {
630     // No diagnostics engine was provided, so create our own diagnostics object
631     // with the default options.
632     DiagnosticOptions DiagOpts;
633     DiagnosticConsumer *Client = 0;
634     if (CaptureDiagnostics)
635       Client = new StoredDiagnosticConsumer(AST.StoredDiagnostics);
636     Diags = CompilerInstance::createDiagnostics(DiagOpts, ArgEnd- ArgBegin,
637                                                 ArgBegin, Client);
638   } else if (CaptureDiagnostics) {
639     Diags->setClient(new StoredDiagnosticConsumer(AST.StoredDiagnostics));
640   }
641 }
642 
643 ASTUnit *ASTUnit::LoadFromASTFile(const std::string &Filename,
644                               llvm::IntrusiveRefCntPtr<DiagnosticsEngine> Diags,
645                                   const FileSystemOptions &FileSystemOpts,
646                                   bool OnlyLocalDecls,
647                                   RemappedFile *RemappedFiles,
648                                   unsigned NumRemappedFiles,
649                                   bool CaptureDiagnostics) {
650   llvm::OwningPtr<ASTUnit> AST(new ASTUnit(true));
651 
652   // Recover resources if we crash before exiting this method.
653   llvm::CrashRecoveryContextCleanupRegistrar<ASTUnit>
654     ASTUnitCleanup(AST.get());
655   llvm::CrashRecoveryContextCleanupRegistrar<DiagnosticsEngine,
656     llvm::CrashRecoveryContextReleaseRefCleanup<DiagnosticsEngine> >
657     DiagCleanup(Diags.getPtr());
658 
659   ConfigureDiags(Diags, 0, 0, *AST, CaptureDiagnostics);
660 
661   AST->OnlyLocalDecls = OnlyLocalDecls;
662   AST->CaptureDiagnostics = CaptureDiagnostics;
663   AST->Diagnostics = Diags;
664   AST->FileMgr = new FileManager(FileSystemOpts);
665   AST->SourceMgr = new SourceManager(AST->getDiagnostics(),
666                                      AST->getFileManager());
667   AST->HeaderInfo.reset(new HeaderSearch(AST->getFileManager()));
668 
669   for (unsigned I = 0; I != NumRemappedFiles; ++I) {
670     FilenameOrMemBuf fileOrBuf = RemappedFiles[I].second;
671     if (const llvm::MemoryBuffer *
672           memBuf = fileOrBuf.dyn_cast<const llvm::MemoryBuffer *>()) {
673       // Create the file entry for the file that we're mapping from.
674       const FileEntry *FromFile
675         = AST->getFileManager().getVirtualFile(RemappedFiles[I].first,
676                                                memBuf->getBufferSize(),
677                                                0);
678       if (!FromFile) {
679         AST->getDiagnostics().Report(diag::err_fe_remap_missing_from_file)
680           << RemappedFiles[I].first;
681         delete memBuf;
682         continue;
683       }
684 
685       // Override the contents of the "from" file with the contents of
686       // the "to" file.
687       AST->getSourceManager().overrideFileContents(FromFile, memBuf);
688 
689     } else {
690       const char *fname = fileOrBuf.get<const char *>();
691       const FileEntry *ToFile = AST->FileMgr->getFile(fname);
692       if (!ToFile) {
693         AST->getDiagnostics().Report(diag::err_fe_remap_missing_to_file)
694         << RemappedFiles[I].first << fname;
695         continue;
696       }
697 
698       // Create the file entry for the file that we're mapping from.
699       const FileEntry *FromFile
700         = AST->getFileManager().getVirtualFile(RemappedFiles[I].first,
701                                                ToFile->getSize(),
702                                                0);
703       if (!FromFile) {
704         AST->getDiagnostics().Report(diag::err_fe_remap_missing_from_file)
705           << RemappedFiles[I].first;
706         delete memBuf;
707         continue;
708       }
709 
710       // Override the contents of the "from" file with the contents of
711       // the "to" file.
712       AST->getSourceManager().overrideFileContents(FromFile, ToFile);
713     }
714   }
715 
716   // Gather Info for preprocessor construction later on.
717 
718   HeaderSearch &HeaderInfo = *AST->HeaderInfo.get();
719   std::string Predefines;
720   unsigned Counter;
721 
722   llvm::OwningPtr<ASTReader> Reader;
723 
724   AST->PP = new Preprocessor(AST->getDiagnostics(), AST->ASTFileLangOpts,
725                              /*Target=*/0, AST->getSourceManager(), HeaderInfo,
726                              *AST,
727                              /*IILookup=*/0,
728                              /*OwnsHeaderSearch=*/false,
729                              /*DelayInitialization=*/true);
730   Preprocessor &PP = *AST->PP;
731 
732   AST->Ctx = new ASTContext(AST->ASTFileLangOpts,
733                             AST->getSourceManager(),
734                             /*Target=*/0,
735                             PP.getIdentifierTable(),
736                             PP.getSelectorTable(),
737                             PP.getBuiltinInfo(),
738                             /* size_reserve = */0,
739                             /*DelayInitialization=*/true);
740   ASTContext &Context = *AST->Ctx;
741 
742   Reader.reset(new ASTReader(PP, Context));
743 
744   // Recover resources if we crash before exiting this method.
745   llvm::CrashRecoveryContextCleanupRegistrar<ASTReader>
746     ReaderCleanup(Reader.get());
747 
748   Reader->setListener(new ASTInfoCollector(*AST->PP, Context,
749                                            AST->ASTFileLangOpts, HeaderInfo,
750                                            AST->Target, Predefines, Counter));
751 
752   switch (Reader->ReadAST(Filename, serialization::MK_MainFile)) {
753   case ASTReader::Success:
754     break;
755 
756   case ASTReader::Failure:
757   case ASTReader::IgnorePCH:
758     AST->getDiagnostics().Report(diag::err_fe_unable_to_load_pch);
759     return NULL;
760   }
761 
762   AST->OriginalSourceFile = Reader->getOriginalSourceFile();
763 
764   PP.setPredefines(Reader->getSuggestedPredefines());
765   PP.setCounterValue(Counter);
766 
767   // Attach the AST reader to the AST context as an external AST
768   // source, so that declarations will be deserialized from the
769   // AST file as needed.
770   ASTReader *ReaderPtr = Reader.get();
771   llvm::OwningPtr<ExternalASTSource> Source(Reader.take());
772 
773   // Unregister the cleanup for ASTReader.  It will get cleaned up
774   // by the ASTUnit cleanup.
775   ReaderCleanup.unregister();
776 
777   Context.setExternalSource(Source);
778 
779   // Create an AST consumer, even though it isn't used.
780   AST->Consumer.reset(new ASTConsumer);
781 
782   // Create a semantic analysis object and tell the AST reader about it.
783   AST->TheSema.reset(new Sema(PP, Context, *AST->Consumer));
784   AST->TheSema->Initialize();
785   ReaderPtr->InitializeSema(*AST->TheSema);
786   AST->Reader = ReaderPtr;
787 
788   return AST.take();
789 }
790 
791 namespace {
792 
793 /// \brief Preprocessor callback class that updates a hash value with the names
794 /// of all macros that have been defined by the translation unit.
795 class MacroDefinitionTrackerPPCallbacks : public PPCallbacks {
796   unsigned &Hash;
797 
798 public:
799   explicit MacroDefinitionTrackerPPCallbacks(unsigned &Hash) : Hash(Hash) { }
800 
801   virtual void MacroDefined(const Token &MacroNameTok, const MacroInfo *MI) {
802     Hash = llvm::HashString(MacroNameTok.getIdentifierInfo()->getName(), Hash);
803   }
804 };
805 
806 /// \brief Add the given declaration to the hash of all top-level entities.
807 void AddTopLevelDeclarationToHash(Decl *D, unsigned &Hash) {
808   if (!D)
809     return;
810 
811   DeclContext *DC = D->getDeclContext();
812   if (!DC)
813     return;
814 
815   if (!(DC->isTranslationUnit() || DC->getLookupParent()->isTranslationUnit()))
816     return;
817 
818   if (NamedDecl *ND = dyn_cast<NamedDecl>(D)) {
819     if (ND->getIdentifier())
820       Hash = llvm::HashString(ND->getIdentifier()->getName(), Hash);
821     else if (DeclarationName Name = ND->getDeclName()) {
822       std::string NameStr = Name.getAsString();
823       Hash = llvm::HashString(NameStr, Hash);
824     }
825     return;
826   }
827 
828   if (ObjCForwardProtocolDecl *Forward
829       = dyn_cast<ObjCForwardProtocolDecl>(D)) {
830     for (ObjCForwardProtocolDecl::protocol_iterator
831          P = Forward->protocol_begin(),
832          PEnd = Forward->protocol_end();
833          P != PEnd; ++P)
834       AddTopLevelDeclarationToHash(*P, Hash);
835     return;
836   }
837 
838   if (ObjCClassDecl *Class = dyn_cast<ObjCClassDecl>(D)) {
839     AddTopLevelDeclarationToHash(Class->getForwardInterfaceDecl(), Hash);
840     return;
841   }
842 }
843 
844 class TopLevelDeclTrackerConsumer : public ASTConsumer {
845   ASTUnit &Unit;
846   unsigned &Hash;
847 
848 public:
849   TopLevelDeclTrackerConsumer(ASTUnit &_Unit, unsigned &Hash)
850     : Unit(_Unit), Hash(Hash) {
851     Hash = 0;
852   }
853 
854   void handleTopLevelDecl(Decl *D) {
855     // FIXME: Currently ObjC method declarations are incorrectly being
856     // reported as top-level declarations, even though their DeclContext
857     // is the containing ObjC @interface/@implementation.  This is a
858     // fundamental problem in the parser right now.
859     if (isa<ObjCMethodDecl>(D))
860       return;
861 
862     AddTopLevelDeclarationToHash(D, Hash);
863     Unit.addTopLevelDecl(D);
864 
865     handleFileLevelDecl(D);
866   }
867 
868   void handleFileLevelDecl(Decl *D) {
869     Unit.addFileLevelDecl(D);
870     if (NamespaceDecl *NSD = dyn_cast<NamespaceDecl>(D)) {
871       for (NamespaceDecl::decl_iterator
872              I = NSD->decls_begin(), E = NSD->decls_end(); I != E; ++I)
873         handleFileLevelDecl(*I);
874     }
875   }
876 
877   void HandleTopLevelDecl(DeclGroupRef D) {
878     for (DeclGroupRef::iterator it = D.begin(), ie = D.end(); it != ie; ++it)
879       handleTopLevelDecl(*it);
880   }
881 
882   // We're not interested in "interesting" decls.
883   void HandleInterestingDecl(DeclGroupRef) {}
884 
885   void HandleTopLevelDeclInObjCContainer(DeclGroupRef D) {
886     for (DeclGroupRef::iterator it = D.begin(), ie = D.end(); it != ie; ++it)
887       handleTopLevelDecl(*it);
888   }
889 };
890 
891 class TopLevelDeclTrackerAction : public ASTFrontendAction {
892 public:
893   ASTUnit &Unit;
894 
895   virtual ASTConsumer *CreateASTConsumer(CompilerInstance &CI,
896                                          StringRef InFile) {
897     CI.getPreprocessor().addPPCallbacks(
898      new MacroDefinitionTrackerPPCallbacks(Unit.getCurrentTopLevelHashValue()));
899     return new TopLevelDeclTrackerConsumer(Unit,
900                                            Unit.getCurrentTopLevelHashValue());
901   }
902 
903 public:
904   TopLevelDeclTrackerAction(ASTUnit &_Unit) : Unit(_Unit) {}
905 
906   virtual bool hasCodeCompletionSupport() const { return false; }
907   virtual TranslationUnitKind getTranslationUnitKind()  {
908     return Unit.getTranslationUnitKind();
909   }
910 };
911 
912 class PrecompilePreambleConsumer : public PCHGenerator {
913   ASTUnit &Unit;
914   unsigned &Hash;
915   std::vector<Decl *> TopLevelDecls;
916 
917 public:
918   PrecompilePreambleConsumer(ASTUnit &Unit, const Preprocessor &PP,
919                              StringRef isysroot, raw_ostream *Out)
920     : PCHGenerator(PP, "", /*IsModule=*/false, isysroot, Out), Unit(Unit),
921       Hash(Unit.getCurrentTopLevelHashValue()) {
922     Hash = 0;
923   }
924 
925   virtual void HandleTopLevelDecl(DeclGroupRef D) {
926     for (DeclGroupRef::iterator it = D.begin(), ie = D.end(); it != ie; ++it) {
927       Decl *D = *it;
928       // FIXME: Currently ObjC method declarations are incorrectly being
929       // reported as top-level declarations, even though their DeclContext
930       // is the containing ObjC @interface/@implementation.  This is a
931       // fundamental problem in the parser right now.
