1 //===--- ASTReaderDecl.cpp - Decl Deserialization ---------------*- C++ -*-===//
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 // This file implements the ASTReader::ReadDeclRecord method, which is the
11 // entrypoint for loading a decl.
12 //
13 //===----------------------------------------------------------------------===//
14 
15 #include "ASTCommon.h"
16 #include "ASTReaderInternals.h"
17 #include "clang/Serialization/ASTReader.h"
18 #include "clang/Sema/IdentifierResolver.h"
19 #include "clang/Sema/Sema.h"
20 #include "clang/Sema/SemaDiagnostic.h"
21 #include "clang/AST/ASTConsumer.h"
22 #include "clang/AST/ASTContext.h"
23 #include "clang/AST/DeclVisitor.h"
24 #include "clang/AST/DeclGroup.h"
25 #include "clang/AST/DeclCXX.h"
26 #include "clang/AST/DeclTemplate.h"
27 #include "clang/AST/Expr.h"
28 #include "llvm/Support/SaveAndRestore.h"
29 using namespace clang;
30 using namespace clang::serialization;
31 
32 //===----------------------------------------------------------------------===//
33 // Declaration deserialization
34 //===----------------------------------------------------------------------===//
35 
36 namespace clang {
37   class ASTDeclReader : public DeclVisitor<ASTDeclReader, void> {
38     ASTReader &Reader;
39     ModuleFile &F;
40     const DeclID ThisDeclID;
41     const unsigned RawLocation;
42     typedef ASTReader::RecordData RecordData;
43     const RecordData &Record;
44     unsigned &Idx;
45     TypeID TypeIDForTypeDecl;
46 
47     DeclID DeclContextIDForTemplateParmDecl;
48     DeclID LexicalDeclContextIDForTemplateParmDecl;
49 
50     uint64_t GetCurrentCursorOffset();
51 
52     SourceLocation ReadSourceLocation(const RecordData &R, unsigned &I) {
53       return Reader.ReadSourceLocation(F, R, I);
54     }
55 
56     SourceRange ReadSourceRange(const RecordData &R, unsigned &I) {
57       return Reader.ReadSourceRange(F, R, I);
58     }
59 
60     TypeSourceInfo *GetTypeSourceInfo(const RecordData &R, unsigned &I) {
61       return Reader.GetTypeSourceInfo(F, R, I);
62     }
63 
64     serialization::DeclID ReadDeclID(const RecordData &R, unsigned &I) {
65       return Reader.ReadDeclID(F, R, I);
66     }
67 
68     Decl *ReadDecl(const RecordData &R, unsigned &I) {
69       return Reader.ReadDecl(F, R, I);
70     }
71 
72     template<typename T>
73     T *ReadDeclAs(const RecordData &R, unsigned &I) {
74       return Reader.ReadDeclAs<T>(F, R, I);
75     }
76 
77     void ReadQualifierInfo(QualifierInfo &Info,
78                            const RecordData &R, unsigned &I) {
79       Reader.ReadQualifierInfo(F, Info, R, I);
80     }
81 
82     void ReadDeclarationNameLoc(DeclarationNameLoc &DNLoc, DeclarationName Name,
83                                 const RecordData &R, unsigned &I) {
84       Reader.ReadDeclarationNameLoc(F, DNLoc, Name, R, I);
85     }
86 
87     void ReadDeclarationNameInfo(DeclarationNameInfo &NameInfo,
88                                 const RecordData &R, unsigned &I) {
89       Reader.ReadDeclarationNameInfo(F, NameInfo, R, I);
90     }
91 
92     serialization::SubmoduleID readSubmoduleID(const RecordData &R,
93                                                unsigned &I) {
94       if (I >= R.size())
95         return 0;
96 
97       return Reader.getGlobalSubmoduleID(F, R[I++]);
98     }
99 
100     Module *readModule(const RecordData &R, unsigned &I) {
101       return Reader.getSubmodule(readSubmoduleID(R, I));
102     }
103 
104     void ReadCXXDefinitionData(struct CXXRecordDecl::DefinitionData &Data,
105                                const RecordData &R, unsigned &I);
106 
107     /// \brief RAII class used to capture the first ID within a redeclaration
108     /// chain and to introduce it into the list of pending redeclaration chains
109     /// on destruction.
110     ///
111     /// The caller can choose not to introduce this ID into the redeclaration
112     /// chain by calling \c suppress().
113     class RedeclarableResult {
114       ASTReader &Reader;
115       GlobalDeclID FirstID;
116       mutable bool Owning;
117 
118       void operator=(RedeclarableResult &) LLVM_DELETED_FUNCTION;
119 
120     public:
121       RedeclarableResult(ASTReader &Reader, GlobalDeclID FirstID)
122         : Reader(Reader), FirstID(FirstID), Owning(true) { }
123 
124       RedeclarableResult(const RedeclarableResult &Other)
125         : Reader(Other.Reader), FirstID(Other.FirstID), Owning(Other.Owning)
126       {
127         Other.Owning = false;
128       }
129 
130       ~RedeclarableResult() {
131         // FIXME: We want to suppress this when the declaration is local to
132         // a function, since there's no reason to search other AST files
133         // for redeclarations (they can't exist). However, this is hard to
134         // do locally because the declaration hasn't necessarily loaded its
135         // declaration context yet. Also, local externs still have the function
136         // as their (semantic) declaration context, which is wrong and would
137         // break this optimize.
138 
139         if (FirstID && Owning && Reader.PendingDeclChainsKnown.insert(FirstID))
140           Reader.PendingDeclChains.push_back(FirstID);
141       }
142 
143       /// \brief Retrieve the first ID.
144       GlobalDeclID getFirstID() const { return FirstID; }
145 
146       /// \brief Do not introduce this declaration ID into the set of pending
147       /// declaration chains.
148       void suppress() {
149         Owning = false;
150       }
151     };
152 
153     /// \brief Class used to capture the result of searching for an existing
154     /// declaration of a specific kind and name, along with the ability
155     /// to update the place where this result was found (the declaration
156     /// chain hanging off an identifier or the DeclContext we searched in)
157     /// if requested.
158     class FindExistingResult {
159       ASTReader &Reader;
160       NamedDecl *New;
161       NamedDecl *Existing;
162       mutable bool AddResult;
163 
164       void operator=(FindExistingResult&) LLVM_DELETED_FUNCTION;
165 
166     public:
167       FindExistingResult(ASTReader &Reader)
168         : Reader(Reader), New(0), Existing(0), AddResult(false) { }
169 
170       FindExistingResult(ASTReader &Reader, NamedDecl *New, NamedDecl *Existing)
171         : Reader(Reader), New(New), Existing(Existing), AddResult(true) { }
172 
173       FindExistingResult(const FindExistingResult &Other)
174         : Reader(Other.Reader), New(Other.New), Existing(Other.Existing),
175           AddResult(Other.AddResult)
176       {
177         Other.AddResult = false;
178       }
179 
180       ~FindExistingResult();
181 
182       /// \brief Suppress the addition of this result into the known set of
183       /// names.
184       void suppress() { AddResult = false; }
185 
186       operator NamedDecl*() const { return Existing; }
187 
188       template<typename T>
189       operator T*() const { return dyn_cast_or_null<T>(Existing); }
190     };
191 
192     FindExistingResult findExisting(NamedDecl *D);
193 
194   public:
195     ASTDeclReader(ASTReader &Reader, ModuleFile &F,
196                   DeclID thisDeclID,
197                   unsigned RawLocation,
198                   const RecordData &Record, unsigned &Idx)
199       : Reader(Reader), F(F), ThisDeclID(thisDeclID),
200         RawLocation(RawLocation), Record(Record), Idx(Idx),
201         TypeIDForTypeDecl(0) { }
202 
203     static void attachPreviousDecl(Decl *D, Decl *previous);
204     static void attachLatestDecl(Decl *D, Decl *latest);
205 
206     void Visit(Decl *D);
207 
208     void UpdateDecl(Decl *D, ModuleFile &ModuleFile,
209                     const RecordData &Record);
210 
211     static void setNextObjCCategory(ObjCCategoryDecl *Cat,
212                                     ObjCCategoryDecl *Next) {
213       Cat->NextClassCategory = Next;
214     }
215 
216     void VisitDecl(Decl *D);
217     void VisitTranslationUnitDecl(TranslationUnitDecl *TU);
218     void VisitNamedDecl(NamedDecl *ND);
219     void VisitLabelDecl(LabelDecl *LD);
220     void VisitNamespaceDecl(NamespaceDecl *D);
221     void VisitUsingDirectiveDecl(UsingDirectiveDecl *D);
222     void VisitNamespaceAliasDecl(NamespaceAliasDecl *D);
223     void VisitTypeDecl(TypeDecl *TD);
224     void VisitTypedefNameDecl(TypedefNameDecl *TD);
225     void VisitTypedefDecl(TypedefDecl *TD);
226     void VisitTypeAliasDecl(TypeAliasDecl *TD);
227     void VisitUnresolvedUsingTypenameDecl(UnresolvedUsingTypenameDecl *D);
228     void VisitTagDecl(TagDecl *TD);
229     void VisitEnumDecl(EnumDecl *ED);
230     void VisitRecordDecl(RecordDecl *RD);
231     void VisitCXXRecordDecl(CXXRecordDecl *D);
232     void VisitClassTemplateSpecializationDecl(
233                                             ClassTemplateSpecializationDecl *D);
234     void VisitClassTemplatePartialSpecializationDecl(
235                                      ClassTemplatePartialSpecializationDecl *D);
236     void VisitClassScopeFunctionSpecializationDecl(
237                                        ClassScopeFunctionSpecializationDecl *D);
238     void VisitTemplateTypeParmDecl(TemplateTypeParmDecl *D);
239     void VisitValueDecl(ValueDecl *VD);
240     void VisitEnumConstantDecl(EnumConstantDecl *ECD);
241     void VisitUnresolvedUsingValueDecl(UnresolvedUsingValueDecl *D);
242     void VisitDeclaratorDecl(DeclaratorDecl *DD);
243     void VisitFunctionDecl(FunctionDecl *FD);
244     void VisitCXXMethodDecl(CXXMethodDecl *D);
245     void VisitCXXConstructorDecl(CXXConstructorDecl *D);
246     void VisitCXXDestructorDecl(CXXDestructorDecl *D);
247     void VisitCXXConversionDecl(CXXConversionDecl *D);
248     void VisitFieldDecl(FieldDecl *FD);
249     void VisitIndirectFieldDecl(IndirectFieldDecl *FD);
250     void VisitVarDecl(VarDecl *VD);
251     void VisitImplicitParamDecl(ImplicitParamDecl *PD);
252     void VisitParmVarDecl(ParmVarDecl *PD);
253     void VisitNonTypeTemplateParmDecl(NonTypeTemplateParmDecl *D);
254     void VisitTemplateDecl(TemplateDecl *D);
255     RedeclarableResult VisitRedeclarableTemplateDecl(RedeclarableTemplateDecl *D);
256     void VisitClassTemplateDecl(ClassTemplateDecl *D);
257     void VisitFunctionTemplateDecl(FunctionTemplateDecl *D);
258     void VisitTemplateTemplateParmDecl(TemplateTemplateParmDecl *D);
259     void VisitTypeAliasTemplateDecl(TypeAliasTemplateDecl *D);
260     void VisitUsingDecl(UsingDecl *D);
261     void VisitUsingShadowDecl(UsingShadowDecl *D);
262     void VisitLinkageSpecDecl(LinkageSpecDecl *D);
263     void VisitFileScopeAsmDecl(FileScopeAsmDecl *AD);
264     void VisitImportDecl(ImportDecl *D);
265     void VisitAccessSpecDecl(AccessSpecDecl *D);
266     void VisitFriendDecl(FriendDecl *D);
267     void VisitFriendTemplateDecl(FriendTemplateDecl *D);
268     void VisitStaticAssertDecl(StaticAssertDecl *D);
269     void VisitBlockDecl(BlockDecl *BD);
270 
271     std::pair<uint64_t, uint64_t> VisitDeclContext(DeclContext *DC);
272 
273     template<typename T>
274     RedeclarableResult VisitRedeclarable(Redeclarable<T> *D);
275 
276     template<typename T>
277     void mergeRedeclarable(Redeclarable<T> *D, RedeclarableResult &Redecl);
278 
279     // FIXME: Reorder according to DeclNodes.td?
280     void VisitObjCMethodDecl(ObjCMethodDecl *D);
281     void VisitObjCContainerDecl(ObjCContainerDecl *D);
282     void VisitObjCInterfaceDecl(ObjCInterfaceDecl *D);
283     void VisitObjCIvarDecl(ObjCIvarDecl *D);
284     void VisitObjCProtocolDecl(ObjCProtocolDecl *D);
285     void VisitObjCAtDefsFieldDecl(ObjCAtDefsFieldDecl *D);
286     void VisitObjCCategoryDecl(ObjCCategoryDecl *D);
287     void VisitObjCImplDecl(ObjCImplDecl *D);
288     void VisitObjCCategoryImplDecl(ObjCCategoryImplDecl *D);
289     void VisitObjCImplementationDecl(ObjCImplementationDecl *D);
290     void VisitObjCCompatibleAliasDecl(ObjCCompatibleAliasDecl *D);
291     void VisitObjCPropertyDecl(ObjCPropertyDecl *D);
292     void VisitObjCPropertyImplDecl(ObjCPropertyImplDecl *D);
293   };
294 }
295 
296 uint64_t ASTDeclReader::GetCurrentCursorOffset() {
297   return F.DeclsCursor.GetCurrentBitNo() + F.GlobalBitOffset;
298 }
299 
300 void ASTDeclReader::Visit(Decl *D) {
301   DeclVisitor<ASTDeclReader, void>::Visit(D);
302 
303   if (DeclaratorDecl *DD = dyn_cast<DeclaratorDecl>(D)) {
304     if (DD->DeclInfo) {
305       DeclaratorDecl::ExtInfo *Info =
306           DD->DeclInfo.get<DeclaratorDecl::ExtInfo *>();
307       Info->TInfo =
308           GetTypeSourceInfo(Record, Idx);
309     }
310     else {
311       DD->DeclInfo = GetTypeSourceInfo(Record, Idx);
312     }
313   }
314 
315   if (TypeDecl *TD = dyn_cast<TypeDecl>(D)) {
316     // if we have a fully initialized TypeDecl, we can safely read its type now.
317     TD->setTypeForDecl(Reader.GetType(TypeIDForTypeDecl).getTypePtrOrNull());
318   } else if (ObjCInterfaceDecl *ID = dyn_cast<ObjCInterfaceDecl>(D)) {
319     // if we have a fully initialized TypeDecl, we can safely read its type now.
320     ID->TypeForDecl = Reader.GetType(TypeIDForTypeDecl).getTypePtrOrNull();
321   } else if (FunctionDecl *FD = dyn_cast<FunctionDecl>(D)) {
322     // FunctionDecl's body was written last after all other Stmts/Exprs.
323     if (Record[Idx++])
324       FD->setLazyBody(GetCurrentCursorOffset());
325   } else if (D->isTemplateParameter()) {
326     // If we have a fully initialized template parameter, we can now
327     // set its DeclContext.
328     DeclContext *SemaDC = cast<DeclContext>(
329                               Reader.GetDecl(DeclContextIDForTemplateParmDecl));
330     DeclContext *LexicalDC = cast<DeclContext>(
331                        Reader.GetDecl(LexicalDeclContextIDForTemplateParmDecl));
332     D->setDeclContextsImpl(SemaDC, LexicalDC, Reader.getContext());
333   }
334 }
335 
336 void ASTDeclReader::VisitDecl(Decl *D) {
337   if (D->isTemplateParameter()) {
338     // We don't want to deserialize the DeclContext of a template
339     // parameter immediately, because the template parameter might be
340     // used in the formulation of its DeclContext. Use the translation
341     // unit DeclContext as a placeholder.
