1 //===--- ASTReaderDecl.cpp - Decl Deserialization ---------------*- C++ -*-===// 2 // 3 // The LLVM Compiler Infrastructure 4 // 5 // This file is distributed under the University of Illinois Open Source 6 // License. See LICENSE.TXT for details. 7 // 8 //===----------------------------------------------------------------------===// 9 // 10 // This file implements the ASTReader::ReadDeclRecord method, which is the 11 // entrypoint for loading a decl. 12 // 13 //===----------------------------------------------------------------------===// 14 15 #include "clang/Serialization/ASTReader.h" 16 #include "ASTCommon.h" 17 #include "ASTReaderInternals.h" 18 #include "clang/AST/ASTConsumer.h" 19 #include "clang/AST/ASTContext.h" 20 #include "clang/AST/DeclCXX.h" 21 #include "clang/AST/DeclGroup.h" 22 #include "clang/AST/DeclTemplate.h" 23 #include "clang/AST/DeclVisitor.h" 24 #include "clang/AST/Expr.h" 25 #include "clang/Sema/IdentifierResolver.h" 26 #include "clang/Sema/Sema.h" 27 #include "clang/Sema/SemaDiagnostic.h" 28 #include "llvm/Support/SaveAndRestore.h" 29 using namespace clang; 30 using namespace clang::serialization; 31 32 //===----------------------------------------------------------------------===// 33 // Declaration deserialization 34 //===----------------------------------------------------------------------===// 35 36 namespace clang { 37 class ASTDeclReader : public DeclVisitor<ASTDeclReader, void> { 38 ASTReader &Reader; 39 ModuleFile &F; 40 const DeclID ThisDeclID; 41 const unsigned RawLocation; 42 typedef ASTReader::RecordData RecordData; 43 const RecordData &Record; 44 unsigned &Idx; 45 TypeID TypeIDForTypeDecl; 46 47 bool HasPendingBody; 48 49 uint64_t GetCurrentCursorOffset(); 50 51 SourceLocation ReadSourceLocation(const RecordData &R, unsigned &I) { 52 return Reader.ReadSourceLocation(F, R, I); 53 } 54 55 SourceRange ReadSourceRange(const RecordData &R, unsigned &I) { 56 return Reader.ReadSourceRange(F, R, I); 57 } 58 59 TypeSourceInfo *GetTypeSourceInfo(const RecordData &R, unsigned &I) { 60 return Reader.GetTypeSourceInfo(F, R, I); 61 } 62 63 serialization::DeclID ReadDeclID(const RecordData &R, unsigned &I) { 64 return Reader.ReadDeclID(F, R, I); 65 } 66 67 Decl *ReadDecl(const RecordData &R, unsigned &I) { 68 return Reader.ReadDecl(F, R, I); 69 } 70 71 template<typename T> 72 T *ReadDeclAs(const RecordData &R, unsigned &I) { 73 return Reader.ReadDeclAs<T>(F, R, I); 74 } 75 76 void ReadQualifierInfo(QualifierInfo &Info, 77 const RecordData &R, unsigned &I) { 78 Reader.ReadQualifierInfo(F, Info, R, I); 79 } 80 81 void ReadDeclarationNameLoc(DeclarationNameLoc &DNLoc, DeclarationName Name, 82 const RecordData &R, unsigned &I) { 83 Reader.ReadDeclarationNameLoc(F, DNLoc, Name, R, I); 84 } 85 86 void ReadDeclarationNameInfo(DeclarationNameInfo &NameInfo, 87 const RecordData &R, unsigned &I) { 88 Reader.ReadDeclarationNameInfo(F, NameInfo, R, I); 89 } 90 91 serialization::SubmoduleID readSubmoduleID(const RecordData &R, 92 unsigned &I) { 93 if (I >= R.size()) 94 return 0; 95 96 return Reader.getGlobalSubmoduleID(F, R[I++]); 97 } 98 99 Module *readModule(const RecordData &R, unsigned &I) { 100 return Reader.getSubmodule(readSubmoduleID(R, I)); 101 } 102 103 void ReadCXXRecordDefinition(CXXRecordDecl *D); 104 void ReadCXXDefinitionData(struct CXXRecordDecl::DefinitionData &Data, 105 const RecordData &R, unsigned &I); 106 void MergeDefinitionData(CXXRecordDecl *D, 107 struct CXXRecordDecl::DefinitionData &NewDD); 108 109 /// \brief RAII class used to capture the first ID within a redeclaration 110 /// chain and to introduce it into the list of pending redeclaration chains 111 /// on destruction. 112 /// 113 /// The caller can choose not to introduce this ID into the redeclaration 114 /// chain by calling \c suppress(). 115 class RedeclarableResult { 116 ASTReader &Reader; 117 GlobalDeclID FirstID; 118 mutable bool Owning; 119 Decl::Kind DeclKind; 120 121 void operator=(RedeclarableResult &) LLVM_DELETED_FUNCTION; 122 123 public: 124 RedeclarableResult(ASTReader &Reader, GlobalDeclID FirstID, 125 Decl::Kind DeclKind) 126 : Reader(Reader), FirstID(FirstID), Owning(true), DeclKind(DeclKind) { } 127 128 RedeclarableResult(const RedeclarableResult &Other) 129 : Reader(Other.Reader), FirstID(Other.FirstID), Owning(Other.Owning) , 130 DeclKind(Other.DeclKind) 131 { 132 Other.Owning = false; 133 } 134 135 ~RedeclarableResult() { 136 if (FirstID && Owning && isRedeclarableDeclKind(DeclKind) && 137 Reader.PendingDeclChainsKnown.insert(FirstID)) 138 Reader.PendingDeclChains.push_back(FirstID); 139 } 140 141 /// \brief Retrieve the first ID. 142 GlobalDeclID getFirstID() const { return FirstID; } 143 144 /// \brief Do not introduce this declaration ID into the set of pending 145 /// declaration chains. 146 void suppress() { 147 Owning = false; 148 } 149 }; 150 151 /// \brief Class used to capture the result of searching for an existing 152 /// declaration of a specific kind and name, along with the ability 153 /// to update the place where this result was found (the declaration 154 /// chain hanging off an identifier or the DeclContext we searched in) 155 /// if requested. 156 class FindExistingResult { 157 ASTReader &Reader; 158 NamedDecl *New; 159 NamedDecl *Existing; 160 mutable bool AddResult; 161 162 void operator=(FindExistingResult&) LLVM_DELETED_FUNCTION; 163 164 public: 165 FindExistingResult(ASTReader &Reader) 166 : Reader(Reader), New(nullptr), Existing(nullptr), AddResult(false) {} 167 168 FindExistingResult(ASTReader &Reader, NamedDecl *New, NamedDecl *Existing) 169 : Reader(Reader), New(New), Existing(Existing), AddResult(true) { } 170 171 FindExistingResult(const FindExistingResult &Other) 172 : Reader(Other.Reader), New(Other.New), Existing(Other.Existing), 173 AddResult(Other.AddResult) 174 { 175 Other.AddResult = false; 176 } 177 178 ~FindExistingResult(); 179 180 /// \brief Suppress the addition of this result into the known set of 181 /// names. 182 void suppress() { AddResult = false; } 183 184 operator NamedDecl*() const { return Existing; } 185 186 template<typename T> 187 operator T*() const { return dyn_cast_or_null<T>(Existing); } 188 }; 189 190 FindExistingResult findExisting(NamedDecl *D); 191 192 public: 193 ASTDeclReader(ASTReader &Reader, ModuleFile &F, 194 DeclID thisDeclID, 195 unsigned RawLocation, 196 const RecordData &Record, unsigned &Idx) 197 : Reader(Reader), F(F), ThisDeclID(thisDeclID), 198 RawLocation(RawLocation), Record(Record), Idx(Idx), 199 TypeIDForTypeDecl(0), HasPendingBody(false) { } 200 201 template <typename DeclT> 202 static void attachPreviousDeclImpl(Redeclarable<DeclT> *D, Decl *Previous); 203 static void attachPreviousDeclImpl(...); 204 static void attachPreviousDecl(Decl *D, Decl *previous); 205 206 template <typename DeclT> 207 static void attachLatestDeclImpl(Redeclarable<DeclT> *D, Decl *Latest); 208 static void attachLatestDeclImpl(...); 209 static void attachLatestDecl(Decl *D, Decl *latest); 210 211 template <typename DeclT> 212 static void markIncompleteDeclChainImpl(Redeclarable<DeclT> *D); 213 static void markIncompleteDeclChainImpl(...); 214 215 /// \brief Determine whether this declaration has a pending body. 216 bool hasPendingBody() const { return HasPendingBody; } 217 218 void Visit(Decl *D); 219 220 void UpdateDecl(Decl *D, ModuleFile &ModuleFile, 221 const RecordData &Record); 222 223 static void setNextObjCCategory(ObjCCategoryDecl *Cat, 224 ObjCCategoryDecl *Next) { 225 Cat->NextClassCategory = Next; 226 } 227 228 void VisitDecl(Decl *D); 229 void VisitTranslationUnitDecl(TranslationUnitDecl *TU); 230 void VisitNamedDecl(NamedDecl *ND); 231 void VisitLabelDecl(LabelDecl *LD); 232 void VisitNamespaceDecl(NamespaceDecl *D); 233 void VisitUsingDirectiveDecl(UsingDirectiveDecl *D); 234 void VisitNamespaceAliasDecl(NamespaceAliasDecl *D); 235 void VisitTypeDecl(TypeDecl *TD); 236 void VisitTypedefNameDecl(TypedefNameDecl *TD); 237 void VisitTypedefDecl(TypedefDecl *TD); 238 void VisitTypeAliasDecl(TypeAliasDecl *TD); 239 void VisitUnresolvedUsingTypenameDecl(UnresolvedUsingTypenameDecl *D); 240 RedeclarableResult VisitTagDecl(TagDecl *TD); 241 void VisitEnumDecl(EnumDecl *ED); 242 RedeclarableResult VisitRecordDeclImpl(RecordDecl *RD); 243 void VisitRecordDecl(RecordDecl *RD) { VisitRecordDeclImpl(RD); } 244 RedeclarableResult VisitCXXRecordDeclImpl(CXXRecordDecl *D); 245 void VisitCXXRecordDecl(CXXRecordDecl *D) { VisitCXXRecordDeclImpl(D); } 246 RedeclarableResult VisitClassTemplateSpecializationDeclImpl( 247 ClassTemplateSpecializationDecl *D); 248 void VisitClassTemplateSpecializationDecl( 249 ClassTemplateSpecializationDecl *D) { 250 VisitClassTemplateSpecializationDeclImpl(D); 251 } 252 void VisitClassTemplatePartialSpecializationDecl( 253 ClassTemplatePartialSpecializationDecl *D); 254 void VisitClassScopeFunctionSpecializationDecl( 255 ClassScopeFunctionSpecializationDecl *D); 256 RedeclarableResult 257 VisitVarTemplateSpecializationDeclImpl(VarTemplateSpecializationDecl *D); 258 void VisitVarTemplateSpecializationDecl(VarTemplateSpecializationDecl *D) { 259 VisitVarTemplateSpecializationDeclImpl(D); 260 } 261 void VisitVarTemplatePartialSpecializationDecl( 262 VarTemplatePartialSpecializationDecl *D); 263 void VisitTemplateTypeParmDecl(TemplateTypeParmDecl *D); 264 void VisitValueDecl(ValueDecl *VD); 265 void VisitEnumConstantDecl(EnumConstantDecl *ECD); 266 void VisitUnresolvedUsingValueDecl(UnresolvedUsingValueDecl *D); 267 void VisitDeclaratorDecl(DeclaratorDecl *DD); 268 void VisitFunctionDecl(FunctionDecl *FD); 269 void VisitCXXMethodDecl(CXXMethodDecl *D); 270 void VisitCXXConstructorDecl(CXXConstructorDecl *D); 271 void VisitCXXDestructorDecl(CXXDestructorDecl *D); 272 void VisitCXXConversionDecl(CXXConversionDecl *D); 273 void VisitFieldDecl(FieldDecl *FD); 274 void VisitMSPropertyDecl(MSPropertyDecl *FD); 275 void VisitIndirectFieldDecl(IndirectFieldDecl *FD); 276 RedeclarableResult VisitVarDeclImpl(VarDecl *D); 277 void VisitVarDecl(VarDecl *VD) { VisitVarDeclImpl(VD); } 278 void VisitImplicitParamDecl(ImplicitParamDecl *PD); 279 void VisitParmVarDecl(ParmVarDecl *PD); 280 void VisitNonTypeTemplateParmDecl(NonTypeTemplateParmDecl *D); 281 DeclID VisitTemplateDecl(TemplateDecl *D); 282 RedeclarableResult VisitRedeclarableTemplateDecl(RedeclarableTemplateDecl *D); 283 void VisitClassTemplateDecl(ClassTemplateDecl *D); 284 void VisitVarTemplateDecl(VarTemplateDecl *D); 285 void VisitFunctionTemplateDecl(FunctionTemplateDecl *D); 286 void VisitTemplateTemplateParmDecl(TemplateTemplateParmDecl *D); 287 void VisitTypeAliasTemplateDecl(TypeAliasTemplateDecl *D); 288 void VisitUsingDecl(UsingDecl *D); 289 void VisitUsingShadowDecl(UsingShadowDecl *D); 290 void VisitLinkageSpecDecl(LinkageSpecDecl *D); 291 void VisitFileScopeAsmDecl(FileScopeAsmDecl *AD); 292 void VisitImportDecl(ImportDecl *D); 293 void VisitAccessSpecDecl(AccessSpecDecl *D); 294 void VisitFriendDecl(FriendDecl *D); 295 void VisitFriendTemplateDecl(FriendTemplateDecl *D); 296 void VisitStaticAssertDecl(StaticAssertDecl *D); 297 void VisitBlockDecl(BlockDecl *BD); 298 void VisitCapturedDecl(CapturedDecl *CD); 299 void VisitEmptyDecl(EmptyDecl *D); 300 301 std::pair<uint64_t, uint64_t> VisitDeclContext(DeclContext *DC); 302 303 template<typename T> 304 RedeclarableResult VisitRedeclarable(Redeclarable<T> *D); 305 306 template<typename T> 307 void mergeRedeclarable(Redeclarable<T> *D, RedeclarableResult &Redecl, 308 DeclID TemplatePatternID = 0); 309 310 template<typename T> 311 void mergeRedeclarable(Redeclarable<T> *D, T *Existing, 312 RedeclarableResult &Redecl, 313 DeclID TemplatePatternID = 0); 314 315 template<typename T> 316 void mergeMergeable(Mergeable<T> *D); 317 318 void mergeTemplatePattern(RedeclarableTemplateDecl *D, 319 RedeclarableTemplateDecl *Existing, 320 DeclID DsID); 321 322 // FIXME: Reorder according to DeclNodes.td? 323 void VisitObjCMethodDecl(ObjCMethodDecl *D); 324 void VisitObjCContainerDecl(ObjCContainerDecl *D); 325 void VisitObjCInterfaceDecl(ObjCInterfaceDecl *D); 326 void VisitObjCIvarDecl(ObjCIvarDecl *D); 327 void VisitObjCProtocolDecl(ObjCProtocolDecl *D); 328 void VisitObjCAtDefsFieldDecl(ObjCAtDefsFieldDecl *D); 329 void VisitObjCCategoryDecl(ObjCCategoryDecl *D); 330 void VisitObjCImplDecl(ObjCImplDecl *D); 331 void VisitObjCCategoryImplDecl(ObjCCategoryImplDecl *D); 332 void VisitObjCImplementationDecl(ObjCImplementationDecl *D); 333 void VisitObjCCompatibleAliasDecl(ObjCCompatibleAliasDecl *D); 334 void VisitObjCPropertyDecl(ObjCPropertyDecl *D); 335 void VisitObjCPropertyImplDecl(ObjCPropertyImplDecl *D); 336 void VisitOMPThreadPrivateDecl(OMPThreadPrivateDecl *D); 337 }; 338 } 339 340 uint64_t ASTDeclReader::GetCurrentCursorOffset() { 341 return F.DeclsCursor.GetCurrentBitNo() + F.GlobalBitOffset; 342 } 343 344 void ASTDeclReader::Visit(Decl *D) { 345 DeclVisitor<ASTDeclReader, void>::Visit(D); 346 347 if (DeclaratorDecl *DD = dyn_cast<DeclaratorDecl>(D)) { 348 if (DD->DeclInfo) { 349 DeclaratorDecl::ExtInfo *Info = 350 DD->DeclInfo.get<DeclaratorDecl::ExtInfo *>(); 351 Info->TInfo = 352 GetTypeSourceInfo(Record, Idx); 353 } 354 else { 355 DD->DeclInfo = GetTypeSourceInfo(Record, Idx); 356 } 357 } 358 359 if (TypeDecl *TD = dyn_cast<TypeDecl>(D)) { 360 // We have a fully initialized TypeDecl. Read its type now. 361 TD->setTypeForDecl(Reader.GetType(TypeIDForTypeDecl).getTypePtrOrNull()); 362 } else if (ObjCInterfaceDecl *ID = dyn_cast<ObjCInterfaceDecl>(D)) { 363 // if we have a fully initialized TypeDecl, we can safely read its type now. 364 ID->TypeForDecl = Reader.GetType(TypeIDForTypeDecl).getTypePtrOrNull(); 365 } else if (FunctionDecl *FD = dyn_cast<FunctionDecl>(D)) { 366 // FunctionDecl's body was written last after all other Stmts/Exprs. 367 // We only read it if FD doesn't already have a body (e.g., from another 368 // module). 369 // FIXME: Also consider = default and = delete. 370 // FIXME: Can we diagnose ODR violations somehow? 371 if (Record[Idx++]) { 372 Reader.PendingBodies[FD] = GetCurrentCursorOffset(); 373 HasPendingBody = true; 374 } 375 } 376 } 377 378 void ASTDeclReader::VisitDecl(Decl *D) { 379 if (D->isTemplateParameter() || D->isTemplateParameterPack() || 380 isa<ParmVarDecl>(D)) { 381 // We don't want to deserialize the DeclContext of a template 382 // parameter or of a parameter of a function template immediately. These 383 // entities might be used in the formulation of its DeclContext (for 384 // example, a function parameter can be used in decltype() in trailing 385 // return type of the function). Use the translation unit DeclContext as a 386 // placeholder. 387 GlobalDeclID SemaDCIDForTemplateParmDecl = ReadDeclID(Record, Idx); 388 GlobalDeclID LexicalDCIDForTemplateParmDecl = ReadDeclID(Record, Idx); 389 Reader.addPendingDeclContextInfo(D, 390 SemaDCIDForTemplateParmDecl, 391 LexicalDCIDForTemplateParmDecl); 392 D->setDeclContext(Reader.getContext().getTranslationUnitDecl()); 393 } else { 394 DeclContext *SemaDC = ReadDeclAs<DeclContext>(Record, Idx); 395 DeclContext *LexicalDC = ReadDeclAs<DeclContext>(Record, Idx); 396 DeclContext *MergedSemaDC = Reader.MergedDeclContexts.lookup(SemaDC); 397 // Avoid calling setLexicalDeclContext() directly because it uses 398 // Decl::getASTContext() internally which is unsafe during derialization. 399 D->setDeclContextsImpl(MergedSemaDC ? MergedSemaDC : SemaDC, LexicalDC, 400 Reader.getContext()); 401 } 402 D->setLocation(Reader.ReadSourceLocation(F, RawLocation)); 403 D->setInvalidDecl(Record[Idx++]); 404 if (Record[Idx++]) { // hasAttrs 405 AttrVec Attrs; 406 Reader.ReadAttributes(F, Attrs, Record, Idx); 407 // Avoid calling setAttrs() directly because it uses Decl::getASTContext() 408 // internally which is unsafe during derialization. 