932       if (isa<ObjCMethodDecl>(D))
933         continue;
934       AddTopLevelDeclarationToHash(D, Hash);
935       TopLevelDecls.push_back(D);
936     }
937   }
938 
939   virtual void HandleTranslationUnit(ASTContext &Ctx) {
940     PCHGenerator::HandleTranslationUnit(Ctx);
941     if (!Unit.getDiagnostics().hasErrorOccurred()) {
942       // Translate the top-level declarations we captured during
943       // parsing into declaration IDs in the precompiled
944       // preamble. This will allow us to deserialize those top-level
945       // declarations when requested.
946       for (unsigned I = 0, N = TopLevelDecls.size(); I != N; ++I)
947         Unit.addTopLevelDeclFromPreamble(
948                                       getWriter().getDeclID(TopLevelDecls[I]));
949     }
950   }
951 };
952 
953 class PrecompilePreambleAction : public ASTFrontendAction {
954   ASTUnit &Unit;
955 
956 public:
957   explicit PrecompilePreambleAction(ASTUnit &Unit) : Unit(Unit) {}
958 
959   virtual ASTConsumer *CreateASTConsumer(CompilerInstance &CI,
960                                          StringRef InFile) {
961     std::string Sysroot;
962     std::string OutputFile;
963     raw_ostream *OS = 0;
964     if (GeneratePCHAction::ComputeASTConsumerArguments(CI, InFile, Sysroot,
965                                                        OutputFile,
966                                                        OS))
967       return 0;
968 
969     if (!CI.getFrontendOpts().RelocatablePCH)
970       Sysroot.clear();
971 
972     CI.getPreprocessor().addPPCallbacks(
973      new MacroDefinitionTrackerPPCallbacks(Unit.getCurrentTopLevelHashValue()));
974     return new PrecompilePreambleConsumer(Unit, CI.getPreprocessor(), Sysroot,
975                                           OS);
976   }
977 
978   virtual bool hasCodeCompletionSupport() const { return false; }
979   virtual bool hasASTFileSupport() const { return false; }
980   virtual TranslationUnitKind getTranslationUnitKind() { return TU_Prefix; }
981 };
982 
983 }
984 
985 /// Parse the source file into a translation unit using the given compiler
986 /// invocation, replacing the current translation unit.
987 ///
988 /// \returns True if a failure occurred that causes the ASTUnit not to
989 /// contain any translation-unit information, false otherwise.
990 bool ASTUnit::Parse(llvm::MemoryBuffer *OverrideMainBuffer) {
991   delete SavedMainFileBuffer;
992   SavedMainFileBuffer = 0;
993 
994   if (!Invocation) {
995     delete OverrideMainBuffer;
996     return true;
997   }
998 
999   // Create the compiler instance to use for building the AST.
1000   llvm::OwningPtr<CompilerInstance> Clang(new CompilerInstance());
1001 
1002   // Recover resources if we crash before exiting this method.
1003   llvm::CrashRecoveryContextCleanupRegistrar<CompilerInstance>
1004     CICleanup(Clang.get());
1005 
1006   llvm::IntrusiveRefCntPtr<CompilerInvocation>
1007     CCInvocation(new CompilerInvocation(*Invocation));
1008 
1009   Clang->setInvocation(CCInvocation.getPtr());
1010   OriginalSourceFile = Clang->getFrontendOpts().Inputs[0].second;
1011 
1012   // Set up diagnostics, capturing any diagnostics that would
1013   // otherwise be dropped.
1014   Clang->setDiagnostics(&getDiagnostics());
1015 
1016   // Create the target instance.
1017   Clang->getTargetOpts().Features = TargetFeatures;
1018   Clang->setTarget(TargetInfo::CreateTargetInfo(Clang->getDiagnostics(),
1019                    Clang->getTargetOpts()));
1020   if (!Clang->hasTarget()) {
1021     delete OverrideMainBuffer;
1022     return true;
1023   }
1024 
1025   // Inform the target of the language options.
1026   //
1027   // FIXME: We shouldn't need to do this, the target should be immutable once
1028   // created. This complexity should be lifted elsewhere.
1029   Clang->getTarget().setForcedLangOptions(Clang->getLangOpts());
1030 
1031   assert(Clang->getFrontendOpts().Inputs.size() == 1 &&
1032          "Invocation must have exactly one source file!");
1033   assert(Clang->getFrontendOpts().Inputs[0].first != IK_AST &&
1034          "FIXME: AST inputs not yet supported here!");
1035   assert(Clang->getFrontendOpts().Inputs[0].first != IK_LLVM_IR &&
1036          "IR inputs not support here!");
1037 
1038   // Configure the various subsystems.
1039   // FIXME: Should we retain the previous file manager?
1040   FileSystemOpts = Clang->getFileSystemOpts();
1041   FileMgr = new FileManager(FileSystemOpts);
1042   SourceMgr = new SourceManager(getDiagnostics(), *FileMgr);
1043   TheSema.reset();
1044   Ctx = 0;
1045   PP = 0;
1046   Reader = 0;
1047 
1048   // Clear out old caches and data.
1049   TopLevelDecls.clear();
1050   clearFileLevelDecls();
1051   CleanTemporaryFiles();
1052 
1053   if (!OverrideMainBuffer) {
1054     StoredDiagnostics.erase(stored_diag_afterDriver_begin(), stored_diag_end());
1055     TopLevelDeclsInPreamble.clear();
1056   }
1057 
1058   // Create a file manager object to provide access to and cache the filesystem.
1059   Clang->setFileManager(&getFileManager());
1060 
1061   // Create the source manager.
1062   Clang->setSourceManager(&getSourceManager());
1063 
1064   // If the main file has been overridden due to the use of a preamble,
1065   // make that override happen and introduce the preamble.
1066   PreprocessorOptions &PreprocessorOpts = Clang->getPreprocessorOpts();
1067   PreprocessorOpts.DetailedRecordIncludesNestedMacroExpansions
1068     = NestedMacroExpansions;
1069   if (OverrideMainBuffer) {
1070     PreprocessorOpts.addRemappedFile(OriginalSourceFile, OverrideMainBuffer);
1071     PreprocessorOpts.PrecompiledPreambleBytes.first = Preamble.size();
1072     PreprocessorOpts.PrecompiledPreambleBytes.second
1073                                                     = PreambleEndsAtStartOfLine;
1074     PreprocessorOpts.ImplicitPCHInclude = getPreambleFile(this);
1075     PreprocessorOpts.DisablePCHValidation = true;
1076 
1077     // The stored diagnostic has the old source manager in it; update
1078     // the locations to refer into the new source manager. Since we've
1079     // been careful to make sure that the source manager's state
1080     // before and after are identical, so that we can reuse the source
1081     // location itself.
1082     for (unsigned I = NumStoredDiagnosticsFromDriver,
1083                   N = StoredDiagnostics.size();
1084          I < N; ++I) {
1085       FullSourceLoc Loc(StoredDiagnostics[I].getLocation(),
1086                         getSourceManager());
1087       StoredDiagnostics[I].setLocation(Loc);
1088     }
1089 
1090     // Keep track of the override buffer;
1091     SavedMainFileBuffer = OverrideMainBuffer;
1092   }
1093 
1094   llvm::OwningPtr<TopLevelDeclTrackerAction> Act(
1095     new TopLevelDeclTrackerAction(*this));
1096 
1097   // Recover resources if we crash before exiting this method.
1098   llvm::CrashRecoveryContextCleanupRegistrar<TopLevelDeclTrackerAction>
1099     ActCleanup(Act.get());
1100 
1101   if (!Act->BeginSourceFile(*Clang.get(), Clang->getFrontendOpts().Inputs[0].second,
1102                             Clang->getFrontendOpts().Inputs[0].first))
1103     goto error;
1104 
1105   if (OverrideMainBuffer) {
1106     std::string ModName = getPreambleFile(this);
1107     TranslateStoredDiagnostics(Clang->getModuleManager(), ModName,
1108                                getSourceManager(), PreambleDiagnostics,
1109                                StoredDiagnostics);
1110   }
1111 
1112   Act->Execute();
1113 
1114   // Steal the created target, context, and preprocessor.
1115   TheSema.reset(Clang->takeSema());
1116   Consumer.reset(Clang->takeASTConsumer());
1117   Ctx = &Clang->getASTContext();
1118   PP = &Clang->getPreprocessor();
1119   Clang->setSourceManager(0);
1120   Clang->setFileManager(0);
1121   Target = &Clang->getTarget();
1122   Reader = Clang->getModuleManager();
1123 
1124   Act->EndSourceFile();
1125 
1126   return false;
1127 
1128 error:
1129   // Remove the overridden buffer we used for the preamble.
1130   if (OverrideMainBuffer) {
1131     delete OverrideMainBuffer;
1132     SavedMainFileBuffer = 0;
1133   }
1134 
1135   StoredDiagnostics.clear();
1136   NumStoredDiagnosticsFromDriver = 0;
1137   return true;
1138 }
1139 
1140 /// \brief Simple function to retrieve a path for a preamble precompiled header.
1141 static std::string GetPreamblePCHPath() {
1142   // FIXME: This is lame; sys::Path should provide this function (in particular,
1143   // it should know how to find the temporary files dir).
1144   // FIXME: This is really lame. I copied this code from the Driver!
1145   // FIXME: This is a hack so that we can override the preamble file during
1146   // crash-recovery testing, which is the only case where the preamble files
1147   // are not necessarily cleaned up.
1148   const char *TmpFile = ::getenv("CINDEXTEST_PREAMBLE_FILE");
1149   if (TmpFile)
1150     return TmpFile;
1151 
1152   std::string Error;
1153   const char *TmpDir = ::getenv("TMPDIR");
1154   if (!TmpDir)
1155     TmpDir = ::getenv("TEMP");
1156   if (!TmpDir)
1157     TmpDir = ::getenv("TMP");
1158 #ifdef LLVM_ON_WIN32
1159   if (!TmpDir)
1160     TmpDir = ::getenv("USERPROFILE");
1161 #endif
1162   if (!TmpDir)
1163     TmpDir = "/tmp";
1164   llvm::sys::Path P(TmpDir);
1165   P.createDirectoryOnDisk(true);
1166   P.appendComponent("preamble");
1167   P.appendSuffix("pch");
1168   if (P.makeUnique(/*reuse_current=*/false, /*ErrMsg*/0))
1169     return std::string();
1170 
1171   return P.str();
1172 }
1173 
1174 /// \brief Compute the preamble for the main file, providing the source buffer
1175 /// that corresponds to the main file along with a pair (bytes, start-of-line)
1176 /// that describes the preamble.
1177 std::pair<llvm::MemoryBuffer *, std::pair<unsigned, bool> >
1178 ASTUnit::ComputePreamble(CompilerInvocation &Invocation,
1179                          unsigned MaxLines, bool &CreatedBuffer) {
1180   FrontendOptions &FrontendOpts = Invocation.getFrontendOpts();
1181   PreprocessorOptions &PreprocessorOpts = Invocation.getPreprocessorOpts();
1182   CreatedBuffer = false;
1183 
1184   // Try to determine if the main file has been remapped, either from the
1185   // command line (to another file) or directly through the compiler invocation
1186   // (to a memory buffer).
