1 //===- ASTImporter.cpp - Importing ASTs from other Contexts ---------------===// 2 // 3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 4 // See https://llvm.org/LICENSE.txt for license information. 5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 6 // 7 //===----------------------------------------------------------------------===// 8 // 9 // This file defines the ASTImporter class which imports AST nodes from one 10 // context into another context. 11 // 12 //===----------------------------------------------------------------------===// 13 14 #include "clang/AST/ASTImporter.h" 15 #include "clang/AST/ASTImporterSharedState.h" 16 #include "clang/AST/ASTContext.h" 17 #include "clang/AST/ASTDiagnostic.h" 18 #include "clang/AST/ASTStructuralEquivalence.h" 19 #include "clang/AST/Attr.h" 20 #include "clang/AST/Decl.h" 21 #include "clang/AST/DeclAccessPair.h" 22 #include "clang/AST/DeclBase.h" 23 #include "clang/AST/DeclCXX.h" 24 #include "clang/AST/DeclFriend.h" 25 #include "clang/AST/DeclGroup.h" 26 #include "clang/AST/DeclObjC.h" 27 #include "clang/AST/DeclTemplate.h" 28 #include "clang/AST/DeclVisitor.h" 29 #include "clang/AST/DeclarationName.h" 30 #include "clang/AST/Expr.h" 31 #include "clang/AST/ExprCXX.h" 32 #include "clang/AST/ExprObjC.h" 33 #include "clang/AST/ExternalASTSource.h" 34 #include "clang/AST/LambdaCapture.h" 35 #include "clang/AST/NestedNameSpecifier.h" 36 #include "clang/AST/OperationKinds.h" 37 #include "clang/AST/Stmt.h" 38 #include "clang/AST/StmtCXX.h" 39 #include "clang/AST/StmtObjC.h" 40 #include "clang/AST/StmtVisitor.h" 41 #include "clang/AST/TemplateBase.h" 42 #include "clang/AST/TemplateName.h" 43 #include "clang/AST/Type.h" 44 #include "clang/AST/TypeLoc.h" 45 #include "clang/AST/TypeVisitor.h" 46 #include "clang/AST/UnresolvedSet.h" 47 #include "clang/Basic/Builtins.h" 48 #include "clang/Basic/ExceptionSpecificationType.h" 49 #include "clang/Basic/FileManager.h" 50 #include "clang/Basic/IdentifierTable.h" 51 #include "clang/Basic/LLVM.h" 52 #include "clang/Basic/LangOptions.h" 53 #include "clang/Basic/SourceLocation.h" 54 #include "clang/Basic/SourceManager.h" 55 #include "clang/Basic/Specifiers.h" 56 #include "llvm/ADT/APSInt.h" 57 #include "llvm/ADT/ArrayRef.h" 58 #include "llvm/ADT/DenseMap.h" 59 #include "llvm/ADT/None.h" 60 #include "llvm/ADT/Optional.h" 61 #include "llvm/ADT/ScopeExit.h" 62 #include "llvm/ADT/STLExtras.h" 63 #include "llvm/ADT/SmallVector.h" 64 #include "llvm/Support/Casting.h" 65 #include "llvm/Support/ErrorHandling.h" 66 #include "llvm/Support/MemoryBuffer.h" 67 #include <algorithm> 68 #include <cassert> 69 #include <cstddef> 70 #include <memory> 71 #include <type_traits> 72 #include <utility> 73 74 namespace clang { 75 76 using llvm::make_error; 77 using llvm::Error; 78 using llvm::Expected; 79 using ExpectedTypePtr = llvm::Expected<const Type *>; 80 using ExpectedType = llvm::Expected<QualType>; 81 using ExpectedStmt = llvm::Expected<Stmt *>; 82 using ExpectedExpr = llvm::Expected<Expr *>; 83 using ExpectedDecl = llvm::Expected<Decl *>; 84 using ExpectedSLoc = llvm::Expected<SourceLocation>; 85 using ExpectedName = llvm::Expected<DeclarationName>; 86 87 std::string ImportError::toString() const { 88 // FIXME: Improve error texts. 89 switch (Error) { 90 case NameConflict: 91 return "NameConflict"; 92 case UnsupportedConstruct: 93 return "UnsupportedConstruct"; 94 case Unknown: 95 return "Unknown error"; 96 } 97 llvm_unreachable("Invalid error code."); 98 return "Invalid error code."; 99 } 100 101 void ImportError::log(raw_ostream &OS) const { 102 OS << toString(); 103 } 104 105 std::error_code ImportError::convertToErrorCode() const { 106 llvm_unreachable("Function not implemented."); 107 } 108 109 char ImportError::ID; 110 111 template <class T> 112 SmallVector<Decl *, 2> 113 getCanonicalForwardRedeclChain(Redeclarable<T>* D) { 114 SmallVector<Decl *, 2> Redecls; 115 for (auto *R : D->getFirstDecl()->redecls()) { 116 if (R != D->getFirstDecl()) 117 Redecls.push_back(R); 118 } 119 Redecls.push_back(D->getFirstDecl()); 120 std::reverse(Redecls.begin(), Redecls.end()); 121 return Redecls; 122 } 123 124 SmallVector<Decl*, 2> getCanonicalForwardRedeclChain(Decl* D) { 125 if (auto *FD = dyn_cast<FunctionDecl>(D)) 126 return getCanonicalForwardRedeclChain<FunctionDecl>(FD); 127 if (auto *VD = dyn_cast<VarDecl>(D)) 128 return getCanonicalForwardRedeclChain<VarDecl>(VD); 129 if (auto *TD = dyn_cast<TagDecl>(D)) 130 return getCanonicalForwardRedeclChain<TagDecl>(TD); 131 llvm_unreachable("Bad declaration kind"); 132 } 133 134 void updateFlags(const Decl *From, Decl *To) { 135 // Check if some flags or attrs are new in 'From' and copy into 'To'. 136 // FIXME: Other flags or attrs? 137 if (From->isUsed(false) && !To->isUsed(false)) 138 To->setIsUsed(); 139 } 140 141 class ASTNodeImporter : public TypeVisitor<ASTNodeImporter, ExpectedType>, 142 public DeclVisitor<ASTNodeImporter, ExpectedDecl>, 143 public StmtVisitor<ASTNodeImporter, ExpectedStmt> { 144 ASTImporter &Importer; 145 146 // Use this instead of Importer.importInto . 147 template <typename ImportT> 148 LLVM_NODISCARD Error importInto(ImportT &To, const ImportT &From) { 149 return Importer.importInto(To, From); 150 } 151 152 // Use this to import pointers of specific type. 153 template <typename ImportT> 154 LLVM_NODISCARD Error importInto(ImportT *&To, ImportT *From) { 155 auto ToOrErr = Importer.Import(From); 156 if (ToOrErr) 157 To = cast_or_null<ImportT>(*ToOrErr); 158 return ToOrErr.takeError(); 159 } 160 161 // Call the import function of ASTImporter for a baseclass of type `T` and 162 // cast the return value to `T`. 163 template <typename T> 164 auto import(T *From) 165 -> std::conditional_t<std::is_base_of<Type, T>::value, 166 Expected<const T *>, Expected<T *>> { 167 auto ToOrErr = Importer.Import(From); 168 if (!ToOrErr) 169 return ToOrErr.takeError(); 170 return cast_or_null<T>(*ToOrErr); 171 } 172 173 template <typename T> 174 auto import(const T *From) { 175 return import(const_cast<T *>(From)); 176 } 177 178 // Call the import function of ASTImporter for type `T`. 179 template <typename T> 180 Expected<T> import(const T &From) { 181 return Importer.Import(From); 182 } 183 184 // Import an Optional<T> by importing the contained T, if any. 185 template<typename T> 186 Expected<Optional<T>> import(Optional<T> From) { 187 if (!From) 188 return Optional<T>(); 189 return import(*From); 190 } 191 192 ExplicitSpecifier importExplicitSpecifier(Error &Err, 193 ExplicitSpecifier ESpec); 194 195 // Wrapper for an overload set. 196 template <typename ToDeclT> struct CallOverloadedCreateFun { 197 template <typename... Args> decltype(auto) operator()(Args &&... args) { 198 return ToDeclT::Create(std::forward<Args>(args)...); 199 } 200 }; 201 202 // Always use these functions to create a Decl during import. There are 203 // certain tasks which must be done after the Decl was created, e.g. we 204 // must immediately register that as an imported Decl. The parameter `ToD` 205 // will be set to the newly created Decl or if had been imported before 206 // then to the already imported Decl. Returns a bool value set to true if 207 // the `FromD` had been imported before. 208 template <typename ToDeclT, typename FromDeclT, typename... Args> 209 LLVM_NODISCARD bool GetImportedOrCreateDecl(ToDeclT *&ToD, FromDeclT *FromD, 210 Args &&... args) { 211 // There may be several overloads of ToDeclT::Create. We must make sure 212 // to call the one which would be chosen by the arguments, thus we use a 213 // wrapper for the overload set. 214 CallOverloadedCreateFun<ToDeclT> OC; 215 return GetImportedOrCreateSpecialDecl(ToD, OC, FromD, 216 std::forward<Args>(args)...); 217 } 218 // Use this overload if a special Type is needed to be created. E.g if we 219 // want to create a `TypeAliasDecl` and assign that to a `TypedefNameDecl` 220 // then: 221 // TypedefNameDecl *ToTypedef; 222 // GetImportedOrCreateDecl<TypeAliasDecl>(ToTypedef, FromD, ...); 223 template <typename NewDeclT, typename ToDeclT, typename FromDeclT, 224 typename... Args> 225 LLVM_NODISCARD bool GetImportedOrCreateDecl(ToDeclT *&ToD, FromDeclT *FromD, 226 Args &&... args) { 227 CallOverloadedCreateFun<NewDeclT> OC; 228 return GetImportedOrCreateSpecialDecl(ToD, OC, FromD, 229 std::forward<Args>(args)...); 230 } 231 // Use this version if a special create function must be 232 // used, e.g. CXXRecordDecl::CreateLambda . 233 template <typename ToDeclT, typename CreateFunT, typename FromDeclT, 234 typename... Args> 235 LLVM_NODISCARD bool 236 GetImportedOrCreateSpecialDecl(ToDeclT *&ToD, CreateFunT CreateFun, 237 FromDeclT *FromD, Args &&... args) { 238 if (Importer.getImportDeclErrorIfAny(FromD)) { 239 ToD = nullptr; 240 return true; // Already imported but with error. 241 } 242 ToD = cast_or_null<ToDeclT>(Importer.GetAlreadyImportedOrNull(FromD)); 243 if (ToD) 244 return true; // Already imported. 245 ToD = CreateFun(std::forward<Args>(args)...); 246 // Keep track of imported Decls. 247 Importer.RegisterImportedDecl(FromD, ToD); 248 InitializeImportedDecl(FromD, ToD); 249 return false; // A new Decl is created. 250 } 251 252 void InitializeImportedDecl(Decl *FromD, Decl *ToD) { 253 ToD->IdentifierNamespace = FromD->IdentifierNamespace; 254 if (FromD->isUsed()) 255 ToD->setIsUsed(); 256 if (FromD->isImplicit()) 257 ToD->setImplicit(); 258 } 259 260 // Check if we have found an existing definition. Returns with that 261 // definition if yes, otherwise returns null. 262 Decl *FindAndMapDefinition(FunctionDecl *D, FunctionDecl *FoundFunction) { 263 const FunctionDecl *Definition = nullptr; 264 if (D->doesThisDeclarationHaveABody() && 265 FoundFunction->hasBody(Definition)) 266 return Importer.MapImported(D, const_cast<FunctionDecl *>(Definition)); 267 return nullptr; 268 } 269 270 void addDeclToContexts(Decl *FromD, Decl *ToD) { 271 if (Importer.isMinimalImport()) { 272 // In minimal import case the decl must be added even if it is not 273 // contained in original context, for LLDB compatibility. 274 // FIXME: Check if a better solution is possible. 275 if (!FromD->getDescribedTemplate() && 276 FromD->getFriendObjectKind() == Decl::FOK_None) 277 ToD->getLexicalDeclContext()->addDeclInternal(ToD); 278 return; 279 } 280 281 DeclContext *FromDC = FromD->getDeclContext(); 282 DeclContext *FromLexicalDC = FromD->getLexicalDeclContext(); 283 DeclContext *ToDC = ToD->getDeclContext(); 284 DeclContext *ToLexicalDC = ToD->getLexicalDeclContext(); 285 286 bool Visible = false; 287 if (FromDC->containsDeclAndLoad(FromD)) { 288 ToDC->addDeclInternal(ToD); 289 Visible = true; 290 } 291 if (ToDC != ToLexicalDC && FromLexicalDC->containsDeclAndLoad(FromD)) { 292 ToLexicalDC->addDeclInternal(ToD); 293 Visible = true; 294 } 295 296 // If the Decl was added to any context, it was made already visible. 297 // Otherwise it is still possible that it should be visible. 298 if (!Visible) { 299 if (auto *FromNamed = dyn_cast<NamedDecl>(FromD)) { 300 auto *ToNamed = cast<NamedDecl>(ToD); 301 DeclContextLookupResult FromLookup = 302 FromDC->lookup(FromNamed->getDeclName()); 303 if (llvm::is_contained(FromLookup, FromNamed)) 304 ToDC->makeDeclVisibleInContext(ToNamed); 305 } 306 } 307 } 308 309 void updateLookupTableForTemplateParameters(TemplateParameterList &Params, 310 DeclContext *OldDC) { 311 ASTImporterLookupTable *LT = Importer.SharedState->getLookupTable(); 312 if (!LT) 313 return; 314 315 for (NamedDecl *TP : Params) 316 LT->update(TP, OldDC); 317 } 318 319 void updateLookupTableForTemplateParameters(TemplateParameterList &Params) { 320 updateLookupTableForTemplateParameters( 321 Params, Importer.getToContext().getTranslationUnitDecl()); 322 } 323 324 public: 325 explicit ASTNodeImporter(ASTImporter &Importer) : Importer(Importer) {} 326 327 using TypeVisitor<ASTNodeImporter, ExpectedType>::Visit; 328 using DeclVisitor<ASTNodeImporter, ExpectedDecl>::Visit; 329 using StmtVisitor<ASTNodeImporter, ExpectedStmt>::Visit; 330 331 // Importing types 332 ExpectedType VisitType(const Type *T); 333 ExpectedType VisitAtomicType(const AtomicType *T); 334 ExpectedType VisitBuiltinType(const BuiltinType *T); 335 ExpectedType VisitDecayedType(const DecayedType *T); 336 ExpectedType VisitComplexType(const ComplexType *T); 337 ExpectedType VisitPointerType(const PointerType *T); 338 ExpectedType VisitBlockPointerType(const BlockPointerType *T); 339 ExpectedType VisitLValueReferenceType(const LValueReferenceType *T); 340 ExpectedType VisitRValueReferenceType(const RValueReferenceType *T); 341 ExpectedType VisitMemberPointerType(const MemberPointerType *T); 342 ExpectedType VisitConstantArrayType(const ConstantArrayType *T); 343 ExpectedType VisitIncompleteArrayType(const IncompleteArrayType *T); 344 ExpectedType VisitVariableArrayType(const VariableArrayType *T); 345 ExpectedType VisitDependentSizedArrayType(const DependentSizedArrayType *T); 346 // FIXME: DependentSizedExtVectorType 347 ExpectedType VisitVectorType(const VectorType *T); 348 ExpectedType VisitExtVectorType(const ExtVectorType *T); 349 ExpectedType VisitFunctionNoProtoType(const FunctionNoProtoType *T); 350 ExpectedType VisitFunctionProtoType(const FunctionProtoType *T); 351 ExpectedType VisitUnresolvedUsingType(const UnresolvedUsingType *T); 352 ExpectedType VisitParenType(const ParenType *T); 353 ExpectedType VisitTypedefType(const TypedefType *T); 354 ExpectedType VisitTypeOfExprType(const TypeOfExprType *T); 355 // FIXME: DependentTypeOfExprType 356 ExpectedType VisitTypeOfType(const TypeOfType *T); 357 ExpectedType VisitDecltypeType(const DecltypeType *T); 358 ExpectedType VisitUnaryTransformType(const UnaryTransformType *T); 359 ExpectedType VisitAutoType(const AutoType *T); 360 ExpectedType VisitDeducedTemplateSpecializationType( 361 const DeducedTemplateSpecializationType *T); 362 ExpectedType VisitInjectedClassNameType(const InjectedClassNameType *T); 363 // FIXME: DependentDecltypeType 364 ExpectedType VisitRecordType(const RecordType *T); 365 ExpectedType VisitEnumType(const EnumType *T); 366 ExpectedType VisitAttributedType(const AttributedType *T); 367 ExpectedType VisitTemplateTypeParmType(const TemplateTypeParmType *T); 368 ExpectedType VisitSubstTemplateTypeParmType( 369 const SubstTemplateTypeParmType *T); 370 ExpectedType 371 VisitSubstTemplateTypeParmPackType(const SubstTemplateTypeParmPackType *T); 372 ExpectedType VisitTemplateSpecializationType( 373 const TemplateSpecializationType *T); 374 ExpectedType VisitElaboratedType(const ElaboratedType *T); 375 ExpectedType VisitDependentNameType(const DependentNameType *T); 376 ExpectedType VisitPackExpansionType(const PackExpansionType *T); 377 ExpectedType VisitDependentTemplateSpecializationType( 378 const DependentTemplateSpecializationType *T); 379 ExpectedType VisitObjCInterfaceType(const ObjCInterfaceType *T); 380 ExpectedType VisitObjCObjectType(const ObjCObjectType *T); 381 ExpectedType VisitObjCObjectPointerType(const ObjCObjectPointerType *T); 382 383 // Importing declarations 384 Error ImportDeclParts(NamedDecl *D, DeclarationName &Name, NamedDecl *&ToD, 385 SourceLocation &Loc); 386 Error ImportDeclParts( 387 NamedDecl *D, DeclContext *&DC, DeclContext *&LexicalDC, 388 DeclarationName &Name, NamedDecl *&ToD, SourceLocation &Loc); 389 Error ImportDefinitionIfNeeded(Decl *FromD, Decl *ToD = nullptr); 390 Error ImportDeclarationNameLoc( 391 const DeclarationNameInfo &From, DeclarationNameInfo &To); 392 Error ImportDeclContext(DeclContext *FromDC, bool ForceImport = false); 393 Error ImportDeclContext( 394 Decl *From, DeclContext *&ToDC, DeclContext *&ToLexicalDC); 395 Error ImportImplicitMethods(const CXXRecordDecl *From, CXXRecordDecl *To); 396 397 Expected<CXXCastPath> ImportCastPath(CastExpr *E); 398 Expected<APValue> ImportAPValue(const APValue &FromValue); 399 400 using Designator = DesignatedInitExpr::Designator; 401 402 /// What we should import from the definition. 403 enum ImportDefinitionKind { 404 /// Import the default subset of the definition, which might be 405 /// nothing (if minimal import is set) or might be everything (if minimal 406 /// import is not set). 407 IDK_Default, 408 /// Import everything. 409 IDK_Everything, 410 /// Import only the bare bones needed to establish a valid 411 /// DeclContext. 412 IDK_Basic 413 }; 414 415 bool shouldForceImportDeclContext(ImportDefinitionKind IDK) { 416 return IDK == IDK_Everything || 417 (IDK == IDK_Default && !Importer.isMinimalImport()); 418 } 419 420 Error ImportInitializer(VarDecl *From, VarDecl *To); 421 Error ImportDefinition( 422 RecordDecl *From, RecordDecl *To, 423 ImportDefinitionKind Kind = IDK_Default); 424 Error ImportDefinition( 425 EnumDecl *From, EnumDecl *To, 426 ImportDefinitionKind Kind = IDK_Default); 427 Error ImportDefinition( 428 ObjCInterfaceDecl *From, ObjCInterfaceDecl *To, 429 ImportDefinitionKind Kind = IDK_Default); 430 Error ImportDefinition( 431 ObjCProtocolDecl *From, ObjCProtocolDecl *To, 432 ImportDefinitionKind Kind = IDK_Default); 433 Error ImportTemplateArguments( 434 const TemplateArgument *FromArgs, unsigned NumFromArgs, 435 SmallVectorImpl<TemplateArgument> &ToArgs); 436 Expected<TemplateArgument> 437 ImportTemplateArgument(const TemplateArgument &From); 438 439 template <typename InContainerTy> 440 Error ImportTemplateArgumentListInfo( 441 const InContainerTy &Container, TemplateArgumentListInfo &ToTAInfo); 442 443 template<typename InContainerTy> 444 Error ImportTemplateArgumentListInfo( 445 SourceLocation FromLAngleLoc, SourceLocation FromRAngleLoc, 446 const InContainerTy &Container, TemplateArgumentListInfo &Result); 447 448 using TemplateArgsTy = SmallVector<TemplateArgument, 8>; 449 using FunctionTemplateAndArgsTy = 450 std::tuple<FunctionTemplateDecl *, TemplateArgsTy>; 451 Expected<FunctionTemplateAndArgsTy> 452 ImportFunctionTemplateWithTemplateArgsFromSpecialization( 453 FunctionDecl *FromFD); 454 Error ImportTemplateParameterLists(const DeclaratorDecl *FromD, 455 DeclaratorDecl *ToD); 456 457 Error ImportTemplateInformation(FunctionDecl *FromFD, FunctionDecl *ToFD); 458 459 Error ImportFunctionDeclBody(FunctionDecl *FromFD, FunctionDecl *ToFD); 460 461 Error ImportDefaultArgOfParmVarDecl(const ParmVarDecl *FromParam, 462 ParmVarDecl *ToParam); 463 464 Expected<InheritedConstructor> 465 ImportInheritedConstructor(const InheritedConstructor &From); 466 467 template <typename T> 468 bool hasSameVisibilityContextAndLinkage(T *Found, T *From); 469 470 bool IsStructuralMatch(Decl *From, Decl *To, bool Complain = true); 471 ExpectedDecl VisitDecl(Decl *D); 472 ExpectedDecl VisitImportDecl(ImportDecl *D); 473 ExpectedDecl VisitEmptyDecl(EmptyDecl *D); 474 ExpectedDecl VisitAccessSpecDecl(AccessSpecDecl *D); 475 ExpectedDecl VisitStaticAssertDecl(StaticAssertDecl *D); 476 ExpectedDecl VisitTranslationUnitDecl(TranslationUnitDecl *D); 477 ExpectedDecl VisitBindingDecl(BindingDecl *D); 478 ExpectedDecl VisitNamespaceDecl(NamespaceDecl *D); 479 ExpectedDecl VisitNamespaceAliasDecl(NamespaceAliasDecl *D); 480 ExpectedDecl VisitTypedefNameDecl(TypedefNameDecl *D, bool IsAlias); 481 ExpectedDecl VisitTypedefDecl(TypedefDecl *D); 482 ExpectedDecl VisitTypeAliasDecl(TypeAliasDecl *D); 483 ExpectedDecl VisitTypeAliasTemplateDecl(TypeAliasTemplateDecl *D); 484 ExpectedDecl VisitLabelDecl(LabelDecl *D); 485 ExpectedDecl VisitEnumDecl(EnumDecl *D); 486 ExpectedDecl VisitRecordDecl(RecordDecl *D); 487 ExpectedDecl VisitEnumConstantDecl(EnumConstantDecl *D); 488 ExpectedDecl VisitFunctionDecl(FunctionDecl *D); 489 ExpectedDecl VisitCXXMethodDecl(CXXMethodDecl *D); 490 ExpectedDecl VisitCXXConstructorDecl(CXXConstructorDecl *D); 491 ExpectedDecl VisitCXXDestructorDecl(CXXDestructorDecl *D); 492 ExpectedDecl VisitCXXConversionDecl(CXXConversionDecl *D); 493 ExpectedDecl VisitCXXDeductionGuideDecl(CXXDeductionGuideDecl *D); 494 ExpectedDecl VisitFieldDecl(FieldDecl *D); 495 ExpectedDecl VisitIndirectFieldDecl(IndirectFieldDecl *D); 496 ExpectedDecl VisitFriendDecl(FriendDecl *D); 497 ExpectedDecl VisitObjCIvarDecl(ObjCIvarDecl *D); 498 ExpectedDecl VisitVarDecl(VarDecl *D); 499 ExpectedDecl VisitImplicitParamDecl(ImplicitParamDecl *D); 500 ExpectedDecl VisitParmVarDecl(ParmVarDecl *D); 501 ExpectedDecl VisitObjCMethodDecl(ObjCMethodDecl *D); 502 ExpectedDecl VisitObjCTypeParamDecl(ObjCTypeParamDecl *D); 503 ExpectedDecl VisitObjCCategoryDecl(ObjCCategoryDecl *D); 504 ExpectedDecl VisitObjCProtocolDecl(ObjCProtocolDecl *D); 505 ExpectedDecl VisitLinkageSpecDecl(LinkageSpecDecl *D); 506 ExpectedDecl VisitUsingDecl(UsingDecl *D); 507 ExpectedDecl VisitUsingShadowDecl(UsingShadowDecl *D); 508 ExpectedDecl VisitUsingDirectiveDecl(UsingDirectiveDecl *D); 509 ExpectedDecl ImportUsingShadowDecls(BaseUsingDecl *D, BaseUsingDecl *ToSI); 510 ExpectedDecl VisitUsingEnumDecl(UsingEnumDecl *D); 511 ExpectedDecl VisitUnresolvedUsingValueDecl(UnresolvedUsingValueDecl *D); 512 ExpectedDecl VisitUnresolvedUsingTypenameDecl(UnresolvedUsingTypenameDecl *D); 513 ExpectedDecl VisitBuiltinTemplateDecl(BuiltinTemplateDecl *D); 514 ExpectedDecl 515 VisitLifetimeExtendedTemporaryDecl(LifetimeExtendedTemporaryDecl *D); 516 517 Expected<ObjCTypeParamList *> 518 ImportObjCTypeParamList(ObjCTypeParamList *list); 519 520 ExpectedDecl VisitObjCInterfaceDecl(ObjCInterfaceDecl *D); 521 ExpectedDecl VisitObjCCategoryImplDecl(ObjCCategoryImplDecl *D); 522 ExpectedDecl VisitObjCImplementationDecl(ObjCImplementationDecl *D); 523 ExpectedDecl VisitObjCPropertyDecl(ObjCPropertyDecl *D); 524 ExpectedDecl VisitObjCPropertyImplDecl(ObjCPropertyImplDecl *D); 525 ExpectedDecl VisitTemplateTypeParmDecl(TemplateTypeParmDecl *D); 526 ExpectedDecl VisitNonTypeTemplateParmDecl(NonTypeTemplateParmDecl *D); 527 ExpectedDecl VisitTemplateTemplateParmDecl(TemplateTemplateParmDecl *D); 528 ExpectedDecl VisitClassTemplateDecl(ClassTemplateDecl *D); 529 ExpectedDecl VisitClassTemplateSpecializationDecl( 530 ClassTemplateSpecializationDecl *D); 531 ExpectedDecl VisitVarTemplateDecl(VarTemplateDecl *D); 532 ExpectedDecl VisitVarTemplateSpecializationDecl(VarTemplateSpecializationDecl *D); 533 ExpectedDecl VisitFunctionTemplateDecl(FunctionTemplateDecl *D); 534 535 // Importing statements 536 ExpectedStmt VisitStmt(Stmt *S); 537 ExpectedStmt VisitGCCAsmStmt(GCCAsmStmt *S); 538 ExpectedStmt VisitDeclStmt(DeclStmt *S); 539 ExpectedStmt VisitNullStmt(NullStmt *S); 540 ExpectedStmt VisitCompoundStmt(CompoundStmt *S); 541 ExpectedStmt VisitCaseStmt(CaseStmt *S); 542 ExpectedStmt VisitDefaultStmt(DefaultStmt *S); 543 ExpectedStmt VisitLabelStmt(LabelStmt *S); 544 ExpectedStmt VisitAttributedStmt(AttributedStmt *S); 545 ExpectedStmt VisitIfStmt(IfStmt *S); 546 ExpectedStmt VisitSwitchStmt(SwitchStmt *S); 547 ExpectedStmt VisitWhileStmt(WhileStmt *S); 548 ExpectedStmt VisitDoStmt(DoStmt *S); 549 ExpectedStmt VisitForStmt(ForStmt *S); 550 ExpectedStmt VisitGotoStmt(GotoStmt *S); 551 ExpectedStmt VisitIndirectGotoStmt(IndirectGotoStmt *S); 552 ExpectedStmt VisitContinueStmt(ContinueStmt *S); 553 ExpectedStmt VisitBreakStmt(BreakStmt *S); 554 ExpectedStmt VisitReturnStmt(ReturnStmt *S); 555 // FIXME: MSAsmStmt 556 // FIXME: SEHExceptStmt 557 // FIXME: SEHFinallyStmt 558 // FIXME: SEHTryStmt 559 // FIXME: SEHLeaveStmt 560 // FIXME: CapturedStmt 561 ExpectedStmt VisitCXXCatchStmt(CXXCatchStmt *S); 562 ExpectedStmt VisitCXXTryStmt(CXXTryStmt *S); 563 ExpectedStmt VisitCXXForRangeStmt(CXXForRangeStmt *S); 564 // FIXME: MSDependentExistsStmt 565 ExpectedStmt VisitObjCForCollectionStmt(ObjCForCollectionStmt *S); 566 ExpectedStmt VisitObjCAtCatchStmt(ObjCAtCatchStmt *S); 567 ExpectedStmt VisitObjCAtFinallyStmt(ObjCAtFinallyStmt *S); 568 ExpectedStmt VisitObjCAtTryStmt(ObjCAtTryStmt *S); 569 ExpectedStmt VisitObjCAtSynchronizedStmt(ObjCAtSynchronizedStmt *S); 570 ExpectedStmt VisitObjCAtThrowStmt(ObjCAtThrowStmt *S); 571 ExpectedStmt VisitObjCAutoreleasePoolStmt(ObjCAutoreleasePoolStmt *S); 572 573 // Importing expressions 574 ExpectedStmt VisitExpr(Expr *E); 575 ExpectedStmt VisitSourceLocExpr(SourceLocExpr *E); 576 ExpectedStmt VisitVAArgExpr(VAArgExpr *E); 577 ExpectedStmt VisitChooseExpr(ChooseExpr *E); 578 ExpectedStmt VisitShuffleVectorExpr(ShuffleVectorExpr *E); 579 ExpectedStmt VisitGNUNullExpr(GNUNullExpr *E); 580 ExpectedStmt VisitGenericSelectionExpr(GenericSelectionExpr *E); 581 ExpectedStmt VisitPredefinedExpr(PredefinedExpr *E); 582 ExpectedStmt VisitDeclRefExpr(DeclRefExpr *E); 583 ExpectedStmt VisitImplicitValueInitExpr(ImplicitValueInitExpr *E); 584 ExpectedStmt VisitDesignatedInitExpr(DesignatedInitExpr *E); 585 ExpectedStmt VisitCXXNullPtrLiteralExpr(CXXNullPtrLiteralExpr *E); 586 ExpectedStmt VisitIntegerLiteral(IntegerLiteral *E); 587 ExpectedStmt VisitFloatingLiteral(FloatingLiteral *E); 588 ExpectedStmt VisitImaginaryLiteral(ImaginaryLiteral *E); 589 ExpectedStmt VisitFixedPointLiteral(FixedPointLiteral *E); 590 ExpectedStmt VisitCharacterLiteral(CharacterLiteral *E); 591 ExpectedStmt VisitStringLiteral(StringLiteral *E); 592 ExpectedStmt VisitCompoundLiteralExpr(CompoundLiteralExpr *E); 593 ExpectedStmt VisitAtomicExpr(AtomicExpr *E); 594 ExpectedStmt VisitAddrLabelExpr(AddrLabelExpr *E); 595 ExpectedStmt VisitConstantExpr(ConstantExpr *E); 596 ExpectedStmt VisitParenExpr(ParenExpr *E); 597 ExpectedStmt VisitParenListExpr(ParenListExpr *E); 598 ExpectedStmt VisitStmtExpr(StmtExpr *E); 599 ExpectedStmt VisitUnaryOperator(UnaryOperator *E); 600 ExpectedStmt VisitUnaryExprOrTypeTraitExpr(UnaryExprOrTypeTraitExpr *E); 601 ExpectedStmt VisitBinaryOperator(BinaryOperator *E); 602 ExpectedStmt VisitConditionalOperator(ConditionalOperator *E); 603 ExpectedStmt VisitBinaryConditionalOperator(BinaryConditionalOperator *E); 604 ExpectedStmt VisitOpaqueValueExpr(OpaqueValueExpr *E); 605 ExpectedStmt VisitArrayTypeTraitExpr(ArrayTypeTraitExpr *E); 606 ExpectedStmt VisitExpressionTraitExpr(ExpressionTraitExpr *E); 607 ExpectedStmt VisitArraySubscriptExpr(ArraySubscriptExpr *E); 608 ExpectedStmt VisitCompoundAssignOperator(CompoundAssignOperator *E); 609 ExpectedStmt VisitImplicitCastExpr(ImplicitCastExpr *E); 610 ExpectedStmt VisitExplicitCastExpr(ExplicitCastExpr *E); 611 ExpectedStmt VisitOffsetOfExpr(OffsetOfExpr *OE); 612 ExpectedStmt VisitCXXThrowExpr(CXXThrowExpr *E); 613 ExpectedStmt VisitCXXNoexceptExpr(CXXNoexceptExpr *E); 614 ExpectedStmt VisitCXXDefaultArgExpr(CXXDefaultArgExpr *E); 615 ExpectedStmt VisitCXXScalarValueInitExpr(CXXScalarValueInitExpr *E); 616 ExpectedStmt VisitCXXBindTemporaryExpr(CXXBindTemporaryExpr *E); 617 ExpectedStmt VisitCXXTemporaryObjectExpr(CXXTemporaryObjectExpr *E); 618 ExpectedStmt VisitMaterializeTemporaryExpr(MaterializeTemporaryExpr *E); 619 ExpectedStmt VisitPackExpansionExpr(PackExpansionExpr *E); 620 ExpectedStmt VisitSizeOfPackExpr(SizeOfPackExpr *E); 621 ExpectedStmt VisitCXXNewExpr(CXXNewExpr *E); 622 ExpectedStmt VisitCXXDeleteExpr(CXXDeleteExpr *E); 623 ExpectedStmt VisitCXXConstructExpr(CXXConstructExpr *E); 624 ExpectedStmt VisitCXXMemberCallExpr(CXXMemberCallExpr *E); 625 ExpectedStmt VisitCXXDependentScopeMemberExpr(CXXDependentScopeMemberExpr *E); 626 ExpectedStmt VisitDependentScopeDeclRefExpr(DependentScopeDeclRefExpr *E); 627 ExpectedStmt VisitCXXUnresolvedConstructExpr(CXXUnresolvedConstructExpr *E); 628 ExpectedStmt VisitUnresolvedLookupExpr(UnresolvedLookupExpr *E); 629 ExpectedStmt VisitUnresolvedMemberExpr(UnresolvedMemberExpr *E); 630 ExpectedStmt VisitExprWithCleanups(ExprWithCleanups *E); 631 ExpectedStmt VisitCXXThisExpr(CXXThisExpr *E); 632 ExpectedStmt VisitCXXBoolLiteralExpr(CXXBoolLiteralExpr *E); 633 ExpectedStmt VisitCXXPseudoDestructorExpr(CXXPseudoDestructorExpr *E); 634 ExpectedStmt VisitMemberExpr(MemberExpr *E); 635 ExpectedStmt VisitCallExpr(CallExpr *E); 636 ExpectedStmt VisitLambdaExpr(LambdaExpr *LE); 637 ExpectedStmt VisitInitListExpr(InitListExpr *E); 638 ExpectedStmt VisitCXXStdInitializerListExpr(CXXStdInitializerListExpr *E); 639 ExpectedStmt VisitCXXInheritedCtorInitExpr(CXXInheritedCtorInitExpr *E); 640 ExpectedStmt VisitArrayInitLoopExpr(ArrayInitLoopExpr *E); 641 ExpectedStmt VisitArrayInitIndexExpr(ArrayInitIndexExpr *E); 642 ExpectedStmt VisitCXXDefaultInitExpr(CXXDefaultInitExpr *E); 643 ExpectedStmt VisitCXXNamedCastExpr(CXXNamedCastExpr *E); 644 ExpectedStmt VisitSubstNonTypeTemplateParmExpr(SubstNonTypeTemplateParmExpr *E); 645 ExpectedStmt VisitTypeTraitExpr(TypeTraitExpr *E); 646 ExpectedStmt VisitCXXTypeidExpr(CXXTypeidExpr *E); 647 ExpectedStmt VisitCXXFoldExpr(CXXFoldExpr *E); 648 649 // Helper for chaining together multiple imports. If an error is detected, 650 // subsequent imports will return default constructed nodes, so that failure 651 // can be detected with a single conditional branch after a sequence of 652 // imports. 653 template <typename T> T importChecked(Error &Err, const T &From) { 654 // Don't attempt to import nodes if we hit an error earlier. 655 if (Err) 656 return T{}; 657 Expected<T> MaybeVal = import(From); 658 if (!MaybeVal) { 659 Err = MaybeVal.takeError(); 660 return T{}; 661 } 662 return *MaybeVal; 663 } 664 665 template<typename IIter, typename OIter> 666 Error ImportArrayChecked(IIter Ibegin, IIter Iend, OIter Obegin) { 667 using ItemT = std::remove_reference_t<decltype(*Obegin)>; 668 for (; Ibegin != Iend; ++Ibegin, ++Obegin) { 669 Expected<ItemT> ToOrErr = import(*Ibegin); 670 if (!ToOrErr) 671 return ToOrErr.takeError(); 672 *Obegin = *ToOrErr; 673 } 674 return Error::success(); 675 } 676 677 // Import every item from a container structure into an output container. 678 // If error occurs, stops at first error and returns the error. 679 // The output container should have space for all needed elements (it is not 680 // expanded, new items are put into from the beginning). 681 template<typename InContainerTy, typename OutContainerTy> 682 Error ImportContainerChecked( 683 const InContainerTy &InContainer, OutContainerTy &OutContainer) { 684 return ImportArrayChecked( 685 InContainer.begin(), InContainer.end(), OutContainer.begin()); 686 } 687 688 template<typename InContainerTy, typename OIter> 689 Error ImportArrayChecked(const InContainerTy &InContainer, OIter Obegin) { 690 return ImportArrayChecked(InContainer.begin(), InContainer.end(), Obegin); 691 } 692 693 Error ImportOverriddenMethods(CXXMethodDecl *ToMethod, 694 CXXMethodDecl *FromMethod); 695 696 Expected<FunctionDecl *> FindFunctionTemplateSpecialization( 697 FunctionDecl *FromFD); 698 699 // Returns true if the given function has a placeholder return type and 700 // that type is declared inside the body of the function. 701 // E.g. auto f() { struct X{}; return X(); } 702 bool hasAutoReturnTypeDeclaredInside(FunctionDecl *D); 703 }; 704 705 template <typename InContainerTy> 706 Error ASTNodeImporter::ImportTemplateArgumentListInfo( 707 SourceLocation FromLAngleLoc, SourceLocation FromRAngleLoc, 708 const InContainerTy &Container, TemplateArgumentListInfo &Result) { 709 auto ToLAngleLocOrErr = import(FromLAngleLoc); 710 if (!ToLAngleLocOrErr) 711 return ToLAngleLocOrErr.takeError(); 712 auto ToRAngleLocOrErr = import(FromRAngleLoc); 713 if (!ToRAngleLocOrErr) 714 return ToRAngleLocOrErr.takeError(); 715 716 TemplateArgumentListInfo ToTAInfo(*ToLAngleLocOrErr, *ToRAngleLocOrErr); 717 if (auto Err = ImportTemplateArgumentListInfo(Container, ToTAInfo)) 718 return Err; 719 Result = ToTAInfo; 720 return Error::success(); 721 } 722 723 template <> 724 Error ASTNodeImporter::ImportTemplateArgumentListInfo<TemplateArgumentListInfo>( 725 const TemplateArgumentListInfo &From, TemplateArgumentListInfo &Result) { 726 return ImportTemplateArgumentListInfo( 727 From.getLAngleLoc(), From.getRAngleLoc(), From.arguments(), Result); 728 } 729 730 template <> 731 Error ASTNodeImporter::ImportTemplateArgumentListInfo< 732 ASTTemplateArgumentListInfo>( 733 const ASTTemplateArgumentListInfo &From, 734 TemplateArgumentListInfo &Result) { 735 return ImportTemplateArgumentListInfo( 736 From.LAngleLoc, From.RAngleLoc, From.arguments(), Result); 737 } 738 739 Expected<ASTNodeImporter::FunctionTemplateAndArgsTy> 740 ASTNodeImporter::ImportFunctionTemplateWithTemplateArgsFromSpecialization( 741 FunctionDecl *FromFD) { 742 assert(FromFD->getTemplatedKind() == 743 FunctionDecl::TK_FunctionTemplateSpecialization); 744 745 FunctionTemplateAndArgsTy Result; 746 747 auto *FTSInfo = FromFD->getTemplateSpecializationInfo(); 748 if (Error Err = importInto(std::get<0>(Result), FTSInfo->getTemplate())) 749 return std::move(Err); 750 751 // Import template arguments. 752 auto TemplArgs = FTSInfo->TemplateArguments->asArray(); 753 if (Error Err = ImportTemplateArguments(TemplArgs.data(), TemplArgs.size(), 754 std::get<1>(Result))) 755 return std::move(Err); 756 757 return Result; 758 } 759 760 template <> 761 Expected<TemplateParameterList *> 762 ASTNodeImporter::import(TemplateParameterList *From) { 763 SmallVector<NamedDecl *, 4> To(From->size()); 764 if (Error Err = ImportContainerChecked(*From, To)) 765 return std::move(Err); 766 767 ExpectedExpr ToRequiresClause = import(From->getRequiresClause()); 768 if (!ToRequiresClause) 769 return ToRequiresClause.takeError(); 770 771 auto ToTemplateLocOrErr = import(From->getTemplateLoc()); 772 if (!ToTemplateLocOrErr) 773 return ToTemplateLocOrErr.takeError(); 774 auto ToLAngleLocOrErr = import(From->getLAngleLoc()); 775 if (!ToLAngleLocOrErr) 776 return ToLAngleLocOrErr.takeError(); 777 auto ToRAngleLocOrErr = import(From->getRAngleLoc()); 778 if (!ToRAngleLocOrErr) 779 return ToRAngleLocOrErr.takeError(); 780 781 return TemplateParameterList::Create( 782 Importer.getToContext(), 783 *ToTemplateLocOrErr, 784 *ToLAngleLocOrErr, 785 To, 786 *ToRAngleLocOrErr, 787 *ToRequiresClause); 788 } 789 790 template <> 791 Expected<TemplateArgument> 792 ASTNodeImporter::import(const TemplateArgument &From) { 793 switch (From.getKind()) { 794 case TemplateArgument::Null: 795 return TemplateArgument(); 796 797 case TemplateArgument::Type: { 798 ExpectedType ToTypeOrErr = import(From.getAsType()); 799 if (!ToTypeOrErr) 800 return ToTypeOrErr.takeError(); 801 return TemplateArgument(*ToTypeOrErr); 802 } 803 804 case TemplateArgument::Integral: { 805 ExpectedType ToTypeOrErr = import(From.getIntegralType()); 806 if (!ToTypeOrErr) 807 return ToTypeOrErr.takeError(); 808 return TemplateArgument(From, *ToTypeOrErr); 809 } 810 811 case TemplateArgument::Declaration: { 812 Expected<ValueDecl *> ToOrErr = import(From.getAsDecl()); 813 if (!ToOrErr) 814 return ToOrErr.takeError(); 815 ExpectedType ToTypeOrErr = import(From.getParamTypeForDecl()); 816 if (!ToTypeOrErr) 817 return ToTypeOrErr.takeError(); 818 return TemplateArgument(*ToOrErr, *ToTypeOrErr); 819 } 820 821 case TemplateArgument::NullPtr: { 822 ExpectedType ToTypeOrErr = import(From.getNullPtrType()); 823 if (!ToTypeOrErr) 824 return ToTypeOrErr.takeError(); 825 return TemplateArgument(*ToTypeOrErr, /*isNullPtr*/true); 826 } 827 828 case TemplateArgument::Template: { 829 Expected<TemplateName> ToTemplateOrErr = import(From.getAsTemplate()); 830 if (!ToTemplateOrErr) 831 return ToTemplateOrErr.takeError(); 832 833 return TemplateArgument(*ToTemplateOrErr); 834 } 835 836 case TemplateArgument::TemplateExpansion: { 837 Expected<TemplateName> ToTemplateOrErr = 838 import(From.getAsTemplateOrTemplatePattern()); 839 if (!ToTemplateOrErr) 840 return ToTemplateOrErr.takeError(); 841 842 return TemplateArgument( 843 *ToTemplateOrErr, From.getNumTemplateExpansions()); 844 } 845 846 case TemplateArgument::Expression: 847 if (ExpectedExpr ToExpr = import(From.getAsExpr())) 848 return TemplateArgument(*ToExpr); 849 else 850 return ToExpr.takeError(); 851 852 case TemplateArgument::Pack: { 853 SmallVector<TemplateArgument, 2> ToPack; 854 ToPack.reserve(From.pack_size()); 855 if (Error Err = ImportTemplateArguments( 856 From.pack_begin(), From.pack_size(), ToPack)) 857 return std::move(Err); 858 859 return TemplateArgument( 860 llvm::makeArrayRef(ToPack).copy(Importer.getToContext())); 861 } 862 } 863 864 llvm_unreachable("Invalid template argument kind"); 865 } 866 867 template <> 868 Expected<TemplateArgumentLoc> 869 ASTNodeImporter::import(const TemplateArgumentLoc &TALoc) { 870 Expected<TemplateArgument> ArgOrErr = import(TALoc.getArgument()); 871 if (!ArgOrErr) 872 return ArgOrErr.takeError(); 873 TemplateArgument Arg = *ArgOrErr; 874 875 TemplateArgumentLocInfo FromInfo = TALoc.getLocInfo(); 876 877 TemplateArgumentLocInfo ToInfo; 878 if (Arg.getKind() == TemplateArgument::Expression) { 879 ExpectedExpr E = import(FromInfo.getAsExpr()); 880 if (!E) 881 return E.takeError(); 882 ToInfo = TemplateArgumentLocInfo(*E); 883 } else if (Arg.getKind() == TemplateArgument::Type) { 884 if (auto TSIOrErr = import(FromInfo.getAsTypeSourceInfo())) 885 ToInfo = TemplateArgumentLocInfo(*TSIOrErr); 886 else 887 return TSIOrErr.takeError(); 888 } else { 889 auto ToTemplateQualifierLocOrErr = 890 import(FromInfo.getTemplateQualifierLoc()); 891 if (!ToTemplateQualifierLocOrErr) 892 return ToTemplateQualifierLocOrErr.takeError(); 893 auto ToTemplateNameLocOrErr = import(FromInfo.getTemplateNameLoc()); 894 if (!ToTemplateNameLocOrErr) 895 return ToTemplateNameLocOrErr.takeError(); 896 auto ToTemplateEllipsisLocOrErr = 897 import(FromInfo.getTemplateEllipsisLoc()); 898 if (!ToTemplateEllipsisLocOrErr) 899 return ToTemplateEllipsisLocOrErr.takeError(); 900 ToInfo = TemplateArgumentLocInfo( 901 Importer.getToContext(), *ToTemplateQualifierLocOrErr, 902 *ToTemplateNameLocOrErr, *ToTemplateEllipsisLocOrErr); 903 } 904 905 return TemplateArgumentLoc(Arg, ToInfo); 906 } 907 908 template <> 909 Expected<DeclGroupRef> ASTNodeImporter::import(const DeclGroupRef &DG) { 910 if (DG.isNull()) 911 return DeclGroupRef::Create(Importer.getToContext(), nullptr, 0); 912 size_t NumDecls = DG.end() - DG.begin(); 913 SmallVector<Decl *, 1> ToDecls; 914 ToDecls.reserve(NumDecls); 915 for (Decl *FromD : DG) { 916 if (auto ToDOrErr = import(FromD)) 917 ToDecls.push_back(*ToDOrErr); 918 else 919 return ToDOrErr.takeError(); 920 } 921 return DeclGroupRef::Create(Importer.getToContext(), 922 ToDecls.begin(), 923 NumDecls); 924 } 925 926 template <> 927 Expected<ASTNodeImporter::Designator> 928 ASTNodeImporter::import(const Designator &D) { 929 if (D.isFieldDesignator()) { 930 IdentifierInfo *ToFieldName = Importer.Import(D.getFieldName()); 931 932 ExpectedSLoc ToDotLocOrErr = import(D.getDotLoc()); 933 if (!ToDotLocOrErr) 934 return ToDotLocOrErr.takeError(); 935 936 ExpectedSLoc ToFieldLocOrErr = import(D.getFieldLoc()); 937 if (!ToFieldLocOrErr) 938 return ToFieldLocOrErr.takeError(); 939 940 return Designator(ToFieldName, *ToDotLocOrErr, *ToFieldLocOrErr); 941 } 942 943 ExpectedSLoc ToLBracketLocOrErr = import(D.getLBracketLoc()); 944 if (!ToLBracketLocOrErr) 945 return ToLBracketLocOrErr.takeError(); 946 947 ExpectedSLoc ToRBracketLocOrErr = import(D.getRBracketLoc()); 948 if (!ToRBracketLocOrErr) 949 return ToRBracketLocOrErr.takeError(); 950 951 if (D.isArrayDesignator()) 952 return Designator(D.getFirstExprIndex(), 953 *ToLBracketLocOrErr, *ToRBracketLocOrErr); 954 955 ExpectedSLoc ToEllipsisLocOrErr = import(D.getEllipsisLoc()); 956 if (!ToEllipsisLocOrErr) 957 return ToEllipsisLocOrErr.takeError(); 958 959 assert(D.isArrayRangeDesignator()); 960 return Designator( 961 D.getFirstExprIndex(), *ToLBracketLocOrErr, *ToEllipsisLocOrErr, 962 *ToRBracketLocOrErr); 963 } 964 965 template <> 966 Expected<LambdaCapture> ASTNodeImporter::import(const LambdaCapture &From) { 967 VarDecl *Var = nullptr; 968 if (From.capturesVariable()) { 969 if (auto VarOrErr = import(From.getCapturedVar())) 970 Var = *VarOrErr; 971 else 972 return VarOrErr.takeError(); 973 } 974 975 auto LocationOrErr = import(From.getLocation()); 976 if (!LocationOrErr) 977 return LocationOrErr.takeError(); 978 979 SourceLocation EllipsisLoc; 980 if (From.isPackExpansion()) 981 if (Error Err = importInto(EllipsisLoc, From.getEllipsisLoc())) 982 return std::move(Err); 983 984 return LambdaCapture( 985 *LocationOrErr, From.isImplicit(), From.getCaptureKind(), Var, 986 EllipsisLoc); 987 } 988 989 template <typename T> 990 bool ASTNodeImporter::hasSameVisibilityContextAndLinkage(T *Found, T *From) { 991 if (Found->getLinkageInternal() != From->getLinkageInternal()) 992 return false; 993 994 if (From->hasExternalFormalLinkage()) 995 return Found->hasExternalFormalLinkage(); 996 if (Importer.GetFromTU(Found) != From->getTranslationUnitDecl()) 997 return false; 998 if (From->isInAnonymousNamespace()) 999 return Found->isInAnonymousNamespace(); 1000 else 1001 return !Found->isInAnonymousNamespace() && 1002 !Found->hasExternalFormalLinkage(); 1003 } 1004 1005 template <> 1006 bool ASTNodeImporter::hasSameVisibilityContextAndLinkage(TypedefNameDecl *Found, 1007 TypedefNameDecl *From) { 1008 if (Found->getLinkageInternal() != From->getLinkageInternal()) 1009 return false; 1010 1011 if (From->isInAnonymousNamespace() && Found->isInAnonymousNamespace()) 1012 return Importer.GetFromTU(Found) == From->getTranslationUnitDecl(); 1013 return From->isInAnonymousNamespace() == Found->isInAnonymousNamespace(); 1014 } 1015 1016 } // namespace clang 1017 1018 //---------------------------------------------------------------------------- 1019 // Import Types 1020 //---------------------------------------------------------------------------- 1021 1022 using namespace clang; 1023 1024 ExpectedType ASTNodeImporter::VisitType(const Type *T) { 1025 Importer.FromDiag(SourceLocation(), diag::err_unsupported_ast_node) 1026 << T->getTypeClassName(); 1027 return make_error<ImportError>(ImportError::UnsupportedConstruct); 1028 } 1029 1030 ExpectedType ASTNodeImporter::VisitAtomicType(const AtomicType *T){ 1031 ExpectedType UnderlyingTypeOrErr = import(T->getValueType()); 1032 if (!UnderlyingTypeOrErr) 1033 return UnderlyingTypeOrErr.takeError(); 1034 1035 return Importer.getToContext().getAtomicType(*UnderlyingTypeOrErr); 1036 } 1037 1038 ExpectedType ASTNodeImporter::VisitBuiltinType(const BuiltinType *T) { 1039 switch (T->getKind()) { 1040 #define IMAGE_TYPE(ImgType, Id, SingletonId, Access, Suffix) \ 1041 case BuiltinType::Id: \ 1042 return Importer.getToContext().SingletonId; 1043 #include "clang/Basic/OpenCLImageTypes.def" 1044 #define EXT_OPAQUE_TYPE(ExtType, Id, Ext) \ 1045 case BuiltinType::Id: \ 1046 return Importer.getToContext().Id##Ty; 1047 #include "clang/Basic/OpenCLExtensionTypes.def" 1048 #define SVE_TYPE(Name, Id, SingletonId) \ 1049 case BuiltinType::Id: \ 1050 return Importer.getToContext().SingletonId; 1051 #include "clang/Basic/AArch64SVEACLETypes.def" 1052 #define PPC_VECTOR_TYPE(Name, Id, Size) \ 1053 case BuiltinType::Id: \ 1054 return Importer.getToContext().Id##Ty; 1055 #include "clang/Basic/PPCTypes.def" 1056 #define RVV_TYPE(Name, Id, SingletonId) \ 1057 case BuiltinType::Id: \ 1058 return Importer.getToContext().SingletonId; 1059 #include "clang/Basic/RISCVVTypes.def" 1060 #define SHARED_SINGLETON_TYPE(Expansion) 1061 #define BUILTIN_TYPE(Id, SingletonId) \ 1062 case BuiltinType::Id: return Importer.getToContext().SingletonId; 1063 #include "clang/AST/BuiltinTypes.def" 1064 1065 // FIXME: for Char16, Char32, and NullPtr, make sure that the "to" 1066 // context supports C++. 