409 D->setAttrsImpl(Attrs, Reader.getContext()); 410 } 411 D->setImplicit(Record[Idx++]); 412 D->Used = Record[Idx++]; 413 D->setReferenced(Record[Idx++]); 414 D->setTopLevelDeclInObjCContainer(Record[Idx++]); 415 D->setAccess((AccessSpecifier)Record[Idx++]); 416 D->FromASTFile = true; 417 D->setModulePrivate(Record[Idx++]); 418 D->Hidden = D->isModulePrivate(); 419 420 // Determine whether this declaration is part of a (sub)module. If so, it 421 // may not yet be visible. 422 if (unsigned SubmoduleID = readSubmoduleID(Record, Idx)) { 423 // Store the owning submodule ID in the declaration. 424 D->setOwningModuleID(SubmoduleID); 425 426 // Module-private declarations are never visible, so there is no work to do. 427 if (!D->isModulePrivate()) { 428 if (Module *Owner = Reader.getSubmodule(SubmoduleID)) { 429 if (Owner->NameVisibility != Module::AllVisible) { 430 // The owning module is not visible. Mark this declaration as hidden. 431 D->Hidden = true; 432 433 // Note that this declaration was hidden because its owning module is 434 // not yet visible. 435 Reader.HiddenNamesMap[Owner].HiddenDecls.push_back(D); 436 } 437 } 438 } 439 } 440 } 441 442 void ASTDeclReader::VisitTranslationUnitDecl(TranslationUnitDecl *TU) { 443 llvm_unreachable("Translation units are not serialized"); 444 } 445 446 void ASTDeclReader::VisitNamedDecl(NamedDecl *ND) { 447 VisitDecl(ND); 448 ND->setDeclName(Reader.ReadDeclarationName(F, Record, Idx)); 449 } 450 451 void ASTDeclReader::VisitTypeDecl(TypeDecl *TD) { 452 VisitNamedDecl(TD); 453 TD->setLocStart(ReadSourceLocation(Record, Idx)); 454 // Delay type reading until after we have fully initialized the decl. 455 TypeIDForTypeDecl = Reader.getGlobalTypeID(F, Record[Idx++]); 456 } 457 458 void ASTDeclReader::VisitTypedefNameDecl(TypedefNameDecl *TD) { 459 RedeclarableResult Redecl = VisitRedeclarable(TD); 460 VisitTypeDecl(TD); 461 TypeSourceInfo *TInfo = GetTypeSourceInfo(Record, Idx); 462 if (Record[Idx++]) { // isModed 463 QualType modedT = Reader.readType(F, Record, Idx); 464 TD->setModedTypeSourceInfo(TInfo, modedT); 465 } else 466 TD->setTypeSourceInfo(TInfo); 467 mergeRedeclarable(TD, Redecl); 468 } 469 470 void ASTDeclReader::VisitTypedefDecl(TypedefDecl *TD) { 471 VisitTypedefNameDecl(TD); 472 } 473 474 void ASTDeclReader::VisitTypeAliasDecl(TypeAliasDecl *TD) { 475 VisitTypedefNameDecl(TD); 476 } 477 478 ASTDeclReader::RedeclarableResult ASTDeclReader::VisitTagDecl(TagDecl *TD) { 479 RedeclarableResult Redecl = VisitRedeclarable(TD); 480 VisitTypeDecl(TD); 481 482 TD->IdentifierNamespace = Record[Idx++]; 483 TD->setTagKind((TagDecl::TagKind)Record[Idx++]); 484 TD->setCompleteDefinition(Record[Idx++]); 485 TD->setEmbeddedInDeclarator(Record[Idx++]); 486 TD->setFreeStanding(Record[Idx++]); 487 TD->setCompleteDefinitionRequired(Record[Idx++]); 488 TD->setRBraceLoc(ReadSourceLocation(Record, Idx)); 489 490 if (Record[Idx++]) { // hasExtInfo 491 TagDecl::ExtInfo *Info = new (Reader.getContext()) TagDecl::ExtInfo(); 492 ReadQualifierInfo(*Info, Record, Idx); 493 TD->NamedDeclOrQualifier = Info; 494 } else 495 TD->NamedDeclOrQualifier = ReadDeclAs<NamedDecl>(Record, Idx); 496 497 if (!isa<CXXRecordDecl>(TD)) 498 mergeRedeclarable(TD, Redecl); 499 return Redecl; 500 } 501 502 void ASTDeclReader::VisitEnumDecl(EnumDecl *ED) { 503 VisitTagDecl(ED); 504 if (TypeSourceInfo *TI = Reader.GetTypeSourceInfo(F, Record, Idx)) 505 ED->setIntegerTypeSourceInfo(TI); 506 else 507 ED->setIntegerType(Reader.readType(F, Record, Idx)); 508 ED->setPromotionType(Reader.readType(F, Record, Idx)); 509 ED->setNumPositiveBits(Record[Idx++]); 510 ED->setNumNegativeBits(Record[Idx++]); 511 ED->IsScoped = Record[Idx++]; 512 ED->IsScopedUsingClassTag = Record[Idx++]; 513 ED->IsFixed = Record[Idx++]; 514 515 // If this is a definition subject to the ODR, and we already have a 516 // definition, merge this one into it. 517 if (ED->IsCompleteDefinition && 518 Reader.getContext().getLangOpts().Modules && 519 Reader.getContext().getLangOpts().CPlusPlus) { 520 if (EnumDecl *&OldDef = Reader.EnumDefinitions[ED->getCanonicalDecl()]) { 521 Reader.MergedDeclContexts.insert(std::make_pair(ED, OldDef)); 522 ED->IsCompleteDefinition = false; 523 } else { 524 OldDef = ED; 525 } 526 } 527 528 if (EnumDecl *InstED = ReadDeclAs<EnumDecl>(Record, Idx)) { 529 TemplateSpecializationKind TSK = (TemplateSpecializationKind)Record[Idx++]; 530 SourceLocation POI = ReadSourceLocation(Record, Idx); 531 ED->setInstantiationOfMemberEnum(Reader.getContext(), InstED, TSK); 532 ED->getMemberSpecializationInfo()->setPointOfInstantiation(POI); 533 } 534 } 535 536 ASTDeclReader::RedeclarableResult 537 ASTDeclReader::VisitRecordDeclImpl(RecordDecl *RD) { 538 RedeclarableResult Redecl = VisitTagDecl(RD); 539 RD->setHasFlexibleArrayMember(Record[Idx++]); 540 RD->setAnonymousStructOrUnion(Record[Idx++]); 541 RD->setHasObjectMember(Record[Idx++]); 542 RD->setHasVolatileMember(Record[Idx++]); 543 return Redecl; 544 } 545 546 void ASTDeclReader::VisitValueDecl(ValueDecl *VD) { 547 VisitNamedDecl(VD); 548 VD->setType(Reader.readType(F, Record, Idx)); 549 } 550 551 void ASTDeclReader::VisitEnumConstantDecl(EnumConstantDecl *ECD) { 552 VisitValueDecl(ECD); 553 if (Record[Idx++]) 554 ECD->setInitExpr(Reader.ReadExpr(F)); 555 ECD->setInitVal(Reader.ReadAPSInt(Record, Idx)); 556 mergeMergeable(ECD); 557 } 558 559 void ASTDeclReader::VisitDeclaratorDecl(DeclaratorDecl *DD) { 560 VisitValueDecl(DD); 561 DD->setInnerLocStart(ReadSourceLocation(Record, Idx)); 562 if (Record[Idx++]) { // hasExtInfo 563 DeclaratorDecl::ExtInfo *Info 564 = new (Reader.getContext()) DeclaratorDecl::ExtInfo(); 565 ReadQualifierInfo(*Info, Record, Idx); 566 DD->DeclInfo = Info; 567 } 568 } 569 570 void ASTDeclReader::VisitFunctionDecl(FunctionDecl *FD) { 571 RedeclarableResult Redecl = VisitRedeclarable(FD); 572 VisitDeclaratorDecl(FD); 573 574 ReadDeclarationNameLoc(FD->DNLoc, FD->getDeclName(), Record, Idx); 575 FD->IdentifierNamespace = Record[Idx++]; 576 577 // FunctionDecl's body is handled last at ASTDeclReader::Visit, 578 // after everything else is read. 579 580 FD->SClass = (StorageClass)Record[Idx++]; 581 FD->IsInline = Record[Idx++]; 582 FD->IsInlineSpecified = Record[Idx++]; 583 FD->IsVirtualAsWritten = Record[Idx++]; 584 FD->IsPure = Record[Idx++]; 585 FD->HasInheritedPrototype = Record[Idx++]; 586 FD->HasWrittenPrototype = Record[Idx++]; 587 FD->IsDeleted = Record[Idx++]; 588 FD->IsTrivial = Record[Idx++]; 589 FD->IsDefaulted = Record[Idx++]; 590 FD->IsExplicitlyDefaulted = Record[Idx++]; 591 FD->HasImplicitReturnZero = Record[Idx++]; 592 FD->IsConstexpr = Record[Idx++]; 593 FD->HasSkippedBody = Record[Idx++]; 594 FD->IsLateTemplateParsed = Record[Idx++]; 595 FD->setCachedLinkage(Linkage(Record[Idx++])); 596 FD->EndRangeLoc = ReadSourceLocation(Record, Idx); 597 598 switch ((FunctionDecl::TemplatedKind)Record[Idx++]) { 599 case FunctionDecl::TK_NonTemplate: 600 mergeRedeclarable(FD, Redecl); 601 break; 602 case FunctionDecl::TK_FunctionTemplate: 603 // Merged when we merge the template. 604 FD->setDescribedFunctionTemplate(ReadDeclAs<FunctionTemplateDecl>(Record, 605 Idx)); 606 break; 607 case FunctionDecl::TK_MemberSpecialization: { 608 FunctionDecl *InstFD = ReadDeclAs<FunctionDecl>(Record, Idx); 609 TemplateSpecializationKind TSK = (TemplateSpecializationKind)Record[Idx++]; 610 SourceLocation POI = ReadSourceLocation(Record, Idx); 611 FD->setInstantiationOfMemberFunction(Reader.getContext(), InstFD, TSK); 612 FD->getMemberSpecializationInfo()->setPointOfInstantiation(POI); 613 mergeRedeclarable(FD, Redecl); 614 break; 615 } 616 case FunctionDecl::TK_FunctionTemplateSpecialization: { 617 FunctionTemplateDecl *Template = ReadDeclAs<FunctionTemplateDecl>(Record, 618 Idx); 619 TemplateSpecializationKind TSK = (TemplateSpecializationKind)Record[Idx++]; 620 621 // Template arguments. 622 SmallVector<TemplateArgument, 8> TemplArgs; 623 Reader.ReadTemplateArgumentList(TemplArgs, F, Record, Idx); 624 625 // Template args as written. 626 SmallVector<TemplateArgumentLoc, 8> TemplArgLocs; 627 SourceLocation LAngleLoc, RAngleLoc; 628 bool HasTemplateArgumentsAsWritten = Record[Idx++]; 629 if (HasTemplateArgumentsAsWritten) { 630 unsigned NumTemplateArgLocs = Record[Idx++]; 631 TemplArgLocs.reserve(NumTemplateArgLocs); 632 for (unsigned i=0; i != NumTemplateArgLocs; ++i) 633 TemplArgLocs.push_back( 634 Reader.ReadTemplateArgumentLoc(F, Record, Idx)); 635 636 LAngleLoc = ReadSourceLocation(Record, Idx); 637 RAngleLoc = ReadSourceLocation(Record, Idx); 638 } 639 640 SourceLocation POI = ReadSourceLocation(Record, Idx); 641 642 ASTContext &C = Reader.getContext(); 643 TemplateArgumentList *TemplArgList 644 = TemplateArgumentList::CreateCopy(C, TemplArgs.data(), TemplArgs.size()); 645 TemplateArgumentListInfo TemplArgsInfo(LAngleLoc, RAngleLoc); 646 for (unsigned i=0, e = TemplArgLocs.size(); i != e; ++i) 647 TemplArgsInfo.addArgument(TemplArgLocs[i]); 648 FunctionTemplateSpecializationInfo *FTInfo 649 = FunctionTemplateSpecializationInfo::Create(C, FD, Template, TSK, 650 TemplArgList, 651 HasTemplateArgumentsAsWritten ? &TemplArgsInfo 652 : nullptr, 653 POI); 654 FD->TemplateOrSpecialization = FTInfo; 655 656 if (FD->isCanonicalDecl()) { // if canonical add to template's set. 657 // The template that contains the specializations set. It's not safe to 658 // use getCanonicalDecl on Template since it may still be initializing. 659 FunctionTemplateDecl *CanonTemplate 660 = ReadDeclAs<FunctionTemplateDecl>(Record, Idx); 661 // Get the InsertPos by FindNodeOrInsertPos() instead of calling 662 // InsertNode(FTInfo) directly to avoid the getASTContext() call in 663 // FunctionTemplateSpecializationInfo's Profile(). 664 // We avoid getASTContext because a decl in the parent hierarchy may 665 // be initializing. 666 llvm::FoldingSetNodeID ID; 667 FunctionTemplateSpecializationInfo::Profile(ID, TemplArgs.data(), 668 TemplArgs.size(), C); 669 void *InsertPos = nullptr; 670 FunctionTemplateDecl::Common *CommonPtr = CanonTemplate->getCommonPtr(); 671 CommonPtr->Specializations.FindNodeOrInsertPos(ID, InsertPos); 672 if (InsertPos) 673 CommonPtr->Specializations.InsertNode(FTInfo, InsertPos); 674 else { 675 assert(Reader.getContext().getLangOpts().Modules && 676 "already deserialized this template specialization"); 677 // FIXME: This specialization is a redeclaration of one from another 678 // module. Merge it. 679 } 680 } 681 break; 682 } 683 case FunctionDecl::TK_DependentFunctionTemplateSpecialization: { 684 // Templates. 685 UnresolvedSet<8> TemplDecls; 686 unsigned NumTemplates = Record[Idx++]; 687 while (NumTemplates--) 688 TemplDecls.addDecl(ReadDeclAs<NamedDecl>(Record, Idx)); 689 690 // Templates args. 691 TemplateArgumentListInfo TemplArgs; 692 unsigned NumArgs = Record[Idx++]; 693 while (NumArgs--) 694 TemplArgs.addArgument(Reader.ReadTemplateArgumentLoc(F, Record, Idx)); 695 TemplArgs.setLAngleLoc(ReadSourceLocation(Record, Idx)); 696 TemplArgs.setRAngleLoc(ReadSourceLocation(Record, Idx)); 697 698 FD->setDependentTemplateSpecialization(Reader.getContext(), 699 TemplDecls, TemplArgs); 700 701 // FIXME: Merging. 702 break; 703 } 704 } 705 706 // Read in the parameters. 707 unsigned NumParams = Record[Idx++]; 708 SmallVector<ParmVarDecl *, 16> Params; 709 Params.reserve(NumParams); 710 for (unsigned I = 0; I != NumParams; ++I) 711 Params.push_back(ReadDeclAs<ParmVarDecl>(Record, Idx)); 712 FD->setParams(Reader.getContext(), Params); 713 } 714 715 void ASTDeclReader::VisitObjCMethodDecl(ObjCMethodDecl *MD) { 716 VisitNamedDecl(MD); 717 if (Record[Idx++]) { 718 // Load the body on-demand. Most clients won't care, because method 719 // definitions rarely show up in headers. 720 Reader.PendingBodies[MD] = GetCurrentCursorOffset(); 721 HasPendingBody = true; 722 MD->setSelfDecl(ReadDeclAs<ImplicitParamDecl>(Record, Idx)); 723 MD->setCmdDecl(ReadDeclAs<ImplicitParamDecl>(Record, Idx)); 724 } 725 MD->setInstanceMethod(Record[Idx++]); 726 MD->setVariadic(Record[Idx++]); 727 MD->setPropertyAccessor(Record[Idx++]); 728 MD->setDefined(Record[Idx++]); 729 MD->IsOverriding = Record[Idx++]; 730 MD->HasSkippedBody = Record[Idx++]; 731 732 MD->IsRedeclaration = Record[Idx++]; 733 MD->HasRedeclaration = Record[Idx++]; 734 if (MD->HasRedeclaration) 735 Reader.getContext().setObjCMethodRedeclaration(MD, 736 ReadDeclAs<ObjCMethodDecl>(Record, Idx)); 737 738 MD->setDeclImplementation((ObjCMethodDecl::ImplementationControl)Record[Idx++]); 739 MD->setObjCDeclQualifier((Decl::ObjCDeclQualifier)Record[Idx++]); 740 MD->SetRelatedResultType(Record[Idx++]); 741 MD->setReturnType(Reader.readType(F, Record, Idx)); 742 MD->setReturnTypeSourceInfo(GetTypeSourceInfo(Record, Idx)); 743 MD->DeclEndLoc = ReadSourceLocation(Record, Idx); 744 unsigned NumParams = Record[Idx++]; 745 SmallVector<ParmVarDecl *, 16> Params; 746 Params.reserve(NumParams); 747 for (unsigned I = 0; I != NumParams; ++I) 748 Params.push_back(ReadDeclAs<ParmVarDecl>(Record, Idx)); 749 750 MD->SelLocsKind = Record[Idx++]; 751 unsigned NumStoredSelLocs = Record[Idx++]; 752 SmallVector<SourceLocation, 16> SelLocs; 753 SelLocs.reserve(NumStoredSelLocs); 754 for (unsigned i = 0; i != NumStoredSelLocs; ++i) 755 SelLocs.push_back(ReadSourceLocation(Record, Idx)); 756 757 MD->setParamsAndSelLocs(Reader.getContext(), Params, SelLocs); 758 } 759 760 void ASTDeclReader::VisitObjCContainerDecl(ObjCContainerDecl *CD) { 761 VisitNamedDecl(CD); 762 CD->setAtStartLoc(ReadSourceLocation(Record, Idx)); 763 CD->setAtEndRange(ReadSourceRange(Record, Idx)); 764 } 765 766 void ASTDeclReader::VisitObjCInterfaceDecl(ObjCInterfaceDecl *ID) { 767 RedeclarableResult Redecl = VisitRedeclarable(ID); 768 VisitObjCContainerDecl(ID); 769 TypeIDForTypeDecl = Reader.getGlobalTypeID(F, Record[Idx++]); 770 mergeRedeclarable(ID, Redecl); 771 772 if (Record[Idx++]) { 773 // Read the definition. 774 ID->allocateDefinitionData(); 775 776 // Set the definition data of the canonical declaration, so other 777 // redeclarations will see it. 778 ID->getCanonicalDecl()->Data = ID->Data; 779 780 ObjCInterfaceDecl::DefinitionData &Data = ID->data(); 781 782 // Read the superclass. 783 Data.SuperClass = ReadDeclAs<ObjCInterfaceDecl>(Record, Idx); 784 Data.SuperClassLoc = ReadSourceLocation(Record, Idx); 785 786 Data.EndLoc = ReadSourceLocation(Record, Idx); 787 Data.HasDesignatedInitializers = Record[Idx++]; 788 789 // Read the directly referenced protocols and their SourceLocations. 790 unsigned NumProtocols = Record[Idx++]; 791 SmallVector<ObjCProtocolDecl *, 16> Protocols; 792 Protocols.reserve(NumProtocols); 793 for (unsigned I = 0; I != NumProtocols; ++I) 794 Protocols.push_back(ReadDeclAs<ObjCProtocolDecl>(Record, Idx)); 795 SmallVector<SourceLocation, 16> ProtoLocs; 796 ProtoLocs.reserve(NumProtocols); 797 for (unsigned I = 0; I != NumProtocols; ++I) 798 ProtoLocs.push_back(ReadSourceLocation(Record, Idx)); 799 ID->setProtocolList(Protocols.data(), NumProtocols, ProtoLocs.data(), 800 Reader.getContext()); 801 802 // Read the transitive closure of protocols referenced by this class. 803 NumProtocols = Record[Idx++]; 804 Protocols.clear(); 805 Protocols.reserve(NumProtocols); 806 for (unsigned I = 0; I != NumProtocols; ++I) 807 Protocols.push_back(ReadDeclAs<ObjCProtocolDecl>(Record, Idx)); 808 ID->data().AllReferencedProtocols.set(Protocols.data(), NumProtocols, 809 Reader.getContext()); 810 811 // We will rebuild this list lazily. 812 ID->setIvarList(nullptr); 813 814 // Note that we have deserialized a definition. 815 Reader.PendingDefinitions.insert(ID); 816 817 // Note that we've loaded this Objective-C class. 818 Reader.ObjCClassesLoaded.push_back(ID); 819 } else { 820 ID->Data = ID->getCanonicalDecl()->Data; 821 } 822 } 823 824 void ASTDeclReader::VisitObjCIvarDecl(ObjCIvarDecl *IVD) { 825 VisitFieldDecl(IVD); 826 IVD->setAccessControl((ObjCIvarDecl::AccessControl)Record[Idx++]); 827 // This field will be built lazily. 828 IVD->setNextIvar(nullptr); 829 bool synth = Record[Idx++]; 830 IVD->setSynthesize(synth); 831 } 832 833 void ASTDeclReader::VisitObjCProtocolDecl(ObjCProtocolDecl *PD) { 834 RedeclarableResult Redecl = VisitRedeclarable(PD); 835 VisitObjCContainerDecl(PD); 836 mergeRedeclarable(PD, Redecl); 837 838 if (Record[Idx++]) { 839 // Read the definition. 