1187   llvm::MemoryBuffer *Buffer = 0;
1188   llvm::sys::PathWithStatus MainFilePath(FrontendOpts.Inputs[0].second);
1189   if (const llvm::sys::FileStatus *MainFileStatus = MainFilePath.getFileStatus()) {
1190     // Check whether there is a file-file remapping of the main file
1191     for (PreprocessorOptions::remapped_file_iterator
1192           M = PreprocessorOpts.remapped_file_begin(),
1193           E = PreprocessorOpts.remapped_file_end();
1194          M != E;
1195          ++M) {
1196       llvm::sys::PathWithStatus MPath(M->first);
1197       if (const llvm::sys::FileStatus *MStatus = MPath.getFileStatus()) {
1198         if (MainFileStatus->uniqueID == MStatus->uniqueID) {
1199           // We found a remapping. Try to load the resulting, remapped source.
1200           if (CreatedBuffer) {
1201             delete Buffer;
1202             CreatedBuffer = false;
1203           }
1204 
1205           Buffer = getBufferForFile(M->second);
1206           if (!Buffer)
1207             return std::make_pair((llvm::MemoryBuffer*)0,
1208                                   std::make_pair(0, true));
1209           CreatedBuffer = true;
1210         }
1211       }
1212     }
1213 
1214     // Check whether there is a file-buffer remapping. It supercedes the
1215     // file-file remapping.
1216     for (PreprocessorOptions::remapped_file_buffer_iterator
1217            M = PreprocessorOpts.remapped_file_buffer_begin(),
1218            E = PreprocessorOpts.remapped_file_buffer_end();
1219          M != E;
1220          ++M) {
1221       llvm::sys::PathWithStatus MPath(M->first);
1222       if (const llvm::sys::FileStatus *MStatus = MPath.getFileStatus()) {
1223         if (MainFileStatus->uniqueID == MStatus->uniqueID) {
1224           // We found a remapping.
1225           if (CreatedBuffer) {
1226             delete Buffer;
1227             CreatedBuffer = false;
1228           }
1229 
1230           Buffer = const_cast<llvm::MemoryBuffer *>(M->second);
1231         }
1232       }
1233     }
1234   }
1235 
1236   // If the main source file was not remapped, load it now.
1237   if (!Buffer) {
1238     Buffer = getBufferForFile(FrontendOpts.Inputs[0].second);
1239     if (!Buffer)
1240       return std::make_pair((llvm::MemoryBuffer*)0, std::make_pair(0, true));
1241 
1242     CreatedBuffer = true;
1243   }
1244 
1245   return std::make_pair(Buffer, Lexer::ComputePreamble(Buffer,
1246                                                        Invocation.getLangOpts(),
1247                                                        MaxLines));
1248 }
1249 
1250 static llvm::MemoryBuffer *CreatePaddedMainFileBuffer(llvm::MemoryBuffer *Old,
1251                                                       unsigned NewSize,
1252                                                       StringRef NewName) {
1253   llvm::MemoryBuffer *Result
1254     = llvm::MemoryBuffer::getNewUninitMemBuffer(NewSize, NewName);
1255   memcpy(const_cast<char*>(Result->getBufferStart()),
1256          Old->getBufferStart(), Old->getBufferSize());
1257   memset(const_cast<char*>(Result->getBufferStart()) + Old->getBufferSize(),
1258          ' ', NewSize - Old->getBufferSize() - 1);
1259   const_cast<char*>(Result->getBufferEnd())[-1] = '\n';
1260 
1261   return Result;
1262 }
1263 
1264 /// \brief Attempt to build or re-use a precompiled preamble when (re-)parsing
1265 /// the source file.
1266 ///
1267 /// This routine will compute the preamble of the main source file. If a
1268 /// non-trivial preamble is found, it will precompile that preamble into a
1269 /// precompiled header so that the precompiled preamble can be used to reduce
1270 /// reparsing time. If a precompiled preamble has already been constructed,
1271 /// this routine will determine if it is still valid and, if so, avoid
1272 /// rebuilding the precompiled preamble.
1273 ///
1274 /// \param AllowRebuild When true (the default), this routine is
1275 /// allowed to rebuild the precompiled preamble if it is found to be
1276 /// out-of-date.
1277 ///
1278 /// \param MaxLines When non-zero, the maximum number of lines that
1279 /// can occur within the preamble.
1280 ///
1281 /// \returns If the precompiled preamble can be used, returns a newly-allocated
1282 /// buffer that should be used in place of the main file when doing so.
1283 /// Otherwise, returns a NULL pointer.
1284 llvm::MemoryBuffer *ASTUnit::getMainBufferWithPrecompiledPreamble(
1285                               const CompilerInvocation &PreambleInvocationIn,
1286                                                            bool AllowRebuild,
1287                                                            unsigned MaxLines) {
1288 
1289   llvm::IntrusiveRefCntPtr<CompilerInvocation>
1290     PreambleInvocation(new CompilerInvocation(PreambleInvocationIn));
1291   FrontendOptions &FrontendOpts = PreambleInvocation->getFrontendOpts();
1292   PreprocessorOptions &PreprocessorOpts
1293     = PreambleInvocation->getPreprocessorOpts();
1294 
1295   bool CreatedPreambleBuffer = false;
1296   std::pair<llvm::MemoryBuffer *, std::pair<unsigned, bool> > NewPreamble
1297     = ComputePreamble(*PreambleInvocation, MaxLines, CreatedPreambleBuffer);
1298 
1299   // If ComputePreamble() Take ownership of the preamble buffer.
1300   llvm::OwningPtr<llvm::MemoryBuffer> OwnedPreambleBuffer;
1301   if (CreatedPreambleBuffer)
1302     OwnedPreambleBuffer.reset(NewPreamble.first);
1303 
1304   if (!NewPreamble.second.first) {
1305     // We couldn't find a preamble in the main source. Clear out the current
1306     // preamble, if we have one. It's obviously no good any more.
1307     Preamble.clear();
1308     erasePreambleFile(this);
1309 
1310     // The next time we actually see a preamble, precompile it.
1311     PreambleRebuildCounter = 1;
1312     return 0;
1313   }
1314 
1315   if (!Preamble.empty()) {
1316     // We've previously computed a preamble. Check whether we have the same
1317     // preamble now that we did before, and that there's enough space in
1318     // the main-file buffer within the precompiled preamble to fit the
1319     // new main file.
1320     if (Preamble.size() == NewPreamble.second.first &&
1321         PreambleEndsAtStartOfLine == NewPreamble.second.second &&
1322         NewPreamble.first->getBufferSize() < PreambleReservedSize-2 &&
1323         memcmp(Preamble.getBufferStart(), NewPreamble.first->getBufferStart(),
1324                NewPreamble.second.first) == 0) {
1325       // The preamble has not changed. We may be able to re-use the precompiled
1326       // preamble.
1327 
1328       // Check that none of the files used by the preamble have changed.
1329       bool AnyFileChanged = false;
1330 
1331       // First, make a record of those files that have been overridden via
1332       // remapping or unsaved_files.
1333       llvm::StringMap<std::pair<off_t, time_t> > OverriddenFiles;
1334       for (PreprocessorOptions::remapped_file_iterator
1335                 R = PreprocessorOpts.remapped_file_begin(),
1336              REnd = PreprocessorOpts.remapped_file_end();
1337            !AnyFileChanged && R != REnd;
1338            ++R) {
1339         struct stat StatBuf;
1340         if (FileMgr->getNoncachedStatValue(R->second, StatBuf)) {
1341           // If we can't stat the file we're remapping to, assume that something
1342           // horrible happened.
1343           AnyFileChanged = true;
1344           break;
1345         }
1346 
1347         OverriddenFiles[R->first] = std::make_pair(StatBuf.st_size,
1348                                                    StatBuf.st_mtime);
1349       }
1350       for (PreprocessorOptions::remapped_file_buffer_iterator
1351                 R = PreprocessorOpts.remapped_file_buffer_begin(),
1352              REnd = PreprocessorOpts.remapped_file_buffer_end();
1353            !AnyFileChanged && R != REnd;
1354            ++R) {
1355         // FIXME: Should we actually compare the contents of file->buffer
1356         // remappings?
1357         OverriddenFiles[R->first] = std::make_pair(R->second->getBufferSize(),
1358                                                    0);
1359       }
1360 
1361       // Check whether anything has changed.
1362       for (llvm::StringMap<std::pair<off_t, time_t> >::iterator
1363              F = FilesInPreamble.begin(), FEnd = FilesInPreamble.end();
1364            !AnyFileChanged && F != FEnd;
1365            ++F) {
1366         llvm::StringMap<std::pair<off_t, time_t> >::iterator Overridden
1367           = OverriddenFiles.find(F->first());
1368         if (Overridden != OverriddenFiles.end()) {
1369           // This file was remapped; check whether the newly-mapped file
1370           // matches up with the previous mapping.
1371           if (Overridden->second != F->second)
1372             AnyFileChanged = true;
1373           continue;
1374         }
1375 
1376         // The file was not remapped; check whether it has changed on disk.
1377         struct stat StatBuf;
1378         if (FileMgr->getNoncachedStatValue(F->first(), StatBuf)) {
1379           // If we can't stat the file, assume that something horrible happened.
1380           AnyFileChanged = true;
1381         } else if (StatBuf.st_size != F->second.first ||
1382                    StatBuf.st_mtime != F->second.second)
1383           AnyFileChanged = true;
1384       }
1385 
1386       if (!AnyFileChanged) {
1387         // Okay! We can re-use the precompiled preamble.
1388 
1389         // Set the state of the diagnostic object to mimic its state
1390         // after parsing the preamble.
1391         getDiagnostics().Reset();
1392         ProcessWarningOptions(getDiagnostics(),
1393                               PreambleInvocation->getDiagnosticOpts());
1394         getDiagnostics().setNumWarnings(NumWarningsInPreamble);
1395 
1396         // Create a version of the main file buffer that is padded to
1397         // buffer size we reserved when creating the preamble.
1398         return CreatePaddedMainFileBuffer(NewPreamble.first,
1399                                           PreambleReservedSize,
1400                                           FrontendOpts.Inputs[0].second);
1401       }
1402     }
1403 
1404     // If we aren't allowed to rebuild the precompiled preamble, just
1405     // return now.
1406     if (!AllowRebuild)
1407       return 0;
1408 
1409     // We can't reuse the previously-computed preamble. Build a new one.
1410     Preamble.clear();
1411     PreambleDiagnostics.clear();
1412     erasePreambleFile(this);
1413     PreambleRebuildCounter = 1;
1414   } else if (!AllowRebuild) {
1415     // We aren't allowed to rebuild the precompiled preamble; just
1416     // return now.
1417     return 0;
1418   }
1419 
1420   // If the preamble rebuild counter > 1, it's because we previously
1421   // failed to build a preamble and we're not yet ready to try
1422   // again. Decrement the counter and return a failure.
1423   if (PreambleRebuildCounter > 1) {
1424     --PreambleRebuildCounter;
1425     return 0;
1426   }
1427 
1428   // Create a temporary file for the precompiled preamble. In rare
1429   // circumstances, this can fail.
1430   std::string PreamblePCHPath = GetPreamblePCHPath();
1431   if (PreamblePCHPath.empty()) {
1432     // Try again next time.
1433     PreambleRebuildCounter = 1;
1434     return 0;
1435   }
1436 
1437   // We did not previously compute a preamble, or it can't be reused anyway.
1438   SimpleTimer PreambleTimer(WantTiming);
1439   PreambleTimer.setOutput("Precompiling preamble");
1440 
1441   // Create a new buffer that stores the preamble. The buffer also contains
1442   // extra space for the original contents of the file (which will be present
1443   // when we actually parse the file) along with more room in case the file
1444   // grows.
1445   PreambleReservedSize = NewPreamble.first->getBufferSize();
1446   if (PreambleReservedSize < 4096)
1447     PreambleReservedSize = 8191;
1448   else
1449     PreambleReservedSize *= 2;
1450 
1451   // Save the preamble text for later; we'll need to compare against it for
1452   // subsequent reparses.