342     DeclContextIDForTemplateParmDecl = ReadDeclID(Record, Idx);
343     LexicalDeclContextIDForTemplateParmDecl = ReadDeclID(Record, Idx);
344     D->setDeclContext(Reader.getContext().getTranslationUnitDecl());
345   } else {
346     DeclContext *SemaDC = ReadDeclAs<DeclContext>(Record, Idx);
347     DeclContext *LexicalDC = ReadDeclAs<DeclContext>(Record, Idx);
348     // Avoid calling setLexicalDeclContext() directly because it uses
349     // Decl::getASTContext() internally which is unsafe during derialization.
350     D->setDeclContextsImpl(SemaDC, LexicalDC, Reader.getContext());
351   }
352   D->setLocation(Reader.ReadSourceLocation(F, RawLocation));
353   D->setInvalidDecl(Record[Idx++]);
354   if (Record[Idx++]) { // hasAttrs
355     AttrVec Attrs;
356     Reader.ReadAttributes(F, Attrs, Record, Idx);
357     // Avoid calling setAttrs() directly because it uses Decl::getASTContext()
358     // internally which is unsafe during derialization.
359     D->setAttrsImpl(Attrs, Reader.getContext());
360   }
361   D->setImplicit(Record[Idx++]);
362   D->setUsed(Record[Idx++]);
363   D->setReferenced(Record[Idx++]);
364   D->setTopLevelDeclInObjCContainer(Record[Idx++]);
365   D->setAccess((AccessSpecifier)Record[Idx++]);
366   D->FromASTFile = true;
367   D->setModulePrivate(Record[Idx++]);
368   D->Hidden = D->isModulePrivate();
369 
370   // Determine whether this declaration is part of a (sub)module. If so, it
371   // may not yet be visible.
372   if (unsigned SubmoduleID = readSubmoduleID(Record, Idx)) {
373     // Store the owning submodule ID in the declaration.
374     D->setOwningModuleID(SubmoduleID);
375 
376     // Module-private declarations are never visible, so there is no work to do.
377     if (!D->isModulePrivate()) {
378       if (Module *Owner = Reader.getSubmodule(SubmoduleID)) {
379         if (Owner->NameVisibility != Module::AllVisible) {
380           // The owning module is not visible. Mark this declaration as hidden.
381           D->Hidden = true;
382 
383           // Note that this declaration was hidden because its owning module is
384           // not yet visible.
385           Reader.HiddenNamesMap[Owner].push_back(D);
386         }
387       }
388     }
389   }
390 }
391 
392 void ASTDeclReader::VisitTranslationUnitDecl(TranslationUnitDecl *TU) {
393   llvm_unreachable("Translation units are not serialized");
394 }
395 
396 void ASTDeclReader::VisitNamedDecl(NamedDecl *ND) {
397   VisitDecl(ND);
398   ND->setDeclName(Reader.ReadDeclarationName(F, Record, Idx));
399 }
400 
401 void ASTDeclReader::VisitTypeDecl(TypeDecl *TD) {
402   VisitNamedDecl(TD);
403   TD->setLocStart(ReadSourceLocation(Record, Idx));
404   // Delay type reading until after we have fully initialized the decl.
405   TypeIDForTypeDecl = Reader.getGlobalTypeID(F, Record[Idx++]);
406 }
407 
408 void ASTDeclReader::VisitTypedefNameDecl(TypedefNameDecl *TD) {
409   RedeclarableResult Redecl = VisitRedeclarable(TD);
410   VisitTypeDecl(TD);
411 
412   TD->setTypeSourceInfo(GetTypeSourceInfo(Record, Idx));
413   mergeRedeclarable(TD, Redecl);
414 }
415 
416 void ASTDeclReader::VisitTypedefDecl(TypedefDecl *TD) {
417   VisitTypedefNameDecl(TD);
418 }
419 
420 void ASTDeclReader::VisitTypeAliasDecl(TypeAliasDecl *TD) {
421   VisitTypedefNameDecl(TD);
422 }
423 
424 void ASTDeclReader::VisitTagDecl(TagDecl *TD) {
425   RedeclarableResult Redecl = VisitRedeclarable(TD);
426   VisitTypeDecl(TD);
427 
428   TD->IdentifierNamespace = Record[Idx++];
429   TD->setTagKind((TagDecl::TagKind)Record[Idx++]);
430   TD->setCompleteDefinition(Record[Idx++]);
431   TD->setEmbeddedInDeclarator(Record[Idx++]);
432   TD->setFreeStanding(Record[Idx++]);
433   TD->setRBraceLoc(ReadSourceLocation(Record, Idx));
434 
435   if (Record[Idx++]) { // hasExtInfo
436     TagDecl::ExtInfo *Info = new (Reader.getContext()) TagDecl::ExtInfo();
437     ReadQualifierInfo(*Info, Record, Idx);
438     TD->TypedefNameDeclOrQualifier = Info;
439   } else
440     TD->setTypedefNameForAnonDecl(ReadDeclAs<TypedefNameDecl>(Record, Idx));
441 
442   mergeRedeclarable(TD, Redecl);
443 }
444 
445 void ASTDeclReader::VisitEnumDecl(EnumDecl *ED) {
446   VisitTagDecl(ED);
447   if (TypeSourceInfo *TI = Reader.GetTypeSourceInfo(F, Record, Idx))
448     ED->setIntegerTypeSourceInfo(TI);
449   else
450     ED->setIntegerType(Reader.readType(F, Record, Idx));
451   ED->setPromotionType(Reader.readType(F, Record, Idx));
452   ED->setNumPositiveBits(Record[Idx++]);
453   ED->setNumNegativeBits(Record[Idx++]);
454   ED->IsScoped = Record[Idx++];
455   ED->IsScopedUsingClassTag = Record[Idx++];
456   ED->IsFixed = Record[Idx++];
457 
458   if (EnumDecl *InstED = ReadDeclAs<EnumDecl>(Record, Idx)) {
459     TemplateSpecializationKind TSK = (TemplateSpecializationKind)Record[Idx++];
460     SourceLocation POI = ReadSourceLocation(Record, Idx);
461     ED->setInstantiationOfMemberEnum(Reader.getContext(), InstED, TSK);
462     ED->getMemberSpecializationInfo()->setPointOfInstantiation(POI);
463   }
464 }
465 
466 void ASTDeclReader::VisitRecordDecl(RecordDecl *RD) {
467   VisitTagDecl(RD);
468   RD->setHasFlexibleArrayMember(Record[Idx++]);
469   RD->setAnonymousStructOrUnion(Record[Idx++]);
470   RD->setHasObjectMember(Record[Idx++]);
471 }
472 
473 void ASTDeclReader::VisitValueDecl(ValueDecl *VD) {
474   VisitNamedDecl(VD);
475   VD->setType(Reader.readType(F, Record, Idx));
476 }
477 
478 void ASTDeclReader::VisitEnumConstantDecl(EnumConstantDecl *ECD) {
479   VisitValueDecl(ECD);
480   if (Record[Idx++])
481     ECD->setInitExpr(Reader.ReadExpr(F));
482   ECD->setInitVal(Reader.ReadAPSInt(Record, Idx));
483 }
484 
485 void ASTDeclReader::VisitDeclaratorDecl(DeclaratorDecl *DD) {
486   VisitValueDecl(DD);
487   DD->setInnerLocStart(ReadSourceLocation(Record, Idx));
488   if (Record[Idx++]) { // hasExtInfo
489     DeclaratorDecl::ExtInfo *Info
490         = new (Reader.getContext()) DeclaratorDecl::ExtInfo();
491     ReadQualifierInfo(*Info, Record, Idx);
492     DD->DeclInfo = Info;
493   }
494 }
495 
496 void ASTDeclReader::VisitFunctionDecl(FunctionDecl *FD) {
497   RedeclarableResult Redecl = VisitRedeclarable(FD);
498   VisitDeclaratorDecl(FD);
499 
500   ReadDeclarationNameLoc(FD->DNLoc, FD->getDeclName(), Record, Idx);
501   FD->IdentifierNamespace = Record[Idx++];
502 
503   // FunctionDecl's body is handled last at ASTDeclReader::Visit,
504   // after everything else is read.
505 
506   FD->SClass = (StorageClass)Record[Idx++];
507   FD->SClassAsWritten = (StorageClass)Record[Idx++];
508   FD->IsInline = Record[Idx++];
509   FD->IsInlineSpecified = Record[Idx++];
510   FD->IsVirtualAsWritten = Record[Idx++];
511   FD->IsPure = Record[Idx++];
512   FD->HasInheritedPrototype = Record[Idx++];
513   FD->HasWrittenPrototype = Record[Idx++];
514   FD->IsDeleted = Record[Idx++];
515   FD->IsTrivial = Record[Idx++];
516   FD->IsDefaulted = Record[Idx++];
517   FD->IsExplicitlyDefaulted = Record[Idx++];
518   FD->HasImplicitReturnZero = Record[Idx++];
519   FD->IsConstexpr = Record[Idx++];
520   FD->EndRangeLoc = ReadSourceLocation(Record, Idx);
521 
522   switch ((FunctionDecl::TemplatedKind)Record[Idx++]) {
523   case FunctionDecl::TK_NonTemplate:
524     mergeRedeclarable(FD, Redecl);
525     break;
526   case FunctionDecl::TK_FunctionTemplate:
527     FD->setDescribedFunctionTemplate(ReadDeclAs<FunctionTemplateDecl>(Record,
528                                                                       Idx));
529     break;
530   case FunctionDecl::TK_MemberSpecialization: {
531     FunctionDecl *InstFD = ReadDeclAs<FunctionDecl>(Record, Idx);
532     TemplateSpecializationKind TSK = (TemplateSpecializationKind)Record[Idx++];
533     SourceLocation POI = ReadSourceLocation(Record, Idx);
534     FD->setInstantiationOfMemberFunction(Reader.getContext(), InstFD, TSK);
535     FD->getMemberSpecializationInfo()->setPointOfInstantiation(POI);
536     break;
537   }
538   case FunctionDecl::TK_FunctionTemplateSpecialization: {
539     FunctionTemplateDecl *Template = ReadDeclAs<FunctionTemplateDecl>(Record,
540                                                                       Idx);
541     TemplateSpecializationKind TSK = (TemplateSpecializationKind)Record[Idx++];
542 
543     // Template arguments.
544     SmallVector<TemplateArgument, 8> TemplArgs;
545     Reader.ReadTemplateArgumentList(TemplArgs, F, Record, Idx);
546 
547     // Template args as written.
548     SmallVector<TemplateArgumentLoc, 8> TemplArgLocs;
549     SourceLocation LAngleLoc, RAngleLoc;
550     bool HasTemplateArgumentsAsWritten = Record[Idx++];
551     if (HasTemplateArgumentsAsWritten) {
552       unsigned NumTemplateArgLocs = Record[Idx++];
553       TemplArgLocs.reserve(NumTemplateArgLocs);
554       for (unsigned i=0; i != NumTemplateArgLocs; ++i)
555         TemplArgLocs.push_back(
556             Reader.ReadTemplateArgumentLoc(F, Record, Idx));
557 
558       LAngleLoc = ReadSourceLocation(Record, Idx);
559       RAngleLoc = ReadSourceLocation(Record, Idx);
560     }
561 
562     SourceLocation POI = ReadSourceLocation(Record, Idx);
563 
564     ASTContext &C = Reader.getContext();
565     TemplateArgumentList *TemplArgList
566       = TemplateArgumentList::CreateCopy(C, TemplArgs.data(), TemplArgs.size());
567     TemplateArgumentListInfo TemplArgsInfo(LAngleLoc, RAngleLoc);
568     for (unsigned i=0, e = TemplArgLocs.size(); i != e; ++i)
569       TemplArgsInfo.addArgument(TemplArgLocs[i]);
570     FunctionTemplateSpecializationInfo *FTInfo
571         = FunctionTemplateSpecializationInfo::Create(C, FD, Template, TSK,
572                                                      TemplArgList,
573                              HasTemplateArgumentsAsWritten ? &TemplArgsInfo : 0,
574                                                      POI);
575     FD->TemplateOrSpecialization = FTInfo;
576 
577     if (FD->isCanonicalDecl()) { // if canonical add to template's set.
578       // The template that contains the specializations set. It's not safe to
579       // use getCanonicalDecl on Template since it may still be initializing.
580       FunctionTemplateDecl *CanonTemplate
581         = ReadDeclAs<FunctionTemplateDecl>(Record, Idx);
582       // Get the InsertPos by FindNodeOrInsertPos() instead of calling
583       // InsertNode(FTInfo) directly to avoid the getASTContext() call in
584       // FunctionTemplateSpecializationInfo's Profile().
585       // We avoid getASTContext because a decl in the parent hierarchy may
586       // be initializing.
587       llvm::FoldingSetNodeID ID;
588       FunctionTemplateSpecializationInfo::Profile(ID, TemplArgs.data(),
589                                                   TemplArgs.size(), C);
590       void *InsertPos = 0;
591       CanonTemplate->getSpecializations().FindNodeOrInsertPos(ID, InsertPos);
592       if (InsertPos)
593         CanonTemplate->getSpecializations().InsertNode(FTInfo, InsertPos);
594       else
595         assert(0 && "Another specialization already inserted!");
596     }
597     break;
598   }
599   case FunctionDecl::TK_DependentFunctionTemplateSpecialization: {
600     // Templates.
601     UnresolvedSet<8> TemplDecls;
602     unsigned NumTemplates = Record[Idx++];
603     while (NumTemplates--)
604       TemplDecls.addDecl(ReadDeclAs<NamedDecl>(Record, Idx));
605 
606     // Templates args.
607     TemplateArgumentListInfo TemplArgs;
608     unsigned NumArgs = Record[Idx++];
609     while (NumArgs--)
610       TemplArgs.addArgument(Reader.ReadTemplateArgumentLoc(F, Record, Idx));
611     TemplArgs.setLAngleLoc(ReadSourceLocation(Record, Idx));
612     TemplArgs.setRAngleLoc(ReadSourceLocation(Record, Idx));
613 
614     FD->setDependentTemplateSpecialization(Reader.getContext(),
615                                            TemplDecls, TemplArgs);
616     break;
617   }
618   }
619 
620   // Read in the parameters.
621   unsigned NumParams = Record[Idx++];
622   SmallVector<ParmVarDecl *, 16> Params;
623   Params.reserve(NumParams);
624   for (unsigned I = 0; I != NumParams; ++I)
625     Params.push_back(ReadDeclAs<ParmVarDecl>(Record, Idx));
626   FD->setParams(Reader.getContext(), Params);
627 }
628 
629 void ASTDeclReader::VisitObjCMethodDecl(ObjCMethodDecl *MD) {
630   VisitNamedDecl(MD);
631   if (Record[Idx++]) {
632     // In practice, this won't be executed (since method definitions
633     // don't occur in header files).
634     // Switch case IDs for this method body.