840 PD->allocateDefinitionData(); 841 842 // Set the definition data of the canonical declaration, so other 843 // redeclarations will see it. 844 PD->getCanonicalDecl()->Data = PD->Data; 845 846 unsigned NumProtoRefs = Record[Idx++]; 847 SmallVector<ObjCProtocolDecl *, 16> ProtoRefs; 848 ProtoRefs.reserve(NumProtoRefs); 849 for (unsigned I = 0; I != NumProtoRefs; ++I) 850 ProtoRefs.push_back(ReadDeclAs<ObjCProtocolDecl>(Record, Idx)); 851 SmallVector<SourceLocation, 16> ProtoLocs; 852 ProtoLocs.reserve(NumProtoRefs); 853 for (unsigned I = 0; I != NumProtoRefs; ++I) 854 ProtoLocs.push_back(ReadSourceLocation(Record, Idx)); 855 PD->setProtocolList(ProtoRefs.data(), NumProtoRefs, ProtoLocs.data(), 856 Reader.getContext()); 857 858 // Note that we have deserialized a definition. 859 Reader.PendingDefinitions.insert(PD); 860 } else { 861 PD->Data = PD->getCanonicalDecl()->Data; 862 } 863 } 864 865 void ASTDeclReader::VisitObjCAtDefsFieldDecl(ObjCAtDefsFieldDecl *FD) { 866 VisitFieldDecl(FD); 867 } 868 869 void ASTDeclReader::VisitObjCCategoryDecl(ObjCCategoryDecl *CD) { 870 VisitObjCContainerDecl(CD); 871 CD->setCategoryNameLoc(ReadSourceLocation(Record, Idx)); 872 CD->setIvarLBraceLoc(ReadSourceLocation(Record, Idx)); 873 CD->setIvarRBraceLoc(ReadSourceLocation(Record, Idx)); 874 875 // Note that this category has been deserialized. We do this before 876 // deserializing the interface declaration, so that it will consider this 877 /// category. 878 Reader.CategoriesDeserialized.insert(CD); 879 880 CD->ClassInterface = ReadDeclAs<ObjCInterfaceDecl>(Record, Idx); 881 unsigned NumProtoRefs = Record[Idx++]; 882 SmallVector<ObjCProtocolDecl *, 16> ProtoRefs; 883 ProtoRefs.reserve(NumProtoRefs); 884 for (unsigned I = 0; I != NumProtoRefs; ++I) 885 ProtoRefs.push_back(ReadDeclAs<ObjCProtocolDecl>(Record, Idx)); 886 SmallVector<SourceLocation, 16> ProtoLocs; 887 ProtoLocs.reserve(NumProtoRefs); 888 for (unsigned I = 0; I != NumProtoRefs; ++I) 889 ProtoLocs.push_back(ReadSourceLocation(Record, Idx)); 890 CD->setProtocolList(ProtoRefs.data(), NumProtoRefs, ProtoLocs.data(), 891 Reader.getContext()); 892 } 893 894 void ASTDeclReader::VisitObjCCompatibleAliasDecl(ObjCCompatibleAliasDecl *CAD) { 895 VisitNamedDecl(CAD); 896 CAD->setClassInterface(ReadDeclAs<ObjCInterfaceDecl>(Record, Idx)); 897 } 898 899 void ASTDeclReader::VisitObjCPropertyDecl(ObjCPropertyDecl *D) { 900 VisitNamedDecl(D); 901 D->setAtLoc(ReadSourceLocation(Record, Idx)); 902 D->setLParenLoc(ReadSourceLocation(Record, Idx)); 903 D->setType(GetTypeSourceInfo(Record, Idx)); 904 // FIXME: stable encoding 905 D->setPropertyAttributes( 906 (ObjCPropertyDecl::PropertyAttributeKind)Record[Idx++]); 907 D->setPropertyAttributesAsWritten( 908 (ObjCPropertyDecl::PropertyAttributeKind)Record[Idx++]); 909 // FIXME: stable encoding 910 D->setPropertyImplementation( 911 (ObjCPropertyDecl::PropertyControl)Record[Idx++]); 912 D->setGetterName(Reader.ReadDeclarationName(F,Record, Idx).getObjCSelector()); 913 D->setSetterName(Reader.ReadDeclarationName(F,Record, Idx).getObjCSelector()); 914 D->setGetterMethodDecl(ReadDeclAs<ObjCMethodDecl>(Record, Idx)); 915 D->setSetterMethodDecl(ReadDeclAs<ObjCMethodDecl>(Record, Idx)); 916 D->setPropertyIvarDecl(ReadDeclAs<ObjCIvarDecl>(Record, Idx)); 917 } 918 919 void ASTDeclReader::VisitObjCImplDecl(ObjCImplDecl *D) { 920 VisitObjCContainerDecl(D); 921 D->setClassInterface(ReadDeclAs<ObjCInterfaceDecl>(Record, Idx)); 922 } 923 924 void ASTDeclReader::VisitObjCCategoryImplDecl(ObjCCategoryImplDecl *D) { 925 VisitObjCImplDecl(D); 926 D->setIdentifier(Reader.GetIdentifierInfo(F, Record, Idx)); 927 D->CategoryNameLoc = ReadSourceLocation(Record, Idx); 928 } 929 930 void ASTDeclReader::VisitObjCImplementationDecl(ObjCImplementationDecl *D) { 931 VisitObjCImplDecl(D); 932 D->setSuperClass(ReadDeclAs<ObjCInterfaceDecl>(Record, Idx)); 933 D->SuperLoc = ReadSourceLocation(Record, Idx); 934 D->setIvarLBraceLoc(ReadSourceLocation(Record, Idx)); 935 D->setIvarRBraceLoc(ReadSourceLocation(Record, Idx)); 936 D->setHasNonZeroConstructors(Record[Idx++]); 937 D->setHasDestructors(Record[Idx++]); 938 std::tie(D->IvarInitializers, D->NumIvarInitializers) = 939 Reader.ReadCXXCtorInitializers(F, Record, Idx); 940 } 941 942 943 void ASTDeclReader::VisitObjCPropertyImplDecl(ObjCPropertyImplDecl *D) { 944 VisitDecl(D); 945 D->setAtLoc(ReadSourceLocation(Record, Idx)); 946 D->setPropertyDecl(ReadDeclAs<ObjCPropertyDecl>(Record, Idx)); 947 D->PropertyIvarDecl = ReadDeclAs<ObjCIvarDecl>(Record, Idx); 948 D->IvarLoc = ReadSourceLocation(Record, Idx); 949 D->setGetterCXXConstructor(Reader.ReadExpr(F)); 950 D->setSetterCXXAssignment(Reader.ReadExpr(F)); 951 } 952 953 void ASTDeclReader::VisitFieldDecl(FieldDecl *FD) { 954 VisitDeclaratorDecl(FD); 955 FD->Mutable = Record[Idx++]; 956 if (int BitWidthOrInitializer = Record[Idx++]) { 957 FD->InitializerOrBitWidth.setInt(BitWidthOrInitializer - 1); 958 FD->InitializerOrBitWidth.setPointer(Reader.ReadExpr(F)); 959 } 960 if (!FD->getDeclName()) { 961 if (FieldDecl *Tmpl = ReadDeclAs<FieldDecl>(Record, Idx)) 962 Reader.getContext().setInstantiatedFromUnnamedFieldDecl(FD, Tmpl); 963 } 964 mergeMergeable(FD); 965 } 966 967 void ASTDeclReader::VisitMSPropertyDecl(MSPropertyDecl *PD) { 968 VisitDeclaratorDecl(PD); 969 PD->GetterId = Reader.GetIdentifierInfo(F, Record, Idx); 970 PD->SetterId = Reader.GetIdentifierInfo(F, Record, Idx); 971 } 972 973 void ASTDeclReader::VisitIndirectFieldDecl(IndirectFieldDecl *FD) { 974 VisitValueDecl(FD); 975 976 FD->ChainingSize = Record[Idx++]; 977 assert(FD->ChainingSize >= 2 && "Anonymous chaining must be >= 2"); 978 FD->Chaining = new (Reader.getContext())NamedDecl*[FD->ChainingSize]; 979 980 for (unsigned I = 0; I != FD->ChainingSize; ++I) 981 FD->Chaining[I] = ReadDeclAs<NamedDecl>(Record, Idx); 982 } 983 984 ASTDeclReader::RedeclarableResult ASTDeclReader::VisitVarDeclImpl(VarDecl *VD) { 985 RedeclarableResult Redecl = VisitRedeclarable(VD); 986 VisitDeclaratorDecl(VD); 987 988 VD->VarDeclBits.SClass = (StorageClass)Record[Idx++]; 989 VD->VarDeclBits.TSCSpec = Record[Idx++]; 990 VD->VarDeclBits.InitStyle = Record[Idx++]; 991 VD->VarDeclBits.ExceptionVar = Record[Idx++]; 992 VD->VarDeclBits.NRVOVariable = Record[Idx++]; 993 VD->VarDeclBits.CXXForRangeDecl = Record[Idx++]; 994 VD->VarDeclBits.ARCPseudoStrong = Record[Idx++]; 995 VD->VarDeclBits.IsConstexpr = Record[Idx++]; 996 VD->VarDeclBits.IsInitCapture = Record[Idx++]; 997 VD->VarDeclBits.PreviousDeclInSameBlockScope = Record[Idx++]; 998 Linkage VarLinkage = Linkage(Record[Idx++]); 999 VD->setCachedLinkage(VarLinkage); 1000 1001 // Reconstruct the one piece of the IdentifierNamespace that we need. 1002 if (VD->getStorageClass() == SC_Extern && VarLinkage != NoLinkage && 1003 VD->getLexicalDeclContext()->isFunctionOrMethod()) 1004 VD->setLocalExternDecl(); 1005 1006 if (uint64_t Val = Record[Idx++]) { 1007 VD->setInit(Reader.ReadExpr(F)); 1008 if (Val > 1) { 1009 EvaluatedStmt *Eval = VD->ensureEvaluatedStmt(); 1010 Eval->CheckedICE = true; 1011 Eval->IsICE = Val == 3; 1012 } 1013 } 1014 1015 enum VarKind { 1016 VarNotTemplate = 0, VarTemplate, StaticDataMemberSpecialization 1017 }; 1018 switch ((VarKind)Record[Idx++]) { 1019 case VarNotTemplate: 1020 // Only true variables (not parameters or implicit parameters) can be merged 1021 if (VD->getKind() != Decl::ParmVar && VD->getKind() != Decl::ImplicitParam) 1022 mergeRedeclarable(VD, Redecl); 1023 break; 1024 case VarTemplate: 1025 // Merged when we merge the template. 1026 VD->setDescribedVarTemplate(ReadDeclAs<VarTemplateDecl>(Record, Idx)); 1027 break; 1028 case StaticDataMemberSpecialization: { // HasMemberSpecializationInfo. 1029 VarDecl *Tmpl = ReadDeclAs<VarDecl>(Record, Idx); 1030 TemplateSpecializationKind TSK = (TemplateSpecializationKind)Record[Idx++]; 1031 SourceLocation POI = ReadSourceLocation(Record, Idx); 1032 Reader.getContext().setInstantiatedFromStaticDataMember(VD, Tmpl, TSK,POI); 1033 mergeRedeclarable(VD, Redecl); 1034 break; 1035 } 1036 } 1037 1038 return Redecl; 1039 } 1040 1041 void ASTDeclReader::VisitImplicitParamDecl(ImplicitParamDecl *PD) { 1042 VisitVarDecl(PD); 1043 } 1044 1045 void ASTDeclReader::VisitParmVarDecl(ParmVarDecl *PD) { 1046 VisitVarDecl(PD); 1047 unsigned isObjCMethodParam = Record[Idx++]; 1048 unsigned scopeDepth = Record[Idx++]; 1049 unsigned scopeIndex = Record[Idx++]; 1050 unsigned declQualifier = Record[Idx++]; 1051 if (isObjCMethodParam) { 1052 assert(scopeDepth == 0); 1053 PD->setObjCMethodScopeInfo(scopeIndex); 1054 PD->ParmVarDeclBits.ScopeDepthOrObjCQuals = declQualifier; 1055 } else { 1056 PD->setScopeInfo(scopeDepth, scopeIndex); 1057 } 1058 PD->ParmVarDeclBits.IsKNRPromoted = Record[Idx++]; 1059 PD->ParmVarDeclBits.HasInheritedDefaultArg = Record[Idx++]; 1060 if (Record[Idx++]) // hasUninstantiatedDefaultArg. 1061 PD->setUninstantiatedDefaultArg(Reader.ReadExpr(F)); 1062 1063 // FIXME: If this is a redeclaration of a function from another module, handle 1064 // inheritance of default arguments. 1065 } 1066 1067 void ASTDeclReader::VisitFileScopeAsmDecl(FileScopeAsmDecl *AD) { 1068 VisitDecl(AD); 1069 AD->setAsmString(cast<StringLiteral>(Reader.ReadExpr(F))); 1070 AD->setRParenLoc(ReadSourceLocation(Record, Idx)); 1071 } 1072 1073 void ASTDeclReader::VisitBlockDecl(BlockDecl *BD) { 1074 VisitDecl(BD); 1075 BD->setBody(cast_or_null<CompoundStmt>(Reader.ReadStmt(F))); 1076 BD->setSignatureAsWritten(GetTypeSourceInfo(Record, Idx)); 1077 unsigned NumParams = Record[Idx++]; 1078 SmallVector<ParmVarDecl *, 16> Params; 1079 Params.reserve(NumParams); 1080 for (unsigned I = 0; I != NumParams; ++I) 1081 Params.push_back(ReadDeclAs<ParmVarDecl>(Record, Idx)); 1082 BD->setParams(Params); 1083 1084 BD->setIsVariadic(Record[Idx++]); 1085 BD->setBlockMissingReturnType(Record[Idx++]); 1086 BD->setIsConversionFromLambda(Record[Idx++]); 1087 1088 bool capturesCXXThis = Record[Idx++]; 1089 unsigned numCaptures = Record[Idx++]; 1090 SmallVector<BlockDecl::Capture, 16> captures; 1091 captures.reserve(numCaptures); 1092 for (unsigned i = 0; i != numCaptures; ++i) { 1093 VarDecl *decl = ReadDeclAs<VarDecl>(Record, Idx); 1094 unsigned flags = Record[Idx++]; 1095 bool byRef = (flags & 1); 1096 bool nested = (flags & 2); 1097 Expr *copyExpr = ((flags & 4) ? Reader.ReadExpr(F) : nullptr); 1098 1099 captures.push_back(BlockDecl::Capture(decl, byRef, nested, copyExpr)); 1100 } 1101 BD->setCaptures(Reader.getContext(), captures.begin(), 1102 captures.end(), capturesCXXThis); 1103 } 1104 1105 void ASTDeclReader::VisitCapturedDecl(CapturedDecl *CD) { 1106 VisitDecl(CD); 1107 unsigned ContextParamPos = Record[Idx++]; 1108 CD->setNothrow(Record[Idx++] != 0); 1109 // Body is set by VisitCapturedStmt. 1110 for (unsigned I = 0; I < CD->NumParams; ++I) { 1111 if (I != ContextParamPos) 1112 CD->setParam(I, ReadDeclAs<ImplicitParamDecl>(Record, Idx)); 1113 else 1114 CD->setContextParam(I, ReadDeclAs<ImplicitParamDecl>(Record, Idx)); 1115 } 1116 } 1117 1118 void ASTDeclReader::VisitLinkageSpecDecl(LinkageSpecDecl *D) { 1119 VisitDecl(D); 1120 D->setLanguage((LinkageSpecDecl::LanguageIDs)Record[Idx++]); 1121 D->setExternLoc(ReadSourceLocation(Record, Idx)); 1122 D->setRBraceLoc(ReadSourceLocation(Record, Idx)); 1123 } 1124 1125 void ASTDeclReader::VisitLabelDecl(LabelDecl *D) { 1126 VisitNamedDecl(D); 1127 D->setLocStart(ReadSourceLocation(Record, Idx)); 1128 } 1129 1130 1131 void ASTDeclReader::VisitNamespaceDecl(NamespaceDecl *D) { 1132 RedeclarableResult Redecl = VisitRedeclarable(D); 1133 VisitNamedDecl(D); 1134 D->setInline(Record[Idx++]); 1135 D->LocStart = ReadSourceLocation(Record, Idx); 1136 D->RBraceLoc = ReadSourceLocation(Record, Idx); 1137 // FIXME: At the point of this call, D->getCanonicalDecl() returns 0. 1138 mergeRedeclarable(D, Redecl); 1139 1140 if (Redecl.getFirstID() == ThisDeclID) { 1141 // Each module has its own anonymous namespace, which is disjoint from 1142 // any other module's anonymous namespaces, so don't attach the anonymous 1143 // namespace at all. 1144 NamespaceDecl *Anon = ReadDeclAs<NamespaceDecl>(Record, Idx); 1145 if (F.Kind != MK_Module) 1146 D->setAnonymousNamespace(Anon); 1147 } else { 1148 // Link this namespace back to the first declaration, which has already 1149 // been deserialized. 1150 D->AnonOrFirstNamespaceAndInline.setPointer(D->getFirstDecl()); 1151 } 1152 } 1153 1154 void ASTDeclReader::VisitNamespaceAliasDecl(NamespaceAliasDecl *D) { 1155 VisitNamedDecl(D); 1156 D->NamespaceLoc = ReadSourceLocation(Record, Idx); 1157 D->IdentLoc = ReadSourceLocation(Record, Idx); 1158 D->QualifierLoc = Reader.ReadNestedNameSpecifierLoc(F, Record, Idx); 1159 D->Namespace = ReadDeclAs<NamedDecl>(Record, Idx); 1160 } 1161 1162 void ASTDeclReader::VisitUsingDecl(UsingDecl *D) { 1163 VisitNamedDecl(D); 1164 D->setUsingLoc(ReadSourceLocation(Record, Idx)); 1165 D->QualifierLoc = Reader.ReadNestedNameSpecifierLoc(F, Record, Idx); 1166 ReadDeclarationNameLoc(D->DNLoc, D->getDeclName(), Record, Idx); 1167 D->FirstUsingShadow.setPointer(ReadDeclAs<UsingShadowDecl>(Record, Idx)); 1168 D->setTypename(Record[Idx++]); 1169 if (NamedDecl *Pattern = ReadDeclAs<NamedDecl>(Record, Idx)) 1170 Reader.getContext().setInstantiatedFromUsingDecl(D, Pattern); 1171 } 1172 1173 void ASTDeclReader::VisitUsingShadowDecl(UsingShadowDecl *D) { 1174 RedeclarableResult Redecl = VisitRedeclarable(D); 1175 VisitNamedDecl(D); 1176 D->setTargetDecl(ReadDeclAs<NamedDecl>(Record, Idx)); 1177 D->UsingOrNextShadow = ReadDeclAs<NamedDecl>(Record, Idx); 1178 UsingShadowDecl *Pattern = ReadDeclAs<UsingShadowDecl>(Record, Idx); 1179 if (Pattern) 1180 Reader.getContext().setInstantiatedFromUsingShadowDecl(D, Pattern); 1181 mergeRedeclarable(D, Redecl); 1182 } 1183 1184 void ASTDeclReader::VisitUsingDirectiveDecl(UsingDirectiveDecl *D) { 1185 VisitNamedDecl(D); 1186 D->UsingLoc = ReadSourceLocation(Record, Idx); 1187 D->NamespaceLoc = ReadSourceLocation(Record, Idx); 1188 D->QualifierLoc = Reader.ReadNestedNameSpecifierLoc(F, Record, Idx); 1189 D->NominatedNamespace = ReadDeclAs<NamedDecl>(Record, Idx); 1190 D->CommonAncestor = ReadDeclAs<DeclContext>(Record, Idx); 1191 } 1192 1193 void ASTDeclReader::VisitUnresolvedUsingValueDecl(UnresolvedUsingValueDecl *D) { 1194 VisitValueDecl(D); 1195 D->setUsingLoc(ReadSourceLocation(Record, Idx)); 1196 D->QualifierLoc = Reader.ReadNestedNameSpecifierLoc(F, Record, Idx); 1197 ReadDeclarationNameLoc(D->DNLoc, D->getDeclName(), Record, Idx); 1198 } 1199 1200 void ASTDeclReader::VisitUnresolvedUsingTypenameDecl( 1201 UnresolvedUsingTypenameDecl *D) { 1202 VisitTypeDecl(D); 1203 D->TypenameLocation = ReadSourceLocation(Record, Idx); 1204 D->QualifierLoc = Reader.ReadNestedNameSpecifierLoc(F, Record, Idx); 1205 } 1206 1207 void ASTDeclReader::ReadCXXDefinitionData( 1208 struct CXXRecordDecl::DefinitionData &Data, 1209 const RecordData &Record, unsigned &Idx) { 1210 // Note: the caller has deserialized the IsLambda bit already. 