1453   StringRef MainFilename = PreambleInvocation->getFrontendOpts().Inputs[0].second;
1454   Preamble.assign(FileMgr->getFile(MainFilename),
1455                   NewPreamble.first->getBufferStart(),
1456                   NewPreamble.first->getBufferStart()
1457                                                   + NewPreamble.second.first);
1458   PreambleEndsAtStartOfLine = NewPreamble.second.second;
1459 
1460   delete PreambleBuffer;
1461   PreambleBuffer
1462     = llvm::MemoryBuffer::getNewUninitMemBuffer(PreambleReservedSize,
1463                                                 FrontendOpts.Inputs[0].second);
1464   memcpy(const_cast<char*>(PreambleBuffer->getBufferStart()),
1465          NewPreamble.first->getBufferStart(), Preamble.size());
1466   memset(const_cast<char*>(PreambleBuffer->getBufferStart()) + Preamble.size(),
1467          ' ', PreambleReservedSize - Preamble.size() - 1);
1468   const_cast<char*>(PreambleBuffer->getBufferEnd())[-1] = '\n';
1469 
1470   // Remap the main source file to the preamble buffer.
1471   llvm::sys::PathWithStatus MainFilePath(FrontendOpts.Inputs[0].second);
1472   PreprocessorOpts.addRemappedFile(MainFilePath.str(), PreambleBuffer);
1473 
1474   // Tell the compiler invocation to generate a temporary precompiled header.
1475   FrontendOpts.ProgramAction = frontend::GeneratePCH;
1476   // FIXME: Generate the precompiled header into memory?
1477   FrontendOpts.OutputFile = PreamblePCHPath;
1478   PreprocessorOpts.PrecompiledPreambleBytes.first = 0;
1479   PreprocessorOpts.PrecompiledPreambleBytes.second = false;
1480 
1481   // Create the compiler instance to use for building the precompiled preamble.
1482   llvm::OwningPtr<CompilerInstance> Clang(new CompilerInstance());
1483 
1484   // Recover resources if we crash before exiting this method.
1485   llvm::CrashRecoveryContextCleanupRegistrar<CompilerInstance>
1486     CICleanup(Clang.get());
1487 
1488   Clang->setInvocation(&*PreambleInvocation);
1489   OriginalSourceFile = Clang->getFrontendOpts().Inputs[0].second;
1490 
1491   // Set up diagnostics, capturing all of the diagnostics produced.
1492   Clang->setDiagnostics(&getDiagnostics());
1493 
1494   // Create the target instance.
1495   Clang->getTargetOpts().Features = TargetFeatures;
1496   Clang->setTarget(TargetInfo::CreateTargetInfo(Clang->getDiagnostics(),
1497                                                Clang->getTargetOpts()));
1498   if (!Clang->hasTarget()) {
1499     llvm::sys::Path(FrontendOpts.OutputFile).eraseFromDisk();
1500     Preamble.clear();
1501     PreambleRebuildCounter = DefaultPreambleRebuildInterval;
1502     PreprocessorOpts.eraseRemappedFile(
1503                                PreprocessorOpts.remapped_file_buffer_end() - 1);
1504     return 0;
1505   }
1506 
1507   // Inform the target of the language options.
1508   //
1509   // FIXME: We shouldn't need to do this, the target should be immutable once
1510   // created. This complexity should be lifted elsewhere.
1511   Clang->getTarget().setForcedLangOptions(Clang->getLangOpts());
1512 
1513   assert(Clang->getFrontendOpts().Inputs.size() == 1 &&
1514          "Invocation must have exactly one source file!");
1515   assert(Clang->getFrontendOpts().Inputs[0].first != IK_AST &&
1516          "FIXME: AST inputs not yet supported here!");
1517   assert(Clang->getFrontendOpts().Inputs[0].first != IK_LLVM_IR &&
1518          "IR inputs not support here!");
1519 
1520   // Clear out old caches and data.
1521   getDiagnostics().Reset();
1522   ProcessWarningOptions(getDiagnostics(), Clang->getDiagnosticOpts());
1523   StoredDiagnostics.erase(stored_diag_afterDriver_begin(), stored_diag_end());
1524   TopLevelDecls.clear();
1525   TopLevelDeclsInPreamble.clear();
1526 
1527   // Create a file manager object to provide access to and cache the filesystem.
1528   Clang->setFileManager(new FileManager(Clang->getFileSystemOpts()));
1529 
1530   // Create the source manager.
1531   Clang->setSourceManager(new SourceManager(getDiagnostics(),
1532                                             Clang->getFileManager()));
1533 
1534   llvm::OwningPtr<PrecompilePreambleAction> Act;
1535   Act.reset(new PrecompilePreambleAction(*this));
1536   if (!Act->BeginSourceFile(*Clang.get(), Clang->getFrontendOpts().Inputs[0].second,
1537                             Clang->getFrontendOpts().Inputs[0].first)) {
1538     llvm::sys::Path(FrontendOpts.OutputFile).eraseFromDisk();
1539     Preamble.clear();
1540     PreambleRebuildCounter = DefaultPreambleRebuildInterval;
1541     PreprocessorOpts.eraseRemappedFile(
1542                                PreprocessorOpts.remapped_file_buffer_end() - 1);
1543     return 0;
1544   }
1545 
1546   Act->Execute();
1547   Act->EndSourceFile();
1548 
1549   if (Diagnostics->hasErrorOccurred()) {
1550     // There were errors parsing the preamble, so no precompiled header was
1551     // generated. Forget that we even tried.
1552     // FIXME: Should we leave a note for ourselves to try again?
1553     llvm::sys::Path(FrontendOpts.OutputFile).eraseFromDisk();
1554     Preamble.clear();
1555     TopLevelDeclsInPreamble.clear();
1556     PreambleRebuildCounter = DefaultPreambleRebuildInterval;
1557     PreprocessorOpts.eraseRemappedFile(
1558                                PreprocessorOpts.remapped_file_buffer_end() - 1);
1559     return 0;
1560   }
1561 
1562   // Transfer any diagnostics generated when parsing the preamble into the set
1563   // of preamble diagnostics.
1564   PreambleDiagnostics.clear();
1565   PreambleDiagnostics.insert(PreambleDiagnostics.end(),
1566                             stored_diag_afterDriver_begin(), stored_diag_end());
1567   StoredDiagnostics.erase(stored_diag_afterDriver_begin(), stored_diag_end());
1568 
1569   // Keep track of the preamble we precompiled.
1570   setPreambleFile(this, FrontendOpts.OutputFile);
1571   NumWarningsInPreamble = getDiagnostics().getNumWarnings();
1572 
1573   // Keep track of all of the files that the source manager knows about,
1574   // so we can verify whether they have changed or not.
1575   FilesInPreamble.clear();
1576   SourceManager &SourceMgr = Clang->getSourceManager();
1577   const llvm::MemoryBuffer *MainFileBuffer
1578     = SourceMgr.getBuffer(SourceMgr.getMainFileID());
1579   for (SourceManager::fileinfo_iterator F = SourceMgr.fileinfo_begin(),
1580                                      FEnd = SourceMgr.fileinfo_end();
1581        F != FEnd;
1582        ++F) {
1583     const FileEntry *File = F->second->OrigEntry;
1584     if (!File || F->second->getRawBuffer() == MainFileBuffer)
1585       continue;
1586 
1587     FilesInPreamble[File->getName()]
1588       = std::make_pair(F->second->getSize(), File->getModificationTime());
1589   }
1590 
1591   PreambleRebuildCounter = 1;
1592   PreprocessorOpts.eraseRemappedFile(
1593                                PreprocessorOpts.remapped_file_buffer_end() - 1);
1594 
1595   // If the hash of top-level entities differs from the hash of the top-level
1596   // entities the last time we rebuilt the preamble, clear out the completion
1597   // cache.
1598   if (CurrentTopLevelHashValue != PreambleTopLevelHashValue) {
1599     CompletionCacheTopLevelHashValue = 0;
1600     PreambleTopLevelHashValue = CurrentTopLevelHashValue;
1601   }
1602 
1603   return CreatePaddedMainFileBuffer(NewPreamble.first,
1604                                     PreambleReservedSize,
1605                                     FrontendOpts.Inputs[0].second);
1606 }
1607 
1608 void ASTUnit::RealizeTopLevelDeclsFromPreamble() {
1609   std::vector<Decl *> Resolved;
1610   Resolved.reserve(TopLevelDeclsInPreamble.size());
1611   ExternalASTSource &Source = *getASTContext().getExternalSource();
1612   for (unsigned I = 0, N = TopLevelDeclsInPreamble.size(); I != N; ++I) {
1613     // Resolve the declaration ID to an actual declaration, possibly
1614     // deserializing the declaration in the process.
1615     Decl *D = Source.GetExternalDecl(TopLevelDeclsInPreamble[I]);
1616     if (D)
1617       Resolved.push_back(D);
1618   }
1619   TopLevelDeclsInPreamble.clear();
1620   TopLevelDecls.insert(TopLevelDecls.begin(), Resolved.begin(), Resolved.end());
1621 }
1622 
1623 StringRef ASTUnit::getMainFileName() const {
1624   return Invocation->getFrontendOpts().Inputs[0].second;
1625 }
1626 
1627 ASTUnit *ASTUnit::create(CompilerInvocation *CI,
1628                          llvm::IntrusiveRefCntPtr<DiagnosticsEngine> Diags) {
1629   llvm::OwningPtr<ASTUnit> AST;
1630   AST.reset(new ASTUnit(false));
1631   ConfigureDiags(Diags, 0, 0, *AST, /*CaptureDiagnostics=*/false);
1632   AST->Diagnostics = Diags;
1633   AST->Invocation = CI;
1634   AST->FileSystemOpts = CI->getFileSystemOpts();
1635   AST->FileMgr = new FileManager(AST->FileSystemOpts);
1636   AST->SourceMgr = new SourceManager(AST->getDiagnostics(), *AST->FileMgr);
1637 
1638   return AST.take();
1639 }
1640 
1641 ASTUnit *ASTUnit::LoadFromCompilerInvocationAction(CompilerInvocation *CI,
1642                               llvm::IntrusiveRefCntPtr<DiagnosticsEngine> Diags,
1643                                              ASTFrontendAction *Action,
1644                                              ASTUnit *Unit) {
1645   assert(CI && "A CompilerInvocation is required");
1646 
1647   llvm::OwningPtr<ASTUnit> OwnAST;
1648   ASTUnit *AST = Unit;
1649   if (!AST) {
1650     // Create the AST unit.
1651     OwnAST.reset(create(CI, Diags));
1652     AST = OwnAST.get();
1653   }
1654 
1655   AST->OnlyLocalDecls = false;
1656   AST->CaptureDiagnostics = false;
1657   AST->TUKind = Action ? Action->getTranslationUnitKind() : TU_Complete;
1658   AST->ShouldCacheCodeCompletionResults = false;
1659 
1660   // Recover resources if we crash before exiting this method.
1661   llvm::CrashRecoveryContextCleanupRegistrar<ASTUnit>
1662     ASTUnitCleanup(OwnAST.get());
1663   llvm::CrashRecoveryContextCleanupRegistrar<DiagnosticsEngine,
1664     llvm::CrashRecoveryContextReleaseRefCleanup<DiagnosticsEngine> >
1665     DiagCleanup(Diags.getPtr());
1666 
1667   // We'll manage file buffers ourselves.
1668   CI->getPreprocessorOpts().RetainRemappedFileBuffers = true;
1669   CI->getFrontendOpts().DisableFree = false;
1670   ProcessWarningOptions(AST->getDiagnostics(), CI->getDiagnosticOpts());
1671 
1672   // Save the target features.
1673   AST->TargetFeatures = CI->getTargetOpts().Features;
1674 
1675   // Create the compiler instance to use for building the AST.
1676   llvm::OwningPtr<CompilerInstance> Clang(new CompilerInstance());
1677 
1678   // Recover resources if we crash before exiting this method.