1067 1068 // FIXME: for ObjCId, ObjCClass, and ObjCSel, make sure that the "to" 1069 // context supports ObjC. 1070 1071 case BuiltinType::Char_U: 1072 // The context we're importing from has an unsigned 'char'. If we're 1073 // importing into a context with a signed 'char', translate to 1074 // 'unsigned char' instead. 1075 if (Importer.getToContext().getLangOpts().CharIsSigned) 1076 return Importer.getToContext().UnsignedCharTy; 1077 1078 return Importer.getToContext().CharTy; 1079 1080 case BuiltinType::Char_S: 1081 // The context we're importing from has an unsigned 'char'. If we're 1082 // importing into a context with a signed 'char', translate to 1083 // 'unsigned char' instead. 1084 if (!Importer.getToContext().getLangOpts().CharIsSigned) 1085 return Importer.getToContext().SignedCharTy; 1086 1087 return Importer.getToContext().CharTy; 1088 1089 case BuiltinType::WChar_S: 1090 case BuiltinType::WChar_U: 1091 // FIXME: If not in C++, shall we translate to the C equivalent of 1092 // wchar_t? 1093 return Importer.getToContext().WCharTy; 1094 } 1095 1096 llvm_unreachable("Invalid BuiltinType Kind!"); 1097 } 1098 1099 ExpectedType ASTNodeImporter::VisitDecayedType(const DecayedType *T) { 1100 ExpectedType ToOriginalTypeOrErr = import(T->getOriginalType()); 1101 if (!ToOriginalTypeOrErr) 1102 return ToOriginalTypeOrErr.takeError(); 1103 1104 return Importer.getToContext().getDecayedType(*ToOriginalTypeOrErr); 1105 } 1106 1107 ExpectedType ASTNodeImporter::VisitComplexType(const ComplexType *T) { 1108 ExpectedType ToElementTypeOrErr = import(T->getElementType()); 1109 if (!ToElementTypeOrErr) 1110 return ToElementTypeOrErr.takeError(); 1111 1112 return Importer.getToContext().getComplexType(*ToElementTypeOrErr); 1113 } 1114 1115 ExpectedType ASTNodeImporter::VisitPointerType(const PointerType *T) { 1116 ExpectedType ToPointeeTypeOrErr = import(T->getPointeeType()); 1117 if (!ToPointeeTypeOrErr) 1118 return ToPointeeTypeOrErr.takeError(); 1119 1120 return Importer.getToContext().getPointerType(*ToPointeeTypeOrErr); 1121 } 1122 1123 ExpectedType ASTNodeImporter::VisitBlockPointerType(const BlockPointerType *T) { 1124 // FIXME: Check for blocks support in "to" context. 1125 ExpectedType ToPointeeTypeOrErr = import(T->getPointeeType()); 1126 if (!ToPointeeTypeOrErr) 1127 return ToPointeeTypeOrErr.takeError(); 1128 1129 return Importer.getToContext().getBlockPointerType(*ToPointeeTypeOrErr); 1130 } 1131 1132 ExpectedType 1133 ASTNodeImporter::VisitLValueReferenceType(const LValueReferenceType *T) { 1134 // FIXME: Check for C++ support in "to" context. 1135 ExpectedType ToPointeeTypeOrErr = import(T->getPointeeTypeAsWritten()); 1136 if (!ToPointeeTypeOrErr) 1137 return ToPointeeTypeOrErr.takeError(); 1138 1139 return Importer.getToContext().getLValueReferenceType(*ToPointeeTypeOrErr); 1140 } 1141 1142 ExpectedType 1143 ASTNodeImporter::VisitRValueReferenceType(const RValueReferenceType *T) { 1144 // FIXME: Check for C++0x support in "to" context. 1145 ExpectedType ToPointeeTypeOrErr = import(T->getPointeeTypeAsWritten()); 1146 if (!ToPointeeTypeOrErr) 1147 return ToPointeeTypeOrErr.takeError(); 1148 1149 return Importer.getToContext().getRValueReferenceType(*ToPointeeTypeOrErr); 1150 } 1151 1152 ExpectedType 1153 ASTNodeImporter::VisitMemberPointerType(const MemberPointerType *T) { 1154 // FIXME: Check for C++ support in "to" context. 1155 ExpectedType ToPointeeTypeOrErr = import(T->getPointeeType()); 1156 if (!ToPointeeTypeOrErr) 1157 return ToPointeeTypeOrErr.takeError(); 1158 1159 ExpectedTypePtr ClassTypeOrErr = import(T->getClass()); 1160 if (!ClassTypeOrErr) 1161 return ClassTypeOrErr.takeError(); 1162 1163 return Importer.getToContext().getMemberPointerType(*ToPointeeTypeOrErr, 1164 *ClassTypeOrErr); 1165 } 1166 1167 ExpectedType 1168 ASTNodeImporter::VisitConstantArrayType(const ConstantArrayType *T) { 1169 Error Err = Error::success(); 1170 auto ToElementType = importChecked(Err, T->getElementType()); 1171 auto ToSizeExpr = importChecked(Err, T->getSizeExpr()); 1172 if (Err) 1173 return std::move(Err); 1174 1175 return Importer.getToContext().getConstantArrayType( 1176 ToElementType, T->getSize(), ToSizeExpr, T->getSizeModifier(), 1177 T->getIndexTypeCVRQualifiers()); 1178 } 1179 1180 ExpectedType 1181 ASTNodeImporter::VisitIncompleteArrayType(const IncompleteArrayType *T) { 1182 ExpectedType ToElementTypeOrErr = import(T->getElementType()); 1183 if (!ToElementTypeOrErr) 1184 return ToElementTypeOrErr.takeError(); 1185 1186 return Importer.getToContext().getIncompleteArrayType(*ToElementTypeOrErr, 1187 T->getSizeModifier(), 1188 T->getIndexTypeCVRQualifiers()); 1189 } 1190 1191 ExpectedType 1192 ASTNodeImporter::VisitVariableArrayType(const VariableArrayType *T) { 1193 Error Err = Error::success(); 1194 QualType ToElementType = importChecked(Err, T->getElementType()); 1195 Expr *ToSizeExpr = importChecked(Err, T->getSizeExpr()); 1196 SourceRange ToBracketsRange = importChecked(Err, T->getBracketsRange()); 1197 if (Err) 1198 return std::move(Err); 1199 return Importer.getToContext().getVariableArrayType( 1200 ToElementType, ToSizeExpr, T->getSizeModifier(), 1201 T->getIndexTypeCVRQualifiers(), ToBracketsRange); 1202 } 1203 1204 ExpectedType ASTNodeImporter::VisitDependentSizedArrayType( 1205 const DependentSizedArrayType *T) { 1206 Error Err = Error::success(); 1207 QualType ToElementType = importChecked(Err, T->getElementType()); 1208 Expr *ToSizeExpr = importChecked(Err, T->getSizeExpr()); 1209 SourceRange ToBracketsRange = importChecked(Err, T->getBracketsRange()); 1210 if (Err) 1211 return std::move(Err); 1212 // SizeExpr may be null if size is not specified directly. 1213 // For example, 'int a[]'. 1214 1215 return Importer.getToContext().getDependentSizedArrayType( 1216 ToElementType, ToSizeExpr, T->getSizeModifier(), 1217 T->getIndexTypeCVRQualifiers(), ToBracketsRange); 1218 } 1219 1220 ExpectedType ASTNodeImporter::VisitVectorType(const VectorType *T) { 1221 ExpectedType ToElementTypeOrErr = import(T->getElementType()); 1222 if (!ToElementTypeOrErr) 1223 return ToElementTypeOrErr.takeError(); 1224 1225 return Importer.getToContext().getVectorType(*ToElementTypeOrErr, 1226 T->getNumElements(), 1227 T->getVectorKind()); 1228 } 1229 1230 ExpectedType ASTNodeImporter::VisitExtVectorType(const ExtVectorType *T) { 1231 ExpectedType ToElementTypeOrErr = import(T->getElementType()); 1232 if (!ToElementTypeOrErr) 1233 return ToElementTypeOrErr.takeError(); 1234 1235 return Importer.getToContext().getExtVectorType(*ToElementTypeOrErr, 1236 T->getNumElements()); 1237 } 1238 1239 ExpectedType 1240 ASTNodeImporter::VisitFunctionNoProtoType(const FunctionNoProtoType *T) { 1241 // FIXME: What happens if we're importing a function without a prototype 1242 // into C++? Should we make it variadic? 1243 ExpectedType ToReturnTypeOrErr = import(T->getReturnType()); 1244 if (!ToReturnTypeOrErr) 1245 return ToReturnTypeOrErr.takeError(); 1246 1247 return Importer.getToContext().getFunctionNoProtoType(*ToReturnTypeOrErr, 1248 T->getExtInfo()); 1249 } 1250 1251 ExpectedType 1252 ASTNodeImporter::VisitFunctionProtoType(const FunctionProtoType *T) { 1253 ExpectedType ToReturnTypeOrErr = import(T->getReturnType()); 1254 if (!ToReturnTypeOrErr) 1255 return ToReturnTypeOrErr.takeError(); 1256 1257 // Import argument types 1258 SmallVector<QualType, 4> ArgTypes; 1259 for (const auto &A : T->param_types()) { 1260 ExpectedType TyOrErr = import(A); 1261 if (!TyOrErr) 1262 return TyOrErr.takeError(); 1263 ArgTypes.push_back(*TyOrErr); 1264 } 1265 1266 // Import exception types 1267 SmallVector<QualType, 4> ExceptionTypes; 1268 for (const auto &E : T->exceptions()) { 1269 ExpectedType TyOrErr = import(E); 1270 if (!TyOrErr) 1271 return TyOrErr.takeError(); 1272 ExceptionTypes.push_back(*TyOrErr); 1273 } 1274 1275 FunctionProtoType::ExtProtoInfo FromEPI = T->getExtProtoInfo(); 1276 Error Err = Error::success(); 1277 FunctionProtoType::ExtProtoInfo ToEPI; 1278 ToEPI.ExtInfo = FromEPI.ExtInfo; 1279 ToEPI.Variadic = FromEPI.Variadic; 1280 ToEPI.HasTrailingReturn = FromEPI.HasTrailingReturn; 1281 ToEPI.TypeQuals = FromEPI.TypeQuals; 1282 ToEPI.RefQualifier = FromEPI.RefQualifier; 1283 ToEPI.ExceptionSpec.Type = FromEPI.ExceptionSpec.Type; 1284 ToEPI.ExceptionSpec.NoexceptExpr = 1285 importChecked(Err, FromEPI.ExceptionSpec.NoexceptExpr); 1286 ToEPI.ExceptionSpec.SourceDecl = 1287 importChecked(Err, FromEPI.ExceptionSpec.SourceDecl); 1288 ToEPI.ExceptionSpec.SourceTemplate = 1289 importChecked(Err, FromEPI.ExceptionSpec.SourceTemplate); 1290 ToEPI.ExceptionSpec.Exceptions = ExceptionTypes; 1291 1292 if (Err) 1293 return std::move(Err); 1294 1295 return Importer.getToContext().getFunctionType( 1296 *ToReturnTypeOrErr, ArgTypes, ToEPI); 1297 } 1298 1299 ExpectedType ASTNodeImporter::VisitUnresolvedUsingType( 1300 const UnresolvedUsingType *T) { 1301 Error Err = Error::success(); 1302 auto ToD = importChecked(Err, T->getDecl()); 1303 auto ToPrevD = importChecked(Err, T->getDecl()->getPreviousDecl()); 1304 if (Err) 1305 return std::move(Err); 1306 1307 return Importer.getToContext().getTypeDeclType( 1308 ToD, cast_or_null<TypeDecl>(ToPrevD)); 1309 } 1310 1311 ExpectedType ASTNodeImporter::VisitParenType(const ParenType *T) { 1312 ExpectedType ToInnerTypeOrErr = import(T->getInnerType()); 1313 if (!ToInnerTypeOrErr) 1314 return ToInnerTypeOrErr.takeError(); 1315 1316 return Importer.getToContext().getParenType(*ToInnerTypeOrErr); 1317 } 1318 1319 ExpectedType ASTNodeImporter::VisitTypedefType(const TypedefType *T) { 1320 Expected<TypedefNameDecl *> ToDeclOrErr = import(T->getDecl()); 1321 if (!ToDeclOrErr) 1322 return ToDeclOrErr.takeError(); 1323 1324 return Importer.getToContext().getTypeDeclType(*ToDeclOrErr); 1325 } 1326 1327 ExpectedType ASTNodeImporter::VisitTypeOfExprType(const TypeOfExprType *T) { 1328 ExpectedExpr ToExprOrErr = import(T->getUnderlyingExpr()); 1329 if (!ToExprOrErr) 1330 return ToExprOrErr.takeError(); 1331 1332 return Importer.getToContext().getTypeOfExprType(*ToExprOrErr); 1333 } 1334 1335 ExpectedType ASTNodeImporter::VisitTypeOfType(const TypeOfType *T) { 1336 ExpectedType ToUnderlyingTypeOrErr = import(T->getUnderlyingType()); 1337 if (!ToUnderlyingTypeOrErr) 1338 return ToUnderlyingTypeOrErr.takeError(); 1339 1340 return Importer.getToContext().getTypeOfType(*ToUnderlyingTypeOrErr); 1341 } 1342 1343 ExpectedType ASTNodeImporter::VisitDecltypeType(const DecltypeType *T) { 1344 // FIXME: Make sure that the "to" context supports C++0x! 1345 ExpectedExpr ToExprOrErr = import(T->getUnderlyingExpr()); 1346 if (!ToExprOrErr) 1347 return ToExprOrErr.takeError(); 1348 1349 ExpectedType ToUnderlyingTypeOrErr = import(T->getUnderlyingType()); 1350 if (!ToUnderlyingTypeOrErr) 1351 return ToUnderlyingTypeOrErr.takeError(); 1352 1353 return Importer.getToContext().getDecltypeType( 1354 *ToExprOrErr, *ToUnderlyingTypeOrErr); 1355 } 1356 1357 ExpectedType 1358 ASTNodeImporter::VisitUnaryTransformType(const UnaryTransformType *T) { 1359 ExpectedType ToBaseTypeOrErr = import(T->getBaseType()); 1360 if (!ToBaseTypeOrErr) 1361 return ToBaseTypeOrErr.takeError(); 1362 1363 ExpectedType ToUnderlyingTypeOrErr = import(T->getUnderlyingType()); 1364 if (!ToUnderlyingTypeOrErr) 1365 return ToUnderlyingTypeOrErr.takeError(); 1366 1367 return Importer.getToContext().getUnaryTransformType( 1368 *ToBaseTypeOrErr, *ToUnderlyingTypeOrErr, T->getUTTKind()); 1369 } 1370 1371 ExpectedType ASTNodeImporter::VisitAutoType(const AutoType *T) { 1372 // FIXME: Make sure that the "to" context supports C++11! 1373 ExpectedType ToDeducedTypeOrErr = import(T->getDeducedType()); 1374 if (!ToDeducedTypeOrErr) 1375 return ToDeducedTypeOrErr.takeError(); 1376 1377 ExpectedDecl ToTypeConstraintConcept = import(T->getTypeConstraintConcept()); 1378 if (!ToTypeConstraintConcept) 1379 return ToTypeConstraintConcept.takeError(); 1380 1381 SmallVector<TemplateArgument, 2> ToTemplateArgs; 1382 ArrayRef<TemplateArgument> FromTemplateArgs = T->getTypeConstraintArguments(); 1383 if (Error Err = ImportTemplateArguments(FromTemplateArgs.data(), 1384 FromTemplateArgs.size(), 1385 ToTemplateArgs)) 1386 return std::move(Err); 1387 1388 return Importer.getToContext().getAutoType( 1389 *ToDeducedTypeOrErr, T->getKeyword(), /*IsDependent*/false, 1390 /*IsPack=*/false, cast_or_null<ConceptDecl>(*ToTypeConstraintConcept), 1391 ToTemplateArgs); 1392 } 1393 1394 ExpectedType ASTNodeImporter::VisitDeducedTemplateSpecializationType( 1395 const DeducedTemplateSpecializationType *T) { 1396 // FIXME: Make sure that the "to" context supports C++17! 1397 Expected<TemplateName> ToTemplateNameOrErr = import(T->getTemplateName()); 1398 if (!ToTemplateNameOrErr) 1399 return ToTemplateNameOrErr.takeError(); 1400 ExpectedType ToDeducedTypeOrErr = import(T->getDeducedType()); 1401 if (!ToDeducedTypeOrErr) 1402 return ToDeducedTypeOrErr.takeError(); 1403 1404 return Importer.getToContext().getDeducedTemplateSpecializationType( 1405 *ToTemplateNameOrErr, *ToDeducedTypeOrErr, T->isDependentType()); 1406 } 1407 1408 ExpectedType ASTNodeImporter::VisitInjectedClassNameType( 1409 const InjectedClassNameType *T) { 1410 Expected<CXXRecordDecl *> ToDeclOrErr = import(T->getDecl()); 1411 if (!ToDeclOrErr) 1412 return ToDeclOrErr.takeError(); 1413 1414 ExpectedType ToInjTypeOrErr = import(T->getInjectedSpecializationType()); 1415 if (!ToInjTypeOrErr) 1416 return ToInjTypeOrErr.takeError(); 1417 1418 // FIXME: ASTContext::getInjectedClassNameType is not suitable for AST reading 1419 // See comments in InjectedClassNameType definition for details 1420 // return Importer.getToContext().getInjectedClassNameType(D, InjType); 1421 enum { 1422 TypeAlignmentInBits = 4, 1423 TypeAlignment = 1 << TypeAlignmentInBits 1424 }; 1425 1426 return QualType(new (Importer.getToContext(), TypeAlignment) 1427 InjectedClassNameType(*ToDeclOrErr, *ToInjTypeOrErr), 0); 1428 } 1429 1430 ExpectedType ASTNodeImporter::VisitRecordType(const RecordType *T) { 1431 Expected<RecordDecl *> ToDeclOrErr = import(T->getDecl()); 1432 if (!ToDeclOrErr) 1433 return ToDeclOrErr.takeError(); 1434 1435 return Importer.getToContext().getTagDeclType(*ToDeclOrErr); 1436 } 1437 1438 ExpectedType ASTNodeImporter::VisitEnumType(const EnumType *T) { 1439 Expected<EnumDecl *> ToDeclOrErr = import(T->getDecl()); 1440 if (!ToDeclOrErr) 1441 return ToDeclOrErr.takeError(); 1442 1443 return Importer.getToContext().getTagDeclType(*ToDeclOrErr); 1444 } 1445 1446 ExpectedType ASTNodeImporter::VisitAttributedType(const AttributedType *T) { 1447 ExpectedType ToModifiedTypeOrErr = import(T->getModifiedType()); 1448 if (!ToModifiedTypeOrErr) 1449 return ToModifiedTypeOrErr.takeError(); 1450 ExpectedType ToEquivalentTypeOrErr = import(T->getEquivalentType()); 1451 if (!ToEquivalentTypeOrErr) 1452 return ToEquivalentTypeOrErr.takeError(); 1453 1454 return Importer.getToContext().getAttributedType(T->getAttrKind(), 1455 *ToModifiedTypeOrErr, *ToEquivalentTypeOrErr); 1456 } 1457 1458 ExpectedType ASTNodeImporter::VisitTemplateTypeParmType( 1459 const TemplateTypeParmType *T) { 1460 Expected<TemplateTypeParmDecl *> ToDeclOrErr = import(T->getDecl()); 1461 if (!ToDeclOrErr) 1462 return ToDeclOrErr.takeError(); 1463 1464 return Importer.getToContext().getTemplateTypeParmType( 1465 T->getDepth(), T->getIndex(), T->isParameterPack(), *ToDeclOrErr); 1466 } 1467 1468 ExpectedType ASTNodeImporter::VisitSubstTemplateTypeParmType( 1469 const SubstTemplateTypeParmType *T) { 1470 Expected<const TemplateTypeParmType *> ReplacedOrErr = 1471 import(T->getReplacedParameter()); 1472 if (!ReplacedOrErr) 1473 return ReplacedOrErr.takeError(); 1474 1475 ExpectedType ToReplacementTypeOrErr = import(T->getReplacementType()); 1476 if (!ToReplacementTypeOrErr) 1477 return ToReplacementTypeOrErr.takeError(); 1478 1479 return Importer.getToContext().getSubstTemplateTypeParmType( 1480 *ReplacedOrErr, ToReplacementTypeOrErr->getCanonicalType()); 1481 } 1482 1483 ExpectedType ASTNodeImporter::VisitSubstTemplateTypeParmPackType( 1484 const SubstTemplateTypeParmPackType *T) { 1485 Expected<const TemplateTypeParmType *> ReplacedOrErr = 1486 import(T->getReplacedParameter()); 1487 if (!ReplacedOrErr) 1488 return ReplacedOrErr.takeError(); 1489 1490 Expected<TemplateArgument> ToArgumentPack = import(T->getArgumentPack()); 1491 if (!ToArgumentPack) 1492 return ToArgumentPack.takeError(); 1493 1494 return Importer.getToContext().getSubstTemplateTypeParmPackType( 1495 *ReplacedOrErr, *ToArgumentPack); 1496 } 1497 1498 ExpectedType ASTNodeImporter::VisitTemplateSpecializationType( 1499 const TemplateSpecializationType *T) { 1500 auto ToTemplateOrErr = import(T->getTemplateName()); 1501 if (!ToTemplateOrErr) 1502 return ToTemplateOrErr.takeError(); 1503 1504 SmallVector<TemplateArgument, 2> ToTemplateArgs; 1505 if (Error Err = ImportTemplateArguments( 1506 T->getArgs(), T->getNumArgs(), ToTemplateArgs)) 1507 return std::move(Err); 1508 1509 QualType ToCanonType; 1510 if (!T->isCanonicalUnqualified()) { 1511 QualType FromCanonType 1512 = Importer.getFromContext().getCanonicalType(QualType(T, 0)); 1513 if (ExpectedType TyOrErr = import(FromCanonType)) 1514 ToCanonType = *TyOrErr; 1515 else 1516 return TyOrErr.takeError(); 1517 } 1518 return Importer.getToContext().getTemplateSpecializationType(*ToTemplateOrErr, 1519 ToTemplateArgs, 1520 ToCanonType); 1521 } 1522 1523 ExpectedType ASTNodeImporter::VisitElaboratedType(const ElaboratedType *T) { 1524 // Note: the qualifier in an ElaboratedType is optional. 1525 auto ToQualifierOrErr = import(T->getQualifier()); 1526 if (!ToQualifierOrErr) 1527 return ToQualifierOrErr.takeError(); 1528 1529 ExpectedType ToNamedTypeOrErr = import(T->getNamedType()); 1530 if (!ToNamedTypeOrErr) 1531 return ToNamedTypeOrErr.takeError(); 1532 1533 Expected<TagDecl *> ToOwnedTagDeclOrErr = import(T->getOwnedTagDecl()); 1534 if (!ToOwnedTagDeclOrErr) 1535 return ToOwnedTagDeclOrErr.takeError(); 1536 1537 return Importer.getToContext().getElaboratedType(T->getKeyword(), 1538 *ToQualifierOrErr, 1539 *ToNamedTypeOrErr, 1540 *ToOwnedTagDeclOrErr); 1541 } 1542 1543 ExpectedType 1544 ASTNodeImporter::VisitPackExpansionType(const PackExpansionType *T) { 1545 ExpectedType ToPatternOrErr = import(T->getPattern()); 1546 if (!ToPatternOrErr) 1547 return ToPatternOrErr.takeError(); 1548 1549 return Importer.getToContext().getPackExpansionType(*ToPatternOrErr, 1550 T->getNumExpansions(), 1551 /*ExpactPack=*/false); 1552 } 1553 1554 ExpectedType ASTNodeImporter::VisitDependentTemplateSpecializationType( 1555 const DependentTemplateSpecializationType *T) { 1556 auto ToQualifierOrErr = import(T->getQualifier()); 1557 if (!ToQualifierOrErr) 1558 return ToQualifierOrErr.takeError(); 1559 1560 IdentifierInfo *ToName = Importer.Import(T->getIdentifier()); 1561 1562 SmallVector<TemplateArgument, 2> ToPack; 1563 ToPack.reserve(T->getNumArgs()); 1564 if (Error Err = ImportTemplateArguments( 1565 T->getArgs(), T->getNumArgs(), ToPack)) 1566 return std::move(Err); 1567 1568 return Importer.getToContext().getDependentTemplateSpecializationType( 1569 T->getKeyword(), *ToQualifierOrErr, ToName, ToPack); 1570 } 1571 1572 ExpectedType 1573 ASTNodeImporter::VisitDependentNameType(const DependentNameType *T) { 1574 auto ToQualifierOrErr = import(T->getQualifier()); 1575 if (!ToQualifierOrErr) 1576 return ToQualifierOrErr.takeError(); 1577 1578 IdentifierInfo *Name = Importer.Import(T->getIdentifier()); 1579 1580 QualType Canon; 1581 if (T != T->getCanonicalTypeInternal().getTypePtr()) { 1582 if (ExpectedType TyOrErr = import(T->getCanonicalTypeInternal())) 1583 Canon = (*TyOrErr).getCanonicalType(); 1584 else 1585 return TyOrErr.takeError(); 1586 } 1587 1588 return Importer.getToContext().getDependentNameType(T->getKeyword(), 1589 *ToQualifierOrErr, 1590 Name, Canon); 1591 } 1592 1593 ExpectedType 1594 ASTNodeImporter::VisitObjCInterfaceType(const ObjCInterfaceType *T) { 1595 Expected<ObjCInterfaceDecl *> ToDeclOrErr = import(T->getDecl()); 1596 if (!ToDeclOrErr) 1597 return ToDeclOrErr.takeError(); 1598 1599 return Importer.getToContext().getObjCInterfaceType(*ToDeclOrErr); 1600 } 1601 1602 ExpectedType ASTNodeImporter::VisitObjCObjectType(const ObjCObjectType *T) { 1603 ExpectedType ToBaseTypeOrErr = import(T->getBaseType()); 1604 if (!ToBaseTypeOrErr) 1605 return ToBaseTypeOrErr.takeError(); 1606 1607 SmallVector<QualType, 4> TypeArgs; 1608 for (auto TypeArg : T->getTypeArgsAsWritten()) { 1609 if (ExpectedType TyOrErr = import(TypeArg)) 1610 TypeArgs.push_back(*TyOrErr); 1611 else 1612 return TyOrErr.takeError(); 1613 } 1614 1615 SmallVector<ObjCProtocolDecl *, 4> Protocols; 1616 for (auto *P : T->quals()) { 1617 if (Expected<ObjCProtocolDecl *> ProtocolOrErr = import(P)) 1618 Protocols.push_back(*ProtocolOrErr); 1619 else 1620 return ProtocolOrErr.takeError(); 1621 1622 } 1623 1624 return Importer.getToContext().getObjCObjectType(*ToBaseTypeOrErr, TypeArgs, 1625 Protocols, 1626 T->isKindOfTypeAsWritten()); 1627 } 1628 1629 ExpectedType 1630 ASTNodeImporter::VisitObjCObjectPointerType(const ObjCObjectPointerType *T) { 1631 ExpectedType ToPointeeTypeOrErr = import(T->getPointeeType()); 1632 if (!ToPointeeTypeOrErr) 1633 return ToPointeeTypeOrErr.takeError(); 1634 1635 return Importer.getToContext().getObjCObjectPointerType(*ToPointeeTypeOrErr); 1636 } 1637 1638 //---------------------------------------------------------------------------- 1639 // Import Declarations 1640 //---------------------------------------------------------------------------- 1641 Error ASTNodeImporter::ImportDeclParts( 1642 NamedDecl *D, DeclContext *&DC, DeclContext *&LexicalDC, 1643 DeclarationName &Name, NamedDecl *&ToD, SourceLocation &Loc) { 1644 // Check if RecordDecl is in FunctionDecl parameters to avoid infinite loop. 1645 // example: int struct_in_proto(struct data_t{int a;int b;} *d); 1646 // FIXME: We could support these constructs by importing a different type of 1647 // this parameter and by importing the original type of the parameter only 1648 // after the FunctionDecl is created. See 1649 // VisitFunctionDecl::UsedDifferentProtoType. 1650 DeclContext *OrigDC = D->getDeclContext(); 1651 FunctionDecl *FunDecl; 1652 if (isa<RecordDecl>(D) && (FunDecl = dyn_cast<FunctionDecl>(OrigDC)) && 1653 FunDecl->hasBody()) { 1654 auto getLeafPointeeType = [](const Type *T) { 1655 while (T->isPointerType() || T->isArrayType()) { 1656 T = T->getPointeeOrArrayElementType(); 1657 } 1658 return T; 1659 }; 1660 for (const ParmVarDecl *P : FunDecl->parameters()) { 1661 const Type *LeafT = 1662 getLeafPointeeType(P->getType().getCanonicalType().getTypePtr()); 1663 auto *RT = dyn_cast<RecordType>(LeafT); 1664 if (RT && RT->getDecl() == D) { 1665 Importer.FromDiag(D->getLocation(), diag::err_unsupported_ast_node) 1666 << D->getDeclKindName(); 1667 return make_error<ImportError>(ImportError::UnsupportedConstruct); 1668 } 1669 } 1670 } 1671 1672 // Import the context of this declaration. 1673 if (Error Err = ImportDeclContext(D, DC, LexicalDC)) 1674 return Err; 1675 1676 // Import the name of this declaration. 1677 if (Error Err = importInto(Name, D->getDeclName())) 1678 return Err; 1679 1680 // Import the location of this declaration. 1681 if (Error Err = importInto(Loc, D->getLocation())) 1682 return Err; 1683 1684 ToD = cast_or_null<NamedDecl>(Importer.GetAlreadyImportedOrNull(D)); 1685 if (ToD) 1686 if (Error Err = ASTNodeImporter(*this).ImportDefinitionIfNeeded(D, ToD)) 1687 return Err; 1688 1689 return Error::success(); 1690 } 1691 1692 Error ASTNodeImporter::ImportDeclParts(NamedDecl *D, DeclarationName &Name, 1693 NamedDecl *&ToD, SourceLocation &Loc) { 1694 1695 // Import the name of this declaration. 1696 if (Error Err = importInto(Name, D->getDeclName())) 1697 return Err; 1698 1699 // Import the location of this declaration. 1700 if (Error Err = importInto(Loc, D->getLocation())) 1701 return Err; 1702 1703 ToD = cast_or_null<NamedDecl>(Importer.GetAlreadyImportedOrNull(D)); 1704 if (ToD) 1705 if (Error Err = ASTNodeImporter(*this).ImportDefinitionIfNeeded(D, ToD)) 1706 return Err; 1707 1708 return Error::success(); 1709 } 1710 1711 Error ASTNodeImporter::ImportDefinitionIfNeeded(Decl *FromD, Decl *ToD) { 1712 if (!FromD) 1713 return Error::success(); 1714 1715 if (!ToD) 1716 if (Error Err = importInto(ToD, FromD)) 1717 return Err; 1718 1719 if (RecordDecl *FromRecord = dyn_cast<RecordDecl>(FromD)) { 1720 if (RecordDecl *ToRecord = cast<RecordDecl>(ToD)) { 1721 if (FromRecord->getDefinition() && FromRecord->isCompleteDefinition() && 1722 !ToRecord->getDefinition()) { 1723 if (Error Err = ImportDefinition(FromRecord, ToRecord)) 1724 return Err; 1725 } 1726 } 1727 return Error::success(); 1728 } 1729 1730 if (EnumDecl *FromEnum = dyn_cast<EnumDecl>(FromD)) { 1731 if (EnumDecl *ToEnum = cast<EnumDecl>(ToD)) { 1732 if (FromEnum->getDefinition() && !ToEnum->getDefinition()) { 1733 if (Error Err = ImportDefinition(FromEnum, ToEnum)) 1734 return Err; 1735 } 1736 } 1737 return Error::success(); 1738 } 1739 1740 return Error::success(); 1741 } 1742 1743 Error 1744 ASTNodeImporter::ImportDeclarationNameLoc( 1745 const DeclarationNameInfo &From, DeclarationNameInfo& To) { 1746 // NOTE: To.Name and To.Loc are already imported. 1747 // We only have to import To.LocInfo. 1748 switch (To.getName().getNameKind()) { 1749 case DeclarationName::Identifier: 1750 case DeclarationName::ObjCZeroArgSelector: 1751 case DeclarationName::ObjCOneArgSelector: 1752 case DeclarationName::ObjCMultiArgSelector: 1753 case DeclarationName::CXXUsingDirective: 1754 case DeclarationName::CXXDeductionGuideName: 1755 return Error::success(); 1756 1757 case DeclarationName::CXXOperatorName: { 1758 if (auto ToRangeOrErr = import(From.getCXXOperatorNameRange())) 1759 To.setCXXOperatorNameRange(*ToRangeOrErr); 1760 else 1761 return ToRangeOrErr.takeError(); 1762 return Error::success(); 1763 } 1764 case DeclarationName::CXXLiteralOperatorName: { 1765 if (ExpectedSLoc LocOrErr = import(From.getCXXLiteralOperatorNameLoc())) 1766 To.setCXXLiteralOperatorNameLoc(*LocOrErr); 1767 else 1768 return LocOrErr.takeError(); 1769 return Error::success(); 1770 } 1771 case DeclarationName::CXXConstructorName: 1772 case DeclarationName::CXXDestructorName: 1773 case DeclarationName::CXXConversionFunctionName: { 1774 if (auto ToTInfoOrErr = import(From.getNamedTypeInfo())) 1775 To.setNamedTypeInfo(*ToTInfoOrErr); 1776 else 1777 return ToTInfoOrErr.takeError(); 1778 return Error::success(); 1779 } 1780 } 1781 llvm_unreachable("Unknown name kind."); 1782 } 1783 1784 Error 1785 ASTNodeImporter::ImportDeclContext(DeclContext *FromDC, bool ForceImport) { 1786 if (Importer.isMinimalImport() && !ForceImport) { 1787 auto ToDCOrErr = Importer.ImportContext(FromDC); 1788 return ToDCOrErr.takeError(); 1789 } 1790 1791 // We use strict error handling in case of records and enums, but not 1792 // with e.g. namespaces. 1793 // 1794 // FIXME Clients of the ASTImporter should be able to choose an 1795 // appropriate error handling strategy for their needs. For instance, 1796 // they may not want to mark an entire namespace as erroneous merely 1797 // because there is an ODR error with two typedefs. As another example, 1798 // the client may allow EnumConstantDecls with same names but with 1799 // different values in two distinct translation units. 1800 bool AccumulateChildErrors = isa<TagDecl>(FromDC); 1801 1802 Error ChildErrors = Error::success(); 1803 for (auto *From : FromDC->decls()) { 1804 ExpectedDecl ImportedOrErr = import(From); 1805 1806 // If we are in the process of ImportDefinition(...) for a RecordDecl we 1807 // want to make sure that we are also completing each FieldDecl. There 1808 // are currently cases where this does not happen and this is correctness 1809 // fix since operations such as code generation will expect this to be so. 1810 if (ImportedOrErr) { 1811 FieldDecl *FieldFrom = dyn_cast_or_null<FieldDecl>(From); 1812 Decl *ImportedDecl = *ImportedOrErr; 1813 FieldDecl *FieldTo = dyn_cast_or_null<FieldDecl>(ImportedDecl); 1814 if (FieldFrom && FieldTo) { 1815 RecordDecl *FromRecordDecl = nullptr; 1816 RecordDecl *ToRecordDecl = nullptr; 1817 // If we have a field that is an ArrayType we need to check if the array 1818 // element is a RecordDecl and if so we need to import the definition. 1819 if (FieldFrom->getType()->isArrayType()) { 1820 // getBaseElementTypeUnsafe(...) handles multi-dimensonal arrays for us. 1821 FromRecordDecl = FieldFrom->getType()->getBaseElementTypeUnsafe()->getAsRecordDecl(); 1822 ToRecordDecl = FieldTo->getType()->getBaseElementTypeUnsafe()->getAsRecordDecl(); 1823 } 1824 1825 if (!FromRecordDecl || !ToRecordDecl) { 1826 const RecordType *RecordFrom = 1827 FieldFrom->getType()->getAs<RecordType>(); 1828 const RecordType *RecordTo = FieldTo->getType()->getAs<RecordType>(); 1829 1830 if (RecordFrom && RecordTo) { 1831 FromRecordDecl = RecordFrom->getDecl(); 1832 ToRecordDecl = RecordTo->getDecl(); 1833 } 1834 } 1835 1836 if (FromRecordDecl && ToRecordDecl) { 1837 if (FromRecordDecl->isCompleteDefinition() && 1838 !ToRecordDecl->isCompleteDefinition()) { 1839 Error Err = ImportDefinition(FromRecordDecl, ToRecordDecl); 1840 1841 if (Err && AccumulateChildErrors) 1842 ChildErrors = joinErrors(std::move(ChildErrors), std::move(Err)); 1843 else 1844 consumeError(std::move(Err)); 1845 } 1846 } 1847 } 1848 } else { 1849 if (AccumulateChildErrors) 1850 ChildErrors = 1851 joinErrors(std::move(ChildErrors), ImportedOrErr.takeError()); 1852 else 1853 consumeError(ImportedOrErr.takeError()); 1854 } 1855 } 1856 1857 // We reorder declarations in RecordDecls because they may have another order 1858 // in the "to" context than they have in the "from" context. This may happen 1859 // e.g when we import a class like this: 1860 // struct declToImport { 1861 // int a = c + b; 1862 // int b = 1; 1863 // int c = 2; 1864 // }; 1865 // During the import of `a` we import first the dependencies in sequence, 1866 // thus the order would be `c`, `b`, `a`. We will get the normal order by 1867 // first removing the already imported members and then adding them in the 1868 // order as they apper in the "from" context. 1869 // 1870 // Keeping field order is vital because it determines structure layout. 1871 // 1872 // Here and below, we cannot call field_begin() method and its callers on 1873 // ToDC if it has an external storage. Calling field_begin() will 1874 // automatically load all the fields by calling 1875 // LoadFieldsFromExternalStorage(). LoadFieldsFromExternalStorage() would 1876 // call ASTImporter::Import(). This is because the ExternalASTSource 1877 // interface in LLDB is implemented by the means of the ASTImporter. However, 1878 // calling an import at this point would result in an uncontrolled import, we 1879 // must avoid that. 1880 const auto *FromRD = dyn_cast<RecordDecl>(FromDC); 1881 if (!FromRD) 1882 return ChildErrors; 1883 1884 auto ToDCOrErr = Importer.ImportContext(FromDC); 1885 if (!ToDCOrErr) { 1886 consumeError(std::move(ChildErrors)); 1887 return ToDCOrErr.takeError(); 1888 } 1889 1890 DeclContext *ToDC = *ToDCOrErr; 1891 // Remove all declarations, which may be in wrong order in the 1892 // lexical DeclContext and then add them in the proper order. 1893 for (auto *D : FromRD->decls()) { 1894 if (isa<FieldDecl>(D) || isa<IndirectFieldDecl>(D) || isa<FriendDecl>(D)) { 1895 assert(D && "DC contains a null decl"); 1896 Decl *ToD = Importer.GetAlreadyImportedOrNull(D); 1897 // Remove only the decls which we successfully imported. 1898 if (ToD) { 1899 assert(ToDC == ToD->getLexicalDeclContext() && ToDC->containsDecl(ToD)); 1900 // Remove the decl from its wrong place in the linked list. 1901 ToDC->removeDecl(ToD); 1902 // Add the decl to the end of the linked list. 1903 // This time it will be at the proper place because the enclosing for 1904 // loop iterates in the original (good) order of the decls. 1905 ToDC->addDeclInternal(ToD); 1906 } 1907 } 1908 } 1909 1910 return ChildErrors; 1911 } 1912 1913 Error ASTNodeImporter::ImportDeclContext( 1914 Decl *FromD, DeclContext *&ToDC, DeclContext *&ToLexicalDC) { 1915 auto ToDCOrErr = Importer.ImportContext(FromD->getDeclContext()); 1916 if (!ToDCOrErr) 1917 return ToDCOrErr.takeError(); 1918 ToDC = *ToDCOrErr; 1919 1920 if (FromD->getDeclContext() != FromD->getLexicalDeclContext()) { 1921 auto ToLexicalDCOrErr = Importer.ImportContext( 1922 FromD->getLexicalDeclContext()); 1923 if (!ToLexicalDCOrErr) 1924 return ToLexicalDCOrErr.takeError(); 1925 ToLexicalDC = *ToLexicalDCOrErr; 1926 } else 1927 ToLexicalDC = ToDC; 1928 1929 return Error::success(); 1930 } 1931 1932 Error ASTNodeImporter::ImportImplicitMethods( 1933 const CXXRecordDecl *From, CXXRecordDecl *To) { 1934 assert(From->isCompleteDefinition() && To->getDefinition() == To && 1935 "Import implicit methods to or from non-definition"); 1936 1937 for (CXXMethodDecl *FromM : From->methods()) 1938 if (FromM->isImplicit()) { 1939 Expected<CXXMethodDecl *> ToMOrErr = import(FromM); 1940 if (!ToMOrErr) 1941 return ToMOrErr.takeError(); 1942 } 1943 1944 return Error::success(); 1945 } 1946 1947 static Error setTypedefNameForAnonDecl(TagDecl *From, TagDecl *To, 1948 ASTImporter &Importer) { 1949 if (TypedefNameDecl *FromTypedef = From->getTypedefNameForAnonDecl()) { 1950 if (ExpectedDecl ToTypedefOrErr = Importer.Import(FromTypedef)) 1951 To->setTypedefNameForAnonDecl(cast<TypedefNameDecl>(*ToTypedefOrErr)); 1952 else 1953 return ToTypedefOrErr.takeError(); 1954 } 1955 return Error::success(); 1956 } 1957 1958 Error ASTNodeImporter::ImportDefinition( 1959 RecordDecl *From, RecordDecl *To, ImportDefinitionKind Kind) { 1960 auto DefinitionCompleter = [To]() { 1961 // There are cases in LLDB when we first import a class without its 1962 // members. The class will have DefinitionData, but no members. Then, 1963 // importDefinition is called from LLDB, which tries to get the members, so 1964 // when we get here, the class already has the DefinitionData set, so we 1965 // must unset the CompleteDefinition here to be able to complete again the 1966 // definition. 1967 To->setCompleteDefinition(false); 1968 To->completeDefinition(); 1969 }; 1970 1971 if (To->getDefinition() || To->isBeingDefined()) { 1972 if (Kind == IDK_Everything || 1973 // In case of lambdas, the class already has a definition ptr set, but 1974 // the contained decls are not imported yet. Also, isBeingDefined was 1975 // set in CXXRecordDecl::CreateLambda. We must import the contained 1976 // decls here and finish the definition. 1977 (To->isLambda() && shouldForceImportDeclContext(Kind))) { 1978 if (To->isLambda()) { 1979 auto *FromCXXRD = cast<CXXRecordDecl>(From); 1980 SmallVector<LambdaCapture, 8> ToCaptures; 1981 ToCaptures.reserve(FromCXXRD->capture_size()); 1982 for (const auto &FromCapture : FromCXXRD->captures()) { 1983 if (auto ToCaptureOrErr = import(FromCapture)) 1984 ToCaptures.push_back(*ToCaptureOrErr); 1985 else 1986 return ToCaptureOrErr.takeError(); 1987 } 1988 cast<CXXRecordDecl>(To)->setCaptures(Importer.getToContext(), 1989 ToCaptures); 1990 } 1991 1992 Error Result = ImportDeclContext(From, /*ForceImport=*/true); 1993 // Finish the definition of the lambda, set isBeingDefined to false. 1994 if (To->isLambda()) 1995 DefinitionCompleter(); 1996 return Result; 1997 } 1998 1999 return Error::success(); 2000 } 2001 2002 To->startDefinition(); 2003 // Complete the definition even if error is returned. 2004 // The RecordDecl may be already part of the AST so it is better to 2005 // have it in complete state even if something is wrong with it. 2006 auto DefinitionCompleterScopeExit = 2007 llvm::make_scope_exit(DefinitionCompleter); 2008 2009 if (Error Err = setTypedefNameForAnonDecl(From, To, Importer)) 2010 return Err; 2011 2012 // Add base classes. 2013 auto *ToCXX = dyn_cast<CXXRecordDecl>(To); 2014 auto *FromCXX = dyn_cast<CXXRecordDecl>(From); 2015 if (ToCXX && FromCXX && ToCXX->dataPtr() && FromCXX->dataPtr()) { 2016 2017 struct CXXRecordDecl::DefinitionData &ToData = ToCXX->data(); 2018 struct CXXRecordDecl::DefinitionData &FromData = FromCXX->data(); 2019 2020 #define FIELD(Name, Width, Merge) \ 2021 ToData.Name = FromData.Name; 2022 #include "clang/AST/CXXRecordDeclDefinitionBits.def" 2023 2024 // Copy over the data stored in RecordDeclBits 2025 ToCXX->setArgPassingRestrictions(FromCXX->getArgPassingRestrictions()); 2026 2027 SmallVector<CXXBaseSpecifier *, 4> Bases; 2028 for (const auto &Base1 : FromCXX->bases()) { 2029 ExpectedType TyOrErr = import(Base1.getType()); 2030 if (!TyOrErr) 2031 return TyOrErr.takeError(); 2032 2033 SourceLocation EllipsisLoc; 2034 if (Base1.isPackExpansion()) { 2035 if (ExpectedSLoc LocOrErr = import(Base1.getEllipsisLoc())) 2036 EllipsisLoc = *LocOrErr; 2037 else 2038 return LocOrErr.takeError(); 2039 } 2040 2041 // Ensure that we have a definition for the base. 2042 if (Error Err = 2043 ImportDefinitionIfNeeded(Base1.getType()->getAsCXXRecordDecl())) 2044 return Err; 2045 2046 auto RangeOrErr = import(Base1.getSourceRange()); 2047 if (!RangeOrErr) 2048 return RangeOrErr.takeError(); 2049 2050 auto TSIOrErr = import(Base1.getTypeSourceInfo()); 2051 if (!TSIOrErr) 2052 return TSIOrErr.takeError(); 2053 2054 Bases.push_back( 2055 new (Importer.getToContext()) CXXBaseSpecifier( 2056 *RangeOrErr, 2057 Base1.isVirtual(), 2058 Base1.isBaseOfClass(), 2059 Base1.getAccessSpecifierAsWritten(), 2060 *TSIOrErr, 2061 EllipsisLoc)); 2062 } 2063 if (!Bases.empty()) 2064 ToCXX->setBases(Bases.data(), Bases.size()); 2065 } 2066 2067 if (shouldForceImportDeclContext(Kind)) 2068 if (Error Err = ImportDeclContext(From, /*ForceImport=*/true)) 2069 return Err; 2070 2071 return Error::success(); 2072 } 2073 2074 Error ASTNodeImporter::ImportInitializer(VarDecl *From, VarDecl *To) { 2075 if (To->getAnyInitializer()) 2076 return Error::success(); 2077 2078 Expr *FromInit = From->getInit(); 2079 if (!FromInit) 2080 return Error::success(); 2081 2082 ExpectedExpr ToInitOrErr = import(FromInit); 2083 if (!ToInitOrErr) 2084 return ToInitOrErr.takeError(); 2085 2086 To->setInit(*ToInitOrErr); 2087 if (EvaluatedStmt *FromEval = From->getEvaluatedStmt()) { 2088 EvaluatedStmt *ToEval = To->ensureEvaluatedStmt(); 2089 ToEval->HasConstantInitialization = FromEval->HasConstantInitialization; 2090 ToEval->HasConstantDestruction = FromEval->HasConstantDestruction; 2091 // FIXME: Also import the initializer value. 2092 } 2093 2094 // FIXME: Other bits to merge? 2095 return Error::success(); 2096 } 2097 2098 Error ASTNodeImporter::ImportDefinition( 2099 EnumDecl *From, EnumDecl *To, ImportDefinitionKind Kind) { 2100 if (To->getDefinition() || To->isBeingDefined()) { 2101 if (Kind == IDK_Everything) 2102 return ImportDeclContext(From, /*ForceImport=*/true); 2103 return Error::success(); 2104 } 2105 2106 To->startDefinition(); 2107 2108 if (Error Err = setTypedefNameForAnonDecl(From, To, Importer)) 2109 return Err; 2110 2111 ExpectedType ToTypeOrErr = 2112 import(Importer.getFromContext().getTypeDeclType(From)); 2113 if (!ToTypeOrErr) 2114 return ToTypeOrErr.takeError(); 2115 2116 ExpectedType ToPromotionTypeOrErr = import(From->getPromotionType()); 2117 if (!ToPromotionTypeOrErr) 2118 return ToPromotionTypeOrErr.takeError(); 2119 2120 if (shouldForceImportDeclContext(Kind)) 2121 if (Error Err = ImportDeclContext(From, /*ForceImport=*/true)) 2122 return Err; 2123 2124 // FIXME: we might need to merge the number of positive or negative bits 2125 // if the enumerator lists don't match. 