1211 Data.UserDeclaredConstructor = Record[Idx++]; 1212 Data.UserDeclaredSpecialMembers = Record[Idx++]; 1213 Data.Aggregate = Record[Idx++]; 1214 Data.PlainOldData = Record[Idx++]; 1215 Data.Empty = Record[Idx++]; 1216 Data.Polymorphic = Record[Idx++]; 1217 Data.Abstract = Record[Idx++]; 1218 Data.IsStandardLayout = Record[Idx++]; 1219 Data.HasNoNonEmptyBases = Record[Idx++]; 1220 Data.HasPrivateFields = Record[Idx++]; 1221 Data.HasProtectedFields = Record[Idx++]; 1222 Data.HasPublicFields = Record[Idx++]; 1223 Data.HasMutableFields = Record[Idx++]; 1224 Data.HasVariantMembers = Record[Idx++]; 1225 Data.HasOnlyCMembers = Record[Idx++]; 1226 Data.HasInClassInitializer = Record[Idx++]; 1227 Data.HasUninitializedReferenceMember = Record[Idx++]; 1228 Data.NeedOverloadResolutionForMoveConstructor = Record[Idx++]; 1229 Data.NeedOverloadResolutionForMoveAssignment = Record[Idx++]; 1230 Data.NeedOverloadResolutionForDestructor = Record[Idx++]; 1231 Data.DefaultedMoveConstructorIsDeleted = Record[Idx++]; 1232 Data.DefaultedMoveAssignmentIsDeleted = Record[Idx++]; 1233 Data.DefaultedDestructorIsDeleted = Record[Idx++]; 1234 Data.HasTrivialSpecialMembers = Record[Idx++]; 1235 Data.DeclaredNonTrivialSpecialMembers = Record[Idx++]; 1236 Data.HasIrrelevantDestructor = Record[Idx++]; 1237 Data.HasConstexprNonCopyMoveConstructor = Record[Idx++]; 1238 Data.DefaultedDefaultConstructorIsConstexpr = Record[Idx++]; 1239 Data.HasConstexprDefaultConstructor = Record[Idx++]; 1240 Data.HasNonLiteralTypeFieldsOrBases = Record[Idx++]; 1241 Data.ComputedVisibleConversions = Record[Idx++]; 1242 Data.UserProvidedDefaultConstructor = Record[Idx++]; 1243 Data.DeclaredSpecialMembers = Record[Idx++]; 1244 Data.ImplicitCopyConstructorHasConstParam = Record[Idx++]; 1245 Data.ImplicitCopyAssignmentHasConstParam = Record[Idx++]; 1246 Data.HasDeclaredCopyConstructorWithConstParam = Record[Idx++]; 1247 Data.HasDeclaredCopyAssignmentWithConstParam = Record[Idx++]; 1248 1249 Data.NumBases = Record[Idx++]; 1250 if (Data.NumBases) 1251 Data.Bases = Reader.readCXXBaseSpecifiers(F, Record, Idx); 1252 Data.NumVBases = Record[Idx++]; 1253 if (Data.NumVBases) 1254 Data.VBases = Reader.readCXXBaseSpecifiers(F, Record, Idx); 1255 1256 Reader.ReadUnresolvedSet(F, Data.Conversions, Record, Idx); 1257 Reader.ReadUnresolvedSet(F, Data.VisibleConversions, Record, Idx); 1258 assert(Data.Definition && "Data.Definition should be already set!"); 1259 Data.FirstFriend = ReadDeclID(Record, Idx); 1260 1261 if (Data.IsLambda) { 1262 typedef LambdaCapture Capture; 1263 CXXRecordDecl::LambdaDefinitionData &Lambda 1264 = static_cast<CXXRecordDecl::LambdaDefinitionData &>(Data); 1265 Lambda.Dependent = Record[Idx++]; 1266 Lambda.IsGenericLambda = Record[Idx++]; 1267 Lambda.CaptureDefault = Record[Idx++]; 1268 Lambda.NumCaptures = Record[Idx++]; 1269 Lambda.NumExplicitCaptures = Record[Idx++]; 1270 Lambda.ManglingNumber = Record[Idx++]; 1271 Lambda.ContextDecl = ReadDecl(Record, Idx); 1272 Lambda.Captures 1273 = (Capture*)Reader.Context.Allocate(sizeof(Capture)*Lambda.NumCaptures); 1274 Capture *ToCapture = Lambda.Captures; 1275 Lambda.MethodTyInfo = GetTypeSourceInfo(Record, Idx); 1276 for (unsigned I = 0, N = Lambda.NumCaptures; I != N; ++I) { 1277 SourceLocation Loc = ReadSourceLocation(Record, Idx); 1278 bool IsImplicit = Record[Idx++]; 1279 LambdaCaptureKind Kind = static_cast<LambdaCaptureKind>(Record[Idx++]); 1280 switch (Kind) { 1281 case LCK_This: 1282 *ToCapture++ = Capture(Loc, IsImplicit, Kind, nullptr,SourceLocation()); 1283 break; 1284 case LCK_ByCopy: 1285 case LCK_ByRef: 1286 VarDecl *Var = ReadDeclAs<VarDecl>(Record, Idx); 1287 SourceLocation EllipsisLoc = ReadSourceLocation(Record, Idx); 1288 *ToCapture++ = Capture(Loc, IsImplicit, Kind, Var, EllipsisLoc); 1289 break; 1290 } 1291 } 1292 } 1293 } 1294 1295 void ASTDeclReader::MergeDefinitionData( 1296 CXXRecordDecl *D, struct CXXRecordDecl::DefinitionData &MergeDD) { 1297 assert(D->DefinitionData.getNotUpdated() && 1298 "merging class definition into non-definition"); 1299 auto &DD = *D->DefinitionData.getNotUpdated(); 1300 1301 // If the new definition has new special members, let the name lookup 1302 // code know that it needs to look in the new definition too. 1303 if ((MergeDD.DeclaredSpecialMembers & ~DD.DeclaredSpecialMembers) && 1304 DD.Definition != MergeDD.Definition) { 1305 Reader.MergedLookups[DD.Definition].push_back(MergeDD.Definition); 1306 DD.Definition->setHasExternalVisibleStorage(); 1307 } 1308 1309 // FIXME: Move this out into a .def file? 1310 // FIXME: Issue a diagnostic on a mismatched MATCH_FIELD, rather than 1311 // asserting; this can happen in the case of an ODR violation. 1312 bool DetectedOdrViolation = false; 1313 #define OR_FIELD(Field) DD.Field |= MergeDD.Field; 1314 #define MATCH_FIELD(Field) \ 1315 DetectedOdrViolation |= DD.Field != MergeDD.Field; \ 1316 OR_FIELD(Field) 1317 MATCH_FIELD(UserDeclaredConstructor) 1318 MATCH_FIELD(UserDeclaredSpecialMembers) 1319 MATCH_FIELD(Aggregate) 1320 MATCH_FIELD(PlainOldData) 1321 MATCH_FIELD(Empty) 1322 MATCH_FIELD(Polymorphic) 1323 MATCH_FIELD(Abstract) 1324 MATCH_FIELD(IsStandardLayout) 1325 MATCH_FIELD(HasNoNonEmptyBases) 1326 MATCH_FIELD(HasPrivateFields) 1327 MATCH_FIELD(HasProtectedFields) 1328 MATCH_FIELD(HasPublicFields) 1329 MATCH_FIELD(HasMutableFields) 1330 MATCH_FIELD(HasVariantMembers) 1331 MATCH_FIELD(HasOnlyCMembers) 1332 MATCH_FIELD(HasInClassInitializer) 1333 MATCH_FIELD(HasUninitializedReferenceMember) 1334 MATCH_FIELD(NeedOverloadResolutionForMoveConstructor) 1335 MATCH_FIELD(NeedOverloadResolutionForMoveAssignment) 1336 MATCH_FIELD(NeedOverloadResolutionForDestructor) 1337 MATCH_FIELD(DefaultedMoveConstructorIsDeleted) 1338 MATCH_FIELD(DefaultedMoveAssignmentIsDeleted) 1339 MATCH_FIELD(DefaultedDestructorIsDeleted) 1340 OR_FIELD(HasTrivialSpecialMembers) 1341 OR_FIELD(DeclaredNonTrivialSpecialMembers) 1342 MATCH_FIELD(HasIrrelevantDestructor) 1343 OR_FIELD(HasConstexprNonCopyMoveConstructor) 1344 MATCH_FIELD(DefaultedDefaultConstructorIsConstexpr) 1345 OR_FIELD(HasConstexprDefaultConstructor) 1346 MATCH_FIELD(HasNonLiteralTypeFieldsOrBases) 1347 // ComputedVisibleConversions is handled below. 1348 MATCH_FIELD(UserProvidedDefaultConstructor) 1349 OR_FIELD(DeclaredSpecialMembers) 1350 MATCH_FIELD(ImplicitCopyConstructorHasConstParam) 1351 MATCH_FIELD(ImplicitCopyAssignmentHasConstParam) 1352 OR_FIELD(HasDeclaredCopyConstructorWithConstParam) 1353 OR_FIELD(HasDeclaredCopyAssignmentWithConstParam) 1354 MATCH_FIELD(IsLambda) 1355 #undef OR_FIELD 1356 #undef MATCH_FIELD 1357 1358 if (DD.NumBases != MergeDD.NumBases || DD.NumVBases != MergeDD.NumVBases) 1359 DetectedOdrViolation = true; 1360 // FIXME: Issue a diagnostic if the base classes don't match when we come 1361 // to lazily load them. 1362 1363 // FIXME: Issue a diagnostic if the list of conversion functions doesn't 1364 // match when we come to lazily load them. 1365 if (MergeDD.ComputedVisibleConversions && !DD.ComputedVisibleConversions) { 1366 DD.VisibleConversions = std::move(MergeDD.VisibleConversions); 1367 DD.ComputedVisibleConversions = true; 1368 } 1369 1370 // FIXME: Issue a diagnostic if FirstFriend doesn't match when we come to 1371 // lazily load it. 1372 1373 if (DD.IsLambda) { 1374 // FIXME: ODR-checking for merging lambdas (this happens, for instance, 1375 // when they occur within the body of a function template specialization). 1376 } 1377 1378 if (DetectedOdrViolation) 1379 Reader.PendingOdrMergeFailures[DD.Definition].push_back(MergeDD.Definition); 1380 } 1381 1382 void ASTDeclReader::ReadCXXRecordDefinition(CXXRecordDecl *D) { 1383 struct CXXRecordDecl::DefinitionData *DD; 1384 ASTContext &C = Reader.getContext(); 1385 1386 // Determine whether this is a lambda closure type, so that we can 1387 // allocate the appropriate DefinitionData structure. 1388 bool IsLambda = Record[Idx++]; 1389 if (IsLambda) 1390 DD = new (C) CXXRecordDecl::LambdaDefinitionData(D, nullptr, false, false, 1391 LCD_None); 1392 else 1393 DD = new (C) struct CXXRecordDecl::DefinitionData(D); 1394 1395 ReadCXXDefinitionData(*DD, Record, Idx); 1396 1397 // If we're reading an update record, we might already have a definition for 1398 // this record. If so, just merge into it. 1399 if (D->DefinitionData.getNotUpdated()) { 1400 MergeDefinitionData(D, *DD); 1401 return; 1402 } 1403 1404 // Propagate the DefinitionData pointer to the canonical declaration, so 1405 // that all other deserialized declarations will see it. 1406 CXXRecordDecl *Canon = D->getCanonicalDecl(); 1407 if (Canon == D) { 1408 D->DefinitionData = DD; 1409 D->IsCompleteDefinition = true; 1410 } else if (auto *CanonDD = Canon->DefinitionData.getNotUpdated()) { 1411 // We have already deserialized a definition of this record. This 1412 // definition is no longer really a definition. Note that the pre-existing 1413 // definition is the *real* definition. 1414 Reader.MergedDeclContexts.insert( 1415 std::make_pair(D, CanonDD->Definition)); 1416 D->DefinitionData = Canon->DefinitionData; 1417 D->IsCompleteDefinition = false; 1418 MergeDefinitionData(D, *DD); 1419 } else { 1420 Canon->DefinitionData = DD; 1421 D->DefinitionData = Canon->DefinitionData; 1422 D->IsCompleteDefinition = true; 1423 1424 // Note that we have deserialized a definition. Any declarations 1425 // deserialized before this one will be be given the DefinitionData 1426 // pointer at the end. 1427 Reader.PendingDefinitions.insert(D); 1428 } 1429 } 1430 1431 ASTDeclReader::RedeclarableResult 1432 ASTDeclReader::VisitCXXRecordDeclImpl(CXXRecordDecl *D) { 1433 RedeclarableResult Redecl = VisitRecordDeclImpl(D); 1434 1435 ASTContext &C = Reader.getContext(); 1436 1437 enum CXXRecKind { 1438 CXXRecNotTemplate = 0, CXXRecTemplate, CXXRecMemberSpecialization 1439 }; 1440 switch ((CXXRecKind)Record[Idx++]) { 1441 case CXXRecNotTemplate: 1442 mergeRedeclarable(D, Redecl); 1443 break; 1444 case CXXRecTemplate: { 1445 // Merged when we merge the template. 1446 ClassTemplateDecl *Template = ReadDeclAs<ClassTemplateDecl>(Record, Idx); 1447 D->TemplateOrInstantiation = Template; 1448 if (!Template->getTemplatedDecl()) { 1449 // We've not actually loaded the ClassTemplateDecl yet, because we're 1450 // currently being loaded as its pattern. Rely on it to set up our 1451 // TypeForDecl (see VisitClassTemplateDecl). 1452 // 1453 // Beware: we do not yet know our canonical declaration, and may still 1454 // get merged once the surrounding class template has got off the ground. 1455 TypeIDForTypeDecl = 0; 1456 } 1457 break; 1458 } 1459 case CXXRecMemberSpecialization: { 1460 CXXRecordDecl *RD = ReadDeclAs<CXXRecordDecl>(Record, Idx); 1461 TemplateSpecializationKind TSK = (TemplateSpecializationKind)Record[Idx++]; 1462 SourceLocation POI = ReadSourceLocation(Record, Idx); 1463 MemberSpecializationInfo *MSI = new (C) MemberSpecializationInfo(RD, TSK); 1464 MSI->setPointOfInstantiation(POI); 1465 D->TemplateOrInstantiation = MSI; 1466 mergeRedeclarable(D, Redecl); 1467 break; 1468 } 1469 } 1470 1471 bool WasDefinition = Record[Idx++]; 1472 if (WasDefinition) 1473 ReadCXXRecordDefinition(D); 1474 else 1475 // Propagate DefinitionData pointer from the canonical declaration. 1476 D->DefinitionData = D->getCanonicalDecl()->DefinitionData; 1477 1478 // Lazily load the key function to avoid deserializing every method so we can 1479 // compute it. 1480 if (WasDefinition) { 1481 DeclID KeyFn = ReadDeclID(Record, Idx); 1482 if (KeyFn && D->IsCompleteDefinition) 1483 C.KeyFunctions[D] = KeyFn; 1484 } 1485 1486 return Redecl; 1487 } 1488 1489 void ASTDeclReader::VisitCXXMethodDecl(CXXMethodDecl *D) { 1490 VisitFunctionDecl(D); 1491 unsigned NumOverridenMethods = Record[Idx++]; 1492 while (NumOverridenMethods--) { 1493 // Avoid invariant checking of CXXMethodDecl::addOverriddenMethod, 1494 // MD may be initializing. 1495 if (CXXMethodDecl *MD = ReadDeclAs<CXXMethodDecl>(Record, Idx)) 1496 Reader.getContext().addOverriddenMethod(D, MD); 1497 } 1498 } 1499 1500 void ASTDeclReader::VisitCXXConstructorDecl(CXXConstructorDecl *D) { 1501 VisitCXXMethodDecl(D); 1502 1503 if (auto *CD = ReadDeclAs<CXXConstructorDecl>(Record, Idx)) 1504 D->setInheritedConstructor(CD); 1505 D->IsExplicitSpecified = Record[Idx++]; 1506 // FIXME: We should defer loading this until we need the constructor's body. 1507 std::tie(D->CtorInitializers, D->NumCtorInitializers) = 1508 Reader.ReadCXXCtorInitializers(F, Record, Idx); 1509 } 1510 1511 void ASTDeclReader::VisitCXXDestructorDecl(CXXDestructorDecl *D) { 1512 VisitCXXMethodDecl(D); 1513 1514 D->OperatorDelete = ReadDeclAs<FunctionDecl>(Record, Idx); 1515 } 1516 1517 void ASTDeclReader::VisitCXXConversionDecl(CXXConversionDecl *D) { 1518 VisitCXXMethodDecl(D); 1519 D->IsExplicitSpecified = Record[Idx++]; 1520 } 1521 1522 void ASTDeclReader::VisitImportDecl(ImportDecl *D) { 1523 VisitDecl(D); 1524 D->ImportedAndComplete.setPointer(readModule(Record, Idx)); 1525 D->ImportedAndComplete.setInt(Record[Idx++]); 1526 SourceLocation *StoredLocs = reinterpret_cast<SourceLocation *>(D + 1); 1527 for (unsigned I = 0, N = Record.back(); I != N; ++I) 1528 StoredLocs[I] = ReadSourceLocation(Record, Idx); 1529 ++Idx; // The number of stored source locations. 1530 } 1531 1532 void ASTDeclReader::VisitAccessSpecDecl(AccessSpecDecl *D) { 1533 VisitDecl(D); 1534 D->setColonLoc(ReadSourceLocation(Record, Idx)); 1535 } 1536 1537 void ASTDeclReader::VisitFriendDecl(FriendDecl *D) { 1538 VisitDecl(D); 1539 if (Record[Idx++]) // hasFriendDecl 1540 D->Friend = ReadDeclAs<NamedDecl>(Record, Idx); 1541 else 1542 D->Friend = GetTypeSourceInfo(Record, Idx); 1543 for (unsigned i = 0; i != D->NumTPLists; ++i) 1544 D->getTPLists()[i] = Reader.ReadTemplateParameterList(F, Record, Idx); 1545 D->NextFriend = ReadDeclID(Record, Idx); 1546 D->UnsupportedFriend = (Record[Idx++] != 0); 1547 D->FriendLoc = ReadSourceLocation(Record, Idx); 1548 } 1549 1550 void ASTDeclReader::VisitFriendTemplateDecl(FriendTemplateDecl *D) { 1551 VisitDecl(D); 1552 unsigned NumParams = Record[Idx++]; 1553 D->NumParams = NumParams; 1554 D->Params = new TemplateParameterList*[NumParams]; 1555 for (unsigned i = 0; i != NumParams; ++i) 1556 D->Params[i] = Reader.ReadTemplateParameterList(F, Record, Idx); 1557 if (Record[Idx++]) // HasFriendDecl 1558 D->Friend = ReadDeclAs<NamedDecl>(Record, Idx); 1559 else 1560 D->Friend = GetTypeSourceInfo(Record, Idx); 1561 D->FriendLoc = ReadSourceLocation(Record, Idx); 1562 } 1563 1564 DeclID ASTDeclReader::VisitTemplateDecl(TemplateDecl *D) { 1565 VisitNamedDecl(D); 1566 1567 DeclID PatternID = ReadDeclID(Record, Idx); 1568 NamedDecl *TemplatedDecl = cast_or_null<NamedDecl>(Reader.GetDecl(PatternID)); 1569 TemplateParameterList* TemplateParams 1570 = Reader.ReadTemplateParameterList(F, Record, Idx); 1571 D->init(TemplatedDecl, TemplateParams); 1572 1573 // FIXME: If this is a redeclaration of a template from another module, handle 1574 // inheritance of default template arguments. 1575 1576 return PatternID; 1577 } 1578 1579 ASTDeclReader::RedeclarableResult 1580 ASTDeclReader::VisitRedeclarableTemplateDecl(RedeclarableTemplateDecl *D) { 1581 RedeclarableResult Redecl = VisitRedeclarable(D); 1582 1583 // Make sure we've allocated the Common pointer first. We do this before 1584 // VisitTemplateDecl so that getCommonPtr() can be used during initialization. 1585 RedeclarableTemplateDecl *CanonD = D->getCanonicalDecl(); 1586 if (!CanonD->Common) { 1587 CanonD->Common = CanonD->newCommon(Reader.getContext()); 1588 Reader.PendingDefinitions.insert(CanonD); 1589 } 1590 D->Common = CanonD->Common; 1591 1592 // If this is the first declaration of the template, fill in the information 1593 // for the 'common' pointer. 1594 if (ThisDeclID == Redecl.getFirstID()) { 1595 if (RedeclarableTemplateDecl *RTD 1596 = ReadDeclAs<RedeclarableTemplateDecl>(Record, Idx)) { 1597 assert(RTD->getKind() == D->getKind() && 1598 "InstantiatedFromMemberTemplate kind mismatch"); 1599 D->setInstantiatedFromMemberTemplate(RTD); 1600 if (Record[Idx++]) 1601 D->setMemberSpecialization(); 1602 } 1603 } 1604 1605 DeclID PatternID = VisitTemplateDecl(D); 1606 D->IdentifierNamespace = Record[Idx++]; 1607 1608 mergeRedeclarable(D, Redecl, PatternID); 1609 1610 // If we merged the template with a prior declaration chain, merge the common 1611 // pointer. 1612 // FIXME: Actually merge here, don't just overwrite. 1613 D->Common = D->getCanonicalDecl()->Common; 1614 1615 return Redecl; 1616 } 1617 1618 void ASTDeclReader::VisitClassTemplateDecl(ClassTemplateDecl *D) { 1619 RedeclarableResult Redecl = VisitRedeclarableTemplateDecl(D); 1620 1621 if (ThisDeclID == Redecl.getFirstID()) { 1622 // This ClassTemplateDecl owns a CommonPtr; read it to keep track of all of 1623 // the specializations. 1624 SmallVector<serialization::DeclID, 2> SpecIDs; 1625 SpecIDs.push_back(0); 1626 1627 // Specializations. 1628 unsigned Size = Record[Idx++]; 1629 SpecIDs[0] += Size; 1630 for (unsigned I = 0; I != Size; ++I) 1631 SpecIDs.push_back(ReadDeclID(Record, Idx)); 1632 1633 // Partial specializations. 