1 //===- ASTReaderDecl.cpp - Decl Deserialization ---------------------------===//
2 //
3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4 // See https://llvm.org/LICENSE.txt for license information.
5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6 //
7 //===----------------------------------------------------------------------===//
8 //
9 // This file implements the ASTReader::readDeclRecord method, which is the
10 // entrypoint for loading a decl.
11 //
12 //===----------------------------------------------------------------------===//
13
14 #include "ASTCommon.h"
15 #include "ASTReaderInternals.h"
16 #include "clang/AST/ASTConcept.h"
17 #include "clang/AST/ASTContext.h"
18 #include "clang/AST/ASTStructuralEquivalence.h"
19 #include "clang/AST/Attr.h"
20 #include "clang/AST/AttrIterator.h"
21 #include "clang/AST/Decl.h"
22 #include "clang/AST/DeclBase.h"
23 #include "clang/AST/DeclCXX.h"
24 #include "clang/AST/DeclFriend.h"
25 #include "clang/AST/DeclObjC.h"
26 #include "clang/AST/DeclOpenMP.h"
27 #include "clang/AST/DeclTemplate.h"
28 #include "clang/AST/DeclVisitor.h"
29 #include "clang/AST/DeclarationName.h"
30 #include "clang/AST/Expr.h"
31 #include "clang/AST/ExternalASTSource.h"
32 #include "clang/AST/LambdaCapture.h"
33 #include "clang/AST/NestedNameSpecifier.h"
34 #include "clang/AST/OpenMPClause.h"
35 #include "clang/AST/Redeclarable.h"
36 #include "clang/AST/Stmt.h"
37 #include "clang/AST/TemplateBase.h"
38 #include "clang/AST/Type.h"
39 #include "clang/AST/UnresolvedSet.h"
40 #include "clang/Basic/AttrKinds.h"
41 #include "clang/Basic/DiagnosticSema.h"
42 #include "clang/Basic/ExceptionSpecificationType.h"
43 #include "clang/Basic/IdentifierTable.h"
44 #include "clang/Basic/LLVM.h"
45 #include "clang/Basic/Lambda.h"
46 #include "clang/Basic/LangOptions.h"
47 #include "clang/Basic/Linkage.h"
48 #include "clang/Basic/Module.h"
49 #include "clang/Basic/PragmaKinds.h"
50 #include "clang/Basic/SourceLocation.h"
51 #include "clang/Basic/Specifiers.h"
52 #include "clang/Sema/IdentifierResolver.h"
53 #include "clang/Serialization/ASTBitCodes.h"
54 #include "clang/Serialization/ASTRecordReader.h"
55 #include "clang/Serialization/ContinuousRangeMap.h"
56 #include "clang/Serialization/ModuleFile.h"
57 #include "llvm/ADT/DenseMap.h"
58 #include "llvm/ADT/FoldingSet.h"
59 #include "llvm/ADT/SmallPtrSet.h"
60 #include "llvm/ADT/SmallVector.h"
61 #include "llvm/ADT/iterator_range.h"
62 #include "llvm/Bitstream/BitstreamReader.h"
63 #include "llvm/Support/ErrorHandling.h"
64 #include "llvm/Support/SaveAndRestore.h"
65 #include <algorithm>
66 #include <cassert>
67 #include <cstdint>
68 #include <cstring>
69 #include <string>
70 #include <utility>
71
72 using namespace clang;
73 using namespace serialization;
74
75 //===----------------------------------------------------------------------===//
76 // Declaration Merging
77 //===----------------------------------------------------------------------===//
78
79 namespace {
80 /// Results from loading a RedeclarableDecl.
81 class RedeclarableResult {
82 Decl *MergeWith;
83 GlobalDeclID FirstID;
84 bool IsKeyDecl;
85
86 public:
RedeclarableResult(Decl * MergeWith,GlobalDeclID FirstID,bool IsKeyDecl)87 RedeclarableResult(Decl *MergeWith, GlobalDeclID FirstID, bool IsKeyDecl)
88 : MergeWith(MergeWith), FirstID(FirstID), IsKeyDecl(IsKeyDecl) {}
89
90 /// Retrieve the first ID.
getFirstID() const91 GlobalDeclID getFirstID() const { return FirstID; }
92
93 /// Is this declaration a key declaration?
isKeyDecl() const94 bool isKeyDecl() const { return IsKeyDecl; }
95
96 /// Get a known declaration that this should be merged with, if
97 /// any.
getKnownMergeTarget() const98 Decl *getKnownMergeTarget() const { return MergeWith; }
99 };
100 } // namespace
101
102 namespace clang {
103 class ASTDeclMerger {
104 ASTReader &Reader;
105
106 public:
ASTDeclMerger(ASTReader & Reader)107 ASTDeclMerger(ASTReader &Reader) : Reader(Reader) {}
108
109 void mergeLambda(CXXRecordDecl *D, RedeclarableResult &Redecl, Decl &Context,
110 unsigned Number);
111
112 /// \param KeyDeclID the decl ID of the key declaration \param D.
113 /// GlobalDeclID() if \param is not a key declaration.
114 /// See the comments of ASTReader::KeyDecls for the explanation
115 /// of key declaration.
116 template <typename T>
117 void mergeRedeclarableImpl(Redeclarable<T> *D, T *Existing,
118 GlobalDeclID KeyDeclID);
119
120 template <typename T>
mergeRedeclarable(Redeclarable<T> * D,T * Existing,RedeclarableResult & Redecl)121 void mergeRedeclarable(Redeclarable<T> *D, T *Existing,
122 RedeclarableResult &Redecl) {
123 mergeRedeclarableImpl(
124 D, Existing, Redecl.isKeyDecl() ? Redecl.getFirstID() : GlobalDeclID());
125 }
126
127 void mergeTemplatePattern(RedeclarableTemplateDecl *D,
128 RedeclarableTemplateDecl *Existing, bool IsKeyDecl);
129
130 void MergeDefinitionData(CXXRecordDecl *D,
131 struct CXXRecordDecl::DefinitionData &&NewDD);
132 void MergeDefinitionData(ObjCInterfaceDecl *D,
133 struct ObjCInterfaceDecl::DefinitionData &&NewDD);
134 void MergeDefinitionData(ObjCProtocolDecl *D,
135 struct ObjCProtocolDecl::DefinitionData &&NewDD);
136 };
137 } // namespace clang
138
139 //===----------------------------------------------------------------------===//
140 // Declaration deserialization
141 //===----------------------------------------------------------------------===//
142
143 namespace clang {
144 class ASTDeclReader : public DeclVisitor<ASTDeclReader, void> {
145 ASTReader &Reader;
146 ASTDeclMerger MergeImpl;
147 ASTRecordReader &Record;
148 ASTReader::RecordLocation Loc;
149 const GlobalDeclID ThisDeclID;
150 const SourceLocation ThisDeclLoc;
151
152 using RecordData = ASTReader::RecordData;
153
154 TypeID DeferredTypeID = 0;
155 unsigned AnonymousDeclNumber = 0;
156 GlobalDeclID NamedDeclForTagDecl = GlobalDeclID();
157 IdentifierInfo *TypedefNameForLinkage = nullptr;
158
159 /// A flag to carry the information for a decl from the entity is
160 /// used. We use it to delay the marking of the canonical decl as used until
161 /// the entire declaration is deserialized and merged.
162 bool IsDeclMarkedUsed = false;
163
164 uint64_t GetCurrentCursorOffset();
165
ReadLocalOffset()166 uint64_t ReadLocalOffset() {
167 uint64_t LocalOffset = Record.readInt();
168 assert(LocalOffset < Loc.Offset && "offset point after current record");
169 return LocalOffset ? Loc.Offset - LocalOffset : 0;
170 }
171
ReadGlobalOffset()172 uint64_t ReadGlobalOffset() {
173 uint64_t Local = ReadLocalOffset();
174 return Local ? Record.getGlobalBitOffset(Local) : 0;
175 }
176
readSourceLocation()177 SourceLocation readSourceLocation() { return Record.readSourceLocation(); }
178
readSourceRange()179 SourceRange readSourceRange() { return Record.readSourceRange(); }
180
readTypeSourceInfo()181 TypeSourceInfo *readTypeSourceInfo() { return Record.readTypeSourceInfo(); }
182
readDeclID()183 GlobalDeclID readDeclID() { return Record.readDeclID(); }
184
readString()185 std::string readString() { return Record.readString(); }
186
readDecl()187 Decl *readDecl() { return Record.readDecl(); }
188
readDeclAs()189 template <typename T> T *readDeclAs() { return Record.readDeclAs<T>(); }
190
readSubmoduleID()191 serialization::SubmoduleID readSubmoduleID() {
192 if (Record.getIdx() == Record.size())
193 return 0;
194
195 return Record.getGlobalSubmoduleID(Record.readInt());
196 }
197
readModule()198 Module *readModule() { return Record.getSubmodule(readSubmoduleID()); }
199
200 void ReadCXXRecordDefinition(CXXRecordDecl *D, bool Update,
201 Decl *LambdaContext = nullptr,
202 unsigned IndexInLambdaContext = 0);
203 void ReadCXXDefinitionData(struct CXXRecordDecl::DefinitionData &Data,
204 const CXXRecordDecl *D, Decl *LambdaContext,
205 unsigned IndexInLambdaContext);
206 void ReadObjCDefinitionData(struct ObjCInterfaceDecl::DefinitionData &Data);
207 void ReadObjCDefinitionData(struct ObjCProtocolDecl::DefinitionData &Data);
208
209 static DeclContext *getPrimaryDCForAnonymousDecl(DeclContext *LexicalDC);
210
211 static NamedDecl *getAnonymousDeclForMerging(ASTReader &Reader,
212 DeclContext *DC, unsigned Index);
213 static void setAnonymousDeclForMerging(ASTReader &Reader, DeclContext *DC,
214 unsigned Index, NamedDecl *D);
215
216 /// Commit to a primary definition of the class RD, which is known to be
217 /// a definition of the class. We might not have read the definition data
218 /// for it yet. If we haven't then allocate placeholder definition data
219 /// now too.
220 static CXXRecordDecl *getOrFakePrimaryClassDefinition(ASTReader &Reader,
221 CXXRecordDecl *RD);
222
223 /// Class used to capture the result of searching for an existing
224 /// declaration of a specific kind and name, along with the ability
225 /// to update the place where this result was found (the declaration
226 /// chain hanging off an identifier or the DeclContext we searched in)
227 /// if requested.
228 class FindExistingResult {
229 ASTReader &Reader;
230 NamedDecl *New = nullptr;
231 NamedDecl *Existing = nullptr;
232 bool AddResult = false;
233 unsigned AnonymousDeclNumber = 0;
234 IdentifierInfo *TypedefNameForLinkage = nullptr;
235
236 public:
FindExistingResult(ASTReader & Reader)237 FindExistingResult(ASTReader &Reader) : Reader(Reader) {}
238
FindExistingResult(ASTReader & Reader,NamedDecl * New,NamedDecl * Existing,unsigned AnonymousDeclNumber,IdentifierInfo * TypedefNameForLinkage)239 FindExistingResult(ASTReader &Reader, NamedDecl *New, NamedDecl *Existing,
240 unsigned AnonymousDeclNumber,
241 IdentifierInfo *TypedefNameForLinkage)
242 : Reader(Reader), New(New), Existing(Existing), AddResult(true),
243 AnonymousDeclNumber(AnonymousDeclNumber),
244 TypedefNameForLinkage(TypedefNameForLinkage) {}
245
FindExistingResult(FindExistingResult && Other)246 FindExistingResult(FindExistingResult &&Other)
247 : Reader(Other.Reader), New(Other.New), Existing(Other.Existing),
248 AddResult(Other.AddResult),
249 AnonymousDeclNumber(Other.AnonymousDeclNumber),
250 TypedefNameForLinkage(Other.TypedefNameForLinkage) {
251 Other.AddResult = false;
252 }
253
254 FindExistingResult &operator=(FindExistingResult &&) = delete;
255 ~FindExistingResult();
256
257 /// Suppress the addition of this result into the known set of
258 /// names.
suppress()259 void suppress() { AddResult = false; }
260
operator NamedDecl*() const261 operator NamedDecl *() const { return Existing; }
262
operator T*() const263 template <typename T> operator T *() const {
264 return dyn_cast_or_null<T>(Existing);
265 }
266 };
267
268 static DeclContext *getPrimaryContextForMerging(ASTReader &Reader,
269 DeclContext *DC);
270 FindExistingResult findExisting(NamedDecl *D);
271
272 public:
ASTDeclReader(ASTReader & Reader,ASTRecordReader & Record,ASTReader::RecordLocation Loc,GlobalDeclID thisDeclID,SourceLocation ThisDeclLoc)273 ASTDeclReader(ASTReader &Reader, ASTRecordReader &Record,
274 ASTReader::RecordLocation Loc, GlobalDeclID thisDeclID,
275 SourceLocation ThisDeclLoc)
276 : Reader(Reader), MergeImpl(Reader), Record(Record), Loc(Loc),
277 ThisDeclID(thisDeclID), ThisDeclLoc(ThisDeclLoc) {}
278
279 template <typename DeclT>
280 static Decl *getMostRecentDeclImpl(Redeclarable<DeclT> *D);
281 static Decl *getMostRecentDeclImpl(...);
282 static Decl *getMostRecentDecl(Decl *D);
283
284 template <typename DeclT>
285 static void attachPreviousDeclImpl(ASTReader &Reader, Redeclarable<DeclT> *D,
286 Decl *Previous, Decl *Canon);
287 static void attachPreviousDeclImpl(ASTReader &Reader, ...);
288 static void attachPreviousDecl(ASTReader &Reader, Decl *D, Decl *Previous,
289 Decl *Canon);
290
291 static void checkMultipleDefinitionInNamedModules(ASTReader &Reader, Decl *D,
292 Decl *Previous);
293
294 template <typename DeclT>
295 static void attachLatestDeclImpl(Redeclarable<DeclT> *D, Decl *Latest);
296 static void attachLatestDeclImpl(...);
297 static void attachLatestDecl(Decl *D, Decl *latest);
298
299 template <typename DeclT>
300 static void markIncompleteDeclChainImpl(Redeclarable<DeclT> *D);
301 static void markIncompleteDeclChainImpl(...);
302
303 void ReadSpecializations(ModuleFile &M, Decl *D,
304 llvm::BitstreamCursor &DeclsCursor, bool IsPartial);
305
306 void ReadFunctionDefinition(FunctionDecl *FD);
307 void Visit(Decl *D);
308
309 void UpdateDecl(Decl *D);
310
setNextObjCCategory(ObjCCategoryDecl * Cat,ObjCCategoryDecl * Next)311 static void setNextObjCCategory(ObjCCategoryDecl *Cat,
312 ObjCCategoryDecl *Next) {
313 Cat->NextClassCategory = Next;
314 }
315
316 void VisitDecl(Decl *D);
317 void VisitPragmaCommentDecl(PragmaCommentDecl *D);
318 void VisitPragmaDetectMismatchDecl(PragmaDetectMismatchDecl *D);
319 void VisitTranslationUnitDecl(TranslationUnitDecl *TU);
320 void VisitNamedDecl(NamedDecl *ND);
321 void VisitLabelDecl(LabelDecl *LD);
322 void VisitNamespaceDecl(NamespaceDecl *D);
323 void VisitHLSLBufferDecl(HLSLBufferDecl *D);
324 void VisitUsingDirectiveDecl(UsingDirectiveDecl *D);
325 void VisitNamespaceAliasDecl(NamespaceAliasDecl *D);
326 void VisitTypeDecl(TypeDecl *TD);
327 RedeclarableResult VisitTypedefNameDecl(TypedefNameDecl *TD);
328 void VisitTypedefDecl(TypedefDecl *TD);
329 void VisitTypeAliasDecl(TypeAliasDecl *TD);
330 void VisitUnresolvedUsingTypenameDecl(UnresolvedUsingTypenameDecl *D);
331 void VisitUnresolvedUsingIfExistsDecl(UnresolvedUsingIfExistsDecl *D);
332 RedeclarableResult VisitTagDecl(TagDecl *TD);
333 void VisitEnumDecl(EnumDecl *ED);
334 RedeclarableResult VisitRecordDeclImpl(RecordDecl *RD);
335 void VisitRecordDecl(RecordDecl *RD);
336 RedeclarableResult VisitCXXRecordDeclImpl(CXXRecordDecl *D);
VisitCXXRecordDecl(CXXRecordDecl * D)337 void VisitCXXRecordDecl(CXXRecordDecl *D) { VisitCXXRecordDeclImpl(D); }
338 RedeclarableResult
339 VisitClassTemplateSpecializationDeclImpl(ClassTemplateSpecializationDecl *D);
340
341 void
VisitClassTemplateSpecializationDecl(ClassTemplateSpecializationDecl * D)342 VisitClassTemplateSpecializationDecl(ClassTemplateSpecializationDecl *D) {
343 VisitClassTemplateSpecializationDeclImpl(D);
344 }
345
346 void VisitClassTemplatePartialSpecializationDecl(
347 ClassTemplatePartialSpecializationDecl *D);
348 RedeclarableResult
349 VisitVarTemplateSpecializationDeclImpl(VarTemplateSpecializationDecl *D);
350
VisitVarTemplateSpecializationDecl(VarTemplateSpecializationDecl * D)351 void VisitVarTemplateSpecializationDecl(VarTemplateSpecializationDecl *D) {
352 VisitVarTemplateSpecializationDeclImpl(D);
353 }
354
355 void VisitVarTemplatePartialSpecializationDecl(
356 VarTemplatePartialSpecializationDecl *D);
357 void VisitTemplateTypeParmDecl(TemplateTypeParmDecl *D);
358 void VisitValueDecl(ValueDecl *VD);
359 void VisitEnumConstantDecl(EnumConstantDecl *ECD);
360 void VisitUnresolvedUsingValueDecl(UnresolvedUsingValueDecl *D);
361 void VisitDeclaratorDecl(DeclaratorDecl *DD);
362 void VisitFunctionDecl(FunctionDecl *FD);
363 void VisitCXXDeductionGuideDecl(CXXDeductionGuideDecl *GD);
364 void VisitCXXMethodDecl(CXXMethodDecl *D);
365 void VisitCXXConstructorDecl(CXXConstructorDecl *D);
366 void VisitCXXDestructorDecl(CXXDestructorDecl *D);
367 void VisitCXXConversionDecl(CXXConversionDecl *D);
368 void VisitFieldDecl(FieldDecl *FD);
369 void VisitMSPropertyDecl(MSPropertyDecl *FD);
370 void VisitMSGuidDecl(MSGuidDecl *D);
371 void VisitUnnamedGlobalConstantDecl(UnnamedGlobalConstantDecl *D);
372 void VisitTemplateParamObjectDecl(TemplateParamObjectDecl *D);
373 void VisitIndirectFieldDecl(IndirectFieldDecl *FD);
374 RedeclarableResult VisitVarDeclImpl(VarDecl *D);
375 void ReadVarDeclInit(VarDecl *VD);
VisitVarDecl(VarDecl * VD)376 void VisitVarDecl(VarDecl *VD) { VisitVarDeclImpl(VD); }
377 void VisitImplicitParamDecl(ImplicitParamDecl *PD);
378 void VisitParmVarDecl(ParmVarDecl *PD);
379 void VisitDecompositionDecl(DecompositionDecl *DD);
380 void VisitBindingDecl(BindingDecl *BD);
381 void VisitNonTypeTemplateParmDecl(NonTypeTemplateParmDecl *D);
382 void VisitTemplateDecl(TemplateDecl *D);
383 void VisitConceptDecl(ConceptDecl *D);
384 void
385 VisitImplicitConceptSpecializationDecl(ImplicitConceptSpecializationDecl *D);
386 void VisitRequiresExprBodyDecl(RequiresExprBodyDecl *D);
387 RedeclarableResult VisitRedeclarableTemplateDecl(RedeclarableTemplateDecl *D);
388 void VisitClassTemplateDecl(ClassTemplateDecl *D);
389 void VisitBuiltinTemplateDecl(BuiltinTemplateDecl *D);
390 void VisitVarTemplateDecl(VarTemplateDecl *D);
391 void VisitFunctionTemplateDecl(FunctionTemplateDecl *D);
392 void VisitTemplateTemplateParmDecl(TemplateTemplateParmDecl *D);
393 void VisitTypeAliasTemplateDecl(TypeAliasTemplateDecl *D);
394 void VisitUsingDecl(UsingDecl *D);
395 void VisitUsingEnumDecl(UsingEnumDecl *D);
396 void VisitUsingPackDecl(UsingPackDecl *D);
397 void VisitUsingShadowDecl(UsingShadowDecl *D);
398 void VisitConstructorUsingShadowDecl(ConstructorUsingShadowDecl *D);
399 void VisitLinkageSpecDecl(LinkageSpecDecl *D);
400 void VisitExportDecl(ExportDecl *D);
401 void VisitFileScopeAsmDecl(FileScopeAsmDecl *AD);
402 void VisitTopLevelStmtDecl(TopLevelStmtDecl *D);
403 void VisitImportDecl(ImportDecl *D);
404 void VisitAccessSpecDecl(AccessSpecDecl *D);
405 void VisitFriendDecl(FriendDecl *D);
406 void VisitFriendTemplateDecl(FriendTemplateDecl *D);
407 void VisitStaticAssertDecl(StaticAssertDecl *D);
408 void VisitBlockDecl(BlockDecl *BD);
409 void VisitOutlinedFunctionDecl(OutlinedFunctionDecl *D);
410 void VisitCapturedDecl(CapturedDecl *CD);
411 void VisitEmptyDecl(EmptyDecl *D);
412 void VisitLifetimeExtendedTemporaryDecl(LifetimeExtendedTemporaryDecl *D);
413
414 void VisitOpenACCDeclareDecl(OpenACCDeclareDecl *D);
415 void VisitOpenACCRoutineDecl(OpenACCRoutineDecl *D);
416
417 void VisitDeclContext(DeclContext *DC, LookupBlockOffsets &Offsets);
418
419 template <typename T>
420 RedeclarableResult VisitRedeclarable(Redeclarable<T> *D);
421
422 template <typename T>
423 void mergeRedeclarable(Redeclarable<T> *D, RedeclarableResult &Redecl);
424
425 void mergeRedeclarableTemplate(RedeclarableTemplateDecl *D,
426 RedeclarableResult &Redecl);
427
428 template <typename T> void mergeMergeable(Mergeable<T> *D);
429
430 void mergeMergeable(LifetimeExtendedTemporaryDecl *D);
431
432 ObjCTypeParamList *ReadObjCTypeParamList();
433
434 // FIXME: Reorder according to DeclNodes.td?
435 void VisitObjCMethodDecl(ObjCMethodDecl *D);
436 void VisitObjCTypeParamDecl(ObjCTypeParamDecl *D);
437 void VisitObjCContainerDecl(ObjCContainerDecl *D);
438 void VisitObjCInterfaceDecl(ObjCInterfaceDecl *D);
439 void VisitObjCIvarDecl(ObjCIvarDecl *D);
440 void VisitObjCProtocolDecl(ObjCProtocolDecl *D);
441 void VisitObjCAtDefsFieldDecl(ObjCAtDefsFieldDecl *D);
442 void VisitObjCCategoryDecl(ObjCCategoryDecl *D);
443 void VisitObjCImplDecl(ObjCImplDecl *D);
444 void VisitObjCCategoryImplDecl(ObjCCategoryImplDecl *D);
445 void VisitObjCImplementationDecl(ObjCImplementationDecl *D);
446 void VisitObjCCompatibleAliasDecl(ObjCCompatibleAliasDecl *D);
447 void VisitObjCPropertyDecl(ObjCPropertyDecl *D);
448 void VisitObjCPropertyImplDecl(ObjCPropertyImplDecl *D);
449 void VisitOMPThreadPrivateDecl(OMPThreadPrivateDecl *D);
450 void VisitOMPAllocateDecl(OMPAllocateDecl *D);
451 void VisitOMPDeclareReductionDecl(OMPDeclareReductionDecl *D);
452 void VisitOMPDeclareMapperDecl(OMPDeclareMapperDecl *D);
453 void VisitOMPRequiresDecl(OMPRequiresDecl *D);
454 void VisitOMPCapturedExprDecl(OMPCapturedExprDecl *D);
455 };
456 } // namespace clang
457
458 namespace {
459
460 /// Iterator over the redeclarations of a declaration that have already
461 /// been merged into the same redeclaration chain.
462 template <typename DeclT> class MergedRedeclIterator {
463 DeclT *Start = nullptr;
464 DeclT *Canonical = nullptr;
465 DeclT *Current = nullptr;
466
467 public:
468 MergedRedeclIterator() = default;
MergedRedeclIterator(DeclT * Start)469 MergedRedeclIterator(DeclT *Start) : Start(Start), Current(Start) {}
470
operator *()471 DeclT *operator*() { return Current; }
472
operator ++()473 MergedRedeclIterator &operator++() {
474 if (Current->isFirstDecl()) {
475 Canonical = Current;
476 Current = Current->getMostRecentDecl();
477 } else
478 Current = Current->getPreviousDecl();
479
480 // If we started in the merged portion, we'll reach our start position
481 // eventually. Otherwise, we'll never reach it, but the second declaration
482 // we reached was the canonical declaration, so stop when we see that one
483 // again.
484 if (Current == Start || Current == Canonical)
485 Current = nullptr;
486 return *this;
487 }
488
operator !=(const MergedRedeclIterator & A,const MergedRedeclIterator & B)489 friend bool operator!=(const MergedRedeclIterator &A,
490 const MergedRedeclIterator &B) {
491 return A.Current != B.Current;
492 }
493 };
494
495 } // namespace
496
497 template <typename DeclT>
498 static llvm::iterator_range<MergedRedeclIterator<DeclT>>
merged_redecls(DeclT * D)499 merged_redecls(DeclT *D) {
500 return llvm::make_range(MergedRedeclIterator<DeclT>(D),
501 MergedRedeclIterator<DeclT>());
502 }
503
GetCurrentCursorOffset()504 uint64_t ASTDeclReader::GetCurrentCursorOffset() {
505 return Loc.F->DeclsCursor.GetCurrentBitNo() + Loc.F->GlobalBitOffset;
506 }
507
ReadFunctionDefinition(FunctionDecl * FD)508 void ASTDeclReader::ReadFunctionDefinition(FunctionDecl *FD) {
509 if (Record.readInt()) {
510 Reader.DefinitionSource[FD] =
511 Loc.F->Kind == ModuleKind::MK_MainFile ||
512 Reader.getContext().getLangOpts().BuildingPCHWithObjectFile;
513 }
514 if (auto *CD = dyn_cast<CXXConstructorDecl>(FD)) {
515 CD->setNumCtorInitializers(Record.readInt());
516 if (CD->getNumCtorInitializers())
517 CD->CtorInitializers = ReadGlobalOffset();
518 }
519 // Store the offset of the body so we can lazily load it later.
520 Reader.PendingBodies[FD] = GetCurrentCursorOffset();
521 // For now remember ThisDeclarationWasADefinition only for friend functions.
522 if (FD->getFriendObjectKind())
523 Reader.ThisDeclarationWasADefinitionSet.insert(FD);
524 }
525
Visit(Decl * D)526 void ASTDeclReader::Visit(Decl *D) {
527 DeclVisitor<ASTDeclReader, void>::Visit(D);
528
529 // At this point we have deserialized and merged the decl and it is safe to
530 // update its canonical decl to signal that the entire entity is used.
531 D->getCanonicalDecl()->Used |= IsDeclMarkedUsed;
532 IsDeclMarkedUsed = false;
533
534 if (auto *DD = dyn_cast<DeclaratorDecl>(D)) {
535 if (auto *TInfo = DD->getTypeSourceInfo())
536 Record.readTypeLoc(TInfo->getTypeLoc());
537 }
538
539 if (auto *TD = dyn_cast<TypeDecl>(D)) {
540 // We have a fully initialized TypeDecl. Read its type now.
541 TD->setTypeForDecl(Reader.GetType(DeferredTypeID).getTypePtrOrNull());
542
543 // If this is a tag declaration with a typedef name for linkage, it's safe
544 // to load that typedef now.
545 if (NamedDeclForTagDecl.isValid())
546 cast<TagDecl>(D)->TypedefNameDeclOrQualifier =
547 cast<TypedefNameDecl>(Reader.GetDecl(NamedDeclForTagDecl));
548 } else if (auto *ID = dyn_cast<ObjCInterfaceDecl>(D)) {
549 // if we have a fully initialized TypeDecl, we can safely read its type now.
550 ID->TypeForDecl = Reader.GetType(DeferredTypeID).getTypePtrOrNull();
551 } else if (auto *FD = dyn_cast<FunctionDecl>(D)) {
552 // FunctionDecl's body was written last after all other Stmts/Exprs.
553 if (Record.readInt())
554 ReadFunctionDefinition(FD);
555 } else if (auto *VD = dyn_cast<VarDecl>(D)) {
556 ReadVarDeclInit(VD);
557 } else if (auto *FD = dyn_cast<FieldDecl>(D)) {
558 if (FD->hasInClassInitializer() && Record.readInt()) {
559 FD->setLazyInClassInitializer(LazyDeclStmtPtr(GetCurrentCursorOffset()));
560 }
561 }
562 }
563
VisitDecl(Decl * D)564 void ASTDeclReader::VisitDecl(Decl *D) {
565 BitsUnpacker DeclBits(Record.readInt());
566 auto ModuleOwnership =
567 (Decl::ModuleOwnershipKind)DeclBits.getNextBits(/*Width=*/3);
568 D->setReferenced(DeclBits.getNextBit());
569 D->Used = DeclBits.getNextBit();
570 IsDeclMarkedUsed |= D->Used;
571 D->setAccess((AccessSpecifier)DeclBits.getNextBits(/*Width=*/2));
572 D->setImplicit(DeclBits.getNextBit());
573 bool HasStandaloneLexicalDC = DeclBits.getNextBit();
574 bool HasAttrs = DeclBits.getNextBit();
575 D->setTopLevelDeclInObjCContainer(DeclBits.getNextBit());
576 D->InvalidDecl = DeclBits.getNextBit();
577 D->FromASTFile = true;
578
579 if (D->isTemplateParameter() || D->isTemplateParameterPack() ||
580 isa<ParmVarDecl, ObjCTypeParamDecl>(D)) {
581 // We don't want to deserialize the DeclContext of a template
582 // parameter or of a parameter of a function template immediately. These
583 // entities might be used in the formulation of its DeclContext (for
584 // example, a function parameter can be used in decltype() in trailing
585 // return type of the function). Use the translation unit DeclContext as a
586 // placeholder.
587 GlobalDeclID SemaDCIDForTemplateParmDecl = readDeclID();
588 GlobalDeclID LexicalDCIDForTemplateParmDecl =
589 HasStandaloneLexicalDC ? readDeclID() : GlobalDeclID();
590 if (LexicalDCIDForTemplateParmDecl.isInvalid())
591 LexicalDCIDForTemplateParmDecl = SemaDCIDForTemplateParmDecl;
592 Reader.addPendingDeclContextInfo(D,
593 SemaDCIDForTemplateParmDecl,
594 LexicalDCIDForTemplateParmDecl);
595 D->setDeclContext(Reader.getContext().getTranslationUnitDecl());
596 } else {
597 auto *SemaDC = readDeclAs<DeclContext>();
598 auto *LexicalDC =
599 HasStandaloneLexicalDC ? readDeclAs<DeclContext>() : nullptr;
600 if (!LexicalDC)
601 LexicalDC = SemaDC;
602 // If the context is a class, we might not have actually merged it yet, in
603 // the case where the definition comes from an update record.