2126 To->completeDefinition(*ToTypeOrErr, *ToPromotionTypeOrErr, 2127 From->getNumPositiveBits(), 2128 From->getNumNegativeBits()); 2129 return Error::success(); 2130 } 2131 2132 Error ASTNodeImporter::ImportTemplateArguments( 2133 const TemplateArgument *FromArgs, unsigned NumFromArgs, 2134 SmallVectorImpl<TemplateArgument> &ToArgs) { 2135 for (unsigned I = 0; I != NumFromArgs; ++I) { 2136 if (auto ToOrErr = import(FromArgs[I])) 2137 ToArgs.push_back(*ToOrErr); 2138 else 2139 return ToOrErr.takeError(); 2140 } 2141 2142 return Error::success(); 2143 } 2144 2145 // FIXME: Do not forget to remove this and use only 'import'. 2146 Expected<TemplateArgument> 2147 ASTNodeImporter::ImportTemplateArgument(const TemplateArgument &From) { 2148 return import(From); 2149 } 2150 2151 template <typename InContainerTy> 2152 Error ASTNodeImporter::ImportTemplateArgumentListInfo( 2153 const InContainerTy &Container, TemplateArgumentListInfo &ToTAInfo) { 2154 for (const auto &FromLoc : Container) { 2155 if (auto ToLocOrErr = import(FromLoc)) 2156 ToTAInfo.addArgument(*ToLocOrErr); 2157 else 2158 return ToLocOrErr.takeError(); 2159 } 2160 return Error::success(); 2161 } 2162 2163 static StructuralEquivalenceKind 2164 getStructuralEquivalenceKind(const ASTImporter &Importer) { 2165 return Importer.isMinimalImport() ? StructuralEquivalenceKind::Minimal 2166 : StructuralEquivalenceKind::Default; 2167 } 2168 2169 bool ASTNodeImporter::IsStructuralMatch(Decl *From, Decl *To, bool Complain) { 2170 // Eliminate a potential failure point where we attempt to re-import 2171 // something we're trying to import while completing ToRecord. 2172 Decl *ToOrigin = Importer.GetOriginalDecl(To); 2173 if (ToOrigin) { 2174 To = ToOrigin; 2175 } 2176 2177 StructuralEquivalenceContext Ctx( 2178 Importer.getFromContext(), Importer.getToContext(), 2179 Importer.getNonEquivalentDecls(), getStructuralEquivalenceKind(Importer), 2180 false, Complain); 2181 return Ctx.IsEquivalent(From, To); 2182 } 2183 2184 ExpectedDecl ASTNodeImporter::VisitDecl(Decl *D) { 2185 Importer.FromDiag(D->getLocation(), diag::err_unsupported_ast_node) 2186 << D->getDeclKindName(); 2187 return make_error<ImportError>(ImportError::UnsupportedConstruct); 2188 } 2189 2190 ExpectedDecl ASTNodeImporter::VisitImportDecl(ImportDecl *D) { 2191 Importer.FromDiag(D->getLocation(), diag::err_unsupported_ast_node) 2192 << D->getDeclKindName(); 2193 return make_error<ImportError>(ImportError::UnsupportedConstruct); 2194 } 2195 2196 ExpectedDecl ASTNodeImporter::VisitEmptyDecl(EmptyDecl *D) { 2197 // Import the context of this declaration. 2198 DeclContext *DC, *LexicalDC; 2199 if (Error Err = ImportDeclContext(D, DC, LexicalDC)) 2200 return std::move(Err); 2201 2202 // Import the location of this declaration. 2203 ExpectedSLoc LocOrErr = import(D->getLocation()); 2204 if (!LocOrErr) 2205 return LocOrErr.takeError(); 2206 2207 EmptyDecl *ToD; 2208 if (GetImportedOrCreateDecl(ToD, D, Importer.getToContext(), DC, *LocOrErr)) 2209 return ToD; 2210 2211 ToD->setLexicalDeclContext(LexicalDC); 2212 LexicalDC->addDeclInternal(ToD); 2213 return ToD; 2214 } 2215 2216 ExpectedDecl ASTNodeImporter::VisitTranslationUnitDecl(TranslationUnitDecl *D) { 2217 TranslationUnitDecl *ToD = 2218 Importer.getToContext().getTranslationUnitDecl(); 2219 2220 Importer.MapImported(D, ToD); 2221 2222 return ToD; 2223 } 2224 2225 ExpectedDecl ASTNodeImporter::VisitBindingDecl(BindingDecl *D) { 2226 DeclContext *DC, *LexicalDC; 2227 DeclarationName Name; 2228 SourceLocation Loc; 2229 NamedDecl *ToND; 2230 if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToND, Loc)) 2231 return std::move(Err); 2232 if (ToND) 2233 return ToND; 2234 2235 BindingDecl *ToD; 2236 if (GetImportedOrCreateDecl(ToD, D, Importer.getToContext(), DC, Loc, 2237 Name.getAsIdentifierInfo())) 2238 return ToD; 2239 2240 Error Err = Error::success(); 2241 QualType ToType = importChecked(Err, D->getType()); 2242 Expr *ToBinding = importChecked(Err, D->getBinding()); 2243 ValueDecl *ToDecomposedDecl = importChecked(Err, D->getDecomposedDecl()); 2244 if (Err) 2245 return std::move(Err); 2246 2247 ToD->setBinding(ToType, ToBinding); 2248 ToD->setDecomposedDecl(ToDecomposedDecl); 2249 addDeclToContexts(D, ToD); 2250 2251 return ToD; 2252 } 2253 2254 ExpectedDecl ASTNodeImporter::VisitAccessSpecDecl(AccessSpecDecl *D) { 2255 ExpectedSLoc LocOrErr = import(D->getLocation()); 2256 if (!LocOrErr) 2257 return LocOrErr.takeError(); 2258 auto ColonLocOrErr = import(D->getColonLoc()); 2259 if (!ColonLocOrErr) 2260 return ColonLocOrErr.takeError(); 2261 2262 // Import the context of this declaration. 2263 auto DCOrErr = Importer.ImportContext(D->getDeclContext()); 2264 if (!DCOrErr) 2265 return DCOrErr.takeError(); 2266 DeclContext *DC = *DCOrErr; 2267 2268 AccessSpecDecl *ToD; 2269 if (GetImportedOrCreateDecl(ToD, D, Importer.getToContext(), D->getAccess(), 2270 DC, *LocOrErr, *ColonLocOrErr)) 2271 return ToD; 2272 2273 // Lexical DeclContext and Semantic DeclContext 2274 // is always the same for the accessSpec. 2275 ToD->setLexicalDeclContext(DC); 2276 DC->addDeclInternal(ToD); 2277 2278 return ToD; 2279 } 2280 2281 ExpectedDecl ASTNodeImporter::VisitStaticAssertDecl(StaticAssertDecl *D) { 2282 auto DCOrErr = Importer.ImportContext(D->getDeclContext()); 2283 if (!DCOrErr) 2284 return DCOrErr.takeError(); 2285 DeclContext *DC = *DCOrErr; 2286 DeclContext *LexicalDC = DC; 2287 2288 Error Err = Error::success(); 2289 auto ToLocation = importChecked(Err, D->getLocation()); 2290 auto ToRParenLoc = importChecked(Err, D->getRParenLoc()); 2291 auto ToAssertExpr = importChecked(Err, D->getAssertExpr()); 2292 auto ToMessage = importChecked(Err, D->getMessage()); 2293 if (Err) 2294 return std::move(Err); 2295 2296 StaticAssertDecl *ToD; 2297 if (GetImportedOrCreateDecl( 2298 ToD, D, Importer.getToContext(), DC, ToLocation, ToAssertExpr, ToMessage, 2299 ToRParenLoc, D->isFailed())) 2300 return ToD; 2301 2302 ToD->setLexicalDeclContext(LexicalDC); 2303 LexicalDC->addDeclInternal(ToD); 2304 return ToD; 2305 } 2306 2307 ExpectedDecl ASTNodeImporter::VisitNamespaceDecl(NamespaceDecl *D) { 2308 // Import the major distinguishing characteristics of this namespace. 2309 DeclContext *DC, *LexicalDC; 2310 DeclarationName Name; 2311 SourceLocation Loc; 2312 NamedDecl *ToD; 2313 if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc)) 2314 return std::move(Err); 2315 if (ToD) 2316 return ToD; 2317 2318 NamespaceDecl *MergeWithNamespace = nullptr; 2319 if (!Name) { 2320 // This is an anonymous namespace. Adopt an existing anonymous 2321 // namespace if we can. 2322 // FIXME: Not testable. 2323 if (auto *TU = dyn_cast<TranslationUnitDecl>(DC)) 2324 MergeWithNamespace = TU->getAnonymousNamespace(); 2325 else 2326 MergeWithNamespace = cast<NamespaceDecl>(DC)->getAnonymousNamespace(); 2327 } else { 2328 SmallVector<NamedDecl *, 4> ConflictingDecls; 2329 auto FoundDecls = Importer.findDeclsInToCtx(DC, Name); 2330 for (auto *FoundDecl : FoundDecls) { 2331 if (!FoundDecl->isInIdentifierNamespace(Decl::IDNS_Namespace)) 2332 continue; 2333 2334 if (auto *FoundNS = dyn_cast<NamespaceDecl>(FoundDecl)) { 2335 MergeWithNamespace = FoundNS; 2336 ConflictingDecls.clear(); 2337 break; 2338 } 2339 2340 ConflictingDecls.push_back(FoundDecl); 2341 } 2342 2343 if (!ConflictingDecls.empty()) { 2344 ExpectedName NameOrErr = Importer.HandleNameConflict( 2345 Name, DC, Decl::IDNS_Namespace, ConflictingDecls.data(), 2346 ConflictingDecls.size()); 2347 if (NameOrErr) 2348 Name = NameOrErr.get(); 2349 else 2350 return NameOrErr.takeError(); 2351 } 2352 } 2353 2354 ExpectedSLoc BeginLocOrErr = import(D->getBeginLoc()); 2355 if (!BeginLocOrErr) 2356 return BeginLocOrErr.takeError(); 2357 ExpectedSLoc RBraceLocOrErr = import(D->getRBraceLoc()); 2358 if (!RBraceLocOrErr) 2359 return RBraceLocOrErr.takeError(); 2360 2361 // Create the "to" namespace, if needed. 2362 NamespaceDecl *ToNamespace = MergeWithNamespace; 2363 if (!ToNamespace) { 2364 if (GetImportedOrCreateDecl( 2365 ToNamespace, D, Importer.getToContext(), DC, D->isInline(), 2366 *BeginLocOrErr, Loc, Name.getAsIdentifierInfo(), 2367 /*PrevDecl=*/nullptr)) 2368 return ToNamespace; 2369 ToNamespace->setRBraceLoc(*RBraceLocOrErr); 2370 ToNamespace->setLexicalDeclContext(LexicalDC); 2371 LexicalDC->addDeclInternal(ToNamespace); 2372 2373 // If this is an anonymous namespace, register it as the anonymous 2374 // namespace within its context. 2375 if (!Name) { 2376 if (auto *TU = dyn_cast<TranslationUnitDecl>(DC)) 2377 TU->setAnonymousNamespace(ToNamespace); 2378 else 2379 cast<NamespaceDecl>(DC)->setAnonymousNamespace(ToNamespace); 2380 } 2381 } 2382 Importer.MapImported(D, ToNamespace); 2383 2384 if (Error Err = ImportDeclContext(D)) 2385 return std::move(Err); 2386 2387 return ToNamespace; 2388 } 2389 2390 ExpectedDecl ASTNodeImporter::VisitNamespaceAliasDecl(NamespaceAliasDecl *D) { 2391 // Import the major distinguishing characteristics of this namespace. 2392 DeclContext *DC, *LexicalDC; 2393 DeclarationName Name; 2394 SourceLocation Loc; 2395 NamedDecl *LookupD; 2396 if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, LookupD, Loc)) 2397 return std::move(Err); 2398 if (LookupD) 2399 return LookupD; 2400 2401 // NOTE: No conflict resolution is done for namespace aliases now. 2402 2403 Error Err = Error::success(); 2404 auto ToNamespaceLoc = importChecked(Err, D->getNamespaceLoc()); 2405 auto ToAliasLoc = importChecked(Err, D->getAliasLoc()); 2406 auto ToQualifierLoc = importChecked(Err, D->getQualifierLoc()); 2407 auto ToTargetNameLoc = importChecked(Err, D->getTargetNameLoc()); 2408 auto ToNamespace = importChecked(Err, D->getNamespace()); 2409 if (Err) 2410 return std::move(Err); 2411 2412 IdentifierInfo *ToIdentifier = Importer.Import(D->getIdentifier()); 2413 2414 NamespaceAliasDecl *ToD; 2415 if (GetImportedOrCreateDecl( 2416 ToD, D, Importer.getToContext(), DC, ToNamespaceLoc, ToAliasLoc, 2417 ToIdentifier, ToQualifierLoc, ToTargetNameLoc, ToNamespace)) 2418 return ToD; 2419 2420 ToD->setLexicalDeclContext(LexicalDC); 2421 LexicalDC->addDeclInternal(ToD); 2422 2423 return ToD; 2424 } 2425 2426 ExpectedDecl 2427 ASTNodeImporter::VisitTypedefNameDecl(TypedefNameDecl *D, bool IsAlias) { 2428 // Import the major distinguishing characteristics of this typedef. 2429 DeclarationName Name; 2430 SourceLocation Loc; 2431 NamedDecl *ToD; 2432 // Do not import the DeclContext, we will import it once the TypedefNameDecl 2433 // is created. 2434 if (Error Err = ImportDeclParts(D, Name, ToD, Loc)) 2435 return std::move(Err); 2436 if (ToD) 2437 return ToD; 2438 2439 DeclContext *DC = cast_or_null<DeclContext>( 2440 Importer.GetAlreadyImportedOrNull(cast<Decl>(D->getDeclContext()))); 2441 DeclContext *LexicalDC = 2442 cast_or_null<DeclContext>(Importer.GetAlreadyImportedOrNull( 2443 cast<Decl>(D->getLexicalDeclContext()))); 2444 2445 // If this typedef is not in block scope, determine whether we've 2446 // seen a typedef with the same name (that we can merge with) or any 2447 // other entity by that name (which name lookup could conflict with). 2448 // Note: Repeated typedefs are not valid in C99: 2449 // 'typedef int T; typedef int T;' is invalid 2450 // We do not care about this now. 2451 if (DC && !DC->isFunctionOrMethod()) { 2452 SmallVector<NamedDecl *, 4> ConflictingDecls; 2453 unsigned IDNS = Decl::IDNS_Ordinary; 2454 auto FoundDecls = Importer.findDeclsInToCtx(DC, Name); 2455 for (auto *FoundDecl : FoundDecls) { 2456 if (!FoundDecl->isInIdentifierNamespace(IDNS)) 2457 continue; 2458 if (auto *FoundTypedef = dyn_cast<TypedefNameDecl>(FoundDecl)) { 2459 if (!hasSameVisibilityContextAndLinkage(FoundTypedef, D)) 2460 continue; 2461 2462 QualType FromUT = D->getUnderlyingType(); 2463 QualType FoundUT = FoundTypedef->getUnderlyingType(); 2464 if (Importer.IsStructurallyEquivalent(FromUT, FoundUT)) { 2465 // If the "From" context has a complete underlying type but we 2466 // already have a complete underlying type then return with that. 2467 if (!FromUT->isIncompleteType() && !FoundUT->isIncompleteType()) 2468 return Importer.MapImported(D, FoundTypedef); 2469 // FIXME Handle redecl chain. When you do that make consistent changes 2470 // in ASTImporterLookupTable too. 2471 } else { 2472 ConflictingDecls.push_back(FoundDecl); 2473 } 2474 } 2475 } 2476 2477 if (!ConflictingDecls.empty()) { 2478 ExpectedName NameOrErr = Importer.HandleNameConflict( 2479 Name, DC, IDNS, ConflictingDecls.data(), ConflictingDecls.size()); 2480 if (NameOrErr) 2481 Name = NameOrErr.get(); 2482 else 2483 return NameOrErr.takeError(); 2484 } 2485 } 2486 2487 Error Err = Error::success(); 2488 auto ToUnderlyingType = importChecked(Err, D->getUnderlyingType()); 2489 auto ToTypeSourceInfo = importChecked(Err, D->getTypeSourceInfo()); 2490 auto ToBeginLoc = importChecked(Err, D->getBeginLoc()); 2491 if (Err) 2492 return std::move(Err); 2493 2494 // Create the new typedef node. 2495 // FIXME: ToUnderlyingType is not used. 2496 (void)ToUnderlyingType; 2497 TypedefNameDecl *ToTypedef; 2498 if (IsAlias) { 2499 if (GetImportedOrCreateDecl<TypeAliasDecl>( 2500 ToTypedef, D, Importer.getToContext(), DC, ToBeginLoc, Loc, 2501 Name.getAsIdentifierInfo(), ToTypeSourceInfo)) 2502 return ToTypedef; 2503 } else if (GetImportedOrCreateDecl<TypedefDecl>( 2504 ToTypedef, D, Importer.getToContext(), DC, ToBeginLoc, Loc, 2505 Name.getAsIdentifierInfo(), ToTypeSourceInfo)) 2506 return ToTypedef; 2507 2508 // Import the DeclContext and set it to the Typedef. 2509 if ((Err = ImportDeclContext(D, DC, LexicalDC))) 2510 return std::move(Err); 2511 ToTypedef->setDeclContext(DC); 2512 ToTypedef->setLexicalDeclContext(LexicalDC); 2513 // Add to the lookupTable because we could not do that in MapImported. 2514 Importer.AddToLookupTable(ToTypedef); 2515 2516 ToTypedef->setAccess(D->getAccess()); 2517 2518 // Templated declarations should not appear in DeclContext. 2519 TypeAliasDecl *FromAlias = IsAlias ? cast<TypeAliasDecl>(D) : nullptr; 2520 if (!FromAlias || !FromAlias->getDescribedAliasTemplate()) 2521 LexicalDC->addDeclInternal(ToTypedef); 2522 2523 return ToTypedef; 2524 } 2525 2526 ExpectedDecl ASTNodeImporter::VisitTypedefDecl(TypedefDecl *D) { 2527 return VisitTypedefNameDecl(D, /*IsAlias=*/false); 2528 } 2529 2530 ExpectedDecl ASTNodeImporter::VisitTypeAliasDecl(TypeAliasDecl *D) { 2531 return VisitTypedefNameDecl(D, /*IsAlias=*/true); 2532 } 2533 2534 ExpectedDecl 2535 ASTNodeImporter::VisitTypeAliasTemplateDecl(TypeAliasTemplateDecl *D) { 2536 // Import the major distinguishing characteristics of this typedef. 2537 DeclContext *DC, *LexicalDC; 2538 DeclarationName Name; 2539 SourceLocation Loc; 2540 NamedDecl *FoundD; 2541 if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, FoundD, Loc)) 2542 return std::move(Err); 2543 if (FoundD) 2544 return FoundD; 2545 2546 // If this typedef is not in block scope, determine whether we've 2547 // seen a typedef with the same name (that we can merge with) or any 2548 // other entity by that name (which name lookup could conflict with). 2549 if (!DC->isFunctionOrMethod()) { 2550 SmallVector<NamedDecl *, 4> ConflictingDecls; 2551 unsigned IDNS = Decl::IDNS_Ordinary; 2552 auto FoundDecls = Importer.findDeclsInToCtx(DC, Name); 2553 for (auto *FoundDecl : FoundDecls) { 2554 if (!FoundDecl->isInIdentifierNamespace(IDNS)) 2555 continue; 2556 if (auto *FoundAlias = dyn_cast<TypeAliasTemplateDecl>(FoundDecl)) 2557 return Importer.MapImported(D, FoundAlias); 2558 ConflictingDecls.push_back(FoundDecl); 2559 } 2560 2561 if (!ConflictingDecls.empty()) { 2562 ExpectedName NameOrErr = Importer.HandleNameConflict( 2563 Name, DC, IDNS, ConflictingDecls.data(), ConflictingDecls.size()); 2564 if (NameOrErr) 2565 Name = NameOrErr.get(); 2566 else 2567 return NameOrErr.takeError(); 2568 } 2569 } 2570 2571 Error Err = Error::success(); 2572 auto ToTemplateParameters = importChecked(Err, D->getTemplateParameters()); 2573 auto ToTemplatedDecl = importChecked(Err, D->getTemplatedDecl()); 2574 if (Err) 2575 return std::move(Err); 2576 2577 TypeAliasTemplateDecl *ToAlias; 2578 if (GetImportedOrCreateDecl(ToAlias, D, Importer.getToContext(), DC, Loc, 2579 Name, ToTemplateParameters, ToTemplatedDecl)) 2580 return ToAlias; 2581 2582 ToTemplatedDecl->setDescribedAliasTemplate(ToAlias); 2583 2584 ToAlias->setAccess(D->getAccess()); 2585 ToAlias->setLexicalDeclContext(LexicalDC); 2586 LexicalDC->addDeclInternal(ToAlias); 2587 if (DC != Importer.getToContext().getTranslationUnitDecl()) 2588 updateLookupTableForTemplateParameters(*ToTemplateParameters); 2589 return ToAlias; 2590 } 2591 2592 ExpectedDecl ASTNodeImporter::VisitLabelDecl(LabelDecl *D) { 2593 // Import the major distinguishing characteristics of this label. 2594 DeclContext *DC, *LexicalDC; 2595 DeclarationName Name; 2596 SourceLocation Loc; 2597 NamedDecl *ToD; 2598 if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc)) 2599 return std::move(Err); 2600 if (ToD) 2601 return ToD; 2602 2603 assert(LexicalDC->isFunctionOrMethod()); 2604 2605 LabelDecl *ToLabel; 2606 if (D->isGnuLocal()) { 2607 ExpectedSLoc BeginLocOrErr = import(D->getBeginLoc()); 2608 if (!BeginLocOrErr) 2609 return BeginLocOrErr.takeError(); 2610 if (GetImportedOrCreateDecl(ToLabel, D, Importer.getToContext(), DC, Loc, 2611 Name.getAsIdentifierInfo(), *BeginLocOrErr)) 2612 return ToLabel; 2613 2614 } else { 2615 if (GetImportedOrCreateDecl(ToLabel, D, Importer.getToContext(), DC, Loc, 2616 Name.getAsIdentifierInfo())) 2617 return ToLabel; 2618 2619 } 2620 2621 Expected<LabelStmt *> ToStmtOrErr = import(D->getStmt()); 2622 if (!ToStmtOrErr) 2623 return ToStmtOrErr.takeError(); 2624 2625 ToLabel->setStmt(*ToStmtOrErr); 2626 ToLabel->setLexicalDeclContext(LexicalDC); 2627 LexicalDC->addDeclInternal(ToLabel); 2628 return ToLabel; 2629 } 2630 2631 ExpectedDecl ASTNodeImporter::VisitEnumDecl(EnumDecl *D) { 2632 // Import the major distinguishing characteristics of this enum. 2633 DeclContext *DC, *LexicalDC; 2634 DeclarationName Name; 2635 SourceLocation Loc; 2636 NamedDecl *ToD; 2637 if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc)) 2638 return std::move(Err); 2639 if (ToD) 2640 return ToD; 2641 2642 // Figure out what enum name we're looking for. 2643 unsigned IDNS = Decl::IDNS_Tag; 2644 DeclarationName SearchName = Name; 2645 if (!SearchName && D->getTypedefNameForAnonDecl()) { 2646 if (Error Err = importInto( 2647 SearchName, D->getTypedefNameForAnonDecl()->getDeclName())) 2648 return std::move(Err); 2649 IDNS = Decl::IDNS_Ordinary; 2650 } else if (Importer.getToContext().getLangOpts().CPlusPlus) 2651 IDNS |= Decl::IDNS_Ordinary; 2652 2653 // We may already have an enum of the same name; try to find and match it. 2654 EnumDecl *PrevDecl = nullptr; 2655 if (!DC->isFunctionOrMethod() && SearchName) { 2656 SmallVector<NamedDecl *, 4> ConflictingDecls; 2657 auto FoundDecls = 2658 Importer.findDeclsInToCtx(DC, SearchName); 2659 for (auto *FoundDecl : FoundDecls) { 2660 if (!FoundDecl->isInIdentifierNamespace(IDNS)) 2661 continue; 2662 2663 if (auto *Typedef = dyn_cast<TypedefNameDecl>(FoundDecl)) { 2664 if (const auto *Tag = Typedef->getUnderlyingType()->getAs<TagType>()) 2665 FoundDecl = Tag->getDecl(); 2666 } 2667 2668 if (auto *FoundEnum = dyn_cast<EnumDecl>(FoundDecl)) { 2669 if (!hasSameVisibilityContextAndLinkage(FoundEnum, D)) 2670 continue; 2671 if (IsStructuralMatch(D, FoundEnum)) { 2672 EnumDecl *FoundDef = FoundEnum->getDefinition(); 2673 if (D->isThisDeclarationADefinition() && FoundDef) 2674 return Importer.MapImported(D, FoundDef); 2675 PrevDecl = FoundEnum->getMostRecentDecl(); 2676 break; 2677 } 2678 ConflictingDecls.push_back(FoundDecl); 2679 } 2680 } 2681 2682 if (!ConflictingDecls.empty()) { 2683 ExpectedName NameOrErr = Importer.HandleNameConflict( 2684 SearchName, DC, IDNS, ConflictingDecls.data(), 2685 ConflictingDecls.size()); 2686 if (NameOrErr) 2687 Name = NameOrErr.get(); 2688 else 2689 return NameOrErr.takeError(); 2690 } 2691 } 2692 2693 Error Err = Error::success(); 2694 auto ToBeginLoc = importChecked(Err, D->getBeginLoc()); 2695 auto ToQualifierLoc = importChecked(Err, D->getQualifierLoc()); 2696 auto ToIntegerType = importChecked(Err, D->getIntegerType()); 2697 auto ToBraceRange = importChecked(Err, D->getBraceRange()); 2698 if (Err) 2699 return std::move(Err); 2700 2701 // Create the enum declaration. 2702 EnumDecl *D2; 2703 if (GetImportedOrCreateDecl( 2704 D2, D, Importer.getToContext(), DC, ToBeginLoc, 2705 Loc, Name.getAsIdentifierInfo(), PrevDecl, D->isScoped(), 2706 D->isScopedUsingClassTag(), D->isFixed())) 2707 return D2; 2708 2709 D2->setQualifierInfo(ToQualifierLoc); 2710 D2->setIntegerType(ToIntegerType); 2711 D2->setBraceRange(ToBraceRange); 2712 D2->setAccess(D->getAccess()); 2713 D2->setLexicalDeclContext(LexicalDC); 2714 addDeclToContexts(D, D2); 2715 2716 if (MemberSpecializationInfo *MemberInfo = D->getMemberSpecializationInfo()) { 2717 TemplateSpecializationKind SK = MemberInfo->getTemplateSpecializationKind(); 2718 EnumDecl *FromInst = D->getInstantiatedFromMemberEnum(); 2719 if (Expected<EnumDecl *> ToInstOrErr = import(FromInst)) 2720 D2->setInstantiationOfMemberEnum(*ToInstOrErr, SK); 2721 else 2722 return ToInstOrErr.takeError(); 2723 if (ExpectedSLoc POIOrErr = import(MemberInfo->getPointOfInstantiation())) 2724 D2->getMemberSpecializationInfo()->setPointOfInstantiation(*POIOrErr); 2725 else 2726 return POIOrErr.takeError(); 2727 } 2728 2729 // Import the definition 2730 if (D->isCompleteDefinition()) 2731 if (Error Err = ImportDefinition(D, D2)) 2732 return std::move(Err); 2733 2734 return D2; 2735 } 2736 2737 ExpectedDecl ASTNodeImporter::VisitRecordDecl(RecordDecl *D) { 2738 bool IsFriendTemplate = false; 2739 if (auto *DCXX = dyn_cast<CXXRecordDecl>(D)) { 2740 IsFriendTemplate = 2741 DCXX->getDescribedClassTemplate() && 2742 DCXX->getDescribedClassTemplate()->getFriendObjectKind() != 2743 Decl::FOK_None; 2744 } 2745 2746 // Import the major distinguishing characteristics of this record. 2747 DeclContext *DC = nullptr, *LexicalDC = nullptr; 2748 DeclarationName Name; 2749 SourceLocation Loc; 2750 NamedDecl *ToD = nullptr; 2751 if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc)) 2752 return std::move(Err); 2753 if (ToD) 2754 return ToD; 2755 2756 // Figure out what structure name we're looking for. 2757 unsigned IDNS = Decl::IDNS_Tag; 2758 DeclarationName SearchName = Name; 2759 if (!SearchName && D->getTypedefNameForAnonDecl()) { 2760 if (Error Err = importInto( 2761 SearchName, D->getTypedefNameForAnonDecl()->getDeclName())) 2762 return std::move(Err); 2763 IDNS = Decl::IDNS_Ordinary; 2764 } else if (Importer.getToContext().getLangOpts().CPlusPlus) 2765 IDNS |= Decl::IDNS_Ordinary | Decl::IDNS_TagFriend; 2766 2767 // We may already have a record of the same name; try to find and match it. 2768 RecordDecl *PrevDecl = nullptr; 2769 if (!DC->isFunctionOrMethod() && !D->isLambda()) { 2770 SmallVector<NamedDecl *, 4> ConflictingDecls; 2771 auto FoundDecls = 2772 Importer.findDeclsInToCtx(DC, SearchName); 2773 if (!FoundDecls.empty()) { 2774 // We're going to have to compare D against potentially conflicting Decls, 2775 // so complete it. 2776 if (D->hasExternalLexicalStorage() && !D->isCompleteDefinition()) 2777 D->getASTContext().getExternalSource()->CompleteType(D); 2778 } 2779 2780 for (auto *FoundDecl : FoundDecls) { 2781 if (!FoundDecl->isInIdentifierNamespace(IDNS)) 2782 continue; 2783 2784 Decl *Found = FoundDecl; 2785 if (auto *Typedef = dyn_cast<TypedefNameDecl>(Found)) { 2786 if (const auto *Tag = Typedef->getUnderlyingType()->getAs<TagType>()) 2787 Found = Tag->getDecl(); 2788 } 2789 2790 if (auto *FoundRecord = dyn_cast<RecordDecl>(Found)) { 2791 // Do not emit false positive diagnostic in case of unnamed 2792 // struct/union and in case of anonymous structs. Would be false 2793 // because there may be several anonymous/unnamed structs in a class. 2794 // E.g. these are both valid: 2795 // struct A { // unnamed structs 2796 // struct { struct A *next; } entry0; 2797 // struct { struct A *next; } entry1; 2798 // }; 2799 // struct X { struct { int a; }; struct { int b; }; }; // anon structs 2800 if (!SearchName) 2801 if (!IsStructuralMatch(D, FoundRecord, false)) 2802 continue; 2803 2804 if (!hasSameVisibilityContextAndLinkage(FoundRecord, D)) 2805 continue; 2806 2807 if (IsStructuralMatch(D, FoundRecord)) { 2808 RecordDecl *FoundDef = FoundRecord->getDefinition(); 2809 if (D->isThisDeclarationADefinition() && FoundDef) { 2810 // FIXME: Structural equivalence check should check for same 2811 // user-defined methods. 2812 Importer.MapImported(D, FoundDef); 2813 if (const auto *DCXX = dyn_cast<CXXRecordDecl>(D)) { 2814 auto *FoundCXX = dyn_cast<CXXRecordDecl>(FoundDef); 2815 assert(FoundCXX && "Record type mismatch"); 2816 2817 if (!Importer.isMinimalImport()) 2818 // FoundDef may not have every implicit method that D has 2819 // because implicit methods are created only if they are used. 2820 if (Error Err = ImportImplicitMethods(DCXX, FoundCXX)) 2821 return std::move(Err); 2822 } 2823 } 2824 PrevDecl = FoundRecord->getMostRecentDecl(); 2825 break; 2826 } 2827 ConflictingDecls.push_back(FoundDecl); 2828 } // kind is RecordDecl 2829 } // for 2830 2831 if (!ConflictingDecls.empty() && SearchName) { 2832 ExpectedName NameOrErr = Importer.HandleNameConflict( 2833 SearchName, DC, IDNS, ConflictingDecls.data(), 2834 ConflictingDecls.size()); 2835 if (NameOrErr) 2836 Name = NameOrErr.get(); 2837 else 2838 return NameOrErr.takeError(); 2839 } 2840 } 2841 2842 ExpectedSLoc BeginLocOrErr = import(D->getBeginLoc()); 2843 if (!BeginLocOrErr) 2844 return BeginLocOrErr.takeError(); 2845 2846 // Create the record declaration. 2847 RecordDecl *D2 = nullptr; 2848 CXXRecordDecl *D2CXX = nullptr; 2849 if (auto *DCXX = dyn_cast<CXXRecordDecl>(D)) { 2850 if (DCXX->isLambda()) { 2851 auto TInfoOrErr = import(DCXX->getLambdaTypeInfo()); 2852 if (!TInfoOrErr) 2853 return TInfoOrErr.takeError(); 2854 if (GetImportedOrCreateSpecialDecl( 2855 D2CXX, CXXRecordDecl::CreateLambda, D, Importer.getToContext(), 2856 DC, *TInfoOrErr, Loc, DCXX->isDependentLambda(), 2857 DCXX->isGenericLambda(), DCXX->getLambdaCaptureDefault())) 2858 return D2CXX; 2859 ExpectedDecl CDeclOrErr = import(DCXX->getLambdaContextDecl()); 2860 if (!CDeclOrErr) 2861 return CDeclOrErr.takeError(); 2862 D2CXX->setLambdaMangling(DCXX->getLambdaManglingNumber(), *CDeclOrErr, 2863 DCXX->hasKnownLambdaInternalLinkage()); 2864 D2CXX->setDeviceLambdaManglingNumber( 2865 DCXX->getDeviceLambdaManglingNumber()); 2866 } else if (DCXX->isInjectedClassName()) { 2867 // We have to be careful to do a similar dance to the one in 2868 // Sema::ActOnStartCXXMemberDeclarations 2869 const bool DelayTypeCreation = true; 2870 if (GetImportedOrCreateDecl( 2871 D2CXX, D, Importer.getToContext(), D->getTagKind(), DC, 2872 *BeginLocOrErr, Loc, Name.getAsIdentifierInfo(), 2873 cast_or_null<CXXRecordDecl>(PrevDecl), DelayTypeCreation)) 2874 return D2CXX; 2875 Importer.getToContext().getTypeDeclType( 2876 D2CXX, dyn_cast<CXXRecordDecl>(DC)); 2877 } else { 2878 if (GetImportedOrCreateDecl(D2CXX, D, Importer.getToContext(), 2879 D->getTagKind(), DC, *BeginLocOrErr, Loc, 2880 Name.getAsIdentifierInfo(), 2881 cast_or_null<CXXRecordDecl>(PrevDecl))) 2882 return D2CXX; 2883 } 2884 2885 D2 = D2CXX; 2886 D2->setAccess(D->getAccess()); 2887 D2->setLexicalDeclContext(LexicalDC); 2888 addDeclToContexts(D, D2); 2889 2890 if (ClassTemplateDecl *FromDescribed = 2891 DCXX->getDescribedClassTemplate()) { 2892 ClassTemplateDecl *ToDescribed; 2893 if (Error Err = importInto(ToDescribed, FromDescribed)) 2894 return std::move(Err); 2895 D2CXX->setDescribedClassTemplate(ToDescribed); 2896 if (!DCXX->isInjectedClassName() && !IsFriendTemplate) { 2897 // In a record describing a template the type should be an 2898 // InjectedClassNameType (see Sema::CheckClassTemplate). Update the 2899 // previously set type to the correct value here (ToDescribed is not 2900 // available at record create). 2901 // FIXME: The previous type is cleared but not removed from 2902 // ASTContext's internal storage. 2903 CXXRecordDecl *Injected = nullptr; 2904 for (NamedDecl *Found : D2CXX->noload_lookup(Name)) { 2905 auto *Record = dyn_cast<CXXRecordDecl>(Found); 2906 if (Record && Record->isInjectedClassName()) { 2907 Injected = Record; 2908 break; 2909 } 2910 } 2911 // Create an injected type for the whole redecl chain. 2912 SmallVector<Decl *, 2> Redecls = 2913 getCanonicalForwardRedeclChain(D2CXX); 2914 for (auto *R : Redecls) { 2915 auto *RI = cast<CXXRecordDecl>(R); 2916 RI->setTypeForDecl(nullptr); 2917 // Below we create a new injected type and assign that to the 2918 // canonical decl, subsequent declarations in the chain will reuse 2919 // that type. 2920 Importer.getToContext().getInjectedClassNameType( 2921 RI, ToDescribed->getInjectedClassNameSpecialization()); 2922 } 2923 // Set the new type for the previous injected decl too. 2924 if (Injected) { 2925 Injected->setTypeForDecl(nullptr); 2926 Importer.getToContext().getTypeDeclType(Injected, D2CXX); 2927 } 2928 } 2929 } else if (MemberSpecializationInfo *MemberInfo = 2930 DCXX->getMemberSpecializationInfo()) { 2931 TemplateSpecializationKind SK = 2932 MemberInfo->getTemplateSpecializationKind(); 2933 CXXRecordDecl *FromInst = DCXX->getInstantiatedFromMemberClass(); 2934 2935 if (Expected<CXXRecordDecl *> ToInstOrErr = import(FromInst)) 2936 D2CXX->setInstantiationOfMemberClass(*ToInstOrErr, SK); 2937 else 2938 return ToInstOrErr.takeError(); 2939 2940 if (ExpectedSLoc POIOrErr = 2941 import(MemberInfo->getPointOfInstantiation())) 2942 D2CXX->getMemberSpecializationInfo()->setPointOfInstantiation( 2943 *POIOrErr); 2944 else 2945 return POIOrErr.takeError(); 2946 } 2947 2948 } else { 2949 if (GetImportedOrCreateDecl(D2, D, Importer.getToContext(), 2950 D->getTagKind(), DC, *BeginLocOrErr, Loc, 2951 Name.getAsIdentifierInfo(), PrevDecl)) 2952 return D2; 2953 D2->setLexicalDeclContext(LexicalDC); 2954 addDeclToContexts(D, D2); 2955 } 2956 2957 if (auto BraceRangeOrErr = import(D->getBraceRange())) 2958 D2->setBraceRange(*BraceRangeOrErr); 2959 else 2960 return BraceRangeOrErr.takeError(); 2961 if (auto QualifierLocOrErr = import(D->getQualifierLoc())) 2962 D2->setQualifierInfo(*QualifierLocOrErr); 2963 else 2964 return QualifierLocOrErr.takeError(); 2965 2966 if (D->isAnonymousStructOrUnion()) 2967 D2->setAnonymousStructOrUnion(true); 2968 2969 if (D->isCompleteDefinition()) 2970 if (Error Err = ImportDefinition(D, D2, IDK_Default)) 2971 return std::move(Err); 2972 2973 return D2; 2974 } 2975 2976 ExpectedDecl ASTNodeImporter::VisitEnumConstantDecl(EnumConstantDecl *D) { 2977 // Import the major distinguishing characteristics of this enumerator. 2978 DeclContext *DC, *LexicalDC; 2979 DeclarationName Name; 2980 SourceLocation Loc; 2981 NamedDecl *ToD; 2982 if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc)) 2983 return std::move(Err); 2984 if (ToD) 2985 return ToD; 2986 2987 // Determine whether there are any other declarations with the same name and 2988 // in the same context. 2989 if (!LexicalDC->isFunctionOrMethod()) { 2990 SmallVector<NamedDecl *, 4> ConflictingDecls; 2991 unsigned IDNS = Decl::IDNS_Ordinary; 2992 auto FoundDecls = Importer.findDeclsInToCtx(DC, Name); 2993 for (auto *FoundDecl : FoundDecls) { 2994 if (!FoundDecl->isInIdentifierNamespace(IDNS)) 2995 continue; 2996 2997 if (auto *FoundEnumConstant = dyn_cast<EnumConstantDecl>(FoundDecl)) { 2998 if (IsStructuralMatch(D, FoundEnumConstant)) 2999 return Importer.MapImported(D, FoundEnumConstant); 3000 ConflictingDecls.push_back(FoundDecl); 3001 } 3002 } 3003 3004 if (!ConflictingDecls.empty()) { 3005 ExpectedName NameOrErr = Importer.HandleNameConflict( 3006 Name, DC, IDNS, ConflictingDecls.data(), ConflictingDecls.size()); 3007 if (NameOrErr) 3008 Name = NameOrErr.get(); 3009 else 3010 return NameOrErr.takeError(); 3011 } 3012 } 3013 3014 ExpectedType TypeOrErr = import(D->getType()); 3015 if (!TypeOrErr) 3016 return TypeOrErr.takeError(); 3017 3018 ExpectedExpr InitOrErr = import(D->getInitExpr()); 3019 if (!InitOrErr) 3020 return InitOrErr.takeError(); 3021 3022 EnumConstantDecl *ToEnumerator; 3023 if (GetImportedOrCreateDecl( 3024 ToEnumerator, D, Importer.getToContext(), cast<EnumDecl>(DC), Loc, 3025 Name.getAsIdentifierInfo(), *TypeOrErr, *InitOrErr, D->getInitVal())) 3026 return ToEnumerator; 3027 3028 ToEnumerator->setAccess(D->getAccess()); 3029 ToEnumerator->setLexicalDeclContext(LexicalDC); 3030 LexicalDC->addDeclInternal(ToEnumerator); 3031 return ToEnumerator; 3032 } 3033 3034 Error ASTNodeImporter::ImportTemplateParameterLists(const DeclaratorDecl *FromD, 3035 DeclaratorDecl *ToD) { 3036 unsigned int Num = FromD->getNumTemplateParameterLists(); 3037 if (Num == 0) 3038 return Error::success(); 3039 SmallVector<TemplateParameterList *, 2> ToTPLists(Num); 3040 for (unsigned int I = 0; I < Num; ++I) 3041 if (Expected<TemplateParameterList *> ToTPListOrErr = 3042 import(FromD->getTemplateParameterList(I))) 3043 ToTPLists[I] = *ToTPListOrErr; 3044 else 3045 return ToTPListOrErr.takeError(); 3046 ToD->setTemplateParameterListsInfo(Importer.ToContext, ToTPLists); 3047 return Error::success(); 3048 } 3049 3050 Error ASTNodeImporter::ImportTemplateInformation( 3051 FunctionDecl *FromFD, FunctionDecl *ToFD) { 3052 switch (FromFD->getTemplatedKind()) { 3053 case FunctionDecl::TK_NonTemplate: 3054 case FunctionDecl::TK_FunctionTemplate: 3055 return Error::success(); 3056 3057 case FunctionDecl::TK_MemberSpecialization: { 3058 TemplateSpecializationKind TSK = FromFD->getTemplateSpecializationKind(); 3059 3060 if (Expected<FunctionDecl *> InstFDOrErr = 3061 import(FromFD->getInstantiatedFromMemberFunction())) 3062 ToFD->setInstantiationOfMemberFunction(*InstFDOrErr, TSK); 3063 else 3064 return InstFDOrErr.takeError(); 3065 3066 if (ExpectedSLoc POIOrErr = import( 3067 FromFD->getMemberSpecializationInfo()->getPointOfInstantiation())) 3068 ToFD->getMemberSpecializationInfo()->setPointOfInstantiation(*POIOrErr); 3069 else 3070 return POIOrErr.takeError(); 3071 3072 return Error::success(); 3073 } 3074 3075 case FunctionDecl::TK_FunctionTemplateSpecialization: { 3076 auto FunctionAndArgsOrErr = 3077 ImportFunctionTemplateWithTemplateArgsFromSpecialization(FromFD); 3078 if (!FunctionAndArgsOrErr) 3079 return FunctionAndArgsOrErr.takeError(); 3080 3081 TemplateArgumentList *ToTAList = TemplateArgumentList::CreateCopy( 3082 Importer.getToContext(), std::get<1>(*FunctionAndArgsOrErr)); 3083 3084 auto *FTSInfo = FromFD->getTemplateSpecializationInfo(); 3085 TemplateArgumentListInfo ToTAInfo; 3086 const auto *FromTAArgsAsWritten = FTSInfo->TemplateArgumentsAsWritten; 3087 if (FromTAArgsAsWritten) 3088 if (Error Err = ImportTemplateArgumentListInfo( 3089 *FromTAArgsAsWritten, ToTAInfo)) 3090 return Err; 3091 3092 ExpectedSLoc POIOrErr = import(FTSInfo->getPointOfInstantiation()); 3093 if (!POIOrErr) 3094 return POIOrErr.takeError(); 3095 3096 if (Error Err = ImportTemplateParameterLists(FromFD, ToFD)) 3097 return Err; 3098 3099 TemplateSpecializationKind TSK = FTSInfo->getTemplateSpecializationKind(); 3100 ToFD->setFunctionTemplateSpecialization( 3101 std::get<0>(*FunctionAndArgsOrErr), ToTAList, /* InsertPos= */ nullptr, 3102 TSK, FromTAArgsAsWritten ? &ToTAInfo : nullptr, *POIOrErr); 3103 return Error::success(); 3104 } 3105 3106 case FunctionDecl::TK_DependentFunctionTemplateSpecialization: { 3107 auto *FromInfo = FromFD->getDependentSpecializationInfo(); 3108 UnresolvedSet<8> TemplDecls; 3109 unsigned NumTemplates = FromInfo->getNumTemplates(); 3110 for (unsigned I = 0; I < NumTemplates; I++) { 3111 if (Expected<FunctionTemplateDecl *> ToFTDOrErr = 3112 import(FromInfo->getTemplate(I))) 3113 TemplDecls.addDecl(*ToFTDOrErr); 3114 else 3115 return ToFTDOrErr.takeError(); 3116 } 3117 3118 // Import TemplateArgumentListInfo. 3119 TemplateArgumentListInfo ToTAInfo; 3120 if (Error Err = ImportTemplateArgumentListInfo( 3121 FromInfo->getLAngleLoc(), FromInfo->getRAngleLoc(), 3122 llvm::makeArrayRef( 3123 FromInfo->getTemplateArgs(), FromInfo->getNumTemplateArgs()), 3124 ToTAInfo)) 3125 return Err; 3126 3127 ToFD->setDependentTemplateSpecialization(Importer.getToContext(), 3128 TemplDecls, ToTAInfo); 3129 return Error::success(); 3130 } 3131 } 3132 llvm_unreachable("All cases should be covered!"); 3133 } 3134 3135 Expected<FunctionDecl *> 3136 ASTNodeImporter::FindFunctionTemplateSpecialization(FunctionDecl *FromFD) { 3137 auto FunctionAndArgsOrErr = 3138 ImportFunctionTemplateWithTemplateArgsFromSpecialization(FromFD); 3139 if (!FunctionAndArgsOrErr) 3140 return FunctionAndArgsOrErr.takeError(); 3141 3142 FunctionTemplateDecl *Template; 3143 TemplateArgsTy ToTemplArgs; 3144 std::tie(Template, ToTemplArgs) = *FunctionAndArgsOrErr; 3145 void *InsertPos = nullptr; 3146 auto *FoundSpec = Template->findSpecialization(ToTemplArgs, InsertPos); 3147 return FoundSpec; 3148 } 3149 3150 Error ASTNodeImporter::ImportFunctionDeclBody(FunctionDecl *FromFD, 3151 FunctionDecl *ToFD) { 3152 if (Stmt *FromBody = FromFD->getBody()) { 3153 if (ExpectedStmt ToBodyOrErr = import(FromBody)) 3154 ToFD->setBody(*ToBodyOrErr); 3155 else 3156 return ToBodyOrErr.takeError(); 3157 } 3158 return Error::success(); 3159 } 3160 3161 // Returns true if the given D has a DeclContext up to the TranslationUnitDecl 3162 // which is equal to the given DC. 3163 static bool isAncestorDeclContextOf(const DeclContext *DC, const Decl *D) { 3164 const DeclContext *DCi = D->getDeclContext(); 3165 while (DCi != D->getTranslationUnitDecl()) { 3166 if (DCi == DC) 3167 return true; 3168 DCi = DCi->getParent(); 3169 } 3170 return false; 3171 } 3172 3173 bool ASTNodeImporter::hasAutoReturnTypeDeclaredInside(FunctionDecl *D) { 3174 QualType FromTy = D->getType(); 3175 const auto *FromFPT = FromTy->getAs<FunctionProtoType>(); 3176 assert(FromFPT && "Must be called on FunctionProtoType"); 3177 if (const AutoType *AutoT = 3178 FromFPT->getReturnType()->getContainedAutoType()) { 3179 QualType DeducedT = AutoT->getDeducedType(); 3180 if (const auto *RecordT = 3181 !DeducedT.isNull() ? DeducedT->getAs<RecordType>() : nullptr) { 3182 const RecordDecl *RD = RecordT->getDecl(); 3183 assert(RD); 3184 if (isAncestorDeclContextOf(D, RD)) { 3185 assert(RD->getLexicalDeclContext() == RD->getDeclContext()); 3186 return true; 3187 } 3188 } 3189 } 3190 if (const auto *TypedefT = FromFPT->getReturnType()->getAs<TypedefType>()) { 3191 const TypedefNameDecl *TD = TypedefT->getDecl(); 3192 assert(TD); 3193 if (isAncestorDeclContextOf(D, TD)) { 3194 assert(TD->getLexicalDeclContext() == TD->getDeclContext()); 3195 return true; 3196 } 3197 } 3198 return false; 3199 } 3200 3201 ExplicitSpecifier 3202 ASTNodeImporter::importExplicitSpecifier(Error &Err, ExplicitSpecifier ESpec) { 3203 Expr *ExplicitExpr = ESpec.getExpr(); 3204 if (ExplicitExpr) 3205 ExplicitExpr = importChecked(Err, ESpec.getExpr()); 3206 return ExplicitSpecifier(ExplicitExpr, ESpec.getKind()); 3207 } 3208 3209 ExpectedDecl ASTNodeImporter::VisitFunctionDecl(FunctionDecl *D) { 3210 3211 SmallVector<Decl *, 2> Redecls = getCanonicalForwardRedeclChain(D); 3212 auto RedeclIt = Redecls.begin(); 3213 // Import the first part of the decl chain. I.e. import all previous 3214 // declarations starting from the canonical decl. 3215 for (; RedeclIt != Redecls.end() && *RedeclIt != D; ++RedeclIt) { 3216 ExpectedDecl ToRedeclOrErr = import(*RedeclIt); 3217 if (!ToRedeclOrErr) 3218 return ToRedeclOrErr.takeError(); 3219 } 3220 assert(*RedeclIt == D); 3221 3222 // Import the major distinguishing characteristics of this function. 3223 DeclContext *DC, *LexicalDC; 3224 DeclarationName Name; 3225 SourceLocation Loc; 3226 NamedDecl *ToD; 3227 if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc)) 3228 return std::move(Err); 3229 if (ToD) 3230 return ToD; 3231 3232 FunctionDecl *FoundByLookup = nullptr; 3233 FunctionTemplateDecl *FromFT = D->getDescribedFunctionTemplate(); 3234 3235 // If this is a function template specialization, then try to find the same 3236 // existing specialization in the "to" context. The lookup below will not 3237 // find any specialization, but would find the primary template; thus, we 3238 // have to skip normal lookup in case of specializations. 3239 // FIXME handle member function templates (TK_MemberSpecialization) similarly? 3240 if (D->getTemplatedKind() == 3241 FunctionDecl::TK_FunctionTemplateSpecialization) { 3242 auto FoundFunctionOrErr = FindFunctionTemplateSpecialization(D); 3243 if (!FoundFunctionOrErr) 3244 return FoundFunctionOrErr.takeError(); 3245 if (FunctionDecl *FoundFunction = *FoundFunctionOrErr) { 3246 if (Decl *Def = FindAndMapDefinition(D, FoundFunction)) 3247 return Def; 3248 FoundByLookup = FoundFunction; 3249 } 3250 } 3251 // Try to find a function in our own ("to") context with the same name, same 3252 // type, and in the same context as the function we're importing. 