1634 Size = Record[Idx++]; 1635 SpecIDs[0] += Size; 1636 for (unsigned I = 0; I != Size; ++I) 1637 SpecIDs.push_back(ReadDeclID(Record, Idx)); 1638 1639 ClassTemplateDecl::Common *CommonPtr = D->getCommonPtr(); 1640 if (SpecIDs[0]) { 1641 typedef serialization::DeclID DeclID; 1642 1643 // FIXME: Append specializations! 1644 CommonPtr->LazySpecializations 1645 = new (Reader.getContext()) DeclID [SpecIDs.size()]; 1646 memcpy(CommonPtr->LazySpecializations, SpecIDs.data(), 1647 SpecIDs.size() * sizeof(DeclID)); 1648 } 1649 } 1650 1651 if (D->getTemplatedDecl()->TemplateOrInstantiation) { 1652 // We were loaded before our templated declaration was. We've not set up 1653 // its corresponding type yet (see VisitCXXRecordDeclImpl), so reconstruct 1654 // it now. 1655 Reader.Context.getInjectedClassNameType( 1656 D->getTemplatedDecl(), D->getInjectedClassNameSpecialization()); 1657 } 1658 } 1659 1660 /// TODO: Unify with ClassTemplateDecl version? 1661 /// May require unifying ClassTemplateDecl and 1662 /// VarTemplateDecl beyond TemplateDecl... 1663 void ASTDeclReader::VisitVarTemplateDecl(VarTemplateDecl *D) { 1664 RedeclarableResult Redecl = VisitRedeclarableTemplateDecl(D); 1665 1666 if (ThisDeclID == Redecl.getFirstID()) { 1667 // This VarTemplateDecl owns a CommonPtr; read it to keep track of all of 1668 // the specializations. 1669 SmallVector<serialization::DeclID, 2> SpecIDs; 1670 SpecIDs.push_back(0); 1671 1672 // Specializations. 1673 unsigned Size = Record[Idx++]; 1674 SpecIDs[0] += Size; 1675 for (unsigned I = 0; I != Size; ++I) 1676 SpecIDs.push_back(ReadDeclID(Record, Idx)); 1677 1678 // Partial specializations. 1679 Size = Record[Idx++]; 1680 SpecIDs[0] += Size; 1681 for (unsigned I = 0; I != Size; ++I) 1682 SpecIDs.push_back(ReadDeclID(Record, Idx)); 1683 1684 VarTemplateDecl::Common *CommonPtr = D->getCommonPtr(); 1685 if (SpecIDs[0]) { 1686 typedef serialization::DeclID DeclID; 1687 1688 // FIXME: Append specializations! 1689 CommonPtr->LazySpecializations = 1690 new (Reader.getContext()) DeclID[SpecIDs.size()]; 1691 memcpy(CommonPtr->LazySpecializations, SpecIDs.data(), 1692 SpecIDs.size() * sizeof(DeclID)); 1693 } 1694 } 1695 } 1696 1697 ASTDeclReader::RedeclarableResult 1698 ASTDeclReader::VisitClassTemplateSpecializationDeclImpl( 1699 ClassTemplateSpecializationDecl *D) { 1700 RedeclarableResult Redecl = VisitCXXRecordDeclImpl(D); 1701 1702 ASTContext &C = Reader.getContext(); 1703 if (Decl *InstD = ReadDecl(Record, Idx)) { 1704 if (ClassTemplateDecl *CTD = dyn_cast<ClassTemplateDecl>(InstD)) { 1705 D->SpecializedTemplate = CTD; 1706 } else { 1707 SmallVector<TemplateArgument, 8> TemplArgs; 1708 Reader.ReadTemplateArgumentList(TemplArgs, F, Record, Idx); 1709 TemplateArgumentList *ArgList 1710 = TemplateArgumentList::CreateCopy(C, TemplArgs.data(), 1711 TemplArgs.size()); 1712 ClassTemplateSpecializationDecl::SpecializedPartialSpecialization *PS 1713 = new (C) ClassTemplateSpecializationDecl:: 1714 SpecializedPartialSpecialization(); 1715 PS->PartialSpecialization 1716 = cast<ClassTemplatePartialSpecializationDecl>(InstD); 1717 PS->TemplateArgs = ArgList; 1718 D->SpecializedTemplate = PS; 1719 } 1720 } 1721 1722 SmallVector<TemplateArgument, 8> TemplArgs; 1723 Reader.ReadTemplateArgumentList(TemplArgs, F, Record, Idx); 1724 D->TemplateArgs = TemplateArgumentList::CreateCopy(C, TemplArgs.data(), 1725 TemplArgs.size()); 1726 D->PointOfInstantiation = ReadSourceLocation(Record, Idx); 1727 D->SpecializationKind = (TemplateSpecializationKind)Record[Idx++]; 1728 1729 bool writtenAsCanonicalDecl = Record[Idx++]; 1730 if (writtenAsCanonicalDecl) { 1731 ClassTemplateDecl *CanonPattern = ReadDeclAs<ClassTemplateDecl>(Record,Idx); 1732 if (D->isCanonicalDecl()) { // It's kept in the folding set. 1733 // Set this as, or find, the canonical declaration for this specialization 1734 ClassTemplateSpecializationDecl *CanonSpec; 1735 if (ClassTemplatePartialSpecializationDecl *Partial = 1736 dyn_cast<ClassTemplatePartialSpecializationDecl>(D)) { 1737 CanonSpec = CanonPattern->getCommonPtr()->PartialSpecializations 1738 .GetOrInsertNode(Partial); 1739 } else { 1740 CanonSpec = 1741 CanonPattern->getCommonPtr()->Specializations.GetOrInsertNode(D); 1742 } 1743 // If there was already a canonical specialization, merge into it. 1744 if (CanonSpec != D) { 1745 mergeRedeclarable<TagDecl>(D, CanonSpec, Redecl); 1746 1747 // This declaration might be a definition. Merge with any existing 1748 // definition. 1749 if (auto *DDD = D->DefinitionData.getNotUpdated()) { 1750 if (auto *CanonDD = CanonSpec->DefinitionData.getNotUpdated()) { 1751 MergeDefinitionData(CanonSpec, *DDD); 1752 Reader.PendingDefinitions.erase(D); 1753 Reader.MergedDeclContexts.insert( 1754 std::make_pair(D, CanonDD->Definition)); 1755 D->IsCompleteDefinition = false; 1756 D->DefinitionData = CanonSpec->DefinitionData; 1757 } else { 1758 CanonSpec->DefinitionData = D->DefinitionData; 1759 } 1760 } 1761 } 1762 } 1763 } 1764 1765 // Explicit info. 1766 if (TypeSourceInfo *TyInfo = GetTypeSourceInfo(Record, Idx)) { 1767 ClassTemplateSpecializationDecl::ExplicitSpecializationInfo *ExplicitInfo 1768 = new (C) ClassTemplateSpecializationDecl::ExplicitSpecializationInfo; 1769 ExplicitInfo->TypeAsWritten = TyInfo; 1770 ExplicitInfo->ExternLoc = ReadSourceLocation(Record, Idx); 1771 ExplicitInfo->TemplateKeywordLoc = ReadSourceLocation(Record, Idx); 1772 D->ExplicitInfo = ExplicitInfo; 1773 } 1774 1775 return Redecl; 1776 } 1777 1778 void ASTDeclReader::VisitClassTemplatePartialSpecializationDecl( 1779 ClassTemplatePartialSpecializationDecl *D) { 1780 RedeclarableResult Redecl = VisitClassTemplateSpecializationDeclImpl(D); 1781 1782 D->TemplateParams = Reader.ReadTemplateParameterList(F, Record, Idx); 1783 D->ArgsAsWritten = Reader.ReadASTTemplateArgumentListInfo(F, Record, Idx); 1784 1785 // These are read/set from/to the first declaration. 1786 if (ThisDeclID == Redecl.getFirstID()) { 1787 D->InstantiatedFromMember.setPointer( 1788 ReadDeclAs<ClassTemplatePartialSpecializationDecl>(Record, Idx)); 1789 D->InstantiatedFromMember.setInt(Record[Idx++]); 1790 } 1791 } 1792 1793 void ASTDeclReader::VisitClassScopeFunctionSpecializationDecl( 1794 ClassScopeFunctionSpecializationDecl *D) { 1795 VisitDecl(D); 1796 D->Specialization = ReadDeclAs<CXXMethodDecl>(Record, Idx); 1797 } 1798 1799 void ASTDeclReader::VisitFunctionTemplateDecl(FunctionTemplateDecl *D) { 1800 RedeclarableResult Redecl = VisitRedeclarableTemplateDecl(D); 1801 1802 if (ThisDeclID == Redecl.getFirstID()) { 1803 // This FunctionTemplateDecl owns a CommonPtr; read it. 1804 1805 // Read the function specialization declaration IDs. The specializations 1806 // themselves will be loaded if they're needed. 1807 if (unsigned NumSpecs = Record[Idx++]) { 1808 // FIXME: Append specializations! 1809 FunctionTemplateDecl::Common *CommonPtr = D->getCommonPtr(); 1810 CommonPtr->LazySpecializations = new (Reader.getContext()) 1811 serialization::DeclID[NumSpecs + 1]; 1812 CommonPtr->LazySpecializations[0] = NumSpecs; 1813 for (unsigned I = 0; I != NumSpecs; ++I) 1814 CommonPtr->LazySpecializations[I + 1] = ReadDeclID(Record, Idx); 1815 } 1816 } 1817 } 1818 1819 /// TODO: Unify with ClassTemplateSpecializationDecl version? 1820 /// May require unifying ClassTemplate(Partial)SpecializationDecl and 1821 /// VarTemplate(Partial)SpecializationDecl with a new data 1822 /// structure Template(Partial)SpecializationDecl, and 1823 /// using Template(Partial)SpecializationDecl as input type. 1824 ASTDeclReader::RedeclarableResult 1825 ASTDeclReader::VisitVarTemplateSpecializationDeclImpl( 1826 VarTemplateSpecializationDecl *D) { 1827 RedeclarableResult Redecl = VisitVarDeclImpl(D); 1828 1829 ASTContext &C = Reader.getContext(); 1830 if (Decl *InstD = ReadDecl(Record, Idx)) { 1831 if (VarTemplateDecl *VTD = dyn_cast<VarTemplateDecl>(InstD)) { 1832 D->SpecializedTemplate = VTD; 1833 } else { 1834 SmallVector<TemplateArgument, 8> TemplArgs; 1835 Reader.ReadTemplateArgumentList(TemplArgs, F, Record, Idx); 1836 TemplateArgumentList *ArgList = TemplateArgumentList::CreateCopy( 1837 C, TemplArgs.data(), TemplArgs.size()); 1838 VarTemplateSpecializationDecl::SpecializedPartialSpecialization *PS = 1839 new (C) 1840 VarTemplateSpecializationDecl::SpecializedPartialSpecialization(); 1841 PS->PartialSpecialization = 1842 cast<VarTemplatePartialSpecializationDecl>(InstD); 1843 PS->TemplateArgs = ArgList; 1844 D->SpecializedTemplate = PS; 1845 } 1846 } 1847 1848 // Explicit info. 1849 if (TypeSourceInfo *TyInfo = GetTypeSourceInfo(Record, Idx)) { 1850 VarTemplateSpecializationDecl::ExplicitSpecializationInfo *ExplicitInfo = 1851 new (C) VarTemplateSpecializationDecl::ExplicitSpecializationInfo; 1852 ExplicitInfo->TypeAsWritten = TyInfo; 1853 ExplicitInfo->ExternLoc = ReadSourceLocation(Record, Idx); 1854 ExplicitInfo->TemplateKeywordLoc = ReadSourceLocation(Record, Idx); 1855 D->ExplicitInfo = ExplicitInfo; 1856 } 1857 1858 SmallVector<TemplateArgument, 8> TemplArgs; 1859 Reader.ReadTemplateArgumentList(TemplArgs, F, Record, Idx); 1860 D->TemplateArgs = 1861 TemplateArgumentList::CreateCopy(C, TemplArgs.data(), TemplArgs.size()); 1862 D->PointOfInstantiation = ReadSourceLocation(Record, Idx); 1863 D->SpecializationKind = (TemplateSpecializationKind)Record[Idx++]; 1864 1865 bool writtenAsCanonicalDecl = Record[Idx++]; 1866 if (writtenAsCanonicalDecl) { 1867 VarTemplateDecl *CanonPattern = ReadDeclAs<VarTemplateDecl>(Record, Idx); 1868 if (D->isCanonicalDecl()) { // It's kept in the folding set. 1869 if (VarTemplatePartialSpecializationDecl *Partial = 1870 dyn_cast<VarTemplatePartialSpecializationDecl>(D)) { 1871 CanonPattern->getCommonPtr()->PartialSpecializations 1872 .GetOrInsertNode(Partial); 1873 } else { 1874 CanonPattern->getCommonPtr()->Specializations.GetOrInsertNode(D); 1875 } 1876 } 1877 } 1878 1879 return Redecl; 1880 } 1881 1882 /// TODO: Unify with ClassTemplatePartialSpecializationDecl version? 1883 /// May require unifying ClassTemplate(Partial)SpecializationDecl and 1884 /// VarTemplate(Partial)SpecializationDecl with a new data 1885 /// structure Template(Partial)SpecializationDecl, and 1886 /// using Template(Partial)SpecializationDecl as input type. 1887 void ASTDeclReader::VisitVarTemplatePartialSpecializationDecl( 1888 VarTemplatePartialSpecializationDecl *D) { 1889 RedeclarableResult Redecl = VisitVarTemplateSpecializationDeclImpl(D); 1890 1891 D->TemplateParams = Reader.ReadTemplateParameterList(F, Record, Idx); 1892 D->ArgsAsWritten = Reader.ReadASTTemplateArgumentListInfo(F, Record, Idx); 1893 1894 // These are read/set from/to the first declaration. 1895 if (ThisDeclID == Redecl.getFirstID()) { 1896 D->InstantiatedFromMember.setPointer( 1897 ReadDeclAs<VarTemplatePartialSpecializationDecl>(Record, Idx)); 1898 D->InstantiatedFromMember.setInt(Record[Idx++]); 1899 } 1900 } 1901 1902 void ASTDeclReader::VisitTemplateTypeParmDecl(TemplateTypeParmDecl *D) { 1903 VisitTypeDecl(D); 1904 1905 D->setDeclaredWithTypename(Record[Idx++]); 1906 1907 bool Inherited = Record[Idx++]; 1908 TypeSourceInfo *DefArg = GetTypeSourceInfo(Record, Idx); 1909 D->setDefaultArgument(DefArg, Inherited); 1910 } 1911 1912 void ASTDeclReader::VisitNonTypeTemplateParmDecl(NonTypeTemplateParmDecl *D) { 1913 VisitDeclaratorDecl(D); 1914 // TemplateParmPosition. 1915 D->setDepth(Record[Idx++]); 1916 D->setPosition(Record[Idx++]); 1917 if (D->isExpandedParameterPack()) { 1918 void **Data = reinterpret_cast<void **>(D + 1); 1919 for (unsigned I = 0, N = D->getNumExpansionTypes(); I != N; ++I) { 1920 Data[2*I] = Reader.readType(F, Record, Idx).getAsOpaquePtr(); 1921 Data[2*I + 1] = GetTypeSourceInfo(Record, Idx); 1922 } 1923 } else { 1924 // Rest of NonTypeTemplateParmDecl. 1925 D->ParameterPack = Record[Idx++]; 1926 if (Record[Idx++]) { 1927 Expr *DefArg = Reader.ReadExpr(F); 1928 bool Inherited = Record[Idx++]; 1929 D->setDefaultArgument(DefArg, Inherited); 1930 } 1931 } 1932 } 1933 1934 void ASTDeclReader::VisitTemplateTemplateParmDecl(TemplateTemplateParmDecl *D) { 1935 VisitTemplateDecl(D); 1936 // TemplateParmPosition. 1937 D->setDepth(Record[Idx++]); 1938 D->setPosition(Record[Idx++]); 1939 if (D->isExpandedParameterPack()) { 1940 void **Data = reinterpret_cast<void **>(D + 1); 1941 for (unsigned I = 0, N = D->getNumExpansionTemplateParameters(); 1942 I != N; ++I) 1943 Data[I] = Reader.ReadTemplateParameterList(F, Record, Idx); 1944 } else { 1945 // Rest of TemplateTemplateParmDecl. 1946 TemplateArgumentLoc Arg = Reader.ReadTemplateArgumentLoc(F, Record, Idx); 1947 bool IsInherited = Record[Idx++]; 1948 D->setDefaultArgument(Arg, IsInherited); 1949 D->ParameterPack = Record[Idx++]; 1950 } 1951 } 1952 1953 void ASTDeclReader::VisitTypeAliasTemplateDecl(TypeAliasTemplateDecl *D) { 1954 VisitRedeclarableTemplateDecl(D); 1955 } 1956 1957 void ASTDeclReader::VisitStaticAssertDecl(StaticAssertDecl *D) { 1958 VisitDecl(D); 1959 D->AssertExprAndFailed.setPointer(Reader.ReadExpr(F)); 1960 D->AssertExprAndFailed.setInt(Record[Idx++]); 1961 D->Message = cast<StringLiteral>(Reader.ReadExpr(F)); 1962 D->RParenLoc = ReadSourceLocation(Record, Idx); 1963 } 1964 1965 void ASTDeclReader::VisitEmptyDecl(EmptyDecl *D) { 1966 VisitDecl(D); 1967 } 1968 1969 std::pair<uint64_t, uint64_t> 1970 ASTDeclReader::VisitDeclContext(DeclContext *DC) { 1971 uint64_t LexicalOffset = Record[Idx++]; 1972 uint64_t VisibleOffset = Record[Idx++]; 1973 return std::make_pair(LexicalOffset, VisibleOffset); 1974 } 1975 1976 template <typename T> 1977 ASTDeclReader::RedeclarableResult 1978 ASTDeclReader::VisitRedeclarable(Redeclarable<T> *D) { 1979 DeclID FirstDeclID = ReadDeclID(Record, Idx); 1980 1981 // 0 indicates that this declaration was the only declaration of its entity, 1982 // and is used for space optimization. 1983 if (FirstDeclID == 0) 1984 FirstDeclID = ThisDeclID; 1985 1986 T *FirstDecl = cast_or_null<T>(Reader.GetDecl(FirstDeclID)); 1987 if (FirstDecl != D) { 1988 // We delay loading of the redeclaration chain to avoid deeply nested calls. 1989 // We temporarily set the first (canonical) declaration as the previous one 1990 // which is the one that matters and mark the real previous DeclID to be 1991 // loaded & attached later on. 1992 D->RedeclLink = Redeclarable<T>::PreviousDeclLink(FirstDecl); 1993 } 1994 1995 // Note that this declaration has been deserialized. 1996 Reader.RedeclsDeserialized.insert(static_cast<T *>(D)); 1997 1998 // The result structure takes care to note that we need to load the 1999 // other declaration chains for this ID. 2000 return RedeclarableResult(Reader, FirstDeclID, 2001 static_cast<T *>(D)->getKind()); 2002 } 2003 2004 /// \brief Attempts to merge the given declaration (D) with another declaration 2005 /// of the same entity. 2006 template<typename T> 2007 void ASTDeclReader::mergeRedeclarable(Redeclarable<T> *D, 2008 RedeclarableResult &Redecl, 2009 DeclID TemplatePatternID) { 2010 // If modules are not available, there is no reason to perform this merge. 2011 if (!Reader.getContext().getLangOpts().Modules) 2012 return; 2013 2014 if (FindExistingResult ExistingRes = findExisting(static_cast<T*>(D))) 2015 if (T *Existing = ExistingRes) 2016 mergeRedeclarable(D, Existing, Redecl, TemplatePatternID); 2017 } 2018 2019 /// \brief "Cast" to type T, asserting if we don't have an implicit conversion. 2020 /// We use this to put code in a template that will only be valid for certain 2021 /// instantiations. 2022 template<typename T> static T assert_cast(T t) { return t; } 2023 template<typename T> static T assert_cast(...) { 2024 llvm_unreachable("bad assert_cast"); 2025 } 2026 2027 /// \brief Merge together the pattern declarations from two template 2028 /// declarations. 2029 void ASTDeclReader::mergeTemplatePattern(RedeclarableTemplateDecl *D, 2030 RedeclarableTemplateDecl *Existing, 2031 DeclID DsID) { 2032 auto *DPattern = D->getTemplatedDecl(); 2033 auto *ExistingPattern = Existing->getTemplatedDecl(); 2034 RedeclarableResult Result(Reader, DsID, DPattern->getKind()); 2035 if (auto *DClass = dyn_cast<CXXRecordDecl>(DPattern)) 2036 // FIXME: Merge definitions here, if both declarations had definitions. 