604 DeclContext *MergedSemaDC;
605 if (auto *RD = dyn_cast<CXXRecordDecl>(SemaDC))
606 MergedSemaDC = getOrFakePrimaryClassDefinition(Reader, RD);
607 else
608 MergedSemaDC = Reader.MergedDeclContexts.lookup(SemaDC);
609 // Avoid calling setLexicalDeclContext() directly because it uses
610 // Decl::getASTContext() internally which is unsafe during derialization.
611 D->setDeclContextsImpl(MergedSemaDC ? MergedSemaDC : SemaDC, LexicalDC,
612 Reader.getContext());
613 }
614 D->setLocation(ThisDeclLoc);
615
616 if (HasAttrs) {
617 AttrVec Attrs;
618 Record.readAttributes(Attrs);
619 // Avoid calling setAttrs() directly because it uses Decl::getASTContext()
620 // internally which is unsafe during derialization.
621 D->setAttrsImpl(Attrs, Reader.getContext());
622 }
623
624 // Determine whether this declaration is part of a (sub)module. If so, it
625 // may not yet be visible.
626 bool ModulePrivate =
627 (ModuleOwnership == Decl::ModuleOwnershipKind::ModulePrivate);
628 if (unsigned SubmoduleID = readSubmoduleID()) {
629 switch (ModuleOwnership) {
630 case Decl::ModuleOwnershipKind::Visible:
631 ModuleOwnership = Decl::ModuleOwnershipKind::VisibleWhenImported;
632 break;
633 case Decl::ModuleOwnershipKind::Unowned:
634 case Decl::ModuleOwnershipKind::VisibleWhenImported:
635 case Decl::ModuleOwnershipKind::ReachableWhenImported:
636 case Decl::ModuleOwnershipKind::ModulePrivate:
637 break;
638 }
639
640 D->setModuleOwnershipKind(ModuleOwnership);
641 // Store the owning submodule ID in the declaration.
642 D->setOwningModuleID(SubmoduleID);
643
644 if (ModulePrivate) {
645 // Module-private declarations are never visible, so there is no work to
646 // do.
647 } else if (Reader.getContext().getLangOpts().ModulesLocalVisibility) {
648 // If local visibility is being tracked, this declaration will become
649 // hidden and visible as the owning module does.
650 } else if (Module *Owner = Reader.getSubmodule(SubmoduleID)) {
651 // Mark the declaration as visible when its owning module becomes visible.
652 if (Owner->NameVisibility == Module::AllVisible)
653 D->setVisibleDespiteOwningModule();
654 else
655 Reader.HiddenNamesMap[Owner].push_back(D);
656 }
657 } else if (ModulePrivate) {
658 D->setModuleOwnershipKind(Decl::ModuleOwnershipKind::ModulePrivate);
659 }
660 }
661
VisitPragmaCommentDecl(PragmaCommentDecl * D)662 void ASTDeclReader::VisitPragmaCommentDecl(PragmaCommentDecl *D) {
663 VisitDecl(D);
664 D->setLocation(readSourceLocation());
665 D->CommentKind = (PragmaMSCommentKind)Record.readInt();
666 std::string Arg = readString();
667 memcpy(D->getTrailingObjects(), Arg.data(), Arg.size());
668 D->getTrailingObjects()[Arg.size()] = '\0';
669 }
670
VisitPragmaDetectMismatchDecl(PragmaDetectMismatchDecl * D)671 void ASTDeclReader::VisitPragmaDetectMismatchDecl(PragmaDetectMismatchDecl *D) {
672 VisitDecl(D);
673 D->setLocation(readSourceLocation());
674 std::string Name = readString();
675 memcpy(D->getTrailingObjects(), Name.data(), Name.size());
676 D->getTrailingObjects()[Name.size()] = '\0';
677
678 D->ValueStart = Name.size() + 1;
679 std::string Value = readString();
680 memcpy(D->getTrailingObjects() + D->ValueStart, Value.data(), Value.size());
681 D->getTrailingObjects()[D->ValueStart + Value.size()] = '\0';
682 }
683
VisitTranslationUnitDecl(TranslationUnitDecl * TU)684 void ASTDeclReader::VisitTranslationUnitDecl(TranslationUnitDecl *TU) {
685 llvm_unreachable("Translation units are not serialized");
686 }
687
VisitNamedDecl(NamedDecl * ND)688 void ASTDeclReader::VisitNamedDecl(NamedDecl *ND) {
689 VisitDecl(ND);
690 ND->setDeclName(Record.readDeclarationName());
691 AnonymousDeclNumber = Record.readInt();
692 }
693
VisitTypeDecl(TypeDecl * TD)694 void ASTDeclReader::VisitTypeDecl(TypeDecl *TD) {
695 VisitNamedDecl(TD);
696 TD->setLocStart(readSourceLocation());
697 // Delay type reading until after we have fully initialized the decl.
698 DeferredTypeID = Record.getGlobalTypeID(Record.readInt());
699 }
700
VisitTypedefNameDecl(TypedefNameDecl * TD)701 RedeclarableResult ASTDeclReader::VisitTypedefNameDecl(TypedefNameDecl *TD) {
702 RedeclarableResult Redecl = VisitRedeclarable(TD);
703 VisitTypeDecl(TD);
704 TypeSourceInfo *TInfo = readTypeSourceInfo();
705 if (Record.readInt()) { // isModed
706 QualType modedT = Record.readType();
707 TD->setModedTypeSourceInfo(TInfo, modedT);
708 } else
709 TD->setTypeSourceInfo(TInfo);
710 // Read and discard the declaration for which this is a typedef name for
711 // linkage, if it exists. We cannot rely on our type to pull in this decl,
712 // because it might have been merged with a type from another module and
713 // thus might not refer to our version of the declaration.
714 readDecl();
715 return Redecl;
716 }
717
VisitTypedefDecl(TypedefDecl * TD)718 void ASTDeclReader::VisitTypedefDecl(TypedefDecl *TD) {
719 RedeclarableResult Redecl = VisitTypedefNameDecl(TD);
720 mergeRedeclarable(TD, Redecl);
721 }
722
VisitTypeAliasDecl(TypeAliasDecl * TD)723 void ASTDeclReader::VisitTypeAliasDecl(TypeAliasDecl *TD) {
724 RedeclarableResult Redecl = VisitTypedefNameDecl(TD);
725 if (auto *Template = readDeclAs<TypeAliasTemplateDecl>())
726 // Merged when we merge the template.
727 TD->setDescribedAliasTemplate(Template);
728 else
729 mergeRedeclarable(TD, Redecl);
730 }
731
VisitTagDecl(TagDecl * TD)732 RedeclarableResult ASTDeclReader::VisitTagDecl(TagDecl *TD) {
733 RedeclarableResult Redecl = VisitRedeclarable(TD);
734 VisitTypeDecl(TD);
735
736 TD->IdentifierNamespace = Record.readInt();
737
738 BitsUnpacker TagDeclBits(Record.readInt());
739 TD->setTagKind(
740 static_cast<TagTypeKind>(TagDeclBits.getNextBits(/*Width=*/3)));
741 TD->setCompleteDefinition(TagDeclBits.getNextBit());
742 TD->setEmbeddedInDeclarator(TagDeclBits.getNextBit());
743 TD->setFreeStanding(TagDeclBits.getNextBit());
744 TD->setCompleteDefinitionRequired(TagDeclBits.getNextBit());
745 TD->setBraceRange(readSourceRange());
746
747 switch (TagDeclBits.getNextBits(/*Width=*/2)) {
748 case 0:
749 break;
750 case 1: { // ExtInfo
751 auto *Info = new (Reader.getContext()) TagDecl::ExtInfo();
752 Record.readQualifierInfo(*Info);
753 TD->TypedefNameDeclOrQualifier = Info;
754 break;
755 }
756 case 2: // TypedefNameForAnonDecl
757 NamedDeclForTagDecl = readDeclID();
758 TypedefNameForLinkage = Record.readIdentifier();
759 break;
760 default:
761 llvm_unreachable("unexpected tag info kind");
762 }
763
764 if (!isa<CXXRecordDecl>(TD))
765 mergeRedeclarable(TD, Redecl);
766 return Redecl;
767 }
768
VisitEnumDecl(EnumDecl * ED)769 void ASTDeclReader::VisitEnumDecl(EnumDecl *ED) {
770 VisitTagDecl(ED);
771 if (TypeSourceInfo *TI = readTypeSourceInfo())
772 ED->setIntegerTypeSourceInfo(TI);
773 else
774 ED->setIntegerType(Record.readType());
775 ED->setPromotionType(Record.readType());
776
777 BitsUnpacker EnumDeclBits(Record.readInt());
778 ED->setNumPositiveBits(EnumDeclBits.getNextBits(/*Width=*/8));
779 ED->setNumNegativeBits(EnumDeclBits.getNextBits(/*Width=*/8));
780 ED->setScoped(EnumDeclBits.getNextBit());
781 ED->setScopedUsingClassTag(EnumDeclBits.getNextBit());
782 ED->setFixed(EnumDeclBits.getNextBit());
783
784 ED->setHasODRHash(true);
785 ED->ODRHash = Record.readInt();
786
787 // If this is a definition subject to the ODR, and we already have a
788 // definition, merge this one into it.
789 if (ED->isCompleteDefinition() && Reader.getContext().getLangOpts().Modules) {
790 EnumDecl *&OldDef = Reader.EnumDefinitions[ED->getCanonicalDecl()];
791 if (!OldDef) {
792 // This is the first time we've seen an imported definition. Look for a
793 // local definition before deciding that we are the first definition.
794 for (auto *D : merged_redecls(ED->getCanonicalDecl())) {
795 if (!D->isFromASTFile() && D->isCompleteDefinition()) {
796 OldDef = D;
797 break;
798 }
799 }
800 }
801 if (OldDef) {
802 Reader.MergedDeclContexts.insert(std::make_pair(ED, OldDef));
803 ED->demoteThisDefinitionToDeclaration();
804 Reader.mergeDefinitionVisibility(OldDef, ED);
805 // We don't want to check the ODR hash value for declarations from global
806 // module fragment.
807 if (!shouldSkipCheckingODR(ED) && !shouldSkipCheckingODR(OldDef) &&
808 OldDef->getODRHash() != ED->getODRHash())
809 Reader.PendingEnumOdrMergeFailures[OldDef].push_back(ED);
810 } else {
811 OldDef = ED;
812 }
813 }
814
815 if (auto *InstED = readDeclAs<EnumDecl>()) {
816 auto TSK = (TemplateSpecializationKind)Record.readInt();
817 SourceLocation POI = readSourceLocation();
818 ED->setInstantiationOfMemberEnum(Reader.getContext(), InstED, TSK);
819 ED->getMemberSpecializationInfo()->setPointOfInstantiation(POI);
820 }
821 }
822
VisitRecordDeclImpl(RecordDecl * RD)823 RedeclarableResult ASTDeclReader::VisitRecordDeclImpl(RecordDecl *RD) {
824 RedeclarableResult Redecl = VisitTagDecl(RD);
825
826 BitsUnpacker RecordDeclBits(Record.readInt());
827 RD->setHasFlexibleArrayMember(RecordDeclBits.getNextBit());
828 RD->setAnonymousStructOrUnion(RecordDeclBits.getNextBit());
829 RD->setHasObjectMember(RecordDeclBits.getNextBit());
830 RD->setHasVolatileMember(RecordDeclBits.getNextBit());
831 RD->setNonTrivialToPrimitiveDefaultInitialize(RecordDeclBits.getNextBit());
832 RD->setNonTrivialToPrimitiveCopy(RecordDeclBits.getNextBit());
833 RD->setNonTrivialToPrimitiveDestroy(RecordDeclBits.getNextBit());
834 RD->setHasNonTrivialToPrimitiveDefaultInitializeCUnion(
835 RecordDeclBits.getNextBit());
836 RD->setHasNonTrivialToPrimitiveDestructCUnion(RecordDeclBits.getNextBit());
837 RD->setHasNonTrivialToPrimitiveCopyCUnion(RecordDeclBits.getNextBit());
838 RD->setHasUninitializedExplicitInitFields(RecordDeclBits.getNextBit());
839 RD->setParamDestroyedInCallee(RecordDeclBits.getNextBit());
840 RD->setArgPassingRestrictions(
841 (RecordArgPassingKind)RecordDeclBits.getNextBits(/*Width=*/2));
842 return Redecl;
843 }
844
VisitRecordDecl(RecordDecl * RD)845 void ASTDeclReader::VisitRecordDecl(RecordDecl *RD) {
846 VisitRecordDeclImpl(RD);
847 RD->setODRHash(Record.readInt());
848
849 // Maintain the invariant of a redeclaration chain containing only
850 // a single definition.
851 if (RD->isCompleteDefinition()) {
852 RecordDecl *Canon = static_cast<RecordDecl *>(RD->getCanonicalDecl());
853 RecordDecl *&OldDef = Reader.RecordDefinitions[Canon];
854 if (!OldDef) {
855 // This is the first time we've seen an imported definition. Look for a
856 // local definition before deciding that we are the first definition.
857 for (auto *D : merged_redecls(Canon)) {
858 if (!D->isFromASTFile() && D->isCompleteDefinition()) {
859 OldDef = D;
860 break;
861 }
862 }
863 }
864 if (OldDef) {
865 Reader.MergedDeclContexts.insert(std::make_pair(RD, OldDef));
866 RD->demoteThisDefinitionToDeclaration();
867 Reader.mergeDefinitionVisibility(OldDef, RD);
868 if (OldDef->getODRHash() != RD->getODRHash())
869 Reader.PendingRecordOdrMergeFailures[OldDef].push_back(RD);
870 } else {
871 OldDef = RD;
872 }
873 }
874 }
875
VisitValueDecl(ValueDecl * VD)876 void ASTDeclReader::VisitValueDecl(ValueDecl *VD) {
877 VisitNamedDecl(VD);
878 // For function or variable declarations, defer reading the type in case the
879 // declaration has a deduced type that references an entity declared within
880 // the function definition or variable initializer.
881 if (isa<FunctionDecl, VarDecl>(VD))
882 DeferredTypeID = Record.getGlobalTypeID(Record.readInt());
883 else
884 VD->setType(Record.readType());
885 }
886
VisitEnumConstantDecl(EnumConstantDecl * ECD)887 void ASTDeclReader::VisitEnumConstantDecl(EnumConstantDecl *ECD) {
888 VisitValueDecl(ECD);
889 if (Record.readInt())
890 ECD->setInitExpr(Record.readExpr());
891 ECD->setInitVal(Reader.getContext(), Record.readAPSInt());
892 mergeMergeable(ECD);
893 }
894
VisitDeclaratorDecl(DeclaratorDecl * DD)895 void ASTDeclReader::VisitDeclaratorDecl(DeclaratorDecl *DD) {
896 VisitValueDecl(DD);
897 DD->setInnerLocStart(readSourceLocation());
898 if (Record.readInt()) { // hasExtInfo
899 auto *Info = new (Reader.getContext()) DeclaratorDecl::ExtInfo();
900 Record.readQualifierInfo(*Info);
901 Info->TrailingRequiresClause = AssociatedConstraint(
902 Record.readExpr(),
903 UnsignedOrNone::fromInternalRepresentation(Record.readUInt32()));
904 DD->DeclInfo = Info;
905 }
906 QualType TSIType = Record.readType();
907 DD->setTypeSourceInfo(
908 TSIType.isNull() ? nullptr
909 : Reader.getContext().CreateTypeSourceInfo(TSIType));
910 }
911
VisitFunctionDecl(FunctionDecl * FD)912 void ASTDeclReader::VisitFunctionDecl(FunctionDecl *FD) {
913 RedeclarableResult Redecl = VisitRedeclarable(FD);
914
915 FunctionDecl *Existing = nullptr;
916
917 switch ((FunctionDecl::TemplatedKind)Record.readInt()) {
918 case FunctionDecl::TK_NonTemplate:
919 break;
920 case FunctionDecl::TK_DependentNonTemplate:
921 FD->setInstantiatedFromDecl(readDeclAs<FunctionDecl>());
922 break;
923 case FunctionDecl::TK_FunctionTemplate: {
924 auto *Template = readDeclAs<FunctionTemplateDecl>();
925 Template->init(FD);
926 FD->setDescribedFunctionTemplate(Template);
927 break;
928 }
929 case FunctionDecl::TK_MemberSpecialization: {
930 auto *InstFD = readDeclAs<FunctionDecl>();
931 auto TSK = (TemplateSpecializationKind)Record.readInt();
932 SourceLocation POI = readSourceLocation();
933 FD->setInstantiationOfMemberFunction(Reader.getContext(), InstFD, TSK);
934 FD->getMemberSpecializationInfo()->setPointOfInstantiation(POI);
935 break;
936 }
937 case FunctionDecl::TK_FunctionTemplateSpecialization: {
938 auto *Template = readDeclAs<FunctionTemplateDecl>();
939 auto TSK = (TemplateSpecializationKind)Record.readInt();
940
941 // Template arguments.
942 SmallVector<TemplateArgument, 8> TemplArgs;
943 Record.readTemplateArgumentList(TemplArgs, /*Canonicalize*/ true);
944
945 // Template args as written.
946 TemplateArgumentListInfo TemplArgsWritten;
947 bool HasTemplateArgumentsAsWritten = Record.readBool();
948 if (HasTemplateArgumentsAsWritten)
949 Record.readTemplateArgumentListInfo(TemplArgsWritten);
950
951 SourceLocation POI = readSourceLocation();
952
953 ASTContext &C = Reader.getContext();
954 TemplateArgumentList *TemplArgList =
955 TemplateArgumentList::CreateCopy(C, TemplArgs);
956
957 MemberSpecializationInfo *MSInfo = nullptr;
958 if (Record.readInt()) {
959 auto *FD = readDeclAs<FunctionDecl>();
960 auto TSK = (TemplateSpecializationKind)Record.readInt();
961 SourceLocation POI = readSourceLocation();
962
963 MSInfo = new (C) MemberSpecializationInfo(FD, TSK);
964 MSInfo->setPointOfInstantiation(POI);
965 }
966
967 FunctionTemplateSpecializationInfo *FTInfo =
968 FunctionTemplateSpecializationInfo::Create(
969 C, FD, Template, TSK, TemplArgList,
970 HasTemplateArgumentsAsWritten ? &TemplArgsWritten : nullptr, POI,
971 MSInfo);
972 FD->TemplateOrSpecialization = FTInfo;
973
974 if (FD->isCanonicalDecl()) { // if canonical add to template's set.
975 // The template that contains the specializations set. It's not safe to
976 // use getCanonicalDecl on Template since it may still be initializing.
977 auto *CanonTemplate = readDeclAs<FunctionTemplateDecl>();
978 // Get the InsertPos by FindNodeOrInsertPos() instead of calling
979 // InsertNode(FTInfo) directly to avoid the getASTContext() call in
980 // FunctionTemplateSpecializationInfo's Profile().
981 // We avoid getASTContext because a decl in the parent hierarchy may
982 // be initializing.
983 llvm::FoldingSetNodeID ID;
984 FunctionTemplateSpecializationInfo::Profile(ID, TemplArgs, C);
985 void *InsertPos = nullptr;
986 FunctionTemplateDecl::Common *CommonPtr = CanonTemplate->getCommonPtr();
987 FunctionTemplateSpecializationInfo *ExistingInfo =
988 CommonPtr->Specializations.FindNodeOrInsertPos(ID, InsertPos);
989 if (InsertPos)
990 CommonPtr->Specializations.InsertNode(FTInfo, InsertPos);
991 else {
992 Existing = ExistingInfo->getFunction();
993 }
994 }
995 break;
996 }
997 case FunctionDecl::TK_DependentFunctionTemplateSpecialization: {
998 // Templates.
999 UnresolvedSet<8> Candidates;
1000 unsigned NumCandidates = Record.readInt();
1001 while (NumCandidates--)
1002 Candidates.addDecl(readDeclAs<NamedDecl>());
1003
1004 // Templates args.
1005 TemplateArgumentListInfo TemplArgsWritten;
1006 bool HasTemplateArgumentsAsWritten = Record.readBool();
1007 if (HasTemplateArgumentsAsWritten)
1008 Record.readTemplateArgumentListInfo(TemplArgsWritten);
1009
1010 FD->setDependentTemplateSpecialization(
1011 Reader.getContext(), Candidates,
1012 HasTemplateArgumentsAsWritten ? &TemplArgsWritten : nullptr);
1013 // These are not merged; we don't need to merge redeclarations of dependent
1014 // template friends.
1015 break;
1016 }
1017 }
1018
1019 VisitDeclaratorDecl(FD);
1020
1021 // Attach a type to this function. Use the real type if possible, but fall
1022 // back to the type as written if it involves a deduced return type.
1023 if (FD->getTypeSourceInfo() && FD->getTypeSourceInfo()
1024 ->getType()
1025 ->castAs<FunctionType>()
1026 ->getReturnType()
1027 ->getContainedAutoType()) {
1028 // We'll set up the real type in Visit, once we've finished loading the
1029 // function.
1030 FD->setType(FD->getTypeSourceInfo()->getType());
1031 Reader.PendingDeducedFunctionTypes.push_back({FD, DeferredTypeID});
1032 } else {
1033 FD->setType(Reader.GetType(DeferredTypeID));
1034 }
1035 DeferredTypeID = 0;
1036
1037 FD->DNLoc = Record.readDeclarationNameLoc(FD->getDeclName());
1038 FD->IdentifierNamespace = Record.readInt();
1039
1040 // FunctionDecl's body is handled last at ASTDeclReader::Visit,
1041 // after everything else is read.
1042 BitsUnpacker FunctionDeclBits(Record.readInt());
1043
1044 FD->setCachedLinkage((Linkage)FunctionDeclBits.getNextBits(/*Width=*/3));
1045 FD->setStorageClass((StorageClass)FunctionDeclBits.getNextBits(/*Width=*/3));
1046 FD->setInlineSpecified(FunctionDeclBits.getNextBit());
1047 FD->setImplicitlyInline(FunctionDeclBits.getNextBit());
1048 FD->setHasSkippedBody(FunctionDeclBits.getNextBit());
1049 FD->setVirtualAsWritten(FunctionDeclBits.getNextBit());
1050 // We defer calling `FunctionDecl::setPure()` here as for methods of
1051 // `CXXTemplateSpecializationDecl`s, we may not have connected up the
1052 // definition (which is required for `setPure`).
1053 const bool Pure = FunctionDeclBits.getNextBit();
1054 FD->setHasInheritedPrototype(FunctionDeclBits.getNextBit());
1055 FD->setHasWrittenPrototype(FunctionDeclBits.getNextBit());
1056 FD->setDeletedAsWritten(FunctionDeclBits.getNextBit());
1057 FD->setTrivial(FunctionDeclBits.getNextBit());
1058 FD->setTrivialForCall(FunctionDeclBits.getNextBit());
1059 FD->setDefaulted(FunctionDeclBits.getNextBit());
1060 FD->setExplicitlyDefaulted(FunctionDeclBits.getNextBit());
1061 FD->setIneligibleOrNotSelected(FunctionDeclBits.getNextBit());
1062 FD->setConstexprKind(
1063 (ConstexprSpecKind)FunctionDeclBits.getNextBits(/*Width=*/2));
1064 FD->setHasImplicitReturnZero(FunctionDeclBits.getNextBit());
1065 FD->setIsMultiVersion(FunctionDeclBits.getNextBit());
1066 FD->setLateTemplateParsed(FunctionDeclBits.getNextBit());
1067 FD->setInstantiatedFromMemberTemplate(FunctionDeclBits.getNextBit());
1068 FD->setFriendConstraintRefersToEnclosingTemplate(
1069 FunctionDeclBits.getNextBit());
1070 FD->setUsesSEHTry(FunctionDeclBits.getNextBit());
1071 FD->setIsDestroyingOperatorDelete(FunctionDeclBits.getNextBit());
1072 FD->setIsTypeAwareOperatorNewOrDelete(FunctionDeclBits.getNextBit());
1073
1074 FD->EndRangeLoc = readSourceLocation();
1075 if (FD->isExplicitlyDefaulted())
1076 FD->setDefaultLoc(readSourceLocation());
1077
1078 FD->ODRHash = Record.readInt();
1079 FD->setHasODRHash(true);
1080
1081 if (FD->isDefaulted() || FD->isDeletedAsWritten()) {
1082 // If 'Info' is nonzero, we need to read an DefaultedOrDeletedInfo; if,
1083 // additionally, the second bit is also set, we also need to read
1084 // a DeletedMessage for the DefaultedOrDeletedInfo.
1085 if (auto Info = Record.readInt()) {
1086 bool HasMessage = Info & 2;
1087 StringLiteral *DeletedMessage =
1088 HasMessage ? cast<StringLiteral>(Record.readExpr()) : nullptr;
1089
1090 unsigned NumLookups = Record.readInt();
1091 SmallVector<DeclAccessPair, 8> Lookups;
1092 for (unsigned I = 0; I != NumLookups; ++I) {
1093 NamedDecl *ND = Record.readDeclAs<NamedDecl>();
1094 AccessSpecifier AS = (AccessSpecifier)Record.readInt();
1095 Lookups.push_back(DeclAccessPair::make(ND, AS));
1096 }
1097
1098 FD->setDefaultedOrDeletedInfo(
1099 FunctionDecl::DefaultedOrDeletedFunctionInfo::Create(
1100 Reader.getContext(), Lookups, DeletedMessage));
1101 }
1102 }
1103
1104 if (Existing)
1105 MergeImpl.mergeRedeclarable(FD, Existing, Redecl);
1106 else if (auto Kind = FD->getTemplatedKind();
1107 Kind == FunctionDecl::TK_FunctionTemplate ||
1108 Kind == FunctionDecl::TK_FunctionTemplateSpecialization) {
1109 // Function Templates have their FunctionTemplateDecls merged instead of
1110 // their FunctionDecls.
1111 auto merge = [this, &Redecl, FD](auto &&F) {
1112 auto *Existing = cast_or_null<FunctionDecl>(Redecl.getKnownMergeTarget());
1113 RedeclarableResult NewRedecl(Existing ? F(Existing) : nullptr,
1114 Redecl.getFirstID(), Redecl.isKeyDecl());
1115 mergeRedeclarableTemplate(F(FD), NewRedecl);
1116 };
1117 if (Kind == FunctionDecl::TK_FunctionTemplate)
1118 merge(
1119 [](FunctionDecl *FD) { return FD->getDescribedFunctionTemplate(); });
1120 else
1121 merge([](FunctionDecl *FD) {
1122 return FD->getTemplateSpecializationInfo()->getTemplate();
1123 });
1124 } else
1125 mergeRedeclarable(FD, Redecl);
1126
1127 // Defer calling `setPure` until merging above has guaranteed we've set
1128 // `DefinitionData` (as this will need to access it).
1129 FD->setIsPureVirtual(Pure);
1130
1131 // Read in the parameters.
1132 unsigned NumParams = Record.readInt();
1133 SmallVector<ParmVarDecl *, 16> Params;
1134 Params.reserve(NumParams);
1135 for (unsigned I = 0; I != NumParams; ++I)
1136 Params.push_back(readDeclAs<ParmVarDecl>());
1137 FD->setParams(Reader.getContext(), Params);
1138
1139 // If the declaration is a SYCL kernel entry point function as indicated by
1140 // the presence of a sycl_kernel_entry_point attribute, register it so that
1141 // associated metadata is recreated.
1142 if (FD->hasAttr<SYCLKernelEntryPointAttr>()) {
1143 auto *SKEPAttr = FD->getAttr<SYCLKernelEntryPointAttr>();
1144 ASTContext &C = Reader.getContext();
1145 const SYCLKernelInfo *SKI = C.findSYCLKernelInfo(SKEPAttr->getKernelName());
1146 if (SKI) {
1147 if (!declaresSameEntity(FD, SKI->getKernelEntryPointDecl())) {
1148 Reader.Diag(FD->getLocation(), diag::err_sycl_kernel_name_conflict);
1149 Reader.Diag(SKI->getKernelEntryPointDecl()->getLocation(),
1150 diag::note_previous_declaration);
1151 SKEPAttr->setInvalidAttr();
1152 }
1153 } else {
1154 C.registerSYCLEntryPointFunction(FD);
1155 }
1156 }
1157 }
1158
VisitObjCMethodDecl(ObjCMethodDecl * MD)1159 void ASTDeclReader::VisitObjCMethodDecl(ObjCMethodDecl *MD) {
1160 VisitNamedDecl(MD);
1161 if (Record.readInt()) {
1162 // Load the body on-demand. Most clients won't care, because method
1163 // definitions rarely show up in headers.
1164 Reader.PendingBodies[MD] = GetCurrentCursorOffset();
1165 }
1166 MD->setSelfDecl(readDeclAs<ImplicitParamDecl>());
1167 MD->setCmdDecl(readDeclAs<ImplicitParamDecl>());
1168 MD->setInstanceMethod(Record.readInt());
1169 MD->setVariadic(Record.readInt());
1170 MD->setPropertyAccessor(Record.readInt());
1171 MD->setSynthesizedAccessorStub(Record.readInt());
1172 MD->setDefined(Record.readInt());
1173 MD->setOverriding(Record.readInt());
1174 MD->setHasSkippedBody(Record.readInt());
1175
1176 MD->setIsRedeclaration(Record.readInt());
1177 MD->setHasRedeclaration(Record.readInt());
1178 if (MD->hasRedeclaration())
1179 Reader.getContext().setObjCMethodRedeclaration(MD,
1180 readDeclAs<ObjCMethodDecl>());
1181
1182 MD->setDeclImplementation(
1183 static_cast<ObjCImplementationControl>(Record.readInt()));
1184 MD->setObjCDeclQualifier((Decl::ObjCDeclQualifier)Record.readInt());
1185 MD->setRelatedResultType(Record.readInt());
1186 MD->setReturnType(Record.readType());
1187 MD->setReturnTypeSourceInfo(readTypeSourceInfo());
1188 MD->DeclEndLoc = readSourceLocation();
1189 unsigned NumParams = Record.readInt();
1190 SmallVector<ParmVarDecl *, 16> Params;
1191 Params.reserve(NumParams);
1192 for (unsigned I = 0; I != NumParams; ++I)
1193 Params.push_back(readDeclAs<ParmVarDecl>());
1194
1195 MD->setSelLocsKind((SelectorLocationsKind)Record.readInt());
1196 unsigned NumStoredSelLocs = Record.readInt();
1197 SmallVector<SourceLocation, 16> SelLocs;
1198 SelLocs.reserve(NumStoredSelLocs);
1199 for (unsigned i = 0; i != NumStoredSelLocs; ++i)
1200 SelLocs.push_back(readSourceLocation());
1201
1202 MD->setParamsAndSelLocs(Reader.getContext(), Params, SelLocs);
1203 }
1204
VisitObjCTypeParamDecl(ObjCTypeParamDecl * D)1205 void ASTDeclReader::VisitObjCTypeParamDecl(ObjCTypeParamDecl *D) {
1206 VisitTypedefNameDecl(D);
1207
1208 D->Variance = Record.readInt();
1209 D->Index = Record.readInt();
1210 D->VarianceLoc = readSourceLocation();
1211 D->ColonLoc = readSourceLocation();
1212 }
1213
VisitObjCContainerDecl(ObjCContainerDecl * CD)1214 void ASTDeclReader::VisitObjCContainerDecl(ObjCContainerDecl *CD) {
1215 VisitNamedDecl(CD);
1216 CD->setAtStartLoc(readSourceLocation());
1217 CD->setAtEndRange(readSourceRange());
1218 }
1219
ReadObjCTypeParamList()1220 ObjCTypeParamList *ASTDeclReader::ReadObjCTypeParamList() {
1221 unsigned numParams = Record.readInt();
1222 if (numParams == 0)
1223 return nullptr;
1224
1225 SmallVector<ObjCTypeParamDecl *, 4> typeParams;
1226 typeParams.reserve(numParams);
1227 for (unsigned i = 0; i != numParams; ++i) {
1228 auto *typeParam = readDeclAs<ObjCTypeParamDecl>();
1229 if (!typeParam)
1230 return nullptr;
1231
1232 typeParams.push_back(typeParam);
1233 }
1234
1235 SourceLocation lAngleLoc = readSourceLocation();
1236 SourceLocation rAngleLoc = readSourceLocation();
1237
1238 return ObjCTypeParamList::create(Reader.getContext(), lAngleLoc,
1239 typeParams, rAngleLoc);
1240 }
1241
ReadObjCDefinitionData(struct ObjCInterfaceDecl::DefinitionData & Data)1242 void ASTDeclReader::ReadObjCDefinitionData(
1243 struct ObjCInterfaceDecl::DefinitionData &Data) {
1244 // Read the superclass.