635     ASTReader::SwitchCaseMapTy SwitchCaseStmtsForObjCMethod;
636     SaveAndRestore<ASTReader::SwitchCaseMapTy *>
637       SCFOM(Reader.CurrSwitchCaseStmts, &SwitchCaseStmtsForObjCMethod);
638     MD->setBody(Reader.ReadStmt(F));
639     MD->setSelfDecl(ReadDeclAs<ImplicitParamDecl>(Record, Idx));
640     MD->setCmdDecl(ReadDeclAs<ImplicitParamDecl>(Record, Idx));
641   }
642   MD->setInstanceMethod(Record[Idx++]);
643   MD->setVariadic(Record[Idx++]);
644   MD->setSynthesized(Record[Idx++]);
645   MD->setDefined(Record[Idx++]);
646   MD->IsOverriding = Record[Idx++];
647 
648   MD->IsRedeclaration = Record[Idx++];
649   MD->HasRedeclaration = Record[Idx++];
650   if (MD->HasRedeclaration)
651     Reader.getContext().setObjCMethodRedeclaration(MD,
652                                        ReadDeclAs<ObjCMethodDecl>(Record, Idx));
653 
654   MD->setDeclImplementation((ObjCMethodDecl::ImplementationControl)Record[Idx++]);
655   MD->setObjCDeclQualifier((Decl::ObjCDeclQualifier)Record[Idx++]);
656   MD->SetRelatedResultType(Record[Idx++]);
657   MD->setResultType(Reader.readType(F, Record, Idx));
658   MD->setResultTypeSourceInfo(GetTypeSourceInfo(Record, Idx));
659   MD->DeclEndLoc = ReadSourceLocation(Record, Idx);
660   unsigned NumParams = Record[Idx++];
661   SmallVector<ParmVarDecl *, 16> Params;
662   Params.reserve(NumParams);
663   for (unsigned I = 0; I != NumParams; ++I)
664     Params.push_back(ReadDeclAs<ParmVarDecl>(Record, Idx));
665 
666   MD->SelLocsKind = Record[Idx++];
667   unsigned NumStoredSelLocs = Record[Idx++];
668   SmallVector<SourceLocation, 16> SelLocs;
669   SelLocs.reserve(NumStoredSelLocs);
670   for (unsigned i = 0; i != NumStoredSelLocs; ++i)
671     SelLocs.push_back(ReadSourceLocation(Record, Idx));
672 
673   MD->setParamsAndSelLocs(Reader.getContext(), Params, SelLocs);
674 }
675 
676 void ASTDeclReader::VisitObjCContainerDecl(ObjCContainerDecl *CD) {
677   VisitNamedDecl(CD);
678   CD->setAtStartLoc(ReadSourceLocation(Record, Idx));
679   CD->setAtEndRange(ReadSourceRange(Record, Idx));
680 }
681 
682 void ASTDeclReader::VisitObjCInterfaceDecl(ObjCInterfaceDecl *ID) {
683   RedeclarableResult Redecl = VisitRedeclarable(ID);
684   VisitObjCContainerDecl(ID);
685   TypeIDForTypeDecl = Reader.getGlobalTypeID(F, Record[Idx++]);
686   mergeRedeclarable(ID, Redecl);
687 
688   if (Record[Idx++]) {
689     // Read the definition.
690     ID->allocateDefinitionData();
691 
692     // Set the definition data of the canonical declaration, so other
693     // redeclarations will see it.
694     ID->getCanonicalDecl()->Data = ID->Data;
695 
696     ObjCInterfaceDecl::DefinitionData &Data = ID->data();
697 
698     // Read the superclass.
699     Data.SuperClass = ReadDeclAs<ObjCInterfaceDecl>(Record, Idx);
700     Data.SuperClassLoc = ReadSourceLocation(Record, Idx);
701 
702     Data.EndLoc = ReadSourceLocation(Record, Idx);
703 
704     // Read the directly referenced protocols and their SourceLocations.
705     unsigned NumProtocols = Record[Idx++];
706     SmallVector<ObjCProtocolDecl *, 16> Protocols;
707     Protocols.reserve(NumProtocols);
708     for (unsigned I = 0; I != NumProtocols; ++I)
709       Protocols.push_back(ReadDeclAs<ObjCProtocolDecl>(Record, Idx));
710     SmallVector<SourceLocation, 16> ProtoLocs;
711     ProtoLocs.reserve(NumProtocols);
712     for (unsigned I = 0; I != NumProtocols; ++I)
713       ProtoLocs.push_back(ReadSourceLocation(Record, Idx));
714     ID->setProtocolList(Protocols.data(), NumProtocols, ProtoLocs.data(),
715                         Reader.getContext());
716 
717     // Read the transitive closure of protocols referenced by this class.
718     NumProtocols = Record[Idx++];
719     Protocols.clear();
720     Protocols.reserve(NumProtocols);
721     for (unsigned I = 0; I != NumProtocols; ++I)
722       Protocols.push_back(ReadDeclAs<ObjCProtocolDecl>(Record, Idx));
723     ID->data().AllReferencedProtocols.set(Protocols.data(), NumProtocols,
724                                           Reader.getContext());
725 
726     // We will rebuild this list lazily.
727     ID->setIvarList(0);
728 
729     // Note that we have deserialized a definition.
730     Reader.PendingDefinitions.insert(ID);
731 
732     // Note that we've loaded this Objective-C class.
733     Reader.ObjCClassesLoaded.push_back(ID);
734   } else {
735     ID->Data = ID->getCanonicalDecl()->Data;
736   }
737 }
738 
739 void ASTDeclReader::VisitObjCIvarDecl(ObjCIvarDecl *IVD) {
740   VisitFieldDecl(IVD);
741   IVD->setAccessControl((ObjCIvarDecl::AccessControl)Record[Idx++]);
742   // This field will be built lazily.
743   IVD->setNextIvar(0);
744   bool synth = Record[Idx++];
745   IVD->setSynthesize(synth);
746 }
747 
748 void ASTDeclReader::VisitObjCProtocolDecl(ObjCProtocolDecl *PD) {
749   RedeclarableResult Redecl = VisitRedeclarable(PD);
750   VisitObjCContainerDecl(PD);
751   mergeRedeclarable(PD, Redecl);
752 
753   if (Record[Idx++]) {
754     // Read the definition.
755     PD->allocateDefinitionData();
756 
757     // Set the definition data of the canonical declaration, so other
758     // redeclarations will see it.
759     PD->getCanonicalDecl()->Data = PD->Data;
760 
761     unsigned NumProtoRefs = Record[Idx++];
762     SmallVector<ObjCProtocolDecl *, 16> ProtoRefs;
763     ProtoRefs.reserve(NumProtoRefs);
764     for (unsigned I = 0; I != NumProtoRefs; ++I)
765       ProtoRefs.push_back(ReadDeclAs<ObjCProtocolDecl>(Record, Idx));
766     SmallVector<SourceLocation, 16> ProtoLocs;
767     ProtoLocs.reserve(NumProtoRefs);
768     for (unsigned I = 0; I != NumProtoRefs; ++I)
769       ProtoLocs.push_back(ReadSourceLocation(Record, Idx));
770     PD->setProtocolList(ProtoRefs.data(), NumProtoRefs, ProtoLocs.data(),
771                         Reader.getContext());
772 
773     // Note that we have deserialized a definition.
774     Reader.PendingDefinitions.insert(PD);
775   } else {
776     PD->Data = PD->getCanonicalDecl()->Data;
777   }
778 }
779 
780 void ASTDeclReader::VisitObjCAtDefsFieldDecl(ObjCAtDefsFieldDecl *FD) {
781   VisitFieldDecl(FD);
782 }
783 
784 void ASTDeclReader::VisitObjCCategoryDecl(ObjCCategoryDecl *CD) {
785   VisitObjCContainerDecl(CD);
786   CD->setCategoryNameLoc(ReadSourceLocation(Record, Idx));
787   CD->setIvarLBraceLoc(ReadSourceLocation(Record, Idx));
788   CD->setIvarRBraceLoc(ReadSourceLocation(Record, Idx));
789 
790   // Note that this category has been deserialized. We do this before
791   // deserializing the interface declaration, so that it will consider this
792   /// category.
793   Reader.CategoriesDeserialized.insert(CD);
794 
795   CD->ClassInterface = ReadDeclAs<ObjCInterfaceDecl>(Record, Idx);
796   unsigned NumProtoRefs = Record[Idx++];
797   SmallVector<ObjCProtocolDecl *, 16> ProtoRefs;
798   ProtoRefs.reserve(NumProtoRefs);
799   for (unsigned I = 0; I != NumProtoRefs; ++I)
800     ProtoRefs.push_back(ReadDeclAs<ObjCProtocolDecl>(Record, Idx));
801   SmallVector<SourceLocation, 16> ProtoLocs;
802   ProtoLocs.reserve(NumProtoRefs);
803   for (unsigned I = 0; I != NumProtoRefs; ++I)
804     ProtoLocs.push_back(ReadSourceLocation(Record, Idx));
805   CD->setProtocolList(ProtoRefs.data(), NumProtoRefs, ProtoLocs.data(),
806                       Reader.getContext());
807 }
808 
809 void ASTDeclReader::VisitObjCCompatibleAliasDecl(ObjCCompatibleAliasDecl *CAD) {
810   VisitNamedDecl(CAD);
811   CAD->setClassInterface(ReadDeclAs<ObjCInterfaceDecl>(Record, Idx));
812 }
813 
814 void ASTDeclReader::VisitObjCPropertyDecl(ObjCPropertyDecl *D) {
815   VisitNamedDecl(D);
816   D->setAtLoc(ReadSourceLocation(Record, Idx));
817   D->setLParenLoc(ReadSourceLocation(Record, Idx));
818   D->setType(GetTypeSourceInfo(Record, Idx));
819   // FIXME: stable encoding
820   D->setPropertyAttributes(
821                       (ObjCPropertyDecl::PropertyAttributeKind)Record[Idx++]);
822   D->setPropertyAttributesAsWritten(
823                       (ObjCPropertyDecl::PropertyAttributeKind)Record[Idx++]);
824   // FIXME: stable encoding
825   D->setPropertyImplementation(
826                             (ObjCPropertyDecl::PropertyControl)Record[Idx++]);
827   D->setGetterName(Reader.ReadDeclarationName(F,Record, Idx).getObjCSelector());
828   D->setSetterName(Reader.ReadDeclarationName(F,Record, Idx).getObjCSelector());
829   D->setGetterMethodDecl(ReadDeclAs<ObjCMethodDecl>(Record, Idx));
830   D->setSetterMethodDecl(ReadDeclAs<ObjCMethodDecl>(Record, Idx));
831   D->setPropertyIvarDecl(ReadDeclAs<ObjCIvarDecl>(Record, Idx));
832 }
833 
834 void ASTDeclReader::VisitObjCImplDecl(ObjCImplDecl *D) {
835   VisitObjCContainerDecl(D);
836   D->setClassInterface(ReadDeclAs<ObjCInterfaceDecl>(Record, Idx));
837 }
838 
839 void ASTDeclReader::VisitObjCCategoryImplDecl(ObjCCategoryImplDecl *D) {
840   VisitObjCImplDecl(D);
841   D->setIdentifier(Reader.GetIdentifierInfo(F, Record, Idx));
842   D->CategoryNameLoc = ReadSourceLocation(Record, Idx);
843 }
844 
845 void ASTDeclReader::VisitObjCImplementationDecl(ObjCImplementationDecl *D) {
846   VisitObjCImplDecl(D);
847   D->setSuperClass(ReadDeclAs<ObjCInterfaceDecl>(Record, Idx));
848   D->setIvarLBraceLoc(ReadSourceLocation(Record, Idx));
849   D->setIvarRBraceLoc(ReadSourceLocation(Record, Idx));
850   llvm::tie(D->IvarInitializers, D->NumIvarInitializers)
851       = Reader.ReadCXXCtorInitializers(F, Record, Idx);
852 }
853 
854 
855 void ASTDeclReader::VisitObjCPropertyImplDecl(ObjCPropertyImplDecl *D) {
856   VisitDecl(D);
857   D->setAtLoc(ReadSourceLocation(Record, Idx));
858   D->setPropertyDecl(ReadDeclAs<ObjCPropertyDecl>(Record, Idx));
859   D->PropertyIvarDecl = ReadDeclAs<ObjCIvarDecl>(Record, Idx);
860   D->IvarLoc = ReadSourceLocation(Record, Idx);
861   D->setGetterCXXConstructor(Reader.ReadExpr(F));
862   D->setSetterCXXAssignment(Reader.ReadExpr(F));
863 }
864 
865 void ASTDeclReader::VisitFieldDecl(FieldDecl *FD) {
866   VisitDeclaratorDecl(FD);
867   FD->Mutable = Record[Idx++];
868   if (int BitWidthOrInitializer = Record[Idx++]) {
869     FD->InitializerOrBitWidth.setInt(BitWidthOrInitializer - 1);
870     FD->InitializerOrBitWidth.setPointer(Reader.ReadExpr(F));
871   }
872   if (!FD->getDeclName()) {
873     if (FieldDecl *Tmpl = ReadDeclAs<FieldDecl>(Record, Idx))
874       Reader.getContext().setInstantiatedFromUnnamedFieldDecl(FD, Tmpl);
875   }
876 }
877 
878 void ASTDeclReader::VisitIndirectFieldDecl(IndirectFieldDecl *FD) {
879   VisitValueDecl(FD);
880 
881   FD->ChainingSize = Record[Idx++];
882   assert(FD->ChainingSize >= 2 && "Anonymous chaining must be >= 2");
883   FD->Chaining = new (Reader.getContext())NamedDecl*[FD->ChainingSize];
884 
885   for (unsigned I = 0; I != FD->ChainingSize; ++I)
886     FD->Chaining[I] = ReadDeclAs<NamedDecl>(Record, Idx);
887 }
888 
889 void ASTDeclReader::VisitVarDecl(VarDecl *VD) {
890   RedeclarableResult Redecl = VisitRedeclarable(VD);
891   VisitDeclaratorDecl(VD);
892 
893   VD->VarDeclBits.SClass = (StorageClass)Record[Idx++];
894   VD->VarDeclBits.SClassAsWritten = (StorageClass)Record[Idx++];
895   VD->VarDeclBits.ThreadSpecified = Record[Idx++];
896   VD->VarDeclBits.InitStyle = Record[Idx++];
897   VD->VarDeclBits.ExceptionVar = Record[Idx++];
898   VD->VarDeclBits.NRVOVariable = Record[Idx++];
899   VD->VarDeclBits.CXXForRangeDecl = Record[Idx++];
900   VD->VarDeclBits.ARCPseudoStrong = Record[Idx++];
901   VD->VarDeclBits.IsConstexpr = Record[Idx++];
902 
903   // Only true variables (not parameters or implicit parameters) can be merged.
904   if (VD->getKind() == Decl::Var)
905     mergeRedeclarable(VD, Redecl);
906 
907   if (uint64_t Val = Record[Idx++]) {
908     VD->setInit(Reader.ReadExpr(F));
909     if (Val > 1) {
910       EvaluatedStmt *Eval = VD->ensureEvaluatedStmt();
911       Eval->CheckedICE = true;
912       Eval->IsICE = Val == 3;
913     }
914   }
915 
916   if (Record[Idx++]) { // HasMemberSpecializationInfo.
917     VarDecl *Tmpl = ReadDeclAs<VarDecl>(Record, Idx);
918     TemplateSpecializationKind TSK = (TemplateSpecializationKind)Record[Idx++];
919     SourceLocation POI = ReadSourceLocation(Record, Idx);
920     Reader.getContext().setInstantiatedFromStaticDataMember(VD, Tmpl, TSK,POI);
921   }
922 }
923 
924 void ASTDeclReader::VisitImplicitParamDecl(ImplicitParamDecl *PD) {
925   VisitVarDecl(PD);
926 }
927 
928 void ASTDeclReader::VisitParmVarDecl(ParmVarDecl *PD) {
929   VisitVarDecl(PD);
930   unsigned isObjCMethodParam = Record[Idx++];
931   unsigned scopeDepth = Record[Idx++];
932   unsigned scopeIndex = Record[Idx++];
933   unsigned declQualifier = Record[Idx++];
934   if (isObjCMethodParam) {
935     assert(scopeDepth == 0);
936     PD->setObjCMethodScopeInfo(scopeIndex);
937     PD->ParmVarDeclBits.ScopeDepthOrObjCQuals = declQualifier;
938   } else {
939     PD->setScopeInfo(scopeDepth, scopeIndex);
940   }
941   PD->ParmVarDeclBits.IsKNRPromoted = Record[Idx++];
942   PD->ParmVarDeclBits.HasInheritedDefaultArg = Record[Idx++];
943   if (Record[Idx++]) // hasUninstantiatedDefaultArg.