2037 return mergeRedeclarable(DClass, cast<TagDecl>(ExistingPattern), 2038 Result); 2039 if (auto *DFunction = dyn_cast<FunctionDecl>(DPattern)) 2040 return mergeRedeclarable(DFunction, cast<FunctionDecl>(ExistingPattern), 2041 Result); 2042 if (auto *DVar = dyn_cast<VarDecl>(DPattern)) 2043 return mergeRedeclarable(DVar, cast<VarDecl>(ExistingPattern), Result); 2044 llvm_unreachable("merged an unknown kind of redeclarable template"); 2045 } 2046 2047 /// \brief Attempts to merge the given declaration (D) with another declaration 2048 /// of the same entity. 2049 template<typename T> 2050 void ASTDeclReader::mergeRedeclarable(Redeclarable<T> *DBase, T *Existing, 2051 RedeclarableResult &Redecl, 2052 DeclID TemplatePatternID) { 2053 T *D = static_cast<T*>(DBase); 2054 T *ExistingCanon = Existing->getCanonicalDecl(); 2055 T *DCanon = D->getCanonicalDecl(); 2056 if (ExistingCanon != DCanon) { 2057 // Have our redeclaration link point back at the canonical declaration 2058 // of the existing declaration, so that this declaration has the 2059 // appropriate canonical declaration. 2060 D->RedeclLink = Redeclarable<T>::PreviousDeclLink(ExistingCanon); 2061 2062 // When we merge a namespace, update its pointer to the first namespace. 2063 if (auto *Namespace = dyn_cast<NamespaceDecl>(D)) 2064 Namespace->AnonOrFirstNamespaceAndInline.setPointer( 2065 assert_cast<NamespaceDecl*>(ExistingCanon)); 2066 2067 // When we merge a template, merge its pattern. 2068 if (auto *DTemplate = dyn_cast<RedeclarableTemplateDecl>(D)) 2069 mergeTemplatePattern( 2070 DTemplate, assert_cast<RedeclarableTemplateDecl*>(ExistingCanon), 2071 TemplatePatternID); 2072 2073 // Don't introduce DCanon into the set of pending declaration chains. 2074 Redecl.suppress(); 2075 2076 // Introduce ExistingCanon into the set of pending declaration chains, 2077 // if in fact it came from a module file. 2078 if (ExistingCanon->isFromASTFile()) { 2079 GlobalDeclID ExistingCanonID = ExistingCanon->getGlobalID(); 2080 assert(ExistingCanonID && "Unrecorded canonical declaration ID?"); 2081 if (Reader.PendingDeclChainsKnown.insert(ExistingCanonID)) 2082 Reader.PendingDeclChains.push_back(ExistingCanonID); 2083 } 2084 2085 // If this declaration was the canonical declaration, make a note of 2086 // that. We accept the linear algorithm here because the number of 2087 // unique canonical declarations of an entity should always be tiny. 2088 if (DCanon == D) { 2089 SmallVectorImpl<DeclID> &Merged = Reader.MergedDecls[ExistingCanon]; 2090 if (std::find(Merged.begin(), Merged.end(), Redecl.getFirstID()) 2091 == Merged.end()) 2092 Merged.push_back(Redecl.getFirstID()); 2093 2094 // If ExistingCanon did not come from a module file, introduce the 2095 // first declaration that *does* come from a module file to the 2096 // set of pending declaration chains, so that we merge this 2097 // declaration. 2098 if (!ExistingCanon->isFromASTFile() && 2099 Reader.PendingDeclChainsKnown.insert(Redecl.getFirstID())) 2100 Reader.PendingDeclChains.push_back(Merged[0]); 2101 } 2102 } 2103 } 2104 2105 /// \brief Attempts to merge the given declaration (D) with another declaration 2106 /// of the same entity, for the case where the entity is not actually 2107 /// redeclarable. This happens, for instance, when merging the fields of 2108 /// identical class definitions from two different modules. 2109 template<typename T> 2110 void ASTDeclReader::mergeMergeable(Mergeable<T> *D) { 2111 // If modules are not available, there is no reason to perform this merge. 2112 if (!Reader.getContext().getLangOpts().Modules) 2113 return; 2114 2115 // ODR-based merging is only performed in C++. In C, identically-named things 2116 // in different translation units are not redeclarations (but may still have 2117 // compatible types). 2118 if (!Reader.getContext().getLangOpts().CPlusPlus) 2119 return; 2120 2121 if (FindExistingResult ExistingRes = findExisting(static_cast<T*>(D))) 2122 if (T *Existing = ExistingRes) 2123 Reader.Context.setPrimaryMergedDecl(static_cast<T*>(D), 2124 Existing->getCanonicalDecl()); 2125 } 2126 2127 void ASTDeclReader::VisitOMPThreadPrivateDecl(OMPThreadPrivateDecl *D) { 2128 VisitDecl(D); 2129 unsigned NumVars = D->varlist_size(); 2130 SmallVector<Expr *, 16> Vars; 2131 Vars.reserve(NumVars); 2132 for (unsigned i = 0; i != NumVars; ++i) { 2133 Vars.push_back(Reader.ReadExpr(F)); 2134 } 2135 D->setVars(Vars); 2136 } 2137 2138 //===----------------------------------------------------------------------===// 2139 // Attribute Reading 2140 //===----------------------------------------------------------------------===// 2141 2142 /// \brief Reads attributes from the current stream position. 2143 void ASTReader::ReadAttributes(ModuleFile &F, AttrVec &Attrs, 2144 const RecordData &Record, unsigned &Idx) { 2145 for (unsigned i = 0, e = Record[Idx++]; i != e; ++i) { 2146 Attr *New = nullptr; 2147 attr::Kind Kind = (attr::Kind)Record[Idx++]; 2148 SourceRange Range = ReadSourceRange(F, Record, Idx); 2149 2150 #include "clang/Serialization/AttrPCHRead.inc" 2151 2152 assert(New && "Unable to decode attribute?"); 2153 Attrs.push_back(New); 2154 } 2155 } 2156 2157 //===----------------------------------------------------------------------===// 2158 // ASTReader Implementation 2159 //===----------------------------------------------------------------------===// 2160 2161 /// \brief Note that we have loaded the declaration with the given 2162 /// Index. 2163 /// 2164 /// This routine notes that this declaration has already been loaded, 2165 /// so that future GetDecl calls will return this declaration rather 2166 /// than trying to load a new declaration. 2167 inline void ASTReader::LoadedDecl(unsigned Index, Decl *D) { 2168 assert(!DeclsLoaded[Index] && "Decl loaded twice?"); 2169 DeclsLoaded[Index] = D; 2170 } 2171 2172 2173 /// \brief Determine whether the consumer will be interested in seeing 2174 /// this declaration (via HandleTopLevelDecl). 2175 /// 2176 /// This routine should return true for anything that might affect 2177 /// code generation, e.g., inline function definitions, Objective-C 2178 /// declarations with metadata, etc. 2179 static bool isConsumerInterestedIn(Decl *D, bool HasBody) { 2180 // An ObjCMethodDecl is never considered as "interesting" because its 2181 // implementation container always is. 2182 2183 if (isa<FileScopeAsmDecl>(D) || 2184 isa<ObjCProtocolDecl>(D) || 2185 isa<ObjCImplDecl>(D) || 2186 isa<ImportDecl>(D)) 2187 return true; 2188 if (VarDecl *Var = dyn_cast<VarDecl>(D)) 2189 return Var->isFileVarDecl() && 2190 Var->isThisDeclarationADefinition() == VarDecl::Definition; 2191 if (FunctionDecl *Func = dyn_cast<FunctionDecl>(D)) 2192 return Func->doesThisDeclarationHaveABody() || HasBody; 2193 2194 return false; 2195 } 2196 2197 /// \brief Get the correct cursor and offset for loading a declaration. 2198 ASTReader::RecordLocation 2199 ASTReader::DeclCursorForID(DeclID ID, unsigned &RawLocation) { 2200 // See if there's an override. 2201 DeclReplacementMap::iterator It = ReplacedDecls.find(ID); 2202 if (It != ReplacedDecls.end()) { 2203 RawLocation = It->second.RawLoc; 2204 return RecordLocation(It->second.Mod, It->second.Offset); 2205 } 2206 2207 GlobalDeclMapType::iterator I = GlobalDeclMap.find(ID); 2208 assert(I != GlobalDeclMap.end() && "Corrupted global declaration map"); 2209 ModuleFile *M = I->second; 2210 const DeclOffset & 2211 DOffs = M->DeclOffsets[ID - M->BaseDeclID - NUM_PREDEF_DECL_IDS]; 2212 RawLocation = DOffs.Loc; 2213 return RecordLocation(M, DOffs.BitOffset); 2214 } 2215 2216 ASTReader::RecordLocation ASTReader::getLocalBitOffset(uint64_t GlobalOffset) { 2217 ContinuousRangeMap<uint64_t, ModuleFile*, 4>::iterator I 2218 = GlobalBitOffsetsMap.find(GlobalOffset); 2219 2220 assert(I != GlobalBitOffsetsMap.end() && "Corrupted global bit offsets map"); 2221 return RecordLocation(I->second, GlobalOffset - I->second->GlobalBitOffset); 2222 } 2223 2224 uint64_t ASTReader::getGlobalBitOffset(ModuleFile &M, uint32_t LocalOffset) { 2225 return LocalOffset + M.GlobalBitOffset; 2226 } 2227 2228 static bool isSameTemplateParameterList(const TemplateParameterList *X, 2229 const TemplateParameterList *Y); 2230 2231 /// \brief Determine whether two template parameters are similar enough 2232 /// that they may be used in declarations of the same template. 2233 static bool isSameTemplateParameter(const NamedDecl *X, 2234 const NamedDecl *Y) { 2235 if (X->getKind() != Y->getKind()) 2236 return false; 2237 2238 if (const TemplateTypeParmDecl *TX = dyn_cast<TemplateTypeParmDecl>(X)) { 2239 const TemplateTypeParmDecl *TY = cast<TemplateTypeParmDecl>(Y); 2240 return TX->isParameterPack() == TY->isParameterPack(); 2241 } 2242 2243 if (const NonTypeTemplateParmDecl *TX = dyn_cast<NonTypeTemplateParmDecl>(X)) { 2244 const NonTypeTemplateParmDecl *TY = cast<NonTypeTemplateParmDecl>(Y); 2245 return TX->isParameterPack() == TY->isParameterPack() && 2246 TX->getASTContext().hasSameType(TX->getType(), TY->getType()); 2247 } 2248 2249 const TemplateTemplateParmDecl *TX = cast<TemplateTemplateParmDecl>(X); 2250 const TemplateTemplateParmDecl *TY = cast<TemplateTemplateParmDecl>(Y); 2251 return TX->isParameterPack() == TY->isParameterPack() && 2252 isSameTemplateParameterList(TX->getTemplateParameters(), 2253 TY->getTemplateParameters()); 2254 } 2255 2256 /// \brief Determine whether two template parameter lists are similar enough 2257 /// that they may be used in declarations of the same template. 2258 static bool isSameTemplateParameterList(const TemplateParameterList *X, 2259 const TemplateParameterList *Y) { 2260 if (X->size() != Y->size()) 2261 return false; 2262 2263 for (unsigned I = 0, N = X->size(); I != N; ++I) 2264 if (!isSameTemplateParameter(X->getParam(I), Y->getParam(I))) 2265 return false; 2266 2267 return true; 2268 } 2269 2270 /// \brief Determine whether the two declarations refer to the same entity. 2271 static bool isSameEntity(NamedDecl *X, NamedDecl *Y) { 2272 assert(X->getDeclName() == Y->getDeclName() && "Declaration name mismatch!"); 2273 2274 if (X == Y) 2275 return true; 2276 2277 // Must be in the same context. 2278 if (!X->getDeclContext()->getRedeclContext()->Equals( 2279 Y->getDeclContext()->getRedeclContext())) 2280 return false; 2281 2282 // Two typedefs refer to the same entity if they have the same underlying 2283 // type. 2284 if (TypedefNameDecl *TypedefX = dyn_cast<TypedefNameDecl>(X)) 2285 if (TypedefNameDecl *TypedefY = dyn_cast<TypedefNameDecl>(Y)) 2286 return X->getASTContext().hasSameType(TypedefX->getUnderlyingType(), 2287 TypedefY->getUnderlyingType()); 2288 2289 // Must have the same kind. 2290 if (X->getKind() != Y->getKind()) 2291 return false; 2292 2293 // Objective-C classes and protocols with the same name always match. 2294 if (isa<ObjCInterfaceDecl>(X) || isa<ObjCProtocolDecl>(X)) 2295 return true; 2296 2297 if (isa<ClassTemplateSpecializationDecl>(X)) { 2298 // No need to handle these here: we merge them when adding them to the 2299 // template. 2300 return false; 2301 } 2302 2303 // Compatible tags match. 2304 if (TagDecl *TagX = dyn_cast<TagDecl>(X)) { 2305 TagDecl *TagY = cast<TagDecl>(Y); 2306 return (TagX->getTagKind() == TagY->getTagKind()) || 2307 ((TagX->getTagKind() == TTK_Struct || TagX->getTagKind() == TTK_Class || 2308 TagX->getTagKind() == TTK_Interface) && 2309 (TagY->getTagKind() == TTK_Struct || TagY->getTagKind() == TTK_Class || 2310 TagY->getTagKind() == TTK_Interface)); 2311 } 2312 2313 // Functions with the same type and linkage match. 2314 // FIXME: This needs to cope with function template specializations, 2315 // merging of prototyped/non-prototyped functions, etc. 2316 if (FunctionDecl *FuncX = dyn_cast<FunctionDecl>(X)) { 2317 FunctionDecl *FuncY = cast<FunctionDecl>(Y); 2318 return (FuncX->getLinkageInternal() == FuncY->getLinkageInternal()) && 2319 FuncX->getASTContext().hasSameType(FuncX->getType(), FuncY->getType()); 2320 } 2321 2322 // Variables with the same type and linkage match. 2323 if (VarDecl *VarX = dyn_cast<VarDecl>(X)) { 2324 VarDecl *VarY = cast<VarDecl>(Y); 2325 return (VarX->getLinkageInternal() == VarY->getLinkageInternal()) && 2326 VarX->getASTContext().hasSameType(VarX->getType(), VarY->getType()); 2327 } 2328 2329 // Namespaces with the same name and inlinedness match. 2330 if (NamespaceDecl *NamespaceX = dyn_cast<NamespaceDecl>(X)) { 2331 NamespaceDecl *NamespaceY = cast<NamespaceDecl>(Y); 2332 return NamespaceX->isInline() == NamespaceY->isInline(); 2333 } 2334 2335 // Identical template names and kinds match if their template parameter lists 2336 // and patterns match. 2337 if (TemplateDecl *TemplateX = dyn_cast<TemplateDecl>(X)) { 2338 TemplateDecl *TemplateY = cast<TemplateDecl>(Y); 2339 return isSameEntity(TemplateX->getTemplatedDecl(), 2340 TemplateY->getTemplatedDecl()) && 2341 isSameTemplateParameterList(TemplateX->getTemplateParameters(), 2342 TemplateY->getTemplateParameters()); 2343 } 2344 2345 // Fields with the same name and the same type match. 2346 if (FieldDecl *FDX = dyn_cast<FieldDecl>(X)) { 2347 FieldDecl *FDY = cast<FieldDecl>(Y); 2348 // FIXME: Diagnose if the types don't match. 2349 // FIXME: Also check the bitwidth is odr-equivalent, if any. 2350 return X->getASTContext().hasSameType(FDX->getType(), FDY->getType()); 2351 } 2352 2353 // Enumerators with the same name match. 2354 if (isa<EnumConstantDecl>(X)) 2355 // FIXME: Also check the value is odr-equivalent. 2356 return true; 2357 2358 // Using shadow declarations with the same target match. 2359 if (UsingShadowDecl *USX = dyn_cast<UsingShadowDecl>(X)) { 2360 UsingShadowDecl *USY = cast<UsingShadowDecl>(Y); 2361 return USX->getTargetDecl() == USY->getTargetDecl(); 2362 } 2363 2364 // FIXME: Many other cases to implement. 2365 return false; 2366 } 2367 2368 /// Find the context in which we should search for previous declarations when 2369 /// looking for declarations to merge. 2370 static DeclContext *getPrimaryContextForMerging(DeclContext *DC) { 2371 if (NamespaceDecl *ND = dyn_cast<NamespaceDecl>(DC)) 2372 return ND->getOriginalNamespace(); 2373 2374 if (CXXRecordDecl *RD = dyn_cast<CXXRecordDecl>(DC)) 2375 return RD->getDefinition(); 2376 2377 if (EnumDecl *ED = dyn_cast<EnumDecl>(DC)) 2378 return ED->getASTContext().getLangOpts().CPlusPlus? ED->getDefinition() 2379 : nullptr; 2380 2381 return nullptr; 2382 } 2383 2384 ASTDeclReader::FindExistingResult::~FindExistingResult() { 2385 if (!AddResult || Existing) 2386 return; 2387 2388 DeclContext *DC = New->getDeclContext()->getRedeclContext(); 2389 if (DC->isTranslationUnit() && Reader.SemaObj) { 2390 Reader.SemaObj->IdResolver.tryAddTopLevelDecl(New, New->getDeclName()); 2391 } else if (DeclContext *MergeDC = getPrimaryContextForMerging(DC)) { 2392 // Add the declaration to its redeclaration context so later merging 2393 // lookups will find it. 2394 MergeDC->makeDeclVisibleInContextImpl(New, /*Internal*/true); 2395 } 2396 } 2397 2398 ASTDeclReader::FindExistingResult ASTDeclReader::findExisting(NamedDecl *D) { 2399 DeclarationName Name = D->getDeclName(); 2400 if (!Name) { 2401 // Don't bother trying to find unnamed declarations. 2402 FindExistingResult Result(Reader, D, /*Existing=*/nullptr); 2403 Result.suppress(); 2404 return Result; 2405 } 2406 2407 // FIXME: Bail out for non-canonical declarations. We will have performed any 2408 // necessary merging already. 