1679   llvm::CrashRecoveryContextCleanupRegistrar<CompilerInstance>
1680     CICleanup(Clang.get());
1681 
1682   Clang->setInvocation(CI);
1683   AST->OriginalSourceFile = Clang->getFrontendOpts().Inputs[0].second;
1684 
1685   // Set up diagnostics, capturing any diagnostics that would
1686   // otherwise be dropped.
1687   Clang->setDiagnostics(&AST->getDiagnostics());
1688 
1689   // Create the target instance.
1690   Clang->getTargetOpts().Features = AST->TargetFeatures;
1691   Clang->setTarget(TargetInfo::CreateTargetInfo(Clang->getDiagnostics(),
1692                    Clang->getTargetOpts()));
1693   if (!Clang->hasTarget())
1694     return 0;
1695 
1696   // Inform the target of the language options.
1697   //
1698   // FIXME: We shouldn't need to do this, the target should be immutable once
1699   // created. This complexity should be lifted elsewhere.
1700   Clang->getTarget().setForcedLangOptions(Clang->getLangOpts());
1701 
1702   assert(Clang->getFrontendOpts().Inputs.size() == 1 &&
1703          "Invocation must have exactly one source file!");
1704   assert(Clang->getFrontendOpts().Inputs[0].first != IK_AST &&
1705          "FIXME: AST inputs not yet supported here!");
1706   assert(Clang->getFrontendOpts().Inputs[0].first != IK_LLVM_IR &&
1707          "IR inputs not supported here!");
1708 
1709   // Configure the various subsystems.
1710   AST->TheSema.reset();
1711   AST->Ctx = 0;
1712   AST->PP = 0;
1713   AST->Reader = 0;
1714 
1715   // Create a file manager object to provide access to and cache the filesystem.
1716   Clang->setFileManager(&AST->getFileManager());
1717 
1718   // Create the source manager.
1719   Clang->setSourceManager(&AST->getSourceManager());
1720 
1721   ASTFrontendAction *Act = Action;
1722 
1723   llvm::OwningPtr<TopLevelDeclTrackerAction> TrackerAct;
1724   if (!Act) {
1725     TrackerAct.reset(new TopLevelDeclTrackerAction(*AST));
1726     Act = TrackerAct.get();
1727   }
1728 
1729   // Recover resources if we crash before exiting this method.
1730   llvm::CrashRecoveryContextCleanupRegistrar<TopLevelDeclTrackerAction>
1731     ActCleanup(TrackerAct.get());
1732 
1733   if (!Act->BeginSourceFile(*Clang.get(),
1734                             Clang->getFrontendOpts().Inputs[0].second,
1735                             Clang->getFrontendOpts().Inputs[0].first))
1736     return 0;
1737 
1738   Act->Execute();
1739 
1740   // Steal the created target, context, and preprocessor.
1741   AST->TheSema.reset(Clang->takeSema());
1742   AST->Consumer.reset(Clang->takeASTConsumer());
1743   AST->Ctx = &Clang->getASTContext();
1744   AST->PP = &Clang->getPreprocessor();
1745   Clang->setSourceManager(0);
1746   Clang->setFileManager(0);
1747   AST->Target = &Clang->getTarget();
1748   AST->Reader = Clang->getModuleManager();
1749 
1750   Act->EndSourceFile();
1751 
1752   if (OwnAST)
1753     return OwnAST.take();
1754   else
1755     return AST;
1756 }
1757 
1758 bool ASTUnit::LoadFromCompilerInvocation(bool PrecompilePreamble) {
1759   if (!Invocation)
1760     return true;
1761 
1762   // We'll manage file buffers ourselves.
1763   Invocation->getPreprocessorOpts().RetainRemappedFileBuffers = true;
1764   Invocation->getFrontendOpts().DisableFree = false;
1765   ProcessWarningOptions(getDiagnostics(), Invocation->getDiagnosticOpts());
1766 
1767   // Save the target features.
1768   TargetFeatures = Invocation->getTargetOpts().Features;
1769 
1770   llvm::MemoryBuffer *OverrideMainBuffer = 0;
1771   if (PrecompilePreamble) {
1772     PreambleRebuildCounter = 2;
1773     OverrideMainBuffer
1774       = getMainBufferWithPrecompiledPreamble(*Invocation);
1775   }
1776 
1777   SimpleTimer ParsingTimer(WantTiming);
1778   ParsingTimer.setOutput("Parsing " + getMainFileName());
1779 
1780   // Recover resources if we crash before exiting this method.
1781   llvm::CrashRecoveryContextCleanupRegistrar<llvm::MemoryBuffer>
1782     MemBufferCleanup(OverrideMainBuffer);
1783 
1784   return Parse(OverrideMainBuffer);
1785 }
1786 
1787 ASTUnit *ASTUnit::LoadFromCompilerInvocation(CompilerInvocation *CI,
1788                               llvm::IntrusiveRefCntPtr<DiagnosticsEngine> Diags,
1789                                              bool OnlyLocalDecls,
1790                                              bool CaptureDiagnostics,
1791                                              bool PrecompilePreamble,
1792                                              TranslationUnitKind TUKind,
1793                                              bool CacheCodeCompletionResults,
1794                                              bool NestedMacroExpansions) {
1795   // Create the AST unit.
1796   llvm::OwningPtr<ASTUnit> AST;
1797   AST.reset(new ASTUnit(false));
1798   ConfigureDiags(Diags, 0, 0, *AST, CaptureDiagnostics);
1799   AST->Diagnostics = Diags;
1800   AST->OnlyLocalDecls = OnlyLocalDecls;
1801   AST->CaptureDiagnostics = CaptureDiagnostics;
1802   AST->TUKind = TUKind;
1803   AST->ShouldCacheCodeCompletionResults = CacheCodeCompletionResults;
1804   AST->Invocation = CI;
1805   AST->NestedMacroExpansions = NestedMacroExpansions;
1806 
1807   // Recover resources if we crash before exiting this method.
1808   llvm::CrashRecoveryContextCleanupRegistrar<ASTUnit>
1809     ASTUnitCleanup(AST.get());
1810   llvm::CrashRecoveryContextCleanupRegistrar<DiagnosticsEngine,
1811     llvm::CrashRecoveryContextReleaseRefCleanup<DiagnosticsEngine> >
1812     DiagCleanup(Diags.getPtr());
1813 
1814   return AST->LoadFromCompilerInvocation(PrecompilePreamble)? 0 : AST.take();
1815 }
1816 
1817 ASTUnit *ASTUnit::LoadFromCommandLine(const char **ArgBegin,
1818                                       const char **ArgEnd,
1819                                     llvm::IntrusiveRefCntPtr<DiagnosticsEngine> Diags,
1820                                       StringRef ResourceFilesPath,
1821                                       bool OnlyLocalDecls,
1822                                       bool CaptureDiagnostics,
1823                                       RemappedFile *RemappedFiles,
1824                                       unsigned NumRemappedFiles,
1825                                       bool RemappedFilesKeepOriginalName,
1826                                       bool PrecompilePreamble,
1827                                       TranslationUnitKind TUKind,
1828                                       bool CacheCodeCompletionResults,
1829                                       bool NestedMacroExpansions) {
1830   if (!Diags.getPtr()) {
1831     // No diagnostics engine was provided, so create our own diagnostics object
1832     // with the default options.
1833     DiagnosticOptions DiagOpts;
1834     Diags = CompilerInstance::createDiagnostics(DiagOpts, ArgEnd - ArgBegin,
1835                                                 ArgBegin);
1836   }
1837 
1838   SmallVector<StoredDiagnostic, 4> StoredDiagnostics;
1839 
1840   llvm::IntrusiveRefCntPtr<CompilerInvocation> CI;
1841 
1842   {
1843 
1844     CaptureDroppedDiagnostics Capture(CaptureDiagnostics, *Diags,
1845                                       StoredDiagnostics);
1846 
1847     CI = clang::createInvocationFromCommandLine(
1848                                            llvm::makeArrayRef(ArgBegin, ArgEnd),
1849                                            Diags);
1850     if (!CI)
1851       return 0;
1852   }
1853 
1854   // Override any files that need remapping
1855   for (unsigned I = 0; I != NumRemappedFiles; ++I) {
1856     FilenameOrMemBuf fileOrBuf = RemappedFiles[I].second;
1857     if (const llvm::MemoryBuffer *
1858             memBuf = fileOrBuf.dyn_cast<const llvm::MemoryBuffer *>()) {
1859       CI->getPreprocessorOpts().addRemappedFile(RemappedFiles[I].first, memBuf);
1860     } else {
1861       const char *fname = fileOrBuf.get<const char *>();
1862       CI->getPreprocessorOpts().addRemappedFile(RemappedFiles[I].first, fname);
1863     }
1864   }
1865   CI->getPreprocessorOpts().RemappedFilesKeepOriginalName =
1866                                                   RemappedFilesKeepOriginalName;
1867 
1868   // Override the resources path.
1869   CI->getHeaderSearchOpts().ResourceDir = ResourceFilesPath;
1870 
1871   // Create the AST unit.
1872   llvm::OwningPtr<ASTUnit> AST;
1873   AST.reset(new ASTUnit(false));
1874   ConfigureDiags(Diags, ArgBegin, ArgEnd, *AST, CaptureDiagnostics);
1875   AST->Diagnostics = Diags;
1876 
1877   AST->FileSystemOpts = CI->getFileSystemOpts();
1878   AST->FileMgr = new FileManager(AST->FileSystemOpts);
1879   AST->OnlyLocalDecls = OnlyLocalDecls;
1880   AST->CaptureDiagnostics = CaptureDiagnostics;
1881   AST->TUKind = TUKind;
1882   AST->ShouldCacheCodeCompletionResults = CacheCodeCompletionResults;
1883   AST->NumStoredDiagnosticsFromDriver = StoredDiagnostics.size();
1884   AST->StoredDiagnostics.swap(StoredDiagnostics);
1885   AST->Invocation = CI;
1886   AST->NestedMacroExpansions = NestedMacroExpansions;
1887 
1888   // Recover resources if we crash before exiting this method.
1889   llvm::CrashRecoveryContextCleanupRegistrar<ASTUnit>
1890     ASTUnitCleanup(AST.get());
1891   llvm::CrashRecoveryContextCleanupRegistrar<CompilerInvocation,
1892     llvm::CrashRecoveryContextReleaseRefCleanup<CompilerInvocation> >
1893     CICleanup(CI.getPtr());
1894   llvm::CrashRecoveryContextCleanupRegistrar<DiagnosticsEngine,
1895     llvm::CrashRecoveryContextReleaseRefCleanup<DiagnosticsEngine> >
1896     DiagCleanup(Diags.getPtr());
1897 
1898   return AST->LoadFromCompilerInvocation(PrecompilePreamble) ? 0 : AST.take();
1899 }
1900 
1901 bool ASTUnit::Reparse(RemappedFile *RemappedFiles, unsigned NumRemappedFiles) {
1902   if (!Invocation)
1903     return true;
1904 
1905   clearFileLevelDecls();
1906 
1907   SimpleTimer ParsingTimer(WantTiming);
1908   ParsingTimer.setOutput("Reparsing " + getMainFileName());
1909 
1910   // Remap files.
1911   PreprocessorOptions &PPOpts = Invocation->getPreprocessorOpts();
1912   PPOpts.DisableStatCache = true;
1913   for (PreprocessorOptions::remapped_file_buffer_iterator
1914          R = PPOpts.remapped_file_buffer_begin(),
1915          REnd = PPOpts.remapped_file_buffer_end();
1916        R != REnd;
1917        ++R) {
1918     delete R->second;
1919   }
1920   Invocation->getPreprocessorOpts().clearRemappedFiles();
1921   for (unsigned I = 0; I != NumRemappedFiles; ++I) {
1922     FilenameOrMemBuf fileOrBuf = RemappedFiles[I].second;
1923     if (const llvm::MemoryBuffer *
1924             memBuf = fileOrBuf.dyn_cast<const llvm::MemoryBuffer *>()) {
1925       Invocation->getPreprocessorOpts().addRemappedFile(RemappedFiles[I].first,
1926                                                         memBuf);
1927     } else {
1928       const char *fname = fileOrBuf.get<const char *>();
1929       Invocation->getPreprocessorOpts().addRemappedFile(RemappedFiles[I].first,
1930                                                         fname);
1931     }
1932   }
1933 
1934   // If we have a preamble file lying around, or if we might try to
1935   // build a precompiled preamble, do so now.