944     PD->setUninstantiatedDefaultArg(Reader.ReadExpr(F));
945 }
946 
947 void ASTDeclReader::VisitFileScopeAsmDecl(FileScopeAsmDecl *AD) {
948   VisitDecl(AD);
949   AD->setAsmString(cast<StringLiteral>(Reader.ReadExpr(F)));
950   AD->setRParenLoc(ReadSourceLocation(Record, Idx));
951 }
952 
953 void ASTDeclReader::VisitBlockDecl(BlockDecl *BD) {
954   VisitDecl(BD);
955   BD->setBody(cast_or_null<CompoundStmt>(Reader.ReadStmt(F)));
956   BD->setSignatureAsWritten(GetTypeSourceInfo(Record, Idx));
957   unsigned NumParams = Record[Idx++];
958   SmallVector<ParmVarDecl *, 16> Params;
959   Params.reserve(NumParams);
960   for (unsigned I = 0; I != NumParams; ++I)
961     Params.push_back(ReadDeclAs<ParmVarDecl>(Record, Idx));
962   BD->setParams(Params);
963 
964   BD->setIsVariadic(Record[Idx++]);
965   BD->setBlockMissingReturnType(Record[Idx++]);
966   BD->setIsConversionFromLambda(Record[Idx++]);
967 
968   bool capturesCXXThis = Record[Idx++];
969   unsigned numCaptures = Record[Idx++];
970   SmallVector<BlockDecl::Capture, 16> captures;
971   captures.reserve(numCaptures);
972   for (unsigned i = 0; i != numCaptures; ++i) {
973     VarDecl *decl = ReadDeclAs<VarDecl>(Record, Idx);
974     unsigned flags = Record[Idx++];
975     bool byRef = (flags & 1);
976     bool nested = (flags & 2);
977     Expr *copyExpr = ((flags & 4) ? Reader.ReadExpr(F) : 0);
978 
979     captures.push_back(BlockDecl::Capture(decl, byRef, nested, copyExpr));
980   }
981   BD->setCaptures(Reader.getContext(), captures.begin(),
982                   captures.end(), capturesCXXThis);
983 }
984 
985 void ASTDeclReader::VisitLinkageSpecDecl(LinkageSpecDecl *D) {
986   VisitDecl(D);
987   D->setLanguage((LinkageSpecDecl::LanguageIDs)Record[Idx++]);
988   D->setExternLoc(ReadSourceLocation(Record, Idx));
989   D->setRBraceLoc(ReadSourceLocation(Record, Idx));
990 }
991 
992 void ASTDeclReader::VisitLabelDecl(LabelDecl *D) {
993   VisitNamedDecl(D);
994   D->setLocStart(ReadSourceLocation(Record, Idx));
995 }
996 
997 
998 void ASTDeclReader::VisitNamespaceDecl(NamespaceDecl *D) {
999   RedeclarableResult Redecl = VisitRedeclarable(D);
1000   VisitNamedDecl(D);
1001   D->setInline(Record[Idx++]);
1002   D->LocStart = ReadSourceLocation(Record, Idx);
1003   D->RBraceLoc = ReadSourceLocation(Record, Idx);
1004   mergeRedeclarable(D, Redecl);
1005 
1006   if (Redecl.getFirstID() == ThisDeclID) {
1007     // Each module has its own anonymous namespace, which is disjoint from
1008     // any other module's anonymous namespaces, so don't attach the anonymous
1009     // namespace at all.
1010     NamespaceDecl *Anon = ReadDeclAs<NamespaceDecl>(Record, Idx);
1011     if (F.Kind != MK_Module)
1012       D->setAnonymousNamespace(Anon);
1013   } else {
1014     // Link this namespace back to the first declaration, which has already
1015     // been deserialized.
1016     D->AnonOrFirstNamespaceAndInline.setPointer(D->getFirstDeclaration());
1017   }
1018 }
1019 
1020 void ASTDeclReader::VisitNamespaceAliasDecl(NamespaceAliasDecl *D) {
1021   VisitNamedDecl(D);
1022   D->NamespaceLoc = ReadSourceLocation(Record, Idx);
1023   D->IdentLoc = ReadSourceLocation(Record, Idx);
1024   D->QualifierLoc = Reader.ReadNestedNameSpecifierLoc(F, Record, Idx);
1025   D->Namespace = ReadDeclAs<NamedDecl>(Record, Idx);
1026 }
1027 
1028 void ASTDeclReader::VisitUsingDecl(UsingDecl *D) {
1029   VisitNamedDecl(D);
1030   D->setUsingLocation(ReadSourceLocation(Record, Idx));
1031   D->QualifierLoc = Reader.ReadNestedNameSpecifierLoc(F, Record, Idx);
1032   ReadDeclarationNameLoc(D->DNLoc, D->getDeclName(), Record, Idx);
1033   D->FirstUsingShadow.setPointer(ReadDeclAs<UsingShadowDecl>(Record, Idx));
1034   D->setTypeName(Record[Idx++]);
1035   if (NamedDecl *Pattern = ReadDeclAs<NamedDecl>(Record, Idx))
1036     Reader.getContext().setInstantiatedFromUsingDecl(D, Pattern);
1037 }
1038 
1039 void ASTDeclReader::VisitUsingShadowDecl(UsingShadowDecl *D) {
1040   VisitNamedDecl(D);
1041   D->setTargetDecl(ReadDeclAs<NamedDecl>(Record, Idx));
1042   D->UsingOrNextShadow = ReadDeclAs<NamedDecl>(Record, Idx);
1043   UsingShadowDecl *Pattern = ReadDeclAs<UsingShadowDecl>(Record, Idx);
1044   if (Pattern)
1045     Reader.getContext().setInstantiatedFromUsingShadowDecl(D, Pattern);
1046 }
1047 
1048 void ASTDeclReader::VisitUsingDirectiveDecl(UsingDirectiveDecl *D) {
1049   VisitNamedDecl(D);
1050   D->UsingLoc = ReadSourceLocation(Record, Idx);
1051   D->NamespaceLoc = ReadSourceLocation(Record, Idx);
1052   D->QualifierLoc = Reader.ReadNestedNameSpecifierLoc(F, Record, Idx);
1053   D->NominatedNamespace = ReadDeclAs<NamedDecl>(Record, Idx);
1054   D->CommonAncestor = ReadDeclAs<DeclContext>(Record, Idx);
1055 }
1056 
1057 void ASTDeclReader::VisitUnresolvedUsingValueDecl(UnresolvedUsingValueDecl *D) {
1058   VisitValueDecl(D);
1059   D->setUsingLoc(ReadSourceLocation(Record, Idx));
1060   D->QualifierLoc = Reader.ReadNestedNameSpecifierLoc(F, Record, Idx);
1061   ReadDeclarationNameLoc(D->DNLoc, D->getDeclName(), Record, Idx);
1062 }
1063 
1064 void ASTDeclReader::VisitUnresolvedUsingTypenameDecl(
1065                                                UnresolvedUsingTypenameDecl *D) {
1066   VisitTypeDecl(D);
1067   D->TypenameLocation = ReadSourceLocation(Record, Idx);
1068   D->QualifierLoc = Reader.ReadNestedNameSpecifierLoc(F, Record, Idx);
1069 }
1070 
1071 void ASTDeclReader::ReadCXXDefinitionData(
1072                                    struct CXXRecordDecl::DefinitionData &Data,
1073                                    const RecordData &Record, unsigned &Idx) {
1074   // Note: the caller has deserialized the IsLambda bit already.
1075   Data.UserDeclaredConstructor = Record[Idx++];
1076   Data.UserDeclaredCopyConstructor = Record[Idx++];
1077   Data.UserDeclaredMoveConstructor = Record[Idx++];
1078   Data.UserDeclaredCopyAssignment = Record[Idx++];
1079   Data.UserDeclaredMoveAssignment = Record[Idx++];
1080   Data.UserDeclaredDestructor = Record[Idx++];
1081   Data.Aggregate = Record[Idx++];
1082   Data.PlainOldData = Record[Idx++];
1083   Data.Empty = Record[Idx++];
1084   Data.Polymorphic = Record[Idx++];
1085   Data.Abstract = Record[Idx++];
1086   Data.IsStandardLayout = Record[Idx++];
1087   Data.HasNoNonEmptyBases = Record[Idx++];
1088   Data.HasPrivateFields = Record[Idx++];
1089   Data.HasProtectedFields = Record[Idx++];
1090   Data.HasPublicFields = Record[Idx++];
1091   Data.HasMutableFields = Record[Idx++];
1092   Data.HasOnlyCMembers = Record[Idx++];
1093   Data.HasInClassInitializer = Record[Idx++];
1094   Data.HasTrivialDefaultConstructor = Record[Idx++];
1095   Data.HasConstexprNonCopyMoveConstructor = Record[Idx++];
1096   Data.DefaultedDefaultConstructorIsConstexpr = Record[Idx++];
1097   Data.HasConstexprDefaultConstructor = Record[Idx++];
1098   Data.HasTrivialCopyConstructor = Record[Idx++];
1099   Data.HasTrivialMoveConstructor = Record[Idx++];
1100   Data.HasTrivialCopyAssignment = Record[Idx++];
1101   Data.HasTrivialMoveAssignment = Record[Idx++];
1102   Data.HasTrivialDestructor = Record[Idx++];
1103   Data.HasIrrelevantDestructor = Record[Idx++];
1104   Data.HasNonLiteralTypeFieldsOrBases = Record[Idx++];
1105   Data.ComputedVisibleConversions = Record[Idx++];
1106   Data.UserProvidedDefaultConstructor = Record[Idx++];
1107   Data.DeclaredDefaultConstructor = Record[Idx++];
1108   Data.DeclaredCopyConstructor = Record[Idx++];
1109   Data.DeclaredMoveConstructor = Record[Idx++];
1110   Data.DeclaredCopyAssignment = Record[Idx++];
1111   Data.DeclaredMoveAssignment = Record[Idx++];
1112   Data.DeclaredDestructor = Record[Idx++];
1113   Data.FailedImplicitMoveConstructor = Record[Idx++];
1114   Data.FailedImplicitMoveAssignment = Record[Idx++];
1115 
1116   Data.NumBases = Record[Idx++];
1117   if (Data.NumBases)
1118     Data.Bases = Reader.readCXXBaseSpecifiers(F, Record, Idx);
1119   Data.NumVBases = Record[Idx++];
1120   if (Data.NumVBases)
1121     Data.VBases = Reader.readCXXBaseSpecifiers(F, Record, Idx);
1122 
1123   Reader.ReadUnresolvedSet(F, Data.Conversions, Record, Idx);
1124   Reader.ReadUnresolvedSet(F, Data.VisibleConversions, Record, Idx);
1125   assert(Data.Definition && "Data.Definition should be already set!");
1126   Data.FirstFriend = ReadDeclAs<FriendDecl>(Record, Idx);
1127 
1128   if (Data.IsLambda) {
1129     typedef LambdaExpr::Capture Capture;
1130     CXXRecordDecl::LambdaDefinitionData &Lambda
1131       = static_cast<CXXRecordDecl::LambdaDefinitionData &>(Data);
1132     Lambda.Dependent = Record[Idx++];
1133     Lambda.NumCaptures = Record[Idx++];
1134     Lambda.NumExplicitCaptures = Record[Idx++];
1135     Lambda.ManglingNumber = Record[Idx++];
1136     Lambda.ContextDecl = ReadDecl(Record, Idx);
1137     Lambda.Captures
1138       = (Capture*)Reader.Context.Allocate(sizeof(Capture)*Lambda.NumCaptures);
1139     Capture *ToCapture = Lambda.Captures;
1140     Lambda.MethodTyInfo = GetTypeSourceInfo(Record, Idx);
1141     for (unsigned I = 0, N = Lambda.NumCaptures; I != N; ++I) {
1142       SourceLocation Loc = ReadSourceLocation(Record, Idx);
1143       bool IsImplicit = Record[Idx++];
1144       LambdaCaptureKind Kind = static_cast<LambdaCaptureKind>(Record[Idx++]);
1145       VarDecl *Var = ReadDeclAs<VarDecl>(Record, Idx);
1146       SourceLocation EllipsisLoc = ReadSourceLocation(Record, Idx);
1147       *ToCapture++ = Capture(Loc, IsImplicit, Kind, Var, EllipsisLoc);
1148     }
1149   }
1150 }
1151 
1152 void ASTDeclReader::VisitCXXRecordDecl(CXXRecordDecl *D) {
1153   VisitRecordDecl(D);
1154 
1155   ASTContext &C = Reader.getContext();
1156   if (Record[Idx++]) {
1157     // Determine whether this is a lambda closure type, so that we can
1158     // allocate the appropriate DefinitionData structure.
1159     bool IsLambda = Record[Idx++];
1160     if (IsLambda)
1161       D->DefinitionData = new (C) CXXRecordDecl::LambdaDefinitionData(D, 0,
1162                                                                       false);
1163     else
1164       D->DefinitionData = new (C) struct CXXRecordDecl::DefinitionData(D);
1165 
1166     // Propagate the DefinitionData pointer to the canonical declaration, so
1167     // that all other deserialized declarations will see it.
1168     // FIXME: Complain if there already is a DefinitionData!
1169     D->getCanonicalDecl()->DefinitionData = D->DefinitionData;
1170 
1171     ReadCXXDefinitionData(*D->DefinitionData, Record, Idx);
1172 
1173     // Note that we have deserialized a definition. Any declarations
1174     // deserialized before this one will be be given the DefinitionData pointer
1175     // at the end.
1176     Reader.PendingDefinitions.insert(D);
1177   } else {
1178     // Propagate DefinitionData pointer from the canonical declaration.
1179     D->DefinitionData = D->getCanonicalDecl()->DefinitionData;
1180   }
1181 
1182   enum CXXRecKind {
1183     CXXRecNotTemplate = 0, CXXRecTemplate, CXXRecMemberSpecialization
1184   };
1185   switch ((CXXRecKind)Record[Idx++]) {
1186   case CXXRecNotTemplate:
1187     break;
1188   case CXXRecTemplate:
1189     D->TemplateOrInstantiation = ReadDeclAs<ClassTemplateDecl>(Record, Idx);
1190     break;
1191   case CXXRecMemberSpecialization: {
1192     CXXRecordDecl *RD = ReadDeclAs<CXXRecordDecl>(Record, Idx);
1193     TemplateSpecializationKind TSK = (TemplateSpecializationKind)Record[Idx++];
1194     SourceLocation POI = ReadSourceLocation(Record, Idx);
1195     MemberSpecializationInfo *MSI = new (C) MemberSpecializationInfo(RD, TSK);
1196     MSI->setPointOfInstantiation(POI);
1197     D->TemplateOrInstantiation = MSI;
1198     break;
1199   }
1200   }
1201 
1202   // Load the key function to avoid deserializing every method so we can
1203   // compute it.
1204   if (D->IsCompleteDefinition) {
1205     if (CXXMethodDecl *Key = ReadDeclAs<CXXMethodDecl>(Record, Idx))
1206       C.KeyFunctions[D] = Key;
1207   }
1208 }
1209 
1210 void ASTDeclReader::VisitCXXMethodDecl(CXXMethodDecl *D) {
1211   VisitFunctionDecl(D);
1212   unsigned NumOverridenMethods = Record[Idx++];
1213   while (NumOverridenMethods--) {
1214     // Avoid invariant checking of CXXMethodDecl::addOverriddenMethod,
1215     // MD may be initializing.