2409 2410 DeclContext *DC = D->getDeclContext()->getRedeclContext(); 2411 if (DC->isTranslationUnit() && Reader.SemaObj) { 2412 IdentifierResolver &IdResolver = Reader.SemaObj->IdResolver; 2413 2414 // Temporarily consider the identifier to be up-to-date. We don't want to 2415 // cause additional lookups here. 2416 class UpToDateIdentifierRAII { 2417 IdentifierInfo *II; 2418 bool WasOutToDate; 2419 2420 public: 2421 explicit UpToDateIdentifierRAII(IdentifierInfo *II) 2422 : II(II), WasOutToDate(false) 2423 { 2424 if (II) { 2425 WasOutToDate = II->isOutOfDate(); 2426 if (WasOutToDate) 2427 II->setOutOfDate(false); 2428 } 2429 } 2430 2431 ~UpToDateIdentifierRAII() { 2432 if (WasOutToDate) 2433 II->setOutOfDate(true); 2434 } 2435 } UpToDate(Name.getAsIdentifierInfo()); 2436 2437 for (IdentifierResolver::iterator I = IdResolver.begin(Name), 2438 IEnd = IdResolver.end(); 2439 I != IEnd; ++I) { 2440 if (isSameEntity(*I, D)) 2441 return FindExistingResult(Reader, D, *I); 2442 } 2443 } else if (DeclContext *MergeDC = getPrimaryContextForMerging(DC)) { 2444 DeclContext::lookup_result R = MergeDC->noload_lookup(Name); 2445 for (DeclContext::lookup_iterator I = R.begin(), E = R.end(); I != E; ++I) { 2446 if (isSameEntity(*I, D)) 2447 return FindExistingResult(Reader, D, *I); 2448 } 2449 } else { 2450 // Not in a mergeable context. 2451 return FindExistingResult(Reader); 2452 } 2453 2454 // If this declaration is from a merged context, make a note that we need to 2455 // check that the canonical definition of that context contains the decl. 2456 // 2457 // FIXME: We should do something similar if we merge two definitions of the 2458 // same template specialization into the same CXXRecordDecl. 2459 if (Reader.MergedDeclContexts.count(D->getLexicalDeclContext())) 2460 Reader.PendingOdrMergeChecks.push_back(D); 2461 2462 return FindExistingResult(Reader, D, /*Existing=*/nullptr); 2463 } 2464 2465 template<typename DeclT> 2466 void ASTDeclReader::attachPreviousDeclImpl(Redeclarable<DeclT> *D, 2467 Decl *Previous) { 2468 D->RedeclLink.setPrevious(cast<DeclT>(Previous)); 2469 } 2470 void ASTDeclReader::attachPreviousDeclImpl(...) { 2471 llvm_unreachable("attachPreviousDecl on non-redeclarable declaration"); 2472 } 2473 2474 void ASTDeclReader::attachPreviousDecl(Decl *D, Decl *Previous) { 2475 assert(D && Previous); 2476 2477 switch (D->getKind()) { 2478 #define ABSTRACT_DECL(TYPE) 2479 #define DECL(TYPE, BASE) \ 2480 case Decl::TYPE: \ 2481 attachPreviousDeclImpl(cast<TYPE##Decl>(D), Previous); \ 2482 break; 2483 #include "clang/AST/DeclNodes.inc" 2484 } 2485 2486 // If the declaration was visible in one module, a redeclaration of it in 2487 // another module remains visible even if it wouldn't be visible by itself. 2488 // 2489 // FIXME: In this case, the declaration should only be visible if a module 2490 // that makes it visible has been imported. 2491 D->IdentifierNamespace |= 2492 Previous->IdentifierNamespace & 2493 (Decl::IDNS_Ordinary | Decl::IDNS_Tag | Decl::IDNS_Type); 2494 2495 // If the previous declaration is an inline function declaration, then this 2496 // declaration is too. 2497 if (auto *FD = dyn_cast<FunctionDecl>(D)) { 2498 if (cast<FunctionDecl>(Previous)->IsInline != FD->IsInline) { 2499 // FIXME: [dcl.fct.spec]p4: 2500 // If a function with external linkage is declared inline in one 2501 // translation unit, it shall be declared inline in all translation 2502 // units in which it appears. 2503 // 2504 // Be careful of this case: 2505 // 2506 // module A: 2507 // template<typename T> struct X { void f(); }; 2508 // template<typename T> inline void X<T>::f() {} 2509 // 2510 // module B instantiates the declaration of X<int>::f 2511 // module C instantiates the definition of X<int>::f 2512 // 2513 // If module B and C are merged, we do not have a violation of this rule. 2514 // 2515 //if (!FD->IsInline || Previous->getOwningModule()) 2516 // Diag(FD->getLocation(), diag::err_odr_differing_inline); 2517 FD->IsInline = true; 2518 } 2519 } 2520 } 2521 2522 template<typename DeclT> 2523 void ASTDeclReader::attachLatestDeclImpl(Redeclarable<DeclT> *D, Decl *Latest) { 2524 D->RedeclLink.setLatest(cast<DeclT>(Latest)); 2525 } 2526 void ASTDeclReader::attachLatestDeclImpl(...) { 2527 llvm_unreachable("attachLatestDecl on non-redeclarable declaration"); 2528 } 2529 2530 void ASTDeclReader::attachLatestDecl(Decl *D, Decl *Latest) { 2531 assert(D && Latest); 2532 2533 switch (D->getKind()) { 2534 #define ABSTRACT_DECL(TYPE) 2535 #define DECL(TYPE, BASE) \ 2536 case Decl::TYPE: \ 2537 attachLatestDeclImpl(cast<TYPE##Decl>(D), Latest); \ 2538 break; 2539 #include "clang/AST/DeclNodes.inc" 2540 } 2541 } 2542 2543 template<typename DeclT> 2544 void ASTDeclReader::markIncompleteDeclChainImpl(Redeclarable<DeclT> *D) { 2545 D->RedeclLink.markIncomplete(); 2546 } 2547 void ASTDeclReader::markIncompleteDeclChainImpl(...) { 2548 llvm_unreachable("markIncompleteDeclChain on non-redeclarable declaration"); 2549 } 2550 2551 void ASTReader::markIncompleteDeclChain(Decl *D) { 2552 switch (D->getKind()) { 2553 #define ABSTRACT_DECL(TYPE) 2554 #define DECL(TYPE, BASE) \ 2555 case Decl::TYPE: \ 2556 ASTDeclReader::markIncompleteDeclChainImpl(cast<TYPE##Decl>(D)); \ 2557 break; 2558 #include "clang/AST/DeclNodes.inc" 2559 } 2560 } 2561 2562 ASTReader::MergedDeclsMap::iterator 2563 ASTReader::combineStoredMergedDecls(Decl *Canon, GlobalDeclID CanonID) { 2564 // If we don't have any stored merged declarations, just look in the 2565 // merged declarations set. 2566 StoredMergedDeclsMap::iterator StoredPos = StoredMergedDecls.find(CanonID); 2567 if (StoredPos == StoredMergedDecls.end()) 2568 return MergedDecls.find(Canon); 2569 2570 // Append the stored merged declarations to the merged declarations set. 2571 MergedDeclsMap::iterator Pos = MergedDecls.find(Canon); 2572 if (Pos == MergedDecls.end()) 2573 Pos = MergedDecls.insert(std::make_pair(Canon, 2574 SmallVector<DeclID, 2>())).first; 2575 Pos->second.append(StoredPos->second.begin(), StoredPos->second.end()); 2576 StoredMergedDecls.erase(StoredPos); 2577 2578 // Sort and uniquify the set of merged declarations. 2579 llvm::array_pod_sort(Pos->second.begin(), Pos->second.end()); 2580 Pos->second.erase(std::unique(Pos->second.begin(), Pos->second.end()), 2581 Pos->second.end()); 2582 return Pos; 2583 } 2584 2585 /// \brief Read the declaration at the given offset from the AST file. 2586 Decl *ASTReader::ReadDeclRecord(DeclID ID) { 2587 unsigned Index = ID - NUM_PREDEF_DECL_IDS; 2588 unsigned RawLocation = 0; 2589 RecordLocation Loc = DeclCursorForID(ID, RawLocation); 2590 llvm::BitstreamCursor &DeclsCursor = Loc.F->DeclsCursor; 2591 // Keep track of where we are in the stream, then jump back there 2592 // after reading this declaration. 2593 SavedStreamPosition SavedPosition(DeclsCursor); 2594 2595 ReadingKindTracker ReadingKind(Read_Decl, *this); 2596 2597 // Note that we are loading a declaration record. 2598 Deserializing ADecl(this); 2599 2600 DeclsCursor.JumpToBit(Loc.Offset); 2601 RecordData Record; 2602 unsigned Code = DeclsCursor.ReadCode(); 2603 unsigned Idx = 0; 2604 ASTDeclReader Reader(*this, *Loc.F, ID, RawLocation, Record,Idx); 2605 2606 Decl *D = nullptr; 2607 switch ((DeclCode)DeclsCursor.readRecord(Code, Record)) { 2608 case DECL_CONTEXT_LEXICAL: 2609 case DECL_CONTEXT_VISIBLE: 2610 llvm_unreachable("Record cannot be de-serialized with ReadDeclRecord"); 2611 case DECL_TYPEDEF: 2612 D = TypedefDecl::CreateDeserialized(Context, ID); 2613 break; 2614 case DECL_TYPEALIAS: 2615 D = TypeAliasDecl::CreateDeserialized(Context, ID); 2616 break; 2617 case DECL_ENUM: 2618 D = EnumDecl::CreateDeserialized(Context, ID); 2619 break; 2620 case DECL_RECORD: 2621 D = RecordDecl::CreateDeserialized(Context, ID); 2622 break; 2623 case DECL_ENUM_CONSTANT: 2624 D = EnumConstantDecl::CreateDeserialized(Context, ID); 2625 break; 2626 case DECL_FUNCTION: 2627 D = FunctionDecl::CreateDeserialized(Context, ID); 2628 break; 2629 case DECL_LINKAGE_SPEC: 2630 D = LinkageSpecDecl::CreateDeserialized(Context, ID); 2631 break; 2632 case DECL_LABEL: 2633 D = LabelDecl::CreateDeserialized(Context, ID); 2634 break; 2635 case DECL_NAMESPACE: 2636 D = NamespaceDecl::CreateDeserialized(Context, ID); 2637 break; 2638 case DECL_NAMESPACE_ALIAS: 2639 D = NamespaceAliasDecl::CreateDeserialized(Context, ID); 2640 break; 2641 case DECL_USING: 2642 D = UsingDecl::CreateDeserialized(Context, ID); 2643 break; 2644 case DECL_USING_SHADOW: 2645 D = UsingShadowDecl::CreateDeserialized(Context, ID); 2646 break; 2647 case DECL_USING_DIRECTIVE: 2648 D = UsingDirectiveDecl::CreateDeserialized(Context, ID); 2649 break; 2650 case DECL_UNRESOLVED_USING_VALUE: 2651 D = UnresolvedUsingValueDecl::CreateDeserialized(Context, ID); 2652 break; 2653 case DECL_UNRESOLVED_USING_TYPENAME: 2654 D = UnresolvedUsingTypenameDecl::CreateDeserialized(Context, ID); 2655 break; 2656 case DECL_CXX_RECORD: 2657 D = CXXRecordDecl::CreateDeserialized(Context, ID); 2658 break; 2659 case DECL_CXX_METHOD: 2660 D = CXXMethodDecl::CreateDeserialized(Context, ID); 2661 break; 2662 case DECL_CXX_CONSTRUCTOR: 2663 D = CXXConstructorDecl::CreateDeserialized(Context, ID); 2664 break; 2665 case DECL_CXX_DESTRUCTOR: 2666 D = CXXDestructorDecl::CreateDeserialized(Context, ID); 2667 break; 2668 case DECL_CXX_CONVERSION: 2669 D = CXXConversionDecl::CreateDeserialized(Context, ID); 2670 break; 2671 case DECL_ACCESS_SPEC: 2672 D = AccessSpecDecl::CreateDeserialized(Context, ID); 2673 break; 2674 case DECL_FRIEND: 2675 D = FriendDecl::CreateDeserialized(Context, ID, Record[Idx++]); 2676 break; 2677 case DECL_FRIEND_TEMPLATE: 2678 D = FriendTemplateDecl::CreateDeserialized(Context, ID); 2679 break; 2680 case DECL_CLASS_TEMPLATE: 2681 D = ClassTemplateDecl::CreateDeserialized(Context, ID); 2682 break; 2683 case DECL_CLASS_TEMPLATE_SPECIALIZATION: 2684 D = ClassTemplateSpecializationDecl::CreateDeserialized(Context, ID); 2685 break; 2686 case DECL_CLASS_TEMPLATE_PARTIAL_SPECIALIZATION: 2687 D = ClassTemplatePartialSpecializationDecl::CreateDeserialized(Context, ID); 2688 break; 2689 case DECL_VAR_TEMPLATE: 2690 D = VarTemplateDecl::CreateDeserialized(Context, ID); 2691 break; 2692 case DECL_VAR_TEMPLATE_SPECIALIZATION: 2693 D = VarTemplateSpecializationDecl::CreateDeserialized(Context, ID); 2694 break; 2695 case DECL_VAR_TEMPLATE_PARTIAL_SPECIALIZATION: 2696 D = VarTemplatePartialSpecializationDecl::CreateDeserialized(Context, ID); 2697 break; 2698 case DECL_CLASS_SCOPE_FUNCTION_SPECIALIZATION: 2699 D = ClassScopeFunctionSpecializationDecl::CreateDeserialized(Context, ID); 2700 break; 2701 case DECL_FUNCTION_TEMPLATE: 2702 D = FunctionTemplateDecl::CreateDeserialized(Context, ID); 2703 break; 2704 case DECL_TEMPLATE_TYPE_PARM: 2705 D = TemplateTypeParmDecl::CreateDeserialized(Context, ID); 2706 break; 2707 case DECL_NON_TYPE_TEMPLATE_PARM: 2708 D = NonTypeTemplateParmDecl::CreateDeserialized(Context, ID); 2709 break; 2710 case DECL_EXPANDED_NON_TYPE_TEMPLATE_PARM_PACK: 2711 D = NonTypeTemplateParmDecl::CreateDeserialized(Context, ID, Record[Idx++]); 2712 break; 2713 case DECL_TEMPLATE_TEMPLATE_PARM: 2714 D = TemplateTemplateParmDecl::CreateDeserialized(Context, ID); 2715 break; 2716 case DECL_EXPANDED_TEMPLATE_TEMPLATE_PARM_PACK: 2717 D = TemplateTemplateParmDecl::CreateDeserialized(Context, ID, 2718 Record[Idx++]); 2719 break; 2720 case DECL_TYPE_ALIAS_TEMPLATE: 2721 D = TypeAliasTemplateDecl::CreateDeserialized(Context, ID); 2722 break; 2723 case DECL_STATIC_ASSERT: 2724 D = StaticAssertDecl::CreateDeserialized(Context, ID); 2725 break; 2726 case DECL_OBJC_METHOD: 2727 D = ObjCMethodDecl::CreateDeserialized(Context, ID); 2728 break; 2729 case DECL_OBJC_INTERFACE: 2730 D = ObjCInterfaceDecl::CreateDeserialized(Context, ID); 2731 break; 2732 case DECL_OBJC_IVAR: 2733 D = ObjCIvarDecl::CreateDeserialized(Context, ID); 2734 break; 2735 case DECL_OBJC_PROTOCOL: 2736 D = ObjCProtocolDecl::CreateDeserialized(Context, ID); 2737 break; 2738 case DECL_OBJC_AT_DEFS_FIELD: 2739 D = ObjCAtDefsFieldDecl::CreateDeserialized(Context, ID); 2740 break; 2741 case DECL_OBJC_CATEGORY: 2742 D = ObjCCategoryDecl::CreateDeserialized(Context, ID); 2743 break; 2744 case DECL_OBJC_CATEGORY_IMPL: 2745 D = ObjCCategoryImplDecl::CreateDeserialized(Context, ID); 2746 break; 2747 case DECL_OBJC_IMPLEMENTATION: 2748 D = ObjCImplementationDecl::CreateDeserialized(Context, ID); 2749 break; 2750 case DECL_OBJC_COMPATIBLE_ALIAS: 2751 D = ObjCCompatibleAliasDecl::CreateDeserialized(Context, ID); 2752 break; 2753 case DECL_OBJC_PROPERTY: 2754 D = ObjCPropertyDecl::CreateDeserialized(Context, ID); 2755 break; 2756 case DECL_OBJC_PROPERTY_IMPL: 2757 D = ObjCPropertyImplDecl::CreateDeserialized(Context, ID); 2758 break; 2759 case DECL_FIELD: 2760 D = FieldDecl::CreateDeserialized(Context, ID); 2761 break; 2762 case DECL_INDIRECTFIELD: 2763 D = IndirectFieldDecl::CreateDeserialized(Context, ID); 2764 break; 2765 case DECL_VAR: 2766 D = VarDecl::CreateDeserialized(Context, ID); 2767 break; 2768 case DECL_IMPLICIT_PARAM: 2769 D = ImplicitParamDecl::CreateDeserialized(Context, ID); 2770 break; 2771 case DECL_PARM_VAR: 2772 D = ParmVarDecl::CreateDeserialized(Context, ID); 2773 break; 2774 case DECL_FILE_SCOPE_ASM: 2775 D = FileScopeAsmDecl::CreateDeserialized(Context, ID); 2776 break; 2777 case DECL_BLOCK: 2778 D = BlockDecl::CreateDeserialized(Context, ID); 2779 break; 2780 case DECL_MS_PROPERTY: 2781 D = MSPropertyDecl::CreateDeserialized(Context, ID); 2782 break; 2783 case DECL_CAPTURED: 2784 D = CapturedDecl::CreateDeserialized(Context, ID, Record[Idx++]); 2785 break; 2786 case DECL_CXX_BASE_SPECIFIERS: 2787 Error("attempt to read a C++ base-specifier record as a declaration"); 2788 return nullptr; 2789 case DECL_IMPORT: 2790 // Note: last entry of the ImportDecl record is the number of stored source 2791 // locations. 2792 D = ImportDecl::CreateDeserialized(Context, ID, Record.back()); 2793 break; 2794 case DECL_OMP_THREADPRIVATE: 2795 D = OMPThreadPrivateDecl::CreateDeserialized(Context, ID, Record[Idx++]); 2796 break; 2797 case DECL_EMPTY: 2798 D = EmptyDecl::CreateDeserialized(Context, ID); 2799 break; 2800 } 2801 2802 assert(D && "Unknown declaration reading AST file"); 2803 LoadedDecl(Index, D); 2804 // Set the DeclContext before doing any deserialization, to make sure internal 2805 // calls to Decl::getASTContext() by Decl's methods will find the 2806 // TranslationUnitDecl without crashing. 2807 D->setDeclContext(Context.getTranslationUnitDecl()); 2808 Reader.Visit(D); 2809 2810 // If this declaration is also a declaration context, get the 2811 // offsets for its tables of lexical and visible declarations. 2812 if (DeclContext *DC = dyn_cast<DeclContext>(D)) { 2813 // FIXME: This should really be 2814 // DeclContext *LookupDC = DC->getPrimaryContext(); 2815 // but that can walk the redeclaration chain, which might not work yet. 2816 DeclContext *LookupDC = DC; 2817 if (isa<NamespaceDecl>(DC)) 2818 LookupDC = DC->getPrimaryContext(); 2819 std::pair<uint64_t, uint64_t> Offsets = Reader.VisitDeclContext(DC); 2820 if (Offsets.first || Offsets.second) { 2821 if (Offsets.first != 0) 2822 DC->setHasExternalLexicalStorage(true); 2823 if (Offsets.second != 0) 2824 LookupDC->setHasExternalVisibleStorage(true); 2825 if (ReadDeclContextStorage(*Loc.F, DeclsCursor, Offsets, 2826 Loc.F->DeclContextInfos[DC])) 2827 return nullptr; 2828 } 2829 2830 // Now add the pending visible updates for this decl context, if it has any. 2831 DeclContextVisibleUpdatesPending::iterator I = 2832 PendingVisibleUpdates.find(ID); 2833 if (I != PendingVisibleUpdates.end()) { 2834 // There are updates. This means the context has external visible 2835 // storage, even if the original stored version didn't. 2836 LookupDC->setHasExternalVisibleStorage(true); 2837 for (const auto &Update : I->second) { 2838 DeclContextInfo &Info = Update.second->DeclContextInfos[DC]; 2839 delete Info.NameLookupTableData; 2840 Info.NameLookupTableData = Update.first; 2841 } 2842 PendingVisibleUpdates.erase(I); 2843 } 2844 } 2845 assert(Idx == Record.size()); 2846 2847 // Load any relevant update records. 2848 PendingUpdateRecords.push_back(std::make_pair(ID, D)); 2849 2850 // Load the categories after recursive loading is finished. 