1245 Data.SuperClassTInfo = readTypeSourceInfo();
1246
1247 Data.EndLoc = readSourceLocation();
1248 Data.HasDesignatedInitializers = Record.readInt();
1249 Data.ODRHash = Record.readInt();
1250 Data.HasODRHash = true;
1251
1252 // Read the directly referenced protocols and their SourceLocations.
1253 unsigned NumProtocols = Record.readInt();
1254 SmallVector<ObjCProtocolDecl *, 16> Protocols;
1255 Protocols.reserve(NumProtocols);
1256 for (unsigned I = 0; I != NumProtocols; ++I)
1257 Protocols.push_back(readDeclAs<ObjCProtocolDecl>());
1258 SmallVector<SourceLocation, 16> ProtoLocs;
1259 ProtoLocs.reserve(NumProtocols);
1260 for (unsigned I = 0; I != NumProtocols; ++I)
1261 ProtoLocs.push_back(readSourceLocation());
1262 Data.ReferencedProtocols.set(Protocols.data(), NumProtocols, ProtoLocs.data(),
1263 Reader.getContext());
1264
1265 // Read the transitive closure of protocols referenced by this class.
1266 NumProtocols = Record.readInt();
1267 Protocols.clear();
1268 Protocols.reserve(NumProtocols);
1269 for (unsigned I = 0; I != NumProtocols; ++I)
1270 Protocols.push_back(readDeclAs<ObjCProtocolDecl>());
1271 Data.AllReferencedProtocols.set(Protocols.data(), NumProtocols,
1272 Reader.getContext());
1273 }
1274
MergeDefinitionData(ObjCInterfaceDecl * D,struct ObjCInterfaceDecl::DefinitionData && NewDD)1275 void ASTDeclMerger::MergeDefinitionData(
1276 ObjCInterfaceDecl *D, struct ObjCInterfaceDecl::DefinitionData &&NewDD) {
1277 struct ObjCInterfaceDecl::DefinitionData &DD = D->data();
1278 if (DD.Definition == NewDD.Definition)
1279 return;
1280
1281 Reader.MergedDeclContexts.insert(
1282 std::make_pair(NewDD.Definition, DD.Definition));
1283 Reader.mergeDefinitionVisibility(DD.Definition, NewDD.Definition);
1284
1285 if (D->getODRHash() != NewDD.ODRHash)
1286 Reader.PendingObjCInterfaceOdrMergeFailures[DD.Definition].push_back(
1287 {NewDD.Definition, &NewDD});
1288 }
1289
VisitObjCInterfaceDecl(ObjCInterfaceDecl * ID)1290 void ASTDeclReader::VisitObjCInterfaceDecl(ObjCInterfaceDecl *ID) {
1291 RedeclarableResult Redecl = VisitRedeclarable(ID);
1292 VisitObjCContainerDecl(ID);
1293 DeferredTypeID = Record.getGlobalTypeID(Record.readInt());
1294 mergeRedeclarable(ID, Redecl);
1295
1296 ID->TypeParamList = ReadObjCTypeParamList();
1297 if (Record.readInt()) {
1298 // Read the definition.
1299 ID->allocateDefinitionData();
1300
1301 ReadObjCDefinitionData(ID->data());
1302 ObjCInterfaceDecl *Canon = ID->getCanonicalDecl();
1303 if (Canon->Data.getPointer()) {
1304 // If we already have a definition, keep the definition invariant and
1305 // merge the data.
1306 MergeImpl.MergeDefinitionData(Canon, std::move(ID->data()));
1307 ID->Data = Canon->Data;
1308 } else {
1309 // Set the definition data of the canonical declaration, so other
1310 // redeclarations will see it.
1311 ID->getCanonicalDecl()->Data = ID->Data;
1312
1313 // We will rebuild this list lazily.
1314 ID->setIvarList(nullptr);
1315 }
1316
1317 // Note that we have deserialized a definition.
1318 Reader.PendingDefinitions.insert(ID);
1319
1320 // Note that we've loaded this Objective-C class.
1321 Reader.ObjCClassesLoaded.push_back(ID);
1322 } else {
1323 ID->Data = ID->getCanonicalDecl()->Data;
1324 }
1325 }
1326
VisitObjCIvarDecl(ObjCIvarDecl * IVD)1327 void ASTDeclReader::VisitObjCIvarDecl(ObjCIvarDecl *IVD) {
1328 VisitFieldDecl(IVD);
1329 IVD->setAccessControl((ObjCIvarDecl::AccessControl)Record.readInt());
1330 // This field will be built lazily.
1331 IVD->setNextIvar(nullptr);
1332 bool synth = Record.readInt();
1333 IVD->setSynthesize(synth);
1334
1335 // Check ivar redeclaration.
1336 if (IVD->isInvalidDecl())
1337 return;
1338 // Don't check ObjCInterfaceDecl as interfaces are named and mismatches can be
1339 // detected in VisitObjCInterfaceDecl. Here we are looking for redeclarations
1340 // in extensions.
1341 if (isa<ObjCInterfaceDecl>(IVD->getDeclContext()))
1342 return;
1343 ObjCInterfaceDecl *CanonIntf =
1344 IVD->getContainingInterface()->getCanonicalDecl();
1345 IdentifierInfo *II = IVD->getIdentifier();
1346 ObjCIvarDecl *PrevIvar = CanonIntf->lookupInstanceVariable(II);
1347 if (PrevIvar && PrevIvar != IVD) {
1348 auto *ParentExt = dyn_cast<ObjCCategoryDecl>(IVD->getDeclContext());
1349 auto *PrevParentExt =
1350 dyn_cast<ObjCCategoryDecl>(PrevIvar->getDeclContext());
1351 if (ParentExt && PrevParentExt) {
1352 // Postpone diagnostic as we should merge identical extensions from
1353 // different modules.
1354 Reader
1355 .PendingObjCExtensionIvarRedeclarations[std::make_pair(ParentExt,
1356 PrevParentExt)]
1357 .push_back(std::make_pair(IVD, PrevIvar));
1358 } else if (ParentExt || PrevParentExt) {
1359 // Duplicate ivars in extension + implementation are never compatible.
1360 // Compatibility of implementation + implementation should be handled in
1361 // VisitObjCImplementationDecl.
1362 Reader.Diag(IVD->getLocation(), diag::err_duplicate_ivar_declaration)
1363 << II;
1364 Reader.Diag(PrevIvar->getLocation(), diag::note_previous_definition);
1365 }
1366 }
1367 }
1368
ReadObjCDefinitionData(struct ObjCProtocolDecl::DefinitionData & Data)1369 void ASTDeclReader::ReadObjCDefinitionData(
1370 struct ObjCProtocolDecl::DefinitionData &Data) {
1371 unsigned NumProtoRefs = Record.readInt();
1372 SmallVector<ObjCProtocolDecl *, 16> ProtoRefs;
1373 ProtoRefs.reserve(NumProtoRefs);
1374 for (unsigned I = 0; I != NumProtoRefs; ++I)
1375 ProtoRefs.push_back(readDeclAs<ObjCProtocolDecl>());
1376 SmallVector<SourceLocation, 16> ProtoLocs;
1377 ProtoLocs.reserve(NumProtoRefs);
1378 for (unsigned I = 0; I != NumProtoRefs; ++I)
1379 ProtoLocs.push_back(readSourceLocation());
1380 Data.ReferencedProtocols.set(ProtoRefs.data(), NumProtoRefs,
1381 ProtoLocs.data(), Reader.getContext());
1382 Data.ODRHash = Record.readInt();
1383 Data.HasODRHash = true;
1384 }
1385
MergeDefinitionData(ObjCProtocolDecl * D,struct ObjCProtocolDecl::DefinitionData && NewDD)1386 void ASTDeclMerger::MergeDefinitionData(
1387 ObjCProtocolDecl *D, struct ObjCProtocolDecl::DefinitionData &&NewDD) {
1388 struct ObjCProtocolDecl::DefinitionData &DD = D->data();
1389 if (DD.Definition == NewDD.Definition)
1390 return;
1391
1392 Reader.MergedDeclContexts.insert(
1393 std::make_pair(NewDD.Definition, DD.Definition));
1394 Reader.mergeDefinitionVisibility(DD.Definition, NewDD.Definition);
1395
1396 if (D->getODRHash() != NewDD.ODRHash)
1397 Reader.PendingObjCProtocolOdrMergeFailures[DD.Definition].push_back(
1398 {NewDD.Definition, &NewDD});
1399 }
1400
VisitObjCProtocolDecl(ObjCProtocolDecl * PD)1401 void ASTDeclReader::VisitObjCProtocolDecl(ObjCProtocolDecl *PD) {
1402 RedeclarableResult Redecl = VisitRedeclarable(PD);
1403 VisitObjCContainerDecl(PD);
1404 mergeRedeclarable(PD, Redecl);
1405
1406 if (Record.readInt()) {
1407 // Read the definition.
1408 PD->allocateDefinitionData();
1409
1410 ReadObjCDefinitionData(PD->data());
1411
1412 ObjCProtocolDecl *Canon = PD->getCanonicalDecl();
1413 if (Canon->Data.getPointer()) {
1414 // If we already have a definition, keep the definition invariant and
1415 // merge the data.
1416 MergeImpl.MergeDefinitionData(Canon, std::move(PD->data()));
1417 PD->Data = Canon->Data;
1418 } else {
1419 // Set the definition data of the canonical declaration, so other
1420 // redeclarations will see it.
1421 PD->getCanonicalDecl()->Data = PD->Data;
1422 }
1423 // Note that we have deserialized a definition.
1424 Reader.PendingDefinitions.insert(PD);
1425 } else {
1426 PD->Data = PD->getCanonicalDecl()->Data;
1427 }
1428 }
1429
VisitObjCAtDefsFieldDecl(ObjCAtDefsFieldDecl * FD)1430 void ASTDeclReader::VisitObjCAtDefsFieldDecl(ObjCAtDefsFieldDecl *FD) {
1431 VisitFieldDecl(FD);
1432 }
1433
VisitObjCCategoryDecl(ObjCCategoryDecl * CD)1434 void ASTDeclReader::VisitObjCCategoryDecl(ObjCCategoryDecl *CD) {
1435 VisitObjCContainerDecl(CD);
1436 CD->setCategoryNameLoc(readSourceLocation());
1437 CD->setIvarLBraceLoc(readSourceLocation());
1438 CD->setIvarRBraceLoc(readSourceLocation());
1439
1440 // Note that this category has been deserialized. We do this before
1441 // deserializing the interface declaration, so that it will consider this
1442 /// category.
1443 Reader.CategoriesDeserialized.insert(CD);
1444
1445 CD->ClassInterface = readDeclAs<ObjCInterfaceDecl>();
1446 CD->TypeParamList = ReadObjCTypeParamList();
1447 unsigned NumProtoRefs = Record.readInt();
1448 SmallVector<ObjCProtocolDecl *, 16> ProtoRefs;
1449 ProtoRefs.reserve(NumProtoRefs);
1450 for (unsigned I = 0; I != NumProtoRefs; ++I)
1451 ProtoRefs.push_back(readDeclAs<ObjCProtocolDecl>());
1452 SmallVector<SourceLocation, 16> ProtoLocs;
1453 ProtoLocs.reserve(NumProtoRefs);
1454 for (unsigned I = 0; I != NumProtoRefs; ++I)
1455 ProtoLocs.push_back(readSourceLocation());
1456 CD->setProtocolList(ProtoRefs.data(), NumProtoRefs, ProtoLocs.data(),
1457 Reader.getContext());
1458
1459 // Protocols in the class extension belong to the class.
1460 if (NumProtoRefs > 0 && CD->ClassInterface && CD->IsClassExtension())
1461 CD->ClassInterface->mergeClassExtensionProtocolList(
1462 (ObjCProtocolDecl *const *)ProtoRefs.data(), NumProtoRefs,
1463 Reader.getContext());
1464 }
1465
VisitObjCCompatibleAliasDecl(ObjCCompatibleAliasDecl * CAD)1466 void ASTDeclReader::VisitObjCCompatibleAliasDecl(ObjCCompatibleAliasDecl *CAD) {
1467 VisitNamedDecl(CAD);
1468 CAD->setClassInterface(readDeclAs<ObjCInterfaceDecl>());
1469 }
1470
VisitObjCPropertyDecl(ObjCPropertyDecl * D)1471 void ASTDeclReader::VisitObjCPropertyDecl(ObjCPropertyDecl *D) {
1472 VisitNamedDecl(D);
1473 D->setAtLoc(readSourceLocation());
1474 D->setLParenLoc(readSourceLocation());
1475 QualType T = Record.readType();
1476 TypeSourceInfo *TSI = readTypeSourceInfo();
1477 D->setType(T, TSI);
1478 D->setPropertyAttributes((ObjCPropertyAttribute::Kind)Record.readInt());
1479 D->setPropertyAttributesAsWritten(
1480 (ObjCPropertyAttribute::Kind)Record.readInt());
1481 D->setPropertyImplementation(
1482 (ObjCPropertyDecl::PropertyControl)Record.readInt());
1483 DeclarationName GetterName = Record.readDeclarationName();
1484 SourceLocation GetterLoc = readSourceLocation();
1485 D->setGetterName(GetterName.getObjCSelector(), GetterLoc);
1486 DeclarationName SetterName = Record.readDeclarationName();
1487 SourceLocation SetterLoc = readSourceLocation();
1488 D->setSetterName(SetterName.getObjCSelector(), SetterLoc);
1489 D->setGetterMethodDecl(readDeclAs<ObjCMethodDecl>());
1490 D->setSetterMethodDecl(readDeclAs<ObjCMethodDecl>());
1491 D->setPropertyIvarDecl(readDeclAs<ObjCIvarDecl>());
1492 }
1493
VisitObjCImplDecl(ObjCImplDecl * D)1494 void ASTDeclReader::VisitObjCImplDecl(ObjCImplDecl *D) {
1495 VisitObjCContainerDecl(D);
1496 D->setClassInterface(readDeclAs<ObjCInterfaceDecl>());
1497 }
1498
VisitObjCCategoryImplDecl(ObjCCategoryImplDecl * D)1499 void ASTDeclReader::VisitObjCCategoryImplDecl(ObjCCategoryImplDecl *D) {
1500 VisitObjCImplDecl(D);
1501 D->CategoryNameLoc = readSourceLocation();
1502 }
1503
VisitObjCImplementationDecl(ObjCImplementationDecl * D)1504 void ASTDeclReader::VisitObjCImplementationDecl(ObjCImplementationDecl *D) {
1505 VisitObjCImplDecl(D);
1506 D->setSuperClass(readDeclAs<ObjCInterfaceDecl>());
1507 D->SuperLoc = readSourceLocation();
1508 D->setIvarLBraceLoc(readSourceLocation());
1509 D->setIvarRBraceLoc(readSourceLocation());
1510 D->setHasNonZeroConstructors(Record.readInt());
1511 D->setHasDestructors(Record.readInt());
1512 D->NumIvarInitializers = Record.readInt();
1513 if (D->NumIvarInitializers)
1514 D->IvarInitializers = ReadGlobalOffset();
1515 }
1516
VisitObjCPropertyImplDecl(ObjCPropertyImplDecl * D)1517 void ASTDeclReader::VisitObjCPropertyImplDecl(ObjCPropertyImplDecl *D) {
1518 VisitDecl(D);
1519 D->setAtLoc(readSourceLocation());
1520 D->setPropertyDecl(readDeclAs<ObjCPropertyDecl>());
1521 D->PropertyIvarDecl = readDeclAs<ObjCIvarDecl>();
1522 D->IvarLoc = readSourceLocation();
1523 D->setGetterMethodDecl(readDeclAs<ObjCMethodDecl>());
1524 D->setSetterMethodDecl(readDeclAs<ObjCMethodDecl>());
1525 D->setGetterCXXConstructor(Record.readExpr());
1526 D->setSetterCXXAssignment(Record.readExpr());
1527 }
1528
VisitFieldDecl(FieldDecl * FD)1529 void ASTDeclReader::VisitFieldDecl(FieldDecl *FD) {
1530 VisitDeclaratorDecl(FD);
1531 FD->Mutable = Record.readInt();
1532
1533 unsigned Bits = Record.readInt();
1534 FD->StorageKind = Bits >> 1;
1535 if (FD->StorageKind == FieldDecl::ISK_CapturedVLAType)
1536 FD->CapturedVLAType =
1537 cast<VariableArrayType>(Record.readType().getTypePtr());
1538 else if (Bits & 1)
1539 FD->setBitWidth(Record.readExpr());
1540
1541 if (!FD->getDeclName() ||
1542 FD->isPlaceholderVar(Reader.getContext().getLangOpts())) {
1543 if (auto *Tmpl = readDeclAs<FieldDecl>())
1544 Reader.getContext().setInstantiatedFromUnnamedFieldDecl(FD, Tmpl);
1545 }
1546 mergeMergeable(FD);
1547 }
1548
VisitMSPropertyDecl(MSPropertyDecl * PD)1549 void ASTDeclReader::VisitMSPropertyDecl(MSPropertyDecl *PD) {
1550 VisitDeclaratorDecl(PD);
1551 PD->GetterId = Record.readIdentifier();
1552 PD->SetterId = Record.readIdentifier();
1553 }
1554
VisitMSGuidDecl(MSGuidDecl * D)1555 void ASTDeclReader::VisitMSGuidDecl(MSGuidDecl *D) {
1556 VisitValueDecl(D);
1557 D->PartVal.Part1 = Record.readInt();
1558 D->PartVal.Part2 = Record.readInt();
1559 D->PartVal.Part3 = Record.readInt();
1560 for (auto &C : D->PartVal.Part4And5)
1561 C = Record.readInt();
1562
1563 // Add this GUID to the AST context's lookup structure, and merge if needed.
1564 if (MSGuidDecl *Existing = Reader.getContext().MSGuidDecls.GetOrInsertNode(D))
1565 Reader.getContext().setPrimaryMergedDecl(D, Existing->getCanonicalDecl());
1566 }
1567
VisitUnnamedGlobalConstantDecl(UnnamedGlobalConstantDecl * D)1568 void ASTDeclReader::VisitUnnamedGlobalConstantDecl(
1569 UnnamedGlobalConstantDecl *D) {
1570 VisitValueDecl(D);
1571 D->Value = Record.readAPValue();
1572
1573 // Add this to the AST context's lookup structure, and merge if needed.
1574 if (UnnamedGlobalConstantDecl *Existing =
1575 Reader.getContext().UnnamedGlobalConstantDecls.GetOrInsertNode(D))
1576 Reader.getContext().setPrimaryMergedDecl(D, Existing->getCanonicalDecl());
1577 }
1578
VisitTemplateParamObjectDecl(TemplateParamObjectDecl * D)1579 void ASTDeclReader::VisitTemplateParamObjectDecl(TemplateParamObjectDecl *D) {
1580 VisitValueDecl(D);
1581 D->Value = Record.readAPValue();
1582
1583 // Add this template parameter object to the AST context's lookup structure,
1584 // and merge if needed.
1585 if (TemplateParamObjectDecl *Existing =
1586 Reader.getContext().TemplateParamObjectDecls.GetOrInsertNode(D))
1587 Reader.getContext().setPrimaryMergedDecl(D, Existing->getCanonicalDecl());
1588 }
1589
VisitIndirectFieldDecl(IndirectFieldDecl * FD)1590 void ASTDeclReader::VisitIndirectFieldDecl(IndirectFieldDecl *FD) {
1591 VisitValueDecl(FD);
1592
1593 FD->ChainingSize = Record.readInt();
1594 assert(FD->ChainingSize >= 2 && "Anonymous chaining must be >= 2");
1595 FD->Chaining = new (Reader.getContext())NamedDecl*[FD->ChainingSize];
1596
1597 for (unsigned I = 0; I != FD->ChainingSize; ++I)
1598 FD->Chaining[I] = readDeclAs<NamedDecl>();
1599
1600 mergeMergeable(FD);
1601 }
1602
VisitVarDeclImpl(VarDecl * VD)1603 RedeclarableResult ASTDeclReader::VisitVarDeclImpl(VarDecl *VD) {
1604 RedeclarableResult Redecl = VisitRedeclarable(VD);
1605 VisitDeclaratorDecl(VD);
1606
1607 BitsUnpacker VarDeclBits(Record.readInt());
1608 auto VarLinkage = Linkage(VarDeclBits.getNextBits(/*Width=*/3));
1609 bool DefGeneratedInModule = VarDeclBits.getNextBit();
1610 VD->VarDeclBits.SClass = (StorageClass)VarDeclBits.getNextBits(/*Width=*/3);
1611 VD->VarDeclBits.TSCSpec = VarDeclBits.getNextBits(/*Width=*/2);
1612 VD->VarDeclBits.InitStyle = VarDeclBits.getNextBits(/*Width=*/2);
1613 VD->VarDeclBits.ARCPseudoStrong = VarDeclBits.getNextBit();
1614 bool HasDeducedType = false;
1615 if (!isa<ParmVarDecl>(VD)) {
1616 VD->NonParmVarDeclBits.IsThisDeclarationADemotedDefinition =
1617 VarDeclBits.getNextBit();
1618 VD->NonParmVarDeclBits.ExceptionVar = VarDeclBits.getNextBit();
1619 VD->NonParmVarDeclBits.NRVOVariable = VarDeclBits.getNextBit();
1620 VD->NonParmVarDeclBits.CXXForRangeDecl = VarDeclBits.getNextBit();
1621
1622 VD->NonParmVarDeclBits.IsInline = VarDeclBits.getNextBit();
1623 VD->NonParmVarDeclBits.IsInlineSpecified = VarDeclBits.getNextBit();
1624 VD->NonParmVarDeclBits.IsConstexpr = VarDeclBits.getNextBit();
1625 VD->NonParmVarDeclBits.IsInitCapture = VarDeclBits.getNextBit();
1626 VD->NonParmVarDeclBits.PreviousDeclInSameBlockScope =
1627 VarDeclBits.getNextBit();
1628
1629 VD->NonParmVarDeclBits.EscapingByref = VarDeclBits.getNextBit();
1630 HasDeducedType = VarDeclBits.getNextBit();
1631 VD->NonParmVarDeclBits.ImplicitParamKind =
1632 VarDeclBits.getNextBits(/*Width*/ 3);
1633
1634 VD->NonParmVarDeclBits.ObjCForDecl = VarDeclBits.getNextBit();
1635 VD->NonParmVarDeclBits.IsCXXForRangeImplicitVar = VarDeclBits.getNextBit();
1636 }
1637
1638 // If this variable has a deduced type, defer reading that type until we are
1639 // done deserializing this variable, because the type might refer back to the
1640 // variable.
1641 if (HasDeducedType)
1642 Reader.PendingDeducedVarTypes.push_back({VD, DeferredTypeID});
1643 else
1644 VD->setType(Reader.GetType(DeferredTypeID));
1645 DeferredTypeID = 0;
1646
1647 VD->setCachedLinkage(VarLinkage);
1648
1649 // Reconstruct the one piece of the IdentifierNamespace that we need.
1650 if (VD->getStorageClass() == SC_Extern && VarLinkage != Linkage::None &&
1651 VD->getLexicalDeclContext()->isFunctionOrMethod())
1652 VD->setLocalExternDecl();
1653
1654 if (DefGeneratedInModule) {
1655 Reader.DefinitionSource[VD] =
1656 Loc.F->Kind == ModuleKind::MK_MainFile ||
1657 Reader.getContext().getLangOpts().BuildingPCHWithObjectFile;
1658 }
1659
1660 if (VD->hasAttr<BlocksAttr>()) {
1661 Expr *CopyExpr = Record.readExpr();
1662 if (CopyExpr)
1663 Reader.getContext().setBlockVarCopyInit(VD, CopyExpr, Record.readInt());
1664 }
1665
1666 enum VarKind {
1667 VarNotTemplate = 0, VarTemplate, StaticDataMemberSpecialization
1668 };
1669 switch ((VarKind)Record.readInt()) {
1670 case VarNotTemplate:
1671 // Only true variables (not parameters or implicit parameters) can be
1672 // merged; the other kinds are not really redeclarable at all.
1673 if (!isa<ParmVarDecl>(VD) && !isa<ImplicitParamDecl>(VD) &&
1674 !isa<VarTemplateSpecializationDecl>(VD))
1675 mergeRedeclarable(VD, Redecl);
1676 break;
1677 case VarTemplate:
1678 // Merged when we merge the template.
1679 VD->setDescribedVarTemplate(readDeclAs<VarTemplateDecl>());
1680 break;
1681 case StaticDataMemberSpecialization: { // HasMemberSpecializationInfo.
1682 auto *Tmpl = readDeclAs<VarDecl>();
1683 auto TSK = (TemplateSpecializationKind)Record.readInt();
1684 SourceLocation POI = readSourceLocation();
1685 Reader.getContext().setInstantiatedFromStaticDataMember(VD, Tmpl, TSK,POI);
1686 mergeRedeclarable(VD, Redecl);
1687 break;
1688 }
1689 }
1690
1691 return Redecl;
1692 }
1693
ReadVarDeclInit(VarDecl * VD)1694 void ASTDeclReader::ReadVarDeclInit(VarDecl *VD) {
1695 if (uint64_t Val = Record.readInt()) {
1696 EvaluatedStmt *Eval = VD->ensureEvaluatedStmt();
1697 Eval->HasConstantInitialization = (Val & 2) != 0;
1698 Eval->HasConstantDestruction = (Val & 4) != 0;
1699 Eval->WasEvaluated = (Val & 8) != 0;
1700 Eval->HasSideEffects = (Val & 16) != 0;
1701 Eval->CheckedForSideEffects = true;
1702 if (Eval->WasEvaluated) {
1703 Eval->Evaluated = Record.readAPValue();
1704 if (Eval->Evaluated.needsCleanup())
1705 Reader.getContext().addDestruction(&Eval->Evaluated);
1706 }
1707
1708 // Store the offset of the initializer. Don't deserialize it yet: it might
1709 // not be needed, and might refer back to the variable, for example if it
1710 // contains a lambda.
1711 Eval->Value = GetCurrentCursorOffset();
1712 }
1713 }
1714
VisitImplicitParamDecl(ImplicitParamDecl * PD)1715 void ASTDeclReader::VisitImplicitParamDecl(ImplicitParamDecl *PD) {
1716 VisitVarDecl(PD);
1717 }
1718
VisitParmVarDecl(ParmVarDecl * PD)1719 void ASTDeclReader::VisitParmVarDecl(ParmVarDecl *PD) {
1720 VisitVarDecl(PD);
1721
1722 unsigned scopeIndex = Record.readInt();
1723 BitsUnpacker ParmVarDeclBits(Record.readInt());
1724 unsigned isObjCMethodParam = ParmVarDeclBits.getNextBit();
1725 unsigned scopeDepth = ParmVarDeclBits.getNextBits(/*Width=*/7);
1726 unsigned declQualifier = ParmVarDeclBits.getNextBits(/*Width=*/7);
1727 if (isObjCMethodParam) {
1728 assert(scopeDepth == 0);
1729 PD->setObjCMethodScopeInfo(scopeIndex);
1730 PD->ParmVarDeclBits.ScopeDepthOrObjCQuals = declQualifier;
1731 } else {
1732 PD->setScopeInfo(scopeDepth, scopeIndex);
1733 }
1734 PD->ParmVarDeclBits.IsKNRPromoted = ParmVarDeclBits.getNextBit();
1735
1736 PD->ParmVarDeclBits.HasInheritedDefaultArg = ParmVarDeclBits.getNextBit();
1737 if (ParmVarDeclBits.getNextBit()) // hasUninstantiatedDefaultArg.
1738 PD->setUninstantiatedDefaultArg(Record.readExpr());
1739
1740 if (ParmVarDeclBits.getNextBit()) // Valid explicit object parameter
1741 PD->ExplicitObjectParameterIntroducerLoc = Record.readSourceLocation();
1742
1743 // FIXME: If this is a redeclaration of a function from another module, handle
1744 // inheritance of default arguments.
1745 }
1746
VisitDecompositionDecl(DecompositionDecl * DD)1747 void ASTDeclReader::VisitDecompositionDecl(DecompositionDecl *DD) {
1748 VisitVarDecl(DD);
1749 auto **BDs = DD->getTrailingObjects();
1750 for (unsigned I = 0; I != DD->NumBindings; ++I) {
1751 BDs[I] = readDeclAs<BindingDecl>();
1752 BDs[I]->setDecomposedDecl(DD);
1753 }
1754 }
1755
VisitBindingDecl(BindingDecl * BD)1756 void ASTDeclReader::VisitBindingDecl(BindingDecl *BD) {
1757 VisitValueDecl(BD);
1758 BD->Binding = Record.readExpr();
1759 }
1760
VisitFileScopeAsmDecl(FileScopeAsmDecl * AD)1761 void ASTDeclReader::VisitFileScopeAsmDecl(FileScopeAsmDecl *AD) {
1762 VisitDecl(AD);
1763 AD->setAsmString(cast<StringLiteral>(Record.readExpr()));
1764 AD->setRParenLoc(readSourceLocation());
1765 }
1766
VisitTopLevelStmtDecl(TopLevelStmtDecl * D)1767 void ASTDeclReader::VisitTopLevelStmtDecl(TopLevelStmtDecl *D) {
1768 VisitDecl(D);
1769 D->Statement = Record.readStmt();
1770 }
1771
VisitBlockDecl(BlockDecl * BD)1772 void ASTDeclReader::VisitBlockDecl(BlockDecl *BD) {
1773 VisitDecl(BD);
1774 BD->setBody(cast_or_null<CompoundStmt>(Record.readStmt()));
1775 BD->setSignatureAsWritten(readTypeSourceInfo());
1776 unsigned NumParams = Record.readInt();
1777 SmallVector<ParmVarDecl *, 16> Params;
1778 Params.reserve(NumParams);
1779 for (unsigned I = 0; I != NumParams; ++I)
1780 Params.push_back(readDeclAs<ParmVarDecl>());
1781 BD->setParams(Params);
1782
1783 BD->setIsVariadic(Record.readInt());
1784 BD->setBlockMissingReturnType(Record.readInt());
1785 BD->setIsConversionFromLambda(Record.readInt());
1786 BD->setDoesNotEscape(Record.readInt());
1787 BD->setCanAvoidCopyToHeap(Record.readInt());
1788
1789 bool capturesCXXThis = Record.readInt();
1790 unsigned numCaptures = Record.readInt();
1791 SmallVector<BlockDecl::Capture, 16> captures;
1792 captures.reserve(numCaptures);
1793 for (unsigned i = 0; i != numCaptures; ++i) {
1794 auto *decl = readDeclAs<VarDecl>();
1795 unsigned flags = Record.readInt();
1796 bool byRef = (flags & 1);
1797 bool nested = (flags & 2);
1798 Expr *copyExpr = ((flags & 4) ? Record.readExpr() : nullptr);
1799
1800 captures.push_back(BlockDecl::Capture(decl, byRef, nested, copyExpr));
1801 }
1802 BD->setCaptures(Reader.getContext(), captures, capturesCXXThis);
1803 }
1804
VisitOutlinedFunctionDecl(OutlinedFunctionDecl * D)1805 void ASTDeclReader::VisitOutlinedFunctionDecl(OutlinedFunctionDecl *D) {
1806 // NumParams is deserialized by OutlinedFunctionDecl::CreateDeserialized().