3253 else if (!LexicalDC->isFunctionOrMethod()) { 3254 SmallVector<NamedDecl *, 4> ConflictingDecls; 3255 unsigned IDNS = Decl::IDNS_Ordinary | Decl::IDNS_OrdinaryFriend; 3256 auto FoundDecls = Importer.findDeclsInToCtx(DC, Name); 3257 for (auto *FoundDecl : FoundDecls) { 3258 if (!FoundDecl->isInIdentifierNamespace(IDNS)) 3259 continue; 3260 3261 if (auto *FoundFunction = dyn_cast<FunctionDecl>(FoundDecl)) { 3262 if (!hasSameVisibilityContextAndLinkage(FoundFunction, D)) 3263 continue; 3264 3265 if (IsStructuralMatch(D, FoundFunction)) { 3266 if (Decl *Def = FindAndMapDefinition(D, FoundFunction)) 3267 return Def; 3268 FoundByLookup = FoundFunction; 3269 break; 3270 } 3271 // FIXME: Check for overloading more carefully, e.g., by boosting 3272 // Sema::IsOverload out to the AST library. 3273 3274 // Function overloading is okay in C++. 3275 if (Importer.getToContext().getLangOpts().CPlusPlus) 3276 continue; 3277 3278 // Complain about inconsistent function types. 3279 Importer.ToDiag(Loc, diag::warn_odr_function_type_inconsistent) 3280 << Name << D->getType() << FoundFunction->getType(); 3281 Importer.ToDiag(FoundFunction->getLocation(), diag::note_odr_value_here) 3282 << FoundFunction->getType(); 3283 ConflictingDecls.push_back(FoundDecl); 3284 } 3285 } 3286 3287 if (!ConflictingDecls.empty()) { 3288 ExpectedName NameOrErr = Importer.HandleNameConflict( 3289 Name, DC, IDNS, ConflictingDecls.data(), ConflictingDecls.size()); 3290 if (NameOrErr) 3291 Name = NameOrErr.get(); 3292 else 3293 return NameOrErr.takeError(); 3294 } 3295 } 3296 3297 // We do not allow more than one in-class declaration of a function. This is 3298 // because AST clients like VTableBuilder asserts on this. VTableBuilder 3299 // assumes there is only one in-class declaration. Building a redecl 3300 // chain would result in more than one in-class declaration for 3301 // overrides (even if they are part of the same redecl chain inside the 3302 // derived class.) 3303 if (FoundByLookup) { 3304 if (isa<CXXMethodDecl>(FoundByLookup)) { 3305 if (D->getLexicalDeclContext() == D->getDeclContext()) { 3306 if (!D->doesThisDeclarationHaveABody()) { 3307 if (FunctionTemplateDecl *DescribedD = 3308 D->getDescribedFunctionTemplate()) { 3309 // Handle a "templated" function together with its described 3310 // template. This avoids need for a similar check at import of the 3311 // described template. 3312 assert(FoundByLookup->getDescribedFunctionTemplate() && 3313 "Templated function mapped to non-templated?"); 3314 Importer.MapImported(DescribedD, 3315 FoundByLookup->getDescribedFunctionTemplate()); 3316 } 3317 return Importer.MapImported(D, FoundByLookup); 3318 } else { 3319 // Let's continue and build up the redecl chain in this case. 3320 // FIXME Merge the functions into one decl. 3321 } 3322 } 3323 } 3324 } 3325 3326 DeclarationNameInfo NameInfo(Name, Loc); 3327 // Import additional name location/type info. 3328 if (Error Err = ImportDeclarationNameLoc(D->getNameInfo(), NameInfo)) 3329 return std::move(Err); 3330 3331 QualType FromTy = D->getType(); 3332 TypeSourceInfo *FromTSI = D->getTypeSourceInfo(); 3333 // Set to true if we do not import the type of the function as is. There are 3334 // cases when the original type would result in an infinite recursion during 3335 // the import. To avoid an infinite recursion when importing, we create the 3336 // FunctionDecl with a simplified function type and update it only after the 3337 // relevant AST nodes are already imported. 3338 // The type is related to TypeSourceInfo (it references the type), so we must 3339 // do the same with TypeSourceInfo. 3340 bool UsedDifferentProtoType = false; 3341 if (const auto *FromFPT = FromTy->getAs<FunctionProtoType>()) { 3342 QualType FromReturnTy = FromFPT->getReturnType(); 3343 // Functions with auto return type may define a struct inside their body 3344 // and the return type could refer to that struct. 3345 // E.g.: auto foo() { struct X{}; return X(); } 3346 // To avoid an infinite recursion when importing, create the FunctionDecl 3347 // with a simplified return type. 3348 if (hasAutoReturnTypeDeclaredInside(D)) { 3349 FromReturnTy = Importer.getFromContext().VoidTy; 3350 UsedDifferentProtoType = true; 3351 } 3352 FunctionProtoType::ExtProtoInfo FromEPI = FromFPT->getExtProtoInfo(); 3353 // FunctionProtoType::ExtProtoInfo's ExceptionSpecDecl can point to the 3354 // FunctionDecl that we are importing the FunctionProtoType for. 3355 // To avoid an infinite recursion when importing, create the FunctionDecl 3356 // with a simplified function type. 3357 if (FromEPI.ExceptionSpec.SourceDecl || 3358 FromEPI.ExceptionSpec.SourceTemplate || 3359 FromEPI.ExceptionSpec.NoexceptExpr) { 3360 FunctionProtoType::ExtProtoInfo DefaultEPI; 3361 FromEPI = DefaultEPI; 3362 UsedDifferentProtoType = true; 3363 } 3364 FromTy = Importer.getFromContext().getFunctionType( 3365 FromReturnTy, FromFPT->getParamTypes(), FromEPI); 3366 FromTSI = Importer.getFromContext().getTrivialTypeSourceInfo( 3367 FromTy, D->getBeginLoc()); 3368 } 3369 3370 Error Err = Error::success(); 3371 auto T = importChecked(Err, FromTy); 3372 auto TInfo = importChecked(Err, FromTSI); 3373 auto ToInnerLocStart = importChecked(Err, D->getInnerLocStart()); 3374 auto ToEndLoc = importChecked(Err, D->getEndLoc()); 3375 auto ToQualifierLoc = importChecked(Err, D->getQualifierLoc()); 3376 auto TrailingRequiresClause = 3377 importChecked(Err, D->getTrailingRequiresClause()); 3378 if (Err) 3379 return std::move(Err); 3380 3381 // Import the function parameters. 3382 SmallVector<ParmVarDecl *, 8> Parameters; 3383 for (auto P : D->parameters()) { 3384 if (Expected<ParmVarDecl *> ToPOrErr = import(P)) 3385 Parameters.push_back(*ToPOrErr); 3386 else 3387 return ToPOrErr.takeError(); 3388 } 3389 3390 // Create the imported function. 3391 FunctionDecl *ToFunction = nullptr; 3392 if (auto *FromConstructor = dyn_cast<CXXConstructorDecl>(D)) { 3393 ExplicitSpecifier ESpec = 3394 importExplicitSpecifier(Err, FromConstructor->getExplicitSpecifier()); 3395 if (Err) 3396 return std::move(Err); 3397 auto ToInheritedConstructor = InheritedConstructor(); 3398 if (FromConstructor->isInheritingConstructor()) { 3399 Expected<InheritedConstructor> ImportedInheritedCtor = 3400 import(FromConstructor->getInheritedConstructor()); 3401 if (!ImportedInheritedCtor) 3402 return ImportedInheritedCtor.takeError(); 3403 ToInheritedConstructor = *ImportedInheritedCtor; 3404 } 3405 if (GetImportedOrCreateDecl<CXXConstructorDecl>( 3406 ToFunction, D, Importer.getToContext(), cast<CXXRecordDecl>(DC), 3407 ToInnerLocStart, NameInfo, T, TInfo, ESpec, D->UsesFPIntrin(), 3408 D->isInlineSpecified(), D->isImplicit(), D->getConstexprKind(), 3409 ToInheritedConstructor, TrailingRequiresClause)) 3410 return ToFunction; 3411 } else if (CXXDestructorDecl *FromDtor = dyn_cast<CXXDestructorDecl>(D)) { 3412 3413 Error Err = Error::success(); 3414 auto ToOperatorDelete = importChecked( 3415 Err, const_cast<FunctionDecl *>(FromDtor->getOperatorDelete())); 3416 auto ToThisArg = importChecked(Err, FromDtor->getOperatorDeleteThisArg()); 3417 if (Err) 3418 return std::move(Err); 3419 3420 if (GetImportedOrCreateDecl<CXXDestructorDecl>( 3421 ToFunction, D, Importer.getToContext(), cast<CXXRecordDecl>(DC), 3422 ToInnerLocStart, NameInfo, T, TInfo, D->UsesFPIntrin(), 3423 D->isInlineSpecified(), D->isImplicit(), D->getConstexprKind(), 3424 TrailingRequiresClause)) 3425 return ToFunction; 3426 3427 CXXDestructorDecl *ToDtor = cast<CXXDestructorDecl>(ToFunction); 3428 3429 ToDtor->setOperatorDelete(ToOperatorDelete, ToThisArg); 3430 } else if (CXXConversionDecl *FromConversion = 3431 dyn_cast<CXXConversionDecl>(D)) { 3432 ExplicitSpecifier ESpec = 3433 importExplicitSpecifier(Err, FromConversion->getExplicitSpecifier()); 3434 if (Err) 3435 return std::move(Err); 3436 if (GetImportedOrCreateDecl<CXXConversionDecl>( 3437 ToFunction, D, Importer.getToContext(), cast<CXXRecordDecl>(DC), 3438 ToInnerLocStart, NameInfo, T, TInfo, D->UsesFPIntrin(), 3439 D->isInlineSpecified(), ESpec, D->getConstexprKind(), 3440 SourceLocation(), TrailingRequiresClause)) 3441 return ToFunction; 3442 } else if (auto *Method = dyn_cast<CXXMethodDecl>(D)) { 3443 if (GetImportedOrCreateDecl<CXXMethodDecl>( 3444 ToFunction, D, Importer.getToContext(), cast<CXXRecordDecl>(DC), 3445 ToInnerLocStart, NameInfo, T, TInfo, Method->getStorageClass(), 3446 Method->UsesFPIntrin(), Method->isInlineSpecified(), 3447 D->getConstexprKind(), SourceLocation(), TrailingRequiresClause)) 3448 return ToFunction; 3449 } else if (auto *Guide = dyn_cast<CXXDeductionGuideDecl>(D)) { 3450 ExplicitSpecifier ESpec = 3451 importExplicitSpecifier(Err, Guide->getExplicitSpecifier()); 3452 CXXConstructorDecl *Ctor = 3453 importChecked(Err, Guide->getCorrespondingConstructor()); 3454 if (Err) 3455 return std::move(Err); 3456 if (GetImportedOrCreateDecl<CXXDeductionGuideDecl>( 3457 ToFunction, D, Importer.getToContext(), DC, ToInnerLocStart, ESpec, 3458 NameInfo, T, TInfo, ToEndLoc, Ctor)) 3459 return ToFunction; 3460 cast<CXXDeductionGuideDecl>(ToFunction) 3461 ->setIsCopyDeductionCandidate(Guide->isCopyDeductionCandidate()); 3462 } else { 3463 if (GetImportedOrCreateDecl( 3464 ToFunction, D, Importer.getToContext(), DC, ToInnerLocStart, 3465 NameInfo, T, TInfo, D->getStorageClass(), D->UsesFPIntrin(), 3466 D->isInlineSpecified(), D->hasWrittenPrototype(), 3467 D->getConstexprKind(), TrailingRequiresClause)) 3468 return ToFunction; 3469 } 3470 3471 // Connect the redecl chain. 3472 if (FoundByLookup) { 3473 auto *Recent = const_cast<FunctionDecl *>( 3474 FoundByLookup->getMostRecentDecl()); 3475 ToFunction->setPreviousDecl(Recent); 3476 // FIXME Probably we should merge exception specifications. E.g. In the 3477 // "To" context the existing function may have exception specification with 3478 // noexcept-unevaluated, while the newly imported function may have an 3479 // evaluated noexcept. A call to adjustExceptionSpec() on the imported 3480 // decl and its redeclarations may be required. 3481 } 3482 3483 ToFunction->setQualifierInfo(ToQualifierLoc); 3484 ToFunction->setAccess(D->getAccess()); 3485 ToFunction->setLexicalDeclContext(LexicalDC); 3486 ToFunction->setVirtualAsWritten(D->isVirtualAsWritten()); 3487 ToFunction->setTrivial(D->isTrivial()); 3488 ToFunction->setPure(D->isPure()); 3489 ToFunction->setDefaulted(D->isDefaulted()); 3490 ToFunction->setExplicitlyDefaulted(D->isExplicitlyDefaulted()); 3491 ToFunction->setDeletedAsWritten(D->isDeletedAsWritten()); 3492 ToFunction->setRangeEnd(ToEndLoc); 3493 3494 // Set the parameters. 3495 for (auto *Param : Parameters) { 3496 Param->setOwningFunction(ToFunction); 3497 ToFunction->addDeclInternal(Param); 3498 if (ASTImporterLookupTable *LT = Importer.SharedState->getLookupTable()) 3499 LT->update(Param, Importer.getToContext().getTranslationUnitDecl()); 3500 } 3501 ToFunction->setParams(Parameters); 3502 3503 // We need to complete creation of FunctionProtoTypeLoc manually with setting 3504 // params it refers to. 3505 if (TInfo) { 3506 if (auto ProtoLoc = 3507 TInfo->getTypeLoc().IgnoreParens().getAs<FunctionProtoTypeLoc>()) { 3508 for (unsigned I = 0, N = Parameters.size(); I != N; ++I) 3509 ProtoLoc.setParam(I, Parameters[I]); 3510 } 3511 } 3512 3513 // Import the describing template function, if any. 3514 if (FromFT) { 3515 auto ToFTOrErr = import(FromFT); 3516 if (!ToFTOrErr) 3517 return ToFTOrErr.takeError(); 3518 } 3519 3520 // Import Ctor initializers. 3521 if (auto *FromConstructor = dyn_cast<CXXConstructorDecl>(D)) { 3522 if (unsigned NumInitializers = FromConstructor->getNumCtorInitializers()) { 3523 SmallVector<CXXCtorInitializer *, 4> CtorInitializers(NumInitializers); 3524 // Import first, then allocate memory and copy if there was no error. 3525 if (Error Err = ImportContainerChecked( 3526 FromConstructor->inits(), CtorInitializers)) 3527 return std::move(Err); 3528 auto **Memory = 3529 new (Importer.getToContext()) CXXCtorInitializer *[NumInitializers]; 3530 std::copy(CtorInitializers.begin(), CtorInitializers.end(), Memory); 3531 auto *ToCtor = cast<CXXConstructorDecl>(ToFunction); 3532 ToCtor->setCtorInitializers(Memory); 3533 ToCtor->setNumCtorInitializers(NumInitializers); 3534 } 3535 } 3536 3537 if (D->doesThisDeclarationHaveABody()) { 3538 Error Err = ImportFunctionDeclBody(D, ToFunction); 3539 3540 if (Err) 3541 return std::move(Err); 3542 } 3543 3544 // Import and set the original type in case we used another type. 3545 if (UsedDifferentProtoType) { 3546 if (ExpectedType TyOrErr = import(D->getType())) 3547 ToFunction->setType(*TyOrErr); 3548 else 3549 return TyOrErr.takeError(); 3550 if (Expected<TypeSourceInfo *> TSIOrErr = import(D->getTypeSourceInfo())) 3551 ToFunction->setTypeSourceInfo(*TSIOrErr); 3552 else 3553 return TSIOrErr.takeError(); 3554 } 3555 3556 // FIXME: Other bits to merge? 3557 3558 // If it is a template, import all related things. 3559 if (Error Err = ImportTemplateInformation(D, ToFunction)) 3560 return std::move(Err); 3561 3562 addDeclToContexts(D, ToFunction); 3563 3564 if (auto *FromCXXMethod = dyn_cast<CXXMethodDecl>(D)) 3565 if (Error Err = ImportOverriddenMethods(cast<CXXMethodDecl>(ToFunction), 3566 FromCXXMethod)) 3567 return std::move(Err); 3568 3569 // Import the rest of the chain. I.e. import all subsequent declarations. 3570 for (++RedeclIt; RedeclIt != Redecls.end(); ++RedeclIt) { 3571 ExpectedDecl ToRedeclOrErr = import(*RedeclIt); 3572 if (!ToRedeclOrErr) 3573 return ToRedeclOrErr.takeError(); 3574 } 3575 3576 return ToFunction; 3577 } 3578 3579 ExpectedDecl ASTNodeImporter::VisitCXXMethodDecl(CXXMethodDecl *D) { 3580 return VisitFunctionDecl(D); 3581 } 3582 3583 ExpectedDecl ASTNodeImporter::VisitCXXConstructorDecl(CXXConstructorDecl *D) { 3584 return VisitCXXMethodDecl(D); 3585 } 3586 3587 ExpectedDecl ASTNodeImporter::VisitCXXDestructorDecl(CXXDestructorDecl *D) { 3588 return VisitCXXMethodDecl(D); 3589 } 3590 3591 ExpectedDecl ASTNodeImporter::VisitCXXConversionDecl(CXXConversionDecl *D) { 3592 return VisitCXXMethodDecl(D); 3593 } 3594 3595 ExpectedDecl 3596 ASTNodeImporter::VisitCXXDeductionGuideDecl(CXXDeductionGuideDecl *D) { 3597 return VisitFunctionDecl(D); 3598 } 3599 3600 ExpectedDecl ASTNodeImporter::VisitFieldDecl(FieldDecl *D) { 3601 // Import the major distinguishing characteristics of a variable. 3602 DeclContext *DC, *LexicalDC; 3603 DeclarationName Name; 3604 SourceLocation Loc; 3605 NamedDecl *ToD; 3606 if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc)) 3607 return std::move(Err); 3608 if (ToD) 3609 return ToD; 3610 3611 // Determine whether we've already imported this field. 3612 auto FoundDecls = Importer.findDeclsInToCtx(DC, Name); 3613 for (auto *FoundDecl : FoundDecls) { 3614 if (FieldDecl *FoundField = dyn_cast<FieldDecl>(FoundDecl)) { 3615 // For anonymous fields, match up by index. 3616 if (!Name && 3617 ASTImporter::getFieldIndex(D) != 3618 ASTImporter::getFieldIndex(FoundField)) 3619 continue; 3620 3621 if (Importer.IsStructurallyEquivalent(D->getType(), 3622 FoundField->getType())) { 3623 Importer.MapImported(D, FoundField); 3624 // In case of a FieldDecl of a ClassTemplateSpecializationDecl, the 3625 // initializer of a FieldDecl might not had been instantiated in the 3626 // "To" context. However, the "From" context might instantiated that, 3627 // thus we have to merge that. 3628 if (Expr *FromInitializer = D->getInClassInitializer()) { 3629 // We don't have yet the initializer set. 3630 if (FoundField->hasInClassInitializer() && 3631 !FoundField->getInClassInitializer()) { 3632 if (ExpectedExpr ToInitializerOrErr = import(FromInitializer)) 3633 FoundField->setInClassInitializer(*ToInitializerOrErr); 3634 else { 3635 // We can't return error here, 3636 // since we already mapped D as imported. 3637 // FIXME: warning message? 3638 consumeError(ToInitializerOrErr.takeError()); 3639 return FoundField; 3640 } 3641 } 3642 } 3643 return FoundField; 3644 } 3645 3646 // FIXME: Why is this case not handled with calling HandleNameConflict? 3647 Importer.ToDiag(Loc, diag::warn_odr_field_type_inconsistent) 3648 << Name << D->getType() << FoundField->getType(); 3649 Importer.ToDiag(FoundField->getLocation(), diag::note_odr_value_here) 3650 << FoundField->getType(); 3651 3652 return make_error<ImportError>(ImportError::NameConflict); 3653 } 3654 } 3655 3656 Error Err = Error::success(); 3657 auto ToType = importChecked(Err, D->getType()); 3658 auto ToTInfo = importChecked(Err, D->getTypeSourceInfo()); 3659 auto ToBitWidth = importChecked(Err, D->getBitWidth()); 3660 auto ToInnerLocStart = importChecked(Err, D->getInnerLocStart()); 3661 auto ToInitializer = importChecked(Err, D->getInClassInitializer()); 3662 if (Err) 3663 return std::move(Err); 3664 const Type *ToCapturedVLAType = nullptr; 3665 if (Error Err = Importer.importInto( 3666 ToCapturedVLAType, cast_or_null<Type>(D->getCapturedVLAType()))) 3667 return std::move(Err); 3668 3669 FieldDecl *ToField; 3670 if (GetImportedOrCreateDecl(ToField, D, Importer.getToContext(), DC, 3671 ToInnerLocStart, Loc, Name.getAsIdentifierInfo(), 3672 ToType, ToTInfo, ToBitWidth, D->isMutable(), 3673 D->getInClassInitStyle())) 3674 return ToField; 3675 3676 ToField->setAccess(D->getAccess()); 3677 ToField->setLexicalDeclContext(LexicalDC); 3678 if (ToInitializer) 3679 ToField->setInClassInitializer(ToInitializer); 3680 ToField->setImplicit(D->isImplicit()); 3681 if (ToCapturedVLAType) 3682 ToField->setCapturedVLAType(cast<VariableArrayType>(ToCapturedVLAType)); 3683 LexicalDC->addDeclInternal(ToField); 3684 return ToField; 3685 } 3686 3687 ExpectedDecl ASTNodeImporter::VisitIndirectFieldDecl(IndirectFieldDecl *D) { 3688 // Import the major distinguishing characteristics of a variable. 3689 DeclContext *DC, *LexicalDC; 3690 DeclarationName Name; 3691 SourceLocation Loc; 3692 NamedDecl *ToD; 3693 if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc)) 3694 return std::move(Err); 3695 if (ToD) 3696 return ToD; 3697 3698 // Determine whether we've already imported this field. 3699 auto FoundDecls = Importer.findDeclsInToCtx(DC, Name); 3700 for (unsigned I = 0, N = FoundDecls.size(); I != N; ++I) { 3701 if (auto *FoundField = dyn_cast<IndirectFieldDecl>(FoundDecls[I])) { 3702 // For anonymous indirect fields, match up by index. 3703 if (!Name && 3704 ASTImporter::getFieldIndex(D) != 3705 ASTImporter::getFieldIndex(FoundField)) 3706 continue; 3707 3708 if (Importer.IsStructurallyEquivalent(D->getType(), 3709 FoundField->getType(), 3710 !Name.isEmpty())) { 3711 Importer.MapImported(D, FoundField); 3712 return FoundField; 3713 } 3714 3715 // If there are more anonymous fields to check, continue. 3716 if (!Name && I < N-1) 3717 continue; 3718 3719 // FIXME: Why is this case not handled with calling HandleNameConflict? 3720 Importer.ToDiag(Loc, diag::warn_odr_field_type_inconsistent) 3721 << Name << D->getType() << FoundField->getType(); 3722 Importer.ToDiag(FoundField->getLocation(), diag::note_odr_value_here) 3723 << FoundField->getType(); 3724 3725 return make_error<ImportError>(ImportError::NameConflict); 3726 } 3727 } 3728 3729 // Import the type. 3730 auto TypeOrErr = import(D->getType()); 3731 if (!TypeOrErr) 3732 return TypeOrErr.takeError(); 3733 3734 auto **NamedChain = 3735 new (Importer.getToContext()) NamedDecl*[D->getChainingSize()]; 3736 3737 unsigned i = 0; 3738 for (auto *PI : D->chain()) 3739 if (Expected<NamedDecl *> ToD = import(PI)) 3740 NamedChain[i++] = *ToD; 3741 else 3742 return ToD.takeError(); 3743 3744 llvm::MutableArrayRef<NamedDecl *> CH = {NamedChain, D->getChainingSize()}; 3745 IndirectFieldDecl *ToIndirectField; 3746 if (GetImportedOrCreateDecl(ToIndirectField, D, Importer.getToContext(), DC, 3747 Loc, Name.getAsIdentifierInfo(), *TypeOrErr, CH)) 3748 // FIXME here we leak `NamedChain` which is allocated before 3749 return ToIndirectField; 3750 3751 ToIndirectField->setAccess(D->getAccess()); 3752 ToIndirectField->setLexicalDeclContext(LexicalDC); 3753 LexicalDC->addDeclInternal(ToIndirectField); 3754 return ToIndirectField; 3755 } 3756 3757 /// Used as return type of getFriendCountAndPosition. 3758 struct FriendCountAndPosition { 3759 /// Number of similar looking friends. 3760 unsigned int TotalCount; 3761 /// Index of the specific FriendDecl. 3762 unsigned int IndexOfDecl; 3763 }; 3764 3765 template <class T> 3766 static FriendCountAndPosition getFriendCountAndPosition( 3767 const FriendDecl *FD, 3768 llvm::function_ref<T(const FriendDecl *)> GetCanTypeOrDecl) { 3769 unsigned int FriendCount = 0; 3770 llvm::Optional<unsigned int> FriendPosition; 3771 const auto *RD = cast<CXXRecordDecl>(FD->getLexicalDeclContext()); 3772 3773 T TypeOrDecl = GetCanTypeOrDecl(FD); 3774 3775 for (const FriendDecl *FoundFriend : RD->friends()) { 3776 if (FoundFriend == FD) { 3777 FriendPosition = FriendCount; 3778 ++FriendCount; 3779 } else if (!FoundFriend->getFriendDecl() == !FD->getFriendDecl() && 3780 GetCanTypeOrDecl(FoundFriend) == TypeOrDecl) { 3781 ++FriendCount; 3782 } 3783 } 3784 3785 assert(FriendPosition && "Friend decl not found in own parent."); 3786 3787 return {FriendCount, *FriendPosition}; 3788 } 3789 3790 static FriendCountAndPosition getFriendCountAndPosition(const FriendDecl *FD) { 3791 if (FD->getFriendType()) 3792 return getFriendCountAndPosition<QualType>(FD, [](const FriendDecl *F) { 3793 if (TypeSourceInfo *TSI = F->getFriendType()) 3794 return TSI->getType().getCanonicalType(); 3795 llvm_unreachable("Wrong friend object type."); 3796 }); 3797 else 3798 return getFriendCountAndPosition<Decl *>(FD, [](const FriendDecl *F) { 3799 if (Decl *D = F->getFriendDecl()) 3800 return D->getCanonicalDecl(); 3801 llvm_unreachable("Wrong friend object type."); 3802 }); 3803 } 3804 3805 ExpectedDecl ASTNodeImporter::VisitFriendDecl(FriendDecl *D) { 3806 // Import the major distinguishing characteristics of a declaration. 3807 DeclContext *DC, *LexicalDC; 3808 if (Error Err = ImportDeclContext(D, DC, LexicalDC)) 3809 return std::move(Err); 3810 3811 // Determine whether we've already imported this decl. 3812 // FriendDecl is not a NamedDecl so we cannot use lookup. 3813 // We try to maintain order and count of redundant friend declarations. 3814 const auto *RD = cast<CXXRecordDecl>(DC); 3815 FriendDecl *ImportedFriend = RD->getFirstFriend(); 3816 SmallVector<FriendDecl *, 2> ImportedEquivalentFriends; 3817 3818 while (ImportedFriend) { 3819 bool Match = false; 3820 if (D->getFriendDecl() && ImportedFriend->getFriendDecl()) { 3821 Match = 3822 IsStructuralMatch(D->getFriendDecl(), ImportedFriend->getFriendDecl(), 3823 /*Complain=*/false); 3824 } else if (D->getFriendType() && ImportedFriend->getFriendType()) { 3825 Match = Importer.IsStructurallyEquivalent( 3826 D->getFriendType()->getType(), 3827 ImportedFriend->getFriendType()->getType(), /*Complain=*/false); 3828 } 3829 if (Match) 3830 ImportedEquivalentFriends.push_back(ImportedFriend); 3831 3832 ImportedFriend = ImportedFriend->getNextFriend(); 3833 } 3834 FriendCountAndPosition CountAndPosition = getFriendCountAndPosition(D); 3835 3836 assert(ImportedEquivalentFriends.size() <= CountAndPosition.TotalCount && 3837 "Class with non-matching friends is imported, ODR check wrong?"); 3838 if (ImportedEquivalentFriends.size() == CountAndPosition.TotalCount) 3839 return Importer.MapImported( 3840 D, ImportedEquivalentFriends[CountAndPosition.IndexOfDecl]); 3841 3842 // Not found. Create it. 3843 // The declarations will be put into order later by ImportDeclContext. 3844 FriendDecl::FriendUnion ToFU; 3845 if (NamedDecl *FriendD = D->getFriendDecl()) { 3846 NamedDecl *ToFriendD; 3847 if (Error Err = importInto(ToFriendD, FriendD)) 3848 return std::move(Err); 3849 3850 if (FriendD->getFriendObjectKind() != Decl::FOK_None && 3851 !(FriendD->isInIdentifierNamespace(Decl::IDNS_NonMemberOperator))) 3852 ToFriendD->setObjectOfFriendDecl(false); 3853 3854 ToFU = ToFriendD; 3855 } else { // The friend is a type, not a decl. 3856 if (auto TSIOrErr = import(D->getFriendType())) 3857 ToFU = *TSIOrErr; 3858 else 3859 return TSIOrErr.takeError(); 3860 } 3861 3862 SmallVector<TemplateParameterList *, 1> ToTPLists(D->NumTPLists); 3863 auto **FromTPLists = D->getTrailingObjects<TemplateParameterList *>(); 3864 for (unsigned I = 0; I < D->NumTPLists; I++) { 3865 if (auto ListOrErr = import(FromTPLists[I])) 3866 ToTPLists[I] = *ListOrErr; 3867 else 3868 return ListOrErr.takeError(); 3869 } 3870 3871 auto LocationOrErr = import(D->getLocation()); 3872 if (!LocationOrErr) 3873 return LocationOrErr.takeError(); 3874 auto FriendLocOrErr = import(D->getFriendLoc()); 3875 if (!FriendLocOrErr) 3876 return FriendLocOrErr.takeError(); 3877 3878 FriendDecl *FrD; 3879 if (GetImportedOrCreateDecl(FrD, D, Importer.getToContext(), DC, 3880 *LocationOrErr, ToFU, 3881 *FriendLocOrErr, ToTPLists)) 3882 return FrD; 3883 3884 FrD->setAccess(D->getAccess()); 3885 FrD->setLexicalDeclContext(LexicalDC); 3886 LexicalDC->addDeclInternal(FrD); 3887 return FrD; 3888 } 3889 3890 ExpectedDecl ASTNodeImporter::VisitObjCIvarDecl(ObjCIvarDecl *D) { 3891 // Import the major distinguishing characteristics of an ivar. 3892 DeclContext *DC, *LexicalDC; 3893 DeclarationName Name; 3894 SourceLocation Loc; 3895 NamedDecl *ToD; 3896 if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc)) 3897 return std::move(Err); 3898 if (ToD) 3899 return ToD; 3900 3901 // Determine whether we've already imported this ivar 3902 auto FoundDecls = Importer.findDeclsInToCtx(DC, Name); 3903 for (auto *FoundDecl : FoundDecls) { 3904 if (ObjCIvarDecl *FoundIvar = dyn_cast<ObjCIvarDecl>(FoundDecl)) { 3905 if (Importer.IsStructurallyEquivalent(D->getType(), 3906 FoundIvar->getType())) { 3907 Importer.MapImported(D, FoundIvar); 3908 return FoundIvar; 3909 } 3910 3911 Importer.ToDiag(Loc, diag::warn_odr_ivar_type_inconsistent) 3912 << Name << D->getType() << FoundIvar->getType(); 3913 Importer.ToDiag(FoundIvar->getLocation(), diag::note_odr_value_here) 3914 << FoundIvar->getType(); 3915 3916 return make_error<ImportError>(ImportError::NameConflict); 3917 } 3918 } 3919 3920 Error Err = Error::success(); 3921 auto ToType = importChecked(Err, D->getType()); 3922 auto ToTypeSourceInfo = importChecked(Err, D->getTypeSourceInfo()); 3923 auto ToBitWidth = importChecked(Err, D->getBitWidth()); 3924 auto ToInnerLocStart = importChecked(Err, D->getInnerLocStart()); 3925 if (Err) 3926 return std::move(Err); 3927 3928 ObjCIvarDecl *ToIvar; 3929 if (GetImportedOrCreateDecl( 3930 ToIvar, D, Importer.getToContext(), cast<ObjCContainerDecl>(DC), 3931 ToInnerLocStart, Loc, Name.getAsIdentifierInfo(), 3932 ToType, ToTypeSourceInfo, 3933 D->getAccessControl(),ToBitWidth, D->getSynthesize())) 3934 return ToIvar; 3935 3936 ToIvar->setLexicalDeclContext(LexicalDC); 3937 LexicalDC->addDeclInternal(ToIvar); 3938 return ToIvar; 3939 } 3940 3941 ExpectedDecl ASTNodeImporter::VisitVarDecl(VarDecl *D) { 3942 3943 SmallVector<Decl*, 2> Redecls = getCanonicalForwardRedeclChain(D); 3944 auto RedeclIt = Redecls.begin(); 3945 // Import the first part of the decl chain. I.e. import all previous 3946 // declarations starting from the canonical decl. 3947 for (; RedeclIt != Redecls.end() && *RedeclIt != D; ++RedeclIt) { 3948 ExpectedDecl RedeclOrErr = import(*RedeclIt); 3949 if (!RedeclOrErr) 3950 return RedeclOrErr.takeError(); 3951 } 3952 assert(*RedeclIt == D); 3953 3954 // Import the major distinguishing characteristics of a variable. 3955 DeclContext *DC, *LexicalDC; 3956 DeclarationName Name; 3957 SourceLocation Loc; 3958 NamedDecl *ToD; 3959 if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc)) 3960 return std::move(Err); 3961 if (ToD) 3962 return ToD; 3963 3964 // Try to find a variable in our own ("to") context with the same name and 3965 // in the same context as the variable we're importing. 3966 VarDecl *FoundByLookup = nullptr; 3967 if (D->isFileVarDecl()) { 3968 SmallVector<NamedDecl *, 4> ConflictingDecls; 3969 unsigned IDNS = Decl::IDNS_Ordinary; 3970 auto FoundDecls = Importer.findDeclsInToCtx(DC, Name); 3971 for (auto *FoundDecl : FoundDecls) { 3972 if (!FoundDecl->isInIdentifierNamespace(IDNS)) 3973 continue; 3974 3975 if (auto *FoundVar = dyn_cast<VarDecl>(FoundDecl)) { 3976 if (!hasSameVisibilityContextAndLinkage(FoundVar, D)) 3977 continue; 3978 if (Importer.IsStructurallyEquivalent(D->getType(), 3979 FoundVar->getType())) { 3980 3981 // The VarDecl in the "From" context has a definition, but in the 3982 // "To" context we already have a definition. 3983 VarDecl *FoundDef = FoundVar->getDefinition(); 3984 if (D->isThisDeclarationADefinition() && FoundDef) 3985 // FIXME Check for ODR error if the two definitions have 3986 // different initializers? 3987 return Importer.MapImported(D, FoundDef); 3988 3989 // The VarDecl in the "From" context has an initializer, but in the 3990 // "To" context we already have an initializer. 3991 const VarDecl *FoundDInit = nullptr; 3992 if (D->getInit() && FoundVar->getAnyInitializer(FoundDInit)) 3993 // FIXME Diagnose ODR error if the two initializers are different? 3994 return Importer.MapImported(D, const_cast<VarDecl*>(FoundDInit)); 3995 3996 FoundByLookup = FoundVar; 3997 break; 3998 } 3999 4000 const ArrayType *FoundArray 4001 = Importer.getToContext().getAsArrayType(FoundVar->getType()); 4002 const ArrayType *TArray 4003 = Importer.getToContext().getAsArrayType(D->getType()); 4004 if (FoundArray && TArray) { 4005 if (isa<IncompleteArrayType>(FoundArray) && 4006 isa<ConstantArrayType>(TArray)) { 4007 // Import the type. 4008 if (auto TyOrErr = import(D->getType())) 4009 FoundVar->setType(*TyOrErr); 4010 else 4011 return TyOrErr.takeError(); 4012 4013 FoundByLookup = FoundVar; 4014 break; 4015 } else if (isa<IncompleteArrayType>(TArray) && 4016 isa<ConstantArrayType>(FoundArray)) { 4017 FoundByLookup = FoundVar; 4018 break; 4019 } 4020 } 4021 4022 Importer.ToDiag(Loc, diag::warn_odr_variable_type_inconsistent) 4023 << Name << D->getType() << FoundVar->getType(); 4024 Importer.ToDiag(FoundVar->getLocation(), diag::note_odr_value_here) 4025 << FoundVar->getType(); 4026 ConflictingDecls.push_back(FoundDecl); 4027 } 4028 } 4029 4030 if (!ConflictingDecls.empty()) { 4031 ExpectedName NameOrErr = Importer.HandleNameConflict( 4032 Name, DC, IDNS, ConflictingDecls.data(), ConflictingDecls.size()); 4033 if (NameOrErr) 4034 Name = NameOrErr.get(); 4035 else 4036 return NameOrErr.takeError(); 4037 } 4038 } 4039 4040 Error Err = Error::success(); 4041 auto ToType = importChecked(Err, D->getType()); 4042 auto ToTypeSourceInfo = importChecked(Err, D->getTypeSourceInfo()); 4043 auto ToInnerLocStart = importChecked(Err, D->getInnerLocStart()); 4044 auto ToQualifierLoc = importChecked(Err, D->getQualifierLoc()); 4045 if (Err) 4046 return std::move(Err); 4047 4048 VarDecl *ToVar; 4049 if (auto *FromDecomp = dyn_cast<DecompositionDecl>(D)) { 4050 SmallVector<BindingDecl *> Bindings(FromDecomp->bindings().size()); 4051 if (Error Err = 4052 ImportArrayChecked(FromDecomp->bindings(), Bindings.begin())) 4053 return std::move(Err); 4054 DecompositionDecl *ToDecomp; 4055 if (GetImportedOrCreateDecl( 4056 ToDecomp, FromDecomp, Importer.getToContext(), DC, ToInnerLocStart, 4057 Loc, ToType, ToTypeSourceInfo, D->getStorageClass(), Bindings)) 4058 return ToDecomp; 4059 ToVar = ToDecomp; 4060 } else { 4061 // Create the imported variable. 4062 if (GetImportedOrCreateDecl(ToVar, D, Importer.getToContext(), DC, 4063 ToInnerLocStart, Loc, 4064 Name.getAsIdentifierInfo(), ToType, 4065 ToTypeSourceInfo, D->getStorageClass())) 4066 return ToVar; 4067 } 4068 4069 ToVar->setTSCSpec(D->getTSCSpec()); 4070 ToVar->setQualifierInfo(ToQualifierLoc); 4071 ToVar->setAccess(D->getAccess()); 4072 ToVar->setLexicalDeclContext(LexicalDC); 4073 4074 if (FoundByLookup) { 4075 auto *Recent = const_cast<VarDecl *>(FoundByLookup->getMostRecentDecl()); 4076 ToVar->setPreviousDecl(Recent); 4077 } 4078 4079 // Import the described template, if any. 4080 if (D->getDescribedVarTemplate()) { 4081 auto ToVTOrErr = import(D->getDescribedVarTemplate()); 4082 if (!ToVTOrErr) 4083 return ToVTOrErr.takeError(); 4084 } 4085 4086 if (Error Err = ImportInitializer(D, ToVar)) 4087 return std::move(Err); 4088 4089 if (D->isConstexpr()) 4090 ToVar->setConstexpr(true); 4091 4092 addDeclToContexts(D, ToVar); 4093 4094 // Import the rest of the chain. I.e. import all subsequent declarations. 4095 for (++RedeclIt; RedeclIt != Redecls.end(); ++RedeclIt) { 4096 ExpectedDecl RedeclOrErr = import(*RedeclIt); 4097 if (!RedeclOrErr) 4098 return RedeclOrErr.takeError(); 4099 } 4100 4101 return ToVar; 4102 } 4103 4104 ExpectedDecl ASTNodeImporter::VisitImplicitParamDecl(ImplicitParamDecl *D) { 4105 // Parameters are created in the translation unit's context, then moved 4106 // into the function declaration's context afterward. 4107 DeclContext *DC = Importer.getToContext().getTranslationUnitDecl(); 4108 4109 Error Err = Error::success(); 4110 auto ToDeclName = importChecked(Err, D->getDeclName()); 4111 auto ToLocation = importChecked(Err, D->getLocation()); 4112 auto ToType = importChecked(Err, D->getType()); 4113 if (Err) 4114 return std::move(Err); 4115 4116 // Create the imported parameter. 4117 ImplicitParamDecl *ToParm = nullptr; 4118 if (GetImportedOrCreateDecl(ToParm, D, Importer.getToContext(), DC, 4119 ToLocation, ToDeclName.getAsIdentifierInfo(), 4120 ToType, D->getParameterKind())) 4121 return ToParm; 4122 return ToParm; 4123 } 4124 4125 Error ASTNodeImporter::ImportDefaultArgOfParmVarDecl( 4126 const ParmVarDecl *FromParam, ParmVarDecl *ToParam) { 4127 ToParam->setHasInheritedDefaultArg(FromParam->hasInheritedDefaultArg()); 4128 ToParam->setKNRPromoted(FromParam->isKNRPromoted()); 4129 4130 if (FromParam->hasUninstantiatedDefaultArg()) { 4131 if (auto ToDefArgOrErr = import(FromParam->getUninstantiatedDefaultArg())) 4132 ToParam->setUninstantiatedDefaultArg(*ToDefArgOrErr); 4133 else 4134 return ToDefArgOrErr.takeError(); 4135 } else if (FromParam->hasUnparsedDefaultArg()) { 4136 ToParam->setUnparsedDefaultArg(); 4137 } else if (FromParam->hasDefaultArg()) { 4138 if (auto ToDefArgOrErr = import(FromParam->getDefaultArg())) 4139 ToParam->setDefaultArg(*ToDefArgOrErr); 4140 else 4141 return ToDefArgOrErr.takeError(); 4142 } 4143 4144 return Error::success(); 4145 } 4146 4147 Expected<InheritedConstructor> 4148 ASTNodeImporter::ImportInheritedConstructor(const InheritedConstructor &From) { 4149 Error Err = Error::success(); 4150 CXXConstructorDecl *ToBaseCtor = importChecked(Err, From.getConstructor()); 4151 ConstructorUsingShadowDecl *ToShadow = 4152 importChecked(Err, From.getShadowDecl()); 4153 if (Err) 4154 return std::move(Err); 4155 return InheritedConstructor(ToShadow, ToBaseCtor); 4156 } 4157 4158 ExpectedDecl ASTNodeImporter::VisitParmVarDecl(ParmVarDecl *D) { 4159 // Parameters are created in the translation unit's context, then moved 4160 // into the function declaration's context afterward. 4161 DeclContext *DC = Importer.getToContext().getTranslationUnitDecl(); 4162 4163 Error Err = Error::success(); 4164 auto ToDeclName = importChecked(Err, D->getDeclName()); 4165 auto ToLocation = importChecked(Err, D->getLocation()); 4166 auto ToInnerLocStart = importChecked(Err, D->getInnerLocStart()); 4167 auto ToType = importChecked(Err, D->getType()); 4168 auto ToTypeSourceInfo = importChecked(Err, D->getTypeSourceInfo()); 4169 if (Err) 4170 return std::move(Err); 4171 4172 ParmVarDecl *ToParm; 4173 if (GetImportedOrCreateDecl(ToParm, D, Importer.getToContext(), DC, 4174 ToInnerLocStart, ToLocation, 4175 ToDeclName.getAsIdentifierInfo(), ToType, 4176 ToTypeSourceInfo, D->getStorageClass(), 4177 /*DefaultArg*/ nullptr)) 4178 return ToParm; 4179 4180 // Set the default argument. It should be no problem if it was already done. 4181 // Do not import the default expression before GetImportedOrCreateDecl call 4182 // to avoid possible infinite import loop because circular dependency. 4183 if (Error Err = ImportDefaultArgOfParmVarDecl(D, ToParm)) 4184 return std::move(Err); 4185 4186 if (D->isObjCMethodParameter()) { 4187 ToParm->setObjCMethodScopeInfo(D->getFunctionScopeIndex()); 4188 ToParm->setObjCDeclQualifier(D->getObjCDeclQualifier()); 4189 } else { 4190 ToParm->setScopeInfo(D->getFunctionScopeDepth(), 4191 D->getFunctionScopeIndex()); 4192 } 4193 4194 return ToParm; 4195 } 4196 4197 ExpectedDecl ASTNodeImporter::VisitObjCMethodDecl(ObjCMethodDecl *D) { 4198 // Import the major distinguishing characteristics of a method. 4199 DeclContext *DC, *LexicalDC; 4200 DeclarationName Name; 4201 SourceLocation Loc; 4202 NamedDecl *ToD; 4203 if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc)) 4204 return std::move(Err); 4205 if (ToD) 4206 return ToD; 4207 4208 auto FoundDecls = Importer.findDeclsInToCtx(DC, Name); 4209 for (auto *FoundDecl : FoundDecls) { 4210 if (auto *FoundMethod = dyn_cast<ObjCMethodDecl>(FoundDecl)) { 4211 if (FoundMethod->isInstanceMethod() != D->isInstanceMethod()) 4212 continue; 4213 4214 // Check return types. 4215 if (!Importer.IsStructurallyEquivalent(D->getReturnType(), 4216 FoundMethod->getReturnType())) { 4217 Importer.ToDiag(Loc, diag::warn_odr_objc_method_result_type_inconsistent) 4218 << D->isInstanceMethod() << Name << D->getReturnType() 4219 << FoundMethod->getReturnType(); 4220 Importer.ToDiag(FoundMethod->getLocation(), 4221 diag::note_odr_objc_method_here) 4222 << D->isInstanceMethod() << Name; 4223 4224 return make_error<ImportError>(ImportError::NameConflict); 4225 } 4226 4227 // Check the number of parameters. 4228 if (D->param_size() != FoundMethod->param_size()) { 4229 Importer.ToDiag(Loc, diag::warn_odr_objc_method_num_params_inconsistent) 4230 << D->isInstanceMethod() << Name 4231 << D->param_size() << FoundMethod->param_size(); 4232 Importer.ToDiag(FoundMethod->getLocation(), 4233 diag::note_odr_objc_method_here) 4234 << D->isInstanceMethod() << Name; 4235 4236 return make_error<ImportError>(ImportError::NameConflict); 4237 } 4238 4239 // Check parameter types. 4240 for (ObjCMethodDecl::param_iterator P = D->param_begin(), 4241 PEnd = D->param_end(), FoundP = FoundMethod->param_begin(); 4242 P != PEnd; ++P, ++FoundP) { 4243 if (!Importer.IsStructurallyEquivalent((*P)->getType(), 4244 (*FoundP)->getType())) { 4245 Importer.FromDiag((*P)->getLocation(), 4246 diag::warn_odr_objc_method_param_type_inconsistent) 4247 << D->isInstanceMethod() << Name 4248 << (*P)->getType() << (*FoundP)->getType(); 4249 Importer.ToDiag((*FoundP)->getLocation(), diag::note_odr_value_here) 4250 << (*FoundP)->getType(); 4251 4252 return make_error<ImportError>(ImportError::NameConflict); 4253 } 4254 } 4255 4256 // Check variadic/non-variadic. 4257 // Check the number of parameters. 4258 if (D->isVariadic() != FoundMethod->isVariadic()) { 4259 Importer.ToDiag(Loc, diag::warn_odr_objc_method_variadic_inconsistent) 4260 << D->isInstanceMethod() << Name; 4261 Importer.ToDiag(FoundMethod->getLocation(), 4262 diag::note_odr_objc_method_here) 4263 << D->isInstanceMethod() << Name; 4264 4265 return make_error<ImportError>(ImportError::NameConflict); 4266 } 4267 4268 // FIXME: Any other bits we need to merge? 4269 return Importer.MapImported(D, FoundMethod); 4270 } 4271 } 4272 4273 Error Err = Error::success(); 4274 auto ToEndLoc = importChecked(Err, D->getEndLoc()); 4275 auto ToReturnType = importChecked(Err, D->getReturnType()); 4276 auto ToReturnTypeSourceInfo = 4277 importChecked(Err, D->getReturnTypeSourceInfo()); 4278 if (Err) 4279 return std::move(Err); 4280 4281 ObjCMethodDecl *ToMethod; 4282 if (GetImportedOrCreateDecl( 4283 ToMethod, D, Importer.getToContext(), Loc, ToEndLoc, 4284 Name.getObjCSelector(), ToReturnType, ToReturnTypeSourceInfo, DC, 4285 D->isInstanceMethod(), D->isVariadic(), D->isPropertyAccessor(), 4286 D->isSynthesizedAccessorStub(), D->isImplicit(), D->isDefined(), 4287 D->getImplementationControl(), D->hasRelatedResultType())) 4288 return ToMethod; 4289 4290 // FIXME: When we decide to merge method definitions, we'll need to 4291 // deal with implicit parameters. 4292 4293 // Import the parameters 4294 SmallVector<ParmVarDecl *, 5> ToParams; 4295 for (auto *FromP : D->parameters()) { 4296 if (Expected<ParmVarDecl *> ToPOrErr = import(FromP)) 4297 ToParams.push_back(*ToPOrErr); 4298 else 4299 return ToPOrErr.takeError(); 4300 } 4301 4302 // Set the parameters. 4303 for (auto *ToParam : ToParams) { 4304 ToParam->setOwningFunction(ToMethod); 4305 ToMethod->addDeclInternal(ToParam); 4306 } 4307 4308 SmallVector<SourceLocation, 12> FromSelLocs; 4309 D->getSelectorLocs(FromSelLocs); 4310 SmallVector<SourceLocation, 12> ToSelLocs(FromSelLocs.size()); 4311 if (Error Err = ImportContainerChecked(FromSelLocs, ToSelLocs)) 4312 return std::move(Err); 4313 4314 ToMethod->setMethodParams(Importer.getToContext(), ToParams, ToSelLocs); 4315 4316 ToMethod->setLexicalDeclContext(LexicalDC); 4317 LexicalDC->addDeclInternal(ToMethod); 4318 4319 // Implicit params are declared when Sema encounters the definition but this 4320 // never happens when the method is imported. Manually declare the implicit 4321 // params now that the MethodDecl knows its class interface. 4322 if (D->getSelfDecl()) 4323 ToMethod->createImplicitParams(Importer.getToContext(), 4324 ToMethod->getClassInterface()); 4325 4326 return ToMethod; 4327 } 4328 4329 ExpectedDecl ASTNodeImporter::VisitObjCTypeParamDecl(ObjCTypeParamDecl *D) { 4330 // Import the major distinguishing characteristics of a category. 