2851 if (ObjCInterfaceDecl *Class = dyn_cast<ObjCInterfaceDecl>(D)) 2852 if (Class->isThisDeclarationADefinition()) 2853 loadObjCCategories(ID, Class); 2854 2855 // If we have deserialized a declaration that has a definition the 2856 // AST consumer might need to know about, queue it. 2857 // We don't pass it to the consumer immediately because we may be in recursive 2858 // loading, and some declarations may still be initializing. 2859 if (isConsumerInterestedIn(D, Reader.hasPendingBody())) 2860 InterestingDecls.push_back(D); 2861 2862 return D; 2863 } 2864 2865 void ASTReader::loadDeclUpdateRecords(serialization::DeclID ID, Decl *D) { 2866 // The declaration may have been modified by files later in the chain. 2867 // If this is the case, read the record containing the updates from each file 2868 // and pass it to ASTDeclReader to make the modifications. 2869 DeclUpdateOffsetsMap::iterator UpdI = DeclUpdateOffsets.find(ID); 2870 if (UpdI != DeclUpdateOffsets.end()) { 2871 FileOffsetsTy &UpdateOffsets = UpdI->second; 2872 bool WasInteresting = isConsumerInterestedIn(D, false); 2873 for (FileOffsetsTy::iterator 2874 I = UpdateOffsets.begin(), E = UpdateOffsets.end(); I != E; ++I) { 2875 ModuleFile *F = I->first; 2876 uint64_t Offset = I->second; 2877 llvm::BitstreamCursor &Cursor = F->DeclsCursor; 2878 SavedStreamPosition SavedPosition(Cursor); 2879 Cursor.JumpToBit(Offset); 2880 RecordData Record; 2881 unsigned Code = Cursor.ReadCode(); 2882 unsigned RecCode = Cursor.readRecord(Code, Record); 2883 (void)RecCode; 2884 assert(RecCode == DECL_UPDATES && "Expected DECL_UPDATES record!"); 2885 2886 unsigned Idx = 0; 2887 ASTDeclReader Reader(*this, *F, ID, 0, Record, Idx); 2888 Reader.UpdateDecl(D, *F, Record); 2889 2890 // We might have made this declaration interesting. If so, remember that 2891 // we need to hand it off to the consumer. 2892 if (!WasInteresting && 2893 isConsumerInterestedIn(D, Reader.hasPendingBody())) { 2894 InterestingDecls.push_back(D); 2895 WasInteresting = true; 2896 } 2897 } 2898 } 2899 } 2900 2901 namespace { 2902 /// \brief Module visitor class that finds all of the redeclarations of a 2903 /// 2904 class RedeclChainVisitor { 2905 ASTReader &Reader; 2906 SmallVectorImpl<DeclID> &SearchDecls; 2907 llvm::SmallPtrSet<Decl *, 16> &Deserialized; 2908 GlobalDeclID CanonID; 2909 SmallVector<Decl *, 4> Chain; 2910 2911 public: 2912 RedeclChainVisitor(ASTReader &Reader, SmallVectorImpl<DeclID> &SearchDecls, 2913 llvm::SmallPtrSet<Decl *, 16> &Deserialized, 2914 GlobalDeclID CanonID) 2915 : Reader(Reader), SearchDecls(SearchDecls), Deserialized(Deserialized), 2916 CanonID(CanonID) { 2917 for (unsigned I = 0, N = SearchDecls.size(); I != N; ++I) 2918 addToChain(Reader.GetDecl(SearchDecls[I])); 2919 } 2920 2921 static bool visit(ModuleFile &M, bool Preorder, void *UserData) { 2922 if (Preorder) 2923 return false; 2924 2925 return static_cast<RedeclChainVisitor *>(UserData)->visit(M); 2926 } 2927 2928 void addToChain(Decl *D) { 2929 if (!D) 2930 return; 2931 2932 if (Deserialized.erase(D)) 2933 Chain.push_back(D); 2934 } 2935 2936 void searchForID(ModuleFile &M, GlobalDeclID GlobalID) { 2937 // Map global ID of the first declaration down to the local ID 2938 // used in this module file. 2939 DeclID ID = Reader.mapGlobalIDToModuleFileGlobalID(M, GlobalID); 2940 if (!ID) 2941 return; 2942 2943 // Perform a binary search to find the local redeclarations for this 2944 // declaration (if any). 2945 const LocalRedeclarationsInfo Compare = { ID, 0 }; 2946 const LocalRedeclarationsInfo *Result 2947 = std::lower_bound(M.RedeclarationsMap, 2948 M.RedeclarationsMap + M.LocalNumRedeclarationsInMap, 2949 Compare); 2950 if (Result == M.RedeclarationsMap + M.LocalNumRedeclarationsInMap || 2951 Result->FirstID != ID) { 2952 // If we have a previously-canonical singleton declaration that was 2953 // merged into another redeclaration chain, create a trivial chain 2954 // for this single declaration so that it will get wired into the 2955 // complete redeclaration chain. 2956 if (GlobalID != CanonID && 2957 GlobalID - NUM_PREDEF_DECL_IDS >= M.BaseDeclID && 2958 GlobalID - NUM_PREDEF_DECL_IDS < M.BaseDeclID + M.LocalNumDecls) { 2959 addToChain(Reader.GetDecl(GlobalID)); 2960 } 2961 2962 return; 2963 } 2964 2965 // Dig out all of the redeclarations. 2966 unsigned Offset = Result->Offset; 2967 unsigned N = M.RedeclarationChains[Offset]; 2968 M.RedeclarationChains[Offset++] = 0; // Don't try to deserialize again 2969 for (unsigned I = 0; I != N; ++I) 2970 addToChain(Reader.GetLocalDecl(M, M.RedeclarationChains[Offset++])); 2971 } 2972 2973 bool visit(ModuleFile &M) { 2974 // Visit each of the declarations. 2975 for (unsigned I = 0, N = SearchDecls.size(); I != N; ++I) 2976 searchForID(M, SearchDecls[I]); 2977 return false; 2978 } 2979 2980 ArrayRef<Decl *> getChain() const { 2981 return Chain; 2982 } 2983 }; 2984 } 2985 2986 void ASTReader::loadPendingDeclChain(serialization::GlobalDeclID ID) { 2987 Decl *D = GetDecl(ID); 2988 Decl *CanonDecl = D->getCanonicalDecl(); 2989 2990 // Determine the set of declaration IDs we'll be searching for. 2991 SmallVector<DeclID, 1> SearchDecls; 2992 GlobalDeclID CanonID = 0; 2993 if (D == CanonDecl) { 2994 SearchDecls.push_back(ID); // Always first. 2995 CanonID = ID; 2996 } 2997 MergedDeclsMap::iterator MergedPos = combineStoredMergedDecls(CanonDecl, ID); 2998 if (MergedPos != MergedDecls.end()) 2999 SearchDecls.append(MergedPos->second.begin(), MergedPos->second.end()); 3000 3001 // Build up the list of redeclarations. 3002 RedeclChainVisitor Visitor(*this, SearchDecls, RedeclsDeserialized, CanonID); 3003 ModuleMgr.visitDepthFirst(&RedeclChainVisitor::visit, &Visitor); 3004 3005 // Retrieve the chains. 3006 ArrayRef<Decl *> Chain = Visitor.getChain(); 3007 if (Chain.empty()) 3008 return; 3009 3010 // Hook up the chains. 3011 Decl *MostRecent = CanonDecl->getMostRecentDecl(); 3012 for (unsigned I = 0, N = Chain.size(); I != N; ++I) { 3013 if (Chain[I] == CanonDecl) 3014 continue; 3015 3016 ASTDeclReader::attachPreviousDecl(Chain[I], MostRecent); 3017 MostRecent = Chain[I]; 3018 } 3019 3020 ASTDeclReader::attachLatestDecl(CanonDecl, MostRecent); 3021 } 3022 3023 namespace { 3024 /// \brief Given an ObjC interface, goes through the modules and links to the 3025 /// interface all the categories for it. 3026 class ObjCCategoriesVisitor { 3027 ASTReader &Reader; 3028 serialization::GlobalDeclID InterfaceID; 3029 ObjCInterfaceDecl *Interface; 3030 llvm::SmallPtrSet<ObjCCategoryDecl *, 16> &Deserialized; 3031 unsigned PreviousGeneration; 3032 ObjCCategoryDecl *Tail; 3033 llvm::DenseMap<DeclarationName, ObjCCategoryDecl *> NameCategoryMap; 3034 3035 void add(ObjCCategoryDecl *Cat) { 3036 // Only process each category once. 3037 if (!Deserialized.erase(Cat)) 3038 return; 3039 3040 // Check for duplicate categories. 3041 if (Cat->getDeclName()) { 3042 ObjCCategoryDecl *&Existing = NameCategoryMap[Cat->getDeclName()]; 3043 if (Existing && 3044 Reader.getOwningModuleFile(Existing) 3045 != Reader.getOwningModuleFile(Cat)) { 3046 // FIXME: We should not warn for duplicates in diamond: 3047 // 3048 // MT // 3049 // / \ // 3050 // ML MR // 3051 // \ / // 3052 // MB // 3053 // 3054 // If there are duplicates in ML/MR, there will be warning when 3055 // creating MB *and* when importing MB. We should not warn when 3056 // importing. 3057 Reader.Diag(Cat->getLocation(), diag::warn_dup_category_def) 3058 << Interface->getDeclName() << Cat->getDeclName(); 3059 Reader.Diag(Existing->getLocation(), diag::note_previous_definition); 3060 } else if (!Existing) { 3061 // Record this category. 3062 Existing = Cat; 3063 } 3064 } 3065 3066 // Add this category to the end of the chain. 3067 if (Tail) 3068 ASTDeclReader::setNextObjCCategory(Tail, Cat); 3069 else 3070 Interface->setCategoryListRaw(Cat); 3071 Tail = Cat; 3072 } 3073 3074 public: 3075 ObjCCategoriesVisitor(ASTReader &Reader, 3076 serialization::GlobalDeclID InterfaceID, 3077 ObjCInterfaceDecl *Interface, 3078 llvm::SmallPtrSet<ObjCCategoryDecl *, 16> &Deserialized, 3079 unsigned PreviousGeneration) 3080 : Reader(Reader), InterfaceID(InterfaceID), Interface(Interface), 3081 Deserialized(Deserialized), PreviousGeneration(PreviousGeneration), 3082 Tail(nullptr) 3083 { 3084 // Populate the name -> category map with the set of known categories. 3085 for (auto *Cat : Interface->known_categories()) { 3086 if (Cat->getDeclName()) 3087 NameCategoryMap[Cat->getDeclName()] = Cat; 3088 3089 // Keep track of the tail of the category list. 3090 Tail = Cat; 3091 } 3092 } 3093 3094 static bool visit(ModuleFile &M, void *UserData) { 3095 return static_cast<ObjCCategoriesVisitor *>(UserData)->visit(M); 3096 } 3097 3098 bool visit(ModuleFile &M) { 3099 // If we've loaded all of the category information we care about from 3100 // this module file, we're done. 3101 if (M.Generation <= PreviousGeneration) 3102 return true; 3103 3104 // Map global ID of the definition down to the local ID used in this 3105 // module file. If there is no such mapping, we'll find nothing here 3106 // (or in any module it imports). 3107 DeclID LocalID = Reader.mapGlobalIDToModuleFileGlobalID(M, InterfaceID); 3108 if (!LocalID) 3109 return true; 3110 3111 // Perform a binary search to find the local redeclarations for this 3112 // declaration (if any). 3113 const ObjCCategoriesInfo Compare = { LocalID, 0 }; 3114 const ObjCCategoriesInfo *Result 3115 = std::lower_bound(M.ObjCCategoriesMap, 3116 M.ObjCCategoriesMap + M.LocalNumObjCCategoriesInMap, 3117 Compare); 3118 if (Result == M.ObjCCategoriesMap + M.LocalNumObjCCategoriesInMap || 3119 Result->DefinitionID != LocalID) { 3120 // We didn't find anything. If the class definition is in this module 3121 // file, then the module files it depends on cannot have any categories, 3122 // so suppress further lookup. 3123 return Reader.isDeclIDFromModule(InterfaceID, M); 3124 } 3125 3126 // We found something. Dig out all of the categories. 3127 unsigned Offset = Result->Offset; 3128 unsigned N = M.ObjCCategories[Offset]; 3129 M.ObjCCategories[Offset++] = 0; // Don't try to deserialize again 3130 for (unsigned I = 0; I != N; ++I) 3131 add(cast_or_null<ObjCCategoryDecl>( 3132 Reader.GetLocalDecl(M, M.ObjCCategories[Offset++]))); 3133 return true; 3134 } 3135 }; 3136 } 3137 3138 void ASTReader::loadObjCCategories(serialization::GlobalDeclID ID, 3139 ObjCInterfaceDecl *D, 3140 unsigned PreviousGeneration) { 3141 ObjCCategoriesVisitor Visitor(*this, ID, D, CategoriesDeserialized, 3142 PreviousGeneration); 3143 ModuleMgr.visit(ObjCCategoriesVisitor::visit, &Visitor); 3144 } 3145 3146 void ASTDeclReader::UpdateDecl(Decl *D, ModuleFile &ModuleFile, 3147 const RecordData &Record) { 3148 while (Idx < Record.size()) { 3149 switch ((DeclUpdateKind)Record[Idx++]) { 3150 case UPD_CXX_ADDED_IMPLICIT_MEMBER: { 3151 Decl *MD = Reader.ReadDecl(ModuleFile, Record, Idx); 3152 assert(MD && "couldn't read decl from update record"); 3153 cast<CXXRecordDecl>(D)->addedMember(MD); 3154 break; 3155 } 3156 3157 case UPD_CXX_ADDED_TEMPLATE_SPECIALIZATION: 3158 // It will be added to the template's specializations set when loaded. 3159 (void)Reader.ReadDecl(ModuleFile, Record, Idx); 3160 break; 3161 3162 case UPD_CXX_ADDED_ANONYMOUS_NAMESPACE: { 3163 NamespaceDecl *Anon 3164 = Reader.ReadDeclAs<NamespaceDecl>(ModuleFile, Record, Idx); 3165 3166 // Each module has its own anonymous namespace, which is disjoint from 3167 // any other module's anonymous namespaces, so don't attach the anonymous 3168 // namespace at all. 3169 if (ModuleFile.Kind != MK_Module) { 3170 if (TranslationUnitDecl *TU = dyn_cast<TranslationUnitDecl>(D)) 3171 TU->setAnonymousNamespace(Anon); 3172 else 3173 cast<NamespaceDecl>(D)->setAnonymousNamespace(Anon); 3174 } 3175 break; 3176 } 3177 3178 case UPD_CXX_INSTANTIATED_STATIC_DATA_MEMBER: 3179 cast<VarDecl>(D)->getMemberSpecializationInfo()->setPointOfInstantiation( 3180 Reader.ReadSourceLocation(ModuleFile, Record, Idx)); 3181 break; 3182 3183 case UPD_CXX_INSTANTIATED_FUNCTION_DEFINITION: { 3184 FunctionDecl *FD = cast<FunctionDecl>(D); 3185 if (Reader.PendingBodies[FD]) { 3186 // FIXME: Maybe check for ODR violations. 3187 // It's safe to stop now because this update record is always last. 3188 return; 3189 } 3190 3191 if (Record[Idx++]) { 3192 // Maintain AST consistency: any later redeclarations of this function 3193 // are inline if this one is. (We might have merged another declaration 3194 // into this one.) 3195 for (auto *D = FD->getMostRecentDecl(); /**/; 3196 D = D->getPreviousDecl()) { 3197 D->setImplicitlyInline(); 3198 if (D == FD) 3199 break; 3200 } 3201 } 3202 FD->setInnerLocStart(Reader.ReadSourceLocation(ModuleFile, Record, Idx)); 3203 if (auto *CD = dyn_cast<CXXConstructorDecl>(FD)) 3204 std::tie(CD->CtorInitializers, CD->NumCtorInitializers) = 3205 Reader.ReadCXXCtorInitializers(ModuleFile, Record, Idx); 3206 // Store the offset of the body so we can lazily load it later. 3207 Reader.PendingBodies[FD] = GetCurrentCursorOffset(); 3208 HasPendingBody = true; 3209 assert(Idx == Record.size() && "lazy body must be last"); 3210 break; 3211 } 3212 3213 case UPD_CXX_INSTANTIATED_CLASS_DEFINITION: { 3214 auto *RD = cast<CXXRecordDecl>(D); 3215 bool HadDefinition = RD->getDefinition(); 3216 ReadCXXRecordDefinition(RD); 3217 // Visible update is handled separately. 3218 uint64_t LexicalOffset = Record[Idx++]; 3219 if (!HadDefinition && LexicalOffset) { 3220 RD->setHasExternalLexicalStorage(true); 3221 Reader.ReadDeclContextStorage(ModuleFile, ModuleFile.DeclsCursor, 3222 std::make_pair(LexicalOffset, 0), 3223 ModuleFile.DeclContextInfos[RD]); 3224 } 3225 3226 auto TSK = (TemplateSpecializationKind)Record[Idx++]; 3227 SourceLocation POI = Reader.ReadSourceLocation(ModuleFile, Record, Idx); 3228 if (MemberSpecializationInfo *MSInfo = 3229 RD->getMemberSpecializationInfo()) { 3230 MSInfo->setTemplateSpecializationKind(TSK); 3231 MSInfo->setPointOfInstantiation(POI); 3232 } else { 3233 ClassTemplateSpecializationDecl *Spec = 3234 cast<ClassTemplateSpecializationDecl>(RD); 3235 Spec->setTemplateSpecializationKind(TSK); 3236 Spec->setPointOfInstantiation(POI); 3237 3238 if (Record[Idx++]) { 3239 auto PartialSpec = 3240 ReadDeclAs<ClassTemplatePartialSpecializationDecl>(Record, Idx); 3241 SmallVector<TemplateArgument, 8> TemplArgs; 3242 Reader.ReadTemplateArgumentList(TemplArgs, F, Record, Idx); 3243 auto *TemplArgList = TemplateArgumentList::CreateCopy( 3244 Reader.getContext(), TemplArgs.data(), TemplArgs.size()); 3245 Spec->setInstantiationOf(PartialSpec, TemplArgList); 3246 } 3247 } 3248 3249 RD->setTagKind((TagTypeKind)Record[Idx++]); 3250 RD->setLocation(Reader.ReadSourceLocation(ModuleFile, Record, Idx)); 3251 RD->setLocStart(Reader.ReadSourceLocation(ModuleFile, Record, Idx)); 3252 RD->setRBraceLoc(Reader.ReadSourceLocation(ModuleFile, Record, Idx)); 3253 3254 if (Record[Idx++]) { 3255 AttrVec Attrs; 3256 Reader.ReadAttributes(F, Attrs, Record, Idx); 3257 D->setAttrsImpl(Attrs, Reader.getContext()); 3258 } 3259 break; 3260 } 3261 3262 case UPD_CXX_RESOLVED_EXCEPTION_SPEC: { 3263 auto *FD = cast<FunctionDecl>(D); 3264 auto *FPT = FD->getType()->castAs<FunctionProtoType>(); 3265 auto EPI = FPT->getExtProtoInfo(); 3266 SmallVector<QualType, 8> ExceptionStorage; 3267 Reader.readExceptionSpec(ModuleFile, ExceptionStorage, EPI, Record, Idx); 3268 FD->setType(Reader.Context.getFunctionType(FPT->getReturnType(), 3269 FPT->getParamTypes(), EPI)); 3270 break; 3271 } 3272 3273 case UPD_CXX_DEDUCED_RETURN_TYPE: { 3274 FunctionDecl *FD = cast<FunctionDecl>(D); 3275 Reader.Context.adjustDeducedFunctionResultType( 3276 FD, Reader.readType(ModuleFile, Record, Idx)); 3277 break; 3278 } 3279 3280 case UPD_DECL_MARKED_USED: { 3281 // FIXME: This doesn't send the right notifications if there are 3282 // ASTMutationListeners other than an ASTWriter. 3283 D->Used = true; 3284 break; 3285 } 3286 3287 case UPD_MANGLING_NUMBER: 3288 Reader.Context.setManglingNumber(cast<NamedDecl>(D), Record[Idx++]); 3289 break; 3290 3291 case UPD_STATIC_LOCAL_NUMBER: 3292 Reader.Context.setStaticLocalNumber(cast<VarDecl>(D), Record[Idx++]); 3293 break; 3294 } 3295 } 3296 } 3297