1807 VisitDecl(D);
1808 for (unsigned I = 0; I < D->NumParams; ++I)
1809 D->setParam(I, readDeclAs<ImplicitParamDecl>());
1810 D->setNothrow(Record.readInt() != 0);
1811 D->setBody(cast_or_null<Stmt>(Record.readStmt()));
1812 }
1813
VisitCapturedDecl(CapturedDecl * CD)1814 void ASTDeclReader::VisitCapturedDecl(CapturedDecl *CD) {
1815 VisitDecl(CD);
1816 unsigned ContextParamPos = Record.readInt();
1817 CD->setNothrow(Record.readInt() != 0);
1818 // Body is set by VisitCapturedStmt.
1819 for (unsigned I = 0; I < CD->NumParams; ++I) {
1820 if (I != ContextParamPos)
1821 CD->setParam(I, readDeclAs<ImplicitParamDecl>());
1822 else
1823 CD->setContextParam(I, readDeclAs<ImplicitParamDecl>());
1824 }
1825 }
1826
VisitLinkageSpecDecl(LinkageSpecDecl * D)1827 void ASTDeclReader::VisitLinkageSpecDecl(LinkageSpecDecl *D) {
1828 VisitDecl(D);
1829 D->setLanguage(static_cast<LinkageSpecLanguageIDs>(Record.readInt()));
1830 D->setExternLoc(readSourceLocation());
1831 D->setRBraceLoc(readSourceLocation());
1832 }
1833
VisitExportDecl(ExportDecl * D)1834 void ASTDeclReader::VisitExportDecl(ExportDecl *D) {
1835 VisitDecl(D);
1836 D->RBraceLoc = readSourceLocation();
1837 }
1838
VisitLabelDecl(LabelDecl * D)1839 void ASTDeclReader::VisitLabelDecl(LabelDecl *D) {
1840 VisitNamedDecl(D);
1841 D->setLocStart(readSourceLocation());
1842 }
1843
VisitNamespaceDecl(NamespaceDecl * D)1844 void ASTDeclReader::VisitNamespaceDecl(NamespaceDecl *D) {
1845 RedeclarableResult Redecl = VisitRedeclarable(D);
1846 VisitNamedDecl(D);
1847
1848 BitsUnpacker NamespaceDeclBits(Record.readInt());
1849 D->setInline(NamespaceDeclBits.getNextBit());
1850 D->setNested(NamespaceDeclBits.getNextBit());
1851 D->LocStart = readSourceLocation();
1852 D->RBraceLoc = readSourceLocation();
1853
1854 // Defer loading the anonymous namespace until we've finished merging
1855 // this namespace; loading it might load a later declaration of the
1856 // same namespace, and we have an invariant that older declarations
1857 // get merged before newer ones try to merge.
1858 GlobalDeclID AnonNamespace;
1859 if (Redecl.getFirstID() == ThisDeclID)
1860 AnonNamespace = readDeclID();
1861
1862 mergeRedeclarable(D, Redecl);
1863
1864 if (AnonNamespace.isValid()) {
1865 // Each module has its own anonymous namespace, which is disjoint from
1866 // any other module's anonymous namespaces, so don't attach the anonymous
1867 // namespace at all.
1868 auto *Anon = cast<NamespaceDecl>(Reader.GetDecl(AnonNamespace));
1869 if (!Record.isModule())
1870 D->setAnonymousNamespace(Anon);
1871 }
1872 }
1873
VisitHLSLBufferDecl(HLSLBufferDecl * D)1874 void ASTDeclReader::VisitHLSLBufferDecl(HLSLBufferDecl *D) {
1875 VisitNamedDecl(D);
1876 LookupBlockOffsets Offsets;
1877 VisitDeclContext(D, Offsets);
1878 D->IsCBuffer = Record.readBool();
1879 D->KwLoc = readSourceLocation();
1880 D->LBraceLoc = readSourceLocation();
1881 D->RBraceLoc = readSourceLocation();
1882 }
1883
VisitNamespaceAliasDecl(NamespaceAliasDecl * D)1884 void ASTDeclReader::VisitNamespaceAliasDecl(NamespaceAliasDecl *D) {
1885 RedeclarableResult Redecl = VisitRedeclarable(D);
1886 VisitNamedDecl(D);
1887 D->NamespaceLoc = readSourceLocation();
1888 D->IdentLoc = readSourceLocation();
1889 D->QualifierLoc = Record.readNestedNameSpecifierLoc();
1890 D->Namespace = readDeclAs<NamedDecl>();
1891 mergeRedeclarable(D, Redecl);
1892 }
1893
VisitUsingDecl(UsingDecl * D)1894 void ASTDeclReader::VisitUsingDecl(UsingDecl *D) {
1895 VisitNamedDecl(D);
1896 D->setUsingLoc(readSourceLocation());
1897 D->QualifierLoc = Record.readNestedNameSpecifierLoc();
1898 D->DNLoc = Record.readDeclarationNameLoc(D->getDeclName());
1899 D->FirstUsingShadow.setPointer(readDeclAs<UsingShadowDecl>());
1900 D->setTypename(Record.readInt());
1901 if (auto *Pattern = readDeclAs<NamedDecl>())
1902 Reader.getContext().setInstantiatedFromUsingDecl(D, Pattern);
1903 mergeMergeable(D);
1904 }
1905
VisitUsingEnumDecl(UsingEnumDecl * D)1906 void ASTDeclReader::VisitUsingEnumDecl(UsingEnumDecl *D) {
1907 VisitNamedDecl(D);
1908 D->setUsingLoc(readSourceLocation());
1909 D->setEnumLoc(readSourceLocation());
1910 D->setEnumType(Record.readTypeSourceInfo());
1911 D->FirstUsingShadow.setPointer(readDeclAs<UsingShadowDecl>());
1912 if (auto *Pattern = readDeclAs<UsingEnumDecl>())
1913 Reader.getContext().setInstantiatedFromUsingEnumDecl(D, Pattern);
1914 mergeMergeable(D);
1915 }
1916
VisitUsingPackDecl(UsingPackDecl * D)1917 void ASTDeclReader::VisitUsingPackDecl(UsingPackDecl *D) {
1918 VisitNamedDecl(D);
1919 D->InstantiatedFrom = readDeclAs<NamedDecl>();
1920 auto **Expansions = D->getTrailingObjects();
1921 for (unsigned I = 0; I != D->NumExpansions; ++I)
1922 Expansions[I] = readDeclAs<NamedDecl>();
1923 mergeMergeable(D);
1924 }
1925
VisitUsingShadowDecl(UsingShadowDecl * D)1926 void ASTDeclReader::VisitUsingShadowDecl(UsingShadowDecl *D) {
1927 RedeclarableResult Redecl = VisitRedeclarable(D);
1928 VisitNamedDecl(D);
1929 D->Underlying = readDeclAs<NamedDecl>();
1930 D->IdentifierNamespace = Record.readInt();
1931 D->UsingOrNextShadow = readDeclAs<NamedDecl>();
1932 auto *Pattern = readDeclAs<UsingShadowDecl>();
1933 if (Pattern)
1934 Reader.getContext().setInstantiatedFromUsingShadowDecl(D, Pattern);
1935 mergeRedeclarable(D, Redecl);
1936 }
1937
VisitConstructorUsingShadowDecl(ConstructorUsingShadowDecl * D)1938 void ASTDeclReader::VisitConstructorUsingShadowDecl(
1939 ConstructorUsingShadowDecl *D) {
1940 VisitUsingShadowDecl(D);
1941 D->NominatedBaseClassShadowDecl = readDeclAs<ConstructorUsingShadowDecl>();
1942 D->ConstructedBaseClassShadowDecl = readDeclAs<ConstructorUsingShadowDecl>();
1943 D->IsVirtual = Record.readInt();
1944 }
1945
VisitUsingDirectiveDecl(UsingDirectiveDecl * D)1946 void ASTDeclReader::VisitUsingDirectiveDecl(UsingDirectiveDecl *D) {
1947 VisitNamedDecl(D);
1948 D->UsingLoc = readSourceLocation();
1949 D->NamespaceLoc = readSourceLocation();
1950 D->QualifierLoc = Record.readNestedNameSpecifierLoc();
1951 D->NominatedNamespace = readDeclAs<NamedDecl>();
1952 D->CommonAncestor = readDeclAs<DeclContext>();
1953 }
1954
VisitUnresolvedUsingValueDecl(UnresolvedUsingValueDecl * D)1955 void ASTDeclReader::VisitUnresolvedUsingValueDecl(UnresolvedUsingValueDecl *D) {
1956 VisitValueDecl(D);
1957 D->setUsingLoc(readSourceLocation());
1958 D->QualifierLoc = Record.readNestedNameSpecifierLoc();
1959 D->DNLoc = Record.readDeclarationNameLoc(D->getDeclName());
1960 D->EllipsisLoc = readSourceLocation();
1961 mergeMergeable(D);
1962 }
1963
VisitUnresolvedUsingTypenameDecl(UnresolvedUsingTypenameDecl * D)1964 void ASTDeclReader::VisitUnresolvedUsingTypenameDecl(
1965 UnresolvedUsingTypenameDecl *D) {
1966 VisitTypeDecl(D);
1967 D->TypenameLocation = readSourceLocation();
1968 D->QualifierLoc = Record.readNestedNameSpecifierLoc();
1969 D->EllipsisLoc = readSourceLocation();
1970 mergeMergeable(D);
1971 }
1972
VisitUnresolvedUsingIfExistsDecl(UnresolvedUsingIfExistsDecl * D)1973 void ASTDeclReader::VisitUnresolvedUsingIfExistsDecl(
1974 UnresolvedUsingIfExistsDecl *D) {
1975 VisitNamedDecl(D);
1976 }
1977
ReadCXXDefinitionData(struct CXXRecordDecl::DefinitionData & Data,const CXXRecordDecl * D,Decl * LambdaContext,unsigned IndexInLambdaContext)1978 void ASTDeclReader::ReadCXXDefinitionData(
1979 struct CXXRecordDecl::DefinitionData &Data, const CXXRecordDecl *D,
1980 Decl *LambdaContext, unsigned IndexInLambdaContext) {
1981
1982 BitsUnpacker CXXRecordDeclBits = Record.readInt();
1983
1984 #define FIELD(Name, Width, Merge) \
1985 if (!CXXRecordDeclBits.canGetNextNBits(Width)) \
1986 CXXRecordDeclBits.updateValue(Record.readInt()); \
1987 Data.Name = CXXRecordDeclBits.getNextBits(Width);
1988
1989 #include "clang/AST/CXXRecordDeclDefinitionBits.def"
1990 #undef FIELD
1991
1992 // Note: the caller has deserialized the IsLambda bit already.
1993 Data.ODRHash = Record.readInt();
1994 Data.HasODRHash = true;
1995
1996 if (Record.readInt()) {
1997 Reader.DefinitionSource[D] =
1998 Loc.F->Kind == ModuleKind::MK_MainFile ||
1999 Reader.getContext().getLangOpts().BuildingPCHWithObjectFile;
2000 }
2001
2002 Record.readUnresolvedSet(Data.Conversions);
2003 Data.ComputedVisibleConversions = Record.readInt();
2004 if (Data.ComputedVisibleConversions)
2005 Record.readUnresolvedSet(Data.VisibleConversions);
2006 assert(Data.Definition && "Data.Definition should be already set!");
2007
2008 if (!Data.IsLambda) {
2009 assert(!LambdaContext && !IndexInLambdaContext &&
2010 "given lambda context for non-lambda");
2011
2012 Data.NumBases = Record.readInt();
2013 if (Data.NumBases)
2014 Data.Bases = ReadGlobalOffset();
2015
2016 Data.NumVBases = Record.readInt();
2017 if (Data.NumVBases)
2018 Data.VBases = ReadGlobalOffset();
2019
2020 Data.FirstFriend = readDeclID().getRawValue();
2021 } else {
2022 using Capture = LambdaCapture;
2023
2024 auto &Lambda = static_cast<CXXRecordDecl::LambdaDefinitionData &>(Data);
2025
2026 BitsUnpacker LambdaBits(Record.readInt());
2027 Lambda.DependencyKind = LambdaBits.getNextBits(/*Width=*/2);
2028 Lambda.IsGenericLambda = LambdaBits.getNextBit();
2029 Lambda.CaptureDefault = LambdaBits.getNextBits(/*Width=*/2);
2030 Lambda.NumCaptures = LambdaBits.getNextBits(/*Width=*/15);
2031 Lambda.HasKnownInternalLinkage = LambdaBits.getNextBit();
2032
2033 Lambda.NumExplicitCaptures = Record.readInt();
2034 Lambda.ManglingNumber = Record.readInt();
2035 if (unsigned DeviceManglingNumber = Record.readInt())
2036 Reader.getContext().DeviceLambdaManglingNumbers[D] = DeviceManglingNumber;
2037 Lambda.IndexInContext = IndexInLambdaContext;
2038 Lambda.ContextDecl = LambdaContext;
2039 Capture *ToCapture = nullptr;
2040 if (Lambda.NumCaptures) {
2041 ToCapture = (Capture *)Reader.getContext().Allocate(sizeof(Capture) *
2042 Lambda.NumCaptures);
2043 Lambda.AddCaptureList(Reader.getContext(), ToCapture);
2044 }
2045 Lambda.MethodTyInfo = readTypeSourceInfo();
2046 for (unsigned I = 0, N = Lambda.NumCaptures; I != N; ++I) {
2047 SourceLocation Loc = readSourceLocation();
2048 BitsUnpacker CaptureBits(Record.readInt());
2049 bool IsImplicit = CaptureBits.getNextBit();
2050 auto Kind =
2051 static_cast<LambdaCaptureKind>(CaptureBits.getNextBits(/*Width=*/3));
2052 switch (Kind) {
2053 case LCK_StarThis:
2054 case LCK_This:
2055 case LCK_VLAType:
2056 new (ToCapture)
2057 Capture(Loc, IsImplicit, Kind, nullptr, SourceLocation());
2058 ToCapture++;
2059 break;
2060 case LCK_ByCopy:
2061 case LCK_ByRef:
2062 auto *Var = readDeclAs<ValueDecl>();
2063 SourceLocation EllipsisLoc = readSourceLocation();
2064 new (ToCapture) Capture(Loc, IsImplicit, Kind, Var, EllipsisLoc);
2065 ToCapture++;
2066 break;
2067 }
2068 }
2069 }
2070 }
2071
MergeDefinitionData(CXXRecordDecl * D,struct CXXRecordDecl::DefinitionData && MergeDD)2072 void ASTDeclMerger::MergeDefinitionData(
2073 CXXRecordDecl *D, struct CXXRecordDecl::DefinitionData &&MergeDD) {
2074 assert(D->DefinitionData &&
2075 "merging class definition into non-definition");
2076 auto &DD = *D->DefinitionData;
2077
2078 if (DD.Definition != MergeDD.Definition) {
2079 // Track that we merged the definitions.
2080 Reader.MergedDeclContexts.insert(std::make_pair(MergeDD.Definition,
2081 DD.Definition));
2082 Reader.PendingDefinitions.erase(MergeDD.Definition);
2083 MergeDD.Definition->demoteThisDefinitionToDeclaration();
2084 Reader.mergeDefinitionVisibility(DD.Definition, MergeDD.Definition);
2085 assert(!Reader.Lookups.contains(MergeDD.Definition) &&
2086 "already loaded pending lookups for merged definition");
2087 }
2088
2089 auto PFDI = Reader.PendingFakeDefinitionData.find(&DD);
2090 if (PFDI != Reader.PendingFakeDefinitionData.end() &&
2091 PFDI->second == ASTReader::PendingFakeDefinitionKind::Fake) {
2092 // We faked up this definition data because we found a class for which we'd
2093 // not yet loaded the definition. Replace it with the real thing now.
2094 assert(!DD.IsLambda && !MergeDD.IsLambda && "faked up lambda definition?");
2095 PFDI->second = ASTReader::PendingFakeDefinitionKind::FakeLoaded;
2096
2097 // Don't change which declaration is the definition; that is required
2098 // to be invariant once we select it.
2099 auto *Def = DD.Definition;
2100 DD = std::move(MergeDD);
2101 DD.Definition = Def;
2102 return;
2103 }
2104
2105 bool DetectedOdrViolation = false;
2106
2107 #define FIELD(Name, Width, Merge) Merge(Name)
2108 #define MERGE_OR(Field) DD.Field |= MergeDD.Field;
2109 #define NO_MERGE(Field) \
2110 DetectedOdrViolation |= DD.Field != MergeDD.Field; \
2111 MERGE_OR(Field)
2112 #include "clang/AST/CXXRecordDeclDefinitionBits.def"
2113 NO_MERGE(IsLambda)
2114 #undef NO_MERGE
2115 #undef MERGE_OR
2116
2117 if (DD.NumBases != MergeDD.NumBases || DD.NumVBases != MergeDD.NumVBases)
2118 DetectedOdrViolation = true;
2119 // FIXME: Issue a diagnostic if the base classes don't match when we come
2120 // to lazily load them.
2121
2122 // FIXME: Issue a diagnostic if the list of conversion functions doesn't
2123 // match when we come to lazily load them.
2124 if (MergeDD.ComputedVisibleConversions && !DD.ComputedVisibleConversions) {
2125 DD.VisibleConversions = std::move(MergeDD.VisibleConversions);
2126 DD.ComputedVisibleConversions = true;
2127 }
2128
2129 // FIXME: Issue a diagnostic if FirstFriend doesn't match when we come to
2130 // lazily load it.
2131
2132 if (DD.IsLambda) {
2133 auto &Lambda1 = static_cast<CXXRecordDecl::LambdaDefinitionData &>(DD);
2134 auto &Lambda2 = static_cast<CXXRecordDecl::LambdaDefinitionData &>(MergeDD);
2135 DetectedOdrViolation |= Lambda1.DependencyKind != Lambda2.DependencyKind;
2136 DetectedOdrViolation |= Lambda1.IsGenericLambda != Lambda2.IsGenericLambda;
2137 DetectedOdrViolation |= Lambda1.CaptureDefault != Lambda2.CaptureDefault;
2138 DetectedOdrViolation |= Lambda1.NumCaptures != Lambda2.NumCaptures;
2139 DetectedOdrViolation |=
2140 Lambda1.NumExplicitCaptures != Lambda2.NumExplicitCaptures;
2141 DetectedOdrViolation |=
2142 Lambda1.HasKnownInternalLinkage != Lambda2.HasKnownInternalLinkage;
2143 DetectedOdrViolation |= Lambda1.ManglingNumber != Lambda2.ManglingNumber;
2144
2145 if (Lambda1.NumCaptures && Lambda1.NumCaptures == Lambda2.NumCaptures) {
2146 for (unsigned I = 0, N = Lambda1.NumCaptures; I != N; ++I) {
2147 LambdaCapture &Cap1 = Lambda1.Captures.front()[I];
2148 LambdaCapture &Cap2 = Lambda2.Captures.front()[I];
2149 DetectedOdrViolation |= Cap1.getCaptureKind() != Cap2.getCaptureKind();
2150 }
2151 Lambda1.AddCaptureList(Reader.getContext(), Lambda2.Captures.front());
2152 }
2153 }
2154
2155 // We don't want to check ODR for decls in the global module fragment.
2156 if (shouldSkipCheckingODR(MergeDD.Definition) || shouldSkipCheckingODR(D))
2157 return;
2158
2159 if (D->getODRHash() != MergeDD.ODRHash) {
2160 DetectedOdrViolation = true;
2161 }
2162
2163 if (DetectedOdrViolation)
2164 Reader.PendingOdrMergeFailures[DD.Definition].push_back(
2165 {MergeDD.Definition, &MergeDD});
2166 }
2167
ReadCXXRecordDefinition(CXXRecordDecl * D,bool Update,Decl * LambdaContext,unsigned IndexInLambdaContext)2168 void ASTDeclReader::ReadCXXRecordDefinition(CXXRecordDecl *D, bool Update,
2169 Decl *LambdaContext,
2170 unsigned IndexInLambdaContext) {
2171 struct CXXRecordDecl::DefinitionData *DD;
2172 ASTContext &C = Reader.getContext();
2173
2174 // Determine whether this is a lambda closure type, so that we can
2175 // allocate the appropriate DefinitionData structure.
2176 bool IsLambda = Record.readInt();
2177 assert(!(IsLambda && Update) &&
2178 "lambda definition should not be added by update record");
2179 if (IsLambda)
2180 DD = new (C) CXXRecordDecl::LambdaDefinitionData(
2181 D, nullptr, CXXRecordDecl::LDK_Unknown, false, LCD_None);
2182 else
2183 DD = new (C) struct CXXRecordDecl::DefinitionData(D);
2184
2185 CXXRecordDecl *Canon = D->getCanonicalDecl();
2186 // Set decl definition data before reading it, so that during deserialization
2187 // when we read CXXRecordDecl, it already has definition data and we don't
2188 // set fake one.
2189 if (!Canon->DefinitionData)
2190 Canon->DefinitionData = DD;
2191 D->DefinitionData = Canon->DefinitionData;
2192 ReadCXXDefinitionData(*DD, D, LambdaContext, IndexInLambdaContext);
2193
2194 // Mark this declaration as being a definition.
2195 D->setCompleteDefinition(true);
2196
2197 // We might already have a different definition for this record. This can
2198 // happen either because we're reading an update record, or because we've
2199 // already done some merging. Either way, just merge into it.
2200 if (Canon->DefinitionData != DD) {
2201 MergeImpl.MergeDefinitionData(Canon, std::move(*DD));
2202 return;
2203 }
2204
2205 // If this is not the first declaration or is an update record, we can have
2206 // other redeclarations already. Make a note that we need to propagate the
2207 // DefinitionData pointer onto them.
2208 if (Update || Canon != D)
2209 Reader.PendingDefinitions.insert(D);
2210 }
2211
VisitCXXRecordDeclImpl(CXXRecordDecl * D)2212 RedeclarableResult ASTDeclReader::VisitCXXRecordDeclImpl(CXXRecordDecl *D) {
2213 RedeclarableResult Redecl = VisitRecordDeclImpl(D);
2214
2215 ASTContext &C = Reader.getContext();
2216
2217 enum CXXRecKind {
2218 CXXRecNotTemplate = 0,
2219 CXXRecTemplate,
2220 CXXRecMemberSpecialization,
2221 CXXLambda
2222 };
2223
2224 Decl *LambdaContext = nullptr;
2225 unsigned IndexInLambdaContext = 0;
2226
2227 switch ((CXXRecKind)Record.readInt()) {
2228 case CXXRecNotTemplate:
2229 // Merged when we merge the folding set entry in the primary template.
2230 if (!isa<ClassTemplateSpecializationDecl>(D))
2231 mergeRedeclarable(D, Redecl);
2232 break;
2233 case CXXRecTemplate: {
2234 // Merged when we merge the template.
2235 auto *Template = readDeclAs<ClassTemplateDecl>();
2236 D->TemplateOrInstantiation = Template;
2237 if (!Template->getTemplatedDecl()) {
2238 // We've not actually loaded the ClassTemplateDecl yet, because we're
2239 // currently being loaded as its pattern. Rely on it to set up our
2240 // TypeForDecl (see VisitClassTemplateDecl).
2241 //
2242 // Beware: we do not yet know our canonical declaration, and may still
2243 // get merged once the surrounding class template has got off the ground.
2244 DeferredTypeID = 0;
2245 }
2246 break;
2247 }
2248 case CXXRecMemberSpecialization: {
2249 auto *RD = readDeclAs<CXXRecordDecl>();
2250 auto TSK = (TemplateSpecializationKind)Record.readInt();
2251 SourceLocation POI = readSourceLocation();
2252 MemberSpecializationInfo *MSI = new (C) MemberSpecializationInfo(RD, TSK);
2253 MSI->setPointOfInstantiation(POI);
2254 D->TemplateOrInstantiation = MSI;
2255 mergeRedeclarable(D, Redecl);
2256 break;
2257 }
2258 case CXXLambda: {
2259 LambdaContext = readDecl();
2260 if (LambdaContext)
2261 IndexInLambdaContext = Record.readInt();
2262 if (LambdaContext)
2263 MergeImpl.mergeLambda(D, Redecl, *LambdaContext, IndexInLambdaContext);
2264 else
2265 // If we don't have a mangling context, treat this like any other
2266 // declaration.
2267 mergeRedeclarable(D, Redecl);
2268 break;
2269 }
2270 }
2271
2272 bool WasDefinition = Record.readInt();
2273 if (WasDefinition)
2274 ReadCXXRecordDefinition(D, /*Update=*/false, LambdaContext,
2275 IndexInLambdaContext);
2276 else
2277 // Propagate DefinitionData pointer from the canonical declaration.
2278 D->DefinitionData = D->getCanonicalDecl()->DefinitionData;
2279
2280 // Lazily load the key function to avoid deserializing every method so we can
2281 // compute it.
2282 if (WasDefinition) {
2283 GlobalDeclID KeyFn = readDeclID();
2284 if (KeyFn.isValid() && D->isCompleteDefinition())
2285 // FIXME: This is wrong for the ARM ABI, where some other module may have
2286 // made this function no longer be a key function. We need an update
2287 // record or similar for that case.
2288 C.KeyFunctions[D] = KeyFn.getRawValue();
2289 }
2290
2291 return Redecl;
2292 }
2293
VisitCXXDeductionGuideDecl(CXXDeductionGuideDecl * D)2294 void ASTDeclReader::VisitCXXDeductionGuideDecl(CXXDeductionGuideDecl *D) {
2295 D->setExplicitSpecifier(Record.readExplicitSpec());
2296 D->Ctor = readDeclAs<CXXConstructorDecl>();
2297 VisitFunctionDecl(D);
2298 D->setDeductionCandidateKind(
2299 static_cast<DeductionCandidate>(Record.readInt()));
2300 D->setSourceDeductionGuide(readDeclAs<CXXDeductionGuideDecl>());
2301 D->setSourceDeductionGuideKind(
2302 static_cast<CXXDeductionGuideDecl::SourceDeductionGuideKind>(
2303 Record.readInt()));
2304 }
2305
VisitCXXMethodDecl(CXXMethodDecl * D)2306 void ASTDeclReader::VisitCXXMethodDecl(CXXMethodDecl *D) {
2307 VisitFunctionDecl(D);
2308
2309 unsigned NumOverridenMethods = Record.readInt();
2310 if (D->isCanonicalDecl()) {
2311 while (NumOverridenMethods--) {
2312 // Avoid invariant checking of CXXMethodDecl::addOverriddenMethod,
2313 // MD may be initializing.
2314 if (auto *MD = readDeclAs<CXXMethodDecl>())
2315 Reader.getContext().addOverriddenMethod(D, MD->getCanonicalDecl());
2316 }
2317 } else {
2318 // We don't care about which declarations this used to override; we get
2319 // the relevant information from the canonical declaration.
2320 Record.skipInts(NumOverridenMethods);
2321 }
2322 }
2323
VisitCXXConstructorDecl(CXXConstructorDecl * D)2324 void ASTDeclReader::VisitCXXConstructorDecl(CXXConstructorDecl *D) {
2325 // We need the inherited constructor information to merge the declaration,
2326 // so we have to read it before we call VisitCXXMethodDecl.
2327 D->setExplicitSpecifier(Record.readExplicitSpec());
2328 if (D->isInheritingConstructor()) {
2329 auto *Shadow = readDeclAs<ConstructorUsingShadowDecl>();
2330 auto *Ctor = readDeclAs<CXXConstructorDecl>();
2331 *D->getTrailingObjects<InheritedConstructor>() =
2332 InheritedConstructor(Shadow, Ctor);
2333 }
2334
2335 VisitCXXMethodDecl(D);
2336 }
2337
VisitCXXDestructorDecl(CXXDestructorDecl * D)2338 void ASTDeclReader::VisitCXXDestructorDecl(CXXDestructorDecl *D) {
2339 VisitCXXMethodDecl(D);
2340
2341 if (auto *OperatorDelete = readDeclAs<FunctionDecl>()) {
2342 CXXDestructorDecl *Canon = D->getCanonicalDecl();
2343 auto *ThisArg = Record.readExpr();
2344 // FIXME: Check consistency if we have an old and new operator delete.
2345 if (!Canon->OperatorDelete) {
2346 Canon->OperatorDelete = OperatorDelete;
2347 Canon->OperatorDeleteThisArg = ThisArg;
2348 }
2349 }
2350 }
2351
VisitCXXConversionDecl(CXXConversionDecl * D)2352 void ASTDeclReader::VisitCXXConversionDecl(CXXConversionDecl *D) {
2353 D->setExplicitSpecifier(Record.readExplicitSpec());
2354 VisitCXXMethodDecl(D);
2355 }
2356
VisitImportDecl(ImportDecl * D)2357 void ASTDeclReader::VisitImportDecl(ImportDecl *D) {
2358 VisitDecl(D);
2359 D->ImportedModule = readModule();
2360 D->setImportComplete(Record.readInt());
2361 auto *StoredLocs = D->getTrailingObjects();
2362 for (unsigned I = 0, N = Record.back(); I != N; ++I)
2363 StoredLocs[I] = readSourceLocation();
2364 Record.skipInts(1); // The number of stored source locations.
2365 }
2366
VisitAccessSpecDecl(AccessSpecDecl * D)2367 void ASTDeclReader::VisitAccessSpecDecl(AccessSpecDecl *D) {
2368 VisitDecl(D);
2369 D->setColonLoc(readSourceLocation());
2370 }
2371
VisitFriendDecl(FriendDecl * D)2372 void ASTDeclReader::VisitFriendDecl(FriendDecl *D) {
2373 VisitDecl(D);
2374 if (Record.readInt()) // hasFriendDecl
2375 D->Friend = readDeclAs<NamedDecl>();
2376 else
2377 D->Friend = readTypeSourceInfo();
2378 for (unsigned i = 0; i != D->NumTPLists; ++i)
2379 D->getTrailingObjects()[i] = Record.readTemplateParameterList();
2380 D->NextFriend = readDeclID().getRawValue();
2381 D->UnsupportedFriend = (Record.readInt() != 0);
2382 D->FriendLoc = readSourceLocation();
2383 D->EllipsisLoc = readSourceLocation();
2384 }
2385
VisitFriendTemplateDecl(FriendTemplateDecl * D)2386 void ASTDeclReader::VisitFriendTemplateDecl(FriendTemplateDecl *D) {
2387 VisitDecl(D);
2388 unsigned NumParams = Record.readInt();
2389 D->NumParams = NumParams;
2390 D->Params = new (Reader.getContext()) TemplateParameterList *[NumParams];
2391 for (unsigned i = 0; i != NumParams; ++i)
2392 D->Params[i] = Record.readTemplateParameterList();
2393 if (Record.readInt()) // HasFriendDecl
2394 D->Friend = readDeclAs<NamedDecl>();
2395 else
2396 D->Friend = readTypeSourceInfo();
2397 D->FriendLoc = readSourceLocation();
2398 }
2399
VisitTemplateDecl(TemplateDecl * D)2400 void ASTDeclReader::VisitTemplateDecl(TemplateDecl *D) {
2401 VisitNamedDecl(D);
2402
2403 assert(!D->TemplateParams && "TemplateParams already set!");
2404 D->TemplateParams = Record.readTemplateParameterList();
2405 D->init(readDeclAs<NamedDecl>());
2406 }
2407
VisitConceptDecl(ConceptDecl * D)2408 void ASTDeclReader::VisitConceptDecl(ConceptDecl *D) {
2409 VisitTemplateDecl(D);
2410 D->ConstraintExpr = Record.readExpr();
2411 mergeMergeable(D);
2412 }
2413
VisitImplicitConceptSpecializationDecl(ImplicitConceptSpecializationDecl * D)2414 void ASTDeclReader::VisitImplicitConceptSpecializationDecl(
2415 ImplicitConceptSpecializationDecl *D) {
2416 // The size of the template list was read during creation of the Decl, so we
2417 // don't have to re-read it here.