1936   llvm::MemoryBuffer *OverrideMainBuffer = 0;
1937   if (!getPreambleFile(this).empty() || PreambleRebuildCounter > 0)
1938     OverrideMainBuffer = getMainBufferWithPrecompiledPreamble(*Invocation);
1939 
1940   // Clear out the diagnostics state.
1941   getDiagnostics().Reset();
1942   ProcessWarningOptions(getDiagnostics(), Invocation->getDiagnosticOpts());
1943   if (OverrideMainBuffer)
1944     getDiagnostics().setNumWarnings(NumWarningsInPreamble);
1945 
1946   // Parse the sources
1947   bool Result = Parse(OverrideMainBuffer);
1948 
1949   // If we're caching global code-completion results, and the top-level
1950   // declarations have changed, clear out the code-completion cache.
1951   if (!Result && ShouldCacheCodeCompletionResults &&
1952       CurrentTopLevelHashValue != CompletionCacheTopLevelHashValue)
1953     CacheCodeCompletionResults();
1954 
1955   // We now need to clear out the completion allocator for
1956   // clang_getCursorCompletionString; it'll be recreated if necessary.
1957   CursorCompletionAllocator = 0;
1958 
1959   return Result;
1960 }
1961 
1962 //----------------------------------------------------------------------------//
1963 // Code completion
1964 //----------------------------------------------------------------------------//
1965 
1966 namespace {
1967   /// \brief Code completion consumer that combines the cached code-completion
1968   /// results from an ASTUnit with the code-completion results provided to it,
1969   /// then passes the result on to
1970   class AugmentedCodeCompleteConsumer : public CodeCompleteConsumer {
1971     unsigned long long NormalContexts;
1972     ASTUnit &AST;
1973     CodeCompleteConsumer &Next;
1974 
1975   public:
1976     AugmentedCodeCompleteConsumer(ASTUnit &AST, CodeCompleteConsumer &Next,
1977                                   bool IncludeMacros, bool IncludeCodePatterns,
1978                                   bool IncludeGlobals)
1979       : CodeCompleteConsumer(IncludeMacros, IncludeCodePatterns, IncludeGlobals,
1980                              Next.isOutputBinary()), AST(AST), Next(Next)
1981     {
1982       // Compute the set of contexts in which we will look when we don't have
1983       // any information about the specific context.
1984       NormalContexts
1985         = (1LL << (CodeCompletionContext::CCC_TopLevel - 1))
1986         | (1LL << (CodeCompletionContext::CCC_ObjCInterface - 1))
1987         | (1LL << (CodeCompletionContext::CCC_ObjCImplementation - 1))
1988         | (1LL << (CodeCompletionContext::CCC_ObjCIvarList - 1))
1989         | (1LL << (CodeCompletionContext::CCC_Statement - 1))
1990         | (1LL << (CodeCompletionContext::CCC_Expression - 1))
1991         | (1LL << (CodeCompletionContext::CCC_ObjCMessageReceiver - 1))
1992         | (1LL << (CodeCompletionContext::CCC_DotMemberAccess - 1))
1993         | (1LL << (CodeCompletionContext::CCC_ArrowMemberAccess - 1))
1994         | (1LL << (CodeCompletionContext::CCC_ObjCPropertyAccess - 1))
1995         | (1LL << (CodeCompletionContext::CCC_ObjCProtocolName - 1))
1996         | (1LL << (CodeCompletionContext::CCC_ParenthesizedExpression - 1))
1997         | (1LL << (CodeCompletionContext::CCC_Recovery - 1));
1998 
1999       if (AST.getASTContext().getLangOptions().CPlusPlus)
2000         NormalContexts |= (1LL << (CodeCompletionContext::CCC_EnumTag - 1))
2001                    | (1LL << (CodeCompletionContext::CCC_UnionTag - 1))
2002                    | (1LL << (CodeCompletionContext::CCC_ClassOrStructTag - 1));
2003     }
2004 
2005     virtual void ProcessCodeCompleteResults(Sema &S,
2006                                             CodeCompletionContext Context,
2007                                             CodeCompletionResult *Results,
2008                                             unsigned NumResults);
2009 
2010     virtual void ProcessOverloadCandidates(Sema &S, unsigned CurrentArg,
2011                                            OverloadCandidate *Candidates,
2012                                            unsigned NumCandidates) {
2013       Next.ProcessOverloadCandidates(S, CurrentArg, Candidates, NumCandidates);
2014     }
2015 
2016     virtual CodeCompletionAllocator &getAllocator() {
2017       return Next.getAllocator();
2018     }
2019   };
2020 }
2021 
2022 /// \brief Helper function that computes which global names are hidden by the
2023 /// local code-completion results.
2024 static void CalculateHiddenNames(const CodeCompletionContext &Context,
2025                                  CodeCompletionResult *Results,
2026                                  unsigned NumResults,
2027                                  ASTContext &Ctx,
2028                           llvm::StringSet<llvm::BumpPtrAllocator> &HiddenNames){
2029   bool OnlyTagNames = false;
2030   switch (Context.getKind()) {
2031   case CodeCompletionContext::CCC_Recovery:
2032   case CodeCompletionContext::CCC_TopLevel:
2033   case CodeCompletionContext::CCC_ObjCInterface:
2034   case CodeCompletionContext::CCC_ObjCImplementation:
2035   case CodeCompletionContext::CCC_ObjCIvarList:
2036   case CodeCompletionContext::CCC_ClassStructUnion:
2037   case CodeCompletionContext::CCC_Statement:
2038   case CodeCompletionContext::CCC_Expression:
2039   case CodeCompletionContext::CCC_ObjCMessageReceiver:
2040   case CodeCompletionContext::CCC_DotMemberAccess:
2041   case CodeCompletionContext::CCC_ArrowMemberAccess:
2042   case CodeCompletionContext::CCC_ObjCPropertyAccess:
2043   case CodeCompletionContext::CCC_Namespace:
2044   case CodeCompletionContext::CCC_Type:
2045   case CodeCompletionContext::CCC_Name:
2046   case CodeCompletionContext::CCC_PotentiallyQualifiedName:
2047   case CodeCompletionContext::CCC_ParenthesizedExpression:
2048   case CodeCompletionContext::CCC_ObjCInterfaceName:
2049     break;
2050 
2051   case CodeCompletionContext::CCC_EnumTag:
2052   case CodeCompletionContext::CCC_UnionTag:
2053   case CodeCompletionContext::CCC_ClassOrStructTag:
2054     OnlyTagNames = true;
2055     break;
2056 
2057   case CodeCompletionContext::CCC_ObjCProtocolName:
2058   case CodeCompletionContext::CCC_MacroName:
2059   case CodeCompletionContext::CCC_MacroNameUse:
2060   case CodeCompletionContext::CCC_PreprocessorExpression:
2061   case CodeCompletionContext::CCC_PreprocessorDirective:
2062   case CodeCompletionContext::CCC_NaturalLanguage:
2063   case CodeCompletionContext::CCC_SelectorName:
2064   case CodeCompletionContext::CCC_TypeQualifiers:
2065   case CodeCompletionContext::CCC_Other:
2066   case CodeCompletionContext::CCC_OtherWithMacros:
2067   case CodeCompletionContext::CCC_ObjCInstanceMessage:
2068   case CodeCompletionContext::CCC_ObjCClassMessage:
2069   case CodeCompletionContext::CCC_ObjCCategoryName:
2070     // We're looking for nothing, or we're looking for names that cannot
2071     // be hidden.
2072     return;
2073   }
2074 
2075   typedef CodeCompletionResult Result;
2076   for (unsigned I = 0; I != NumResults; ++I) {
2077     if (Results[I].Kind != Result::RK_Declaration)
2078       continue;
2079 
2080     unsigned IDNS
2081       = Results[I].Declaration->getUnderlyingDecl()->getIdentifierNamespace();
2082 
2083     bool Hiding = false;
2084     if (OnlyTagNames)
2085       Hiding = (IDNS & Decl::IDNS_Tag);
2086     else {
2087       unsigned HiddenIDNS = (Decl::IDNS_Type | Decl::IDNS_Member |
2088                              Decl::IDNS_Namespace | Decl::IDNS_Ordinary |
2089                              Decl::IDNS_NonMemberOperator);
2090       if (Ctx.getLangOptions().CPlusPlus)
2091         HiddenIDNS |= Decl::IDNS_Tag;
2092       Hiding = (IDNS & HiddenIDNS);
2093     }
2094 
2095     if (!Hiding)
2096       continue;
2097 
2098     DeclarationName Name = Results[I].Declaration->getDeclName();
2099     if (IdentifierInfo *Identifier = Name.getAsIdentifierInfo())
2100       HiddenNames.insert(Identifier->getName());
2101     else
2102       HiddenNames.insert(Name.getAsString());
2103   }
2104 }
2105 
2106 
2107 void AugmentedCodeCompleteConsumer::ProcessCodeCompleteResults(Sema &S,
2108                                             CodeCompletionContext Context,
2109                                             CodeCompletionResult *Results,
2110                                             unsigned NumResults) {
2111   // Merge the results we were given with the results we cached.
2112   bool AddedResult = false;
2113   unsigned InContexts
2114     = (Context.getKind() == CodeCompletionContext::CCC_Recovery? NormalContexts
2115                                         : (1ULL << (Context.getKind() - 1)));
2116   // Contains the set of names that are hidden by "local" completion results.
2117   llvm::StringSet<llvm::BumpPtrAllocator> HiddenNames;
2118   typedef CodeCompletionResult Result;
2119   SmallVector<Result, 8> AllResults;
2120   for (ASTUnit::cached_completion_iterator
2121             C = AST.cached_completion_begin(),
2122          CEnd = AST.cached_completion_end();
2123        C != CEnd; ++C) {
2124     // If the context we are in matches any of the contexts we are
2125     // interested in, we'll add this result.
2126     if ((C->ShowInContexts & InContexts) == 0)
2127       continue;
2128 
2129     // If we haven't added any results previously, do so now.
2130     if (!AddedResult) {
2131       CalculateHiddenNames(Context, Results, NumResults, S.Context,
2132                            HiddenNames);
2133       AllResults.insert(AllResults.end(), Results, Results + NumResults);
2134       AddedResult = true;
2135     }
2136 
2137     // Determine whether this global completion result is hidden by a local
2138     // completion result. If so, skip it.
2139     if (C->Kind != CXCursor_MacroDefinition &&
2140         HiddenNames.count(C->Completion->getTypedText()))
2141       continue;
2142 
2143     // Adjust priority based on similar type classes.
2144     unsigned Priority = C->Priority;
2145     CXCursorKind CursorKind = C->Kind;
2146     CodeCompletionString *Completion = C->Completion;
2147     if (!Context.getPreferredType().isNull()) {
2148       if (C->Kind == CXCursor_MacroDefinition) {
2149         Priority = getMacroUsagePriority(C->Completion->getTypedText(),
2150                                          S.getLangOptions(),
2151                                Context.getPreferredType()->isAnyPointerType());
2152       } else if (C->Type) {
2153         CanQualType Expected
2154           = S.Context.getCanonicalType(
2155                                Context.getPreferredType().getUnqualifiedType());
2156         SimplifiedTypeClass ExpectedSTC = getSimplifiedTypeClass(Expected);
2157         if (ExpectedSTC == C->TypeClass) {
2158           // We know this type is similar; check for an exact match.
2159           llvm::StringMap<unsigned> &CachedCompletionTypes
2160             = AST.getCachedCompletionTypes();
2161           llvm::StringMap<unsigned>::iterator Pos
2162             = CachedCompletionTypes.find(QualType(Expected).getAsString());
2163           if (Pos != CachedCompletionTypes.end() && Pos->second == C->Type)
2164             Priority /= CCF_ExactTypeMatch;
2165           else
2166             Priority /= CCF_SimilarTypeMatch;
2167         }
2168       }
2169     }
2170 
2171     // Adjust the completion string, if required.