1216     if (CXXMethodDecl *MD = ReadDeclAs<CXXMethodDecl>(Record, Idx))
1217       Reader.getContext().addOverriddenMethod(D, MD);
1218   }
1219 }
1220 
1221 void ASTDeclReader::VisitCXXConstructorDecl(CXXConstructorDecl *D) {
1222   VisitCXXMethodDecl(D);
1223 
1224   D->IsExplicitSpecified = Record[Idx++];
1225   D->ImplicitlyDefined = Record[Idx++];
1226   llvm::tie(D->CtorInitializers, D->NumCtorInitializers)
1227       = Reader.ReadCXXCtorInitializers(F, Record, Idx);
1228 }
1229 
1230 void ASTDeclReader::VisitCXXDestructorDecl(CXXDestructorDecl *D) {
1231   VisitCXXMethodDecl(D);
1232 
1233   D->ImplicitlyDefined = Record[Idx++];
1234   D->OperatorDelete = ReadDeclAs<FunctionDecl>(Record, Idx);
1235 }
1236 
1237 void ASTDeclReader::VisitCXXConversionDecl(CXXConversionDecl *D) {
1238   VisitCXXMethodDecl(D);
1239   D->IsExplicitSpecified = Record[Idx++];
1240 }
1241 
1242 void ASTDeclReader::VisitImportDecl(ImportDecl *D) {
1243   VisitDecl(D);
1244   D->ImportedAndComplete.setPointer(readModule(Record, Idx));
1245   D->ImportedAndComplete.setInt(Record[Idx++]);
1246   SourceLocation *StoredLocs = reinterpret_cast<SourceLocation *>(D + 1);
1247   for (unsigned I = 0, N = Record.back(); I != N; ++I)
1248     StoredLocs[I] = ReadSourceLocation(Record, Idx);
1249 }
1250 
1251 void ASTDeclReader::VisitAccessSpecDecl(AccessSpecDecl *D) {
1252   VisitDecl(D);
1253   D->setColonLoc(ReadSourceLocation(Record, Idx));
1254 }
1255 
1256 void ASTDeclReader::VisitFriendDecl(FriendDecl *D) {
1257   VisitDecl(D);
1258   if (Record[Idx++])
1259     D->Friend = GetTypeSourceInfo(Record, Idx);
1260   else
1261     D->Friend = ReadDeclAs<NamedDecl>(Record, Idx);
1262   D->NextFriend = Record[Idx++];
1263   D->UnsupportedFriend = (Record[Idx++] != 0);
1264   D->FriendLoc = ReadSourceLocation(Record, Idx);
1265 }
1266 
1267 void ASTDeclReader::VisitFriendTemplateDecl(FriendTemplateDecl *D) {
1268   VisitDecl(D);
1269   unsigned NumParams = Record[Idx++];
1270   D->NumParams = NumParams;
1271   D->Params = new TemplateParameterList*[NumParams];
1272   for (unsigned i = 0; i != NumParams; ++i)
1273     D->Params[i] = Reader.ReadTemplateParameterList(F, Record, Idx);
1274   if (Record[Idx++]) // HasFriendDecl
1275     D->Friend = ReadDeclAs<NamedDecl>(Record, Idx);
1276   else
1277     D->Friend = GetTypeSourceInfo(Record, Idx);
1278   D->FriendLoc = ReadSourceLocation(Record, Idx);
1279 }
1280 
1281 void ASTDeclReader::VisitTemplateDecl(TemplateDecl *D) {
1282   VisitNamedDecl(D);
1283 
1284   NamedDecl *TemplatedDecl = ReadDeclAs<NamedDecl>(Record, Idx);
1285   TemplateParameterList* TemplateParams
1286       = Reader.ReadTemplateParameterList(F, Record, Idx);
1287   D->init(TemplatedDecl, TemplateParams);
1288 }
1289 
1290 ASTDeclReader::RedeclarableResult
1291 ASTDeclReader::VisitRedeclarableTemplateDecl(RedeclarableTemplateDecl *D) {
1292   RedeclarableResult Redecl = VisitRedeclarable(D);
1293 
1294   // Make sure we've allocated the Common pointer first. We do this before
1295   // VisitTemplateDecl so that getCommonPtr() can be used during initialization.
1296   RedeclarableTemplateDecl *CanonD = D->getCanonicalDecl();
1297   if (!CanonD->Common) {
1298     CanonD->Common = CanonD->newCommon(Reader.getContext());
1299     Reader.PendingDefinitions.insert(CanonD);
1300   }
1301   D->Common = CanonD->Common;
1302 
1303   // If this is the first declaration of the template, fill in the information
1304   // for the 'common' pointer.
1305   if (ThisDeclID == Redecl.getFirstID()) {
1306     if (RedeclarableTemplateDecl *RTD
1307           = ReadDeclAs<RedeclarableTemplateDecl>(Record, Idx)) {
1308       assert(RTD->getKind() == D->getKind() &&
1309              "InstantiatedFromMemberTemplate kind mismatch");
1310       D->setInstantiatedFromMemberTemplate(RTD);
1311       if (Record[Idx++])
1312         D->setMemberSpecialization();
1313     }
1314   }
1315 
1316   VisitTemplateDecl(D);
1317   D->IdentifierNamespace = Record[Idx++];
1318 
1319   return Redecl;
1320 }
1321 
1322 void ASTDeclReader::VisitClassTemplateDecl(ClassTemplateDecl *D) {
1323   RedeclarableResult Redecl = VisitRedeclarableTemplateDecl(D);
1324 
1325   if (ThisDeclID == Redecl.getFirstID()) {
1326     // This ClassTemplateDecl owns a CommonPtr; read it to keep track of all of
1327     // the specializations.
1328     SmallVector<serialization::DeclID, 2> SpecIDs;
1329     SpecIDs.push_back(0);
1330 
1331     // Specializations.
1332     unsigned Size = Record[Idx++];
1333     SpecIDs[0] += Size;
1334     for (unsigned I = 0; I != Size; ++I)
1335       SpecIDs.push_back(ReadDeclID(Record, Idx));
1336 
1337     // Partial specializations.
1338     Size = Record[Idx++];
1339     SpecIDs[0] += Size;
1340     for (unsigned I = 0; I != Size; ++I)
1341       SpecIDs.push_back(ReadDeclID(Record, Idx));
1342 
1343     if (SpecIDs[0]) {
1344       typedef serialization::DeclID DeclID;
1345 
1346       ClassTemplateDecl::Common *CommonPtr = D->getCommonPtr();
1347       // FIXME: Append specializations!
1348       CommonPtr->LazySpecializations
1349         = new (Reader.getContext()) DeclID [SpecIDs.size()];
1350       memcpy(CommonPtr->LazySpecializations, SpecIDs.data(),
1351              SpecIDs.size() * sizeof(DeclID));
1352     }
1353 
1354     // InjectedClassNameType is computed.
1355   }
1356 }
1357 
1358 void ASTDeclReader::VisitClassTemplateSpecializationDecl(
1359                                            ClassTemplateSpecializationDecl *D) {
1360   VisitCXXRecordDecl(D);
1361 
1362   ASTContext &C = Reader.getContext();
1363   if (Decl *InstD = ReadDecl(Record, Idx)) {
1364     if (ClassTemplateDecl *CTD = dyn_cast<ClassTemplateDecl>(InstD)) {
1365       D->SpecializedTemplate = CTD;
1366     } else {
1367       SmallVector<TemplateArgument, 8> TemplArgs;
1368       Reader.ReadTemplateArgumentList(TemplArgs, F, Record, Idx);
1369       TemplateArgumentList *ArgList
1370         = TemplateArgumentList::CreateCopy(C, TemplArgs.data(),
1371                                            TemplArgs.size());
1372       ClassTemplateSpecializationDecl::SpecializedPartialSpecialization *PS
1373           = new (C) ClassTemplateSpecializationDecl::
1374                                              SpecializedPartialSpecialization();
1375       PS->PartialSpecialization
1376           = cast<ClassTemplatePartialSpecializationDecl>(InstD);
1377       PS->TemplateArgs = ArgList;
1378       D->SpecializedTemplate = PS;
1379     }
1380   }
1381 
1382   // Explicit info.
1383   if (TypeSourceInfo *TyInfo = GetTypeSourceInfo(Record, Idx)) {
1384     ClassTemplateSpecializationDecl::ExplicitSpecializationInfo *ExplicitInfo
1385         = new (C) ClassTemplateSpecializationDecl::ExplicitSpecializationInfo;
1386     ExplicitInfo->TypeAsWritten = TyInfo;
1387     ExplicitInfo->ExternLoc = ReadSourceLocation(Record, Idx);
1388     ExplicitInfo->TemplateKeywordLoc = ReadSourceLocation(Record, Idx);
1389     D->ExplicitInfo = ExplicitInfo;
1390   }
1391 
1392   SmallVector<TemplateArgument, 8> TemplArgs;
1393   Reader.ReadTemplateArgumentList(TemplArgs, F, Record, Idx);
1394   D->TemplateArgs = TemplateArgumentList::CreateCopy(C, TemplArgs.data(),
1395                                                      TemplArgs.size());
1396   D->PointOfInstantiation = ReadSourceLocation(Record, Idx);
1397   D->SpecializationKind = (TemplateSpecializationKind)Record[Idx++];
1398 
1399   if (D->isCanonicalDecl()) { // It's kept in the folding set.
1400     ClassTemplateDecl *CanonPattern = ReadDeclAs<ClassTemplateDecl>(Record,Idx);
1401     if (ClassTemplatePartialSpecializationDecl *Partial
1402                        = dyn_cast<ClassTemplatePartialSpecializationDecl>(D)) {
1403       CanonPattern->getCommonPtr()->PartialSpecializations.InsertNode(Partial);
1404     } else {
1405       CanonPattern->getCommonPtr()->Specializations.InsertNode(D);
1406     }
1407   }
1408 }
1409 
1410 void ASTDeclReader::VisitClassTemplatePartialSpecializationDecl(
1411                                     ClassTemplatePartialSpecializationDecl *D) {
1412   VisitClassTemplateSpecializationDecl(D);
1413 
1414   ASTContext &C = Reader.getContext();
1415   D->TemplateParams = Reader.ReadTemplateParameterList(F, Record, Idx);
1416 
1417   unsigned NumArgs = Record[Idx++];
1418   if (NumArgs) {
1419     D->NumArgsAsWritten = NumArgs;
1420     D->ArgsAsWritten = new (C) TemplateArgumentLoc[NumArgs];
1421     for (unsigned i=0; i != NumArgs; ++i)
1422       D->ArgsAsWritten[i] = Reader.ReadTemplateArgumentLoc(F, Record, Idx);
1423   }
1424 
1425   D->SequenceNumber = Record[Idx++];
1426 
1427   // These are read/set from/to the first declaration.
1428   if (D->getPreviousDecl() == 0) {
1429     D->InstantiatedFromMember.setPointer(
1430       ReadDeclAs<ClassTemplatePartialSpecializationDecl>(Record, Idx));
1431     D->InstantiatedFromMember.setInt(Record[Idx++]);
1432   }
1433 }
1434 
1435 void ASTDeclReader::VisitClassScopeFunctionSpecializationDecl(
1436                                     ClassScopeFunctionSpecializationDecl *D) {
1437   VisitDecl(D);
1438   D->Specialization = ReadDeclAs<CXXMethodDecl>(Record, Idx);
1439 }
1440 
1441 void ASTDeclReader::VisitFunctionTemplateDecl(FunctionTemplateDecl *D) {
1442   RedeclarableResult Redecl = VisitRedeclarableTemplateDecl(D);
1443 
1444   if (ThisDeclID == Redecl.getFirstID()) {
1445     // This FunctionTemplateDecl owns a CommonPtr; read it.
1446 
1447     // Read the function specialization declarations.
1448     // FunctionTemplateDecl's FunctionTemplateSpecializationInfos are filled
1449     // when reading the specialized FunctionDecl.
1450     unsigned NumSpecs = Record[Idx++];
1451     while (NumSpecs--)
1452       (void)ReadDecl(Record, Idx);
1453   }
1454 }
1455 
1456 void ASTDeclReader::VisitTemplateTypeParmDecl(TemplateTypeParmDecl *D) {
1457   VisitTypeDecl(D);
1458 
1459   D->setDeclaredWithTypename(Record[Idx++]);
1460 
1461   bool Inherited = Record[Idx++];
1462   TypeSourceInfo *DefArg = GetTypeSourceInfo(Record, Idx);
1463   D->setDefaultArgument(DefArg, Inherited);
1464 }
1465 
1466 void ASTDeclReader::VisitNonTypeTemplateParmDecl(NonTypeTemplateParmDecl *D) {
1467   VisitDeclaratorDecl(D);
1468   // TemplateParmPosition.
1469   D->setDepth(Record[Idx++]);
1470   D->setPosition(Record[Idx++]);
1471   if (D->isExpandedParameterPack()) {
1472     void **Data = reinterpret_cast<void **>(D + 1);
1473     for (unsigned I = 0, N = D->getNumExpansionTypes(); I != N; ++I) {
1474       Data[2*I] = Reader.readType(F, Record, Idx).getAsOpaquePtr();
1475       Data[2*I + 1] = GetTypeSourceInfo(Record, Idx);
1476     }
1477   } else {
1478     // Rest of NonTypeTemplateParmDecl.
1479     D->ParameterPack = Record[Idx++];
1480     if (Record[Idx++]) {
1481       Expr *DefArg = Reader.ReadExpr(F);
1482       bool Inherited = Record[Idx++];
1483       D->setDefaultArgument(DefArg, Inherited);
1484    }
1485   }
1486 }
1487 
1488 void ASTDeclReader::VisitTemplateTemplateParmDecl(TemplateTemplateParmDecl *D) {
1489   VisitTemplateDecl(D);
1490   // TemplateParmPosition.
1491   D->setDepth(Record[Idx++]);
1492   D->setPosition(Record[Idx++]);
1493   if (D->isExpandedParameterPack()) {
1494     void **Data = reinterpret_cast<void **>(D + 1);
1495     for (unsigned I = 0, N = D->getNumExpansionTemplateParameters();
1496          I != N; ++I)
1497       Data[I] = Reader.ReadTemplateParameterList(F, Record, Idx);
1498   } else {
1499     // Rest of TemplateTemplateParmDecl.
1500     TemplateArgumentLoc Arg = Reader.ReadTemplateArgumentLoc(F, Record, Idx);
1501     bool IsInherited = Record[Idx++];
1502     D->setDefaultArgument(Arg, IsInherited);
1503     D->ParameterPack = Record[Idx++];
1504   }
1505 }
1506 
1507 void ASTDeclReader::VisitTypeAliasTemplateDecl(TypeAliasTemplateDecl *D) {
1508   VisitRedeclarableTemplateDecl(D);
1509 }
1510 
1511 void ASTDeclReader::VisitStaticAssertDecl(StaticAssertDecl *D) {
1512   VisitDecl(D);
1513   D->AssertExprAndFailed.setPointer(Reader.ReadExpr(F));
1514   D->AssertExprAndFailed.setInt(Record[Idx++]);
1515   D->Message = cast<StringLiteral>(Reader.ReadExpr(F));
1516   D->RParenLoc = ReadSourceLocation(Record, Idx);
1517 }
1518 
1519 std::pair<uint64_t, uint64_t>
1520 ASTDeclReader::VisitDeclContext(DeclContext *DC) {
1521   uint64_t LexicalOffset = Record[Idx++];
1522   uint64_t VisibleOffset = Record[Idx++];
1523   return std::make_pair(LexicalOffset, VisibleOffset);
1524 }
1525 
1526 template <typename T>
1527 ASTDeclReader::RedeclarableResult
1528 ASTDeclReader::VisitRedeclarable(Redeclarable<T> *D) {
1529   DeclID FirstDeclID = ReadDeclID(Record, Idx);
1530 
1531   // 0 indicates that this declaration was the only declaration of its entity,
1532   // and is used for space optimization.