2418 VisitDecl(D);
2419 llvm::SmallVector<TemplateArgument, 4> Args;
2420 for (unsigned I = 0; I < D->NumTemplateArgs; ++I)
2421 Args.push_back(Record.readTemplateArgument(/*Canonicalize=*/true));
2422 D->setTemplateArguments(Args);
2423 }
2424
VisitRequiresExprBodyDecl(RequiresExprBodyDecl * D)2425 void ASTDeclReader::VisitRequiresExprBodyDecl(RequiresExprBodyDecl *D) {
2426 }
2427
ReadSpecializations(ModuleFile & M,Decl * D,llvm::BitstreamCursor & DeclsCursor,bool IsPartial)2428 void ASTDeclReader::ReadSpecializations(ModuleFile &M, Decl *D,
2429 llvm::BitstreamCursor &DeclsCursor,
2430 bool IsPartial) {
2431 uint64_t Offset = ReadLocalOffset();
2432 bool Failed =
2433 Reader.ReadSpecializations(M, DeclsCursor, Offset, D, IsPartial);
2434 (void)Failed;
2435 assert(!Failed);
2436 }
2437
2438 RedeclarableResult
VisitRedeclarableTemplateDecl(RedeclarableTemplateDecl * D)2439 ASTDeclReader::VisitRedeclarableTemplateDecl(RedeclarableTemplateDecl *D) {
2440 RedeclarableResult Redecl = VisitRedeclarable(D);
2441
2442 // Make sure we've allocated the Common pointer first. We do this before
2443 // VisitTemplateDecl so that getCommonPtr() can be used during initialization.
2444 RedeclarableTemplateDecl *CanonD = D->getCanonicalDecl();
2445 if (!CanonD->Common) {
2446 CanonD->Common = CanonD->newCommon(Reader.getContext());
2447 Reader.PendingDefinitions.insert(CanonD);
2448 }
2449 D->Common = CanonD->Common;
2450
2451 // If this is the first declaration of the template, fill in the information
2452 // for the 'common' pointer.
2453 if (ThisDeclID == Redecl.getFirstID()) {
2454 if (auto *RTD = readDeclAs<RedeclarableTemplateDecl>()) {
2455 assert(RTD->getKind() == D->getKind() &&
2456 "InstantiatedFromMemberTemplate kind mismatch");
2457 D->setInstantiatedFromMemberTemplate(RTD);
2458 if (Record.readInt())
2459 D->setMemberSpecialization();
2460 }
2461 }
2462
2463 VisitTemplateDecl(D);
2464 D->IdentifierNamespace = Record.readInt();
2465
2466 return Redecl;
2467 }
2468
VisitClassTemplateDecl(ClassTemplateDecl * D)2469 void ASTDeclReader::VisitClassTemplateDecl(ClassTemplateDecl *D) {
2470 RedeclarableResult Redecl = VisitRedeclarableTemplateDecl(D);
2471 mergeRedeclarableTemplate(D, Redecl);
2472
2473 if (ThisDeclID == Redecl.getFirstID()) {
2474 // This ClassTemplateDecl owns a CommonPtr; read it to keep track of all of
2475 // the specializations.
2476 ReadSpecializations(*Loc.F, D, Loc.F->DeclsCursor, /*IsPartial=*/false);
2477 ReadSpecializations(*Loc.F, D, Loc.F->DeclsCursor, /*IsPartial=*/true);
2478 }
2479
2480 if (D->getTemplatedDecl()->TemplateOrInstantiation) {
2481 // We were loaded before our templated declaration was. We've not set up
2482 // its corresponding type yet (see VisitCXXRecordDeclImpl), so reconstruct
2483 // it now.
2484 Reader.getContext().getInjectedClassNameType(
2485 D->getTemplatedDecl(), D->getInjectedClassNameSpecialization());
2486 }
2487 }
2488
VisitBuiltinTemplateDecl(BuiltinTemplateDecl * D)2489 void ASTDeclReader::VisitBuiltinTemplateDecl(BuiltinTemplateDecl *D) {
2490 llvm_unreachable("BuiltinTemplates are not serialized");
2491 }
2492
2493 /// TODO: Unify with ClassTemplateDecl version?
2494 /// May require unifying ClassTemplateDecl and
2495 /// VarTemplateDecl beyond TemplateDecl...
VisitVarTemplateDecl(VarTemplateDecl * D)2496 void ASTDeclReader::VisitVarTemplateDecl(VarTemplateDecl *D) {
2497 RedeclarableResult Redecl = VisitRedeclarableTemplateDecl(D);
2498 mergeRedeclarableTemplate(D, Redecl);
2499
2500 if (ThisDeclID == Redecl.getFirstID()) {
2501 // This VarTemplateDecl owns a CommonPtr; read it to keep track of all of
2502 // the specializations.
2503 ReadSpecializations(*Loc.F, D, Loc.F->DeclsCursor, /*IsPartial=*/false);
2504 ReadSpecializations(*Loc.F, D, Loc.F->DeclsCursor, /*IsPartial=*/true);
2505 }
2506 }
2507
VisitClassTemplateSpecializationDeclImpl(ClassTemplateSpecializationDecl * D)2508 RedeclarableResult ASTDeclReader::VisitClassTemplateSpecializationDeclImpl(
2509 ClassTemplateSpecializationDecl *D) {
2510 RedeclarableResult Redecl = VisitCXXRecordDeclImpl(D);
2511
2512 ASTContext &C = Reader.getContext();
2513 if (Decl *InstD = readDecl()) {
2514 if (auto *CTD = dyn_cast<ClassTemplateDecl>(InstD)) {
2515 D->SpecializedTemplate = CTD;
2516 } else {
2517 SmallVector<TemplateArgument, 8> TemplArgs;
2518 Record.readTemplateArgumentList(TemplArgs);
2519 TemplateArgumentList *ArgList
2520 = TemplateArgumentList::CreateCopy(C, TemplArgs);
2521 auto *PS =
2522 new (C) ClassTemplateSpecializationDecl::
2523 SpecializedPartialSpecialization();
2524 PS->PartialSpecialization
2525 = cast<ClassTemplatePartialSpecializationDecl>(InstD);
2526 PS->TemplateArgs = ArgList;
2527 D->SpecializedTemplate = PS;
2528 }
2529 }
2530
2531 SmallVector<TemplateArgument, 8> TemplArgs;
2532 Record.readTemplateArgumentList(TemplArgs, /*Canonicalize*/ true);
2533 D->TemplateArgs = TemplateArgumentList::CreateCopy(C, TemplArgs);
2534 D->PointOfInstantiation = readSourceLocation();
2535 D->SpecializationKind = (TemplateSpecializationKind)Record.readInt();
2536 D->StrictPackMatch = Record.readBool();
2537
2538 bool writtenAsCanonicalDecl = Record.readInt();
2539 if (writtenAsCanonicalDecl) {
2540 auto *CanonPattern = readDeclAs<ClassTemplateDecl>();
2541 if (D->isCanonicalDecl()) { // It's kept in the folding set.
2542 // Set this as, or find, the canonical declaration for this specialization
2543 ClassTemplateSpecializationDecl *CanonSpec;
2544 if (auto *Partial = dyn_cast<ClassTemplatePartialSpecializationDecl>(D)) {
2545 CanonSpec = CanonPattern->getCommonPtr()->PartialSpecializations
2546 .GetOrInsertNode(Partial);
2547 } else {
2548 CanonSpec =
2549 CanonPattern->getCommonPtr()->Specializations.GetOrInsertNode(D);
2550 }
2551 // If there was already a canonical specialization, merge into it.
2552 if (CanonSpec != D) {
2553 MergeImpl.mergeRedeclarable<TagDecl>(D, CanonSpec, Redecl);
2554
2555 // This declaration might be a definition. Merge with any existing
2556 // definition.
2557 if (auto *DDD = D->DefinitionData) {
2558 if (CanonSpec->DefinitionData)
2559 MergeImpl.MergeDefinitionData(CanonSpec, std::move(*DDD));
2560 else
2561 CanonSpec->DefinitionData = D->DefinitionData;
2562 }
2563 D->DefinitionData = CanonSpec->DefinitionData;
2564 }
2565 }
2566 }
2567
2568 // extern/template keyword locations for explicit instantiations
2569 if (Record.readBool()) {
2570 auto *ExplicitInfo = new (C) ExplicitInstantiationInfo;
2571 ExplicitInfo->ExternKeywordLoc = readSourceLocation();
2572 ExplicitInfo->TemplateKeywordLoc = readSourceLocation();
2573 D->ExplicitInfo = ExplicitInfo;
2574 }
2575
2576 if (Record.readBool())
2577 D->setTemplateArgsAsWritten(Record.readASTTemplateArgumentListInfo());
2578
2579 return Redecl;
2580 }
2581
VisitClassTemplatePartialSpecializationDecl(ClassTemplatePartialSpecializationDecl * D)2582 void ASTDeclReader::VisitClassTemplatePartialSpecializationDecl(
2583 ClassTemplatePartialSpecializationDecl *D) {
2584 // We need to read the template params first because redeclarable is going to
2585 // need them for profiling
2586 TemplateParameterList *Params = Record.readTemplateParameterList();
2587 D->TemplateParams = Params;
2588
2589 RedeclarableResult Redecl = VisitClassTemplateSpecializationDeclImpl(D);
2590
2591 // These are read/set from/to the first declaration.
2592 if (ThisDeclID == Redecl.getFirstID()) {
2593 D->InstantiatedFromMember.setPointer(
2594 readDeclAs<ClassTemplatePartialSpecializationDecl>());
2595 D->InstantiatedFromMember.setInt(Record.readInt());
2596 }
2597 }
2598
VisitFunctionTemplateDecl(FunctionTemplateDecl * D)2599 void ASTDeclReader::VisitFunctionTemplateDecl(FunctionTemplateDecl *D) {
2600 RedeclarableResult Redecl = VisitRedeclarableTemplateDecl(D);
2601
2602 if (ThisDeclID == Redecl.getFirstID()) {
2603 // This FunctionTemplateDecl owns a CommonPtr; read it.
2604 ReadSpecializations(*Loc.F, D, Loc.F->DeclsCursor, /*IsPartial=*/false);
2605 }
2606 }
2607
2608 /// TODO: Unify with ClassTemplateSpecializationDecl version?
2609 /// May require unifying ClassTemplate(Partial)SpecializationDecl and
2610 /// VarTemplate(Partial)SpecializationDecl with a new data
2611 /// structure Template(Partial)SpecializationDecl, and
2612 /// using Template(Partial)SpecializationDecl as input type.
VisitVarTemplateSpecializationDeclImpl(VarTemplateSpecializationDecl * D)2613 RedeclarableResult ASTDeclReader::VisitVarTemplateSpecializationDeclImpl(
2614 VarTemplateSpecializationDecl *D) {
2615 ASTContext &C = Reader.getContext();
2616 if (Decl *InstD = readDecl()) {
2617 if (auto *VTD = dyn_cast<VarTemplateDecl>(InstD)) {
2618 D->SpecializedTemplate = VTD;
2619 } else {
2620 SmallVector<TemplateArgument, 8> TemplArgs;
2621 Record.readTemplateArgumentList(TemplArgs);
2622 TemplateArgumentList *ArgList = TemplateArgumentList::CreateCopy(
2623 C, TemplArgs);
2624 auto *PS =
2625 new (C)
2626 VarTemplateSpecializationDecl::SpecializedPartialSpecialization();
2627 PS->PartialSpecialization =
2628 cast<VarTemplatePartialSpecializationDecl>(InstD);
2629 PS->TemplateArgs = ArgList;
2630 D->SpecializedTemplate = PS;
2631 }
2632 }
2633
2634 // extern/template keyword locations for explicit instantiations
2635 if (Record.readBool()) {
2636 auto *ExplicitInfo = new (C) ExplicitInstantiationInfo;
2637 ExplicitInfo->ExternKeywordLoc = readSourceLocation();
2638 ExplicitInfo->TemplateKeywordLoc = readSourceLocation();
2639 D->ExplicitInfo = ExplicitInfo;
2640 }
2641
2642 if (Record.readBool())
2643 D->setTemplateArgsAsWritten(Record.readASTTemplateArgumentListInfo());
2644
2645 SmallVector<TemplateArgument, 8> TemplArgs;
2646 Record.readTemplateArgumentList(TemplArgs, /*Canonicalize*/ true);
2647 D->TemplateArgs = TemplateArgumentList::CreateCopy(C, TemplArgs);
2648 D->PointOfInstantiation = readSourceLocation();
2649 D->SpecializationKind = (TemplateSpecializationKind)Record.readInt();
2650 D->IsCompleteDefinition = Record.readInt();
2651
2652 RedeclarableResult Redecl = VisitVarDeclImpl(D);
2653
2654 bool writtenAsCanonicalDecl = Record.readInt();
2655 if (writtenAsCanonicalDecl) {
2656 auto *CanonPattern = readDeclAs<VarTemplateDecl>();
2657 if (D->isCanonicalDecl()) { // It's kept in the folding set.
2658 VarTemplateSpecializationDecl *CanonSpec;
2659 if (auto *Partial = dyn_cast<VarTemplatePartialSpecializationDecl>(D)) {
2660 CanonSpec = CanonPattern->getCommonPtr()
2661 ->PartialSpecializations.GetOrInsertNode(Partial);
2662 } else {
2663 CanonSpec =
2664 CanonPattern->getCommonPtr()->Specializations.GetOrInsertNode(D);
2665 }
2666 // If we already have a matching specialization, merge it.
2667 if (CanonSpec != D)
2668 MergeImpl.mergeRedeclarable<VarDecl>(D, CanonSpec, Redecl);
2669 }
2670 }
2671
2672 return Redecl;
2673 }
2674
2675 /// TODO: Unify with ClassTemplatePartialSpecializationDecl version?
2676 /// May require unifying ClassTemplate(Partial)SpecializationDecl and
2677 /// VarTemplate(Partial)SpecializationDecl with a new data
2678 /// structure Template(Partial)SpecializationDecl, and
2679 /// using Template(Partial)SpecializationDecl as input type.
VisitVarTemplatePartialSpecializationDecl(VarTemplatePartialSpecializationDecl * D)2680 void ASTDeclReader::VisitVarTemplatePartialSpecializationDecl(
2681 VarTemplatePartialSpecializationDecl *D) {
2682 TemplateParameterList *Params = Record.readTemplateParameterList();
2683 D->TemplateParams = Params;
2684
2685 RedeclarableResult Redecl = VisitVarTemplateSpecializationDeclImpl(D);
2686
2687 // These are read/set from/to the first declaration.
2688 if (ThisDeclID == Redecl.getFirstID()) {
2689 D->InstantiatedFromMember.setPointer(
2690 readDeclAs<VarTemplatePartialSpecializationDecl>());
2691 D->InstantiatedFromMember.setInt(Record.readInt());
2692 }
2693 }
2694
VisitTemplateTypeParmDecl(TemplateTypeParmDecl * D)2695 void ASTDeclReader::VisitTemplateTypeParmDecl(TemplateTypeParmDecl *D) {
2696 VisitTypeDecl(D);
2697
2698 D->setDeclaredWithTypename(Record.readInt());
2699
2700 bool TypeConstraintInitialized = D->hasTypeConstraint() && Record.readBool();
2701 if (TypeConstraintInitialized) {
2702 ConceptReference *CR = nullptr;
2703 if (Record.readBool())
2704 CR = Record.readConceptReference();
2705 Expr *ImmediatelyDeclaredConstraint = Record.readExpr();
2706 UnsignedOrNone ArgPackSubstIndex = Record.readUnsignedOrNone();
2707
2708 D->setTypeConstraint(CR, ImmediatelyDeclaredConstraint, ArgPackSubstIndex);
2709 D->NumExpanded = Record.readUnsignedOrNone();
2710 }
2711
2712 if (Record.readInt())
2713 D->setDefaultArgument(Reader.getContext(),
2714 Record.readTemplateArgumentLoc());
2715 }
2716
VisitNonTypeTemplateParmDecl(NonTypeTemplateParmDecl * D)2717 void ASTDeclReader::VisitNonTypeTemplateParmDecl(NonTypeTemplateParmDecl *D) {
2718 VisitDeclaratorDecl(D);
2719 // TemplateParmPosition.
2720 D->setDepth(Record.readInt());
2721 D->setPosition(Record.readInt());
2722 if (D->hasPlaceholderTypeConstraint())
2723 D->setPlaceholderTypeConstraint(Record.readExpr());
2724 if (D->isExpandedParameterPack()) {
2725 auto TypesAndInfos =
2726 D->getTrailingObjects<std::pair<QualType, TypeSourceInfo *>>();
2727 for (unsigned I = 0, N = D->getNumExpansionTypes(); I != N; ++I) {
2728 new (&TypesAndInfos[I].first) QualType(Record.readType());
2729 TypesAndInfos[I].second = readTypeSourceInfo();
2730 }
2731 } else {
2732 // Rest of NonTypeTemplateParmDecl.
2733 D->ParameterPack = Record.readInt();
2734 if (Record.readInt())
2735 D->setDefaultArgument(Reader.getContext(),
2736 Record.readTemplateArgumentLoc());
2737 }
2738 }
2739
VisitTemplateTemplateParmDecl(TemplateTemplateParmDecl * D)2740 void ASTDeclReader::VisitTemplateTemplateParmDecl(TemplateTemplateParmDecl *D) {
2741 VisitTemplateDecl(D);
2742 D->setDeclaredWithTypename(Record.readBool());
2743 // TemplateParmPosition.
2744 D->setDepth(Record.readInt());
2745 D->setPosition(Record.readInt());
2746 if (D->isExpandedParameterPack()) {
2747 auto **Data = D->getTrailingObjects();
2748 for (unsigned I = 0, N = D->getNumExpansionTemplateParameters();
2749 I != N; ++I)
2750 Data[I] = Record.readTemplateParameterList();
2751 } else {
2752 // Rest of TemplateTemplateParmDecl.
2753 D->ParameterPack = Record.readInt();
2754 if (Record.readInt())
2755 D->setDefaultArgument(Reader.getContext(),
2756 Record.readTemplateArgumentLoc());
2757 }
2758 }
2759
VisitTypeAliasTemplateDecl(TypeAliasTemplateDecl * D)2760 void ASTDeclReader::VisitTypeAliasTemplateDecl(TypeAliasTemplateDecl *D) {
2761 RedeclarableResult Redecl = VisitRedeclarableTemplateDecl(D);
2762 mergeRedeclarableTemplate(D, Redecl);
2763 }
2764
VisitStaticAssertDecl(StaticAssertDecl * D)2765 void ASTDeclReader::VisitStaticAssertDecl(StaticAssertDecl *D) {
2766 VisitDecl(D);
2767 D->AssertExprAndFailed.setPointer(Record.readExpr());
2768 D->AssertExprAndFailed.setInt(Record.readInt());
2769 D->Message = cast_or_null<StringLiteral>(Record.readExpr());
2770 D->RParenLoc = readSourceLocation();
2771 }
2772
VisitEmptyDecl(EmptyDecl * D)2773 void ASTDeclReader::VisitEmptyDecl(EmptyDecl *D) {
2774 VisitDecl(D);
2775 }
2776
VisitLifetimeExtendedTemporaryDecl(LifetimeExtendedTemporaryDecl * D)2777 void ASTDeclReader::VisitLifetimeExtendedTemporaryDecl(
2778 LifetimeExtendedTemporaryDecl *D) {
2779 VisitDecl(D);
2780 D->ExtendingDecl = readDeclAs<ValueDecl>();
2781 D->ExprWithTemporary = Record.readStmt();
2782 if (Record.readInt()) {
2783 D->Value = new (D->getASTContext()) APValue(Record.readAPValue());
2784 D->getASTContext().addDestruction(D->Value);
2785 }
2786 D->ManglingNumber = Record.readInt();
2787 mergeMergeable(D);
2788 }
2789
VisitDeclContext(DeclContext * DC,LookupBlockOffsets & Offsets)2790 void ASTDeclReader::VisitDeclContext(DeclContext *DC,
2791 LookupBlockOffsets &Offsets) {
2792 Offsets.LexicalOffset = ReadLocalOffset();
2793 Offsets.VisibleOffset = ReadLocalOffset();
2794 Offsets.ModuleLocalOffset = ReadLocalOffset();
2795 Offsets.TULocalOffset = ReadLocalOffset();
2796 }
2797
2798 template <typename T>
VisitRedeclarable(Redeclarable<T> * D)2799 RedeclarableResult ASTDeclReader::VisitRedeclarable(Redeclarable<T> *D) {
2800 GlobalDeclID FirstDeclID = readDeclID();
2801 Decl *MergeWith = nullptr;
2802
2803 bool IsKeyDecl = ThisDeclID == FirstDeclID;
2804 bool IsFirstLocalDecl = false;
2805
2806 uint64_t RedeclOffset = 0;
2807
2808 // invalid FirstDeclID indicates that this declaration was the only
2809 // declaration of its entity, and is used for space optimization.
2810 if (FirstDeclID.isInvalid()) {
2811 FirstDeclID = ThisDeclID;
2812 IsKeyDecl = true;
2813 IsFirstLocalDecl = true;
2814 } else if (unsigned N = Record.readInt()) {
2815 // This declaration was the first local declaration, but may have imported
2816 // other declarations.
2817 IsKeyDecl = N == 1;
2818 IsFirstLocalDecl = true;
2819
2820 // We have some declarations that must be before us in our redeclaration
2821 // chain. Read them now, and remember that we ought to merge with one of
2822 // them.
2823 // FIXME: Provide a known merge target to the second and subsequent such
2824 // declaration.
2825 for (unsigned I = 0; I != N - 1; ++I)
2826 MergeWith = readDecl();
2827
2828 RedeclOffset = ReadLocalOffset();
2829 } else {
2830 // This declaration was not the first local declaration. Read the first
2831 // local declaration now, to trigger the import of other redeclarations.
2832 (void)readDecl();
2833 }
2834
2835 auto *FirstDecl = cast_or_null<T>(Reader.GetDecl(FirstDeclID));
2836 if (FirstDecl != D) {
2837 // We delay loading of the redeclaration chain to avoid deeply nested calls.
2838 // We temporarily set the first (canonical) declaration as the previous one
2839 // which is the one that matters and mark the real previous DeclID to be
2840 // loaded & attached later on.
2841 D->RedeclLink = Redeclarable<T>::PreviousDeclLink(FirstDecl);
2842 D->First = FirstDecl->getCanonicalDecl();
2843 }
2844
2845 auto *DAsT = static_cast<T *>(D);
2846
2847 // Note that we need to load local redeclarations of this decl and build a
2848 // decl chain for them. This must happen *after* we perform the preloading
2849 // above; this ensures that the redeclaration chain is built in the correct
2850 // order.
2851 if (IsFirstLocalDecl)
2852 Reader.PendingDeclChains.push_back(std::make_pair(DAsT, RedeclOffset));
2853
2854 return RedeclarableResult(MergeWith, FirstDeclID, IsKeyDecl);
2855 }
2856
2857 /// Attempts to merge the given declaration (D) with another declaration
2858 /// of the same entity.
2859 template <typename T>
mergeRedeclarable(Redeclarable<T> * DBase,RedeclarableResult & Redecl)2860 void ASTDeclReader::mergeRedeclarable(Redeclarable<T> *DBase,
2861 RedeclarableResult &Redecl) {
2862 // If modules are not available, there is no reason to perform this merge.
2863 if (!Reader.getContext().getLangOpts().Modules)
2864 return;
2865
2866 // If we're not the canonical declaration, we don't need to merge.
2867 if (!DBase->isFirstDecl())
2868 return;
2869
2870 auto *D = static_cast<T *>(DBase);
2871
2872 if (auto *Existing = Redecl.getKnownMergeTarget())
2873 // We already know of an existing declaration we should merge with.
2874 MergeImpl.mergeRedeclarable(D, cast<T>(Existing), Redecl);
2875 else if (FindExistingResult ExistingRes = findExisting(D))
2876 if (T *Existing = ExistingRes)
2877 MergeImpl.mergeRedeclarable(D, Existing, Redecl);
2878 }
2879
2880 /// Attempt to merge D with a previous declaration of the same lambda, which is
2881 /// found by its index within its context declaration, if it has one.
2882 ///
2883 /// We can't look up lambdas in their enclosing lexical or semantic context in
2884 /// general, because for lambdas in variables, both of those might be a
2885 /// namespace or the translation unit.
mergeLambda(CXXRecordDecl * D,RedeclarableResult & Redecl,Decl & Context,unsigned IndexInContext)2886 void ASTDeclMerger::mergeLambda(CXXRecordDecl *D, RedeclarableResult &Redecl,
2887 Decl &Context, unsigned IndexInContext) {
2888 // If modules are not available, there is no reason to perform this merge.
2889 if (!Reader.getContext().getLangOpts().Modules)
2890 return;
2891
2892 // If we're not the canonical declaration, we don't need to merge.
2893 if (!D->isFirstDecl())
2894 return;
2895
2896 if (auto *Existing = Redecl.getKnownMergeTarget())
2897 // We already know of an existing declaration we should merge with.
2898 mergeRedeclarable(D, cast<TagDecl>(Existing), Redecl);
2899
2900 // Look up this lambda to see if we've seen it before. If so, merge with the
2901 // one we already loaded.
2902 NamedDecl *&Slot = Reader.LambdaDeclarationsForMerging[{
2903 Context.getCanonicalDecl(), IndexInContext}];
2904 if (Slot)
2905 mergeRedeclarable(D, cast<TagDecl>(Slot), Redecl);
2906 else
2907 Slot = D;
2908 }
2909
mergeRedeclarableTemplate(RedeclarableTemplateDecl * D,RedeclarableResult & Redecl)2910 void ASTDeclReader::mergeRedeclarableTemplate(RedeclarableTemplateDecl *D,
2911 RedeclarableResult &Redecl) {
2912 mergeRedeclarable(D, Redecl);
2913 // If we merged the template with a prior declaration chain, merge the
2914 // common pointer.
2915 // FIXME: Actually merge here, don't just overwrite.
2916 D->Common = D->getCanonicalDecl()->Common;
2917 }
2918
2919 /// "Cast" to type T, asserting if we don't have an implicit conversion.
2920 /// We use this to put code in a template that will only be valid for certain
2921 /// instantiations.
assert_cast(T t)2922 template<typename T> static T assert_cast(T t) { return t; }
assert_cast(...)2923 template<typename T> static T assert_cast(...) {
2924 llvm_unreachable("bad assert_cast");
2925 }
2926
2927 /// Merge together the pattern declarations from two template
2928 /// declarations.
mergeTemplatePattern(RedeclarableTemplateDecl * D,RedeclarableTemplateDecl * Existing,bool IsKeyDecl)2929 void ASTDeclMerger::mergeTemplatePattern(RedeclarableTemplateDecl *D,
2930 RedeclarableTemplateDecl *Existing,
2931 bool IsKeyDecl) {
2932 auto *DPattern = D->getTemplatedDecl();
2933 auto *ExistingPattern = Existing->getTemplatedDecl();
2934 RedeclarableResult Result(
2935 /*MergeWith*/ ExistingPattern,
2936 DPattern->getCanonicalDecl()->getGlobalID(), IsKeyDecl);
2937
2938 if (auto *DClass = dyn_cast<CXXRecordDecl>(DPattern)) {
2939 // Merge with any existing definition.
2940 // FIXME: This is duplicated in several places. Refactor.
2941 auto *ExistingClass =
2942 cast<CXXRecordDecl>(ExistingPattern)->getCanonicalDecl();
2943 if (auto *DDD = DClass->DefinitionData) {
2944 if (ExistingClass->DefinitionData) {
2945 MergeDefinitionData(ExistingClass, std::move(*DDD));
2946 } else {
2947 ExistingClass->DefinitionData = DClass->DefinitionData;
2948 // We may have skipped this before because we thought that DClass
2949 // was the canonical declaration.
2950 Reader.PendingDefinitions.insert(DClass);
2951 }
2952 }
2953 DClass->DefinitionData = ExistingClass->DefinitionData;
2954
2955 return mergeRedeclarable(DClass, cast<TagDecl>(ExistingPattern),
2956 Result);
2957 }
2958 if (auto *DFunction = dyn_cast<FunctionDecl>(DPattern))
2959 return mergeRedeclarable(DFunction, cast<FunctionDecl>(ExistingPattern),
2960 Result);
2961 if (auto *DVar = dyn_cast<VarDecl>(DPattern))
2962 return mergeRedeclarable(DVar, cast<VarDecl>(ExistingPattern), Result);
2963 if (auto *DAlias = dyn_cast<TypeAliasDecl>(DPattern))
2964 return mergeRedeclarable(DAlias, cast<TypedefNameDecl>(ExistingPattern),
2965 Result);
2966 llvm_unreachable("merged an unknown kind of redeclarable template");
2967 }
2968
2969 /// Attempts to merge the given declaration (D) with another declaration
2970 /// of the same entity.
2971 template <typename T>
mergeRedeclarableImpl(Redeclarable<T> * DBase,T * Existing,GlobalDeclID KeyDeclID)2972 void ASTDeclMerger::mergeRedeclarableImpl(Redeclarable<T> *DBase, T *Existing,
2973 GlobalDeclID KeyDeclID) {
2974 auto *D = static_cast<T *>(DBase);
2975 T *ExistingCanon = Existing->getCanonicalDecl();
2976 T *DCanon = D->getCanonicalDecl();
2977 if (ExistingCanon != DCanon) {
2978 // Have our redeclaration link point back at the canonical declaration
2979 // of the existing declaration, so that this declaration has the
2980 // appropriate canonical declaration.
2981 D->RedeclLink = Redeclarable<T>::PreviousDeclLink(ExistingCanon);
2982 D->First = ExistingCanon;
2983 ExistingCanon->Used |= D->Used;
2984 D->Used = false;
2985
2986 bool IsKeyDecl = KeyDeclID.isValid();
2987
2988 // When we merge a template, merge its pattern.
2989 if (auto *DTemplate = dyn_cast<RedeclarableTemplateDecl>(D))
2990 mergeTemplatePattern(
2991 DTemplate, assert_cast<RedeclarableTemplateDecl *>(ExistingCanon),
2992 IsKeyDecl);
2993
2994 // If this declaration is a key declaration, make a note of that.