4331 DeclContext *DC, *LexicalDC; 4332 DeclarationName Name; 4333 SourceLocation Loc; 4334 NamedDecl *ToD; 4335 if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc)) 4336 return std::move(Err); 4337 if (ToD) 4338 return ToD; 4339 4340 Error Err = Error::success(); 4341 auto ToVarianceLoc = importChecked(Err, D->getVarianceLoc()); 4342 auto ToLocation = importChecked(Err, D->getLocation()); 4343 auto ToColonLoc = importChecked(Err, D->getColonLoc()); 4344 auto ToTypeSourceInfo = importChecked(Err, D->getTypeSourceInfo()); 4345 if (Err) 4346 return std::move(Err); 4347 4348 ObjCTypeParamDecl *Result; 4349 if (GetImportedOrCreateDecl( 4350 Result, D, Importer.getToContext(), DC, D->getVariance(), 4351 ToVarianceLoc, D->getIndex(), 4352 ToLocation, Name.getAsIdentifierInfo(), 4353 ToColonLoc, ToTypeSourceInfo)) 4354 return Result; 4355 4356 Result->setLexicalDeclContext(LexicalDC); 4357 return Result; 4358 } 4359 4360 ExpectedDecl ASTNodeImporter::VisitObjCCategoryDecl(ObjCCategoryDecl *D) { 4361 // Import the major distinguishing characteristics of a category. 4362 DeclContext *DC, *LexicalDC; 4363 DeclarationName Name; 4364 SourceLocation Loc; 4365 NamedDecl *ToD; 4366 if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc)) 4367 return std::move(Err); 4368 if (ToD) 4369 return ToD; 4370 4371 ObjCInterfaceDecl *ToInterface; 4372 if (Error Err = importInto(ToInterface, D->getClassInterface())) 4373 return std::move(Err); 4374 4375 // Determine if we've already encountered this category. 4376 ObjCCategoryDecl *MergeWithCategory 4377 = ToInterface->FindCategoryDeclaration(Name.getAsIdentifierInfo()); 4378 ObjCCategoryDecl *ToCategory = MergeWithCategory; 4379 if (!ToCategory) { 4380 4381 Error Err = Error::success(); 4382 auto ToAtStartLoc = importChecked(Err, D->getAtStartLoc()); 4383 auto ToCategoryNameLoc = importChecked(Err, D->getCategoryNameLoc()); 4384 auto ToIvarLBraceLoc = importChecked(Err, D->getIvarLBraceLoc()); 4385 auto ToIvarRBraceLoc = importChecked(Err, D->getIvarRBraceLoc()); 4386 if (Err) 4387 return std::move(Err); 4388 4389 if (GetImportedOrCreateDecl(ToCategory, D, Importer.getToContext(), DC, 4390 ToAtStartLoc, Loc, 4391 ToCategoryNameLoc, 4392 Name.getAsIdentifierInfo(), ToInterface, 4393 /*TypeParamList=*/nullptr, 4394 ToIvarLBraceLoc, 4395 ToIvarRBraceLoc)) 4396 return ToCategory; 4397 4398 ToCategory->setLexicalDeclContext(LexicalDC); 4399 LexicalDC->addDeclInternal(ToCategory); 4400 // Import the type parameter list after MapImported, to avoid 4401 // loops when bringing in their DeclContext. 4402 if (auto PListOrErr = ImportObjCTypeParamList(D->getTypeParamList())) 4403 ToCategory->setTypeParamList(*PListOrErr); 4404 else 4405 return PListOrErr.takeError(); 4406 4407 // Import protocols 4408 SmallVector<ObjCProtocolDecl *, 4> Protocols; 4409 SmallVector<SourceLocation, 4> ProtocolLocs; 4410 ObjCCategoryDecl::protocol_loc_iterator FromProtoLoc 4411 = D->protocol_loc_begin(); 4412 for (ObjCCategoryDecl::protocol_iterator FromProto = D->protocol_begin(), 4413 FromProtoEnd = D->protocol_end(); 4414 FromProto != FromProtoEnd; 4415 ++FromProto, ++FromProtoLoc) { 4416 if (Expected<ObjCProtocolDecl *> ToProtoOrErr = import(*FromProto)) 4417 Protocols.push_back(*ToProtoOrErr); 4418 else 4419 return ToProtoOrErr.takeError(); 4420 4421 if (ExpectedSLoc ToProtoLocOrErr = import(*FromProtoLoc)) 4422 ProtocolLocs.push_back(*ToProtoLocOrErr); 4423 else 4424 return ToProtoLocOrErr.takeError(); 4425 } 4426 4427 // FIXME: If we're merging, make sure that the protocol list is the same. 4428 ToCategory->setProtocolList(Protocols.data(), Protocols.size(), 4429 ProtocolLocs.data(), Importer.getToContext()); 4430 4431 } else { 4432 Importer.MapImported(D, ToCategory); 4433 } 4434 4435 // Import all of the members of this category. 4436 if (Error Err = ImportDeclContext(D)) 4437 return std::move(Err); 4438 4439 // If we have an implementation, import it as well. 4440 if (D->getImplementation()) { 4441 if (Expected<ObjCCategoryImplDecl *> ToImplOrErr = 4442 import(D->getImplementation())) 4443 ToCategory->setImplementation(*ToImplOrErr); 4444 else 4445 return ToImplOrErr.takeError(); 4446 } 4447 4448 return ToCategory; 4449 } 4450 4451 Error ASTNodeImporter::ImportDefinition( 4452 ObjCProtocolDecl *From, ObjCProtocolDecl *To, ImportDefinitionKind Kind) { 4453 if (To->getDefinition()) { 4454 if (shouldForceImportDeclContext(Kind)) 4455 if (Error Err = ImportDeclContext(From)) 4456 return Err; 4457 return Error::success(); 4458 } 4459 4460 // Start the protocol definition 4461 To->startDefinition(); 4462 4463 // Import protocols 4464 SmallVector<ObjCProtocolDecl *, 4> Protocols; 4465 SmallVector<SourceLocation, 4> ProtocolLocs; 4466 ObjCProtocolDecl::protocol_loc_iterator FromProtoLoc = 4467 From->protocol_loc_begin(); 4468 for (ObjCProtocolDecl::protocol_iterator FromProto = From->protocol_begin(), 4469 FromProtoEnd = From->protocol_end(); 4470 FromProto != FromProtoEnd; 4471 ++FromProto, ++FromProtoLoc) { 4472 if (Expected<ObjCProtocolDecl *> ToProtoOrErr = import(*FromProto)) 4473 Protocols.push_back(*ToProtoOrErr); 4474 else 4475 return ToProtoOrErr.takeError(); 4476 4477 if (ExpectedSLoc ToProtoLocOrErr = import(*FromProtoLoc)) 4478 ProtocolLocs.push_back(*ToProtoLocOrErr); 4479 else 4480 return ToProtoLocOrErr.takeError(); 4481 4482 } 4483 4484 // FIXME: If we're merging, make sure that the protocol list is the same. 4485 To->setProtocolList(Protocols.data(), Protocols.size(), 4486 ProtocolLocs.data(), Importer.getToContext()); 4487 4488 if (shouldForceImportDeclContext(Kind)) { 4489 // Import all of the members of this protocol. 4490 if (Error Err = ImportDeclContext(From, /*ForceImport=*/true)) 4491 return Err; 4492 } 4493 return Error::success(); 4494 } 4495 4496 ExpectedDecl ASTNodeImporter::VisitObjCProtocolDecl(ObjCProtocolDecl *D) { 4497 // If this protocol has a definition in the translation unit we're coming 4498 // from, but this particular declaration is not that definition, import the 4499 // definition and map to that. 4500 ObjCProtocolDecl *Definition = D->getDefinition(); 4501 if (Definition && Definition != D) { 4502 if (ExpectedDecl ImportedDefOrErr = import(Definition)) 4503 return Importer.MapImported(D, *ImportedDefOrErr); 4504 else 4505 return ImportedDefOrErr.takeError(); 4506 } 4507 4508 // Import the major distinguishing characteristics of a protocol. 4509 DeclContext *DC, *LexicalDC; 4510 DeclarationName Name; 4511 SourceLocation Loc; 4512 NamedDecl *ToD; 4513 if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc)) 4514 return std::move(Err); 4515 if (ToD) 4516 return ToD; 4517 4518 ObjCProtocolDecl *MergeWithProtocol = nullptr; 4519 auto FoundDecls = Importer.findDeclsInToCtx(DC, Name); 4520 for (auto *FoundDecl : FoundDecls) { 4521 if (!FoundDecl->isInIdentifierNamespace(Decl::IDNS_ObjCProtocol)) 4522 continue; 4523 4524 if ((MergeWithProtocol = dyn_cast<ObjCProtocolDecl>(FoundDecl))) 4525 break; 4526 } 4527 4528 ObjCProtocolDecl *ToProto = MergeWithProtocol; 4529 if (!ToProto) { 4530 auto ToAtBeginLocOrErr = import(D->getAtStartLoc()); 4531 if (!ToAtBeginLocOrErr) 4532 return ToAtBeginLocOrErr.takeError(); 4533 4534 if (GetImportedOrCreateDecl(ToProto, D, Importer.getToContext(), DC, 4535 Name.getAsIdentifierInfo(), Loc, 4536 *ToAtBeginLocOrErr, 4537 /*PrevDecl=*/nullptr)) 4538 return ToProto; 4539 ToProto->setLexicalDeclContext(LexicalDC); 4540 LexicalDC->addDeclInternal(ToProto); 4541 } 4542 4543 Importer.MapImported(D, ToProto); 4544 4545 if (D->isThisDeclarationADefinition()) 4546 if (Error Err = ImportDefinition(D, ToProto)) 4547 return std::move(Err); 4548 4549 return ToProto; 4550 } 4551 4552 ExpectedDecl ASTNodeImporter::VisitLinkageSpecDecl(LinkageSpecDecl *D) { 4553 DeclContext *DC, *LexicalDC; 4554 if (Error Err = ImportDeclContext(D, DC, LexicalDC)) 4555 return std::move(Err); 4556 4557 ExpectedSLoc ExternLocOrErr = import(D->getExternLoc()); 4558 if (!ExternLocOrErr) 4559 return ExternLocOrErr.takeError(); 4560 4561 ExpectedSLoc LangLocOrErr = import(D->getLocation()); 4562 if (!LangLocOrErr) 4563 return LangLocOrErr.takeError(); 4564 4565 bool HasBraces = D->hasBraces(); 4566 4567 LinkageSpecDecl *ToLinkageSpec; 4568 if (GetImportedOrCreateDecl(ToLinkageSpec, D, Importer.getToContext(), DC, 4569 *ExternLocOrErr, *LangLocOrErr, 4570 D->getLanguage(), HasBraces)) 4571 return ToLinkageSpec; 4572 4573 if (HasBraces) { 4574 ExpectedSLoc RBraceLocOrErr = import(D->getRBraceLoc()); 4575 if (!RBraceLocOrErr) 4576 return RBraceLocOrErr.takeError(); 4577 ToLinkageSpec->setRBraceLoc(*RBraceLocOrErr); 4578 } 4579 4580 ToLinkageSpec->setLexicalDeclContext(LexicalDC); 4581 LexicalDC->addDeclInternal(ToLinkageSpec); 4582 4583 return ToLinkageSpec; 4584 } 4585 4586 ExpectedDecl ASTNodeImporter::ImportUsingShadowDecls(BaseUsingDecl *D, 4587 BaseUsingDecl *ToSI) { 4588 for (UsingShadowDecl *FromShadow : D->shadows()) { 4589 if (Expected<UsingShadowDecl *> ToShadowOrErr = import(FromShadow)) 4590 ToSI->addShadowDecl(*ToShadowOrErr); 4591 else 4592 // FIXME: We return error here but the definition is already created 4593 // and available with lookups. How to fix this?.. 4594 return ToShadowOrErr.takeError(); 4595 } 4596 return ToSI; 4597 } 4598 4599 ExpectedDecl ASTNodeImporter::VisitUsingDecl(UsingDecl *D) { 4600 DeclContext *DC, *LexicalDC; 4601 DeclarationName Name; 4602 SourceLocation Loc; 4603 NamedDecl *ToD = nullptr; 4604 if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc)) 4605 return std::move(Err); 4606 if (ToD) 4607 return ToD; 4608 4609 Error Err = Error::success(); 4610 auto ToLoc = importChecked(Err, D->getNameInfo().getLoc()); 4611 auto ToUsingLoc = importChecked(Err, D->getUsingLoc()); 4612 auto ToQualifierLoc = importChecked(Err, D->getQualifierLoc()); 4613 if (Err) 4614 return std::move(Err); 4615 4616 DeclarationNameInfo NameInfo(Name, ToLoc); 4617 if (Error Err = ImportDeclarationNameLoc(D->getNameInfo(), NameInfo)) 4618 return std::move(Err); 4619 4620 UsingDecl *ToUsing; 4621 if (GetImportedOrCreateDecl(ToUsing, D, Importer.getToContext(), DC, 4622 ToUsingLoc, ToQualifierLoc, NameInfo, 4623 D->hasTypename())) 4624 return ToUsing; 4625 4626 ToUsing->setLexicalDeclContext(LexicalDC); 4627 LexicalDC->addDeclInternal(ToUsing); 4628 4629 if (NamedDecl *FromPattern = 4630 Importer.getFromContext().getInstantiatedFromUsingDecl(D)) { 4631 if (Expected<NamedDecl *> ToPatternOrErr = import(FromPattern)) 4632 Importer.getToContext().setInstantiatedFromUsingDecl( 4633 ToUsing, *ToPatternOrErr); 4634 else 4635 return ToPatternOrErr.takeError(); 4636 } 4637 4638 return ImportUsingShadowDecls(D, ToUsing); 4639 } 4640 4641 ExpectedDecl ASTNodeImporter::VisitUsingEnumDecl(UsingEnumDecl *D) { 4642 DeclContext *DC, *LexicalDC; 4643 DeclarationName Name; 4644 SourceLocation Loc; 4645 NamedDecl *ToD = nullptr; 4646 if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc)) 4647 return std::move(Err); 4648 if (ToD) 4649 return ToD; 4650 4651 Error Err = Error::success(); 4652 auto ToUsingLoc = importChecked(Err, D->getUsingLoc()); 4653 auto ToEnumLoc = importChecked(Err, D->getEnumLoc()); 4654 auto ToEnumDecl = importChecked(Err, D->getEnumDecl()); 4655 if (Err) 4656 return std::move(Err); 4657 4658 UsingEnumDecl *ToUsingEnum; 4659 if (GetImportedOrCreateDecl(ToUsingEnum, D, Importer.getToContext(), DC, 4660 ToUsingLoc, ToEnumLoc, Loc, ToEnumDecl)) 4661 return ToUsingEnum; 4662 4663 ToUsingEnum->setLexicalDeclContext(LexicalDC); 4664 LexicalDC->addDeclInternal(ToUsingEnum); 4665 4666 if (UsingEnumDecl *FromPattern = 4667 Importer.getFromContext().getInstantiatedFromUsingEnumDecl(D)) { 4668 if (Expected<UsingEnumDecl *> ToPatternOrErr = import(FromPattern)) 4669 Importer.getToContext().setInstantiatedFromUsingEnumDecl(ToUsingEnum, 4670 *ToPatternOrErr); 4671 else 4672 return ToPatternOrErr.takeError(); 4673 } 4674 4675 return ImportUsingShadowDecls(D, ToUsingEnum); 4676 } 4677 4678 ExpectedDecl ASTNodeImporter::VisitUsingShadowDecl(UsingShadowDecl *D) { 4679 DeclContext *DC, *LexicalDC; 4680 DeclarationName Name; 4681 SourceLocation Loc; 4682 NamedDecl *ToD = nullptr; 4683 if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc)) 4684 return std::move(Err); 4685 if (ToD) 4686 return ToD; 4687 4688 Expected<BaseUsingDecl *> ToIntroducerOrErr = import(D->getIntroducer()); 4689 if (!ToIntroducerOrErr) 4690 return ToIntroducerOrErr.takeError(); 4691 4692 Expected<NamedDecl *> ToTargetOrErr = import(D->getTargetDecl()); 4693 if (!ToTargetOrErr) 4694 return ToTargetOrErr.takeError(); 4695 4696 UsingShadowDecl *ToShadow; 4697 if (auto *FromConstructorUsingShadow = 4698 dyn_cast<ConstructorUsingShadowDecl>(D)) { 4699 Error Err = Error::success(); 4700 ConstructorUsingShadowDecl *Nominated = importChecked( 4701 Err, FromConstructorUsingShadow->getNominatedBaseClassShadowDecl()); 4702 if (Err) 4703 return std::move(Err); 4704 // The 'Target' parameter of ConstructorUsingShadowDecl constructor 4705 // is really the "NominatedBaseClassShadowDecl" value if it exists 4706 // (see code of ConstructorUsingShadowDecl::ConstructorUsingShadowDecl). 4707 // We should pass the NominatedBaseClassShadowDecl to it (if non-null) to 4708 // get the correct values. 4709 if (GetImportedOrCreateDecl<ConstructorUsingShadowDecl>( 4710 ToShadow, D, Importer.getToContext(), DC, Loc, 4711 cast<UsingDecl>(*ToIntroducerOrErr), 4712 Nominated ? Nominated : *ToTargetOrErr, 4713 FromConstructorUsingShadow->constructsVirtualBase())) 4714 return ToShadow; 4715 } else { 4716 if (GetImportedOrCreateDecl(ToShadow, D, Importer.getToContext(), DC, Loc, 4717 Name, *ToIntroducerOrErr, *ToTargetOrErr)) 4718 return ToShadow; 4719 } 4720 4721 ToShadow->setLexicalDeclContext(LexicalDC); 4722 ToShadow->setAccess(D->getAccess()); 4723 4724 if (UsingShadowDecl *FromPattern = 4725 Importer.getFromContext().getInstantiatedFromUsingShadowDecl(D)) { 4726 if (Expected<UsingShadowDecl *> ToPatternOrErr = import(FromPattern)) 4727 Importer.getToContext().setInstantiatedFromUsingShadowDecl( 4728 ToShadow, *ToPatternOrErr); 4729 else 4730 // FIXME: We return error here but the definition is already created 4731 // and available with lookups. How to fix this?.. 4732 return ToPatternOrErr.takeError(); 4733 } 4734 4735 LexicalDC->addDeclInternal(ToShadow); 4736 4737 return ToShadow; 4738 } 4739 4740 ExpectedDecl ASTNodeImporter::VisitUsingDirectiveDecl(UsingDirectiveDecl *D) { 4741 DeclContext *DC, *LexicalDC; 4742 DeclarationName Name; 4743 SourceLocation Loc; 4744 NamedDecl *ToD = nullptr; 4745 if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc)) 4746 return std::move(Err); 4747 if (ToD) 4748 return ToD; 4749 4750 auto ToComAncestorOrErr = Importer.ImportContext(D->getCommonAncestor()); 4751 if (!ToComAncestorOrErr) 4752 return ToComAncestorOrErr.takeError(); 4753 4754 Error Err = Error::success(); 4755 auto ToNominatedNamespace = importChecked(Err, D->getNominatedNamespace()); 4756 auto ToUsingLoc = importChecked(Err, D->getUsingLoc()); 4757 auto ToNamespaceKeyLocation = 4758 importChecked(Err, D->getNamespaceKeyLocation()); 4759 auto ToQualifierLoc = importChecked(Err, D->getQualifierLoc()); 4760 auto ToIdentLocation = importChecked(Err, D->getIdentLocation()); 4761 if (Err) 4762 return std::move(Err); 4763 4764 UsingDirectiveDecl *ToUsingDir; 4765 if (GetImportedOrCreateDecl(ToUsingDir, D, Importer.getToContext(), DC, 4766 ToUsingLoc, 4767 ToNamespaceKeyLocation, 4768 ToQualifierLoc, 4769 ToIdentLocation, 4770 ToNominatedNamespace, *ToComAncestorOrErr)) 4771 return ToUsingDir; 4772 4773 ToUsingDir->setLexicalDeclContext(LexicalDC); 4774 LexicalDC->addDeclInternal(ToUsingDir); 4775 4776 return ToUsingDir; 4777 } 4778 4779 ExpectedDecl ASTNodeImporter::VisitUnresolvedUsingValueDecl( 4780 UnresolvedUsingValueDecl *D) { 4781 DeclContext *DC, *LexicalDC; 4782 DeclarationName Name; 4783 SourceLocation Loc; 4784 NamedDecl *ToD = nullptr; 4785 if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc)) 4786 return std::move(Err); 4787 if (ToD) 4788 return ToD; 4789 4790 Error Err = Error::success(); 4791 auto ToLoc = importChecked(Err, D->getNameInfo().getLoc()); 4792 auto ToUsingLoc = importChecked(Err, D->getUsingLoc()); 4793 auto ToQualifierLoc = importChecked(Err, D->getQualifierLoc()); 4794 auto ToEllipsisLoc = importChecked(Err, D->getEllipsisLoc()); 4795 if (Err) 4796 return std::move(Err); 4797 4798 DeclarationNameInfo NameInfo(Name, ToLoc); 4799 if (Error Err = ImportDeclarationNameLoc(D->getNameInfo(), NameInfo)) 4800 return std::move(Err); 4801 4802 UnresolvedUsingValueDecl *ToUsingValue; 4803 if (GetImportedOrCreateDecl(ToUsingValue, D, Importer.getToContext(), DC, 4804 ToUsingLoc, ToQualifierLoc, NameInfo, 4805 ToEllipsisLoc)) 4806 return ToUsingValue; 4807 4808 ToUsingValue->setAccess(D->getAccess()); 4809 ToUsingValue->setLexicalDeclContext(LexicalDC); 4810 LexicalDC->addDeclInternal(ToUsingValue); 4811 4812 return ToUsingValue; 4813 } 4814 4815 ExpectedDecl ASTNodeImporter::VisitUnresolvedUsingTypenameDecl( 4816 UnresolvedUsingTypenameDecl *D) { 4817 DeclContext *DC, *LexicalDC; 4818 DeclarationName Name; 4819 SourceLocation Loc; 4820 NamedDecl *ToD = nullptr; 4821 if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc)) 4822 return std::move(Err); 4823 if (ToD) 4824 return ToD; 4825 4826 Error Err = Error::success(); 4827 auto ToUsingLoc = importChecked(Err, D->getUsingLoc()); 4828 auto ToTypenameLoc = importChecked(Err, D->getTypenameLoc()); 4829 auto ToQualifierLoc = importChecked(Err, D->getQualifierLoc()); 4830 auto ToEllipsisLoc = importChecked(Err, D->getEllipsisLoc()); 4831 if (Err) 4832 return std::move(Err); 4833 4834 UnresolvedUsingTypenameDecl *ToUsing; 4835 if (GetImportedOrCreateDecl(ToUsing, D, Importer.getToContext(), DC, 4836 ToUsingLoc, ToTypenameLoc, 4837 ToQualifierLoc, Loc, Name, ToEllipsisLoc)) 4838 return ToUsing; 4839 4840 ToUsing->setAccess(D->getAccess()); 4841 ToUsing->setLexicalDeclContext(LexicalDC); 4842 LexicalDC->addDeclInternal(ToUsing); 4843 4844 return ToUsing; 4845 } 4846 4847 ExpectedDecl ASTNodeImporter::VisitBuiltinTemplateDecl(BuiltinTemplateDecl *D) { 4848 Decl* ToD = nullptr; 4849 switch (D->getBuiltinTemplateKind()) { 4850 case BuiltinTemplateKind::BTK__make_integer_seq: 4851 ToD = Importer.getToContext().getMakeIntegerSeqDecl(); 4852 break; 4853 case BuiltinTemplateKind::BTK__type_pack_element: 4854 ToD = Importer.getToContext().getTypePackElementDecl(); 4855 break; 4856 } 4857 assert(ToD && "BuiltinTemplateDecl of unsupported kind!"); 4858 Importer.MapImported(D, ToD); 4859 return ToD; 4860 } 4861 4862 Error ASTNodeImporter::ImportDefinition( 4863 ObjCInterfaceDecl *From, ObjCInterfaceDecl *To, ImportDefinitionKind Kind) { 4864 if (To->getDefinition()) { 4865 // Check consistency of superclass. 4866 ObjCInterfaceDecl *FromSuper = From->getSuperClass(); 4867 if (FromSuper) { 4868 if (auto FromSuperOrErr = import(FromSuper)) 4869 FromSuper = *FromSuperOrErr; 4870 else 4871 return FromSuperOrErr.takeError(); 4872 } 4873 4874 ObjCInterfaceDecl *ToSuper = To->getSuperClass(); 4875 if ((bool)FromSuper != (bool)ToSuper || 4876 (FromSuper && !declaresSameEntity(FromSuper, ToSuper))) { 4877 Importer.ToDiag(To->getLocation(), 4878 diag::warn_odr_objc_superclass_inconsistent) 4879 << To->getDeclName(); 4880 if (ToSuper) 4881 Importer.ToDiag(To->getSuperClassLoc(), diag::note_odr_objc_superclass) 4882 << To->getSuperClass()->getDeclName(); 4883 else 4884 Importer.ToDiag(To->getLocation(), 4885 diag::note_odr_objc_missing_superclass); 4886 if (From->getSuperClass()) 4887 Importer.FromDiag(From->getSuperClassLoc(), 4888 diag::note_odr_objc_superclass) 4889 << From->getSuperClass()->getDeclName(); 4890 else 4891 Importer.FromDiag(From->getLocation(), 4892 diag::note_odr_objc_missing_superclass); 4893 } 4894 4895 if (shouldForceImportDeclContext(Kind)) 4896 if (Error Err = ImportDeclContext(From)) 4897 return Err; 4898 return Error::success(); 4899 } 4900 4901 // Start the definition. 4902 To->startDefinition(); 4903 4904 // If this class has a superclass, import it. 4905 if (From->getSuperClass()) { 4906 if (auto SuperTInfoOrErr = import(From->getSuperClassTInfo())) 4907 To->setSuperClass(*SuperTInfoOrErr); 4908 else 4909 return SuperTInfoOrErr.takeError(); 4910 } 4911 4912 // Import protocols 4913 SmallVector<ObjCProtocolDecl *, 4> Protocols; 4914 SmallVector<SourceLocation, 4> ProtocolLocs; 4915 ObjCInterfaceDecl::protocol_loc_iterator FromProtoLoc = 4916 From->protocol_loc_begin(); 4917 4918 for (ObjCInterfaceDecl::protocol_iterator FromProto = From->protocol_begin(), 4919 FromProtoEnd = From->protocol_end(); 4920 FromProto != FromProtoEnd; 4921 ++FromProto, ++FromProtoLoc) { 4922 if (Expected<ObjCProtocolDecl *> ToProtoOrErr = import(*FromProto)) 4923 Protocols.push_back(*ToProtoOrErr); 4924 else 4925 return ToProtoOrErr.takeError(); 4926 4927 if (ExpectedSLoc ToProtoLocOrErr = import(*FromProtoLoc)) 4928 ProtocolLocs.push_back(*ToProtoLocOrErr); 4929 else 4930 return ToProtoLocOrErr.takeError(); 4931 4932 } 4933 4934 // FIXME: If we're merging, make sure that the protocol list is the same. 4935 To->setProtocolList(Protocols.data(), Protocols.size(), 4936 ProtocolLocs.data(), Importer.getToContext()); 4937 4938 // Import categories. When the categories themselves are imported, they'll 4939 // hook themselves into this interface. 4940 for (auto *Cat : From->known_categories()) { 4941 auto ToCatOrErr = import(Cat); 4942 if (!ToCatOrErr) 4943 return ToCatOrErr.takeError(); 4944 } 4945 4946 // If we have an @implementation, import it as well. 4947 if (From->getImplementation()) { 4948 if (Expected<ObjCImplementationDecl *> ToImplOrErr = 4949 import(From->getImplementation())) 4950 To->setImplementation(*ToImplOrErr); 4951 else 4952 return ToImplOrErr.takeError(); 4953 } 4954 4955 // Import all of the members of this class. 4956 if (Error Err = ImportDeclContext(From, /*ForceImport=*/true)) 4957 return Err; 4958 4959 return Error::success(); 4960 } 4961 4962 Expected<ObjCTypeParamList *> 4963 ASTNodeImporter::ImportObjCTypeParamList(ObjCTypeParamList *list) { 4964 if (!list) 4965 return nullptr; 4966 4967 SmallVector<ObjCTypeParamDecl *, 4> toTypeParams; 4968 for (auto *fromTypeParam : *list) { 4969 if (auto toTypeParamOrErr = import(fromTypeParam)) 4970 toTypeParams.push_back(*toTypeParamOrErr); 4971 else 4972 return toTypeParamOrErr.takeError(); 4973 } 4974 4975 auto LAngleLocOrErr = import(list->getLAngleLoc()); 4976 if (!LAngleLocOrErr) 4977 return LAngleLocOrErr.takeError(); 4978 4979 auto RAngleLocOrErr = import(list->getRAngleLoc()); 4980 if (!RAngleLocOrErr) 4981 return RAngleLocOrErr.takeError(); 4982 4983 return ObjCTypeParamList::create(Importer.getToContext(), 4984 *LAngleLocOrErr, 4985 toTypeParams, 4986 *RAngleLocOrErr); 4987 } 4988 4989 ExpectedDecl ASTNodeImporter::VisitObjCInterfaceDecl(ObjCInterfaceDecl *D) { 4990 // If this class has a definition in the translation unit we're coming from, 4991 // but this particular declaration is not that definition, import the 4992 // definition and map to that. 4993 ObjCInterfaceDecl *Definition = D->getDefinition(); 4994 if (Definition && Definition != D) { 4995 if (ExpectedDecl ImportedDefOrErr = import(Definition)) 4996 return Importer.MapImported(D, *ImportedDefOrErr); 4997 else 4998 return ImportedDefOrErr.takeError(); 4999 } 5000 5001 // Import the major distinguishing characteristics of an @interface. 5002 DeclContext *DC, *LexicalDC; 5003 DeclarationName Name; 5004 SourceLocation Loc; 5005 NamedDecl *ToD; 5006 if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc)) 5007 return std::move(Err); 5008 if (ToD) 5009 return ToD; 5010 5011 // Look for an existing interface with the same name. 5012 ObjCInterfaceDecl *MergeWithIface = nullptr; 5013 auto FoundDecls = Importer.findDeclsInToCtx(DC, Name); 5014 for (auto *FoundDecl : FoundDecls) { 5015 if (!FoundDecl->isInIdentifierNamespace(Decl::IDNS_Ordinary)) 5016 continue; 5017 5018 if ((MergeWithIface = dyn_cast<ObjCInterfaceDecl>(FoundDecl))) 5019 break; 5020 } 5021 5022 // Create an interface declaration, if one does not already exist. 5023 ObjCInterfaceDecl *ToIface = MergeWithIface; 5024 if (!ToIface) { 5025 ExpectedSLoc AtBeginLocOrErr = import(D->getAtStartLoc()); 5026 if (!AtBeginLocOrErr) 5027 return AtBeginLocOrErr.takeError(); 5028 5029 if (GetImportedOrCreateDecl( 5030 ToIface, D, Importer.getToContext(), DC, 5031 *AtBeginLocOrErr, Name.getAsIdentifierInfo(), 5032 /*TypeParamList=*/nullptr, 5033 /*PrevDecl=*/nullptr, Loc, D->isImplicitInterfaceDecl())) 5034 return ToIface; 5035 ToIface->setLexicalDeclContext(LexicalDC); 5036 LexicalDC->addDeclInternal(ToIface); 5037 } 5038 Importer.MapImported(D, ToIface); 5039 // Import the type parameter list after MapImported, to avoid 5040 // loops when bringing in their DeclContext. 5041 if (auto ToPListOrErr = 5042 ImportObjCTypeParamList(D->getTypeParamListAsWritten())) 5043 ToIface->setTypeParamList(*ToPListOrErr); 5044 else 5045 return ToPListOrErr.takeError(); 5046 5047 if (D->isThisDeclarationADefinition()) 5048 if (Error Err = ImportDefinition(D, ToIface)) 5049 return std::move(Err); 5050 5051 return ToIface; 5052 } 5053 5054 ExpectedDecl 5055 ASTNodeImporter::VisitObjCCategoryImplDecl(ObjCCategoryImplDecl *D) { 5056 ObjCCategoryDecl *Category; 5057 if (Error Err = importInto(Category, D->getCategoryDecl())) 5058 return std::move(Err); 5059 5060 ObjCCategoryImplDecl *ToImpl = Category->getImplementation(); 5061 if (!ToImpl) { 5062 DeclContext *DC, *LexicalDC; 5063 if (Error Err = ImportDeclContext(D, DC, LexicalDC)) 5064 return std::move(Err); 5065 5066 Error Err = Error::success(); 5067 auto ToLocation = importChecked(Err, D->getLocation()); 5068 auto ToAtStartLoc = importChecked(Err, D->getAtStartLoc()); 5069 auto ToCategoryNameLoc = importChecked(Err, D->getCategoryNameLoc()); 5070 if (Err) 5071 return std::move(Err); 5072 5073 if (GetImportedOrCreateDecl( 5074 ToImpl, D, Importer.getToContext(), DC, 5075 Importer.Import(D->getIdentifier()), Category->getClassInterface(), 5076 ToLocation, ToAtStartLoc, ToCategoryNameLoc)) 5077 return ToImpl; 5078 5079 ToImpl->setLexicalDeclContext(LexicalDC); 5080 LexicalDC->addDeclInternal(ToImpl); 5081 Category->setImplementation(ToImpl); 5082 } 5083 5084 Importer.MapImported(D, ToImpl); 5085 if (Error Err = ImportDeclContext(D)) 5086 return std::move(Err); 5087 5088 return ToImpl; 5089 } 5090 5091 ExpectedDecl 5092 ASTNodeImporter::VisitObjCImplementationDecl(ObjCImplementationDecl *D) { 5093 // Find the corresponding interface. 5094 ObjCInterfaceDecl *Iface; 5095 if (Error Err = importInto(Iface, D->getClassInterface())) 5096 return std::move(Err); 5097 5098 // Import the superclass, if any. 5099 ObjCInterfaceDecl *Super; 5100 if (Error Err = importInto(Super, D->getSuperClass())) 5101 return std::move(Err); 5102 5103 ObjCImplementationDecl *Impl = Iface->getImplementation(); 5104 if (!Impl) { 5105 // We haven't imported an implementation yet. Create a new @implementation 5106 // now. 5107 DeclContext *DC, *LexicalDC; 5108 if (Error Err = ImportDeclContext(D, DC, LexicalDC)) 5109 return std::move(Err); 5110 5111 Error Err = Error::success(); 5112 auto ToLocation = importChecked(Err, D->getLocation()); 5113 auto ToAtStartLoc = importChecked(Err, D->getAtStartLoc()); 5114 auto ToSuperClassLoc = importChecked(Err, D->getSuperClassLoc()); 5115 auto ToIvarLBraceLoc = importChecked(Err, D->getIvarLBraceLoc()); 5116 auto ToIvarRBraceLoc = importChecked(Err, D->getIvarRBraceLoc()); 5117 if (Err) 5118 return std::move(Err); 5119 5120 if (GetImportedOrCreateDecl(Impl, D, Importer.getToContext(), 5121 DC, Iface, Super, 5122 ToLocation, 5123 ToAtStartLoc, 5124 ToSuperClassLoc, 5125 ToIvarLBraceLoc, 5126 ToIvarRBraceLoc)) 5127 return Impl; 5128 5129 Impl->setLexicalDeclContext(LexicalDC); 5130 5131 // Associate the implementation with the class it implements. 5132 Iface->setImplementation(Impl); 5133 Importer.MapImported(D, Iface->getImplementation()); 5134 } else { 5135 Importer.MapImported(D, Iface->getImplementation()); 5136 5137 // Verify that the existing @implementation has the same superclass. 5138 if ((Super && !Impl->getSuperClass()) || 5139 (!Super && Impl->getSuperClass()) || 5140 (Super && Impl->getSuperClass() && 5141 !declaresSameEntity(Super->getCanonicalDecl(), 5142 Impl->getSuperClass()))) { 5143 Importer.ToDiag(Impl->getLocation(), 5144 diag::warn_odr_objc_superclass_inconsistent) 5145 << Iface->getDeclName(); 5146 // FIXME: It would be nice to have the location of the superclass 5147 // below. 5148 if (Impl->getSuperClass()) 5149 Importer.ToDiag(Impl->getLocation(), 5150 diag::note_odr_objc_superclass) 5151 << Impl->getSuperClass()->getDeclName(); 5152 else 5153 Importer.ToDiag(Impl->getLocation(), 5154 diag::note_odr_objc_missing_superclass); 5155 if (D->getSuperClass()) 5156 Importer.FromDiag(D->getLocation(), 5157 diag::note_odr_objc_superclass) 5158 << D->getSuperClass()->getDeclName(); 5159 else 5160 Importer.FromDiag(D->getLocation(), 5161 diag::note_odr_objc_missing_superclass); 5162 5163 return make_error<ImportError>(ImportError::NameConflict); 5164 } 5165 } 5166 5167 // Import all of the members of this @implementation. 5168 if (Error Err = ImportDeclContext(D)) 5169 return std::move(Err); 5170 5171 return Impl; 5172 } 5173 5174 ExpectedDecl ASTNodeImporter::VisitObjCPropertyDecl(ObjCPropertyDecl *D) { 5175 // Import the major distinguishing characteristics of an @property. 5176 DeclContext *DC, *LexicalDC; 5177 DeclarationName Name; 5178 SourceLocation Loc; 5179 NamedDecl *ToD; 5180 if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc)) 5181 return std::move(Err); 5182 if (ToD) 5183 return ToD; 5184 5185 // Check whether we have already imported this property. 5186 auto FoundDecls = Importer.findDeclsInToCtx(DC, Name); 5187 for (auto *FoundDecl : FoundDecls) { 5188 if (auto *FoundProp = dyn_cast<ObjCPropertyDecl>(FoundDecl)) { 5189 // Instance and class properties can share the same name but are different 5190 // declarations. 5191 if (FoundProp->isInstanceProperty() != D->isInstanceProperty()) 5192 continue; 5193 5194 // Check property types. 5195 if (!Importer.IsStructurallyEquivalent(D->getType(), 5196 FoundProp->getType())) { 5197 Importer.ToDiag(Loc, diag::warn_odr_objc_property_type_inconsistent) 5198 << Name << D->getType() << FoundProp->getType(); 5199 Importer.ToDiag(FoundProp->getLocation(), diag::note_odr_value_here) 5200 << FoundProp->getType(); 5201 5202 return make_error<ImportError>(ImportError::NameConflict); 5203 } 5204 5205 // FIXME: Check property attributes, getters, setters, etc.? 5206 5207 // Consider these properties to be equivalent. 5208 Importer.MapImported(D, FoundProp); 5209 return FoundProp; 5210 } 5211 } 5212 5213 Error Err = Error::success(); 5214 auto ToType = importChecked(Err, D->getType()); 5215 auto ToTypeSourceInfo = importChecked(Err, D->getTypeSourceInfo()); 5216 auto ToAtLoc = importChecked(Err, D->getAtLoc()); 5217 auto ToLParenLoc = importChecked(Err, D->getLParenLoc()); 5218 if (Err) 5219 return std::move(Err); 5220 5221 // Create the new property. 5222 ObjCPropertyDecl *ToProperty; 5223 if (GetImportedOrCreateDecl( 5224 ToProperty, D, Importer.getToContext(), DC, Loc, 5225 Name.getAsIdentifierInfo(), ToAtLoc, 5226 ToLParenLoc, ToType, 5227 ToTypeSourceInfo, D->getPropertyImplementation())) 5228 return ToProperty; 5229 5230 auto ToGetterName = importChecked(Err, D->getGetterName()); 5231 auto ToSetterName = importChecked(Err, D->getSetterName()); 5232 auto ToGetterNameLoc = importChecked(Err, D->getGetterNameLoc()); 5233 auto ToSetterNameLoc = importChecked(Err, D->getSetterNameLoc()); 5234 auto ToGetterMethodDecl = importChecked(Err, D->getGetterMethodDecl()); 5235 auto ToSetterMethodDecl = importChecked(Err, D->getSetterMethodDecl()); 5236 auto ToPropertyIvarDecl = importChecked(Err, D->getPropertyIvarDecl()); 5237 if (Err) 5238 return std::move(Err); 5239 5240 ToProperty->setLexicalDeclContext(LexicalDC); 5241 LexicalDC->addDeclInternal(ToProperty); 5242 5243 ToProperty->setPropertyAttributes(D->getPropertyAttributes()); 5244 ToProperty->setPropertyAttributesAsWritten( 5245 D->getPropertyAttributesAsWritten()); 5246 ToProperty->setGetterName(ToGetterName, ToGetterNameLoc); 5247 ToProperty->setSetterName(ToSetterName, ToSetterNameLoc); 5248 ToProperty->setGetterMethodDecl(ToGetterMethodDecl); 5249 ToProperty->setSetterMethodDecl(ToSetterMethodDecl); 5250 ToProperty->setPropertyIvarDecl(ToPropertyIvarDecl); 5251 return ToProperty; 5252 } 5253 5254 ExpectedDecl 5255 ASTNodeImporter::VisitObjCPropertyImplDecl(ObjCPropertyImplDecl *D) { 5256 ObjCPropertyDecl *Property; 5257 if (Error Err = importInto(Property, D->getPropertyDecl())) 5258 return std::move(Err); 5259 5260 DeclContext *DC, *LexicalDC; 5261 if (Error Err = ImportDeclContext(D, DC, LexicalDC)) 5262 return std::move(Err); 5263 5264 auto *InImpl = cast<ObjCImplDecl>(LexicalDC); 5265 5266 // Import the ivar (for an @synthesize). 5267 ObjCIvarDecl *Ivar = nullptr; 5268 if (Error Err = importInto(Ivar, D->getPropertyIvarDecl())) 5269 return std::move(Err); 5270 5271 ObjCPropertyImplDecl *ToImpl 5272 = InImpl->FindPropertyImplDecl(Property->getIdentifier(), 5273 Property->getQueryKind()); 5274 if (!ToImpl) { 5275 5276 Error Err = Error::success(); 5277 auto ToBeginLoc = importChecked(Err, D->getBeginLoc()); 5278 auto ToLocation = importChecked(Err, D->getLocation()); 5279 auto ToPropertyIvarDeclLoc = 5280 importChecked(Err, D->getPropertyIvarDeclLoc()); 5281 if (Err) 5282 return std::move(Err); 5283 5284 if (GetImportedOrCreateDecl(ToImpl, D, Importer.getToContext(), DC, 5285 ToBeginLoc, 5286 ToLocation, Property, 5287 D->getPropertyImplementation(), Ivar, 5288 ToPropertyIvarDeclLoc)) 5289 return ToImpl; 5290 5291 ToImpl->setLexicalDeclContext(LexicalDC); 5292 LexicalDC->addDeclInternal(ToImpl); 5293 } else { 5294 // Check that we have the same kind of property implementation (@synthesize 5295 // vs. @dynamic). 5296 if (D->getPropertyImplementation() != ToImpl->getPropertyImplementation()) { 5297 Importer.ToDiag(ToImpl->getLocation(), 5298 diag::warn_odr_objc_property_impl_kind_inconsistent) 5299 << Property->getDeclName() 5300 << (ToImpl->getPropertyImplementation() 5301 == ObjCPropertyImplDecl::Dynamic); 5302 Importer.FromDiag(D->getLocation(), 5303 diag::note_odr_objc_property_impl_kind) 5304 << D->getPropertyDecl()->getDeclName() 5305 << (D->getPropertyImplementation() == ObjCPropertyImplDecl::Dynamic); 5306 5307 return make_error<ImportError>(ImportError::NameConflict); 5308 } 5309 5310 // For @synthesize, check that we have the same 5311 if (D->getPropertyImplementation() == ObjCPropertyImplDecl::Synthesize && 5312 Ivar != ToImpl->getPropertyIvarDecl()) { 5313 Importer.ToDiag(ToImpl->getPropertyIvarDeclLoc(), 5314 diag::warn_odr_objc_synthesize_ivar_inconsistent) 5315 << Property->getDeclName() 5316 << ToImpl->getPropertyIvarDecl()->getDeclName() 5317 << Ivar->getDeclName(); 5318 Importer.FromDiag(D->getPropertyIvarDeclLoc(), 5319 diag::note_odr_objc_synthesize_ivar_here) 5320 << D->getPropertyIvarDecl()->getDeclName(); 5321 5322 return make_error<ImportError>(ImportError::NameConflict); 5323 } 5324 5325 // Merge the existing implementation with the new implementation. 5326 Importer.MapImported(D, ToImpl); 5327 } 5328 5329 return ToImpl; 5330 } 5331 5332 ExpectedDecl 5333 ASTNodeImporter::VisitTemplateTypeParmDecl(TemplateTypeParmDecl *D) { 5334 // For template arguments, we adopt the translation unit as our declaration 5335 // context. This context will be fixed when the actual template declaration 5336 // is created. 5337 5338 ExpectedSLoc BeginLocOrErr = import(D->getBeginLoc()); 5339 if (!BeginLocOrErr) 5340 return BeginLocOrErr.takeError(); 5341 5342 ExpectedSLoc LocationOrErr = import(D->getLocation()); 5343 if (!LocationOrErr) 5344 return LocationOrErr.takeError(); 5345 5346 TemplateTypeParmDecl *ToD = nullptr; 5347 if (GetImportedOrCreateDecl( 5348 ToD, D, Importer.getToContext(), 5349 Importer.getToContext().getTranslationUnitDecl(), 5350 *BeginLocOrErr, *LocationOrErr, 5351 D->getDepth(), D->getIndex(), Importer.Import(D->getIdentifier()), 5352 D->wasDeclaredWithTypename(), D->isParameterPack(), 5353 D->hasTypeConstraint())) 5354 return ToD; 5355 5356 // Import the type-constraint 5357 if (const TypeConstraint *TC = D->getTypeConstraint()) { 5358 5359 Error Err = Error::success(); 5360 auto ToNNS = importChecked(Err, TC->getNestedNameSpecifierLoc()); 5361 auto ToName = importChecked(Err, TC->getConceptNameInfo().getName()); 5362 auto ToNameLoc = importChecked(Err, TC->getConceptNameInfo().getLoc()); 5363 auto ToFoundDecl = importChecked(Err, TC->getFoundDecl()); 5364 auto ToNamedConcept = importChecked(Err, TC->getNamedConcept()); 5365 auto ToIDC = importChecked(Err, TC->getImmediatelyDeclaredConstraint()); 5366 if (Err) 5367 return std::move(Err); 5368 5369 TemplateArgumentListInfo ToTAInfo; 5370 const auto *ASTTemplateArgs = TC->getTemplateArgsAsWritten(); 5371 if (ASTTemplateArgs) 5372 if (Error Err = ImportTemplateArgumentListInfo(*ASTTemplateArgs, 5373 ToTAInfo)) 5374 return std::move(Err); 5375 5376 ToD->setTypeConstraint(ToNNS, DeclarationNameInfo(ToName, ToNameLoc), 5377 ToFoundDecl, ToNamedConcept, 5378 ASTTemplateArgs ? 5379 ASTTemplateArgumentListInfo::Create(Importer.getToContext(), 5380 ToTAInfo) : nullptr, 5381 ToIDC); 5382 } 5383 5384 if (D->hasDefaultArgument()) { 5385 Expected<TypeSourceInfo *> ToDefaultArgOrErr = 5386 import(D->getDefaultArgumentInfo()); 5387 if (!ToDefaultArgOrErr) 5388 return ToDefaultArgOrErr.takeError(); 5389 ToD->setDefaultArgument(*ToDefaultArgOrErr); 5390 } 5391 5392 return ToD; 5393 } 5394 5395 ExpectedDecl 5396 ASTNodeImporter::VisitNonTypeTemplateParmDecl(NonTypeTemplateParmDecl *D) { 5397 5398 Error Err = Error::success(); 5399 auto ToDeclName = importChecked(Err, D->getDeclName()); 5400 auto ToLocation = importChecked(Err, D->getLocation()); 5401 auto ToType = importChecked(Err, D->getType()); 5402 auto ToTypeSourceInfo = importChecked(Err, D->getTypeSourceInfo()); 5403 auto ToInnerLocStart = importChecked(Err, D->getInnerLocStart()); 5404 if (Err) 5405 return std::move(Err); 5406 5407 NonTypeTemplateParmDecl *ToD = nullptr; 5408 if (GetImportedOrCreateDecl(ToD, D, Importer.getToContext(), 5409 Importer.getToContext().getTranslationUnitDecl(), 5410 ToInnerLocStart, ToLocation, D->getDepth(), 5411 D->getPosition(), 5412 ToDeclName.getAsIdentifierInfo(), ToType, 5413 D->isParameterPack(), ToTypeSourceInfo)) 5414 return ToD; 5415 5416 if (D->hasDefaultArgument()) { 5417 ExpectedExpr ToDefaultArgOrErr = import(D->getDefaultArgument()); 5418 if (!ToDefaultArgOrErr) 5419 return ToDefaultArgOrErr.takeError(); 5420 ToD->setDefaultArgument(*ToDefaultArgOrErr); 5421 } 5422 5423 return ToD; 5424 } 5425 5426 ExpectedDecl 5427 ASTNodeImporter::VisitTemplateTemplateParmDecl(TemplateTemplateParmDecl *D) { 5428 // Import the name of this declaration. 5429 auto NameOrErr = import(D->getDeclName()); 5430 if (!NameOrErr) 5431 return NameOrErr.takeError(); 5432 5433 // Import the location of this declaration. 5434 ExpectedSLoc LocationOrErr = import(D->getLocation()); 5435 if (!LocationOrErr) 5436 return LocationOrErr.takeError(); 5437 5438 // Import template parameters. 5439 auto TemplateParamsOrErr = import(D->getTemplateParameters()); 5440 if (!TemplateParamsOrErr) 5441 return TemplateParamsOrErr.takeError(); 5442 5443 TemplateTemplateParmDecl *ToD = nullptr; 5444 if (GetImportedOrCreateDecl( 5445 ToD, D, Importer.getToContext(), 5446 Importer.getToContext().getTranslationUnitDecl(), *LocationOrErr, 5447 D->getDepth(), D->getPosition(), D->isParameterPack(), 5448 (*NameOrErr).getAsIdentifierInfo(), *TemplateParamsOrErr)) 5449 return ToD; 5450 5451 if (D->hasDefaultArgument()) { 5452 Expected<TemplateArgumentLoc> ToDefaultArgOrErr = 5453 import(D->getDefaultArgument()); 5454 if (!ToDefaultArgOrErr) 5455 return ToDefaultArgOrErr.takeError(); 5456 ToD->setDefaultArgument(Importer.getToContext(), *ToDefaultArgOrErr); 5457 } 5458 5459 return ToD; 5460 } 5461 5462 // Returns the definition for a (forward) declaration of a TemplateDecl, if 5463 // it has any definition in the redecl chain. 5464 template <typename T> static auto getTemplateDefinition(T *D) -> T * { 5465 assert(D->getTemplatedDecl() && "Should be called on templates only"); 5466 auto *ToTemplatedDef = D->getTemplatedDecl()->getDefinition(); 5467 if (!ToTemplatedDef) 5468 return nullptr; 5469 auto *TemplateWithDef = ToTemplatedDef->getDescribedTemplate(); 5470 return cast_or_null<T>(TemplateWithDef); 5471 } 5472 5473 ExpectedDecl ASTNodeImporter::VisitClassTemplateDecl(ClassTemplateDecl *D) { 5474 5475 // Import the major distinguishing characteristics of this class template. 