1533   if (FirstDeclID == 0)
1534     FirstDeclID = ThisDeclID;
1535 
1536   T *FirstDecl = cast_or_null<T>(Reader.GetDecl(FirstDeclID));
1537   if (FirstDecl != D) {
1538     // We delay loading of the redeclaration chain to avoid deeply nested calls.
1539     // We temporarily set the first (canonical) declaration as the previous one
1540     // which is the one that matters and mark the real previous DeclID to be
1541     // loaded & attached later on.
1542     D->RedeclLink = Redeclarable<T>::PreviousDeclLink(FirstDecl);
1543   }
1544 
1545   // Note that this declaration has been deserialized.
1546   Reader.RedeclsDeserialized.insert(static_cast<T *>(D));
1547 
1548   // The result structure takes care to note that we need to load the
1549   // other declaration chains for this ID.
1550   return RedeclarableResult(Reader, FirstDeclID);
1551 }
1552 
1553 /// \brief Attempts to merge the given declaration (D) with another declaration
1554 /// of the same entity.
1555 template<typename T>
1556 void ASTDeclReader::mergeRedeclarable(Redeclarable<T> *D,
1557                                       RedeclarableResult &Redecl) {
1558   // If modules are not available, there is no reason to perform this merge.
1559   if (!Reader.getContext().getLangOpts().Modules)
1560     return;
1561 
1562   if (FindExistingResult ExistingRes = findExisting(static_cast<T*>(D))) {
1563     if (T *Existing = ExistingRes) {
1564       T *ExistingCanon = Existing->getCanonicalDecl();
1565       T *DCanon = static_cast<T*>(D)->getCanonicalDecl();
1566       if (ExistingCanon != DCanon) {
1567         // Have our redeclaration link point back at the canonical declaration
1568         // of the existing declaration, so that this declaration has the
1569         // appropriate canonical declaration.
1570         D->RedeclLink = Redeclarable<T>::PreviousDeclLink(ExistingCanon);
1571 
1572         // When we merge a namespace, update its pointer to the first namespace.
1573         if (NamespaceDecl *Namespace
1574               = dyn_cast<NamespaceDecl>(static_cast<T*>(D))) {
1575           Namespace->AnonOrFirstNamespaceAndInline.setPointer(
1576             static_cast<NamespaceDecl *>(static_cast<void*>(ExistingCanon)));
1577         }
1578 
1579         // Don't introduce DCanon into the set of pending declaration chains.
1580         Redecl.suppress();
1581 
1582         // Introduce ExistingCanon into the set of pending declaration chains,
1583         // if in fact it came from a module file.
1584         if (ExistingCanon->isFromASTFile()) {
1585           GlobalDeclID ExistingCanonID = ExistingCanon->getGlobalID();
1586           assert(ExistingCanonID && "Unrecorded canonical declaration ID?");
1587           if (Reader.PendingDeclChainsKnown.insert(ExistingCanonID))
1588             Reader.PendingDeclChains.push_back(ExistingCanonID);
1589         }
1590 
1591         // If this declaration was the canonical declaration, make a note of
1592         // that. We accept the linear algorithm here because the number of
1593         // unique canonical declarations of an entity should always be tiny.
1594         if (DCanon == static_cast<T*>(D)) {
1595           SmallVectorImpl<DeclID> &Merged = Reader.MergedDecls[ExistingCanon];
1596           if (std::find(Merged.begin(), Merged.end(), Redecl.getFirstID())
1597                 == Merged.end())
1598             Merged.push_back(Redecl.getFirstID());
1599 
1600           // If ExistingCanon did not come from a module file, introduce the
1601           // first declaration that *does* come from a module file to the
1602           // set of pending declaration chains, so that we merge this
1603           // declaration.
1604           if (!ExistingCanon->isFromASTFile() &&
1605               Reader.PendingDeclChainsKnown.insert(Redecl.getFirstID()))
1606             Reader.PendingDeclChains.push_back(Merged[0]);
1607         }
1608       }
1609     }
1610   }
1611 }
1612 
1613 //===----------------------------------------------------------------------===//
1614 // Attribute Reading
1615 //===----------------------------------------------------------------------===//
1616 
1617 /// \brief Reads attributes from the current stream position.
1618 void ASTReader::ReadAttributes(ModuleFile &F, AttrVec &Attrs,
1619                                const RecordData &Record, unsigned &Idx) {
1620   for (unsigned i = 0, e = Record[Idx++]; i != e; ++i) {
1621     Attr *New = 0;
1622     attr::Kind Kind = (attr::Kind)Record[Idx++];
1623     SourceRange Range = ReadSourceRange(F, Record, Idx);
1624 
1625 #include "clang/Serialization/AttrPCHRead.inc"
1626 
1627     assert(New && "Unable to decode attribute?");
1628     Attrs.push_back(New);
1629   }
1630 }
1631 
1632 //===----------------------------------------------------------------------===//
1633 // ASTReader Implementation
1634 //===----------------------------------------------------------------------===//
1635 
1636 /// \brief Note that we have loaded the declaration with the given
1637 /// Index.
1638 ///
1639 /// This routine notes that this declaration has already been loaded,
1640 /// so that future GetDecl calls will return this declaration rather
1641 /// than trying to load a new declaration.
1642 inline void ASTReader::LoadedDecl(unsigned Index, Decl *D) {
1643   assert(!DeclsLoaded[Index] && "Decl loaded twice?");
1644   DeclsLoaded[Index] = D;
1645 }
1646 
1647 
1648 /// \brief Determine whether the consumer will be interested in seeing
1649 /// this declaration (via HandleTopLevelDecl).
1650 ///
1651 /// This routine should return true for anything that might affect
1652 /// code generation, e.g., inline function definitions, Objective-C
1653 /// declarations with metadata, etc.
1654 static bool isConsumerInterestedIn(Decl *D) {
1655   // An ObjCMethodDecl is never considered as "interesting" because its
1656   // implementation container always is.
1657 
1658   if (isa<FileScopeAsmDecl>(D) ||
1659       isa<ObjCProtocolDecl>(D) ||
1660       isa<ObjCImplDecl>(D))
1661     return true;
1662   if (VarDecl *Var = dyn_cast<VarDecl>(D))
1663     return Var->isFileVarDecl() &&
1664            Var->isThisDeclarationADefinition() == VarDecl::Definition;
1665   if (FunctionDecl *Func = dyn_cast<FunctionDecl>(D))
1666     return Func->doesThisDeclarationHaveABody();
1667 
1668   return false;
1669 }
1670 
1671 /// \brief Get the correct cursor and offset for loading a declaration.
1672 ASTReader::RecordLocation
1673 ASTReader::DeclCursorForID(DeclID ID, unsigned &RawLocation) {
1674   // See if there's an override.
1675   DeclReplacementMap::iterator It = ReplacedDecls.find(ID);
1676   if (It != ReplacedDecls.end()) {
1677     RawLocation = It->second.RawLoc;
1678     return RecordLocation(It->second.Mod, It->second.Offset);
1679   }
1680 
1681   GlobalDeclMapType::iterator I = GlobalDeclMap.find(ID);
1682   assert(I != GlobalDeclMap.end() && "Corrupted global declaration map");
1683   ModuleFile *M = I->second;
1684   const DeclOffset &
1685     DOffs =  M->DeclOffsets[ID - M->BaseDeclID - NUM_PREDEF_DECL_IDS];
1686   RawLocation = DOffs.Loc;
1687   return RecordLocation(M, DOffs.BitOffset);
1688 }
1689 
1690 ASTReader::RecordLocation ASTReader::getLocalBitOffset(uint64_t GlobalOffset) {
1691   ContinuousRangeMap<uint64_t, ModuleFile*, 4>::iterator I
1692     = GlobalBitOffsetsMap.find(GlobalOffset);
1693 
1694   assert(I != GlobalBitOffsetsMap.end() && "Corrupted global bit offsets map");
1695   return RecordLocation(I->second, GlobalOffset - I->second->GlobalBitOffset);
1696 }
1697 
1698 uint64_t ASTReader::getGlobalBitOffset(ModuleFile &M, uint32_t LocalOffset) {
1699   return LocalOffset + M.GlobalBitOffset;
1700 }
1701 
1702 /// \brief Determine whether the two declarations refer to the same entity.
1703 static bool isSameEntity(NamedDecl *X, NamedDecl *Y) {
1704   assert(X->getDeclName() == Y->getDeclName() && "Declaration name mismatch!");
1705 
1706   if (X == Y)
1707     return true;
1708 
1709   // Must be in the same context.
1710   if (!X->getDeclContext()->getRedeclContext()->Equals(
1711          Y->getDeclContext()->getRedeclContext()))
1712     return false;
1713 
1714   // Two typedefs refer to the same entity if they have the same underlying
1715   // type.
1716   if (TypedefNameDecl *TypedefX = dyn_cast<TypedefNameDecl>(X))
1717     if (TypedefNameDecl *TypedefY = dyn_cast<TypedefNameDecl>(Y))
1718       return X->getASTContext().hasSameType(TypedefX->getUnderlyingType(),
1719                                             TypedefY->getUnderlyingType());
1720 
1721   // Must have the same kind.
1722   if (X->getKind() != Y->getKind())
1723     return false;
1724 
1725   // Objective-C classes and protocols with the same name always match.
1726   if (isa<ObjCInterfaceDecl>(X) || isa<ObjCProtocolDecl>(X))
1727     return true;
1728 
1729   // Compatible tags match.
1730   if (TagDecl *TagX = dyn_cast<TagDecl>(X)) {
1731     TagDecl *TagY = cast<TagDecl>(Y);
1732     return (TagX->getTagKind() == TagY->getTagKind()) ||
1733       ((TagX->getTagKind() == TTK_Struct || TagX->getTagKind() == TTK_Class ||
1734         TagX->getTagKind() == TTK_Interface) &&
1735        (TagY->getTagKind() == TTK_Struct || TagY->getTagKind() == TTK_Class ||
1736         TagY->getTagKind() == TTK_Interface));
1737   }
1738 
1739   // Functions with the same type and linkage match.
1740   // FIXME: This needs to cope with function templates, merging of
1741   //prototyped/non-prototyped functions, etc.
1742   if (FunctionDecl *FuncX = dyn_cast<FunctionDecl>(X)) {
1743     FunctionDecl *FuncY = cast<FunctionDecl>(Y);
1744     return (FuncX->getLinkage() == FuncY->getLinkage()) &&
1745       FuncX->getASTContext().hasSameType(FuncX->getType(), FuncY->getType());
1746   }
1747 
1748   // Variables with the same type and linkage match.
1749   if (VarDecl *VarX = dyn_cast<VarDecl>(X)) {
1750     VarDecl *VarY = cast<VarDecl>(Y);
1751     return (VarX->getLinkage() == VarY->getLinkage()) &&
1752       VarX->getASTContext().hasSameType(VarX->getType(), VarY->getType());
1753   }
1754 
1755   // Namespaces with the same name and inlinedness match.
1756   if (NamespaceDecl *NamespaceX = dyn_cast<NamespaceDecl>(X)) {
1757     NamespaceDecl *NamespaceY = cast<NamespaceDecl>(Y);
1758     return NamespaceX->isInline() == NamespaceY->isInline();
1759   }
1760 
1761   // FIXME: Many other cases to implement.
1762   return false;
1763 }
1764 
1765 ASTDeclReader::FindExistingResult::~FindExistingResult() {
1766   if (!AddResult || Existing)
1767     return;
1768 
1769   DeclContext *DC = New->getDeclContext()->getRedeclContext();
1770   if (DC->isTranslationUnit() && Reader.SemaObj) {
1771     Reader.SemaObj->IdResolver.tryAddTopLevelDecl(New, New->getDeclName());
1772   } else if (DC->isNamespace()) {
1773     DC->addDecl(New);
1774   }
1775 }
1776 
1777 ASTDeclReader::FindExistingResult ASTDeclReader::findExisting(NamedDecl *D) {
1778   DeclarationName Name = D->getDeclName();
1779   if (!Name) {
1780     // Don't bother trying to find unnamed declarations.
1781     FindExistingResult Result(Reader, D, /*Existing=*/0);
1782     Result.suppress();
1783     return Result;
1784   }
1785 
1786   DeclContext *DC = D->getDeclContext()->getRedeclContext();
1787   if (!DC->isFileContext())
1788     return FindExistingResult(Reader);
1789 
1790   if (DC->isTranslationUnit() && Reader.SemaObj) {
1791     IdentifierResolver &IdResolver = Reader.SemaObj->IdResolver;
1792     for (IdentifierResolver::iterator I = IdResolver.begin(Name),
1793                                    IEnd = IdResolver.end();
1794          I != IEnd; ++I) {
1795       if (isSameEntity(*I, D))
1796         return FindExistingResult(Reader, D, *I);
1797     }
1798   }
1799 
1800   if (DC->isNamespace()) {
1801     for (DeclContext::lookup_result R = DC->lookup(Name);
1802          R.first != R.second; ++R.first) {
1803       if (isSameEntity(*R.first, D))
1804         return FindExistingResult(Reader, D, *R.first);
1805     }
1806   }
1807 
1808   return FindExistingResult(Reader, D, /*Existing=*/0);
1809 }
1810 
1811 void ASTDeclReader::attachPreviousDecl(Decl *D, Decl *previous) {
1812   assert(D && previous);
1813   if (TagDecl *TD = dyn_cast<TagDecl>(D)) {
1814     TD->RedeclLink.setNext(cast<TagDecl>(previous));
1815   } else if (FunctionDecl *FD = dyn_cast<FunctionDecl>(D)) {
1816     FD->RedeclLink.setNext(cast<FunctionDecl>(previous));
1817   } else if (VarDecl *VD = dyn_cast<VarDecl>(D)) {
1818     VD->RedeclLink.setNext(cast<VarDecl>(previous));
1819   } else if (TypedefNameDecl *TD = dyn_cast<TypedefNameDecl>(D)) {
1820     TD->RedeclLink.setNext(cast<TypedefNameDecl>(previous));
1821   } else if (ObjCInterfaceDecl *ID = dyn_cast<ObjCInterfaceDecl>(D)) {
1822     ID->RedeclLink.setNext(cast<ObjCInterfaceDecl>(previous));
1823   } else if (ObjCProtocolDecl *PD = dyn_cast<ObjCProtocolDecl>(D)) {
1824     PD->RedeclLink.setNext(cast<ObjCProtocolDecl>(previous));
1825   } else if (NamespaceDecl *ND = dyn_cast<NamespaceDecl>(D)) {
1826     ND->RedeclLink.setNext(cast<NamespaceDecl>(previous));
1827   } else {
1828     RedeclarableTemplateDecl *TD = cast<RedeclarableTemplateDecl>(D);
1829     TD->RedeclLink.setNext(cast<RedeclarableTemplateDecl>(previous));
1830   }
1831 }
1832 
1833 void ASTDeclReader::attachLatestDecl(Decl *D, Decl *Latest) {
1834   assert(D && Latest);
1835   if (TagDecl *TD = dyn_cast<TagDecl>(D)) {
1836     TD->RedeclLink
1837       = Redeclarable<TagDecl>::LatestDeclLink(cast<TagDecl>(Latest));
1838   } else if (FunctionDecl *FD = dyn_cast<FunctionDecl>(D)) {
1839     FD->RedeclLink
1840       = Redeclarable<FunctionDecl>::LatestDeclLink(cast<FunctionDecl>(Latest));
1841   } else if (VarDecl *VD = dyn_cast<VarDecl>(D)) {
1842     VD->RedeclLink
1843       = Redeclarable<VarDecl>::LatestDeclLink(cast<VarDecl>(Latest));
1844   } else if (TypedefNameDecl *TD = dyn_cast<TypedefNameDecl>(D)) {
1845     TD->RedeclLink
1846       = Redeclarable<TypedefNameDecl>::LatestDeclLink(
1847                                                 cast<TypedefNameDecl>(Latest));
1848   } else if (ObjCInterfaceDecl *ID = dyn_cast<ObjCInterfaceDecl>(D)) {
1849     ID->RedeclLink
1850       = Redeclarable<ObjCInterfaceDecl>::LatestDeclLink(
1851                                               cast<ObjCInterfaceDecl>(Latest));
1852   } else if (ObjCProtocolDecl *PD = dyn_cast<ObjCProtocolDecl>(D)) {
1853     PD->RedeclLink
1854       = Redeclarable<ObjCProtocolDecl>::LatestDeclLink(
1855                                                 cast<ObjCProtocolDecl>(Latest));
1856   } else if (NamespaceDecl *ND = dyn_cast<NamespaceDecl>(D)) {
1857     ND->RedeclLink
1858       = Redeclarable<NamespaceDecl>::LatestDeclLink(
1859                                                    cast<NamespaceDecl>(Latest));
1860   } else {
1861     RedeclarableTemplateDecl *TD = cast<RedeclarableTemplateDecl>(D);
1862     TD->RedeclLink
1863       = Redeclarable<RedeclarableTemplateDecl>::LatestDeclLink(
1864                                         cast<RedeclarableTemplateDecl>(Latest));
1865   }
1866 }
1867 
1868 ASTReader::MergedDeclsMap::iterator
1869 ASTReader::combineStoredMergedDecls(Decl *Canon, GlobalDeclID CanonID) {
1870   // If we don't have any stored merged declarations, just look in the
1871   // merged declarations set.