2995 if (IsKeyDecl)
2996 Reader.KeyDecls[ExistingCanon].push_back(KeyDeclID);
2997 }
2998 }
2999
3000 /// ODR-like semantics for C/ObjC allow us to merge tag types and a structural
3001 /// check in Sema guarantees the types can be merged (see C11 6.2.7/1 or C89
3002 /// 6.1.2.6/1). Although most merging is done in Sema, we need to guarantee
3003 /// that some types are mergeable during deserialization, otherwise name
3004 /// lookup fails. This is the case for EnumConstantDecl.
allowODRLikeMergeInC(NamedDecl * ND)3005 static bool allowODRLikeMergeInC(NamedDecl *ND) {
3006 if (!ND)
3007 return false;
3008 // TODO: implement merge for other necessary decls.
3009 if (isa<EnumConstantDecl, FieldDecl, IndirectFieldDecl>(ND))
3010 return true;
3011 return false;
3012 }
3013
3014 /// Attempts to merge LifetimeExtendedTemporaryDecl with
3015 /// identical class definitions from two different modules.
mergeMergeable(LifetimeExtendedTemporaryDecl * D)3016 void ASTDeclReader::mergeMergeable(LifetimeExtendedTemporaryDecl *D) {
3017 // If modules are not available, there is no reason to perform this merge.
3018 if (!Reader.getContext().getLangOpts().Modules)
3019 return;
3020
3021 LifetimeExtendedTemporaryDecl *LETDecl = D;
3022
3023 LifetimeExtendedTemporaryDecl *&LookupResult =
3024 Reader.LETemporaryForMerging[std::make_pair(
3025 LETDecl->getExtendingDecl(), LETDecl->getManglingNumber())];
3026 if (LookupResult)
3027 Reader.getContext().setPrimaryMergedDecl(LETDecl,
3028 LookupResult->getCanonicalDecl());
3029 else
3030 LookupResult = LETDecl;
3031 }
3032
3033 /// Attempts to merge the given declaration (D) with another declaration
3034 /// of the same entity, for the case where the entity is not actually
3035 /// redeclarable. This happens, for instance, when merging the fields of
3036 /// identical class definitions from two different modules.
3037 template<typename T>
mergeMergeable(Mergeable<T> * D)3038 void ASTDeclReader::mergeMergeable(Mergeable<T> *D) {
3039 // If modules are not available, there is no reason to perform this merge.
3040 if (!Reader.getContext().getLangOpts().Modules)
3041 return;
3042
3043 // ODR-based merging is performed in C++ and in some cases (tag types) in C.
3044 // Note that C identically-named things in different translation units are
3045 // not redeclarations, but may still have compatible types, where ODR-like
3046 // semantics may apply.
3047 if (!Reader.getContext().getLangOpts().CPlusPlus &&
3048 !allowODRLikeMergeInC(dyn_cast<NamedDecl>(static_cast<T*>(D))))
3049 return;
3050
3051 if (FindExistingResult ExistingRes = findExisting(static_cast<T*>(D)))
3052 if (T *Existing = ExistingRes)
3053 Reader.getContext().setPrimaryMergedDecl(static_cast<T *>(D),
3054 Existing->getCanonicalDecl());
3055 }
3056
VisitOMPThreadPrivateDecl(OMPThreadPrivateDecl * D)3057 void ASTDeclReader::VisitOMPThreadPrivateDecl(OMPThreadPrivateDecl *D) {
3058 Record.readOMPChildren(D->Data);
3059 VisitDecl(D);
3060 }
3061
VisitOMPAllocateDecl(OMPAllocateDecl * D)3062 void ASTDeclReader::VisitOMPAllocateDecl(OMPAllocateDecl *D) {
3063 Record.readOMPChildren(D->Data);
3064 VisitDecl(D);
3065 }
3066
VisitOMPRequiresDecl(OMPRequiresDecl * D)3067 void ASTDeclReader::VisitOMPRequiresDecl(OMPRequiresDecl * D) {
3068 Record.readOMPChildren(D->Data);
3069 VisitDecl(D);
3070 }
3071
VisitOMPDeclareReductionDecl(OMPDeclareReductionDecl * D)3072 void ASTDeclReader::VisitOMPDeclareReductionDecl(OMPDeclareReductionDecl *D) {
3073 VisitValueDecl(D);
3074 D->setLocation(readSourceLocation());
3075 Expr *In = Record.readExpr();
3076 Expr *Out = Record.readExpr();
3077 D->setCombinerData(In, Out);
3078 Expr *Combiner = Record.readExpr();
3079 D->setCombiner(Combiner);
3080 Expr *Orig = Record.readExpr();
3081 Expr *Priv = Record.readExpr();
3082 D->setInitializerData(Orig, Priv);
3083 Expr *Init = Record.readExpr();
3084 auto IK = static_cast<OMPDeclareReductionInitKind>(Record.readInt());
3085 D->setInitializer(Init, IK);
3086 D->PrevDeclInScope = readDeclID().getRawValue();
3087 }
3088
VisitOMPDeclareMapperDecl(OMPDeclareMapperDecl * D)3089 void ASTDeclReader::VisitOMPDeclareMapperDecl(OMPDeclareMapperDecl *D) {
3090 Record.readOMPChildren(D->Data);
3091 VisitValueDecl(D);
3092 D->VarName = Record.readDeclarationName();
3093 D->PrevDeclInScope = readDeclID().getRawValue();
3094 }
3095
VisitOMPCapturedExprDecl(OMPCapturedExprDecl * D)3096 void ASTDeclReader::VisitOMPCapturedExprDecl(OMPCapturedExprDecl *D) {
3097 VisitVarDecl(D);
3098 }
3099
VisitOpenACCDeclareDecl(OpenACCDeclareDecl * D)3100 void ASTDeclReader::VisitOpenACCDeclareDecl(OpenACCDeclareDecl *D) {
3101 VisitDecl(D);
3102 D->DirKind = Record.readEnum<OpenACCDirectiveKind>();
3103 D->DirectiveLoc = Record.readSourceLocation();
3104 D->EndLoc = Record.readSourceLocation();
3105 Record.readOpenACCClauseList(D->Clauses);
3106 }
VisitOpenACCRoutineDecl(OpenACCRoutineDecl * D)3107 void ASTDeclReader::VisitOpenACCRoutineDecl(OpenACCRoutineDecl *D) {
3108 VisitDecl(D);
3109 D->DirKind = Record.readEnum<OpenACCDirectiveKind>();
3110 D->DirectiveLoc = Record.readSourceLocation();
3111 D->EndLoc = Record.readSourceLocation();
3112 D->ParensLoc = Record.readSourceRange();
3113 D->FuncRef = Record.readExpr();
3114 Record.readOpenACCClauseList(D->Clauses);
3115 }
3116
3117 //===----------------------------------------------------------------------===//
3118 // Attribute Reading
3119 //===----------------------------------------------------------------------===//
3120
3121 namespace {
3122 class AttrReader {
3123 ASTRecordReader &Reader;
3124
3125 public:
AttrReader(ASTRecordReader & Reader)3126 AttrReader(ASTRecordReader &Reader) : Reader(Reader) {}
3127
readInt()3128 uint64_t readInt() {
3129 return Reader.readInt();
3130 }
3131
readBool()3132 bool readBool() { return Reader.readBool(); }
3133
readSourceRange()3134 SourceRange readSourceRange() {
3135 return Reader.readSourceRange();
3136 }
3137
readSourceLocation()3138 SourceLocation readSourceLocation() {
3139 return Reader.readSourceLocation();
3140 }
3141
readExpr()3142 Expr *readExpr() { return Reader.readExpr(); }
3143
readAttr()3144 Attr *readAttr() { return Reader.readAttr(); }
3145
readString()3146 std::string readString() {
3147 return Reader.readString();
3148 }
3149
readTypeSourceInfo()3150 TypeSourceInfo *readTypeSourceInfo() {
3151 return Reader.readTypeSourceInfo();
3152 }
3153
readIdentifier()3154 IdentifierInfo *readIdentifier() {
3155 return Reader.readIdentifier();
3156 }
3157
readVersionTuple()3158 VersionTuple readVersionTuple() {
3159 return Reader.readVersionTuple();
3160 }
3161
readOMPTraitInfo()3162 OMPTraitInfo *readOMPTraitInfo() { return Reader.readOMPTraitInfo(); }
3163
readDeclAs()3164 template <typename T> T *readDeclAs() { return Reader.readDeclAs<T>(); }
3165 };
3166 }
3167
readAttr()3168 Attr *ASTRecordReader::readAttr() {
3169 AttrReader Record(*this);
3170 auto V = Record.readInt();
3171 if (!V)
3172 return nullptr;
3173
3174 Attr *New = nullptr;
3175 // Kind is stored as a 1-based integer because 0 is used to indicate a null
3176 // Attr pointer.
3177 auto Kind = static_cast<attr::Kind>(V - 1);
3178 ASTContext &Context = getContext();
3179
3180 IdentifierInfo *AttrName = Record.readIdentifier();
3181 IdentifierInfo *ScopeName = Record.readIdentifier();
3182 SourceRange AttrRange = Record.readSourceRange();
3183 SourceLocation ScopeLoc = Record.readSourceLocation();
3184 unsigned ParsedKind = Record.readInt();
3185 unsigned Syntax = Record.readInt();
3186 unsigned SpellingIndex = Record.readInt();
3187 bool IsAlignas = (ParsedKind == AttributeCommonInfo::AT_Aligned &&
3188 Syntax == AttributeCommonInfo::AS_Keyword &&
3189 SpellingIndex == AlignedAttr::Keyword_alignas);
3190 bool IsRegularKeywordAttribute = Record.readBool();
3191
3192 AttributeCommonInfo Info(AttrName, AttributeScopeInfo(ScopeName, ScopeLoc),
3193 AttrRange, AttributeCommonInfo::Kind(ParsedKind),
3194 {AttributeCommonInfo::Syntax(Syntax), SpellingIndex,
3195 IsAlignas, IsRegularKeywordAttribute});
3196
3197 #include "clang/Serialization/AttrPCHRead.inc"
3198
3199 assert(New && "Unable to decode attribute?");
3200 return New;
3201 }
3202
3203 /// Reads attributes from the current stream position.
readAttributes(AttrVec & Attrs)3204 void ASTRecordReader::readAttributes(AttrVec &Attrs) {
3205 for (unsigned I = 0, E = readInt(); I != E; ++I)
3206 if (auto *A = readAttr())
3207 Attrs.push_back(A);
3208 }
3209
3210 //===----------------------------------------------------------------------===//
3211 // ASTReader Implementation
3212 //===----------------------------------------------------------------------===//
3213
3214 /// Note that we have loaded the declaration with the given
3215 /// Index.
3216 ///
3217 /// This routine notes that this declaration has already been loaded,
3218 /// so that future GetDecl calls will return this declaration rather
3219 /// than trying to load a new declaration.
LoadedDecl(unsigned Index,Decl * D)3220 inline void ASTReader::LoadedDecl(unsigned Index, Decl *D) {
3221 assert(!DeclsLoaded[Index] && "Decl loaded twice?");
3222 DeclsLoaded[Index] = D;
3223 }
3224
3225 /// Determine whether the consumer will be interested in seeing
3226 /// this declaration (via HandleTopLevelDecl).
3227 ///
3228 /// This routine should return true for anything that might affect
3229 /// code generation, e.g., inline function definitions, Objective-C
3230 /// declarations with metadata, etc.
isConsumerInterestedIn(Decl * D)3231 bool ASTReader::isConsumerInterestedIn(Decl *D) {
3232 // An ObjCMethodDecl is never considered as "interesting" because its
3233 // implementation container always is.
3234
3235 // An ImportDecl or VarDecl imported from a module map module will get
3236 // emitted when we import the relevant module.
3237 if (isPartOfPerModuleInitializer(D)) {
3238 auto *M = D->getImportedOwningModule();
3239 if (M && M->Kind == Module::ModuleMapModule &&
3240 getContext().DeclMustBeEmitted(D))
3241 return false;
3242 }
3243
3244 if (isa<FileScopeAsmDecl, TopLevelStmtDecl, ObjCProtocolDecl, ObjCImplDecl,
3245 ImportDecl, PragmaCommentDecl, PragmaDetectMismatchDecl>(D))
3246 return true;
3247 if (isa<OMPThreadPrivateDecl, OMPDeclareReductionDecl, OMPDeclareMapperDecl,
3248 OMPAllocateDecl, OMPRequiresDecl>(D))
3249 return !D->getDeclContext()->isFunctionOrMethod();
3250 if (const auto *Var = dyn_cast<VarDecl>(D))
3251 return Var->isFileVarDecl() &&
3252 (Var->isThisDeclarationADefinition() == VarDecl::Definition ||
3253 OMPDeclareTargetDeclAttr::isDeclareTargetDeclaration(Var));
3254 if (const auto *Func = dyn_cast<FunctionDecl>(D))
3255 return Func->doesThisDeclarationHaveABody() || PendingBodies.count(D);
3256
3257 if (auto *ES = D->getASTContext().getExternalSource())
3258 if (ES->hasExternalDefinitions(D) == ExternalASTSource::EK_Never)
3259 return true;
3260
3261 return false;
3262 }
3263
3264 /// Get the correct cursor and offset for loading a declaration.
DeclCursorForID(GlobalDeclID ID,SourceLocation & Loc)3265 ASTReader::RecordLocation ASTReader::DeclCursorForID(GlobalDeclID ID,
3266 SourceLocation &Loc) {
3267 ModuleFile *M = getOwningModuleFile(ID);
3268 assert(M);
3269 unsigned LocalDeclIndex = ID.getLocalDeclIndex();
3270 const DeclOffset &DOffs = M->DeclOffsets[LocalDeclIndex];
3271 Loc = ReadSourceLocation(*M, DOffs.getRawLoc());
3272 return RecordLocation(M, DOffs.getBitOffset(M->DeclsBlockStartOffset));
3273 }
3274
getLocalBitOffset(uint64_t GlobalOffset)3275 ASTReader::RecordLocation ASTReader::getLocalBitOffset(uint64_t GlobalOffset) {
3276 auto I = GlobalBitOffsetsMap.find(GlobalOffset);
3277
3278 assert(I != GlobalBitOffsetsMap.end() && "Corrupted global bit offsets map");
3279 return RecordLocation(I->second, GlobalOffset - I->second->GlobalBitOffset);
3280 }
3281
getGlobalBitOffset(ModuleFile & M,uint64_t LocalOffset)3282 uint64_t ASTReader::getGlobalBitOffset(ModuleFile &M, uint64_t LocalOffset) {
3283 return LocalOffset + M.GlobalBitOffset;
3284 }
3285
3286 CXXRecordDecl *
getOrFakePrimaryClassDefinition(ASTReader & Reader,CXXRecordDecl * RD)3287 ASTDeclReader::getOrFakePrimaryClassDefinition(ASTReader &Reader,
3288 CXXRecordDecl *RD) {
3289 // Try to dig out the definition.
3290 auto *DD = RD->DefinitionData;
3291 if (!DD)
3292 DD = RD->getCanonicalDecl()->DefinitionData;
3293
3294 // If there's no definition yet, then DC's definition is added by an update
3295 // record, but we've not yet loaded that update record. In this case, we
3296 // commit to DC being the canonical definition now, and will fix this when
3297 // we load the update record.
3298 if (!DD) {
3299 DD = new (Reader.getContext()) struct CXXRecordDecl::DefinitionData(RD);
3300 RD->setCompleteDefinition(true);
3301 RD->DefinitionData = DD;
3302 RD->getCanonicalDecl()->DefinitionData = DD;
3303
3304 // Track that we did this horrible thing so that we can fix it later.
3305 Reader.PendingFakeDefinitionData.insert(
3306 std::make_pair(DD, ASTReader::PendingFakeDefinitionKind::Fake));
3307 }
3308
3309 return DD->Definition;
3310 }
3311
3312 /// Find the context in which we should search for previous declarations when
3313 /// looking for declarations to merge.
getPrimaryContextForMerging(ASTReader & Reader,DeclContext * DC)3314 DeclContext *ASTDeclReader::getPrimaryContextForMerging(ASTReader &Reader,
3315 DeclContext *DC) {
3316 if (auto *ND = dyn_cast<NamespaceDecl>(DC))
3317 return ND->getFirstDecl();
3318
3319 if (auto *RD = dyn_cast<CXXRecordDecl>(DC))
3320 return getOrFakePrimaryClassDefinition(Reader, RD);
3321
3322 if (auto *RD = dyn_cast<RecordDecl>(DC))
3323 return RD->getDefinition();
3324
3325 if (auto *ED = dyn_cast<EnumDecl>(DC))
3326 return ED->getDefinition();
3327
3328 if (auto *OID = dyn_cast<ObjCInterfaceDecl>(DC))
3329 return OID->getDefinition();
3330
3331 // We can see the TU here only if we have no Sema object. It is possible
3332 // we're in clang-repl so we still need to get the primary context.
3333 if (auto *TU = dyn_cast<TranslationUnitDecl>(DC))
3334 return TU->getPrimaryContext();
3335
3336 return nullptr;
3337 }
3338
~FindExistingResult()3339 ASTDeclReader::FindExistingResult::~FindExistingResult() {
3340 // Record that we had a typedef name for linkage whether or not we merge
3341 // with that declaration.
3342 if (TypedefNameForLinkage) {
3343 DeclContext *DC = New->getDeclContext()->getRedeclContext();
3344 Reader.ImportedTypedefNamesForLinkage.insert(
3345 std::make_pair(std::make_pair(DC, TypedefNameForLinkage), New));
3346 return;
3347 }
3348
3349 if (!AddResult || Existing)
3350 return;
3351
3352 DeclarationName Name = New->getDeclName();
3353 DeclContext *DC = New->getDeclContext()->getRedeclContext();
3354 if (needsAnonymousDeclarationNumber(New)) {
3355 setAnonymousDeclForMerging(Reader, New->getLexicalDeclContext(),
3356 AnonymousDeclNumber, New);
3357 } else if (DC->isTranslationUnit() &&
3358 !Reader.getContext().getLangOpts().CPlusPlus) {
3359 if (Reader.getIdResolver().tryAddTopLevelDecl(New, Name))
3360 Reader.PendingFakeLookupResults[Name.getAsIdentifierInfo()]
3361 .push_back(New);
3362 } else if (DeclContext *MergeDC = getPrimaryContextForMerging(Reader, DC)) {
3363 // Add the declaration to its redeclaration context so later merging
3364 // lookups will find it.
3365 MergeDC->makeDeclVisibleInContextImpl(New, /*Internal*/true);
3366 }
3367 }
3368
3369 /// Find the declaration that should be merged into, given the declaration found
3370 /// by name lookup. If we're merging an anonymous declaration within a typedef,
3371 /// we need a matching typedef, and we merge with the type inside it.
getDeclForMerging(NamedDecl * Found,bool IsTypedefNameForLinkage)3372 static NamedDecl *getDeclForMerging(NamedDecl *Found,
3373 bool IsTypedefNameForLinkage) {
3374 if (!IsTypedefNameForLinkage)
3375 return Found;
3376
3377 // If we found a typedef declaration that gives a name to some other
3378 // declaration, then we want that inner declaration. Declarations from
3379 // AST files are handled via ImportedTypedefNamesForLinkage.
3380 if (Found->isFromASTFile())
3381 return nullptr;
3382
3383 if (auto *TND = dyn_cast<TypedefNameDecl>(Found))
3384 return TND->getAnonDeclWithTypedefName(/*AnyRedecl*/true);
3385
3386 return nullptr;
3387 }
3388
3389 /// Find the declaration to use to populate the anonymous declaration table
3390 /// for the given lexical DeclContext. We only care about finding local
3391 /// definitions of the context; we'll merge imported ones as we go.
3392 DeclContext *
getPrimaryDCForAnonymousDecl(DeclContext * LexicalDC)3393 ASTDeclReader::getPrimaryDCForAnonymousDecl(DeclContext *LexicalDC) {
3394 // For classes, we track the definition as we merge.
3395 if (auto *RD = dyn_cast<CXXRecordDecl>(LexicalDC)) {
3396 auto *DD = RD->getCanonicalDecl()->DefinitionData;
3397 return DD ? DD->Definition : nullptr;
3398 } else if (auto *OID = dyn_cast<ObjCInterfaceDecl>(LexicalDC)) {
3399 return OID->getCanonicalDecl()->getDefinition();
3400 }
3401
3402 // For anything else, walk its merged redeclarations looking for a definition.
3403 // Note that we can't just call getDefinition here because the redeclaration
3404 // chain isn't wired up.
3405 for (auto *D : merged_redecls(cast<Decl>(LexicalDC))) {
3406 if (auto *FD = dyn_cast<FunctionDecl>(D))
3407 if (FD->isThisDeclarationADefinition())
3408 return FD;
3409 if (auto *MD = dyn_cast<ObjCMethodDecl>(D))
3410 if (MD->isThisDeclarationADefinition())
3411 return MD;
3412 if (auto *RD = dyn_cast<RecordDecl>(D))
3413 if (RD->isThisDeclarationADefinition())
3414 return RD;
3415 }
3416
3417 // No merged definition yet.
3418 return nullptr;
3419 }
3420
getAnonymousDeclForMerging(ASTReader & Reader,DeclContext * DC,unsigned Index)3421 NamedDecl *ASTDeclReader::getAnonymousDeclForMerging(ASTReader &Reader,
3422 DeclContext *DC,
3423 unsigned Index) {
3424 // If the lexical context has been merged, look into the now-canonical
3425 // definition.
3426 auto *CanonDC = cast<Decl>(DC)->getCanonicalDecl();
3427
3428 // If we've seen this before, return the canonical declaration.
3429 auto &Previous = Reader.AnonymousDeclarationsForMerging[CanonDC];
3430 if (Index < Previous.size() && Previous[Index])
3431 return Previous[Index];
3432
3433 // If this is the first time, but we have parsed a declaration of the context,
3434 // build the anonymous declaration list from the parsed declaration.
3435 auto *PrimaryDC = getPrimaryDCForAnonymousDecl(DC);
3436 if (PrimaryDC && !cast<Decl>(PrimaryDC)->isFromASTFile()) {
3437 numberAnonymousDeclsWithin(PrimaryDC, [&](NamedDecl *ND, unsigned Number) {
3438 if (Previous.size() == Number)
3439 Previous.push_back(cast<NamedDecl>(ND->getCanonicalDecl()));
3440 else
3441 Previous[Number] = cast<NamedDecl>(ND->getCanonicalDecl());
3442 });
3443 }
3444
3445 return Index < Previous.size() ? Previous[Index] : nullptr;
3446 }
3447
setAnonymousDeclForMerging(ASTReader & Reader,DeclContext * DC,unsigned Index,NamedDecl * D)3448 void ASTDeclReader::setAnonymousDeclForMerging(ASTReader &Reader,
3449 DeclContext *DC, unsigned Index,
3450 NamedDecl *D) {
3451 auto *CanonDC = cast<Decl>(DC)->getCanonicalDecl();
3452
3453 auto &Previous = Reader.AnonymousDeclarationsForMerging[CanonDC];
3454 if (Index >= Previous.size())
3455 Previous.resize(Index + 1);
3456 if (!Previous[Index])
3457 Previous[Index] = D;
3458 }
3459
findExisting(NamedDecl * D)3460 ASTDeclReader::FindExistingResult ASTDeclReader::findExisting(NamedDecl *D) {
3461 DeclarationName Name = TypedefNameForLinkage ? TypedefNameForLinkage
3462 : D->getDeclName();
3463
3464 if (!Name && !needsAnonymousDeclarationNumber(D)) {
3465 // Don't bother trying to find unnamed declarations that are in
3466 // unmergeable contexts.
3467 FindExistingResult Result(Reader, D, /*Existing=*/nullptr,
3468 AnonymousDeclNumber, TypedefNameForLinkage);
3469 Result.suppress();
3470 return Result;
3471 }
3472
3473 ASTContext &C = Reader.getContext();
3474 DeclContext *DC = D->getDeclContext()->getRedeclContext();
3475 if (TypedefNameForLinkage) {
3476 auto It = Reader.ImportedTypedefNamesForLinkage.find(
3477 std::make_pair(DC, TypedefNameForLinkage));
3478 if (It != Reader.ImportedTypedefNamesForLinkage.end())
3479 if (C.isSameEntity(It->second, D))
3480 return FindExistingResult(Reader, D, It->second, AnonymousDeclNumber,
3481 TypedefNameForLinkage);
3482 // Go on to check in other places in case an existing typedef name
3483 // was not imported.
3484 }
3485
3486 if (needsAnonymousDeclarationNumber(D)) {
3487 // This is an anonymous declaration that we may need to merge. Look it up
3488 // in its context by number.
3489 if (auto *Existing = getAnonymousDeclForMerging(
3490 Reader, D->getLexicalDeclContext(), AnonymousDeclNumber))
3491 if (C.isSameEntity(Existing, D))
3492 return FindExistingResult(Reader, D, Existing, AnonymousDeclNumber,
3493 TypedefNameForLinkage);
3494 } else if (DC->isTranslationUnit() &&
3495 !Reader.getContext().getLangOpts().CPlusPlus) {
3496 IdentifierResolver &IdResolver = Reader.getIdResolver();
3497
3498 // Temporarily consider the identifier to be up-to-date. We don't want to
3499 // cause additional lookups here.
3500 class UpToDateIdentifierRAII {
3501 IdentifierInfo *II;
3502 bool WasOutToDate = false;
3503
3504 public:
3505 explicit UpToDateIdentifierRAII(IdentifierInfo *II) : II(II) {
3506 if (II) {
3507 WasOutToDate = II->isOutOfDate();
3508 if (WasOutToDate)
3509 II->setOutOfDate(false);
3510 }
3511 }
3512
3513 ~UpToDateIdentifierRAII() {
3514 if (WasOutToDate)
3515 II->setOutOfDate(true);
3516 }
3517 } UpToDate(Name.getAsIdentifierInfo());
3518
3519 for (IdentifierResolver::iterator I = IdResolver.begin(Name),
3520 IEnd = IdResolver.end();
3521 I != IEnd; ++I) {
3522 if (NamedDecl *Existing = getDeclForMerging(*I, TypedefNameForLinkage))
3523 if (C.isSameEntity(Existing, D))
3524 return FindExistingResult(Reader, D, Existing, AnonymousDeclNumber,
3525 TypedefNameForLinkage);
3526 }
3527 } else if (DeclContext *MergeDC = getPrimaryContextForMerging(Reader, DC)) {
3528 DeclContext::lookup_result R = MergeDC->noload_lookup(Name);
3529 for (DeclContext::lookup_iterator I = R.begin(), E = R.end(); I != E; ++I) {
3530 if (NamedDecl *Existing = getDeclForMerging(*I, TypedefNameForLinkage))
3531 if (C.isSameEntity(Existing, D))
3532 return FindExistingResult(Reader, D, Existing, AnonymousDeclNumber,
3533 TypedefNameForLinkage);
3534 }
3535 } else {
3536 // Not in a mergeable context.
3537 return FindExistingResult(Reader);
3538 }
3539
3540 // If this declaration is from a merged context, make a note that we need to
3541 // check that the canonical definition of that context contains the decl.
3542 //
3543 // Note that we don't perform ODR checks for decls from the global module
3544 // fragment.
3545 //
3546 // FIXME: We should do something similar if we merge two definitions of the
3547 // same template specialization into the same CXXRecordDecl.
3548 auto MergedDCIt = Reader.MergedDeclContexts.find(D->getLexicalDeclContext());
3549 if (MergedDCIt != Reader.MergedDeclContexts.end() &&
3550 !shouldSkipCheckingODR(D) && MergedDCIt->second == D->getDeclContext() &&
3551 !shouldSkipCheckingODR(cast<Decl>(D->getDeclContext())))
3552 Reader.PendingOdrMergeChecks.push_back(D);
3553
3554 return FindExistingResult(Reader, D, /*Existing=*/nullptr,
3555 AnonymousDeclNumber, TypedefNameForLinkage);
3556 }
3557
3558 template<typename DeclT>
getMostRecentDeclImpl(Redeclarable<DeclT> * D)3559 Decl *ASTDeclReader::getMostRecentDeclImpl(Redeclarable<DeclT> *D) {
3560 return D->RedeclLink.getLatestNotUpdated();
3561 }
3562
getMostRecentDeclImpl(...)3563 Decl *ASTDeclReader::getMostRecentDeclImpl(...) {
3564 llvm_unreachable("getMostRecentDecl on non-redeclarable declaration");
3565 }
3566
getMostRecentDecl(Decl * D)3567 Decl *ASTDeclReader::getMostRecentDecl(Decl *D) {
3568 assert(D);
3569
3570 switch (D->getKind()) {
3571 #define ABSTRACT_DECL(TYPE)
3572 #define DECL(TYPE, BASE) \
3573 case Decl::TYPE: \
3574 return getMostRecentDeclImpl(cast<TYPE##Decl>(D));
3575 #include "clang/AST/DeclNodes.inc"
3576 }
3577 llvm_unreachable("unknown decl kind");
3578 }
3579
getMostRecentExistingDecl(Decl * D)3580 Decl *ASTReader::getMostRecentExistingDecl(Decl *D) {
3581 return ASTDeclReader::getMostRecentDecl(D->getCanonicalDecl());
3582 }
3583
3584 namespace {
mergeInheritableAttributes(ASTReader & Reader,Decl * D,Decl * Previous)3585 void mergeInheritableAttributes(ASTReader &Reader, Decl *D, Decl *Previous) {
3586 InheritableAttr *NewAttr = nullptr;
3587 ASTContext &Context = Reader.getContext();
3588 const auto *IA = Previous->getAttr<MSInheritanceAttr>();
3589
3590 if (IA && !D->hasAttr<MSInheritanceAttr>()) {
3591 NewAttr = cast<InheritableAttr>(IA->clone(Context));
3592 NewAttr->setInherited(true);
3593 D->addAttr(NewAttr);
3594 }
3595
3596 const auto *AA = Previous->getAttr<AvailabilityAttr>();
3597 if (AA && !D->hasAttr<AvailabilityAttr>()) {
3598 NewAttr = AA->clone(Context);
3599 NewAttr->setInherited(true);
3600 D->addAttr(NewAttr);
3601 }
3602 }
3603 } // namespace
3604
3605 template<typename DeclT>
attachPreviousDeclImpl(ASTReader & Reader,Redeclarable<DeclT> * D,Decl * Previous,Decl * Canon)3606 void ASTDeclReader::attachPreviousDeclImpl(ASTReader &Reader,
3607 Redeclarable<DeclT> *D,
3608 Decl *Previous, Decl *Canon) {
3609 D->RedeclLink.setPrevious(cast<DeclT>(Previous));
3610 D->First = cast<DeclT>(Previous)->First;
3611 }
3612
3613 namespace clang {
3614
3615 template<>
attachPreviousDeclImpl(ASTReader & Reader,Redeclarable<VarDecl> * D,Decl * Previous,Decl * Canon)3616 void ASTDeclReader::attachPreviousDeclImpl(ASTReader &Reader,
3617 Redeclarable<VarDecl> *D,
3618 Decl *Previous, Decl *Canon) {
3619 auto *VD = static_cast<VarDecl *>(D);
3620 auto *PrevVD = cast<VarDecl>(Previous);
3621 D->RedeclLink.setPrevious(PrevVD);
3622 D->First = PrevVD->First;
3623
3624 // We should keep at most one definition on the chain.
3625 // FIXME: Cache the definition once we've found it. Building a chain with
3626 // N definitions currently takes O(N^2) time here.