2172     if (C->Kind == CXCursor_MacroDefinition &&
2173         Context.getKind() == CodeCompletionContext::CCC_MacroNameUse) {
2174       // Create a new code-completion string that just contains the
2175       // macro name, without its arguments.
2176       CodeCompletionBuilder Builder(getAllocator(), CCP_CodePattern,
2177                                     C->Availability);
2178       Builder.AddTypedTextChunk(C->Completion->getTypedText());
2179       CursorKind = CXCursor_NotImplemented;
2180       Priority = CCP_CodePattern;
2181       Completion = Builder.TakeString();
2182     }
2183 
2184     AllResults.push_back(Result(Completion, Priority, CursorKind,
2185                                 C->Availability));
2186   }
2187 
2188   // If we did not add any cached completion results, just forward the
2189   // results we were given to the next consumer.
2190   if (!AddedResult) {
2191     Next.ProcessCodeCompleteResults(S, Context, Results, NumResults);
2192     return;
2193   }
2194 
2195   Next.ProcessCodeCompleteResults(S, Context, AllResults.data(),
2196                                   AllResults.size());
2197 }
2198 
2199 
2200 
2201 void ASTUnit::CodeComplete(StringRef File, unsigned Line, unsigned Column,
2202                            RemappedFile *RemappedFiles,
2203                            unsigned NumRemappedFiles,
2204                            bool IncludeMacros,
2205                            bool IncludeCodePatterns,
2206                            CodeCompleteConsumer &Consumer,
2207                            DiagnosticsEngine &Diag, LangOptions &LangOpts,
2208                            SourceManager &SourceMgr, FileManager &FileMgr,
2209                    SmallVectorImpl<StoredDiagnostic> &StoredDiagnostics,
2210              SmallVectorImpl<const llvm::MemoryBuffer *> &OwnedBuffers) {
2211   if (!Invocation)
2212     return;
2213 
2214   SimpleTimer CompletionTimer(WantTiming);
2215   CompletionTimer.setOutput("Code completion @ " + File + ":" +
2216                             Twine(Line) + ":" + Twine(Column));
2217 
2218   llvm::IntrusiveRefCntPtr<CompilerInvocation>
2219     CCInvocation(new CompilerInvocation(*Invocation));
2220 
2221   FrontendOptions &FrontendOpts = CCInvocation->getFrontendOpts();
2222   PreprocessorOptions &PreprocessorOpts = CCInvocation->getPreprocessorOpts();
2223 
2224   FrontendOpts.ShowMacrosInCodeCompletion
2225     = IncludeMacros && CachedCompletionResults.empty();
2226   FrontendOpts.ShowCodePatternsInCodeCompletion = IncludeCodePatterns;
2227   FrontendOpts.ShowGlobalSymbolsInCodeCompletion
2228     = CachedCompletionResults.empty();
2229   FrontendOpts.CodeCompletionAt.FileName = File;
2230   FrontendOpts.CodeCompletionAt.Line = Line;
2231   FrontendOpts.CodeCompletionAt.Column = Column;
2232 
2233   // Set the language options appropriately.
2234   LangOpts = CCInvocation->getLangOpts();
2235 
2236   llvm::OwningPtr<CompilerInstance> Clang(new CompilerInstance());
2237 
2238   // Recover resources if we crash before exiting this method.
2239   llvm::CrashRecoveryContextCleanupRegistrar<CompilerInstance>
2240     CICleanup(Clang.get());
2241 
2242   Clang->setInvocation(&*CCInvocation);
2243   OriginalSourceFile = Clang->getFrontendOpts().Inputs[0].second;
2244 
2245   // Set up diagnostics, capturing any diagnostics produced.
2246   Clang->setDiagnostics(&Diag);
2247   ProcessWarningOptions(Diag, CCInvocation->getDiagnosticOpts());
2248   CaptureDroppedDiagnostics Capture(true,
2249                                     Clang->getDiagnostics(),
2250                                     StoredDiagnostics);
2251 
2252   // Create the target instance.
2253   Clang->getTargetOpts().Features = TargetFeatures;
2254   Clang->setTarget(TargetInfo::CreateTargetInfo(Clang->getDiagnostics(),
2255                                                Clang->getTargetOpts()));
2256   if (!Clang->hasTarget()) {
2257     Clang->setInvocation(0);
2258     return;
2259   }
2260 
2261   // Inform the target of the language options.
2262   //
2263   // FIXME: We shouldn't need to do this, the target should be immutable once
2264   // created. This complexity should be lifted elsewhere.
2265   Clang->getTarget().setForcedLangOptions(Clang->getLangOpts());
2266 
2267   assert(Clang->getFrontendOpts().Inputs.size() == 1 &&
2268          "Invocation must have exactly one source file!");
2269   assert(Clang->getFrontendOpts().Inputs[0].first != IK_AST &&
2270          "FIXME: AST inputs not yet supported here!");
2271   assert(Clang->getFrontendOpts().Inputs[0].first != IK_LLVM_IR &&
2272          "IR inputs not support here!");
2273 
2274 
2275   // Use the source and file managers that we were given.
2276   Clang->setFileManager(&FileMgr);
2277   Clang->setSourceManager(&SourceMgr);
2278 
2279   // Remap files.
2280   PreprocessorOpts.clearRemappedFiles();
2281   PreprocessorOpts.RetainRemappedFileBuffers = true;
2282   for (unsigned I = 0; I != NumRemappedFiles; ++I) {
2283     FilenameOrMemBuf fileOrBuf = RemappedFiles[I].second;
2284     if (const llvm::MemoryBuffer *
2285             memBuf = fileOrBuf.dyn_cast<const llvm::MemoryBuffer *>()) {
2286       PreprocessorOpts.addRemappedFile(RemappedFiles[I].first, memBuf);
2287       OwnedBuffers.push_back(memBuf);
2288     } else {
2289       const char *fname = fileOrBuf.get<const char *>();
2290       PreprocessorOpts.addRemappedFile(RemappedFiles[I].first, fname);
2291     }
2292   }
2293 
2294   // Use the code completion consumer we were given, but adding any cached
2295   // code-completion results.
2296   AugmentedCodeCompleteConsumer *AugmentedConsumer
2297     = new AugmentedCodeCompleteConsumer(*this, Consumer,
2298                                         FrontendOpts.ShowMacrosInCodeCompletion,
2299                                 FrontendOpts.ShowCodePatternsInCodeCompletion,
2300                                 FrontendOpts.ShowGlobalSymbolsInCodeCompletion);
2301   Clang->setCodeCompletionConsumer(AugmentedConsumer);
2302 
2303   // If we have a precompiled preamble, try to use it. We only allow
2304   // the use of the precompiled preamble if we're if the completion
2305   // point is within the main file, after the end of the precompiled
2306   // preamble.
2307   llvm::MemoryBuffer *OverrideMainBuffer = 0;
2308   if (!getPreambleFile(this).empty()) {
2309     using llvm::sys::FileStatus;
2310     llvm::sys::PathWithStatus CompleteFilePath(File);
2311     llvm::sys::PathWithStatus MainPath(OriginalSourceFile);
2312     if (const FileStatus *CompleteFileStatus = CompleteFilePath.getFileStatus())
2313       if (const FileStatus *MainStatus = MainPath.getFileStatus())
2314         if (CompleteFileStatus->getUniqueID() == MainStatus->getUniqueID() &&
2315             Line > 1)
2316           OverrideMainBuffer
2317             = getMainBufferWithPrecompiledPreamble(*CCInvocation, false,
2318                                                    Line - 1);
2319   }
2320 
2321   // If the main file has been overridden due to the use of a preamble,
2322   // make that override happen and introduce the preamble.
2323   PreprocessorOpts.DisableStatCache = true;
2324   StoredDiagnostics.insert(StoredDiagnostics.end(),
2325                            stored_diag_begin(),
2326                            stored_diag_afterDriver_begin());
2327   if (OverrideMainBuffer) {
2328     PreprocessorOpts.addRemappedFile(OriginalSourceFile, OverrideMainBuffer);
2329     PreprocessorOpts.PrecompiledPreambleBytes.first = Preamble.size();
2330     PreprocessorOpts.PrecompiledPreambleBytes.second
2331                                                     = PreambleEndsAtStartOfLine;
2332     PreprocessorOpts.ImplicitPCHInclude = getPreambleFile(this);
2333     PreprocessorOpts.DisablePCHValidation = true;
2334 
2335     OwnedBuffers.push_back(OverrideMainBuffer);
2336   } else {
2337     PreprocessorOpts.PrecompiledPreambleBytes.first = 0;
2338     PreprocessorOpts.PrecompiledPreambleBytes.second = false;
2339   }
2340 
2341   // Disable the preprocessing record
2342   PreprocessorOpts.DetailedRecord = false;
2343 
2344   llvm::OwningPtr<SyntaxOnlyAction> Act;
2345   Act.reset(new SyntaxOnlyAction);
2346   if (Act->BeginSourceFile(*Clang.get(), Clang->getFrontendOpts().Inputs[0].second,
2347                            Clang->getFrontendOpts().Inputs[0].first)) {
2348     if (OverrideMainBuffer) {
2349       std::string ModName = getPreambleFile(this);
2350       TranslateStoredDiagnostics(Clang->getModuleManager(), ModName,
2351                                  getSourceManager(), PreambleDiagnostics,
2352                                  StoredDiagnostics);
2353     }
2354     Act->Execute();
2355     Act->EndSourceFile();
2356   }
2357 }
2358 
2359 CXSaveError ASTUnit::Save(StringRef File) {
2360   if (getDiagnostics().hasUnrecoverableErrorOccurred())
2361     return CXSaveError_TranslationErrors;
2362 
2363   // Write to a temporary file and later rename it to the actual file, to avoid
2364   // possible race conditions.
2365   llvm::SmallString<128> TempPath;
2366   TempPath = File;
2367   TempPath += "-%%%%%%%%";
2368   int fd;
2369   if (llvm::sys::fs::unique_file(TempPath.str(), fd, TempPath,
2370                                  /*makeAbsolute=*/false))
2371     return CXSaveError_Unknown;
2372 
2373   // FIXME: Can we somehow regenerate the stat cache here, or do we need to
2374   // unconditionally create a stat cache when we parse the file?
2375   llvm::raw_fd_ostream Out(fd, /*shouldClose=*/true);
2376 
2377   serialize(Out);
2378   Out.close();
2379   if (Out.has_error())
2380     return CXSaveError_Unknown;
2381 
2382   if (llvm::error_code ec = llvm::sys::fs::rename(TempPath.str(), File)) {
2383     bool exists;
2384     llvm::sys::fs::remove(TempPath.str(), exists);
2385     return CXSaveError_Unknown;
2386   }
2387 
2388   return CXSaveError_None;
2389 }
2390 
2391 bool ASTUnit::serialize(raw_ostream &OS) {
2392   if (getDiagnostics().hasErrorOccurred())
2393     return true;
2394 
2395   std::vector<unsigned char> Buffer;
2396   llvm::BitstreamWriter Stream(Buffer);
2397   ASTWriter Writer(Stream);
2398   // FIXME: Handle modules
2399   Writer.WriteAST(getSema(), 0, std::string(), /*IsModule=*/false, "");
2400 
2401   // Write the generated bitstream to "Out".