1872   StoredMergedDeclsMap::iterator StoredPos = StoredMergedDecls.find(CanonID);
1873   if (StoredPos == StoredMergedDecls.end())
1874     return MergedDecls.find(Canon);
1875 
1876   // Append the stored merged declarations to the merged declarations set.
1877   MergedDeclsMap::iterator Pos = MergedDecls.find(Canon);
1878   if (Pos == MergedDecls.end())
1879     Pos = MergedDecls.insert(std::make_pair(Canon,
1880                                             SmallVector<DeclID, 2>())).first;
1881   Pos->second.append(StoredPos->second.begin(), StoredPos->second.end());
1882   StoredMergedDecls.erase(StoredPos);
1883 
1884   // Sort and uniquify the set of merged declarations.
1885   llvm::array_pod_sort(Pos->second.begin(), Pos->second.end());
1886   Pos->second.erase(std::unique(Pos->second.begin(), Pos->second.end()),
1887                     Pos->second.end());
1888   return Pos;
1889 }
1890 
1891 void ASTReader::loadAndAttachPreviousDecl(Decl *D, serialization::DeclID ID) {
1892   Decl *previous = GetDecl(ID);
1893   ASTDeclReader::attachPreviousDecl(D, previous);
1894 }
1895 
1896 /// \brief Read the declaration at the given offset from the AST file.
1897 Decl *ASTReader::ReadDeclRecord(DeclID ID) {
1898   unsigned Index = ID - NUM_PREDEF_DECL_IDS;
1899   unsigned RawLocation = 0;
1900   RecordLocation Loc = DeclCursorForID(ID, RawLocation);
1901   llvm::BitstreamCursor &DeclsCursor = Loc.F->DeclsCursor;
1902   // Keep track of where we are in the stream, then jump back there
1903   // after reading this declaration.
1904   SavedStreamPosition SavedPosition(DeclsCursor);
1905 
1906   ReadingKindTracker ReadingKind(Read_Decl, *this);
1907 
1908   // Note that we are loading a declaration record.
1909   Deserializing ADecl(this);
1910 
1911   DeclsCursor.JumpToBit(Loc.Offset);
1912   RecordData Record;
1913   unsigned Code = DeclsCursor.ReadCode();
1914   unsigned Idx = 0;
1915   ASTDeclReader Reader(*this, *Loc.F, ID, RawLocation, Record,Idx);
1916 
1917   Decl *D = 0;
1918   switch ((DeclCode)DeclsCursor.ReadRecord(Code, Record)) {
1919   case DECL_CONTEXT_LEXICAL:
1920   case DECL_CONTEXT_VISIBLE:
1921     llvm_unreachable("Record cannot be de-serialized with ReadDeclRecord");
1922   case DECL_TYPEDEF:
1923     D = TypedefDecl::CreateDeserialized(Context, ID);
1924     break;
1925   case DECL_TYPEALIAS:
1926     D = TypeAliasDecl::CreateDeserialized(Context, ID);
1927     break;
1928   case DECL_ENUM:
1929     D = EnumDecl::CreateDeserialized(Context, ID);
1930     break;
1931   case DECL_RECORD:
1932     D = RecordDecl::CreateDeserialized(Context, ID);
1933     break;
1934   case DECL_ENUM_CONSTANT:
1935     D = EnumConstantDecl::CreateDeserialized(Context, ID);
1936     break;
1937   case DECL_FUNCTION:
1938     D = FunctionDecl::CreateDeserialized(Context, ID);
1939     break;
1940   case DECL_LINKAGE_SPEC:
1941     D = LinkageSpecDecl::CreateDeserialized(Context, ID);
1942     break;
1943   case DECL_LABEL:
1944     D = LabelDecl::CreateDeserialized(Context, ID);
1945     break;
1946   case DECL_NAMESPACE:
1947     D = NamespaceDecl::CreateDeserialized(Context, ID);
1948     break;
1949   case DECL_NAMESPACE_ALIAS:
1950     D = NamespaceAliasDecl::CreateDeserialized(Context, ID);
1951     break;
1952   case DECL_USING:
1953     D = UsingDecl::CreateDeserialized(Context, ID);
1954     break;
1955   case DECL_USING_SHADOW:
1956     D = UsingShadowDecl::CreateDeserialized(Context, ID);
1957     break;
1958   case DECL_USING_DIRECTIVE:
1959     D = UsingDirectiveDecl::CreateDeserialized(Context, ID);
1960     break;
1961   case DECL_UNRESOLVED_USING_VALUE:
1962     D = UnresolvedUsingValueDecl::CreateDeserialized(Context, ID);
1963     break;
1964   case DECL_UNRESOLVED_USING_TYPENAME:
1965     D = UnresolvedUsingTypenameDecl::CreateDeserialized(Context, ID);
1966     break;
1967   case DECL_CXX_RECORD:
1968     D = CXXRecordDecl::CreateDeserialized(Context, ID);
1969     break;
1970   case DECL_CXX_METHOD:
1971     D = CXXMethodDecl::CreateDeserialized(Context, ID);
1972     break;
1973   case DECL_CXX_CONSTRUCTOR:
1974     D = CXXConstructorDecl::CreateDeserialized(Context, ID);
1975     break;
1976   case DECL_CXX_DESTRUCTOR:
1977     D = CXXDestructorDecl::CreateDeserialized(Context, ID);
1978     break;
1979   case DECL_CXX_CONVERSION:
1980     D = CXXConversionDecl::CreateDeserialized(Context, ID);
1981     break;
1982   case DECL_ACCESS_SPEC:
1983     D = AccessSpecDecl::CreateDeserialized(Context, ID);
1984     break;
1985   case DECL_FRIEND:
1986     D = FriendDecl::CreateDeserialized(Context, ID);
1987     break;
1988   case DECL_FRIEND_TEMPLATE:
1989     D = FriendTemplateDecl::CreateDeserialized(Context, ID);
1990     break;
1991   case DECL_CLASS_TEMPLATE:
1992     D = ClassTemplateDecl::CreateDeserialized(Context, ID);
1993     break;
1994   case DECL_CLASS_TEMPLATE_SPECIALIZATION:
1995     D = ClassTemplateSpecializationDecl::CreateDeserialized(Context, ID);
1996     break;
1997   case DECL_CLASS_TEMPLATE_PARTIAL_SPECIALIZATION:
1998     D = ClassTemplatePartialSpecializationDecl::CreateDeserialized(Context, ID);
1999     break;
2000   case DECL_CLASS_SCOPE_FUNCTION_SPECIALIZATION:
2001     D = ClassScopeFunctionSpecializationDecl::CreateDeserialized(Context, ID);
2002     break;
2003   case DECL_FUNCTION_TEMPLATE:
2004     D = FunctionTemplateDecl::CreateDeserialized(Context, ID);
2005     break;
2006   case DECL_TEMPLATE_TYPE_PARM:
2007     D = TemplateTypeParmDecl::CreateDeserialized(Context, ID);
2008     break;
2009   case DECL_NON_TYPE_TEMPLATE_PARM:
2010     D = NonTypeTemplateParmDecl::CreateDeserialized(Context, ID);
2011     break;
2012   case DECL_EXPANDED_NON_TYPE_TEMPLATE_PARM_PACK:
2013     D = NonTypeTemplateParmDecl::CreateDeserialized(Context, ID, Record[Idx++]);
2014     break;
2015   case DECL_TEMPLATE_TEMPLATE_PARM:
2016     D = TemplateTemplateParmDecl::CreateDeserialized(Context, ID);
2017     break;
2018   case DECL_EXPANDED_TEMPLATE_TEMPLATE_PARM_PACK:
2019     D = TemplateTemplateParmDecl::CreateDeserialized(Context, ID,
2020                                                      Record[Idx++]);
2021     break;
2022   case DECL_TYPE_ALIAS_TEMPLATE:
2023     D = TypeAliasTemplateDecl::CreateDeserialized(Context, ID);
2024     break;
2025   case DECL_STATIC_ASSERT:
2026     D = StaticAssertDecl::CreateDeserialized(Context, ID);
2027     break;
2028   case DECL_OBJC_METHOD:
2029     D = ObjCMethodDecl::CreateDeserialized(Context, ID);
2030     break;
2031   case DECL_OBJC_INTERFACE:
2032     D = ObjCInterfaceDecl::CreateDeserialized(Context, ID);
2033     break;
2034   case DECL_OBJC_IVAR:
2035     D = ObjCIvarDecl::CreateDeserialized(Context, ID);
2036     break;
2037   case DECL_OBJC_PROTOCOL:
2038     D = ObjCProtocolDecl::CreateDeserialized(Context, ID);
2039     break;
2040   case DECL_OBJC_AT_DEFS_FIELD:
2041     D = ObjCAtDefsFieldDecl::CreateDeserialized(Context, ID);
2042     break;
2043   case DECL_OBJC_CATEGORY:
2044     D = ObjCCategoryDecl::CreateDeserialized(Context, ID);
2045     break;
2046   case DECL_OBJC_CATEGORY_IMPL:
2047     D = ObjCCategoryImplDecl::CreateDeserialized(Context, ID);
2048     break;
2049   case DECL_OBJC_IMPLEMENTATION:
2050     D = ObjCImplementationDecl::CreateDeserialized(Context, ID);
2051     break;
2052   case DECL_OBJC_COMPATIBLE_ALIAS:
2053     D = ObjCCompatibleAliasDecl::CreateDeserialized(Context, ID);
2054     break;
2055   case DECL_OBJC_PROPERTY:
2056     D = ObjCPropertyDecl::CreateDeserialized(Context, ID);
2057     break;
2058   case DECL_OBJC_PROPERTY_IMPL:
2059     D = ObjCPropertyImplDecl::CreateDeserialized(Context, ID);
2060     break;
2061   case DECL_FIELD:
2062     D = FieldDecl::CreateDeserialized(Context, ID);
2063     break;
2064   case DECL_INDIRECTFIELD:
2065     D = IndirectFieldDecl::CreateDeserialized(Context, ID);
2066     break;
2067   case DECL_VAR:
2068     D = VarDecl::CreateDeserialized(Context, ID);
2069     break;
2070   case DECL_IMPLICIT_PARAM:
2071     D = ImplicitParamDecl::CreateDeserialized(Context, ID);
2072     break;
2073   case DECL_PARM_VAR:
2074     D = ParmVarDecl::CreateDeserialized(Context, ID);
2075     break;
2076   case DECL_FILE_SCOPE_ASM:
2077     D = FileScopeAsmDecl::CreateDeserialized(Context, ID);
2078     break;
2079   case DECL_BLOCK:
2080     D = BlockDecl::CreateDeserialized(Context, ID);
2081     break;
2082   case DECL_CXX_BASE_SPECIFIERS:
2083     Error("attempt to read a C++ base-specifier record as a declaration");
2084     return 0;
2085   case DECL_IMPORT:
2086     // Note: last entry of the ImportDecl record is the number of stored source
2087     // locations.
2088     D = ImportDecl::CreateDeserialized(Context, ID, Record.back());
2089     break;
2090   }
2091 
2092   assert(D && "Unknown declaration reading AST file");
2093   LoadedDecl(Index, D);
2094   // Set the DeclContext before doing any deserialization, to make sure internal
2095   // calls to Decl::getASTContext() by Decl's methods will find the
2096   // TranslationUnitDecl without crashing.
2097   D->setDeclContext(Context.getTranslationUnitDecl());
2098   Reader.Visit(D);
2099 
2100   // If this declaration is also a declaration context, get the
2101   // offsets for its tables of lexical and visible declarations.
2102   if (DeclContext *DC = dyn_cast<DeclContext>(D)) {
2103     std::pair<uint64_t, uint64_t> Offsets = Reader.VisitDeclContext(DC);
2104     if (Offsets.first || Offsets.second) {
2105       if (Offsets.first != 0)
2106         DC->setHasExternalLexicalStorage(true);
2107       if (Offsets.second != 0)
2108         DC->setHasExternalVisibleStorage(true);
2109       if (ReadDeclContextStorage(*Loc.F, DeclsCursor, Offsets,
2110                                  Loc.F->DeclContextInfos[DC]))
2111         return 0;
2112     }
2113 
2114     // Now add the pending visible updates for this decl context, if it has any.
2115     DeclContextVisibleUpdatesPending::iterator I =
2116         PendingVisibleUpdates.find(ID);
2117     if (I != PendingVisibleUpdates.end()) {
2118       // There are updates. This means the context has external visible
2119       // storage, even if the original stored version didn't.
2120       DC->setHasExternalVisibleStorage(true);
2121       DeclContextVisibleUpdates &U = I->second;
2122       for (DeclContextVisibleUpdates::iterator UI = U.begin(), UE = U.end();
2123            UI != UE; ++UI) {
2124         DeclContextInfo &Info = UI->second->DeclContextInfos[DC];
2125         delete Info.NameLookupTableData;
2126         Info.NameLookupTableData = UI->first;
2127       }
2128       PendingVisibleUpdates.erase(I);
2129     }
2130 
2131     if (!DC->hasExternalVisibleStorage() && DC->hasExternalLexicalStorage())
2132       DC->setMustBuildLookupTable();
2133   }
2134   assert(Idx == Record.size());
2135 
2136   // Load any relevant update records.
2137   loadDeclUpdateRecords(ID, D);
2138 
2139   // Load the categories after recursive loading is finished.
2140   if (ObjCInterfaceDecl *Class = dyn_cast<ObjCInterfaceDecl>(D))
2141     if (Class->isThisDeclarationADefinition())
2142       loadObjCCategories(ID, Class);
2143 
2144   // If we have deserialized a declaration that has a definition the
2145   // AST consumer might need to know about, queue it.