5476 DeclContext *DC, *LexicalDC; 5477 DeclarationName Name; 5478 SourceLocation Loc; 5479 NamedDecl *ToD; 5480 if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc)) 5481 return std::move(Err); 5482 if (ToD) 5483 return ToD; 5484 5485 ClassTemplateDecl *FoundByLookup = nullptr; 5486 5487 // We may already have a template of the same name; try to find and match it. 5488 if (!DC->isFunctionOrMethod()) { 5489 SmallVector<NamedDecl *, 4> ConflictingDecls; 5490 auto FoundDecls = Importer.findDeclsInToCtx(DC, Name); 5491 for (auto *FoundDecl : FoundDecls) { 5492 if (!FoundDecl->isInIdentifierNamespace(Decl::IDNS_Ordinary | 5493 Decl::IDNS_TagFriend)) 5494 continue; 5495 5496 Decl *Found = FoundDecl; 5497 auto *FoundTemplate = dyn_cast<ClassTemplateDecl>(Found); 5498 if (FoundTemplate) { 5499 if (!hasSameVisibilityContextAndLinkage(FoundTemplate, D)) 5500 continue; 5501 5502 if (IsStructuralMatch(D, FoundTemplate)) { 5503 ClassTemplateDecl *TemplateWithDef = 5504 getTemplateDefinition(FoundTemplate); 5505 if (D->isThisDeclarationADefinition() && TemplateWithDef) 5506 return Importer.MapImported(D, TemplateWithDef); 5507 if (!FoundByLookup) 5508 FoundByLookup = FoundTemplate; 5509 // Search in all matches because there may be multiple decl chains, 5510 // see ASTTests test ImportExistingFriendClassTemplateDef. 5511 continue; 5512 } 5513 ConflictingDecls.push_back(FoundDecl); 5514 } 5515 } 5516 5517 if (!ConflictingDecls.empty()) { 5518 ExpectedName NameOrErr = Importer.HandleNameConflict( 5519 Name, DC, Decl::IDNS_Ordinary, ConflictingDecls.data(), 5520 ConflictingDecls.size()); 5521 if (NameOrErr) 5522 Name = NameOrErr.get(); 5523 else 5524 return NameOrErr.takeError(); 5525 } 5526 } 5527 5528 CXXRecordDecl *FromTemplated = D->getTemplatedDecl(); 5529 5530 auto TemplateParamsOrErr = import(D->getTemplateParameters()); 5531 if (!TemplateParamsOrErr) 5532 return TemplateParamsOrErr.takeError(); 5533 5534 // Create the declaration that is being templated. 5535 CXXRecordDecl *ToTemplated; 5536 if (Error Err = importInto(ToTemplated, FromTemplated)) 5537 return std::move(Err); 5538 5539 // Create the class template declaration itself. 5540 ClassTemplateDecl *D2; 5541 if (GetImportedOrCreateDecl(D2, D, Importer.getToContext(), DC, Loc, Name, 5542 *TemplateParamsOrErr, ToTemplated)) 5543 return D2; 5544 5545 ToTemplated->setDescribedClassTemplate(D2); 5546 5547 D2->setAccess(D->getAccess()); 5548 D2->setLexicalDeclContext(LexicalDC); 5549 5550 addDeclToContexts(D, D2); 5551 updateLookupTableForTemplateParameters(**TemplateParamsOrErr); 5552 5553 if (FoundByLookup) { 5554 auto *Recent = 5555 const_cast<ClassTemplateDecl *>(FoundByLookup->getMostRecentDecl()); 5556 5557 // It is possible that during the import of the class template definition 5558 // we start the import of a fwd friend decl of the very same class template 5559 // and we add the fwd friend decl to the lookup table. But the ToTemplated 5560 // had been created earlier and by that time the lookup could not find 5561 // anything existing, so it has no previous decl. Later, (still during the 5562 // import of the fwd friend decl) we start to import the definition again 5563 // and this time the lookup finds the previous fwd friend class template. 5564 // In this case we must set up the previous decl for the templated decl. 5565 if (!ToTemplated->getPreviousDecl()) { 5566 assert(FoundByLookup->getTemplatedDecl() && 5567 "Found decl must have its templated decl set"); 5568 CXXRecordDecl *PrevTemplated = 5569 FoundByLookup->getTemplatedDecl()->getMostRecentDecl(); 5570 if (ToTemplated != PrevTemplated) 5571 ToTemplated->setPreviousDecl(PrevTemplated); 5572 } 5573 5574 D2->setPreviousDecl(Recent); 5575 } 5576 5577 if (FromTemplated->isCompleteDefinition() && 5578 !ToTemplated->isCompleteDefinition()) { 5579 // FIXME: Import definition! 5580 } 5581 5582 return D2; 5583 } 5584 5585 ExpectedDecl ASTNodeImporter::VisitClassTemplateSpecializationDecl( 5586 ClassTemplateSpecializationDecl *D) { 5587 ClassTemplateDecl *ClassTemplate; 5588 if (Error Err = importInto(ClassTemplate, D->getSpecializedTemplate())) 5589 return std::move(Err); 5590 5591 // Import the context of this declaration. 5592 DeclContext *DC, *LexicalDC; 5593 if (Error Err = ImportDeclContext(D, DC, LexicalDC)) 5594 return std::move(Err); 5595 5596 // Import template arguments. 5597 SmallVector<TemplateArgument, 2> TemplateArgs; 5598 if (Error Err = ImportTemplateArguments( 5599 D->getTemplateArgs().data(), D->getTemplateArgs().size(), TemplateArgs)) 5600 return std::move(Err); 5601 // Try to find an existing specialization with these template arguments and 5602 // template parameter list. 5603 void *InsertPos = nullptr; 5604 ClassTemplateSpecializationDecl *PrevDecl = nullptr; 5605 ClassTemplatePartialSpecializationDecl *PartialSpec = 5606 dyn_cast<ClassTemplatePartialSpecializationDecl>(D); 5607 5608 // Import template parameters. 5609 TemplateParameterList *ToTPList = nullptr; 5610 5611 if (PartialSpec) { 5612 auto ToTPListOrErr = import(PartialSpec->getTemplateParameters()); 5613 if (!ToTPListOrErr) 5614 return ToTPListOrErr.takeError(); 5615 ToTPList = *ToTPListOrErr; 5616 PrevDecl = ClassTemplate->findPartialSpecialization(TemplateArgs, 5617 *ToTPListOrErr, 5618 InsertPos); 5619 } else 5620 PrevDecl = ClassTemplate->findSpecialization(TemplateArgs, InsertPos); 5621 5622 if (PrevDecl) { 5623 if (IsStructuralMatch(D, PrevDecl)) { 5624 CXXRecordDecl *PrevDefinition = PrevDecl->getDefinition(); 5625 if (D->isThisDeclarationADefinition() && PrevDefinition) { 5626 Importer.MapImported(D, PrevDefinition); 5627 // Import those default field initializers which have been 5628 // instantiated in the "From" context, but not in the "To" context. 5629 for (auto *FromField : D->fields()) { 5630 auto ToOrErr = import(FromField); 5631 if (!ToOrErr) 5632 return ToOrErr.takeError(); 5633 } 5634 5635 // Import those methods which have been instantiated in the 5636 // "From" context, but not in the "To" context. 5637 for (CXXMethodDecl *FromM : D->methods()) { 5638 auto ToOrErr = import(FromM); 5639 if (!ToOrErr) 5640 return ToOrErr.takeError(); 5641 } 5642 5643 // TODO Import instantiated default arguments. 5644 // TODO Import instantiated exception specifications. 5645 // 5646 // Generally, ASTCommon.h/DeclUpdateKind enum gives a very good hint 5647 // what else could be fused during an AST merge. 5648 return PrevDefinition; 5649 } 5650 } else { // ODR violation. 5651 // FIXME HandleNameConflict 5652 return make_error<ImportError>(ImportError::NameConflict); 5653 } 5654 } 5655 5656 // Import the location of this declaration. 5657 ExpectedSLoc BeginLocOrErr = import(D->getBeginLoc()); 5658 if (!BeginLocOrErr) 5659 return BeginLocOrErr.takeError(); 5660 ExpectedSLoc IdLocOrErr = import(D->getLocation()); 5661 if (!IdLocOrErr) 5662 return IdLocOrErr.takeError(); 5663 5664 // Create the specialization. 5665 ClassTemplateSpecializationDecl *D2 = nullptr; 5666 if (PartialSpec) { 5667 // Import TemplateArgumentListInfo. 5668 TemplateArgumentListInfo ToTAInfo; 5669 const auto &ASTTemplateArgs = *PartialSpec->getTemplateArgsAsWritten(); 5670 if (Error Err = ImportTemplateArgumentListInfo(ASTTemplateArgs, ToTAInfo)) 5671 return std::move(Err); 5672 5673 QualType CanonInjType; 5674 if (Error Err = importInto( 5675 CanonInjType, PartialSpec->getInjectedSpecializationType())) 5676 return std::move(Err); 5677 CanonInjType = CanonInjType.getCanonicalType(); 5678 5679 if (GetImportedOrCreateDecl<ClassTemplatePartialSpecializationDecl>( 5680 D2, D, Importer.getToContext(), D->getTagKind(), DC, 5681 *BeginLocOrErr, *IdLocOrErr, ToTPList, ClassTemplate, 5682 llvm::makeArrayRef(TemplateArgs.data(), TemplateArgs.size()), 5683 ToTAInfo, CanonInjType, 5684 cast_or_null<ClassTemplatePartialSpecializationDecl>(PrevDecl))) 5685 return D2; 5686 5687 // Update InsertPos, because preceding import calls may have invalidated 5688 // it by adding new specializations. 5689 auto *PartSpec2 = cast<ClassTemplatePartialSpecializationDecl>(D2); 5690 if (!ClassTemplate->findPartialSpecialization(TemplateArgs, ToTPList, 5691 InsertPos)) 5692 // Add this partial specialization to the class template. 5693 ClassTemplate->AddPartialSpecialization(PartSpec2, InsertPos); 5694 5695 updateLookupTableForTemplateParameters(*ToTPList); 5696 } else { // Not a partial specialization. 5697 if (GetImportedOrCreateDecl( 5698 D2, D, Importer.getToContext(), D->getTagKind(), DC, 5699 *BeginLocOrErr, *IdLocOrErr, ClassTemplate, TemplateArgs, 5700 PrevDecl)) 5701 return D2; 5702 5703 // Update InsertPos, because preceding import calls may have invalidated 5704 // it by adding new specializations. 5705 if (!ClassTemplate->findSpecialization(TemplateArgs, InsertPos)) 5706 // Add this specialization to the class template. 5707 ClassTemplate->AddSpecialization(D2, InsertPos); 5708 } 5709 5710 D2->setSpecializationKind(D->getSpecializationKind()); 5711 5712 // Set the context of this specialization/instantiation. 5713 D2->setLexicalDeclContext(LexicalDC); 5714 5715 // Add to the DC only if it was an explicit specialization/instantiation. 5716 if (D2->isExplicitInstantiationOrSpecialization()) { 5717 LexicalDC->addDeclInternal(D2); 5718 } 5719 5720 if (auto BraceRangeOrErr = import(D->getBraceRange())) 5721 D2->setBraceRange(*BraceRangeOrErr); 5722 else 5723 return BraceRangeOrErr.takeError(); 5724 5725 // Import the qualifier, if any. 5726 if (auto LocOrErr = import(D->getQualifierLoc())) 5727 D2->setQualifierInfo(*LocOrErr); 5728 else 5729 return LocOrErr.takeError(); 5730 5731 if (auto *TSI = D->getTypeAsWritten()) { 5732 if (auto TInfoOrErr = import(TSI)) 5733 D2->setTypeAsWritten(*TInfoOrErr); 5734 else 5735 return TInfoOrErr.takeError(); 5736 5737 if (auto LocOrErr = import(D->getTemplateKeywordLoc())) 5738 D2->setTemplateKeywordLoc(*LocOrErr); 5739 else 5740 return LocOrErr.takeError(); 5741 5742 if (auto LocOrErr = import(D->getExternLoc())) 5743 D2->setExternLoc(*LocOrErr); 5744 else 5745 return LocOrErr.takeError(); 5746 } 5747 5748 if (D->getPointOfInstantiation().isValid()) { 5749 if (auto POIOrErr = import(D->getPointOfInstantiation())) 5750 D2->setPointOfInstantiation(*POIOrErr); 5751 else 5752 return POIOrErr.takeError(); 5753 } 5754 5755 D2->setTemplateSpecializationKind(D->getTemplateSpecializationKind()); 5756 5757 if (D->isCompleteDefinition()) 5758 if (Error Err = ImportDefinition(D, D2)) 5759 return std::move(Err); 5760 5761 return D2; 5762 } 5763 5764 ExpectedDecl ASTNodeImporter::VisitVarTemplateDecl(VarTemplateDecl *D) { 5765 // Import the major distinguishing characteristics of this variable template. 5766 DeclContext *DC, *LexicalDC; 5767 DeclarationName Name; 5768 SourceLocation Loc; 5769 NamedDecl *ToD; 5770 if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc)) 5771 return std::move(Err); 5772 if (ToD) 5773 return ToD; 5774 5775 // We may already have a template of the same name; try to find and match it. 5776 assert(!DC->isFunctionOrMethod() && 5777 "Variable templates cannot be declared at function scope"); 5778 5779 SmallVector<NamedDecl *, 4> ConflictingDecls; 5780 auto FoundDecls = Importer.findDeclsInToCtx(DC, Name); 5781 VarTemplateDecl *FoundByLookup = nullptr; 5782 for (auto *FoundDecl : FoundDecls) { 5783 if (!FoundDecl->isInIdentifierNamespace(Decl::IDNS_Ordinary)) 5784 continue; 5785 5786 if (VarTemplateDecl *FoundTemplate = dyn_cast<VarTemplateDecl>(FoundDecl)) { 5787 // Use the templated decl, some linkage flags are set only there. 5788 if (!hasSameVisibilityContextAndLinkage(FoundTemplate->getTemplatedDecl(), 5789 D->getTemplatedDecl())) 5790 continue; 5791 if (IsStructuralMatch(D, FoundTemplate)) { 5792 // The Decl in the "From" context has a definition, but in the 5793 // "To" context we already have a definition. 5794 VarTemplateDecl *FoundDef = getTemplateDefinition(FoundTemplate); 5795 if (D->isThisDeclarationADefinition() && FoundDef) 5796 // FIXME Check for ODR error if the two definitions have 5797 // different initializers? 5798 return Importer.MapImported(D, FoundDef); 5799 5800 FoundByLookup = FoundTemplate; 5801 break; 5802 } 5803 ConflictingDecls.push_back(FoundDecl); 5804 } 5805 } 5806 5807 if (!ConflictingDecls.empty()) { 5808 ExpectedName NameOrErr = Importer.HandleNameConflict( 5809 Name, DC, Decl::IDNS_Ordinary, ConflictingDecls.data(), 5810 ConflictingDecls.size()); 5811 if (NameOrErr) 5812 Name = NameOrErr.get(); 5813 else 5814 return NameOrErr.takeError(); 5815 } 5816 5817 VarDecl *DTemplated = D->getTemplatedDecl(); 5818 5819 // Import the type. 5820 // FIXME: Value not used? 5821 ExpectedType TypeOrErr = import(DTemplated->getType()); 5822 if (!TypeOrErr) 5823 return TypeOrErr.takeError(); 5824 5825 // Create the declaration that is being templated. 5826 VarDecl *ToTemplated; 5827 if (Error Err = importInto(ToTemplated, DTemplated)) 5828 return std::move(Err); 5829 5830 // Create the variable template declaration itself. 5831 auto TemplateParamsOrErr = import(D->getTemplateParameters()); 5832 if (!TemplateParamsOrErr) 5833 return TemplateParamsOrErr.takeError(); 5834 5835 VarTemplateDecl *ToVarTD; 5836 if (GetImportedOrCreateDecl(ToVarTD, D, Importer.getToContext(), DC, Loc, 5837 Name, *TemplateParamsOrErr, ToTemplated)) 5838 return ToVarTD; 5839 5840 ToTemplated->setDescribedVarTemplate(ToVarTD); 5841 5842 ToVarTD->setAccess(D->getAccess()); 5843 ToVarTD->setLexicalDeclContext(LexicalDC); 5844 LexicalDC->addDeclInternal(ToVarTD); 5845 if (DC != Importer.getToContext().getTranslationUnitDecl()) 5846 updateLookupTableForTemplateParameters(**TemplateParamsOrErr); 5847 5848 if (FoundByLookup) { 5849 auto *Recent = 5850 const_cast<VarTemplateDecl *>(FoundByLookup->getMostRecentDecl()); 5851 if (!ToTemplated->getPreviousDecl()) { 5852 auto *PrevTemplated = 5853 FoundByLookup->getTemplatedDecl()->getMostRecentDecl(); 5854 if (ToTemplated != PrevTemplated) 5855 ToTemplated->setPreviousDecl(PrevTemplated); 5856 } 5857 ToVarTD->setPreviousDecl(Recent); 5858 } 5859 5860 if (DTemplated->isThisDeclarationADefinition() && 5861 !ToTemplated->isThisDeclarationADefinition()) { 5862 // FIXME: Import definition! 5863 } 5864 5865 return ToVarTD; 5866 } 5867 5868 ExpectedDecl ASTNodeImporter::VisitVarTemplateSpecializationDecl( 5869 VarTemplateSpecializationDecl *D) { 5870 // If this record has a definition in the translation unit we're coming from, 5871 // but this particular declaration is not that definition, import the 5872 // definition and map to that. 5873 VarDecl *Definition = D->getDefinition(); 5874 if (Definition && Definition != D) { 5875 if (ExpectedDecl ImportedDefOrErr = import(Definition)) 5876 return Importer.MapImported(D, *ImportedDefOrErr); 5877 else 5878 return ImportedDefOrErr.takeError(); 5879 } 5880 5881 VarTemplateDecl *VarTemplate = nullptr; 5882 if (Error Err = importInto(VarTemplate, D->getSpecializedTemplate())) 5883 return std::move(Err); 5884 5885 // Import the context of this declaration. 5886 DeclContext *DC, *LexicalDC; 5887 if (Error Err = ImportDeclContext(D, DC, LexicalDC)) 5888 return std::move(Err); 5889 5890 // Import the location of this declaration. 5891 ExpectedSLoc BeginLocOrErr = import(D->getBeginLoc()); 5892 if (!BeginLocOrErr) 5893 return BeginLocOrErr.takeError(); 5894 5895 auto IdLocOrErr = import(D->getLocation()); 5896 if (!IdLocOrErr) 5897 return IdLocOrErr.takeError(); 5898 5899 // Import template arguments. 5900 SmallVector<TemplateArgument, 2> TemplateArgs; 5901 if (Error Err = ImportTemplateArguments( 5902 D->getTemplateArgs().data(), D->getTemplateArgs().size(), TemplateArgs)) 5903 return std::move(Err); 5904 5905 // Try to find an existing specialization with these template arguments. 5906 void *InsertPos = nullptr; 5907 VarTemplateSpecializationDecl *D2 = VarTemplate->findSpecialization( 5908 TemplateArgs, InsertPos); 5909 if (D2) { 5910 // We already have a variable template specialization with these template 5911 // arguments. 5912 5913 // FIXME: Check for specialization vs. instantiation errors. 5914 5915 if (VarDecl *FoundDef = D2->getDefinition()) { 5916 if (!D->isThisDeclarationADefinition() || 5917 IsStructuralMatch(D, FoundDef)) { 5918 // The record types structurally match, or the "from" translation 5919 // unit only had a forward declaration anyway; call it the same 5920 // variable. 5921 return Importer.MapImported(D, FoundDef); 5922 } 5923 } 5924 } else { 5925 // Import the type. 5926 QualType T; 5927 if (Error Err = importInto(T, D->getType())) 5928 return std::move(Err); 5929 5930 auto TInfoOrErr = import(D->getTypeSourceInfo()); 5931 if (!TInfoOrErr) 5932 return TInfoOrErr.takeError(); 5933 5934 TemplateArgumentListInfo ToTAInfo; 5935 if (Error Err = ImportTemplateArgumentListInfo( 5936 D->getTemplateArgsInfo(), ToTAInfo)) 5937 return std::move(Err); 5938 5939 using PartVarSpecDecl = VarTemplatePartialSpecializationDecl; 5940 // Create a new specialization. 5941 if (auto *FromPartial = dyn_cast<PartVarSpecDecl>(D)) { 5942 // Import TemplateArgumentListInfo 5943 TemplateArgumentListInfo ArgInfos; 5944 const auto *FromTAArgsAsWritten = FromPartial->getTemplateArgsAsWritten(); 5945 // NOTE: FromTAArgsAsWritten and template parameter list are non-null. 5946 if (Error Err = ImportTemplateArgumentListInfo( 5947 *FromTAArgsAsWritten, ArgInfos)) 5948 return std::move(Err); 5949 5950 auto ToTPListOrErr = import(FromPartial->getTemplateParameters()); 5951 if (!ToTPListOrErr) 5952 return ToTPListOrErr.takeError(); 5953 5954 PartVarSpecDecl *ToPartial; 5955 if (GetImportedOrCreateDecl(ToPartial, D, Importer.getToContext(), DC, 5956 *BeginLocOrErr, *IdLocOrErr, *ToTPListOrErr, 5957 VarTemplate, T, *TInfoOrErr, 5958 D->getStorageClass(), TemplateArgs, ArgInfos)) 5959 return ToPartial; 5960 5961 if (Expected<PartVarSpecDecl *> ToInstOrErr = import( 5962 FromPartial->getInstantiatedFromMember())) 5963 ToPartial->setInstantiatedFromMember(*ToInstOrErr); 5964 else 5965 return ToInstOrErr.takeError(); 5966 5967 if (FromPartial->isMemberSpecialization()) 5968 ToPartial->setMemberSpecialization(); 5969 5970 D2 = ToPartial; 5971 5972 // FIXME: Use this update if VarTemplatePartialSpecializationDecl is fixed 5973 // to adopt template parameters. 5974 // updateLookupTableForTemplateParameters(**ToTPListOrErr); 5975 } else { // Full specialization 5976 if (GetImportedOrCreateDecl(D2, D, Importer.getToContext(), DC, 5977 *BeginLocOrErr, *IdLocOrErr, VarTemplate, 5978 T, *TInfoOrErr, 5979 D->getStorageClass(), TemplateArgs)) 5980 return D2; 5981 } 5982 5983 if (D->getPointOfInstantiation().isValid()) { 5984 if (ExpectedSLoc POIOrErr = import(D->getPointOfInstantiation())) 5985 D2->setPointOfInstantiation(*POIOrErr); 5986 else 5987 return POIOrErr.takeError(); 5988 } 5989 5990 D2->setSpecializationKind(D->getSpecializationKind()); 5991 D2->setTemplateArgsInfo(ToTAInfo); 5992 5993 // Add this specialization to the class template. 5994 VarTemplate->AddSpecialization(D2, InsertPos); 5995 5996 // Import the qualifier, if any. 5997 if (auto LocOrErr = import(D->getQualifierLoc())) 5998 D2->setQualifierInfo(*LocOrErr); 5999 else 6000 return LocOrErr.takeError(); 6001 6002 if (D->isConstexpr()) 6003 D2->setConstexpr(true); 6004 6005 // Add the specialization to this context. 6006 D2->setLexicalDeclContext(LexicalDC); 6007 LexicalDC->addDeclInternal(D2); 6008 6009 D2->setAccess(D->getAccess()); 6010 } 6011 6012 if (Error Err = ImportInitializer(D, D2)) 6013 return std::move(Err); 6014 6015 return D2; 6016 } 6017 6018 ExpectedDecl 6019 ASTNodeImporter::VisitFunctionTemplateDecl(FunctionTemplateDecl *D) { 6020 DeclContext *DC, *LexicalDC; 6021 DeclarationName Name; 6022 SourceLocation Loc; 6023 NamedDecl *ToD; 6024 6025 if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc)) 6026 return std::move(Err); 6027 6028 if (ToD) 6029 return ToD; 6030 6031 const FunctionTemplateDecl *FoundByLookup = nullptr; 6032 6033 // Try to find a function in our own ("to") context with the same name, same 6034 // type, and in the same context as the function we're importing. 6035 // FIXME Split this into a separate function. 6036 if (!LexicalDC->isFunctionOrMethod()) { 6037 unsigned IDNS = Decl::IDNS_Ordinary | Decl::IDNS_OrdinaryFriend; 6038 auto FoundDecls = Importer.findDeclsInToCtx(DC, Name); 6039 for (auto *FoundDecl : FoundDecls) { 6040 if (!FoundDecl->isInIdentifierNamespace(IDNS)) 6041 continue; 6042 6043 if (auto *FoundTemplate = dyn_cast<FunctionTemplateDecl>(FoundDecl)) { 6044 if (!hasSameVisibilityContextAndLinkage(FoundTemplate, D)) 6045 continue; 6046 if (IsStructuralMatch(D, FoundTemplate)) { 6047 FunctionTemplateDecl *TemplateWithDef = 6048 getTemplateDefinition(FoundTemplate); 6049 if (D->isThisDeclarationADefinition() && TemplateWithDef) 6050 return Importer.MapImported(D, TemplateWithDef); 6051 6052 FoundByLookup = FoundTemplate; 6053 break; 6054 // TODO: handle conflicting names 6055 } 6056 } 6057 } 6058 } 6059 6060 auto ParamsOrErr = import(D->getTemplateParameters()); 6061 if (!ParamsOrErr) 6062 return ParamsOrErr.takeError(); 6063 TemplateParameterList *Params = *ParamsOrErr; 6064 6065 FunctionDecl *TemplatedFD; 6066 if (Error Err = importInto(TemplatedFD, D->getTemplatedDecl())) 6067 return std::move(Err); 6068 6069 // At creation of the template the template parameters are "adopted" 6070 // (DeclContext is changed). After this possible change the lookup table 6071 // must be updated. 6072 // At deduction guides the DeclContext of the template parameters may be 6073 // different from what we would expect, it may be the class template, or a 6074 // probably different CXXDeductionGuideDecl. This may come from the fact that 6075 // the template parameter objects may be shared between deduction guides or 6076 // the class template, and at creation of multiple FunctionTemplateDecl 6077 // objects (for deduction guides) the same parameters are re-used. The 6078 // "adoption" happens multiple times with different parent, even recursively 6079 // for TemplateTemplateParmDecl. The same happens at import when the 6080 // FunctionTemplateDecl objects are created, but in different order. 6081 // In this way the DeclContext of these template parameters is not necessarily 6082 // the same as in the "from" context. 6083 SmallVector<DeclContext *, 2> OldParamDC; 6084 OldParamDC.reserve(Params->size()); 6085 llvm::transform(*Params, std::back_inserter(OldParamDC), 6086 [](NamedDecl *ND) { return ND->getDeclContext(); }); 6087 6088 FunctionTemplateDecl *ToFunc; 6089 if (GetImportedOrCreateDecl(ToFunc, D, Importer.getToContext(), DC, Loc, Name, 6090 Params, TemplatedFD)) 6091 return ToFunc; 6092 6093 TemplatedFD->setDescribedFunctionTemplate(ToFunc); 6094 6095 ToFunc->setAccess(D->getAccess()); 6096 ToFunc->setLexicalDeclContext(LexicalDC); 6097 LexicalDC->addDeclInternal(ToFunc); 6098 6099 ASTImporterLookupTable *LT = Importer.SharedState->getLookupTable(); 6100 if (LT && !OldParamDC.empty()) { 6101 for (unsigned int I = 0; I < OldParamDC.size(); ++I) 6102 LT->updateForced(Params->getParam(I), OldParamDC[I]); 6103 } 6104 6105 if (FoundByLookup) { 6106 auto *Recent = 6107 const_cast<FunctionTemplateDecl *>(FoundByLookup->getMostRecentDecl()); 6108 if (!TemplatedFD->getPreviousDecl()) { 6109 assert(FoundByLookup->getTemplatedDecl() && 6110 "Found decl must have its templated decl set"); 6111 auto *PrevTemplated = 6112 FoundByLookup->getTemplatedDecl()->getMostRecentDecl(); 6113 if (TemplatedFD != PrevTemplated) 6114 TemplatedFD->setPreviousDecl(PrevTemplated); 6115 } 6116 ToFunc->setPreviousDecl(Recent); 6117 } 6118 6119 return ToFunc; 6120 } 6121 6122 //---------------------------------------------------------------------------- 6123 // Import Statements 6124 //---------------------------------------------------------------------------- 6125 6126 ExpectedStmt ASTNodeImporter::VisitStmt(Stmt *S) { 6127 Importer.FromDiag(S->getBeginLoc(), diag::err_unsupported_ast_node) 6128 << S->getStmtClassName(); 6129 return make_error<ImportError>(ImportError::UnsupportedConstruct); 6130 } 6131 6132 6133 ExpectedStmt ASTNodeImporter::VisitGCCAsmStmt(GCCAsmStmt *S) { 6134 if (Importer.returnWithErrorInTest()) 6135 return make_error<ImportError>(ImportError::UnsupportedConstruct); 6136 SmallVector<IdentifierInfo *, 4> Names; 6137 for (unsigned I = 0, E = S->getNumOutputs(); I != E; I++) { 6138 IdentifierInfo *ToII = Importer.Import(S->getOutputIdentifier(I)); 6139 // ToII is nullptr when no symbolic name is given for output operand 6140 // see ParseStmtAsm::ParseAsmOperandsOpt 6141 Names.push_back(ToII); 6142 } 6143 6144 for (unsigned I = 0, E = S->getNumInputs(); I != E; I++) { 6145 IdentifierInfo *ToII = Importer.Import(S->getInputIdentifier(I)); 6146 // ToII is nullptr when no symbolic name is given for input operand 6147 // see ParseStmtAsm::ParseAsmOperandsOpt 6148 Names.push_back(ToII); 6149 } 6150 6151 SmallVector<StringLiteral *, 4> Clobbers; 6152 for (unsigned I = 0, E = S->getNumClobbers(); I != E; I++) { 6153 if (auto ClobberOrErr = import(S->getClobberStringLiteral(I))) 6154 Clobbers.push_back(*ClobberOrErr); 6155 else 6156 return ClobberOrErr.takeError(); 6157 6158 } 6159 6160 SmallVector<StringLiteral *, 4> Constraints; 6161 for (unsigned I = 0, E = S->getNumOutputs(); I != E; I++) { 6162 if (auto OutputOrErr = import(S->getOutputConstraintLiteral(I))) 6163 Constraints.push_back(*OutputOrErr); 6164 else 6165 return OutputOrErr.takeError(); 6166 } 6167 6168 for (unsigned I = 0, E = S->getNumInputs(); I != E; I++) { 6169 if (auto InputOrErr = import(S->getInputConstraintLiteral(I))) 6170 Constraints.push_back(*InputOrErr); 6171 else 6172 return InputOrErr.takeError(); 6173 } 6174 6175 SmallVector<Expr *, 4> Exprs(S->getNumOutputs() + S->getNumInputs() + 6176 S->getNumLabels()); 6177 if (Error Err = ImportContainerChecked(S->outputs(), Exprs)) 6178 return std::move(Err); 6179 6180 if (Error Err = 6181 ImportArrayChecked(S->inputs(), Exprs.begin() + S->getNumOutputs())) 6182 return std::move(Err); 6183 6184 if (Error Err = ImportArrayChecked( 6185 S->labels(), Exprs.begin() + S->getNumOutputs() + S->getNumInputs())) 6186 return std::move(Err); 6187 6188 ExpectedSLoc AsmLocOrErr = import(S->getAsmLoc()); 6189 if (!AsmLocOrErr) 6190 return AsmLocOrErr.takeError(); 6191 auto AsmStrOrErr = import(S->getAsmString()); 6192 if (!AsmStrOrErr) 6193 return AsmStrOrErr.takeError(); 6194 ExpectedSLoc RParenLocOrErr = import(S->getRParenLoc()); 6195 if (!RParenLocOrErr) 6196 return RParenLocOrErr.takeError(); 6197 6198 return new (Importer.getToContext()) GCCAsmStmt( 6199 Importer.getToContext(), 6200 *AsmLocOrErr, 6201 S->isSimple(), 6202 S->isVolatile(), 6203 S->getNumOutputs(), 6204 S->getNumInputs(), 6205 Names.data(), 6206 Constraints.data(), 6207 Exprs.data(), 6208 *AsmStrOrErr, 6209 S->getNumClobbers(), 6210 Clobbers.data(), 6211 S->getNumLabels(), 6212 *RParenLocOrErr); 6213 } 6214 6215 ExpectedStmt ASTNodeImporter::VisitDeclStmt(DeclStmt *S) { 6216 6217 Error Err = Error::success(); 6218 auto ToDG = importChecked(Err, S->getDeclGroup()); 6219 auto ToBeginLoc = importChecked(Err, S->getBeginLoc()); 6220 auto ToEndLoc = importChecked(Err, S->getEndLoc()); 6221 if (Err) 6222 return std::move(Err); 6223 return new (Importer.getToContext()) DeclStmt(ToDG, ToBeginLoc, ToEndLoc); 6224 } 6225 6226 ExpectedStmt ASTNodeImporter::VisitNullStmt(NullStmt *S) { 6227 ExpectedSLoc ToSemiLocOrErr = import(S->getSemiLoc()); 6228 if (!ToSemiLocOrErr) 6229 return ToSemiLocOrErr.takeError(); 6230 return new (Importer.getToContext()) NullStmt( 6231 *ToSemiLocOrErr, S->hasLeadingEmptyMacro()); 6232 } 6233 6234 ExpectedStmt ASTNodeImporter::VisitCompoundStmt(CompoundStmt *S) { 6235 SmallVector<Stmt *, 8> ToStmts(S->size()); 6236 6237 if (Error Err = ImportContainerChecked(S->body(), ToStmts)) 6238 return std::move(Err); 6239 6240 ExpectedSLoc ToLBracLocOrErr = import(S->getLBracLoc()); 6241 if (!ToLBracLocOrErr) 6242 return ToLBracLocOrErr.takeError(); 6243 6244 ExpectedSLoc ToRBracLocOrErr = import(S->getRBracLoc()); 6245 if (!ToRBracLocOrErr) 6246 return ToRBracLocOrErr.takeError(); 6247 6248 return CompoundStmt::Create( 6249 Importer.getToContext(), ToStmts, 6250 *ToLBracLocOrErr, *ToRBracLocOrErr); 6251 } 6252 6253 ExpectedStmt ASTNodeImporter::VisitCaseStmt(CaseStmt *S) { 6254 6255 Error Err = Error::success(); 6256 auto ToLHS = importChecked(Err, S->getLHS()); 6257 auto ToRHS = importChecked(Err, S->getRHS()); 6258 auto ToSubStmt = importChecked(Err, S->getSubStmt()); 6259 auto ToCaseLoc = importChecked(Err, S->getCaseLoc()); 6260 auto ToEllipsisLoc = importChecked(Err, S->getEllipsisLoc()); 6261 auto ToColonLoc = importChecked(Err, S->getColonLoc()); 6262 if (Err) 6263 return std::move(Err); 6264 6265 auto *ToStmt = CaseStmt::Create(Importer.getToContext(), ToLHS, ToRHS, 6266 ToCaseLoc, ToEllipsisLoc, ToColonLoc); 6267 ToStmt->setSubStmt(ToSubStmt); 6268 6269 return ToStmt; 6270 } 6271 6272 ExpectedStmt ASTNodeImporter::VisitDefaultStmt(DefaultStmt *S) { 6273 6274 Error Err = Error::success(); 6275 auto ToDefaultLoc = importChecked(Err, S->getDefaultLoc()); 6276 auto ToColonLoc = importChecked(Err, S->getColonLoc()); 6277 auto ToSubStmt = importChecked(Err, S->getSubStmt()); 6278 if (Err) 6279 return std::move(Err); 6280 6281 return new (Importer.getToContext()) DefaultStmt( 6282 ToDefaultLoc, ToColonLoc, ToSubStmt); 6283 } 6284 6285 ExpectedStmt ASTNodeImporter::VisitLabelStmt(LabelStmt *S) { 6286 6287 Error Err = Error::success(); 6288 auto ToIdentLoc = importChecked(Err, S->getIdentLoc()); 6289 auto ToLabelDecl = importChecked(Err, S->getDecl()); 6290 auto ToSubStmt = importChecked(Err, S->getSubStmt()); 6291 if (Err) 6292 return std::move(Err); 6293 6294 return new (Importer.getToContext()) LabelStmt( 6295 ToIdentLoc, ToLabelDecl, ToSubStmt); 6296 } 6297 6298 ExpectedStmt ASTNodeImporter::VisitAttributedStmt(AttributedStmt *S) { 6299 ExpectedSLoc ToAttrLocOrErr = import(S->getAttrLoc()); 6300 if (!ToAttrLocOrErr) 6301 return ToAttrLocOrErr.takeError(); 6302 ArrayRef<const Attr*> FromAttrs(S->getAttrs()); 6303 SmallVector<const Attr *, 1> ToAttrs(FromAttrs.size()); 6304 if (Error Err = ImportContainerChecked(FromAttrs, ToAttrs)) 6305 return std::move(Err); 6306 ExpectedStmt ToSubStmtOrErr = import(S->getSubStmt()); 6307 if (!ToSubStmtOrErr) 6308 return ToSubStmtOrErr.takeError(); 6309 6310 return AttributedStmt::Create( 6311 Importer.getToContext(), *ToAttrLocOrErr, ToAttrs, *ToSubStmtOrErr); 6312 } 6313 6314 ExpectedStmt ASTNodeImporter::VisitIfStmt(IfStmt *S) { 6315 6316 Error Err = Error::success(); 6317 auto ToIfLoc = importChecked(Err, S->getIfLoc()); 6318 auto ToInit = importChecked(Err, S->getInit()); 6319 auto ToConditionVariable = importChecked(Err, S->getConditionVariable()); 6320 auto ToCond = importChecked(Err, S->getCond()); 6321 auto ToLParenLoc = importChecked(Err, S->getLParenLoc()); 6322 auto ToRParenLoc = importChecked(Err, S->getRParenLoc()); 6323 auto ToThen = importChecked(Err, S->getThen()); 6324 auto ToElseLoc = importChecked(Err, S->getElseLoc()); 6325 auto ToElse = importChecked(Err, S->getElse()); 6326 if (Err) 6327 return std::move(Err); 6328 6329 return IfStmt::Create(Importer.getToContext(), ToIfLoc, S->getStatementKind(), 6330 ToInit, ToConditionVariable, ToCond, ToLParenLoc, 6331 ToRParenLoc, ToThen, ToElseLoc, ToElse); 6332 } 6333 6334 ExpectedStmt ASTNodeImporter::VisitSwitchStmt(SwitchStmt *S) { 6335 6336 Error Err = Error::success(); 6337 auto ToInit = importChecked(Err, S->getInit()); 6338 auto ToConditionVariable = importChecked(Err, S->getConditionVariable()); 6339 auto ToCond = importChecked(Err, S->getCond()); 6340 auto ToLParenLoc = importChecked(Err, S->getLParenLoc()); 6341 auto ToRParenLoc = importChecked(Err, S->getRParenLoc()); 6342 auto ToBody = importChecked(Err, S->getBody()); 6343 auto ToSwitchLoc = importChecked(Err, S->getSwitchLoc()); 6344 if (Err) 6345 return std::move(Err); 6346 6347 auto *ToStmt = 6348 SwitchStmt::Create(Importer.getToContext(), ToInit, ToConditionVariable, 6349 ToCond, ToLParenLoc, ToRParenLoc); 6350 ToStmt->setBody(ToBody); 6351 ToStmt->setSwitchLoc(ToSwitchLoc); 6352 6353 // Now we have to re-chain the cases. 6354 SwitchCase *LastChainedSwitchCase = nullptr; 6355 for (SwitchCase *SC = S->getSwitchCaseList(); SC != nullptr; 6356 SC = SC->getNextSwitchCase()) { 6357 Expected<SwitchCase *> ToSCOrErr = import(SC); 6358 if (!ToSCOrErr) 6359 return ToSCOrErr.takeError(); 6360 if (LastChainedSwitchCase) 6361 LastChainedSwitchCase->setNextSwitchCase(*ToSCOrErr); 6362 else 6363 ToStmt->setSwitchCaseList(*ToSCOrErr); 6364 LastChainedSwitchCase = *ToSCOrErr; 6365 } 6366 6367 return ToStmt; 6368 } 6369 6370 ExpectedStmt ASTNodeImporter::VisitWhileStmt(WhileStmt *S) { 6371 6372 Error Err = Error::success(); 6373 auto ToConditionVariable = importChecked(Err, S->getConditionVariable()); 6374 auto ToCond = importChecked(Err, S->getCond()); 6375 auto ToBody = importChecked(Err, S->getBody()); 6376 auto ToWhileLoc = importChecked(Err, S->getWhileLoc()); 6377 auto ToLParenLoc = importChecked(Err, S->getLParenLoc()); 6378 auto ToRParenLoc = importChecked(Err, S->getRParenLoc()); 6379 if (Err) 6380 return std::move(Err); 6381 6382 return WhileStmt::Create(Importer.getToContext(), ToConditionVariable, ToCond, 6383 ToBody, ToWhileLoc, ToLParenLoc, ToRParenLoc); 6384 } 6385 6386 ExpectedStmt ASTNodeImporter::VisitDoStmt(DoStmt *S) { 6387 6388 Error Err = Error::success(); 6389 auto ToBody = importChecked(Err, S->getBody()); 6390 auto ToCond = importChecked(Err, S->getCond()); 6391 auto ToDoLoc = importChecked(Err, S->getDoLoc()); 6392 auto ToWhileLoc = importChecked(Err, S->getWhileLoc()); 6393 auto ToRParenLoc = importChecked(Err, S->getRParenLoc()); 6394 if (Err) 6395 return std::move(Err); 6396 6397 return new (Importer.getToContext()) DoStmt( 6398 ToBody, ToCond, ToDoLoc, ToWhileLoc, ToRParenLoc); 6399 } 6400 6401 ExpectedStmt ASTNodeImporter::VisitForStmt(ForStmt *S) { 6402 6403 Error Err = Error::success(); 6404 auto ToInit = importChecked(Err, S->getInit()); 6405 auto ToCond = importChecked(Err, S->getCond()); 6406 auto ToConditionVariable = importChecked(Err, S->getConditionVariable()); 6407 auto ToInc = importChecked(Err, S->getInc()); 6408 auto ToBody = importChecked(Err, S->getBody()); 6409 auto ToForLoc = importChecked(Err, S->getForLoc()); 6410 auto ToLParenLoc = importChecked(Err, S->getLParenLoc()); 6411 auto ToRParenLoc = importChecked(Err, S->getRParenLoc()); 6412 if (Err) 6413 return std::move(Err); 6414 6415 return new (Importer.getToContext()) ForStmt( 6416 Importer.getToContext(), 6417 ToInit, ToCond, ToConditionVariable, ToInc, ToBody, ToForLoc, ToLParenLoc, 6418 ToRParenLoc); 6419 } 6420 6421 ExpectedStmt ASTNodeImporter::VisitGotoStmt(GotoStmt *S) { 6422 6423 Error Err = Error::success(); 6424 auto ToLabel = importChecked(Err, S->getLabel()); 6425 auto ToGotoLoc = importChecked(Err, S->getGotoLoc()); 6426 auto ToLabelLoc = importChecked(Err, S->getLabelLoc()); 6427 if (Err) 6428 return std::move(Err); 6429 6430 return new (Importer.getToContext()) GotoStmt( 6431 ToLabel, ToGotoLoc, ToLabelLoc); 6432 } 6433 6434 ExpectedStmt ASTNodeImporter::VisitIndirectGotoStmt(IndirectGotoStmt *S) { 6435 6436 Error Err = Error::success(); 6437 auto ToGotoLoc = importChecked(Err, S->getGotoLoc()); 6438 auto ToStarLoc = importChecked(Err, S->getStarLoc()); 6439 auto ToTarget = importChecked(Err, S->getTarget()); 6440 if (Err) 6441 return std::move(Err); 6442 6443 return new (Importer.getToContext()) IndirectGotoStmt( 6444 ToGotoLoc, ToStarLoc, ToTarget); 6445 } 6446 6447 ExpectedStmt ASTNodeImporter::VisitContinueStmt(ContinueStmt *S) { 6448 ExpectedSLoc ToContinueLocOrErr = import(S->getContinueLoc()); 6449 if (!ToContinueLocOrErr) 6450 return ToContinueLocOrErr.takeError(); 6451 return new (Importer.getToContext()) ContinueStmt(*ToContinueLocOrErr); 6452 } 6453 6454 ExpectedStmt ASTNodeImporter::VisitBreakStmt(BreakStmt *S) { 6455 auto ToBreakLocOrErr = import(S->getBreakLoc()); 6456 if (!ToBreakLocOrErr) 6457 return ToBreakLocOrErr.takeError(); 6458 return new (Importer.getToContext()) BreakStmt(*ToBreakLocOrErr); 6459 } 6460 6461 ExpectedStmt ASTNodeImporter::VisitReturnStmt(ReturnStmt *S) { 6462 6463 Error Err = Error::success(); 6464 auto ToReturnLoc = importChecked(Err, S->getReturnLoc()); 6465 auto ToRetValue = importChecked(Err, S->getRetValue()); 6466 auto ToNRVOCandidate = importChecked(Err, S->getNRVOCandidate()); 6467 if (Err) 6468 return std::move(Err); 6469 6470 return ReturnStmt::Create(Importer.getToContext(), ToReturnLoc, ToRetValue, 6471 ToNRVOCandidate); 6472 } 6473 6474 ExpectedStmt ASTNodeImporter::VisitCXXCatchStmt(CXXCatchStmt *S) { 6475 6476 Error Err = Error::success(); 6477 auto ToCatchLoc = importChecked(Err, S->getCatchLoc()); 6478 auto ToExceptionDecl = importChecked(Err, S->getExceptionDecl()); 6479 auto ToHandlerBlock = importChecked(Err, S->getHandlerBlock()); 6480 if (Err) 6481 return std::move(Err); 6482 6483 return new (Importer.getToContext()) CXXCatchStmt ( 6484 ToCatchLoc, ToExceptionDecl, ToHandlerBlock); 6485 } 6486 6487 ExpectedStmt ASTNodeImporter::VisitCXXTryStmt(CXXTryStmt *S) { 6488 ExpectedSLoc ToTryLocOrErr = import(S->getTryLoc()); 6489 if (!ToTryLocOrErr) 6490 return ToTryLocOrErr.takeError(); 6491 6492 ExpectedStmt ToTryBlockOrErr = import(S->getTryBlock()); 6493 if (!ToTryBlockOrErr) 6494 return ToTryBlockOrErr.takeError(); 6495 6496 SmallVector<Stmt *, 1> ToHandlers(S->getNumHandlers()); 6497 for (unsigned HI = 0, HE = S->getNumHandlers(); HI != HE; ++HI) { 6498 CXXCatchStmt *FromHandler = S->getHandler(HI); 6499 if (auto ToHandlerOrErr = import(FromHandler)) 6500 ToHandlers[HI] = *ToHandlerOrErr; 6501 else 6502 return ToHandlerOrErr.takeError(); 6503 } 6504 6505 return CXXTryStmt::Create( 6506 Importer.getToContext(), *ToTryLocOrErr,*ToTryBlockOrErr, ToHandlers); 6507 } 6508 6509 ExpectedStmt ASTNodeImporter::VisitCXXForRangeStmt(CXXForRangeStmt *S) { 6510 6511 Error Err = Error::success(); 6512 auto ToInit = importChecked(Err, S->getInit()); 6513 auto ToRangeStmt = importChecked(Err, S->getRangeStmt()); 6514 auto ToBeginStmt = importChecked(Err, S->getBeginStmt()); 6515 auto ToEndStmt = importChecked(Err, S->getEndStmt()); 6516 auto ToCond = importChecked(Err, S->getCond()); 6517 auto ToInc = importChecked(Err, S->getInc()); 6518 auto ToLoopVarStmt = importChecked(Err, S->getLoopVarStmt()); 6519 auto ToBody = importChecked(Err, S->getBody()); 6520 auto ToForLoc = importChecked(Err, S->getForLoc()); 6521 auto ToCoawaitLoc = importChecked(Err, S->getCoawaitLoc()); 6522 auto ToColonLoc = importChecked(Err, S->getColonLoc()); 6523 auto ToRParenLoc = importChecked(Err, S->getRParenLoc()); 6524 if (Err) 6525 return std::move(Err); 6526 6527 return new (Importer.getToContext()) CXXForRangeStmt( 6528 ToInit, ToRangeStmt, ToBeginStmt, ToEndStmt, ToCond, ToInc, ToLoopVarStmt, 6529 ToBody, ToForLoc, ToCoawaitLoc, ToColonLoc, ToRParenLoc); 6530 } 6531 6532 ExpectedStmt 6533 ASTNodeImporter::VisitObjCForCollectionStmt(ObjCForCollectionStmt *S) { 6534 Error Err = Error::success(); 6535 auto ToElement = importChecked(Err, S->getElement()); 6536 auto ToCollection = importChecked(Err, S->getCollection()); 6537 auto ToBody = importChecked(Err, S->getBody()); 6538 auto ToForLoc = importChecked(Err, S->getForLoc()); 6539 auto ToRParenLoc = importChecked(Err, S->getRParenLoc()); 6540 if (Err) 6541 return std::move(Err); 6542 6543 return new (Importer.getToContext()) ObjCForCollectionStmt(ToElement, 6544 ToCollection, 6545 ToBody, 6546 ToForLoc, 6547 ToRParenLoc); 6548 } 6549 6550 ExpectedStmt ASTNodeImporter::VisitObjCAtCatchStmt(ObjCAtCatchStmt *S) { 6551 6552 Error Err = Error::success(); 6553 auto ToAtCatchLoc = importChecked(Err, S->getAtCatchLoc()); 6554 auto ToRParenLoc = importChecked(Err, S->getRParenLoc()); 6555 auto ToCatchParamDecl = importChecked(Err, S->getCatchParamDecl()); 6556 auto ToCatchBody = importChecked(Err, S->getCatchBody()); 6557 if (Err) 6558 return std::move(Err); 6559 6560 return new (Importer.getToContext()) ObjCAtCatchStmt ( 6561 ToAtCatchLoc, ToRParenLoc, ToCatchParamDecl, ToCatchBody); 6562 } 6563 6564 ExpectedStmt ASTNodeImporter::VisitObjCAtFinallyStmt(ObjCAtFinallyStmt *S) { 6565 ExpectedSLoc ToAtFinallyLocOrErr = import(S->getAtFinallyLoc()); 6566 if (!ToAtFinallyLocOrErr) 6567 return ToAtFinallyLocOrErr.takeError(); 6568 ExpectedStmt ToAtFinallyStmtOrErr = import(S->getFinallyBody()); 6569 if (!ToAtFinallyStmtOrErr) 6570 return ToAtFinallyStmtOrErr.takeError(); 6571 return new (Importer.getToContext()) ObjCAtFinallyStmt(*ToAtFinallyLocOrErr, 6572 *ToAtFinallyStmtOrErr); 6573 } 6574 6575 ExpectedStmt ASTNodeImporter::VisitObjCAtTryStmt(ObjCAtTryStmt *S) { 6576 6577 Error Err = Error::success(); 6578 auto ToAtTryLoc = importChecked(Err, S->getAtTryLoc()); 6579 auto ToTryBody = importChecked(Err, S->getTryBody()); 6580 auto ToFinallyStmt = importChecked(Err, S->getFinallyStmt()); 6581 if (Err) 6582 return std::move(Err); 6583 6584 SmallVector<Stmt *, 1> ToCatchStmts(S->getNumCatchStmts()); 6585 for (unsigned CI = 0, CE = S->getNumCatchStmts(); CI != CE; ++CI) { 6586 ObjCAtCatchStmt *FromCatchStmt = S->getCatchStmt(CI); 6587 if (ExpectedStmt ToCatchStmtOrErr = import(FromCatchStmt)) 6588 ToCatchStmts[CI] = *ToCatchStmtOrErr; 6589 else 6590 return ToCatchStmtOrErr.takeError(); 6591 } 6592 6593 return ObjCAtTryStmt::Create(Importer.getToContext(), 6594 ToAtTryLoc, ToTryBody, 6595 ToCatchStmts.begin(), ToCatchStmts.size(), 6596 ToFinallyStmt); 6597 } 6598 6599 ExpectedStmt 6600 ASTNodeImporter::VisitObjCAtSynchronizedStmt(ObjCAtSynchronizedStmt *S) { 6601 6602 Error Err = Error::success(); 6603 auto ToAtSynchronizedLoc = importChecked(Err, S->getAtSynchronizedLoc()); 6604 auto ToSynchExpr = importChecked(Err, S->getSynchExpr()); 6605 auto ToSynchBody = importChecked(Err, S->getSynchBody()); 6606 if (Err) 6607 return std::move(Err); 6608 6609 return new (Importer.getToContext()) ObjCAtSynchronizedStmt( 6610 ToAtSynchronizedLoc, ToSynchExpr, ToSynchBody); 6611 } 6612 6613 ExpectedStmt ASTNodeImporter::VisitObjCAtThrowStmt(ObjCAtThrowStmt *S) { 6614 ExpectedSLoc ToThrowLocOrErr = import(S->getThrowLoc()); 6615 if (!ToThrowLocOrErr) 6616 return ToThrowLocOrErr.takeError(); 6617 ExpectedExpr ToThrowExprOrErr = import(S->getThrowExpr()); 6618 if (!ToThrowExprOrErr) 6619 return ToThrowExprOrErr.takeError(); 6620 return new (Importer.getToContext()) ObjCAtThrowStmt( 6621 *ToThrowLocOrErr, *ToThrowExprOrErr); 6622 } 6623 6624 ExpectedStmt ASTNodeImporter::VisitObjCAutoreleasePoolStmt( 6625 ObjCAutoreleasePoolStmt *S) { 6626 ExpectedSLoc ToAtLocOrErr = import(S->getAtLoc()); 6627 if (!ToAtLocOrErr) 6628 return ToAtLocOrErr.takeError(); 6629 ExpectedStmt ToSubStmtOrErr = import(S->getSubStmt()); 6630 if (!ToSubStmtOrErr) 6631 return ToSubStmtOrErr.takeError(); 6632 return new (Importer.getToContext()) ObjCAutoreleasePoolStmt(*ToAtLocOrErr, 6633 *ToSubStmtOrErr); 6634 } 6635 6636 //---------------------------------------------------------------------------- 6637 // Import Expressions 6638 //---------------------------------------------------------------------------- 6639 ExpectedStmt ASTNodeImporter::VisitExpr(Expr *E) { 6640 Importer.FromDiag(E->getBeginLoc(), diag::err_unsupported_ast_node) 6641 << E->getStmtClassName(); 6642 return make_error<ImportError>(ImportError::UnsupportedConstruct); 6643 } 6644 6645 ExpectedStmt ASTNodeImporter::VisitSourceLocExpr(SourceLocExpr *E) { 6646 Error Err = Error::success(); 6647 auto BLoc = importChecked(Err, E->getBeginLoc()); 6648 auto RParenLoc = importChecked(Err, E->getEndLoc()); 6649 if (Err) 6650 return std::move(Err); 6651 auto ParentContextOrErr = Importer.ImportContext(E->getParentContext()); 6652 if (!ParentContextOrErr) 6653 return ParentContextOrErr.takeError(); 6654 6655 return new (Importer.getToContext()) 6656 SourceLocExpr(Importer.getToContext(), E->getIdentKind(), BLoc, RParenLoc, 6657 *ParentContextOrErr); 6658 } 6659 6660 ExpectedStmt ASTNodeImporter::VisitVAArgExpr(VAArgExpr *E) { 6661 6662 Error Err = Error::success(); 6663 auto ToBuiltinLoc = importChecked(Err, E->getBuiltinLoc()); 6664 auto ToSubExpr = importChecked(Err, E->getSubExpr()); 6665 auto ToWrittenTypeInfo = importChecked(Err, E->getWrittenTypeInfo()); 6666 auto ToRParenLoc = importChecked(Err, E->getRParenLoc()); 6667 auto ToType = importChecked(Err, E->getType()); 6668 if (Err) 6669 return std::move(Err); 6670 6671 return new (Importer.getToContext()) VAArgExpr( 6672 ToBuiltinLoc, ToSubExpr, ToWrittenTypeInfo, ToRParenLoc, ToType, 6673 E->isMicrosoftABI()); 6674 } 6675 6676 ExpectedStmt ASTNodeImporter::VisitChooseExpr(ChooseExpr *E) { 6677 6678 Error Err = Error::success(); 6679 auto ToCond = importChecked(Err, E->getCond()); 6680 auto ToLHS = importChecked(Err, E->getLHS()); 6681 auto ToRHS = importChecked(Err, E->getRHS()); 6682 auto ToBuiltinLoc = importChecked(Err, E->getBuiltinLoc()); 6683 auto ToRParenLoc = importChecked(Err, E->getRParenLoc()); 6684 auto ToType = importChecked(Err, E->getType()); 6685 if (Err) 6686 return std::move(Err); 6687 6688 ExprValueKind VK = E->getValueKind(); 6689 ExprObjectKind OK = E->getObjectKind(); 6690 6691 // The value of CondIsTrue only matters if the value is not 6692 // condition-dependent. 