2402   if (!Buffer.empty())
2403     OS.write((char *)&Buffer.front(), Buffer.size());
2404 
2405   return false;
2406 }
2407 
2408 typedef ContinuousRangeMap<unsigned, int, 2> SLocRemap;
2409 
2410 static void TranslateSLoc(SourceLocation &L, SLocRemap &Remap) {
2411   unsigned Raw = L.getRawEncoding();
2412   const unsigned MacroBit = 1U << 31;
2413   L = SourceLocation::getFromRawEncoding((Raw & MacroBit) |
2414       ((Raw & ~MacroBit) + Remap.find(Raw & ~MacroBit)->second));
2415 }
2416 
2417 void ASTUnit::TranslateStoredDiagnostics(
2418                           ASTReader *MMan,
2419                           StringRef ModName,
2420                           SourceManager &SrcMgr,
2421                           const SmallVectorImpl<StoredDiagnostic> &Diags,
2422                           SmallVectorImpl<StoredDiagnostic> &Out) {
2423   // The stored diagnostic has the old source manager in it; update
2424   // the locations to refer into the new source manager. We also need to remap
2425   // all the locations to the new view. This includes the diag location, any
2426   // associated source ranges, and the source ranges of associated fix-its.
2427   // FIXME: There should be a cleaner way to do this.
2428 
2429   SmallVector<StoredDiagnostic, 4> Result;
2430   Result.reserve(Diags.size());
2431   assert(MMan && "Don't have a module manager");
2432   serialization::Module *Mod = MMan->ModuleMgr.lookup(ModName);
2433   assert(Mod && "Don't have preamble module");
2434   SLocRemap &Remap = Mod->SLocRemap;
2435   for (unsigned I = 0, N = Diags.size(); I != N; ++I) {
2436     // Rebuild the StoredDiagnostic.
2437     const StoredDiagnostic &SD = Diags[I];
2438     SourceLocation L = SD.getLocation();
2439     TranslateSLoc(L, Remap);
2440     FullSourceLoc Loc(L, SrcMgr);
2441 
2442     SmallVector<CharSourceRange, 4> Ranges;
2443     Ranges.reserve(SD.range_size());
2444     for (StoredDiagnostic::range_iterator I = SD.range_begin(),
2445                                           E = SD.range_end();
2446          I != E; ++I) {
2447       SourceLocation BL = I->getBegin();
2448       TranslateSLoc(BL, Remap);
2449       SourceLocation EL = I->getEnd();
2450       TranslateSLoc(EL, Remap);
2451       Ranges.push_back(CharSourceRange(SourceRange(BL, EL), I->isTokenRange()));
2452     }
2453 
2454     SmallVector<FixItHint, 2> FixIts;
2455     FixIts.reserve(SD.fixit_size());
2456     for (StoredDiagnostic::fixit_iterator I = SD.fixit_begin(),
2457                                           E = SD.fixit_end();
2458          I != E; ++I) {
2459       FixIts.push_back(FixItHint());
2460       FixItHint &FH = FixIts.back();
2461       FH.CodeToInsert = I->CodeToInsert;
2462       SourceLocation BL = I->RemoveRange.getBegin();
2463       TranslateSLoc(BL, Remap);
2464       SourceLocation EL = I->RemoveRange.getEnd();
2465       TranslateSLoc(EL, Remap);
2466       FH.RemoveRange = CharSourceRange(SourceRange(BL, EL),
2467                                        I->RemoveRange.isTokenRange());
2468     }
2469 
2470     Result.push_back(StoredDiagnostic(SD.getLevel(), SD.getID(),
2471                                       SD.getMessage(), Loc, Ranges, FixIts));
2472   }
2473   Result.swap(Out);
2474 }
2475 
2476 static inline bool compLocDecl(std::pair<unsigned, Decl *> L,
2477                                std::pair<unsigned, Decl *> R) {
2478   return L.first < R.first;
2479 }
2480 
2481 void ASTUnit::addFileLevelDecl(Decl *D) {
2482   assert(D);
2483 
2484   // We only care about local declarations.
2485   if (D->isFromASTFile())
2486     return;
2487 
2488   SourceManager &SM = *SourceMgr;
2489   SourceLocation Loc = D->getLocation();
2490   if (Loc.isInvalid() || !SM.isLocalSourceLocation(Loc))
2491     return;
2492 
2493   // We only keep track of the file-level declarations of each file.
2494   if (!D->getLexicalDeclContext()->isFileContext())
2495     return;
2496 
2497   SourceLocation FileLoc = SM.getFileLoc(Loc);
2498   assert(SM.isLocalSourceLocation(FileLoc));
2499   FileID FID;
2500   unsigned Offset;
2501   llvm::tie(FID, Offset) = SM.getDecomposedLoc(FileLoc);
2502   if (FID.isInvalid())
2503     return;
2504 
2505   LocDeclsTy *&Decls = FileDecls[FID];
2506   if (!Decls)
2507     Decls = new LocDeclsTy();
2508 
2509   std::pair<unsigned, Decl *> LocDecl(Offset, D);
2510 
2511   if (Decls->empty() || Decls->back().first <= Offset) {
2512     Decls->push_back(LocDecl);
2513     return;
2514   }
2515 
2516   LocDeclsTy::iterator
2517     I = std::upper_bound(Decls->begin(), Decls->end(), LocDecl, compLocDecl);
2518 
2519   Decls->insert(I, LocDecl);
2520 }
2521 
2522 void ASTUnit::findFileRegionDecls(FileID File, unsigned Offset, unsigned Length,
2523                                   SmallVectorImpl<Decl *> &Decls) {
2524   if (File.isInvalid())
2525     return;
2526 
2527   if (SourceMgr->isLoadedFileID(File)) {
2528     assert(Ctx->getExternalSource() && "No external source!");
2529     return Ctx->getExternalSource()->FindFileRegionDecls(File, Offset, Length,
2530                                                          Decls);
2531   }
2532 
2533   FileDeclsTy::iterator I = FileDecls.find(File);
2534   if (I == FileDecls.end())
2535     return;
2536 
2537   LocDeclsTy &LocDecls = *I->second;
2538   if (LocDecls.empty())
2539     return;
2540 
2541   LocDeclsTy::iterator
2542     BeginIt = std::lower_bound(LocDecls.begin(), LocDecls.end(),
2543                                std::make_pair(Offset, (Decl*)0), compLocDecl);
2544   if (BeginIt != LocDecls.begin())
2545     --BeginIt;
2546 
2547   LocDeclsTy::iterator
2548     EndIt = std::upper_bound(LocDecls.begin(), LocDecls.end(),
2549                              std::make_pair(Offset+Length, (Decl*)0),
2550                              compLocDecl);
2551   if (EndIt != LocDecls.end())
2552     ++EndIt;
2553 
2554   for (LocDeclsTy::iterator DIt = BeginIt; DIt != EndIt; ++DIt)
2555     Decls.push_back(DIt->second);
2556 }
2557 
2558 SourceLocation ASTUnit::getLocation(const FileEntry *File,
2559                                     unsigned Line, unsigned Col) const {
2560   const SourceManager &SM = getSourceManager();
2561   SourceLocation Loc = SM.translateFileLineCol(File, Line, Col);
2562   return SM.getMacroArgExpandedLocation(Loc);
2563 }
2564 
2565 SourceLocation ASTUnit::getLocation(const FileEntry *File,
2566                                     unsigned Offset) const {
2567   const SourceManager &SM = getSourceManager();
2568   SourceLocation FileLoc = SM.translateFileLineCol(File, 1, 1);
2569   return SM.getMacroArgExpandedLocation(FileLoc.getLocWithOffset(Offset));
2570 }
2571 
2572 /// \brief If \arg Loc is a loaded location from the preamble, returns
2573 /// the corresponding local location of the main file, otherwise it returns
2574 /// \arg Loc.
2575 SourceLocation ASTUnit::mapLocationFromPreamble(SourceLocation Loc) {
2576   FileID PreambleID;
2577   if (SourceMgr)
2578     PreambleID = SourceMgr->getPreambleFileID();
2579 
2580   if (Loc.isInvalid() || Preamble.empty() || PreambleID.isInvalid())
2581     return Loc;
2582 
2583   unsigned Offs;
2584   if (SourceMgr->isInFileID(Loc, PreambleID, &Offs) && Offs < Preamble.size()) {
2585     SourceLocation FileLoc
2586         = SourceMgr->getLocForStartOfFile(SourceMgr->getMainFileID());
2587     return FileLoc.getLocWithOffset(Offs);
2588   }
2589 
2590   return Loc;
2591 }
2592 
2593 /// \brief If \arg Loc is a local location of the main file but inside the
2594 /// preamble chunk, returns the corresponding loaded location from the
2595 /// preamble, otherwise it returns \arg Loc.
2596 SourceLocation ASTUnit::mapLocationToPreamble(SourceLocation Loc) {
2597   FileID PreambleID;
2598   if (SourceMgr)
2599     PreambleID = SourceMgr->getPreambleFileID();
2600 
2601   if (Loc.isInvalid() || Preamble.empty() || PreambleID.isInvalid())
2602     return Loc;
2603 
2604   unsigned Offs;
2605   if (SourceMgr->isInFileID(Loc, SourceMgr->getMainFileID(), &Offs) &&
2606       Offs < Preamble.size()) {
2607     SourceLocation FileLoc = SourceMgr->getLocForStartOfFile(PreambleID);
2608     return FileLoc.getLocWithOffset(Offs);
2609   }
2610 
2611   return Loc;
2612 }
2613 
2614 bool ASTUnit::isInPreambleFileID(SourceLocation Loc) {
2615   FileID FID;
2616   if (SourceMgr)
2617     FID = SourceMgr->getPreambleFileID();
2618 
2619   if (Loc.isInvalid() || FID.isInvalid())
2620     return false;
2621 
2622   return SourceMgr->isInFileID(Loc, FID);
2623 }
2624 
2625 bool ASTUnit::isInMainFileID(SourceLocation Loc) {
2626   FileID FID;
2627   if (SourceMgr)
2628     FID = SourceMgr->getMainFileID();
2629 
2630   if (Loc.isInvalid() || FID.isInvalid())
2631     return false;
2632 
2633   return SourceMgr->isInFileID(Loc, FID);
2634 }
2635 
2636 SourceLocation ASTUnit::getEndOfPreambleFileID() {
2637   FileID FID;
2638   if (SourceMgr)
2639     FID = SourceMgr->getPreambleFileID();
2640 
2641   if (FID.isInvalid())
2642     return SourceLocation();
2643 
2644   return SourceMgr->getLocForEndOfFile(FID);
2645 }
2646 
2647 SourceLocation ASTUnit::getStartOfMainFileID() {
2648   FileID FID;
2649   if (SourceMgr)
2650     FID = SourceMgr->getMainFileID();
2651 
2652   if (FID.isInvalid())
2653     return SourceLocation();
2654 
2655   return SourceMgr->getLocForStartOfFile(FID);
2656 }
2657 
2658 void ASTUnit::PreambleData::countLines() const {
2659   NumLines = 0;
2660   if (empty())
2661     return;
2662 
2663   for (std::vector<char>::const_iterator
2664          I = Buffer.begin(), E = Buffer.end(); I != E; ++I) {
2665     if (*I == '\n')
2666       ++NumLines;
2667   }
2668   if (Buffer.back() != '\n')
2669     ++NumLines;
2670 }
2671 
2672 #ifndef NDEBUG
2673 ASTUnit::ConcurrencyState::ConcurrencyState() {
2674   Mutex = new llvm::sys::MutexImpl(/*recursive=*/true);
2675 }
2676 
2677 ASTUnit::ConcurrencyState::~ConcurrencyState() {
2678   delete static_cast<llvm::sys::MutexImpl *>(Mutex);
2679 }
2680 
2681 void ASTUnit::ConcurrencyState::start() {
2682   bool acquired = static_cast<llvm::sys::MutexImpl *>(Mutex)->tryacquire();
2683   assert(acquired && "Concurrent access to ASTUnit!");
2684 }
2685 
2686 void ASTUnit::ConcurrencyState::finish() {
2687   static_cast<llvm::sys::MutexImpl *>(Mutex)->release();
2688 }
2689 
2690 #else // NDEBUG
2691 
2692 ASTUnit::ConcurrencyState::ConcurrencyState() {}
2693 ASTUnit::ConcurrencyState::~ConcurrencyState() {}
2694 void ASTUnit::ConcurrencyState::start() {}
2695 void ASTUnit::ConcurrencyState::finish() {}
2696 
2697 #endif
2698