2146   // We don't pass it to the consumer immediately because we may be in recursive
2147   // loading, and some declarations may still be initializing.
2148   if (isConsumerInterestedIn(D))
2149     InterestingDecls.push_back(D);
2150 
2151   return D;
2152 }
2153 
2154 void ASTReader::loadDeclUpdateRecords(serialization::DeclID ID, Decl *D) {
2155   // The declaration may have been modified by files later in the chain.
2156   // If this is the case, read the record containing the updates from each file
2157   // and pass it to ASTDeclReader to make the modifications.
2158   DeclUpdateOffsetsMap::iterator UpdI = DeclUpdateOffsets.find(ID);
2159   if (UpdI != DeclUpdateOffsets.end()) {
2160     FileOffsetsTy &UpdateOffsets = UpdI->second;
2161     for (FileOffsetsTy::iterator
2162          I = UpdateOffsets.begin(), E = UpdateOffsets.end(); I != E; ++I) {
2163       ModuleFile *F = I->first;
2164       uint64_t Offset = I->second;
2165       llvm::BitstreamCursor &Cursor = F->DeclsCursor;
2166       SavedStreamPosition SavedPosition(Cursor);
2167       Cursor.JumpToBit(Offset);
2168       RecordData Record;
2169       unsigned Code = Cursor.ReadCode();
2170       unsigned RecCode = Cursor.ReadRecord(Code, Record);
2171       (void)RecCode;
2172       assert(RecCode == DECL_UPDATES && "Expected DECL_UPDATES record!");
2173 
2174       unsigned Idx = 0;
2175       ASTDeclReader Reader(*this, *F, ID, 0, Record, Idx);
2176       Reader.UpdateDecl(D, *F, Record);
2177     }
2178   }
2179 }
2180 
2181 namespace {
2182   struct CompareLocalRedeclarationsInfoToID {
2183     bool operator()(const LocalRedeclarationsInfo &X, DeclID Y) {
2184       return X.FirstID < Y;
2185     }
2186 
2187     bool operator()(DeclID X, const LocalRedeclarationsInfo &Y) {
2188       return X < Y.FirstID;
2189     }
2190 
2191     bool operator()(const LocalRedeclarationsInfo &X,
2192                     const LocalRedeclarationsInfo &Y) {
2193       return X.FirstID < Y.FirstID;
2194     }
2195     bool operator()(DeclID X, DeclID Y) {
2196       return X < Y;
2197     }
2198   };
2199 
2200   /// \brief Module visitor class that finds all of the redeclarations of a
2201   ///
2202   class RedeclChainVisitor {
2203     ASTReader &Reader;
2204     SmallVectorImpl<DeclID> &SearchDecls;
2205     llvm::SmallPtrSet<Decl *, 16> &Deserialized;
2206     GlobalDeclID CanonID;
2207     llvm::SmallVector<Decl *, 4> Chain;
2208 
2209   public:
2210     RedeclChainVisitor(ASTReader &Reader, SmallVectorImpl<DeclID> &SearchDecls,
2211                        llvm::SmallPtrSet<Decl *, 16> &Deserialized,
2212                        GlobalDeclID CanonID)
2213       : Reader(Reader), SearchDecls(SearchDecls), Deserialized(Deserialized),
2214         CanonID(CanonID) {
2215       for (unsigned I = 0, N = SearchDecls.size(); I != N; ++I)
2216         addToChain(Reader.GetDecl(SearchDecls[I]));
2217     }
2218 
2219     static bool visit(ModuleFile &M, bool Preorder, void *UserData) {
2220       if (Preorder)
2221         return false;
2222 
2223       return static_cast<RedeclChainVisitor *>(UserData)->visit(M);
2224     }
2225 
2226     void addToChain(Decl *D) {
2227       if (!D)
2228         return;
2229 
2230       if (Deserialized.erase(D))
2231         Chain.push_back(D);
2232     }
2233 
2234     void searchForID(ModuleFile &M, GlobalDeclID GlobalID) {
2235       // Map global ID of the first declaration down to the local ID
2236       // used in this module file.
2237       DeclID ID = Reader.mapGlobalIDToModuleFileGlobalID(M, GlobalID);
2238       if (!ID)
2239         return;
2240 
2241       // Perform a binary search to find the local redeclarations for this
2242       // declaration (if any).
2243       const LocalRedeclarationsInfo *Result
2244         = std::lower_bound(M.RedeclarationsMap,
2245                            M.RedeclarationsMap + M.LocalNumRedeclarationsInMap,
2246                            ID, CompareLocalRedeclarationsInfoToID());
2247       if (Result == M.RedeclarationsMap + M.LocalNumRedeclarationsInMap ||
2248           Result->FirstID != ID) {
2249         // If we have a previously-canonical singleton declaration that was
2250         // merged into another redeclaration chain, create a trivial chain
2251         // for this single declaration so that it will get wired into the
2252         // complete redeclaration chain.
2253         if (GlobalID != CanonID &&
2254             GlobalID - NUM_PREDEF_DECL_IDS >= M.BaseDeclID &&
2255             GlobalID - NUM_PREDEF_DECL_IDS < M.BaseDeclID + M.LocalNumDecls) {
2256           addToChain(Reader.GetDecl(GlobalID));
2257         }
2258 
2259         return;
2260       }
2261 
2262       // Dig out all of the redeclarations.
2263       unsigned Offset = Result->Offset;
2264       unsigned N = M.RedeclarationChains[Offset];
2265       M.RedeclarationChains[Offset++] = 0; // Don't try to deserialize again
2266       for (unsigned I = 0; I != N; ++I)
2267         addToChain(Reader.GetLocalDecl(M, M.RedeclarationChains[Offset++]));
2268     }
2269 
2270     bool visit(ModuleFile &M) {
2271       // Visit each of the declarations.
2272       for (unsigned I = 0, N = SearchDecls.size(); I != N; ++I)
2273         searchForID(M, SearchDecls[I]);
2274       return false;
2275     }
2276 
2277     ArrayRef<Decl *> getChain() const {
2278       return Chain;
2279     }
2280   };
2281 }
2282 
2283 void ASTReader::loadPendingDeclChain(serialization::GlobalDeclID ID) {
2284   Decl *D = GetDecl(ID);
2285   Decl *CanonDecl = D->getCanonicalDecl();
2286 
2287   // Determine the set of declaration IDs we'll be searching for.
2288   llvm::SmallVector<DeclID, 1> SearchDecls;
2289   GlobalDeclID CanonID = 0;
2290   if (D == CanonDecl) {
2291     SearchDecls.push_back(ID); // Always first.
2292     CanonID = ID;
2293   }
2294   MergedDeclsMap::iterator MergedPos = combineStoredMergedDecls(CanonDecl, ID);
2295   if (MergedPos != MergedDecls.end())
2296     SearchDecls.append(MergedPos->second.begin(), MergedPos->second.end());
2297 
2298   // Build up the list of redeclarations.
2299   RedeclChainVisitor Visitor(*this, SearchDecls, RedeclsDeserialized, CanonID);
2300   ModuleMgr.visitDepthFirst(&RedeclChainVisitor::visit, &Visitor);
2301 
2302   // Retrieve the chains.
2303   ArrayRef<Decl *> Chain = Visitor.getChain();
2304   if (Chain.empty())
2305     return;
2306 
2307   // Hook up the chains.
2308   Decl *MostRecent = CanonDecl->getMostRecentDecl();
2309   for (unsigned I = 0, N = Chain.size(); I != N; ++I) {
2310     if (Chain[I] == CanonDecl)
2311       continue;
2312 
2313     ASTDeclReader::attachPreviousDecl(Chain[I], MostRecent);
2314     MostRecent = Chain[I];
2315   }
2316 
2317   ASTDeclReader::attachLatestDecl(CanonDecl, MostRecent);
2318 }
2319 
2320 namespace {
2321   struct CompareObjCCategoriesInfo {
2322     bool operator()(const ObjCCategoriesInfo &X, DeclID Y) {
2323       return X.DefinitionID < Y;
2324     }
2325 
2326     bool operator()(DeclID X, const ObjCCategoriesInfo &Y) {
2327       return X < Y.DefinitionID;
2328     }
2329 
2330     bool operator()(const ObjCCategoriesInfo &X,
2331                     const ObjCCategoriesInfo &Y) {
2332       return X.DefinitionID < Y.DefinitionID;
2333     }
2334     bool operator()(DeclID X, DeclID Y) {
2335       return X < Y;
2336     }
2337   };
2338 
2339   /// \brief Given an ObjC interface, goes through the modules and links to the
2340   /// interface all the categories for it.
2341   class ObjCCategoriesVisitor {
2342     ASTReader &Reader;
2343     serialization::GlobalDeclID InterfaceID;
2344     ObjCInterfaceDecl *Interface;
2345     llvm::SmallPtrSet<ObjCCategoryDecl *, 16> &Deserialized;
2346     unsigned PreviousGeneration;
2347     ObjCCategoryDecl *Tail;
2348     llvm::DenseMap<DeclarationName, ObjCCategoryDecl *> NameCategoryMap;
2349 
2350     void add(ObjCCategoryDecl *Cat) {
2351       // Only process each category once.
2352       if (!Deserialized.erase(Cat))
2353         return;
2354 
2355       // Check for duplicate categories.
2356       if (Cat->getDeclName()) {
2357         ObjCCategoryDecl *&Existing = NameCategoryMap[Cat->getDeclName()];
2358         if (Existing &&
2359             Reader.getOwningModuleFile(Existing)
2360                                           != Reader.getOwningModuleFile(Cat)) {
2361           // FIXME: We should not warn for duplicates in diamond:
2362           //
2363           //   MT     //
2364           //  /  \    //
2365           // ML  MR   //
2366           //  \  /    //
2367           //   MB     //
2368           //
2369           // If there are duplicates in ML/MR, there will be warning when
2370           // creating MB *and* when importing MB. We should not warn when
2371           // importing.
2372           Reader.Diag(Cat->getLocation(), diag::warn_dup_category_def)
2373             << Interface->getDeclName() << Cat->getDeclName();
2374           Reader.Diag(Existing->getLocation(), diag::note_previous_definition);
2375         } else if (!Existing) {
2376           // Record this category.
2377           Existing = Cat;
2378         }
2379       }
2380 
2381       // Add this category to the end of the chain.
2382       if (Tail)
2383         ASTDeclReader::setNextObjCCategory(Tail, Cat);
2384       else
2385         Interface->setCategoryList(Cat);
2386       Tail = Cat;
2387     }
2388 
2389   public:
2390     ObjCCategoriesVisitor(ASTReader &Reader,
2391                           serialization::GlobalDeclID InterfaceID,
2392                           ObjCInterfaceDecl *Interface,
2393                         llvm::SmallPtrSet<ObjCCategoryDecl *, 16> &Deserialized,
2394                           unsigned PreviousGeneration)
2395       : Reader(Reader), InterfaceID(InterfaceID), Interface(Interface),
2396         Deserialized(Deserialized), PreviousGeneration(PreviousGeneration),
2397         Tail(0)
2398     {
2399       // Populate the name -> category map with the set of known categories.
2400       for (ObjCCategoryDecl *Cat = Interface->getCategoryList(); Cat;
2401            Cat = Cat->getNextClassCategory()) {
2402         if (Cat->getDeclName())
2403           NameCategoryMap[Cat->getDeclName()] = Cat;
2404 
2405         // Keep track of the tail of the category list.
2406         Tail = Cat;
2407       }
2408     }
2409 
2410     static bool visit(ModuleFile &M, void *UserData) {
2411       return static_cast<ObjCCategoriesVisitor *>(UserData)->visit(M);
2412     }
2413 
2414     bool visit(ModuleFile &M) {
2415       // If we've loaded all of the category information we care about from
2416       // this module file, we're done.
2417       if (M.Generation <= PreviousGeneration)
2418         return true;
2419 
2420       // Map global ID of the definition down to the local ID used in this
2421       // module file. If there is no such mapping, we'll find nothing here
2422       // (or in any module it imports).
2423       DeclID LocalID = Reader.mapGlobalIDToModuleFileGlobalID(M, InterfaceID);
2424       if (!LocalID)
2425         return true;
2426 
2427       // Perform a binary search to find the local redeclarations for this
2428       // declaration (if any).
2429       const ObjCCategoriesInfo *Result
2430         = std::lower_bound(M.ObjCCategoriesMap,
2431                            M.ObjCCategoriesMap + M.LocalNumObjCCategoriesInMap,
2432                            LocalID, CompareObjCCategoriesInfo());
2433       if (Result == M.ObjCCategoriesMap + M.LocalNumObjCCategoriesInMap ||
2434           Result->DefinitionID != LocalID) {
2435         // We didn't find anything. If the class definition is in this module
2436         // file, then the module files it depends on cannot have any categories,
2437         // so suppress further lookup.
2438         return Reader.isDeclIDFromModule(InterfaceID, M);
2439       }
2440 
2441       // We found something. Dig out all of the categories.
2442       unsigned Offset = Result->Offset;
2443       unsigned N = M.ObjCCategories[Offset];
2444       M.ObjCCategories[Offset++] = 0; // Don't try to deserialize again
2445       for (unsigned I = 0; I != N; ++I)
2446         add(cast_or_null<ObjCCategoryDecl>(
2447               Reader.GetLocalDecl(M, M.ObjCCategories[Offset++])));
2448       return true;
2449     }
2450   };
2451 }
2452 
2453 void ASTReader::loadObjCCategories(serialization::GlobalDeclID ID,
2454                                    ObjCInterfaceDecl *D,
2455                                    unsigned PreviousGeneration) {
2456   ObjCCategoriesVisitor Visitor(*this, ID, D, CategoriesDeserialized,
2457                                 PreviousGeneration);
2458   ModuleMgr.visit(ObjCCategoriesVisitor::visit, &Visitor);
2459 }
2460 
2461 void ASTDeclReader::UpdateDecl(Decl *D, ModuleFile &ModuleFile,
2462                                const RecordData &Record) {
2463   unsigned Idx = 0;
2464   while (Idx < Record.size()) {
2465     switch ((DeclUpdateKind)Record[Idx++]) {
2466     case UPD_CXX_ADDED_IMPLICIT_MEMBER:
2467       cast<CXXRecordDecl>(D)->addedMember(Reader.ReadDecl(ModuleFile, Record, Idx));
2468       break;
2469 
2470     case UPD_CXX_ADDED_TEMPLATE_SPECIALIZATION:
2471       // It will be added to the template's specializations set when loaded.
2472       (void)Reader.ReadDecl(ModuleFile, Record, Idx);
2473       break;
2474 
2475     case UPD_CXX_ADDED_ANONYMOUS_NAMESPACE: {
2476       NamespaceDecl *Anon
2477         = Reader.ReadDeclAs<NamespaceDecl>(ModuleFile, Record, Idx);
2478 
2479       // Each module has its own anonymous namespace, which is disjoint from
2480       // any other module's anonymous namespaces, so don't attach the anonymous
2481       // namespace at all.
2482       if (ModuleFile.Kind != MK_Module) {
2483         if (TranslationUnitDecl *TU = dyn_cast<TranslationUnitDecl>(D))
2484           TU->setAnonymousNamespace(Anon);
2485         else
2486           cast<NamespaceDecl>(D)->setAnonymousNamespace(Anon);
2487       }
2488       break;
2489     }
2490 
2491     case UPD_CXX_INSTANTIATED_STATIC_DATA_MEMBER:
2492       cast<VarDecl>(D)->getMemberSpecializationInfo()->setPointOfInstantiation(
2493           Reader.ReadSourceLocation(ModuleFile, Record, Idx));
2494       break;
2495     }
2496   }
2497 }
2498