3627 if (VD->isThisDeclarationADefinition() == VarDecl::Definition) {
3628 for (VarDecl *CurD = PrevVD; CurD; CurD = CurD->getPreviousDecl()) {
3629 if (CurD->isThisDeclarationADefinition() == VarDecl::Definition) {
3630 Reader.mergeDefinitionVisibility(CurD, VD);
3631 VD->demoteThisDefinitionToDeclaration();
3632 break;
3633 }
3634 }
3635 }
3636 }
3637
isUndeducedReturnType(QualType T)3638 static bool isUndeducedReturnType(QualType T) {
3639 auto *DT = T->getContainedDeducedType();
3640 return DT && !DT->isDeduced();
3641 }
3642
3643 template<>
attachPreviousDeclImpl(ASTReader & Reader,Redeclarable<FunctionDecl> * D,Decl * Previous,Decl * Canon)3644 void ASTDeclReader::attachPreviousDeclImpl(ASTReader &Reader,
3645 Redeclarable<FunctionDecl> *D,
3646 Decl *Previous, Decl *Canon) {
3647 auto *FD = static_cast<FunctionDecl *>(D);
3648 auto *PrevFD = cast<FunctionDecl>(Previous);
3649
3650 FD->RedeclLink.setPrevious(PrevFD);
3651 FD->First = PrevFD->First;
3652
3653 // If the previous declaration is an inline function declaration, then this
3654 // declaration is too.
3655 if (PrevFD->isInlined() != FD->isInlined()) {
3656 // FIXME: [dcl.fct.spec]p4:
3657 // If a function with external linkage is declared inline in one
3658 // translation unit, it shall be declared inline in all translation
3659 // units in which it appears.
3660 //
3661 // Be careful of this case:
3662 //
3663 // module A:
3664 // template<typename T> struct X { void f(); };
3665 // template<typename T> inline void X<T>::f() {}
3666 //
3667 // module B instantiates the declaration of X<int>::f
3668 // module C instantiates the definition of X<int>::f
3669 //
3670 // If module B and C are merged, we do not have a violation of this rule.
3671 FD->setImplicitlyInline(true);
3672 }
3673
3674 auto *FPT = FD->getType()->getAs<FunctionProtoType>();
3675 auto *PrevFPT = PrevFD->getType()->getAs<FunctionProtoType>();
3676 if (FPT && PrevFPT) {
3677 // If we need to propagate an exception specification along the redecl
3678 // chain, make a note of that so that we can do so later.
3679 bool IsUnresolved = isUnresolvedExceptionSpec(FPT->getExceptionSpecType());
3680 bool WasUnresolved =
3681 isUnresolvedExceptionSpec(PrevFPT->getExceptionSpecType());
3682 if (IsUnresolved != WasUnresolved)
3683 Reader.PendingExceptionSpecUpdates.insert(
3684 {Canon, IsUnresolved ? PrevFD : FD});
3685
3686 // If we need to propagate a deduced return type along the redecl chain,
3687 // make a note of that so that we can do it later.
3688 bool IsUndeduced = isUndeducedReturnType(FPT->getReturnType());
3689 bool WasUndeduced = isUndeducedReturnType(PrevFPT->getReturnType());
3690 if (IsUndeduced != WasUndeduced)
3691 Reader.PendingDeducedTypeUpdates.insert(
3692 {cast<FunctionDecl>(Canon),
3693 (IsUndeduced ? PrevFPT : FPT)->getReturnType()});
3694 }
3695 }
3696
3697 } // namespace clang
3698
attachPreviousDeclImpl(ASTReader & Reader,...)3699 void ASTDeclReader::attachPreviousDeclImpl(ASTReader &Reader, ...) {
3700 llvm_unreachable("attachPreviousDecl on non-redeclarable declaration");
3701 }
3702
3703 /// Inherit the default template argument from \p From to \p To. Returns
3704 /// \c false if there is no default template for \p From.
3705 template <typename ParmDecl>
inheritDefaultTemplateArgument(ASTContext & Context,ParmDecl * From,Decl * ToD)3706 static bool inheritDefaultTemplateArgument(ASTContext &Context, ParmDecl *From,
3707 Decl *ToD) {
3708 auto *To = cast<ParmDecl>(ToD);
3709 if (!From->hasDefaultArgument())
3710 return false;
3711 To->setInheritedDefaultArgument(Context, From);
3712 return true;
3713 }
3714
inheritDefaultTemplateArguments(ASTContext & Context,TemplateDecl * From,TemplateDecl * To)3715 static void inheritDefaultTemplateArguments(ASTContext &Context,
3716 TemplateDecl *From,
3717 TemplateDecl *To) {
3718 auto *FromTP = From->getTemplateParameters();
3719 auto *ToTP = To->getTemplateParameters();
3720 assert(FromTP->size() == ToTP->size() && "merged mismatched templates?");
3721
3722 for (unsigned I = 0, N = FromTP->size(); I != N; ++I) {
3723 NamedDecl *FromParam = FromTP->getParam(I);
3724 NamedDecl *ToParam = ToTP->getParam(I);
3725
3726 if (auto *FTTP = dyn_cast<TemplateTypeParmDecl>(FromParam))
3727 inheritDefaultTemplateArgument(Context, FTTP, ToParam);
3728 else if (auto *FNTTP = dyn_cast<NonTypeTemplateParmDecl>(FromParam))
3729 inheritDefaultTemplateArgument(Context, FNTTP, ToParam);
3730 else
3731 inheritDefaultTemplateArgument(
3732 Context, cast<TemplateTemplateParmDecl>(FromParam), ToParam);
3733 }
3734 }
3735
3736 // [basic.link]/p10:
3737 // If two declarations of an entity are attached to different modules,
3738 // the program is ill-formed;
checkMultipleDefinitionInNamedModules(ASTReader & Reader,Decl * D,Decl * Previous)3739 void ASTDeclReader::checkMultipleDefinitionInNamedModules(ASTReader &Reader,
3740 Decl *D,
3741 Decl *Previous) {
3742 // If it is previous implcitly introduced, it is not meaningful to
3743 // diagnose it.
3744 if (Previous->isImplicit())
3745 return;
3746
3747 // FIXME: Get rid of the enumeration of decl types once we have an appropriate
3748 // abstract for decls of an entity. e.g., the namespace decl and using decl
3749 // doesn't introduce an entity.
3750 if (!isa<VarDecl, FunctionDecl, TagDecl, RedeclarableTemplateDecl>(Previous))
3751 return;
3752
3753 // Skip implicit instantiations since it may give false positive diagnostic
3754 // messages.
3755 // FIXME: Maybe this shows the implicit instantiations may have incorrect
3756 // module owner ships. But given we've finished the compilation of a module,
3757 // how can we add new entities to that module?
3758 if (isa<VarTemplateSpecializationDecl>(Previous))
3759 return;
3760 if (isa<ClassTemplateSpecializationDecl>(Previous))
3761 return;
3762 if (auto *Func = dyn_cast<FunctionDecl>(Previous);
3763 Func && Func->getTemplateSpecializationInfo())
3764 return;
3765
3766 // The module ownership of in-class friend declaration is not straightforward.
3767 // Avoid diagnosing such cases.
3768 if (D->getFriendObjectKind() || Previous->getFriendObjectKind())
3769 return;
3770
3771 // Skip diagnosing in-class declarations.
3772 if (!Previous->getLexicalDeclContext()
3773 ->getNonTransparentContext()
3774 ->isFileContext() ||
3775 !D->getLexicalDeclContext()->getNonTransparentContext()->isFileContext())
3776 return;
3777
3778 Module *M = Previous->getOwningModule();
3779 if (!M)
3780 return;
3781
3782 // We only forbids merging decls within named modules.
3783 if (!M->isNamedModule()) {
3784 // Try to warn the case that we merged decls from global module.
3785 if (!M->isGlobalModule())
3786 return;
3787
3788 if (D->getOwningModule() &&
3789 M->getTopLevelModule() == D->getOwningModule()->getTopLevelModule())
3790 return;
3791
3792 Reader.PendingWarningForDuplicatedDefsInModuleUnits.push_back(
3793 {D, Previous});
3794 return;
3795 }
3796
3797 // It is fine if they are in the same module.
3798 if (Reader.getContext().isInSameModule(M, D->getOwningModule()))
3799 return;
3800
3801 Reader.Diag(Previous->getLocation(),
3802 diag::err_multiple_decl_in_different_modules)
3803 << cast<NamedDecl>(Previous) << M->Name;
3804 Reader.Diag(D->getLocation(), diag::note_also_found);
3805 }
3806
attachPreviousDecl(ASTReader & Reader,Decl * D,Decl * Previous,Decl * Canon)3807 void ASTDeclReader::attachPreviousDecl(ASTReader &Reader, Decl *D,
3808 Decl *Previous, Decl *Canon) {
3809 assert(D && Previous);
3810
3811 switch (D->getKind()) {
3812 #define ABSTRACT_DECL(TYPE)
3813 #define DECL(TYPE, BASE) \
3814 case Decl::TYPE: \
3815 attachPreviousDeclImpl(Reader, cast<TYPE##Decl>(D), Previous, Canon); \
3816 break;
3817 #include "clang/AST/DeclNodes.inc"
3818 }
3819
3820 checkMultipleDefinitionInNamedModules(Reader, D, Previous);
3821
3822 // If the declaration was visible in one module, a redeclaration of it in
3823 // another module remains visible even if it wouldn't be visible by itself.
3824 //
3825 // FIXME: In this case, the declaration should only be visible if a module
3826 // that makes it visible has been imported.
3827 D->IdentifierNamespace |=
3828 Previous->IdentifierNamespace &
3829 (Decl::IDNS_Ordinary | Decl::IDNS_Tag | Decl::IDNS_Type);
3830
3831 // If the declaration declares a template, it may inherit default arguments
3832 // from the previous declaration.
3833 if (auto *TD = dyn_cast<TemplateDecl>(D))
3834 inheritDefaultTemplateArguments(Reader.getContext(),
3835 cast<TemplateDecl>(Previous), TD);
3836
3837 // If any of the declaration in the chain contains an Inheritable attribute,
3838 // it needs to be added to all the declarations in the redeclarable chain.
3839 // FIXME: Only the logic of merging MSInheritableAttr is present, it should
3840 // be extended for all inheritable attributes.
3841 mergeInheritableAttributes(Reader, D, Previous);
3842 }
3843
3844 template<typename DeclT>
attachLatestDeclImpl(Redeclarable<DeclT> * D,Decl * Latest)3845 void ASTDeclReader::attachLatestDeclImpl(Redeclarable<DeclT> *D, Decl *Latest) {
3846 D->RedeclLink.setLatest(cast<DeclT>(Latest));
3847 }
3848
attachLatestDeclImpl(...)3849 void ASTDeclReader::attachLatestDeclImpl(...) {
3850 llvm_unreachable("attachLatestDecl on non-redeclarable declaration");
3851 }
3852
attachLatestDecl(Decl * D,Decl * Latest)3853 void ASTDeclReader::attachLatestDecl(Decl *D, Decl *Latest) {
3854 assert(D && Latest);
3855
3856 switch (D->getKind()) {
3857 #define ABSTRACT_DECL(TYPE)
3858 #define DECL(TYPE, BASE) \
3859 case Decl::TYPE: \
3860 attachLatestDeclImpl(cast<TYPE##Decl>(D), Latest); \
3861 break;
3862 #include "clang/AST/DeclNodes.inc"
3863 }
3864 }
3865
3866 template<typename DeclT>
markIncompleteDeclChainImpl(Redeclarable<DeclT> * D)3867 void ASTDeclReader::markIncompleteDeclChainImpl(Redeclarable<DeclT> *D) {
3868 D->RedeclLink.markIncomplete();
3869 }
3870
markIncompleteDeclChainImpl(...)3871 void ASTDeclReader::markIncompleteDeclChainImpl(...) {
3872 llvm_unreachable("markIncompleteDeclChain on non-redeclarable declaration");
3873 }
3874
markIncompleteDeclChain(Decl * D)3875 void ASTReader::markIncompleteDeclChain(Decl *D) {
3876 switch (D->getKind()) {
3877 #define ABSTRACT_DECL(TYPE)
3878 #define DECL(TYPE, BASE) \
3879 case Decl::TYPE: \
3880 ASTDeclReader::markIncompleteDeclChainImpl(cast<TYPE##Decl>(D)); \
3881 break;
3882 #include "clang/AST/DeclNodes.inc"
3883 }
3884 }
3885
3886 /// Read the declaration at the given offset from the AST file.
ReadDeclRecord(GlobalDeclID ID)3887 Decl *ASTReader::ReadDeclRecord(GlobalDeclID ID) {
3888 SourceLocation DeclLoc;
3889 RecordLocation Loc = DeclCursorForID(ID, DeclLoc);
3890 llvm::BitstreamCursor &DeclsCursor = Loc.F->DeclsCursor;
3891 // Keep track of where we are in the stream, then jump back there
3892 // after reading this declaration.
3893 SavedStreamPosition SavedPosition(DeclsCursor);
3894
3895 ReadingKindTracker ReadingKind(Read_Decl, *this);
3896
3897 // Note that we are loading a declaration record.
3898 Deserializing ADecl(this);
3899
3900 auto Fail = [](const char *what, llvm::Error &&Err) {
3901 llvm::report_fatal_error(Twine("ASTReader::readDeclRecord failed ") + what +
3902 ": " + toString(std::move(Err)));
3903 };
3904
3905 if (llvm::Error JumpFailed = DeclsCursor.JumpToBit(Loc.Offset))
3906 Fail("jumping", std::move(JumpFailed));
3907 ASTRecordReader Record(*this, *Loc.F);
3908 ASTDeclReader Reader(*this, Record, Loc, ID, DeclLoc);
3909 Expected<unsigned> MaybeCode = DeclsCursor.ReadCode();
3910 if (!MaybeCode)
3911 Fail("reading code", MaybeCode.takeError());
3912 unsigned Code = MaybeCode.get();
3913
3914 ASTContext &Context = getContext();
3915 Decl *D = nullptr;
3916 Expected<unsigned> MaybeDeclCode = Record.readRecord(DeclsCursor, Code);
3917 if (!MaybeDeclCode)
3918 llvm::report_fatal_error(
3919 Twine("ASTReader::readDeclRecord failed reading decl code: ") +
3920 toString(MaybeDeclCode.takeError()));
3921
3922 switch ((DeclCode)MaybeDeclCode.get()) {
3923 case DECL_CONTEXT_LEXICAL:
3924 case DECL_CONTEXT_VISIBLE:
3925 case DECL_CONTEXT_MODULE_LOCAL_VISIBLE:
3926 case DECL_CONTEXT_TU_LOCAL_VISIBLE:
3927 case DECL_SPECIALIZATIONS:
3928 case DECL_PARTIAL_SPECIALIZATIONS:
3929 llvm_unreachable("Record cannot be de-serialized with readDeclRecord");
3930 case DECL_TYPEDEF:
3931 D = TypedefDecl::CreateDeserialized(Context, ID);
3932 break;
3933 case DECL_TYPEALIAS:
3934 D = TypeAliasDecl::CreateDeserialized(Context, ID);
3935 break;
3936 case DECL_ENUM:
3937 D = EnumDecl::CreateDeserialized(Context, ID);
3938 break;
3939 case DECL_RECORD:
3940 D = RecordDecl::CreateDeserialized(Context, ID);
3941 break;
3942 case DECL_ENUM_CONSTANT:
3943 D = EnumConstantDecl::CreateDeserialized(Context, ID);
3944 break;
3945 case DECL_FUNCTION:
3946 D = FunctionDecl::CreateDeserialized(Context, ID);
3947 break;
3948 case DECL_LINKAGE_SPEC:
3949 D = LinkageSpecDecl::CreateDeserialized(Context, ID);
3950 break;
3951 case DECL_EXPORT:
3952 D = ExportDecl::CreateDeserialized(Context, ID);
3953 break;
3954 case DECL_LABEL:
3955 D = LabelDecl::CreateDeserialized(Context, ID);
3956 break;
3957 case DECL_NAMESPACE:
3958 D = NamespaceDecl::CreateDeserialized(Context, ID);
3959 break;
3960 case DECL_NAMESPACE_ALIAS:
3961 D = NamespaceAliasDecl::CreateDeserialized(Context, ID);
3962 break;
3963 case DECL_USING:
3964 D = UsingDecl::CreateDeserialized(Context, ID);
3965 break;
3966 case DECL_USING_PACK:
3967 D = UsingPackDecl::CreateDeserialized(Context, ID, Record.readInt());
3968 break;
3969 case DECL_USING_SHADOW:
3970 D = UsingShadowDecl::CreateDeserialized(Context, ID);
3971 break;
3972 case DECL_USING_ENUM:
3973 D = UsingEnumDecl::CreateDeserialized(Context, ID);
3974 break;
3975 case DECL_CONSTRUCTOR_USING_SHADOW:
3976 D = ConstructorUsingShadowDecl::CreateDeserialized(Context, ID);
3977 break;
3978 case DECL_USING_DIRECTIVE:
3979 D = UsingDirectiveDecl::CreateDeserialized(Context, ID);
3980 break;
3981 case DECL_UNRESOLVED_USING_VALUE:
3982 D = UnresolvedUsingValueDecl::CreateDeserialized(Context, ID);
3983 break;
3984 case DECL_UNRESOLVED_USING_TYPENAME:
3985 D = UnresolvedUsingTypenameDecl::CreateDeserialized(Context, ID);
3986 break;
3987 case DECL_UNRESOLVED_USING_IF_EXISTS:
3988 D = UnresolvedUsingIfExistsDecl::CreateDeserialized(Context, ID);
3989 break;
3990 case DECL_CXX_RECORD:
3991 D = CXXRecordDecl::CreateDeserialized(Context, ID);
3992 break;
3993 case DECL_CXX_DEDUCTION_GUIDE:
3994 D = CXXDeductionGuideDecl::CreateDeserialized(Context, ID);
3995 break;
3996 case DECL_CXX_METHOD:
3997 D = CXXMethodDecl::CreateDeserialized(Context, ID);
3998 break;
3999 case DECL_CXX_CONSTRUCTOR:
4000 D = CXXConstructorDecl::CreateDeserialized(Context, ID, Record.readInt());
4001 break;
4002 case DECL_CXX_DESTRUCTOR:
4003 D = CXXDestructorDecl::CreateDeserialized(Context, ID);
4004 break;
4005 case DECL_CXX_CONVERSION:
4006 D = CXXConversionDecl::CreateDeserialized(Context, ID);
4007 break;
4008 case DECL_ACCESS_SPEC:
4009 D = AccessSpecDecl::CreateDeserialized(Context, ID);
4010 break;
4011 case DECL_FRIEND:
4012 D = FriendDecl::CreateDeserialized(Context, ID, Record.readInt());
4013 break;
4014 case DECL_FRIEND_TEMPLATE:
4015 D = FriendTemplateDecl::CreateDeserialized(Context, ID);
4016 break;
4017 case DECL_CLASS_TEMPLATE:
4018 D = ClassTemplateDecl::CreateDeserialized(Context, ID);
4019 break;
4020 case DECL_CLASS_TEMPLATE_SPECIALIZATION:
4021 D = ClassTemplateSpecializationDecl::CreateDeserialized(Context, ID);
4022 break;
4023 case DECL_CLASS_TEMPLATE_PARTIAL_SPECIALIZATION:
4024 D = ClassTemplatePartialSpecializationDecl::CreateDeserialized(Context, ID);
4025 break;
4026 case DECL_VAR_TEMPLATE:
4027 D = VarTemplateDecl::CreateDeserialized(Context, ID);
4028 break;
4029 case DECL_VAR_TEMPLATE_SPECIALIZATION:
4030 D = VarTemplateSpecializationDecl::CreateDeserialized(Context, ID);
4031 break;
4032 case DECL_VAR_TEMPLATE_PARTIAL_SPECIALIZATION:
4033 D = VarTemplatePartialSpecializationDecl::CreateDeserialized(Context, ID);
4034 break;
4035 case DECL_FUNCTION_TEMPLATE:
4036 D = FunctionTemplateDecl::CreateDeserialized(Context, ID);
4037 break;
4038 case DECL_TEMPLATE_TYPE_PARM: {
4039 bool HasTypeConstraint = Record.readInt();
4040 D = TemplateTypeParmDecl::CreateDeserialized(Context, ID,
4041 HasTypeConstraint);
4042 break;
4043 }
4044 case DECL_NON_TYPE_TEMPLATE_PARM: {
4045 bool HasTypeConstraint = Record.readInt();
4046 D = NonTypeTemplateParmDecl::CreateDeserialized(Context, ID,
4047 HasTypeConstraint);
4048 break;
4049 }
4050 case DECL_EXPANDED_NON_TYPE_TEMPLATE_PARM_PACK: {
4051 bool HasTypeConstraint = Record.readInt();
4052 D = NonTypeTemplateParmDecl::CreateDeserialized(
4053 Context, ID, Record.readInt(), HasTypeConstraint);
4054 break;
4055 }
4056 case DECL_TEMPLATE_TEMPLATE_PARM:
4057 D = TemplateTemplateParmDecl::CreateDeserialized(Context, ID);
4058 break;
4059 case DECL_EXPANDED_TEMPLATE_TEMPLATE_PARM_PACK:
4060 D = TemplateTemplateParmDecl::CreateDeserialized(Context, ID,
4061 Record.readInt());
4062 break;
4063 case DECL_TYPE_ALIAS_TEMPLATE:
4064 D = TypeAliasTemplateDecl::CreateDeserialized(Context, ID);
4065 break;
4066 case DECL_CONCEPT:
4067 D = ConceptDecl::CreateDeserialized(Context, ID);
4068 break;
4069 case DECL_REQUIRES_EXPR_BODY:
4070 D = RequiresExprBodyDecl::CreateDeserialized(Context, ID);
4071 break;
4072 case DECL_STATIC_ASSERT:
4073 D = StaticAssertDecl::CreateDeserialized(Context, ID);
4074 break;
4075 case DECL_OBJC_METHOD:
4076 D = ObjCMethodDecl::CreateDeserialized(Context, ID);
4077 break;
4078 case DECL_OBJC_INTERFACE:
4079 D = ObjCInterfaceDecl::CreateDeserialized(Context, ID);
4080 break;
4081 case DECL_OBJC_IVAR:
4082 D = ObjCIvarDecl::CreateDeserialized(Context, ID);
4083 break;
4084 case DECL_OBJC_PROTOCOL:
4085 D = ObjCProtocolDecl::CreateDeserialized(Context, ID);
4086 break;
4087 case DECL_OBJC_AT_DEFS_FIELD:
4088 D = ObjCAtDefsFieldDecl::CreateDeserialized(Context, ID);
4089 break;
4090 case DECL_OBJC_CATEGORY:
4091 D = ObjCCategoryDecl::CreateDeserialized(Context, ID);
4092 break;
4093 case DECL_OBJC_CATEGORY_IMPL:
4094 D = ObjCCategoryImplDecl::CreateDeserialized(Context, ID);
4095 break;
4096 case DECL_OBJC_IMPLEMENTATION:
4097 D = ObjCImplementationDecl::CreateDeserialized(Context, ID);
4098 break;
4099 case DECL_OBJC_COMPATIBLE_ALIAS:
4100 D = ObjCCompatibleAliasDecl::CreateDeserialized(Context, ID);
4101 break;
4102 case DECL_OBJC_PROPERTY:
4103 D = ObjCPropertyDecl::CreateDeserialized(Context, ID);
4104 break;
4105 case DECL_OBJC_PROPERTY_IMPL:
4106 D = ObjCPropertyImplDecl::CreateDeserialized(Context, ID);
4107 break;
4108 case DECL_FIELD:
4109 D = FieldDecl::CreateDeserialized(Context, ID);
4110 break;
4111 case DECL_INDIRECTFIELD:
4112 D = IndirectFieldDecl::CreateDeserialized(Context, ID);
4113 break;
4114 case DECL_VAR:
4115 D = VarDecl::CreateDeserialized(Context, ID);
4116 break;
4117 case DECL_IMPLICIT_PARAM:
4118 D = ImplicitParamDecl::CreateDeserialized(Context, ID);
4119 break;
4120 case DECL_PARM_VAR:
4121 D = ParmVarDecl::CreateDeserialized(Context, ID);
4122 break;
4123 case DECL_DECOMPOSITION:
4124 D = DecompositionDecl::CreateDeserialized(Context, ID, Record.readInt());
4125 break;
4126 case DECL_BINDING:
4127 D = BindingDecl::CreateDeserialized(Context, ID);
4128 break;
4129 case DECL_FILE_SCOPE_ASM:
4130 D = FileScopeAsmDecl::CreateDeserialized(Context, ID);
4131 break;
4132 case DECL_TOP_LEVEL_STMT_DECL:
4133 D = TopLevelStmtDecl::CreateDeserialized(Context, ID);
4134 break;
4135 case DECL_BLOCK:
4136 D = BlockDecl::CreateDeserialized(Context, ID);
4137 break;
4138 case DECL_MS_PROPERTY:
4139 D = MSPropertyDecl::CreateDeserialized(Context, ID);
4140 break;
4141 case DECL_MS_GUID:
4142 D = MSGuidDecl::CreateDeserialized(Context, ID);
4143 break;
4144 case DECL_UNNAMED_GLOBAL_CONSTANT:
4145 D = UnnamedGlobalConstantDecl::CreateDeserialized(Context, ID);
4146 break;
4147 case DECL_TEMPLATE_PARAM_OBJECT:
4148 D = TemplateParamObjectDecl::CreateDeserialized(Context, ID);
4149 break;
4150 case DECL_OUTLINEDFUNCTION:
4151 D = OutlinedFunctionDecl::CreateDeserialized(Context, ID, Record.readInt());
4152 break;
4153 case DECL_CAPTURED:
4154 D = CapturedDecl::CreateDeserialized(Context, ID, Record.readInt());
4155 break;
4156 case DECL_CXX_BASE_SPECIFIERS:
4157 Error("attempt to read a C++ base-specifier record as a declaration");
4158 return nullptr;
4159 case DECL_CXX_CTOR_INITIALIZERS:
4160 Error("attempt to read a C++ ctor initializer record as a declaration");
4161 return nullptr;
4162 case DECL_IMPORT:
4163 // Note: last entry of the ImportDecl record is the number of stored source
4164 // locations.
4165 D = ImportDecl::CreateDeserialized(Context, ID, Record.back());
4166 break;
4167 case DECL_OMP_THREADPRIVATE: {
4168 Record.skipInts(1);
4169 unsigned NumChildren = Record.readInt();
4170 Record.skipInts(1);
4171 D = OMPThreadPrivateDecl::CreateDeserialized(Context, ID, NumChildren);
4172 break;
4173 }
4174 case DECL_OMP_ALLOCATE: {
4175 unsigned NumClauses = Record.readInt();
4176 unsigned NumVars = Record.readInt();
4177 Record.skipInts(1);
4178 D = OMPAllocateDecl::CreateDeserialized(Context, ID, NumVars, NumClauses);
4179 break;
4180 }
4181 case DECL_OMP_REQUIRES: {
4182 unsigned NumClauses = Record.readInt();
4183 Record.skipInts(2);
4184 D = OMPRequiresDecl::CreateDeserialized(Context, ID, NumClauses);
4185 break;
4186 }
4187 case DECL_OMP_DECLARE_REDUCTION:
4188 D = OMPDeclareReductionDecl::CreateDeserialized(Context, ID);
4189 break;
4190 case DECL_OMP_DECLARE_MAPPER: {
4191 unsigned NumClauses = Record.readInt();
4192 Record.skipInts(2);
4193 D = OMPDeclareMapperDecl::CreateDeserialized(Context, ID, NumClauses);
4194 break;
4195 }
4196 case DECL_OMP_CAPTUREDEXPR:
4197 D = OMPCapturedExprDecl::CreateDeserialized(Context, ID);
4198 break;
4199 case DECL_PRAGMA_COMMENT:
4200 D = PragmaCommentDecl::CreateDeserialized(Context, ID, Record.readInt());
4201 break;
4202 case DECL_PRAGMA_DETECT_MISMATCH:
4203 D = PragmaDetectMismatchDecl::CreateDeserialized(Context, ID,
4204 Record.readInt());
4205 break;
4206 case DECL_EMPTY:
4207 D = EmptyDecl::CreateDeserialized(Context, ID);
4208 break;
4209 case DECL_LIFETIME_EXTENDED_TEMPORARY:
4210 D = LifetimeExtendedTemporaryDecl::CreateDeserialized(Context, ID);
4211 break;
4212 case DECL_OBJC_TYPE_PARAM:
4213 D = ObjCTypeParamDecl::CreateDeserialized(Context, ID);
4214 break;
4215 case DECL_HLSL_BUFFER:
4216 D = HLSLBufferDecl::CreateDeserialized(Context, ID);
4217 break;
4218 case DECL_IMPLICIT_CONCEPT_SPECIALIZATION:
4219 D = ImplicitConceptSpecializationDecl::CreateDeserialized(Context, ID,
4220 Record.readInt());
4221 break;
4222 case DECL_OPENACC_DECLARE:
4223 D = OpenACCDeclareDecl::CreateDeserialized(Context, ID, Record.readInt());
4224 break;
4225 case DECL_OPENACC_ROUTINE:
4226 D = OpenACCRoutineDecl::CreateDeserialized(Context, ID, Record.readInt());
4227 break;
4228 }
4229
4230 assert(D && "Unknown declaration reading AST file");
4231 LoadedDecl(translateGlobalDeclIDToIndex(ID), D);
4232 // Set the DeclContext before doing any deserialization, to make sure internal
4233 // calls to Decl::getASTContext() by Decl's methods will find the
4234 // TranslationUnitDecl without crashing.
4235 D->setDeclContext(Context.getTranslationUnitDecl());
4236
4237 // Reading some declarations can result in deep recursion.
4238 runWithSufficientStackSpace(DeclLoc, [&] { Reader.Visit(D); });
4239
4240 // If this declaration is also a declaration context, get the
4241 // offsets for its tables of lexical and visible declarations.
4242 if (auto *DC = dyn_cast<DeclContext>(D)) {
4243 LookupBlockOffsets Offsets;
4244
4245 Reader.VisitDeclContext(DC, Offsets);
4246
4247 // Get the lexical and visible block for the delayed namespace.
4248 // It is sufficient to judge if ID is in DelayedNamespaceOffsetMap.
4249 // But it may be more efficient to filter the other cases.
4250 if (!Offsets && isa<NamespaceDecl>(D))
4251 if (auto Iter = DelayedNamespaceOffsetMap.find(ID);
4252 Iter != DelayedNamespaceOffsetMap.end())
4253 Offsets = Iter->second;
4254
4255 if (Offsets.VisibleOffset &&
4256 ReadVisibleDeclContextStorage(
4257 *Loc.F, DeclsCursor, Offsets.VisibleOffset, ID,
4258 VisibleDeclContextStorageKind::GenerallyVisible))
4259 return nullptr;
4260 if (Offsets.ModuleLocalOffset &&
4261 ReadVisibleDeclContextStorage(
4262 *Loc.F, DeclsCursor, Offsets.ModuleLocalOffset, ID,
4263 VisibleDeclContextStorageKind::ModuleLocalVisible))
4264 return nullptr;
4265 if (Offsets.TULocalOffset &&
4266 ReadVisibleDeclContextStorage(
4267 *Loc.F, DeclsCursor, Offsets.TULocalOffset, ID,
4268 VisibleDeclContextStorageKind::TULocalVisible))
4269 return nullptr;
4270
4271 if (Offsets.LexicalOffset &&
4272 ReadLexicalDeclContextStorage(*Loc.F, DeclsCursor,
4273 Offsets.LexicalOffset, DC))
4274 return nullptr;
4275 }
4276 assert(Record.getIdx() == Record.size());
4277
4278 // Load any relevant update records.
4279 PendingUpdateRecords.push_back(
4280 PendingUpdateRecord(ID, D, /*JustLoaded=*/true));
4281
4282 // Load the categories after recursive loading is finished.
4283 if (auto *Class = dyn_cast<ObjCInterfaceDecl>(D))
4284 // If we already have a definition when deserializing the ObjCInterfaceDecl,
4285 // we put the Decl in PendingDefinitions so we can pull the categories here.
4286 if (Class->isThisDeclarationADefinition() ||
4287 PendingDefinitions.count(Class))
4288 loadObjCCategories(ID, Class);
4289
4290 // If we have deserialized a declaration that has a definition the
4291 // AST consumer might need to know about, queue it.
4292 // We don't pass it to the consumer immediately because we may be in recursive
4293 // loading, and some declarations may still be initializing.
4294 PotentiallyInterestingDecls.push_back(D);
4295
4296 return D;
4297 }
4298
PassInterestingDeclsToConsumer()4299 void ASTReader::PassInterestingDeclsToConsumer() {
4300 assert(Consumer);
4301
4302 if (!CanPassDeclsToConsumer)
4303 return;
4304
4305 // Guard variable to avoid recursively redoing the process of passing
4306 // decls to consumer.
4307 SaveAndRestore GuardPassingDeclsToConsumer(CanPassDeclsToConsumer,
4308 /*NewValue=*/false);
4309
4310 // Ensure that we've loaded all potentially-interesting declarations
4311 // that need to be eagerly loaded.
4312 for (auto ID : EagerlyDeserializedDecls)
4313 GetDecl(ID);
4314 EagerlyDeserializedDecls.clear();
4315
4316 auto ConsumingPotentialInterestingDecls = [this]() {
4317 while (!PotentiallyInterestingDecls.empty()) {
4318 Decl *D = PotentiallyInterestingDecls.front();
4319 PotentiallyInterestingDecls.pop_front();
4320 if (isConsumerInterestedIn(D))
4321 PassInterestingDeclToConsumer(D);
4322 }
4323 };
4324 std::deque<Decl *> MaybeInterestingDecls =
4325 std::move(PotentiallyInterestingDecls);
4326 PotentiallyInterestingDecls.clear();
4327 assert(PotentiallyInterestingDecls.empty());
4328 while (!MaybeInterestingDecls.empty()) {
4329 Decl *D = MaybeInterestingDecls.front();
4330 MaybeInterestingDecls.pop_front();
4331 // Since we load the variable's initializers lazily, it'd be problematic
4332 // if the initializers dependent on each other. So here we try to load the
4333 // initializers of static variables to make sure they are passed to code
4334 // generator by order. If we read anything interesting, we would consume
4335 // that before emitting the current declaration.
4336 if (auto *VD = dyn_cast<VarDecl>(D);
4337 VD && VD->isFileVarDecl() && !VD->isExternallyVisible())
4338 VD->getInit();
4339 ConsumingPotentialInterestingDecls();
4340 if (isConsumerInterestedIn(D))
4341 PassInterestingDeclToConsumer(D);
4342 }
4343
4344 // If we add any new potential interesting decl in the last call, consume it.
4345 ConsumingPotentialInterestingDecls();
4346
4347 for (GlobalDeclID ID : VTablesToEmit) {
4348 auto *RD = cast<CXXRecordDecl>(GetDecl(ID));
4349 assert(!RD->shouldEmitInExternalSource());
4350 PassVTableToConsumer(RD);
4351 }
4352 VTablesToEmit.clear();
4353 }
4354
loadDeclUpdateRecords(PendingUpdateRecord & Record)4355 void ASTReader::loadDeclUpdateRecords(PendingUpdateRecord &Record) {
4356 // The declaration may have been modified by files later in the chain.
4357 // If this is the case, read the record containing the updates from each file
4358 // and pass it to ASTDeclReader to make the modifications.
4359 GlobalDeclID ID = Record.ID;
4360 Decl *D = Record.D;
4361 ProcessingUpdatesRAIIObj ProcessingUpdates(*this);
4362 DeclUpdateOffsetsMap::iterator UpdI = DeclUpdateOffsets.find(ID);
4363
4364 if (UpdI != DeclUpdateOffsets.end()) {
4365 auto UpdateOffsets = std::move(UpdI->second);
4366 DeclUpdateOffsets.erase(UpdI);
4367
4368 // Check if this decl was interesting to the consumer. If we just loaded
4369 // the declaration, then we know it was interesting and we skip the call
4370 // to isConsumerInterestedIn because it is unsafe to call in the
4371 // current ASTReader state.
4372 bool WasInteresting = Record.JustLoaded || isConsumerInterestedIn(D);
4373 for (auto &FileAndOffset : UpdateOffsets) {
4374 ModuleFile *F = FileAndOffset.first;
4375 uint64_t Offset = FileAndOffset.second;
4376 llvm::BitstreamCursor &Cursor = F->DeclsCursor;
4377 SavedStreamPosition SavedPosition(Cursor);
4378 if (llvm::Error JumpFailed = Cursor.JumpToBit(Offset))
4379 // FIXME don't do a fatal error.
4380 llvm::report_fatal_error(
4381 Twine("ASTReader::loadDeclUpdateRecords failed jumping: ") +
4382 toString(std::move(JumpFailed)));
4383 Expected<unsigned> MaybeCode = Cursor.ReadCode();
4384 if (!MaybeCode)
4385 llvm::report_fatal_error(
4386 Twine("ASTReader::loadDeclUpdateRecords failed reading code: ") +
4387 toString(MaybeCode.takeError()));
4388 unsigned Code = MaybeCode.get();
4389 ASTRecordReader Record(*this, *F);
4390 if (Expected<unsigned> MaybeRecCode = Record.readRecord(Cursor, Code))
4391 assert(MaybeRecCode.get() == DECL_UPDATES &&
4392 "Expected DECL_UPDATES record!");
4393 else
4394 llvm::report_fatal_error(
4395 Twine("ASTReader::loadDeclUpdateRecords failed reading rec code: ") +
4396 toString(MaybeCode.takeError()));
4397
4398 ASTDeclReader Reader(*this, Record, RecordLocation(F, Offset), ID,
4399 SourceLocation());
4400 Reader.UpdateDecl(D);
4401
4402 // We might have made this declaration interesting. If so, remember that
4403 // we need to hand it off to the consumer.
4404 if (!WasInteresting && isConsumerInterestedIn(D)) {
4405 PotentiallyInterestingDecls.push_back(D);
4406 WasInteresting = true;
4407 }
4408 }
4409 }
4410
4411 // Load the pending visible updates for this decl context, if it has any.
4412 if (auto I = PendingVisibleUpdates.find(ID);
4413 I != PendingVisibleUpdates.end()) {
4414 auto VisibleUpdates = std::move(I->second);
4415 PendingVisibleUpdates.erase(I);
4416
4417 auto *DC = cast<DeclContext>(D)->getPrimaryContext();
4418 for (const auto &Update : VisibleUpdates)
4419 Lookups[DC].Table.add(
4420 Update.Mod, Update.Data,
4421 reader::ASTDeclContextNameLookupTrait(*this, *Update.Mod));
4422 DC->setHasExternalVisibleStorage(true);
4423 }
4424
4425 if (auto I = PendingModuleLocalVisibleUpdates.find(ID);
4426 I != PendingModuleLocalVisibleUpdates.end()) {
4427 auto ModuleLocalVisibleUpdates = std::move(I->second);
4428 PendingModuleLocalVisibleUpdates.erase(I);
4429
4430 auto *DC = cast<DeclContext>(D)->getPrimaryContext();
4431 for (const auto &Update : ModuleLocalVisibleUpdates)
4432 ModuleLocalLookups[DC].Table.add(
4433 Update.Mod, Update.Data,
4434 reader::ModuleLocalNameLookupTrait(*this, *Update.Mod));
4435 // NOTE: Can we optimize the case that the data being loaded
4436 // is not related to current module?
4437 DC->setHasExternalVisibleStorage(true);
4438 }
4439
4440 if (auto I = TULocalUpdates.find(ID); I != TULocalUpdates.end()) {
4441 auto Updates = std::move(I->second);
4442 TULocalUpdates.erase(I);
4443
4444 auto *DC = cast<DeclContext>(D)->getPrimaryContext();
4445 for (const auto &Update : Updates)
4446 TULocalLookups[DC].Table.add(
4447 Update.Mod, Update.Data,
4448 reader::ASTDeclContextNameLookupTrait(*this, *Update.Mod));
4449 DC->setHasExternalVisibleStorage(true);
4450 }
4451
4452 // Load any pending related decls.
4453 if (D->isCanonicalDecl()) {
4454 if (auto IT = RelatedDeclsMap.find(ID); IT != RelatedDeclsMap.end()) {
4455 for (auto LID : IT->second)
4456 GetDecl(LID);
4457 RelatedDeclsMap.erase(IT);
4458 }
4459 }
4460
4461 // Load the pending specializations update for this decl, if it has any.
4462 if (auto I = PendingSpecializationsUpdates.find(ID);
4463 I != PendingSpecializationsUpdates.end()) {
4464 auto SpecializationUpdates = std::move(I->second);
4465 PendingSpecializationsUpdates.erase(I);
4466
4467 for (const auto &Update : SpecializationUpdates)
4468 AddSpecializations(D, Update.Data, *Update.Mod, /*IsPartial=*/false);
4469 }
4470
4471 // Load the pending specializations update for this decl, if it has any.
4472 if (auto I = PendingPartialSpecializationsUpdates.find(ID);
4473 I != PendingPartialSpecializationsUpdates.end()) {
4474 auto SpecializationUpdates = std::move(I->second);
4475 PendingPartialSpecializationsUpdates.erase(I);
4476
4477 for (const auto &Update : SpecializationUpdates)
4478 AddSpecializations(D, Update.Data, *Update.Mod, /*IsPartial=*/true);
4479 }
4480 }
4481
loadPendingDeclChain(Decl * FirstLocal,uint64_t LocalOffset)4482 void ASTReader::loadPendingDeclChain(Decl *FirstLocal, uint64_t LocalOffset) {
4483 // Attach FirstLocal to the end of the decl chain.
4484 Decl *CanonDecl = FirstLocal->getCanonicalDecl();
4485 if (FirstLocal != CanonDecl) {
4486 Decl *PrevMostRecent = ASTDeclReader::getMostRecentDecl(CanonDecl);
4487 ASTDeclReader::attachPreviousDecl(
4488 *this, FirstLocal, PrevMostRecent ? PrevMostRecent : CanonDecl,
4489 CanonDecl);
4490 }
4491
4492 if (!LocalOffset) {
4493 ASTDeclReader::attachLatestDecl(CanonDecl, FirstLocal);
4494 return;
4495 }
4496
4497 // Load the list of other redeclarations from this module file.
4498 ModuleFile *M = getOwningModuleFile(FirstLocal);
4499 assert(M && "imported decl from no module file");
4500
4501 llvm::BitstreamCursor &Cursor = M->DeclsCursor;
4502 SavedStreamPosition SavedPosition(Cursor);
4503 if (llvm::Error JumpFailed = Cursor.JumpToBit(LocalOffset))
4504 llvm::report_fatal_error(
4505 Twine("ASTReader::loadPendingDeclChain failed jumping: ") +
4506 toString(std::move(JumpFailed)));
4507
4508 RecordData Record;
4509 Expected<unsigned> MaybeCode = Cursor.ReadCode();
4510 if (!MaybeCode)
4511 llvm::report_fatal_error(
4512 Twine("ASTReader::loadPendingDeclChain failed reading code: ") +
4513 toString(MaybeCode.takeError()));
4514 unsigned Code = MaybeCode.get();
4515 if (Expected<unsigned> MaybeRecCode = Cursor.readRecord(Code, Record))
4516 assert(MaybeRecCode.get() == LOCAL_REDECLARATIONS &&
4517 "expected LOCAL_REDECLARATIONS record!");
4518 else
4519 llvm::report_fatal_error(
4520 Twine("ASTReader::loadPendingDeclChain failed reading rec code: ") +
4521 toString(MaybeCode.takeError()));
4522
4523 // FIXME: We have several different dispatches on decl kind here; maybe
4524 // we should instead generate one loop per kind and dispatch up-front?
4525 Decl *MostRecent = FirstLocal;
4526 for (unsigned I = 0, N = Record.size(); I != N; ++I) {
4527 unsigned Idx = N - I - 1;
4528 auto *D = ReadDecl(*M, Record, Idx);
4529 ASTDeclReader::attachPreviousDecl(*this, D, MostRecent, CanonDecl);
4530 MostRecent = D;
4531 }
4532 ASTDeclReader::attachLatestDecl(CanonDecl, MostRecent);
4533 }
4534
4535 namespace {
4536
4537 /// Given an ObjC interface, goes through the modules and links to the
4538 /// interface all the categories for it.
4539 class ObjCCategoriesVisitor {
4540 ASTReader &Reader;
4541 ObjCInterfaceDecl *Interface;
4542 llvm::SmallPtrSetImpl<ObjCCategoryDecl *> &Deserialized;
4543 ObjCCategoryDecl *Tail = nullptr;
4544 llvm::DenseMap<DeclarationName, ObjCCategoryDecl *> NameCategoryMap;
4545 GlobalDeclID InterfaceID;
4546 unsigned PreviousGeneration;
4547
add(ObjCCategoryDecl * Cat)4548 void add(ObjCCategoryDecl *Cat) {
4549 // Only process each category once.
4550 if (!Deserialized.erase(Cat))
4551 return;
4552
4553 // Check for duplicate categories.
4554 if (Cat->getDeclName()) {
4555 ObjCCategoryDecl *&Existing = NameCategoryMap[Cat->getDeclName()];
4556 if (Existing && Reader.getOwningModuleFile(Existing) !=
4557 Reader.getOwningModuleFile(Cat)) {
4558 StructuralEquivalenceContext::NonEquivalentDeclSet NonEquivalentDecls;
4559 StructuralEquivalenceContext Ctx(
4560 Reader.getContext().getLangOpts(), Cat->getASTContext(),
4561 Existing->getASTContext(), NonEquivalentDecls,
4562 StructuralEquivalenceKind::Default,
4563 /*StrictTypeSpelling=*/false,
4564 /*Complain=*/false,
4565 /*ErrorOnTagTypeMismatch=*/true);
4566 if (!Ctx.IsEquivalent(Cat, Existing)) {
4567 // Warn only if the categories with the same name are different.
4568 Reader.Diag(Cat->getLocation(), diag::warn_dup_category_def)
4569 << Interface->getDeclName() << Cat->getDeclName();
4570 Reader.Diag(Existing->getLocation(),
4571 diag::note_previous_definition);
4572 }
4573 } else if (!Existing) {
4574 // Record this category.
4575 Existing = Cat;
4576 }
4577 }
4578
4579 // Add this category to the end of the chain.
4580 if (Tail)
4581 ASTDeclReader::setNextObjCCategory(Tail, Cat);
4582 else
4583 Interface->setCategoryListRaw(Cat);
4584 Tail = Cat;
4585 }
4586
4587 public:
ObjCCategoriesVisitor(ASTReader & Reader,ObjCInterfaceDecl * Interface,llvm::SmallPtrSetImpl<ObjCCategoryDecl * > & Deserialized,GlobalDeclID InterfaceID,unsigned PreviousGeneration)4588 ObjCCategoriesVisitor(
4589 ASTReader &Reader, ObjCInterfaceDecl *Interface,
4590 llvm::SmallPtrSetImpl<ObjCCategoryDecl *> &Deserialized,
4591 GlobalDeclID InterfaceID, unsigned PreviousGeneration)
4592 : Reader(Reader), Interface(Interface), Deserialized(Deserialized),
4593 InterfaceID(InterfaceID), PreviousGeneration(PreviousGeneration) {
4594 // Populate the name -> category map with the set of known categories.
4595 for (auto *Cat : Interface->known_categories()) {
4596 if (Cat->getDeclName())
4597 NameCategoryMap[Cat->getDeclName()] = Cat;
4598
4599 // Keep track of the tail of the category list.
4600 Tail = Cat;
4601 }
4602 }
4603
operator ()(ModuleFile & M)4604 bool operator()(ModuleFile &M) {
4605 // If we've loaded all of the category information we care about from
4606 // this module file, we're done.
4607 if (M.Generation <= PreviousGeneration)
4608 return true;
4609
4610 // Map global ID of the definition down to the local ID used in this
4611 // module file. If there is no such mapping, we'll find nothing here
4612 // (or in any module it imports).
4613 LocalDeclID LocalID =
4614 Reader.mapGlobalIDToModuleFileGlobalID(M, InterfaceID);
4615 if (LocalID.isInvalid())
4616 return true;
4617
4618 // Perform a binary search to find the local redeclarations for this
4619 // declaration (if any).
4620 const ObjCCategoriesInfo Compare = {LocalID, 0};
4621 const ObjCCategoriesInfo *Result = std::lower_bound(
4622 M.ObjCCategoriesMap,
4623 M.ObjCCategoriesMap + M.LocalNumObjCCategoriesInMap, Compare);
4624 if (Result == M.ObjCCategoriesMap + M.LocalNumObjCCategoriesInMap ||
4625 LocalID != Result->getDefinitionID()) {
4626 // We didn't find anything. If the class definition is in this module
4627 // file, then the module files it depends on cannot have any categories,
4628 // so suppress further lookup.
4629 return Reader.isDeclIDFromModule(InterfaceID, M);
4630 }
4631
4632 // We found something. Dig out all of the categories.
4633 unsigned Offset = Result->Offset;
4634 unsigned N = M.ObjCCategories[Offset];
4635 M.ObjCCategories[Offset++] = 0; // Don't try to deserialize again
4636 for (unsigned I = 0; I != N; ++I)
4637 add(Reader.ReadDeclAs<ObjCCategoryDecl>(M, M.ObjCCategories, Offset));
4638 return true;
4639 }
4640 };
4641
4642 } // namespace
4643
loadObjCCategories(GlobalDeclID ID,ObjCInterfaceDecl * D,unsigned PreviousGeneration)4644 void ASTReader::loadObjCCategories(GlobalDeclID ID, ObjCInterfaceDecl *D,
4645 unsigned PreviousGeneration) {
4646 ObjCCategoriesVisitor Visitor(*this, D, CategoriesDeserialized, ID,
4647 PreviousGeneration);
4648 ModuleMgr.visit(Visitor);
4649 }
4650
4651 template<typename DeclT, typename Fn>
forAllLaterRedecls(DeclT * D,Fn F)4652 static void forAllLaterRedecls(DeclT *D, Fn F) {
4653 F(D);
4654
4655 // Check whether we've already merged D into its redeclaration chain.
4656 // MostRecent may or may not be nullptr if D has not been merged. If
4657 // not, walk the merged redecl chain and see if it's there.
4658 auto *MostRecent = D->getMostRecentDecl();
4659 bool Found = false;
4660 for (auto *Redecl = MostRecent; Redecl && !Found;
4661 Redecl = Redecl->getPreviousDecl())
4662 Found = (Redecl == D);
4663
4664 // If this declaration is merged, apply the functor to all later decls.
4665 if (Found) {
4666 for (auto *Redecl = MostRecent; Redecl != D;
4667 Redecl = Redecl->getPreviousDecl())
4668 F(Redecl);
4669 }
4670 }
4671
UpdateDecl(Decl * D)4672 void ASTDeclReader::UpdateDecl(Decl *D) {
4673 while (Record.getIdx() < Record.size()) {
4674 switch ((DeclUpdateKind)Record.readInt()) {
4675 case DeclUpdateKind::CXXAddedImplicitMember: {
4676 auto *RD = cast<CXXRecordDecl>(D);
4677 Decl *MD = Record.readDecl();
4678 assert(MD && "couldn't read decl from update record");
4679 Reader.PendingAddedClassMembers.push_back({RD, MD});
4680 break;
4681 }
4682
4683 case DeclUpdateKind::CXXAddedAnonymousNamespace: {
4684 auto *Anon = readDeclAs<NamespaceDecl>();
4685
4686 // Each module has its own anonymous namespace, which is disjoint from
4687 // any other module's anonymous namespaces, so don't attach the anonymous
4688 // namespace at all.
4689 if (!Record.isModule()) {
4690 if (auto *TU = dyn_cast<TranslationUnitDecl>(D))
4691 TU->setAnonymousNamespace(Anon);
4692 else
4693 cast<NamespaceDecl>(D)->setAnonymousNamespace(Anon);
4694 }
4695 break;
4696 }
4697
4698 case DeclUpdateKind::CXXAddedVarDefinition: {
4699 auto *VD = cast<VarDecl>(D);
4700 VD->NonParmVarDeclBits.IsInline = Record.readInt();
4701 VD->NonParmVarDeclBits.IsInlineSpecified = Record.readInt();
4702 ReadVarDeclInit(VD);
4703 break;
4704 }
4705
4706 case DeclUpdateKind::CXXPointOfInstantiation: {
4707 SourceLocation POI = Record.readSourceLocation();
4708 if (auto *VTSD = dyn_cast<VarTemplateSpecializationDecl>(D)) {
4709 VTSD->setPointOfInstantiation(POI);
4710 } else if (auto *VD = dyn_cast<VarDecl>(D)) {
4711 MemberSpecializationInfo *MSInfo = VD->getMemberSpecializationInfo();
4712 assert(MSInfo && "No member specialization information");
4713 MSInfo->setPointOfInstantiation(POI);
4714 } else {
4715 auto *FD = cast<FunctionDecl>(D);
4716 if (auto *FTSInfo = dyn_cast<FunctionTemplateSpecializationInfo *>(
4717 FD->TemplateOrSpecialization))
4718 FTSInfo->setPointOfInstantiation(POI);
4719 else
4720 cast<MemberSpecializationInfo *>(FD->TemplateOrSpecialization)
4721 ->setPointOfInstantiation(POI);
4722 }
4723 break;
4724 }
4725
4726 case DeclUpdateKind::CXXInstantiatedDefaultArgument: {
4727 auto *Param = cast<ParmVarDecl>(D);
4728
4729 // We have to read the default argument regardless of whether we use it
4730 // so that hypothetical further update records aren't messed up.
4731 // TODO: Add a function to skip over the next expr record.
4732 auto *DefaultArg = Record.readExpr();
4733
4734 // Only apply the update if the parameter still has an uninstantiated
4735 // default argument.
4736 if (Param->hasUninstantiatedDefaultArg())
4737 Param->setDefaultArg(DefaultArg);
4738 break;
4739 }
4740
4741 case DeclUpdateKind::CXXInstantiatedDefaultMemberInitializer: {
4742 auto *FD = cast<FieldDecl>(D);
4743 auto *DefaultInit = Record.readExpr();
4744
4745 // Only apply the update if the field still has an uninstantiated
4746 // default member initializer.
4747 if (FD->hasInClassInitializer() && !FD->hasNonNullInClassInitializer()) {
4748 if (DefaultInit)
4749 FD->setInClassInitializer(DefaultInit);
4750 else
4751 // Instantiation failed. We can get here if we serialized an AST for
4752 // an invalid program.
4753 FD->removeInClassInitializer();
4754 }
4755 break;
4756 }
4757
4758 case DeclUpdateKind::CXXAddedFunctionDefinition: {
4759 auto *FD = cast<FunctionDecl>(D);
4760 if (Reader.PendingBodies[FD]) {
4761 // FIXME: Maybe check for ODR violations.
4762 // It's safe to stop now because this update record is always last.
4763 return;
4764 }
4765
4766 if (Record.readInt()) {
4767 // Maintain AST consistency: any later redeclarations of this function
4768 // are inline if this one is. (We might have merged another declaration
4769 // into this one.)
4770 forAllLaterRedecls(FD, [](FunctionDecl *FD) {
4771 FD->setImplicitlyInline();
4772 });
4773 }
4774 FD->setInnerLocStart(readSourceLocation());
4775 ReadFunctionDefinition(FD);
4776 assert(Record.getIdx() == Record.size() && "lazy body must be last");
4777 break;
4778 }
4779
4780 case DeclUpdateKind::CXXInstantiatedClassDefinition: {
4781 auto *RD = cast<CXXRecordDecl>(D);
4782 auto *OldDD = RD->getCanonicalDecl()->DefinitionData;
4783 bool HadRealDefinition =
4784 OldDD && (OldDD->Definition != RD ||
4785 !Reader.PendingFakeDefinitionData.count(OldDD));
4786 RD->setParamDestroyedInCallee(Record.readInt());
4787 RD->setArgPassingRestrictions(
4788 static_cast<RecordArgPassingKind>(Record.readInt()));
4789 ReadCXXRecordDefinition(RD, /*Update*/true);
4790
4791 // Visible update is handled separately.
4792 uint64_t LexicalOffset = ReadLocalOffset();
4793 if (!HadRealDefinition && LexicalOffset) {
4794 Record.readLexicalDeclContextStorage(LexicalOffset, RD);
4795 Reader.PendingFakeDefinitionData.erase(OldDD);
4796 }
4797
4798 auto TSK = (TemplateSpecializationKind)Record.readInt();
4799 SourceLocation POI = readSourceLocation();
4800 if (MemberSpecializationInfo *MSInfo =
4801 RD->getMemberSpecializationInfo()) {
4802 MSInfo->setTemplateSpecializationKind(TSK);
4803 MSInfo->setPointOfInstantiation(POI);
4804 } else {
4805 auto *Spec = cast<ClassTemplateSpecializationDecl>(RD);
4806 Spec->setTemplateSpecializationKind(TSK);
4807 Spec->setPointOfInstantiation(POI);
4808
4809 if (Record.readInt()) {
4810 auto *PartialSpec =
4811 readDeclAs<ClassTemplatePartialSpecializationDecl>();
4812 SmallVector<TemplateArgument, 8> TemplArgs;
4813 Record.readTemplateArgumentList(TemplArgs);
4814 auto *TemplArgList = TemplateArgumentList::CreateCopy(
4815 Reader.getContext(), TemplArgs);
4816
4817 // FIXME: If we already have a partial specialization set,
4818 // check that it matches.
4819 if (!isa<ClassTemplatePartialSpecializationDecl *>(
4820 Spec->getSpecializedTemplateOrPartial()))
4821 Spec->setInstantiationOf(PartialSpec, TemplArgList);
4822 }
4823 }
4824
4825 RD->setTagKind(static_cast<TagTypeKind>(Record.readInt()));
4826 RD->setLocation(readSourceLocation());
4827 RD->setLocStart(readSourceLocation());
4828 RD->setBraceRange(readSourceRange());
4829
4830 if (Record.readInt()) {
4831 AttrVec Attrs;
4832 Record.readAttributes(Attrs);
4833 // If the declaration already has attributes, we assume that some other
4834 // AST file already loaded them.
4835 if (!D->hasAttrs())
4836 D->setAttrsImpl(Attrs, Reader.getContext());
4837 }
4838 break;
4839 }
4840
4841 case DeclUpdateKind::CXXResolvedDtorDelete: {
4842 // Set the 'operator delete' directly to avoid emitting another update
4843 // record.
4844 auto *Del = readDeclAs<FunctionDecl>();
4845 auto *First = cast<CXXDestructorDecl>(D->getCanonicalDecl());
4846 auto *ThisArg = Record.readExpr();
4847 // FIXME: Check consistency if we have an old and new operator delete.
4848 if (!First->OperatorDelete) {
4849 First->OperatorDelete = Del;
4850 First->OperatorDeleteThisArg = ThisArg;
4851 }
4852 break;
4853 }
4854
4855 case DeclUpdateKind::CXXResolvedExceptionSpec: {
4856 SmallVector<QualType, 8> ExceptionStorage;
4857 auto ESI = Record.readExceptionSpecInfo(ExceptionStorage);
4858
4859 // Update this declaration's exception specification, if needed.
4860 auto *FD = cast<FunctionDecl>(D);
4861 auto *FPT = FD->getType()->castAs<FunctionProtoType>();
4862 // FIXME: If the exception specification is already present, check that it
4863 // matches.
4864 if (isUnresolvedExceptionSpec(FPT->getExceptionSpecType())) {
4865 FD->setType(Reader.getContext().getFunctionType(
4866 FPT->getReturnType(), FPT->getParamTypes(),
4867 FPT->getExtProtoInfo().withExceptionSpec(ESI)));
4868
4869 // When we get to the end of deserializing, see if there are other decls
4870 // that we need to propagate this exception specification onto.
4871 Reader.PendingExceptionSpecUpdates.insert(
4872 std::make_pair(FD->getCanonicalDecl(), FD));
4873 }
4874 break;
4875 }
4876
4877 case DeclUpdateKind::CXXDeducedReturnType: {
4878 auto *FD = cast<FunctionDecl>(D);
4879 QualType DeducedResultType = Record.readType();
4880 Reader.PendingDeducedTypeUpdates.insert(
4881 {FD->getCanonicalDecl(), DeducedResultType});
4882 break;
4883 }
4884
4885 case DeclUpdateKind::DeclMarkedUsed:
4886 // Maintain AST consistency: any later redeclarations are used too.
4887 D->markUsed(Reader.getContext());
4888 break;
4889
4890 case DeclUpdateKind::ManglingNumber:
4891 Reader.getContext().setManglingNumber(cast<NamedDecl>(D),
4892 Record.readInt());
4893 break;
4894
4895 case DeclUpdateKind::StaticLocalNumber:
4896 Reader.getContext().setStaticLocalNumber(cast<VarDecl>(D),
4897 Record.readInt());
4898 break;
4899
4900 case DeclUpdateKind::DeclMarkedOpenMPThreadPrivate:
4901 D->addAttr(OMPThreadPrivateDeclAttr::CreateImplicit(Reader.getContext(),
4902 readSourceRange()));
4903 break;
4904
4905 case DeclUpdateKind::DeclMarkedOpenMPAllocate: {
4906 auto AllocatorKind =
4907 static_cast<OMPAllocateDeclAttr::AllocatorTypeTy>(Record.readInt());
4908 Expr *Allocator = Record.readExpr();
4909 Expr *Alignment = Record.readExpr();
4910 SourceRange SR = readSourceRange();
4911 D->addAttr(OMPAllocateDeclAttr::CreateImplicit(
4912 Reader.getContext(), AllocatorKind, Allocator, Alignment, SR));
4913 break;
4914 }
4915
4916 case DeclUpdateKind::DeclExported: {
4917 unsigned SubmoduleID = readSubmoduleID();
4918 auto *Exported = cast<NamedDecl>(D);
4919 Module *Owner = SubmoduleID ? Reader.getSubmodule(SubmoduleID) : nullptr;
4920 Reader.getContext().mergeDefinitionIntoModule(Exported, Owner);
4921 Reader.PendingMergedDefinitionsToDeduplicate.insert(Exported);
4922 break;
4923 }
4924
4925 case DeclUpdateKind::DeclMarkedOpenMPDeclareTarget: {
4926 auto MapType = Record.readEnum<OMPDeclareTargetDeclAttr::MapTypeTy>();
4927 auto DevType = Record.readEnum<OMPDeclareTargetDeclAttr::DevTypeTy>();
4928 Expr *IndirectE = Record.readExpr();
4929 bool Indirect = Record.readBool();
4930 unsigned Level = Record.readInt();
4931 D->addAttr(OMPDeclareTargetDeclAttr::CreateImplicit(
4932 Reader.getContext(), MapType, DevType, IndirectE, Indirect, Level,
4933 readSourceRange()));
4934 break;
4935 }
4936
4937 case DeclUpdateKind::AddedAttrToRecord:
4938 AttrVec Attrs;
4939 Record.readAttributes(Attrs);
4940 assert(Attrs.size() == 1);
4941 D->addAttr(Attrs[0]);
4942 break;
4943 }
4944 }
4945 }
4946