6693 bool CondIsTrue = !E->isConditionDependent() && E->isConditionTrue(); 6694 6695 return new (Importer.getToContext()) 6696 ChooseExpr(ToBuiltinLoc, ToCond, ToLHS, ToRHS, ToType, VK, OK, 6697 ToRParenLoc, CondIsTrue); 6698 } 6699 6700 ExpectedStmt ASTNodeImporter::VisitShuffleVectorExpr(ShuffleVectorExpr *E) { 6701 Error Err = Error::success(); 6702 auto ToRParenLoc = importChecked(Err, E->getRParenLoc()); 6703 auto ToBeginLoc = importChecked(Err, E->getBeginLoc()); 6704 auto ToType = importChecked(Err, E->getType()); 6705 const unsigned NumSubExprs = E->getNumSubExprs(); 6706 6707 llvm::SmallVector<Expr *, 8> ToSubExprs; 6708 llvm::ArrayRef<Expr *> FromSubExprs(E->getSubExprs(), NumSubExprs); 6709 ToSubExprs.resize(NumSubExprs); 6710 6711 if ((Err = ImportContainerChecked(FromSubExprs, ToSubExprs))) 6712 return std::move(Err); 6713 6714 return new (Importer.getToContext()) ShuffleVectorExpr( 6715 Importer.getToContext(), ToSubExprs, ToType, ToBeginLoc, ToRParenLoc); 6716 } 6717 6718 ExpectedStmt ASTNodeImporter::VisitGNUNullExpr(GNUNullExpr *E) { 6719 ExpectedType TypeOrErr = import(E->getType()); 6720 if (!TypeOrErr) 6721 return TypeOrErr.takeError(); 6722 6723 ExpectedSLoc BeginLocOrErr = import(E->getBeginLoc()); 6724 if (!BeginLocOrErr) 6725 return BeginLocOrErr.takeError(); 6726 6727 return new (Importer.getToContext()) GNUNullExpr(*TypeOrErr, *BeginLocOrErr); 6728 } 6729 6730 ExpectedStmt 6731 ASTNodeImporter::VisitGenericSelectionExpr(GenericSelectionExpr *E) { 6732 Error Err = Error::success(); 6733 auto ToGenericLoc = importChecked(Err, E->getGenericLoc()); 6734 auto *ToControllingExpr = importChecked(Err, E->getControllingExpr()); 6735 auto ToDefaultLoc = importChecked(Err, E->getDefaultLoc()); 6736 auto ToRParenLoc = importChecked(Err, E->getRParenLoc()); 6737 if (Err) 6738 return std::move(Err); 6739 6740 ArrayRef<const TypeSourceInfo *> FromAssocTypes(E->getAssocTypeSourceInfos()); 6741 SmallVector<TypeSourceInfo *, 1> ToAssocTypes(FromAssocTypes.size()); 6742 if (Error Err = ImportContainerChecked(FromAssocTypes, ToAssocTypes)) 6743 return std::move(Err); 6744 6745 ArrayRef<const Expr *> FromAssocExprs(E->getAssocExprs()); 6746 SmallVector<Expr *, 1> ToAssocExprs(FromAssocExprs.size()); 6747 if (Error Err = ImportContainerChecked(FromAssocExprs, ToAssocExprs)) 6748 return std::move(Err); 6749 6750 const ASTContext &ToCtx = Importer.getToContext(); 6751 if (E->isResultDependent()) { 6752 return GenericSelectionExpr::Create( 6753 ToCtx, ToGenericLoc, ToControllingExpr, 6754 llvm::makeArrayRef(ToAssocTypes), llvm::makeArrayRef(ToAssocExprs), 6755 ToDefaultLoc, ToRParenLoc, E->containsUnexpandedParameterPack()); 6756 } 6757 6758 return GenericSelectionExpr::Create( 6759 ToCtx, ToGenericLoc, ToControllingExpr, llvm::makeArrayRef(ToAssocTypes), 6760 llvm::makeArrayRef(ToAssocExprs), ToDefaultLoc, ToRParenLoc, 6761 E->containsUnexpandedParameterPack(), E->getResultIndex()); 6762 } 6763 6764 ExpectedStmt ASTNodeImporter::VisitPredefinedExpr(PredefinedExpr *E) { 6765 6766 Error Err = Error::success(); 6767 auto ToBeginLoc = importChecked(Err, E->getBeginLoc()); 6768 auto ToType = importChecked(Err, E->getType()); 6769 auto ToFunctionName = importChecked(Err, E->getFunctionName()); 6770 if (Err) 6771 return std::move(Err); 6772 6773 return PredefinedExpr::Create(Importer.getToContext(), ToBeginLoc, ToType, 6774 E->getIdentKind(), ToFunctionName); 6775 } 6776 6777 ExpectedStmt ASTNodeImporter::VisitDeclRefExpr(DeclRefExpr *E) { 6778 6779 Error Err = Error::success(); 6780 auto ToQualifierLoc = importChecked(Err, E->getQualifierLoc()); 6781 auto ToTemplateKeywordLoc = importChecked(Err, E->getTemplateKeywordLoc()); 6782 auto ToDecl = importChecked(Err, E->getDecl()); 6783 auto ToLocation = importChecked(Err, E->getLocation()); 6784 auto ToType = importChecked(Err, E->getType()); 6785 if (Err) 6786 return std::move(Err); 6787 6788 NamedDecl *ToFoundD = nullptr; 6789 if (E->getDecl() != E->getFoundDecl()) { 6790 auto FoundDOrErr = import(E->getFoundDecl()); 6791 if (!FoundDOrErr) 6792 return FoundDOrErr.takeError(); 6793 ToFoundD = *FoundDOrErr; 6794 } 6795 6796 TemplateArgumentListInfo ToTAInfo; 6797 TemplateArgumentListInfo *ToResInfo = nullptr; 6798 if (E->hasExplicitTemplateArgs()) { 6799 if (Error Err = 6800 ImportTemplateArgumentListInfo(E->getLAngleLoc(), E->getRAngleLoc(), 6801 E->template_arguments(), ToTAInfo)) 6802 return std::move(Err); 6803 ToResInfo = &ToTAInfo; 6804 } 6805 6806 auto *ToE = DeclRefExpr::Create( 6807 Importer.getToContext(), ToQualifierLoc, ToTemplateKeywordLoc, ToDecl, 6808 E->refersToEnclosingVariableOrCapture(), ToLocation, ToType, 6809 E->getValueKind(), ToFoundD, ToResInfo, E->isNonOdrUse()); 6810 if (E->hadMultipleCandidates()) 6811 ToE->setHadMultipleCandidates(true); 6812 return ToE; 6813 } 6814 6815 ExpectedStmt ASTNodeImporter::VisitImplicitValueInitExpr(ImplicitValueInitExpr *E) { 6816 ExpectedType TypeOrErr = import(E->getType()); 6817 if (!TypeOrErr) 6818 return TypeOrErr.takeError(); 6819 6820 return new (Importer.getToContext()) ImplicitValueInitExpr(*TypeOrErr); 6821 } 6822 6823 ExpectedStmt ASTNodeImporter::VisitDesignatedInitExpr(DesignatedInitExpr *E) { 6824 ExpectedExpr ToInitOrErr = import(E->getInit()); 6825 if (!ToInitOrErr) 6826 return ToInitOrErr.takeError(); 6827 6828 ExpectedSLoc ToEqualOrColonLocOrErr = import(E->getEqualOrColonLoc()); 6829 if (!ToEqualOrColonLocOrErr) 6830 return ToEqualOrColonLocOrErr.takeError(); 6831 6832 SmallVector<Expr *, 4> ToIndexExprs(E->getNumSubExprs() - 1); 6833 // List elements from the second, the first is Init itself 6834 for (unsigned I = 1, N = E->getNumSubExprs(); I < N; I++) { 6835 if (ExpectedExpr ToArgOrErr = import(E->getSubExpr(I))) 6836 ToIndexExprs[I - 1] = *ToArgOrErr; 6837 else 6838 return ToArgOrErr.takeError(); 6839 } 6840 6841 SmallVector<Designator, 4> ToDesignators(E->size()); 6842 if (Error Err = ImportContainerChecked(E->designators(), ToDesignators)) 6843 return std::move(Err); 6844 6845 return DesignatedInitExpr::Create( 6846 Importer.getToContext(), ToDesignators, 6847 ToIndexExprs, *ToEqualOrColonLocOrErr, 6848 E->usesGNUSyntax(), *ToInitOrErr); 6849 } 6850 6851 ExpectedStmt 6852 ASTNodeImporter::VisitCXXNullPtrLiteralExpr(CXXNullPtrLiteralExpr *E) { 6853 ExpectedType ToTypeOrErr = import(E->getType()); 6854 if (!ToTypeOrErr) 6855 return ToTypeOrErr.takeError(); 6856 6857 ExpectedSLoc ToLocationOrErr = import(E->getLocation()); 6858 if (!ToLocationOrErr) 6859 return ToLocationOrErr.takeError(); 6860 6861 return new (Importer.getToContext()) CXXNullPtrLiteralExpr( 6862 *ToTypeOrErr, *ToLocationOrErr); 6863 } 6864 6865 ExpectedStmt ASTNodeImporter::VisitIntegerLiteral(IntegerLiteral *E) { 6866 ExpectedType ToTypeOrErr = import(E->getType()); 6867 if (!ToTypeOrErr) 6868 return ToTypeOrErr.takeError(); 6869 6870 ExpectedSLoc ToLocationOrErr = import(E->getLocation()); 6871 if (!ToLocationOrErr) 6872 return ToLocationOrErr.takeError(); 6873 6874 return IntegerLiteral::Create( 6875 Importer.getToContext(), E->getValue(), *ToTypeOrErr, *ToLocationOrErr); 6876 } 6877 6878 6879 ExpectedStmt ASTNodeImporter::VisitFloatingLiteral(FloatingLiteral *E) { 6880 ExpectedType ToTypeOrErr = import(E->getType()); 6881 if (!ToTypeOrErr) 6882 return ToTypeOrErr.takeError(); 6883 6884 ExpectedSLoc ToLocationOrErr = import(E->getLocation()); 6885 if (!ToLocationOrErr) 6886 return ToLocationOrErr.takeError(); 6887 6888 return FloatingLiteral::Create( 6889 Importer.getToContext(), E->getValue(), E->isExact(), 6890 *ToTypeOrErr, *ToLocationOrErr); 6891 } 6892 6893 ExpectedStmt ASTNodeImporter::VisitImaginaryLiteral(ImaginaryLiteral *E) { 6894 auto ToTypeOrErr = import(E->getType()); 6895 if (!ToTypeOrErr) 6896 return ToTypeOrErr.takeError(); 6897 6898 ExpectedExpr ToSubExprOrErr = import(E->getSubExpr()); 6899 if (!ToSubExprOrErr) 6900 return ToSubExprOrErr.takeError(); 6901 6902 return new (Importer.getToContext()) ImaginaryLiteral( 6903 *ToSubExprOrErr, *ToTypeOrErr); 6904 } 6905 6906 ExpectedStmt ASTNodeImporter::VisitFixedPointLiteral(FixedPointLiteral *E) { 6907 auto ToTypeOrErr = import(E->getType()); 6908 if (!ToTypeOrErr) 6909 return ToTypeOrErr.takeError(); 6910 6911 ExpectedSLoc ToLocationOrErr = import(E->getLocation()); 6912 if (!ToLocationOrErr) 6913 return ToLocationOrErr.takeError(); 6914 6915 return new (Importer.getToContext()) FixedPointLiteral( 6916 Importer.getToContext(), E->getValue(), *ToTypeOrErr, *ToLocationOrErr, 6917 Importer.getToContext().getFixedPointScale(*ToTypeOrErr)); 6918 } 6919 6920 ExpectedStmt ASTNodeImporter::VisitCharacterLiteral(CharacterLiteral *E) { 6921 ExpectedType ToTypeOrErr = import(E->getType()); 6922 if (!ToTypeOrErr) 6923 return ToTypeOrErr.takeError(); 6924 6925 ExpectedSLoc ToLocationOrErr = import(E->getLocation()); 6926 if (!ToLocationOrErr) 6927 return ToLocationOrErr.takeError(); 6928 6929 return new (Importer.getToContext()) CharacterLiteral( 6930 E->getValue(), E->getKind(), *ToTypeOrErr, *ToLocationOrErr); 6931 } 6932 6933 ExpectedStmt ASTNodeImporter::VisitStringLiteral(StringLiteral *E) { 6934 ExpectedType ToTypeOrErr = import(E->getType()); 6935 if (!ToTypeOrErr) 6936 return ToTypeOrErr.takeError(); 6937 6938 SmallVector<SourceLocation, 4> ToLocations(E->getNumConcatenated()); 6939 if (Error Err = ImportArrayChecked( 6940 E->tokloc_begin(), E->tokloc_end(), ToLocations.begin())) 6941 return std::move(Err); 6942 6943 return StringLiteral::Create( 6944 Importer.getToContext(), E->getBytes(), E->getKind(), E->isPascal(), 6945 *ToTypeOrErr, ToLocations.data(), ToLocations.size()); 6946 } 6947 6948 ExpectedStmt ASTNodeImporter::VisitCompoundLiteralExpr(CompoundLiteralExpr *E) { 6949 6950 Error Err = Error::success(); 6951 auto ToLParenLoc = importChecked(Err, E->getLParenLoc()); 6952 auto ToTypeSourceInfo = importChecked(Err, E->getTypeSourceInfo()); 6953 auto ToType = importChecked(Err, E->getType()); 6954 auto ToInitializer = importChecked(Err, E->getInitializer()); 6955 if (Err) 6956 return std::move(Err); 6957 6958 return new (Importer.getToContext()) CompoundLiteralExpr( 6959 ToLParenLoc, ToTypeSourceInfo, ToType, E->getValueKind(), 6960 ToInitializer, E->isFileScope()); 6961 } 6962 6963 ExpectedStmt ASTNodeImporter::VisitAtomicExpr(AtomicExpr *E) { 6964 6965 Error Err = Error::success(); 6966 auto ToBuiltinLoc = importChecked(Err, E->getBuiltinLoc()); 6967 auto ToType = importChecked(Err, E->getType()); 6968 auto ToRParenLoc = importChecked(Err, E->getRParenLoc()); 6969 if (Err) 6970 return std::move(Err); 6971 6972 SmallVector<Expr *, 6> ToExprs(E->getNumSubExprs()); 6973 if (Error Err = ImportArrayChecked( 6974 E->getSubExprs(), E->getSubExprs() + E->getNumSubExprs(), 6975 ToExprs.begin())) 6976 return std::move(Err); 6977 6978 return new (Importer.getToContext()) AtomicExpr( 6979 6980 ToBuiltinLoc, ToExprs, ToType, E->getOp(), ToRParenLoc); 6981 } 6982 6983 ExpectedStmt ASTNodeImporter::VisitAddrLabelExpr(AddrLabelExpr *E) { 6984 Error Err = Error::success(); 6985 auto ToAmpAmpLoc = importChecked(Err, E->getAmpAmpLoc()); 6986 auto ToLabelLoc = importChecked(Err, E->getLabelLoc()); 6987 auto ToLabel = importChecked(Err, E->getLabel()); 6988 auto ToType = importChecked(Err, E->getType()); 6989 if (Err) 6990 return std::move(Err); 6991 6992 return new (Importer.getToContext()) AddrLabelExpr( 6993 ToAmpAmpLoc, ToLabelLoc, ToLabel, ToType); 6994 } 6995 ExpectedStmt ASTNodeImporter::VisitConstantExpr(ConstantExpr *E) { 6996 Error Err = Error::success(); 6997 auto ToSubExpr = importChecked(Err, E->getSubExpr()); 6998 auto ToResult = importChecked(Err, E->getAPValueResult()); 6999 if (Err) 7000 return std::move(Err); 7001 7002 return ConstantExpr::Create(Importer.getToContext(), ToSubExpr, ToResult); 7003 } 7004 ExpectedStmt ASTNodeImporter::VisitParenExpr(ParenExpr *E) { 7005 Error Err = Error::success(); 7006 auto ToLParen = importChecked(Err, E->getLParen()); 7007 auto ToRParen = importChecked(Err, E->getRParen()); 7008 auto ToSubExpr = importChecked(Err, E->getSubExpr()); 7009 if (Err) 7010 return std::move(Err); 7011 7012 return new (Importer.getToContext()) 7013 ParenExpr(ToLParen, ToRParen, ToSubExpr); 7014 } 7015 7016 ExpectedStmt ASTNodeImporter::VisitParenListExpr(ParenListExpr *E) { 7017 SmallVector<Expr *, 4> ToExprs(E->getNumExprs()); 7018 if (Error Err = ImportContainerChecked(E->exprs(), ToExprs)) 7019 return std::move(Err); 7020 7021 ExpectedSLoc ToLParenLocOrErr = import(E->getLParenLoc()); 7022 if (!ToLParenLocOrErr) 7023 return ToLParenLocOrErr.takeError(); 7024 7025 ExpectedSLoc ToRParenLocOrErr = import(E->getRParenLoc()); 7026 if (!ToRParenLocOrErr) 7027 return ToRParenLocOrErr.takeError(); 7028 7029 return ParenListExpr::Create(Importer.getToContext(), *ToLParenLocOrErr, 7030 ToExprs, *ToRParenLocOrErr); 7031 } 7032 7033 ExpectedStmt ASTNodeImporter::VisitStmtExpr(StmtExpr *E) { 7034 Error Err = Error::success(); 7035 auto ToSubStmt = importChecked(Err, E->getSubStmt()); 7036 auto ToType = importChecked(Err, E->getType()); 7037 auto ToLParenLoc = importChecked(Err, E->getLParenLoc()); 7038 auto ToRParenLoc = importChecked(Err, E->getRParenLoc()); 7039 if (Err) 7040 return std::move(Err); 7041 7042 return new (Importer.getToContext()) 7043 StmtExpr(ToSubStmt, ToType, ToLParenLoc, ToRParenLoc, 7044 E->getTemplateDepth()); 7045 } 7046 7047 ExpectedStmt ASTNodeImporter::VisitUnaryOperator(UnaryOperator *E) { 7048 Error Err = Error::success(); 7049 auto ToSubExpr = importChecked(Err, E->getSubExpr()); 7050 auto ToType = importChecked(Err, E->getType()); 7051 auto ToOperatorLoc = importChecked(Err, E->getOperatorLoc()); 7052 if (Err) 7053 return std::move(Err); 7054 7055 return UnaryOperator::Create( 7056 Importer.getToContext(), ToSubExpr, E->getOpcode(), ToType, 7057 E->getValueKind(), E->getObjectKind(), ToOperatorLoc, E->canOverflow(), 7058 E->getFPOptionsOverride()); 7059 } 7060 7061 ExpectedStmt 7062 7063 ASTNodeImporter::VisitUnaryExprOrTypeTraitExpr(UnaryExprOrTypeTraitExpr *E) { 7064 Error Err = Error::success(); 7065 auto ToType = importChecked(Err, E->getType()); 7066 auto ToOperatorLoc = importChecked(Err, E->getOperatorLoc()); 7067 auto ToRParenLoc = importChecked(Err, E->getRParenLoc()); 7068 if (Err) 7069 return std::move(Err); 7070 7071 if (E->isArgumentType()) { 7072 Expected<TypeSourceInfo *> ToArgumentTypeInfoOrErr = 7073 import(E->getArgumentTypeInfo()); 7074 if (!ToArgumentTypeInfoOrErr) 7075 return ToArgumentTypeInfoOrErr.takeError(); 7076 7077 return new (Importer.getToContext()) UnaryExprOrTypeTraitExpr( 7078 E->getKind(), *ToArgumentTypeInfoOrErr, ToType, ToOperatorLoc, 7079 ToRParenLoc); 7080 } 7081 7082 ExpectedExpr ToArgumentExprOrErr = import(E->getArgumentExpr()); 7083 if (!ToArgumentExprOrErr) 7084 return ToArgumentExprOrErr.takeError(); 7085 7086 return new (Importer.getToContext()) UnaryExprOrTypeTraitExpr( 7087 E->getKind(), *ToArgumentExprOrErr, ToType, ToOperatorLoc, ToRParenLoc); 7088 } 7089 7090 ExpectedStmt ASTNodeImporter::VisitBinaryOperator(BinaryOperator *E) { 7091 Error Err = Error::success(); 7092 auto ToLHS = importChecked(Err, E->getLHS()); 7093 auto ToRHS = importChecked(Err, E->getRHS()); 7094 auto ToType = importChecked(Err, E->getType()); 7095 auto ToOperatorLoc = importChecked(Err, E->getOperatorLoc()); 7096 if (Err) 7097 return std::move(Err); 7098 7099 return BinaryOperator::Create( 7100 Importer.getToContext(), ToLHS, ToRHS, E->getOpcode(), ToType, 7101 E->getValueKind(), E->getObjectKind(), ToOperatorLoc, 7102 E->getFPFeatures(Importer.getFromContext().getLangOpts())); 7103 } 7104 7105 ExpectedStmt ASTNodeImporter::VisitConditionalOperator(ConditionalOperator *E) { 7106 Error Err = Error::success(); 7107 auto ToCond = importChecked(Err, E->getCond()); 7108 auto ToQuestionLoc = importChecked(Err, E->getQuestionLoc()); 7109 auto ToLHS = importChecked(Err, E->getLHS()); 7110 auto ToColonLoc = importChecked(Err, E->getColonLoc()); 7111 auto ToRHS = importChecked(Err, E->getRHS()); 7112 auto ToType = importChecked(Err, E->getType()); 7113 if (Err) 7114 return std::move(Err); 7115 7116 return new (Importer.getToContext()) ConditionalOperator( 7117 ToCond, ToQuestionLoc, ToLHS, ToColonLoc, ToRHS, ToType, 7118 E->getValueKind(), E->getObjectKind()); 7119 } 7120 7121 ExpectedStmt 7122 ASTNodeImporter::VisitBinaryConditionalOperator(BinaryConditionalOperator *E) { 7123 Error Err = Error::success(); 7124 auto ToCommon = importChecked(Err, E->getCommon()); 7125 auto ToOpaqueValue = importChecked(Err, E->getOpaqueValue()); 7126 auto ToCond = importChecked(Err, E->getCond()); 7127 auto ToTrueExpr = importChecked(Err, E->getTrueExpr()); 7128 auto ToFalseExpr = importChecked(Err, E->getFalseExpr()); 7129 auto ToQuestionLoc = importChecked(Err, E->getQuestionLoc()); 7130 auto ToColonLoc = importChecked(Err, E->getColonLoc()); 7131 auto ToType = importChecked(Err, E->getType()); 7132 if (Err) 7133 return std::move(Err); 7134 7135 return new (Importer.getToContext()) BinaryConditionalOperator( 7136 ToCommon, ToOpaqueValue, ToCond, ToTrueExpr, ToFalseExpr, 7137 ToQuestionLoc, ToColonLoc, ToType, E->getValueKind(), 7138 E->getObjectKind()); 7139 } 7140 7141 ExpectedStmt ASTNodeImporter::VisitArrayTypeTraitExpr(ArrayTypeTraitExpr *E) { 7142 Error Err = Error::success(); 7143 auto ToBeginLoc = importChecked(Err, E->getBeginLoc()); 7144 auto ToQueriedTypeSourceInfo = 7145 importChecked(Err, E->getQueriedTypeSourceInfo()); 7146 auto ToDimensionExpression = importChecked(Err, E->getDimensionExpression()); 7147 auto ToEndLoc = importChecked(Err, E->getEndLoc()); 7148 auto ToType = importChecked(Err, E->getType()); 7149 if (Err) 7150 return std::move(Err); 7151 7152 return new (Importer.getToContext()) ArrayTypeTraitExpr( 7153 ToBeginLoc, E->getTrait(), ToQueriedTypeSourceInfo, E->getValue(), 7154 ToDimensionExpression, ToEndLoc, ToType); 7155 } 7156 7157 ExpectedStmt ASTNodeImporter::VisitExpressionTraitExpr(ExpressionTraitExpr *E) { 7158 Error Err = Error::success(); 7159 auto ToBeginLoc = importChecked(Err, E->getBeginLoc()); 7160 auto ToQueriedExpression = importChecked(Err, E->getQueriedExpression()); 7161 auto ToEndLoc = importChecked(Err, E->getEndLoc()); 7162 auto ToType = importChecked(Err, E->getType()); 7163 if (Err) 7164 return std::move(Err); 7165 7166 return new (Importer.getToContext()) ExpressionTraitExpr( 7167 ToBeginLoc, E->getTrait(), ToQueriedExpression, E->getValue(), 7168 ToEndLoc, ToType); 7169 } 7170 7171 ExpectedStmt ASTNodeImporter::VisitOpaqueValueExpr(OpaqueValueExpr *E) { 7172 Error Err = Error::success(); 7173 auto ToLocation = importChecked(Err, E->getLocation()); 7174 auto ToType = importChecked(Err, E->getType()); 7175 auto ToSourceExpr = importChecked(Err, E->getSourceExpr()); 7176 if (Err) 7177 return std::move(Err); 7178 7179 return new (Importer.getToContext()) OpaqueValueExpr( 7180 ToLocation, ToType, E->getValueKind(), E->getObjectKind(), ToSourceExpr); 7181 } 7182 7183 ExpectedStmt ASTNodeImporter::VisitArraySubscriptExpr(ArraySubscriptExpr *E) { 7184 Error Err = Error::success(); 7185 auto ToLHS = importChecked(Err, E->getLHS()); 7186 auto ToRHS = importChecked(Err, E->getRHS()); 7187 auto ToType = importChecked(Err, E->getType()); 7188 auto ToRBracketLoc = importChecked(Err, E->getRBracketLoc()); 7189 if (Err) 7190 return std::move(Err); 7191 7192 return new (Importer.getToContext()) ArraySubscriptExpr( 7193 ToLHS, ToRHS, ToType, E->getValueKind(), E->getObjectKind(), 7194 ToRBracketLoc); 7195 } 7196 7197 ExpectedStmt 7198 ASTNodeImporter::VisitCompoundAssignOperator(CompoundAssignOperator *E) { 7199 Error Err = Error::success(); 7200 auto ToLHS = importChecked(Err, E->getLHS()); 7201 auto ToRHS = importChecked(Err, E->getRHS()); 7202 auto ToType = importChecked(Err, E->getType()); 7203 auto ToComputationLHSType = importChecked(Err, E->getComputationLHSType()); 7204 auto ToComputationResultType = 7205 importChecked(Err, E->getComputationResultType()); 7206 auto ToOperatorLoc = importChecked(Err, E->getOperatorLoc()); 7207 if (Err) 7208 return std::move(Err); 7209 7210 return CompoundAssignOperator::Create( 7211 Importer.getToContext(), ToLHS, ToRHS, E->getOpcode(), ToType, 7212 E->getValueKind(), E->getObjectKind(), ToOperatorLoc, 7213 E->getFPFeatures(Importer.getFromContext().getLangOpts()), 7214 ToComputationLHSType, ToComputationResultType); 7215 } 7216 7217 Expected<CXXCastPath> 7218 ASTNodeImporter::ImportCastPath(CastExpr *CE) { 7219 CXXCastPath Path; 7220 for (auto I = CE->path_begin(), E = CE->path_end(); I != E; ++I) { 7221 if (auto SpecOrErr = import(*I)) 7222 Path.push_back(*SpecOrErr); 7223 else 7224 return SpecOrErr.takeError(); 7225 } 7226 return Path; 7227 } 7228 7229 ExpectedStmt ASTNodeImporter::VisitImplicitCastExpr(ImplicitCastExpr *E) { 7230 ExpectedType ToTypeOrErr = import(E->getType()); 7231 if (!ToTypeOrErr) 7232 return ToTypeOrErr.takeError(); 7233 7234 ExpectedExpr ToSubExprOrErr = import(E->getSubExpr()); 7235 if (!ToSubExprOrErr) 7236 return ToSubExprOrErr.takeError(); 7237 7238 Expected<CXXCastPath> ToBasePathOrErr = ImportCastPath(E); 7239 if (!ToBasePathOrErr) 7240 return ToBasePathOrErr.takeError(); 7241 7242 return ImplicitCastExpr::Create( 7243 Importer.getToContext(), *ToTypeOrErr, E->getCastKind(), *ToSubExprOrErr, 7244 &(*ToBasePathOrErr), E->getValueKind(), E->getFPFeatures()); 7245 } 7246 7247 ExpectedStmt ASTNodeImporter::VisitExplicitCastExpr(ExplicitCastExpr *E) { 7248 Error Err = Error::success(); 7249 auto ToType = importChecked(Err, E->getType()); 7250 auto ToSubExpr = importChecked(Err, E->getSubExpr()); 7251 auto ToTypeInfoAsWritten = importChecked(Err, E->getTypeInfoAsWritten()); 7252 if (Err) 7253 return std::move(Err); 7254 7255 Expected<CXXCastPath> ToBasePathOrErr = ImportCastPath(E); 7256 if (!ToBasePathOrErr) 7257 return ToBasePathOrErr.takeError(); 7258 CXXCastPath *ToBasePath = &(*ToBasePathOrErr); 7259 7260 switch (E->getStmtClass()) { 7261 case Stmt::CStyleCastExprClass: { 7262 auto *CCE = cast<CStyleCastExpr>(E); 7263 ExpectedSLoc ToLParenLocOrErr = import(CCE->getLParenLoc()); 7264 if (!ToLParenLocOrErr) 7265 return ToLParenLocOrErr.takeError(); 7266 ExpectedSLoc ToRParenLocOrErr = import(CCE->getRParenLoc()); 7267 if (!ToRParenLocOrErr) 7268 return ToRParenLocOrErr.takeError(); 7269 return CStyleCastExpr::Create( 7270 Importer.getToContext(), ToType, E->getValueKind(), E->getCastKind(), 7271 ToSubExpr, ToBasePath, CCE->getFPFeatures(), ToTypeInfoAsWritten, 7272 *ToLParenLocOrErr, *ToRParenLocOrErr); 7273 } 7274 7275 case Stmt::CXXFunctionalCastExprClass: { 7276 auto *FCE = cast<CXXFunctionalCastExpr>(E); 7277 ExpectedSLoc ToLParenLocOrErr = import(FCE->getLParenLoc()); 7278 if (!ToLParenLocOrErr) 7279 return ToLParenLocOrErr.takeError(); 7280 ExpectedSLoc ToRParenLocOrErr = import(FCE->getRParenLoc()); 7281 if (!ToRParenLocOrErr) 7282 return ToRParenLocOrErr.takeError(); 7283 return CXXFunctionalCastExpr::Create( 7284 Importer.getToContext(), ToType, E->getValueKind(), ToTypeInfoAsWritten, 7285 E->getCastKind(), ToSubExpr, ToBasePath, FCE->getFPFeatures(), 7286 *ToLParenLocOrErr, *ToRParenLocOrErr); 7287 } 7288 7289 case Stmt::ObjCBridgedCastExprClass: { 7290 auto *OCE = cast<ObjCBridgedCastExpr>(E); 7291 ExpectedSLoc ToLParenLocOrErr = import(OCE->getLParenLoc()); 7292 if (!ToLParenLocOrErr) 7293 return ToLParenLocOrErr.takeError(); 7294 ExpectedSLoc ToBridgeKeywordLocOrErr = import(OCE->getBridgeKeywordLoc()); 7295 if (!ToBridgeKeywordLocOrErr) 7296 return ToBridgeKeywordLocOrErr.takeError(); 7297 return new (Importer.getToContext()) ObjCBridgedCastExpr( 7298 *ToLParenLocOrErr, OCE->getBridgeKind(), E->getCastKind(), 7299 *ToBridgeKeywordLocOrErr, ToTypeInfoAsWritten, ToSubExpr); 7300 } 7301 default: 7302 llvm_unreachable("Cast expression of unsupported type!"); 7303 return make_error<ImportError>(ImportError::UnsupportedConstruct); 7304 } 7305 } 7306 7307 ExpectedStmt ASTNodeImporter::VisitOffsetOfExpr(OffsetOfExpr *E) { 7308 SmallVector<OffsetOfNode, 4> ToNodes; 7309 for (int I = 0, N = E->getNumComponents(); I < N; ++I) { 7310 const OffsetOfNode &FromNode = E->getComponent(I); 7311 7312 SourceLocation ToBeginLoc, ToEndLoc; 7313 7314 if (FromNode.getKind() != OffsetOfNode::Base) { 7315 Error Err = Error::success(); 7316 ToBeginLoc = importChecked(Err, FromNode.getBeginLoc()); 7317 ToEndLoc = importChecked(Err, FromNode.getEndLoc()); 7318 if (Err) 7319 return std::move(Err); 7320 } 7321 7322 switch (FromNode.getKind()) { 7323 case OffsetOfNode::Array: 7324 ToNodes.push_back( 7325 OffsetOfNode(ToBeginLoc, FromNode.getArrayExprIndex(), ToEndLoc)); 7326 break; 7327 case OffsetOfNode::Base: { 7328 auto ToBSOrErr = import(FromNode.getBase()); 7329 if (!ToBSOrErr) 7330 return ToBSOrErr.takeError(); 7331 ToNodes.push_back(OffsetOfNode(*ToBSOrErr)); 7332 break; 7333 } 7334 case OffsetOfNode::Field: { 7335 auto ToFieldOrErr = import(FromNode.getField()); 7336 if (!ToFieldOrErr) 7337 return ToFieldOrErr.takeError(); 7338 ToNodes.push_back(OffsetOfNode(ToBeginLoc, *ToFieldOrErr, ToEndLoc)); 7339 break; 7340 } 7341 case OffsetOfNode::Identifier: { 7342 IdentifierInfo *ToII = Importer.Import(FromNode.getFieldName()); 7343 ToNodes.push_back(OffsetOfNode(ToBeginLoc, ToII, ToEndLoc)); 7344 break; 7345 } 7346 } 7347 } 7348 7349 SmallVector<Expr *, 4> ToExprs(E->getNumExpressions()); 7350 for (int I = 0, N = E->getNumExpressions(); I < N; ++I) { 7351 ExpectedExpr ToIndexExprOrErr = import(E->getIndexExpr(I)); 7352 if (!ToIndexExprOrErr) 7353 return ToIndexExprOrErr.takeError(); 7354 ToExprs[I] = *ToIndexExprOrErr; 7355 } 7356 7357 Error Err = Error::success(); 7358 auto ToType = importChecked(Err, E->getType()); 7359 auto ToTypeSourceInfo = importChecked(Err, E->getTypeSourceInfo()); 7360 auto ToOperatorLoc = importChecked(Err, E->getOperatorLoc()); 7361 auto ToRParenLoc = importChecked(Err, E->getRParenLoc()); 7362 if (Err) 7363 return std::move(Err); 7364 7365 return OffsetOfExpr::Create( 7366 Importer.getToContext(), ToType, ToOperatorLoc, ToTypeSourceInfo, ToNodes, 7367 ToExprs, ToRParenLoc); 7368 } 7369 7370 ExpectedStmt ASTNodeImporter::VisitCXXNoexceptExpr(CXXNoexceptExpr *E) { 7371 Error Err = Error::success(); 7372 auto ToType = importChecked(Err, E->getType()); 7373 auto ToOperand = importChecked(Err, E->getOperand()); 7374 auto ToBeginLoc = importChecked(Err, E->getBeginLoc()); 7375 auto ToEndLoc = importChecked(Err, E->getEndLoc()); 7376 if (Err) 7377 return std::move(Err); 7378 7379 CanThrowResult ToCanThrow; 7380 if (E->isValueDependent()) 7381 ToCanThrow = CT_Dependent; 7382 else 7383 ToCanThrow = E->getValue() ? CT_Can : CT_Cannot; 7384 7385 return new (Importer.getToContext()) CXXNoexceptExpr( 7386 ToType, ToOperand, ToCanThrow, ToBeginLoc, ToEndLoc); 7387 } 7388 7389 ExpectedStmt ASTNodeImporter::VisitCXXThrowExpr(CXXThrowExpr *E) { 7390 Error Err = Error::success(); 7391 auto ToSubExpr = importChecked(Err, E->getSubExpr()); 7392 auto ToType = importChecked(Err, E->getType()); 7393 auto ToThrowLoc = importChecked(Err, E->getThrowLoc()); 7394 if (Err) 7395 return std::move(Err); 7396 7397 return new (Importer.getToContext()) CXXThrowExpr( 7398 ToSubExpr, ToType, ToThrowLoc, E->isThrownVariableInScope()); 7399 } 7400 7401 ExpectedStmt ASTNodeImporter::VisitCXXDefaultArgExpr(CXXDefaultArgExpr *E) { 7402 ExpectedSLoc ToUsedLocOrErr = import(E->getUsedLocation()); 7403 if (!ToUsedLocOrErr) 7404 return ToUsedLocOrErr.takeError(); 7405 7406 auto ToParamOrErr = import(E->getParam()); 7407 if (!ToParamOrErr) 7408 return ToParamOrErr.takeError(); 7409 7410 auto UsedContextOrErr = Importer.ImportContext(E->getUsedContext()); 7411 if (!UsedContextOrErr) 7412 return UsedContextOrErr.takeError(); 7413 7414 // Import the default arg if it was not imported yet. 7415 // This is needed because it can happen that during the import of the 7416 // default expression (from VisitParmVarDecl) the same ParmVarDecl is 7417 // encountered here. The default argument for a ParmVarDecl is set in the 7418 // ParmVarDecl only after it is imported (set in VisitParmVarDecl if not here, 7419 // see VisitParmVarDecl). 7420 ParmVarDecl *ToParam = *ToParamOrErr; 7421 if (!ToParam->getDefaultArg()) { 7422 Optional<ParmVarDecl *> FromParam = Importer.getImportedFromDecl(ToParam); 7423 assert(FromParam && "ParmVarDecl was not imported?"); 7424 7425 if (Error Err = ImportDefaultArgOfParmVarDecl(*FromParam, ToParam)) 7426 return std::move(Err); 7427 } 7428 7429 return CXXDefaultArgExpr::Create(Importer.getToContext(), *ToUsedLocOrErr, 7430 *ToParamOrErr, *UsedContextOrErr); 7431 } 7432 7433 ExpectedStmt 7434 ASTNodeImporter::VisitCXXScalarValueInitExpr(CXXScalarValueInitExpr *E) { 7435 Error Err = Error::success(); 7436 auto ToType = importChecked(Err, E->getType()); 7437 auto ToTypeSourceInfo = importChecked(Err, E->getTypeSourceInfo()); 7438 auto ToRParenLoc = importChecked(Err, E->getRParenLoc()); 7439 if (Err) 7440 return std::move(Err); 7441 7442 return new (Importer.getToContext()) CXXScalarValueInitExpr( 7443 ToType, ToTypeSourceInfo, ToRParenLoc); 7444 } 7445 7446 ExpectedStmt 7447 ASTNodeImporter::VisitCXXBindTemporaryExpr(CXXBindTemporaryExpr *E) { 7448 ExpectedExpr ToSubExprOrErr = import(E->getSubExpr()); 7449 if (!ToSubExprOrErr) 7450 return ToSubExprOrErr.takeError(); 7451 7452 auto ToDtorOrErr = import(E->getTemporary()->getDestructor()); 7453 if (!ToDtorOrErr) 7454 return ToDtorOrErr.takeError(); 7455 7456 ASTContext &ToCtx = Importer.getToContext(); 7457 CXXTemporary *Temp = CXXTemporary::Create(ToCtx, *ToDtorOrErr); 7458 return CXXBindTemporaryExpr::Create(ToCtx, Temp, *ToSubExprOrErr); 7459 } 7460 7461 ExpectedStmt 7462 7463 ASTNodeImporter::VisitCXXTemporaryObjectExpr(CXXTemporaryObjectExpr *E) { 7464 Error Err = Error::success(); 7465 auto ToConstructor = importChecked(Err, E->getConstructor()); 7466 auto ToType = importChecked(Err, E->getType()); 7467 auto ToTypeSourceInfo = importChecked(Err, E->getTypeSourceInfo()); 7468 auto ToParenOrBraceRange = importChecked(Err, E->getParenOrBraceRange()); 7469 if (Err) 7470 return std::move(Err); 7471 7472 SmallVector<Expr *, 8> ToArgs(E->getNumArgs()); 7473 if (Error Err = ImportContainerChecked(E->arguments(), ToArgs)) 7474 return std::move(Err); 7475 7476 return CXXTemporaryObjectExpr::Create( 7477 Importer.getToContext(), ToConstructor, ToType, ToTypeSourceInfo, ToArgs, 7478 ToParenOrBraceRange, E->hadMultipleCandidates(), 7479 E->isListInitialization(), E->isStdInitListInitialization(), 7480 E->requiresZeroInitialization()); 7481 } 7482 7483 ExpectedDecl ASTNodeImporter::VisitLifetimeExtendedTemporaryDecl( 7484 LifetimeExtendedTemporaryDecl *D) { 7485 DeclContext *DC, *LexicalDC; 7486 if (Error Err = ImportDeclContext(D, DC, LexicalDC)) 7487 return std::move(Err); 7488 7489 Error Err = Error::success(); 7490 auto Temporary = importChecked(Err, D->getTemporaryExpr()); 7491 auto ExtendingDecl = importChecked(Err, D->getExtendingDecl()); 7492 if (Err) 7493 return std::move(Err); 7494 // FIXME: Should ManglingNumber get numbers associated with 'to' context? 7495 7496 LifetimeExtendedTemporaryDecl *To; 7497 if (GetImportedOrCreateDecl(To, D, Temporary, ExtendingDecl, 7498 D->getManglingNumber())) 7499 return To; 7500 7501 To->setLexicalDeclContext(LexicalDC); 7502 LexicalDC->addDeclInternal(To); 7503 return To; 7504 } 7505 7506 ExpectedStmt 7507 ASTNodeImporter::VisitMaterializeTemporaryExpr(MaterializeTemporaryExpr *E) { 7508 Error Err = Error::success(); 7509 auto ToType = importChecked(Err, E->getType()); 7510 Expr *ToTemporaryExpr = importChecked( 7511 Err, E->getLifetimeExtendedTemporaryDecl() ? nullptr : E->getSubExpr()); 7512 auto ToMaterializedDecl = 7513 importChecked(Err, E->getLifetimeExtendedTemporaryDecl()); 7514 if (Err) 7515 return std::move(Err); 7516 7517 if (!ToTemporaryExpr) 7518 ToTemporaryExpr = cast<Expr>(ToMaterializedDecl->getTemporaryExpr()); 7519 7520 auto *ToMTE = new (Importer.getToContext()) MaterializeTemporaryExpr( 7521 ToType, ToTemporaryExpr, E->isBoundToLvalueReference(), 7522 ToMaterializedDecl); 7523 7524 return ToMTE; 7525 } 7526 7527 ExpectedStmt ASTNodeImporter::VisitPackExpansionExpr(PackExpansionExpr *E) { 7528 Error Err = Error::success(); 7529 auto ToType = importChecked(Err, E->getType()); 7530 auto ToPattern = importChecked(Err, E->getPattern()); 7531 auto ToEllipsisLoc = importChecked(Err, E->getEllipsisLoc()); 7532 if (Err) 7533 return std::move(Err); 7534 7535 return new (Importer.getToContext()) PackExpansionExpr( 7536 ToType, ToPattern, ToEllipsisLoc, E->getNumExpansions()); 7537 } 7538 7539 ExpectedStmt ASTNodeImporter::VisitSizeOfPackExpr(SizeOfPackExpr *E) { 7540 Error Err = Error::success(); 7541 auto ToOperatorLoc = importChecked(Err, E->getOperatorLoc()); 7542 auto ToPack = importChecked(Err, E->getPack()); 7543 auto ToPackLoc = importChecked(Err, E->getPackLoc()); 7544 auto ToRParenLoc = importChecked(Err, E->getRParenLoc()); 7545 if (Err) 7546 return std::move(Err); 7547 7548 Optional<unsigned> Length; 7549 if (!E->isValueDependent()) 7550 Length = E->getPackLength(); 7551 7552 SmallVector<TemplateArgument, 8> ToPartialArguments; 7553 if (E->isPartiallySubstituted()) { 7554 if (Error Err = ImportTemplateArguments( 7555 E->getPartialArguments().data(), 7556 E->getPartialArguments().size(), 7557 ToPartialArguments)) 7558 return std::move(Err); 7559 } 7560 7561 return SizeOfPackExpr::Create( 7562 Importer.getToContext(), ToOperatorLoc, ToPack, ToPackLoc, ToRParenLoc, 7563 Length, ToPartialArguments); 7564 } 7565 7566 7567 ExpectedStmt ASTNodeImporter::VisitCXXNewExpr(CXXNewExpr *E) { 7568 Error Err = Error::success(); 7569 auto ToOperatorNew = importChecked(Err, E->getOperatorNew()); 7570 auto ToOperatorDelete = importChecked(Err, E->getOperatorDelete()); 7571 auto ToTypeIdParens = importChecked(Err, E->getTypeIdParens()); 7572 auto ToArraySize = importChecked(Err, E->getArraySize()); 7573 auto ToInitializer = importChecked(Err, E->getInitializer()); 7574 auto ToType = importChecked(Err, E->getType()); 7575 auto ToAllocatedTypeSourceInfo = 7576 importChecked(Err, E->getAllocatedTypeSourceInfo()); 7577 auto ToSourceRange = importChecked(Err, E->getSourceRange()); 7578 auto ToDirectInitRange = importChecked(Err, E->getDirectInitRange()); 7579 if (Err) 7580 return std::move(Err); 7581 7582 SmallVector<Expr *, 4> ToPlacementArgs(E->getNumPlacementArgs()); 7583 if (Error Err = 7584 ImportContainerChecked(E->placement_arguments(), ToPlacementArgs)) 7585 return std::move(Err); 7586 7587 return CXXNewExpr::Create( 7588 Importer.getToContext(), E->isGlobalNew(), ToOperatorNew, 7589 ToOperatorDelete, E->passAlignment(), E->doesUsualArrayDeleteWantSize(), 7590 ToPlacementArgs, ToTypeIdParens, ToArraySize, E->getInitializationStyle(), 7591 ToInitializer, ToType, ToAllocatedTypeSourceInfo, ToSourceRange, 7592 ToDirectInitRange); 7593 } 7594 7595 ExpectedStmt ASTNodeImporter::VisitCXXDeleteExpr(CXXDeleteExpr *E) { 7596 Error Err = Error::success(); 7597 auto ToType = importChecked(Err, E->getType()); 7598 auto ToOperatorDelete = importChecked(Err, E->getOperatorDelete()); 7599 auto ToArgument = importChecked(Err, E->getArgument()); 7600 auto ToBeginLoc = importChecked(Err, E->getBeginLoc()); 7601 if (Err) 7602 return std::move(Err); 7603 7604 return new (Importer.getToContext()) CXXDeleteExpr( 7605 ToType, E->isGlobalDelete(), E->isArrayForm(), E->isArrayFormAsWritten(), 7606 E->doesUsualArrayDeleteWantSize(), ToOperatorDelete, ToArgument, 7607 ToBeginLoc); 7608 } 7609 7610 ExpectedStmt ASTNodeImporter::VisitCXXConstructExpr(CXXConstructExpr *E) { 7611 Error Err = Error::success(); 7612 auto ToType = importChecked(Err, E->getType()); 7613 auto ToLocation = importChecked(Err, E->getLocation()); 7614 auto ToConstructor = importChecked(Err, E->getConstructor()); 7615 auto ToParenOrBraceRange = importChecked(Err, E->getParenOrBraceRange()); 7616 if (Err) 7617 return std::move(Err); 7618 7619 SmallVector<Expr *, 6> ToArgs(E->getNumArgs()); 7620 if (Error Err = ImportContainerChecked(E->arguments(), ToArgs)) 7621 return std::move(Err); 7622 7623 return CXXConstructExpr::Create( 7624 Importer.getToContext(), ToType, ToLocation, ToConstructor, 7625 E->isElidable(), ToArgs, E->hadMultipleCandidates(), 7626 E->isListInitialization(), E->isStdInitListInitialization(), 7627 E->requiresZeroInitialization(), E->getConstructionKind(), 7628 ToParenOrBraceRange); 7629 } 7630 7631 ExpectedStmt ASTNodeImporter::VisitExprWithCleanups(ExprWithCleanups *E) { 7632 ExpectedExpr ToSubExprOrErr = import(E->getSubExpr()); 7633 if (!ToSubExprOrErr) 7634 return ToSubExprOrErr.takeError(); 7635 7636 SmallVector<ExprWithCleanups::CleanupObject, 8> ToObjects(E->getNumObjects()); 7637 if (Error Err = ImportContainerChecked(E->getObjects(), ToObjects)) 7638 return std::move(Err); 7639 7640 return ExprWithCleanups::Create( 7641 Importer.getToContext(), *ToSubExprOrErr, E->cleanupsHaveSideEffects(), 7642 ToObjects); 7643 } 7644 7645 ExpectedStmt ASTNodeImporter::VisitCXXMemberCallExpr(CXXMemberCallExpr *E) { 7646 Error Err = Error::success(); 7647 auto ToCallee = importChecked(Err, E->getCallee()); 7648 auto ToType = importChecked(Err, E->getType()); 7649 auto ToRParenLoc = importChecked(Err, E->getRParenLoc()); 7650 if (Err) 7651 return std::move(Err); 7652 7653 SmallVector<Expr *, 4> ToArgs(E->getNumArgs()); 7654 if (Error Err = ImportContainerChecked(E->arguments(), ToArgs)) 7655 return std::move(Err); 7656 7657 return CXXMemberCallExpr::Create(Importer.getToContext(), ToCallee, ToArgs, 7658 ToType, E->getValueKind(), ToRParenLoc, 7659 E->getFPFeatures()); 7660 } 7661 7662 ExpectedStmt ASTNodeImporter::VisitCXXThisExpr(CXXThisExpr *E) { 7663 ExpectedType ToTypeOrErr = import(E->getType()); 7664 if (!ToTypeOrErr) 7665 return ToTypeOrErr.takeError(); 7666 7667 ExpectedSLoc ToLocationOrErr = import(E->getLocation()); 7668 if (!ToLocationOrErr) 7669 return ToLocationOrErr.takeError(); 7670 7671 return new (Importer.getToContext()) CXXThisExpr( 7672 *ToLocationOrErr, *ToTypeOrErr, E->isImplicit()); 7673 } 7674 7675 ExpectedStmt ASTNodeImporter::VisitCXXBoolLiteralExpr(CXXBoolLiteralExpr *E) { 7676 ExpectedType ToTypeOrErr = import(E->getType()); 7677 if (!ToTypeOrErr) 7678 return ToTypeOrErr.takeError(); 7679 7680 ExpectedSLoc ToLocationOrErr = import(E->getLocation()); 7681 if (!ToLocationOrErr) 7682 return ToLocationOrErr.takeError(); 7683 7684 return new (Importer.getToContext()) CXXBoolLiteralExpr( 7685 E->getValue(), *ToTypeOrErr, *ToLocationOrErr); 7686 } 7687 7688 ExpectedStmt ASTNodeImporter::VisitMemberExpr(MemberExpr *E) { 7689 Error Err = Error::success(); 7690 auto ToBase = importChecked(Err, E->getBase()); 7691 auto ToOperatorLoc = importChecked(Err, E->getOperatorLoc()); 7692 auto ToQualifierLoc = importChecked(Err, E->getQualifierLoc()); 7693 auto ToTemplateKeywordLoc = importChecked(Err, E->getTemplateKeywordLoc()); 7694 auto ToMemberDecl = importChecked(Err, E->getMemberDecl()); 7695 auto ToType = importChecked(Err, E->getType()); 7696 auto ToDecl = importChecked(Err, E->getFoundDecl().getDecl()); 7697 auto ToName = importChecked(Err, E->getMemberNameInfo().getName()); 7698 auto ToLoc = importChecked(Err, E->getMemberNameInfo().getLoc()); 7699 if (Err) 7700 return std::move(Err); 7701 7702 DeclAccessPair ToFoundDecl = 7703 DeclAccessPair::make(ToDecl, E->getFoundDecl().getAccess()); 7704 7705 DeclarationNameInfo ToMemberNameInfo(ToName, ToLoc); 7706 7707 TemplateArgumentListInfo ToTAInfo, *ResInfo = nullptr; 7708 if (E->hasExplicitTemplateArgs()) { 7709 if (Error Err = 7710 ImportTemplateArgumentListInfo(E->getLAngleLoc(), E->getRAngleLoc(), 7711 E->template_arguments(), ToTAInfo)) 7712 return std::move(Err); 7713 ResInfo = &ToTAInfo; 7714 } 7715 7716 return MemberExpr::Create(Importer.getToContext(), ToBase, E->isArrow(), 7717 ToOperatorLoc, ToQualifierLoc, ToTemplateKeywordLoc, 7718 ToMemberDecl, ToFoundDecl, ToMemberNameInfo, 7719 ResInfo, ToType, E->getValueKind(), 7720 E->getObjectKind(), E->isNonOdrUse()); 7721 } 7722 7723 ExpectedStmt 7724 ASTNodeImporter::VisitCXXPseudoDestructorExpr(CXXPseudoDestructorExpr *E) { 7725 Error Err = Error::success(); 7726 auto ToBase = importChecked(Err, E->getBase()); 7727 auto ToOperatorLoc = importChecked(Err, E->getOperatorLoc()); 7728 auto ToQualifierLoc = importChecked(Err, E->getQualifierLoc()); 7729 auto ToScopeTypeInfo = importChecked(Err, E->getScopeTypeInfo()); 7730 auto ToColonColonLoc = importChecked(Err, E->getColonColonLoc()); 7731 auto ToTildeLoc = importChecked(Err, E->getTildeLoc()); 7732 if (Err) 7733 return std::move(Err); 7734 7735 PseudoDestructorTypeStorage Storage; 7736 if (IdentifierInfo *FromII = E->getDestroyedTypeIdentifier()) { 7737 IdentifierInfo *ToII = Importer.Import(FromII); 7738 ExpectedSLoc ToDestroyedTypeLocOrErr = import(E->getDestroyedTypeLoc()); 7739 if (!ToDestroyedTypeLocOrErr) 7740 return ToDestroyedTypeLocOrErr.takeError(); 7741 Storage = PseudoDestructorTypeStorage(ToII, *ToDestroyedTypeLocOrErr); 7742 } else { 7743 if (auto ToTIOrErr = import(E->getDestroyedTypeInfo())) 7744 Storage = PseudoDestructorTypeStorage(*ToTIOrErr); 7745 else 7746 return ToTIOrErr.takeError(); 7747 } 7748 7749 return new (Importer.getToContext()) CXXPseudoDestructorExpr( 7750 Importer.getToContext(), ToBase, E->isArrow(), ToOperatorLoc, 7751 ToQualifierLoc, ToScopeTypeInfo, ToColonColonLoc, ToTildeLoc, Storage); 7752 } 7753 7754 ExpectedStmt ASTNodeImporter::VisitCXXDependentScopeMemberExpr( 7755 CXXDependentScopeMemberExpr *E) { 7756 Error Err = Error::success(); 7757 auto ToType = importChecked(Err, E->getType()); 7758 auto ToOperatorLoc = importChecked(Err, E->getOperatorLoc()); 7759 auto ToQualifierLoc = importChecked(Err, E->getQualifierLoc()); 7760 auto ToTemplateKeywordLoc = importChecked(Err, E->getTemplateKeywordLoc()); 7761 auto ToFirstQualifierFoundInScope = 7762 importChecked(Err, E->getFirstQualifierFoundInScope()); 7763 if (Err) 7764 return std::move(Err); 7765 7766 Expr *ToBase = nullptr; 7767 if (!E->isImplicitAccess()) { 7768 if (ExpectedExpr ToBaseOrErr = import(E->getBase())) 7769 ToBase = *ToBaseOrErr; 7770 else 7771 return ToBaseOrErr.takeError(); 7772 } 7773 7774 TemplateArgumentListInfo ToTAInfo, *ResInfo = nullptr; 7775 7776 if (E->hasExplicitTemplateArgs()) { 7777 if (Error Err = 7778 ImportTemplateArgumentListInfo(E->getLAngleLoc(), E->getRAngleLoc(), 7779 E->template_arguments(), ToTAInfo)) 7780 return std::move(Err); 7781 ResInfo = &ToTAInfo; 7782 } 7783 auto ToMember = importChecked(Err, E->getMember()); 7784 auto ToMemberLoc = importChecked(Err, E->getMemberLoc()); 7785 if (Err) 7786 return std::move(Err); 7787 DeclarationNameInfo ToMemberNameInfo(ToMember, ToMemberLoc); 7788 7789 // Import additional name location/type info. 7790 if (Error Err = 7791 ImportDeclarationNameLoc(E->getMemberNameInfo(), ToMemberNameInfo)) 7792 return std::move(Err); 7793 7794 return CXXDependentScopeMemberExpr::Create( 7795 Importer.getToContext(), ToBase, ToType, E->isArrow(), ToOperatorLoc, 7796 ToQualifierLoc, ToTemplateKeywordLoc, ToFirstQualifierFoundInScope, 7797 ToMemberNameInfo, ResInfo); 7798 } 7799 7800 ExpectedStmt 7801 ASTNodeImporter::VisitDependentScopeDeclRefExpr(DependentScopeDeclRefExpr *E) { 7802 Error Err = Error::success(); 7803 auto ToQualifierLoc = importChecked(Err, E->getQualifierLoc()); 7804 auto ToTemplateKeywordLoc = importChecked(Err, E->getTemplateKeywordLoc()); 7805 auto ToDeclName = importChecked(Err, E->getDeclName()); 7806 auto ToNameLoc = importChecked(Err, E->getNameInfo().getLoc()); 7807 auto ToLAngleLoc = importChecked(Err, E->getLAngleLoc()); 7808 auto ToRAngleLoc = importChecked(Err, E->getRAngleLoc()); 7809 if (Err) 7810 return std::move(Err); 7811 7812 DeclarationNameInfo ToNameInfo(ToDeclName, ToNameLoc); 7813 if (Error Err = ImportDeclarationNameLoc(E->getNameInfo(), ToNameInfo)) 7814 return std::move(Err); 7815 7816 TemplateArgumentListInfo ToTAInfo(ToLAngleLoc, ToRAngleLoc); 7817 TemplateArgumentListInfo *ResInfo = nullptr; 7818 if (E->hasExplicitTemplateArgs()) { 7819 if (Error Err = 7820 ImportTemplateArgumentListInfo(E->template_arguments(), ToTAInfo)) 7821 return std::move(Err); 7822 ResInfo = &ToTAInfo; 7823 } 7824 7825 return DependentScopeDeclRefExpr::Create( 7826 Importer.getToContext(), ToQualifierLoc, ToTemplateKeywordLoc, 7827 ToNameInfo, ResInfo); 7828 } 7829 7830 ExpectedStmt ASTNodeImporter::VisitCXXUnresolvedConstructExpr( 7831 CXXUnresolvedConstructExpr *E) { 7832 Error Err = Error::success(); 7833 auto ToLParenLoc = importChecked(Err, E->getLParenLoc()); 7834 auto ToRParenLoc = importChecked(Err, E->getRParenLoc()); 7835 auto ToType = importChecked(Err, E->getType()); 7836 auto ToTypeSourceInfo = importChecked(Err, E->getTypeSourceInfo()); 7837 if (Err) 7838 return std::move(Err); 7839 7840 SmallVector<Expr *, 8> ToArgs(E->getNumArgs()); 7841 if (Error Err = 7842 ImportArrayChecked(E->arg_begin(), E->arg_end(), ToArgs.begin())) 7843 return std::move(Err); 7844 7845 return CXXUnresolvedConstructExpr::Create( 7846 Importer.getToContext(), ToType, ToTypeSourceInfo, ToLParenLoc, 7847 llvm::makeArrayRef(ToArgs), ToRParenLoc); 7848 } 7849 7850 ExpectedStmt 7851 ASTNodeImporter::VisitUnresolvedLookupExpr(UnresolvedLookupExpr *E) { 7852 Expected<CXXRecordDecl *> ToNamingClassOrErr = import(E->getNamingClass()); 7853 if (!ToNamingClassOrErr) 7854 return ToNamingClassOrErr.takeError(); 7855 7856 auto ToQualifierLocOrErr = import(E->getQualifierLoc()); 7857 if (!ToQualifierLocOrErr) 7858 return ToQualifierLocOrErr.takeError(); 7859 7860 Error Err = Error::success(); 7861 auto ToName = importChecked(Err, E->getName()); 7862 auto ToNameLoc = importChecked(Err, E->getNameLoc()); 7863 if (Err) 7864 return std::move(Err); 7865 DeclarationNameInfo ToNameInfo(ToName, ToNameLoc); 7866 7867 // Import additional name location/type info. 7868 if (Error Err = ImportDeclarationNameLoc(E->getNameInfo(), ToNameInfo)) 7869 return std::move(Err); 7870 7871 UnresolvedSet<8> ToDecls; 7872 for (auto *D : E->decls()) 7873 if (auto ToDOrErr = import(D)) 7874 ToDecls.addDecl(cast<NamedDecl>(*ToDOrErr)); 7875 else 7876 return ToDOrErr.takeError(); 7877 7878 if (E->hasExplicitTemplateArgs()) { 7879 TemplateArgumentListInfo ToTAInfo; 7880 if (Error Err = ImportTemplateArgumentListInfo( 7881 E->getLAngleLoc(), E->getRAngleLoc(), E->template_arguments(), 7882 ToTAInfo)) 7883 return std::move(Err); 7884 7885 ExpectedSLoc ToTemplateKeywordLocOrErr = import(E->getTemplateKeywordLoc()); 7886 if (!ToTemplateKeywordLocOrErr) 7887 return ToTemplateKeywordLocOrErr.takeError(); 7888 7889 return UnresolvedLookupExpr::Create( 7890 Importer.getToContext(), *ToNamingClassOrErr, *ToQualifierLocOrErr, 7891 *ToTemplateKeywordLocOrErr, ToNameInfo, E->requiresADL(), &ToTAInfo, 7892 ToDecls.begin(), ToDecls.end()); 7893 } 7894 7895 return UnresolvedLookupExpr::Create( 7896 Importer.getToContext(), *ToNamingClassOrErr, *ToQualifierLocOrErr, 7897 ToNameInfo, E->requiresADL(), E->isOverloaded(), ToDecls.begin(), 7898 ToDecls.end()); 7899 } 7900 7901 ExpectedStmt 7902 ASTNodeImporter::VisitUnresolvedMemberExpr(UnresolvedMemberExpr *E) { 7903 Error Err = Error::success(); 7904 auto ToType = importChecked(Err, E->getType()); 7905 auto ToOperatorLoc = importChecked(Err, E->getOperatorLoc()); 7906 auto ToQualifierLoc = importChecked(Err, E->getQualifierLoc()); 7907 auto ToTemplateKeywordLoc = importChecked(Err, E->getTemplateKeywordLoc()); 7908 auto ToName = importChecked(Err, E->getName()); 7909 auto ToNameLoc = importChecked(Err, E->getNameLoc()); 7910 if (Err) 7911 return std::move(Err); 7912 7913 DeclarationNameInfo ToNameInfo(ToName, ToNameLoc); 7914 // Import additional name location/type info. 7915 if (Error Err = ImportDeclarationNameLoc(E->getNameInfo(), ToNameInfo)) 7916 return std::move(Err); 7917 7918 UnresolvedSet<8> ToDecls; 7919 for (Decl *D : E->decls()) 7920 if (auto ToDOrErr = import(D)) 7921 ToDecls.addDecl(cast<NamedDecl>(*ToDOrErr)); 7922 else 7923 return ToDOrErr.takeError(); 7924 7925 TemplateArgumentListInfo ToTAInfo; 7926 TemplateArgumentListInfo *ResInfo = nullptr; 7927 if (E->hasExplicitTemplateArgs()) { 7928 TemplateArgumentListInfo FromTAInfo; 7929 E->copyTemplateArgumentsInto(FromTAInfo); 7930 if (Error Err = ImportTemplateArgumentListInfo(FromTAInfo, ToTAInfo)) 7931 return std::move(Err); 7932 ResInfo = &ToTAInfo; 7933 } 7934 7935 Expr *ToBase = nullptr; 7936 if (!E->isImplicitAccess()) { 7937 if (ExpectedExpr ToBaseOrErr = import(E->getBase())) 7938 ToBase = *ToBaseOrErr; 7939 else 7940 return ToBaseOrErr.takeError(); 7941 } 7942 7943 return UnresolvedMemberExpr::Create( 7944 Importer.getToContext(), E->hasUnresolvedUsing(), ToBase, ToType, 7945 E->isArrow(), ToOperatorLoc, ToQualifierLoc, ToTemplateKeywordLoc, 7946 ToNameInfo, ResInfo, ToDecls.begin(), ToDecls.end()); 7947 } 7948 7949 ExpectedStmt ASTNodeImporter::VisitCallExpr(CallExpr *E) { 7950 Error Err = Error::success(); 7951 auto ToCallee = importChecked(Err, E->getCallee()); 7952 auto ToType = importChecked(Err, E->getType()); 7953 auto ToRParenLoc = importChecked(Err, E->getRParenLoc()); 7954 if (Err) 7955 return std::move(Err); 7956 7957 unsigned NumArgs = E->getNumArgs(); 7958 llvm::SmallVector<Expr *, 2> ToArgs(NumArgs); 7959 if (Error Err = ImportContainerChecked(E->arguments(), ToArgs)) 7960 return std::move(Err); 7961 7962 if (const auto *OCE = dyn_cast<CXXOperatorCallExpr>(E)) { 7963 return CXXOperatorCallExpr::Create( 7964 Importer.getToContext(), OCE->getOperator(), ToCallee, ToArgs, ToType, 7965 OCE->getValueKind(), ToRParenLoc, OCE->getFPFeatures(), 7966 OCE->getADLCallKind()); 7967 } 7968 7969 return CallExpr::Create(Importer.getToContext(), ToCallee, ToArgs, ToType, 7970 E->getValueKind(), ToRParenLoc, E->getFPFeatures(), 7971 /*MinNumArgs=*/0, E->getADLCallKind()); 7972 } 7973 7974 ExpectedStmt ASTNodeImporter::VisitLambdaExpr(LambdaExpr *E) { 7975 CXXRecordDecl *FromClass = E->getLambdaClass(); 7976 auto ToClassOrErr = import(FromClass); 7977 if (!ToClassOrErr) 7978 return ToClassOrErr.takeError(); 7979 CXXRecordDecl *ToClass = *ToClassOrErr; 7980 7981 auto ToCallOpOrErr = import(E->getCallOperator()); 7982 if (!ToCallOpOrErr) 7983 return ToCallOpOrErr.takeError(); 7984 7985 SmallVector<Expr *, 8> ToCaptureInits(E->capture_size()); 7986 if (Error Err = ImportContainerChecked(E->capture_inits(), ToCaptureInits)) 7987 return std::move(Err); 7988 7989 Error Err = Error::success(); 7990 auto ToIntroducerRange = importChecked(Err, E->getIntroducerRange()); 7991 auto ToCaptureDefaultLoc = importChecked(Err, E->getCaptureDefaultLoc()); 7992 auto ToEndLoc = importChecked(Err, E->getEndLoc()); 7993 if (Err) 7994 return std::move(Err); 7995 7996 return LambdaExpr::Create(Importer.getToContext(), ToClass, ToIntroducerRange, 7997 E->getCaptureDefault(), ToCaptureDefaultLoc, 7998 E->hasExplicitParameters(), 7999 E->hasExplicitResultType(), ToCaptureInits, 8000 ToEndLoc, E->containsUnexpandedParameterPack()); 8001 } 8002 8003 8004 ExpectedStmt ASTNodeImporter::VisitInitListExpr(InitListExpr *E) { 8005 Error Err = Error::success(); 8006 auto ToLBraceLoc = importChecked(Err, E->getLBraceLoc()); 8007 auto ToRBraceLoc = importChecked(Err, E->getRBraceLoc()); 8008 auto ToType = importChecked(Err, E->getType()); 8009 if (Err) 8010 return std::move(Err); 8011 8012 SmallVector<Expr *, 4> ToExprs(E->getNumInits()); 8013 if (Error Err = ImportContainerChecked(E->inits(), ToExprs)) 8014 return std::move(Err); 8015 8016 ASTContext &ToCtx = Importer.getToContext(); 8017 InitListExpr *To = new (ToCtx) InitListExpr( 8018 ToCtx, ToLBraceLoc, ToExprs, ToRBraceLoc); 8019 To->setType(ToType); 8020 8021 if (E->hasArrayFiller()) { 8022 if (ExpectedExpr ToFillerOrErr = import(E->getArrayFiller())) 8023 To->setArrayFiller(*ToFillerOrErr); 8024 else 8025 return ToFillerOrErr.takeError(); 8026 } 8027 8028 if (FieldDecl *FromFD = E->getInitializedFieldInUnion()) { 8029 if (auto ToFDOrErr = import(FromFD)) 8030 To->setInitializedFieldInUnion(*ToFDOrErr); 8031 else 8032 return ToFDOrErr.takeError(); 8033 } 8034 8035 if (InitListExpr *SyntForm = E->getSyntacticForm()) { 8036 if (auto ToSyntFormOrErr = import(SyntForm)) 8037 To->setSyntacticForm(*ToSyntFormOrErr); 8038 else 8039 return ToSyntFormOrErr.takeError(); 8040 } 8041 8042 // Copy InitListExprBitfields, which are not handled in the ctor of 8043 // InitListExpr. 8044 To->sawArrayRangeDesignator(E->hadArrayRangeDesignator()); 8045 8046 return To; 8047 } 8048 8049 ExpectedStmt ASTNodeImporter::VisitCXXStdInitializerListExpr( 8050 CXXStdInitializerListExpr *E) { 8051 ExpectedType ToTypeOrErr = import(E->getType()); 8052 if (!ToTypeOrErr) 8053 return ToTypeOrErr.takeError(); 8054 8055 ExpectedExpr ToSubExprOrErr = import(E->getSubExpr()); 8056 if (!ToSubExprOrErr) 8057 return ToSubExprOrErr.takeError(); 8058 8059 return new (Importer.getToContext()) CXXStdInitializerListExpr( 8060 *ToTypeOrErr, *ToSubExprOrErr); 8061 } 8062 8063 ExpectedStmt ASTNodeImporter::VisitCXXInheritedCtorInitExpr( 8064 CXXInheritedCtorInitExpr *E) { 8065 Error Err = Error::success(); 8066 auto ToLocation = importChecked(Err, E->getLocation()); 8067 auto ToType = importChecked(Err, E->getType()); 8068 auto ToConstructor = importChecked(Err, E->getConstructor()); 8069 if (Err) 8070 return std::move(Err); 8071 8072 return new (Importer.getToContext()) CXXInheritedCtorInitExpr( 8073 ToLocation, ToType, ToConstructor, E->constructsVBase(), 8074 E->inheritedFromVBase()); 8075 } 8076 8077 ExpectedStmt ASTNodeImporter::VisitArrayInitLoopExpr(ArrayInitLoopExpr *E) { 8078 Error Err = Error::success(); 8079 auto ToType = importChecked(Err, E->getType()); 8080 auto ToCommonExpr = importChecked(Err, E->getCommonExpr()); 8081 auto ToSubExpr = importChecked(Err, E->getSubExpr()); 8082 if (Err) 8083 return std::move(Err); 8084 8085 return new (Importer.getToContext()) ArrayInitLoopExpr( 8086 ToType, ToCommonExpr, ToSubExpr); 8087 } 8088 8089 ExpectedStmt ASTNodeImporter::VisitArrayInitIndexExpr(ArrayInitIndexExpr *E) { 8090 ExpectedType ToTypeOrErr = import(E->getType()); 8091 if (!ToTypeOrErr) 8092 return ToTypeOrErr.takeError(); 8093 return new (Importer.getToContext()) ArrayInitIndexExpr(*ToTypeOrErr); 8094 } 8095 8096 ExpectedStmt ASTNodeImporter::VisitCXXDefaultInitExpr(CXXDefaultInitExpr *E) { 8097 ExpectedSLoc ToBeginLocOrErr = import(E->getBeginLoc()); 8098 if (!ToBeginLocOrErr) 8099 return ToBeginLocOrErr.takeError(); 8100 8101 auto ToFieldOrErr = import(E->getField()); 8102 if (!ToFieldOrErr) 8103 return ToFieldOrErr.takeError(); 8104 8105 auto UsedContextOrErr = Importer.ImportContext(E->getUsedContext()); 8106 if (!UsedContextOrErr) 8107 return UsedContextOrErr.takeError(); 8108 8109 return CXXDefaultInitExpr::Create( 8110 Importer.getToContext(), *ToBeginLocOrErr, *ToFieldOrErr, *UsedContextOrErr); 8111 } 8112 8113 ExpectedStmt ASTNodeImporter::VisitCXXNamedCastExpr(CXXNamedCastExpr *E) { 8114 Error Err = Error::success(); 8115 auto ToType = importChecked(Err, E->getType()); 8116 auto ToSubExpr = importChecked(Err, E->getSubExpr()); 8117 auto ToTypeInfoAsWritten = importChecked(Err, E->getTypeInfoAsWritten()); 8118 auto ToOperatorLoc = importChecked(Err, E->getOperatorLoc()); 8119 auto ToRParenLoc = importChecked(Err, E->getRParenLoc()); 8120 auto ToAngleBrackets = importChecked(Err, E->getAngleBrackets()); 8121 if (Err) 8122 return std::move(Err); 8123 8124 ExprValueKind VK = E->getValueKind(); 8125 CastKind CK = E->getCastKind(); 8126 auto ToBasePathOrErr = ImportCastPath(E); 8127 if (!ToBasePathOrErr) 8128 return ToBasePathOrErr.takeError(); 8129 8130 if (auto CCE = dyn_cast<CXXStaticCastExpr>(E)) { 8131 return CXXStaticCastExpr::Create( 8132 Importer.getToContext(), ToType, VK, CK, ToSubExpr, &(*ToBasePathOrErr), 8133 ToTypeInfoAsWritten, CCE->getFPFeatures(), ToOperatorLoc, ToRParenLoc, 8134 ToAngleBrackets); 8135 } else if (isa<CXXDynamicCastExpr>(E)) { 8136 return CXXDynamicCastExpr::Create( 8137 Importer.getToContext(), ToType, VK, CK, ToSubExpr, &(*ToBasePathOrErr), 8138 ToTypeInfoAsWritten, ToOperatorLoc, ToRParenLoc, ToAngleBrackets); 8139 } else if (isa<CXXReinterpretCastExpr>(E)) { 8140 return CXXReinterpretCastExpr::Create( 8141 Importer.getToContext(), ToType, VK, CK, ToSubExpr, &(*ToBasePathOrErr), 8142 ToTypeInfoAsWritten, ToOperatorLoc, ToRParenLoc, ToAngleBrackets); 8143 } else if (isa<CXXConstCastExpr>(E)) { 8144 return CXXConstCastExpr::Create( 8145 Importer.getToContext(), ToType, VK, ToSubExpr, ToTypeInfoAsWritten, 8146 ToOperatorLoc, ToRParenLoc, ToAngleBrackets); 8147 } else { 8148 llvm_unreachable("Unknown cast type"); 8149 return make_error<ImportError>(); 8150 } 8151 } 8152 8153 ExpectedStmt ASTNodeImporter::VisitSubstNonTypeTemplateParmExpr( 8154 SubstNonTypeTemplateParmExpr *E) { 8155 Error Err = Error::success(); 8156 auto ToType = importChecked(Err, E->getType()); 8157 auto ToExprLoc = importChecked(Err, E->getExprLoc()); 8158 auto ToParameter = importChecked(Err, E->getParameter()); 8159 auto ToReplacement = importChecked(Err, E->getReplacement()); 8160 if (Err) 8161 return std::move(Err); 8162 8163 return new (Importer.getToContext()) SubstNonTypeTemplateParmExpr( 8164 ToType, E->getValueKind(), ToExprLoc, ToParameter, 8165 E->isReferenceParameter(), ToReplacement); 8166 } 8167 8168 ExpectedStmt ASTNodeImporter::VisitTypeTraitExpr(TypeTraitExpr *E) { 8169 Error Err = Error::success(); 8170 auto ToType = importChecked(Err, E->getType()); 8171 auto ToBeginLoc = importChecked(Err, E->getBeginLoc()); 8172 auto ToEndLoc = importChecked(Err, E->getEndLoc()); 8173 if (Err) 8174 return std::move(Err); 8175 8176 SmallVector<TypeSourceInfo *, 4> ToArgs(E->getNumArgs()); 8177 if (Error Err = ImportContainerChecked(E->getArgs(), ToArgs)) 8178 return std::move(Err); 8179 8180 // According to Sema::BuildTypeTrait(), if E is value-dependent, 8181 // Value is always false. 8182 bool ToValue = (E->isValueDependent() ? false : E->getValue()); 8183 8184 return TypeTraitExpr::Create( 8185 Importer.getToContext(), ToType, ToBeginLoc, E->getTrait(), ToArgs, 8186 ToEndLoc, ToValue); 8187 } 8188 8189 ExpectedStmt ASTNodeImporter::VisitCXXTypeidExpr(CXXTypeidExpr *E) { 8190 ExpectedType ToTypeOrErr = import(E->getType()); 8191 if (!ToTypeOrErr) 8192 return ToTypeOrErr.takeError(); 8193 8194 auto ToSourceRangeOrErr = import(E->getSourceRange()); 8195 if (!ToSourceRangeOrErr) 8196 return ToSourceRangeOrErr.takeError(); 8197 8198 if (E->isTypeOperand()) { 8199 if (auto ToTSIOrErr = import(E->getTypeOperandSourceInfo())) 8200 return new (Importer.getToContext()) CXXTypeidExpr( 8201 *ToTypeOrErr, *ToTSIOrErr, *ToSourceRangeOrErr); 8202 else 8203 return ToTSIOrErr.takeError(); 8204 } 8205 8206 ExpectedExpr ToExprOperandOrErr = import(E->getExprOperand()); 8207 if (!ToExprOperandOrErr) 8208 return ToExprOperandOrErr.takeError(); 8209 8210 return new (Importer.getToContext()) CXXTypeidExpr( 8211 *ToTypeOrErr, *ToExprOperandOrErr, *ToSourceRangeOrErr); 8212 } 8213 8214 ExpectedStmt ASTNodeImporter::VisitCXXFoldExpr(CXXFoldExpr *E) { 8215 Error Err = Error::success(); 8216 8217 QualType ToType = importChecked(Err, E->getType()); 8218 UnresolvedLookupExpr *ToCallee = importChecked(Err, E->getCallee()); 8219 SourceLocation ToLParenLoc = importChecked(Err, E->getLParenLoc()); 8220 Expr *ToLHS = importChecked(Err, E->getLHS()); 8221 SourceLocation ToEllipsisLoc = importChecked(Err, E->getEllipsisLoc()); 8222 Expr *ToRHS = importChecked(Err, E->getRHS()); 8223 SourceLocation ToRParenLoc = importChecked(Err, E->getRParenLoc()); 8224 8225 if (Err) 8226 return std::move(Err); 8227 8228 return new (Importer.getToContext()) 8229 CXXFoldExpr(ToType, ToCallee, ToLParenLoc, ToLHS, E->getOperator(), 8230 ToEllipsisLoc, ToRHS, ToRParenLoc, E->getNumExpansions()); 8231 } 8232 8233 Error ASTNodeImporter::ImportOverriddenMethods(CXXMethodDecl *ToMethod, 8234 CXXMethodDecl *FromMethod) { 8235 Error ImportErrors = Error::success(); 8236 for (auto *FromOverriddenMethod : FromMethod->overridden_methods()) { 8237 if (auto ImportedOrErr = import(FromOverriddenMethod)) 8238 ToMethod->getCanonicalDecl()->addOverriddenMethod(cast<CXXMethodDecl>( 8239 (*ImportedOrErr)->getCanonicalDecl())); 8240 else 8241 ImportErrors = 8242 joinErrors(std::move(ImportErrors), ImportedOrErr.takeError()); 8243 } 8244 return ImportErrors; 8245 } 8246 8247 ASTImporter::ASTImporter(ASTContext &ToContext, FileManager &ToFileManager, 8248 ASTContext &FromContext, FileManager &FromFileManager, 8249 bool MinimalImport, 8250 std::shared_ptr<ASTImporterSharedState> SharedState) 8251 : SharedState(SharedState), ToContext(ToContext), FromContext(FromContext), 8252 ToFileManager(ToFileManager), FromFileManager(FromFileManager), 8253 Minimal(MinimalImport), ODRHandling(ODRHandlingType::Conservative) { 8254 8255 // Create a default state without the lookup table: LLDB case. 8256 if (!SharedState) { 8257 this->SharedState = std::make_shared<ASTImporterSharedState>(); 8258 } 8259 8260 ImportedDecls[FromContext.getTranslationUnitDecl()] = 8261 ToContext.getTranslationUnitDecl(); 8262 } 8263 8264 ASTImporter::~ASTImporter() = default; 8265 8266 Optional<unsigned> ASTImporter::getFieldIndex(Decl *F) { 8267 assert(F && (isa<FieldDecl>(*F) || isa<IndirectFieldDecl>(*F)) && 8268 "Try to get field index for non-field."); 8269 8270 auto *Owner = dyn_cast<RecordDecl>(F->getDeclContext()); 8271 if (!Owner) 8272 return None; 8273 8274 unsigned Index = 0; 8275 for (const auto *D : Owner->decls()) { 8276 if (D == F) 8277 return Index; 8278 8279 if (isa<FieldDecl>(*D) || isa<IndirectFieldDecl>(*D)) 8280 ++Index; 8281 } 8282 8283 llvm_unreachable("Field was not found in its parent context."); 8284 8285 return None; 8286 } 8287 8288 ASTImporter::FoundDeclsTy 8289 ASTImporter::findDeclsInToCtx(DeclContext *DC, DeclarationName Name) { 8290 // We search in the redecl context because of transparent contexts. 8291 // E.g. a simple C language enum is a transparent context: 8292 // enum E { A, B }; 8293 // Now if we had a global variable in the TU 8294 // int A; 8295 // then the enum constant 'A' and the variable 'A' violates ODR. 8296 // We can diagnose this only if we search in the redecl context. 8297 DeclContext *ReDC = DC->getRedeclContext(); 8298 if (SharedState->getLookupTable()) { 8299 ASTImporterLookupTable::LookupResult LookupResult = 8300 SharedState->getLookupTable()->lookup(ReDC, Name); 8301 return FoundDeclsTy(LookupResult.begin(), LookupResult.end()); 8302 } else { 8303 DeclContext::lookup_result NoloadLookupResult = ReDC->noload_lookup(Name); 8304 FoundDeclsTy Result(NoloadLookupResult.begin(), NoloadLookupResult.end()); 8305 // We must search by the slow case of localUncachedLookup because that is 8306 // working even if there is no LookupPtr for the DC. We could use 8307 // DC::buildLookup() to create the LookupPtr, but that would load external 8308 // decls again, we must avoid that case. 8309 // Also, even if we had the LookupPtr, we must find Decls which are not 8310 // in the LookupPtr, so we need the slow case. 8311 // These cases are handled in ASTImporterLookupTable, but we cannot use 8312 // that with LLDB since that traverses through the AST which initiates the 8313 // load of external decls again via DC::decls(). And again, we must avoid 8314 // loading external decls during the import. 8315 if (Result.empty()) 8316 ReDC->localUncachedLookup(Name, Result); 8317 return Result; 8318 } 8319 } 8320 8321 void ASTImporter::AddToLookupTable(Decl *ToD) { 8322 SharedState->addDeclToLookup(ToD); 8323 } 8324 8325 Expected<Decl *> ASTImporter::ImportImpl(Decl *FromD) { 8326 // Import the decl using ASTNodeImporter. 8327 ASTNodeImporter Importer(*this); 8328 return Importer.Visit(FromD); 8329 } 8330 8331 void ASTImporter::RegisterImportedDecl(Decl *FromD, Decl *ToD) { 8332 MapImported(FromD, ToD); 8333 } 8334 8335 llvm::Expected<ExprWithCleanups::CleanupObject> 8336 ASTImporter::Import(ExprWithCleanups::CleanupObject From) { 8337 if (auto *CLE = From.dyn_cast<CompoundLiteralExpr *>()) { 8338 if (Expected<Expr *> R = Import(CLE)) 8339 return ExprWithCleanups::CleanupObject(cast<CompoundLiteralExpr>(*R)); 8340 } 8341 8342 // FIXME: Handle BlockDecl when we implement importing BlockExpr in 8343 // ASTNodeImporter. 8344 return make_error<ImportError>(ImportError::UnsupportedConstruct); 8345 } 8346 8347 ExpectedTypePtr ASTImporter::Import(const Type *FromT) { 8348 if (!FromT) 8349 return FromT; 8350 8351 // Check whether we've already imported this type. 8352 llvm::DenseMap<const Type *, const Type *>::iterator Pos = 8353 ImportedTypes.find(FromT); 8354 if (Pos != ImportedTypes.end()) 8355 return Pos->second; 8356 8357 // Import the type. 8358 ASTNodeImporter Importer(*this); 8359 ExpectedType ToTOrErr = Importer.Visit(FromT); 8360 if (!ToTOrErr) 8361 return ToTOrErr.takeError(); 8362 8363 // Record the imported type. 8364 ImportedTypes[FromT] = ToTOrErr->getTypePtr(); 8365 8366 return ToTOrErr->getTypePtr(); 8367 } 8368 8369 Expected<QualType> ASTImporter::Import(QualType FromT) { 8370 if (FromT.isNull()) 8371 return QualType{}; 8372 8373 ExpectedTypePtr ToTyOrErr = Import(FromT.getTypePtr()); 8374 if (!ToTyOrErr) 8375 return ToTyOrErr.takeError(); 8376 8377 return ToContext.getQualifiedType(*ToTyOrErr, FromT.getLocalQualifiers()); 8378 } 8379 8380 Expected<TypeSourceInfo *> ASTImporter::Import(TypeSourceInfo *FromTSI) { 8381 if (!FromTSI) 8382 return FromTSI; 8383 8384 // FIXME: For now we just create a "trivial" type source info based 8385 // on the type and a single location. Implement a real version of this. 8386 ExpectedType TOrErr = Import(FromTSI->getType()); 8387 if (!TOrErr) 8388 return TOrErr.takeError(); 8389 ExpectedSLoc BeginLocOrErr = Import(FromTSI->getTypeLoc().getBeginLoc()); 8390 if (!BeginLocOrErr) 8391 return BeginLocOrErr.takeError(); 8392 8393 return ToContext.getTrivialTypeSourceInfo(*TOrErr, *BeginLocOrErr); 8394 } 8395 8396 // To use this object, it should be created before the new attribute is created, 8397 // and destructed after it is created. The construction already performs the 8398 // import of the data. 8399 template <typename T> struct AttrArgImporter { 8400 AttrArgImporter<T>(const AttrArgImporter<T> &) = delete; 8401 AttrArgImporter<T>(AttrArgImporter<T> &&) = default; 8402 AttrArgImporter<T> &operator=(const AttrArgImporter<T> &) = delete; 8403 AttrArgImporter<T> &operator=(AttrArgImporter<T> &&) = default; 8404 8405 AttrArgImporter(ASTNodeImporter &I, Error &Err, const T &From) 8406 : To(I.importChecked(Err, From)) {} 8407 8408 const T &value() { return To; } 8409 8410 private: 8411 T To; 8412 }; 8413 8414 // To use this object, it should be created before the new attribute is created, 8415 // and destructed after it is created. The construction already performs the 8416 // import of the data. The array data is accessible in a pointer form, this form 8417 // is used by the attribute classes. This object should be created once for the 8418 // array data to be imported (the array size is not imported, just copied). 8419 template <typename T> struct AttrArgArrayImporter { 8420 AttrArgArrayImporter<T>(const AttrArgArrayImporter<T> &) = delete; 8421 AttrArgArrayImporter<T>(AttrArgArrayImporter<T> &&) = default; 8422 AttrArgArrayImporter<T> &operator=(const AttrArgArrayImporter<T> &) = delete; 8423 AttrArgArrayImporter<T> &operator=(AttrArgArrayImporter<T> &&) = default; 8424 8425 AttrArgArrayImporter(ASTNodeImporter &I, Error &Err, 8426 const llvm::iterator_range<T *> &From, 8427 unsigned ArraySize) { 8428 if (Err) 8429 return; 8430 To.reserve(ArraySize); 8431 Err = I.ImportContainerChecked(From, To); 8432 } 8433 8434 T *value() { return To.data(); } 8435 8436 private: 8437 llvm::SmallVector<T, 2> To; 8438 }; 8439 8440 class AttrImporter { 8441 Error Err{Error::success()}; 8442 Attr *ToAttr = nullptr; 8443 ASTImporter &Importer; 8444 ASTNodeImporter NImporter; 8445 8446 public: 8447 AttrImporter(ASTImporter &I) : Importer(I), NImporter(I) {} 8448 8449 // Create an "importer" for an attribute parameter. 8450 // Result of the 'value()' of that object is to be passed to the function 8451 // 'importAttr', in the order that is expected by the attribute class. 8452 template <class T> AttrArgImporter<T> importArg(const T &From) { 8453 return AttrArgImporter<T>(NImporter, Err, From); 8454 } 8455 8456 // Create an "importer" for an attribute parameter that has array type. 8457 // Result of the 'value()' of that object is to be passed to the function 8458 // 'importAttr', then the size of the array as next argument. 8459 template <typename T> 8460 AttrArgArrayImporter<T> importArrayArg(const llvm::iterator_range<T *> &From, 8461 unsigned ArraySize) { 8462 return AttrArgArrayImporter<T>(NImporter, Err, From, ArraySize); 8463 } 8464 8465 // Create an attribute object with the specified arguments. 8466 // The 'FromAttr' is the original (not imported) attribute, the 'ImportedArg' 8467 // should be values that are passed to the 'Create' function of the attribute. 8468 // (The 'Create' with 'ASTContext' first and 'AttributeCommonInfo' last is 8469 // used here.) As much data is copied or imported from the old attribute 8470 // as possible. The passed arguments should be already imported. 8471 // If an import error happens, the internal error is set to it, and any 8472 // further import attempt is ignored. 8473 template <typename T, typename... Arg> 8474 void importAttr(const T *FromAttr, Arg &&...ImportedArg) { 8475 static_assert(std::is_base_of<Attr, T>::value, 8476 "T should be subclass of Attr."); 8477 assert(!ToAttr && "Use one AttrImporter to import one Attribute object."); 8478 8479 const IdentifierInfo *ToAttrName = Importer.Import(FromAttr->getAttrName()); 8480 const IdentifierInfo *ToScopeName = 8481 Importer.Import(FromAttr->getScopeName()); 8482 SourceRange ToAttrRange = 8483 NImporter.importChecked(Err, FromAttr->getRange()); 8484 SourceLocation ToScopeLoc = 8485 NImporter.importChecked(Err, FromAttr->getScopeLoc()); 8486 8487 if (Err) 8488 return; 8489 8490 AttributeCommonInfo ToI(ToAttrName, ToScopeName, ToAttrRange, ToScopeLoc, 8491 FromAttr->getParsedKind(), FromAttr->getSyntax(), 8492 FromAttr->getAttributeSpellingListIndex()); 8493 // The "SemanticSpelling" is not needed to be passed to the constructor. 8494 // That value is recalculated from the SpellingListIndex if needed. 8495 ToAttr = T::Create(Importer.getToContext(), 8496 std::forward<Arg>(ImportedArg)..., ToI); 8497 8498 ToAttr->setImplicit(FromAttr->isImplicit()); 8499 ToAttr->setPackExpansion(FromAttr->isPackExpansion()); 8500 if (auto *ToInheritableAttr = dyn_cast<InheritableAttr>(ToAttr)) 8501 ToInheritableAttr->setInherited(FromAttr->isInherited()); 8502 } 8503 8504 // Create a clone of the 'FromAttr' and import its source range only. 8505 // This causes objects with invalid references to be created if the 'FromAttr' 8506 // contains other data that should be imported. 8507 void cloneAttr(const Attr *FromAttr) { 8508 assert(!ToAttr && "Use one AttrImporter to import one Attribute object."); 8509 8510 SourceRange ToRange = NImporter.importChecked(Err, FromAttr->getRange()); 8511 if (Err) 8512 return; 8513 8514 ToAttr = FromAttr->clone(Importer.getToContext()); 8515 ToAttr->setRange(ToRange); 8516 } 8517 8518 // Get the result of the previous import attempt (can be used only once). 8519 llvm::Expected<Attr *> getResult() && { 8520 if (Err) 8521 return std::move(Err); 8522 assert(ToAttr && "Attribute should be created."); 8523 return ToAttr; 8524 } 8525 }; 8526 8527 Expected<Attr *> ASTImporter::Import(const Attr *FromAttr) { 8528 AttrImporter AI(*this); 8529 8530 // FIXME: Is there some kind of AttrVisitor to use here? 8531 switch (FromAttr->getKind()) { 8532 case attr::Aligned: { 8533 auto *From = cast<AlignedAttr>(FromAttr); 8534 if (From->isAlignmentExpr()) 8535 AI.importAttr(From, true, AI.importArg(From->getAlignmentExpr()).value()); 8536 else 8537 AI.importAttr(From, false, 8538 AI.importArg(From->getAlignmentType()).value()); 8539 break; 8540 } 8541 8542 case attr::Format: { 8543 const auto *From = cast<FormatAttr>(FromAttr); 8544 AI.importAttr(From, Import(From->getType()), From->getFormatIdx(), 8545 From->getFirstArg()); 8546 break; 8547 } 8548 8549 case attr::AssertCapability: { 8550 const auto *From = cast<AssertCapabilityAttr>(FromAttr); 8551 AI.importAttr(From, 8552 AI.importArrayArg(From->args(), From->args_size()).value(), 8553 From->args_size()); 8554 break; 8555 } 8556 case attr::AcquireCapability: { 8557 const auto *From = cast<AcquireCapabilityAttr>(FromAttr); 8558 AI.importAttr(From, 8559 AI.importArrayArg(From->args(), From->args_size()).value(), 8560 From->args_size()); 8561 break; 8562 } 8563 case attr::TryAcquireCapability: { 8564 const auto *From = cast<TryAcquireCapabilityAttr>(FromAttr); 8565 AI.importAttr(From, AI.importArg(From->getSuccessValue()).value(), 8566 AI.importArrayArg(From->args(), From->args_size()).value(), 8567 From->args_size()); 8568 break; 8569 } 8570 case attr::ReleaseCapability: { 8571 const auto *From = cast<ReleaseCapabilityAttr>(FromAttr); 8572 AI.importAttr(From, 8573 AI.importArrayArg(From->args(), From->args_size()).value(), 8574 From->args_size()); 8575 break; 8576 } 8577 case attr::RequiresCapability: { 8578 const auto *From = cast<RequiresCapabilityAttr>(FromAttr); 8579 AI.importAttr(From, 8580 AI.importArrayArg(From->args(), From->args_size()).value(), 8581 From->args_size()); 8582 break; 8583 } 8584 case attr::GuardedBy: { 8585 const auto *From = cast<GuardedByAttr>(FromAttr); 8586 AI.importAttr(From, AI.importArg(From->getArg()).value()); 8587 break; 8588 } 8589 case attr::PtGuardedBy: { 8590 const auto *From = cast<PtGuardedByAttr>(FromAttr); 8591 AI.importAttr(From, AI.importArg(From->getArg()).value()); 8592 break; 8593 } 8594 case attr::AcquiredAfter: { 8595 const auto *From = cast<AcquiredAfterAttr>(FromAttr); 8596 AI.importAttr(From, 8597 AI.importArrayArg(From->args(), From->args_size()).value(), 8598 From->args_size()); 8599 break; 8600 } 8601 case attr::AcquiredBefore: { 8602 const auto *From = cast<AcquiredBeforeAttr>(FromAttr); 8603 AI.importAttr(From, 8604 AI.importArrayArg(From->args(), From->args_size()).value(), 8605 From->args_size()); 8606 break; 8607 } 8608 case attr::AssertExclusiveLock: { 8609 const auto *From = cast<AssertExclusiveLockAttr>(FromAttr); 8610 AI.importAttr(From, 8611 AI.importArrayArg(From->args(), From->args_size()).value(), 8612 From->args_size()); 8613 break; 8614 } 8615 case attr::AssertSharedLock: { 8616 const auto *From = cast<AssertSharedLockAttr>(FromAttr); 8617 AI.importAttr(From, 8618 AI.importArrayArg(From->args(), From->args_size()).value(), 8619 From->args_size()); 8620 break; 8621 } 8622 case attr::ExclusiveTrylockFunction: { 8623 const auto *From = cast<ExclusiveTrylockFunctionAttr>(FromAttr); 8624 AI.importAttr(From, AI.importArg(From->getSuccessValue()).value(), 8625 AI.importArrayArg(From->args(), From->args_size()).value(), 8626 From->args_size()); 8627 break; 8628 } 8629 case attr::SharedTrylockFunction: { 8630 const auto *From = cast<SharedTrylockFunctionAttr>(FromAttr); 8631 AI.importAttr(From, AI.importArg(From->getSuccessValue()).value(), 8632 AI.importArrayArg(From->args(), From->args_size()).value(), 8633 From->args_size()); 8634 break; 8635 } 8636 case attr::LockReturned: { 8637 const auto *From = cast<LockReturnedAttr>(FromAttr); 8638 AI.importAttr(From, AI.importArg(From->getArg()).value()); 8639 break; 8640 } 8641 case attr::LocksExcluded: { 8642 const auto *From = cast<LocksExcludedAttr>(FromAttr); 8643 AI.importAttr(From, 8644 AI.importArrayArg(From->args(), From->args_size()).value(), 8645 From->args_size()); 8646 break; 8647 } 8648 8649 default: { 8650 // The default branch works for attributes that have no arguments to import. 8651 // FIXME: Handle every attribute type that has arguments of type to import 8652 // (most often Expr* or Decl* or type) in the switch above. 8653 AI.cloneAttr(FromAttr); 8654 break; 8655 } 8656 } 8657 8658 return std::move(AI).getResult(); 8659 } 8660 8661 Decl *ASTImporter::GetAlreadyImportedOrNull(const Decl *FromD) const { 8662 auto Pos = ImportedDecls.find(FromD); 8663 if (Pos != ImportedDecls.end()) 8664 return Pos->second; 8665 else 8666 return nullptr; 8667 } 8668 8669 TranslationUnitDecl *ASTImporter::GetFromTU(Decl *ToD) { 8670 auto FromDPos = ImportedFromDecls.find(ToD); 8671 if (FromDPos == ImportedFromDecls.end()) 8672 return nullptr; 8673 return FromDPos->second->getTranslationUnitDecl(); 8674 } 8675 8676 Expected<Decl *> ASTImporter::Import(Decl *FromD) { 8677 if (!FromD) 8678 return nullptr; 8679 8680 // Push FromD to the stack, and remove that when we return. 8681 ImportPath.push(FromD); 8682 auto ImportPathBuilder = 8683 llvm::make_scope_exit([this]() { ImportPath.pop(); }); 8684 8685 // Check whether there was a previous failed import. 8686 // If yes return the existing error. 8687 if (auto Error = getImportDeclErrorIfAny(FromD)) 8688 return make_error<ImportError>(*Error); 8689 8690 // Check whether we've already imported this declaration. 8691 Decl *ToD = GetAlreadyImportedOrNull(FromD); 8692 if (ToD) { 8693 // Already imported (possibly from another TU) and with an error. 8694 if (auto Error = SharedState->getImportDeclErrorIfAny(ToD)) { 8695 setImportDeclError(FromD, *Error); 8696 return make_error<ImportError>(*Error); 8697 } 8698 8699 // If FromD has some updated flags after last import, apply it. 8700 updateFlags(FromD, ToD); 8701 // If we encounter a cycle during an import then we save the relevant part 8702 // of the import path associated to the Decl. 8703 if (ImportPath.hasCycleAtBack()) 8704 SavedImportPaths[FromD].push_back(ImportPath.copyCycleAtBack()); 8705 return ToD; 8706 } 8707 8708 // Import the declaration. 8709 ExpectedDecl ToDOrErr = ImportImpl(FromD); 8710 if (!ToDOrErr) { 8711 // Failed to import. 8712 8713 auto Pos = ImportedDecls.find(FromD); 8714 if (Pos != ImportedDecls.end()) { 8715 // Import failed after the object was created. 8716 // Remove all references to it. 8717 auto *ToD = Pos->second; 8718 ImportedDecls.erase(Pos); 8719 8720 // ImportedDecls and ImportedFromDecls are not symmetric. It may happen 8721 // (e.g. with namespaces) that several decls from the 'from' context are 8722 // mapped to the same decl in the 'to' context. If we removed entries 8723 // from the LookupTable here then we may end up removing them multiple 8724 // times. 8725 8726 // The Lookuptable contains decls only which are in the 'to' context. 8727 // Remove from the Lookuptable only if it is *imported* into the 'to' 8728 // context (and do not remove it if it was added during the initial 8729 // traverse of the 'to' context). 8730 auto PosF = ImportedFromDecls.find(ToD); 8731 if (PosF != ImportedFromDecls.end()) { 8732 // In the case of TypedefNameDecl we create the Decl first and only 8733 // then we import and set its DeclContext. So, the DC might not be set 8734 // when we reach here. 8735 if (ToD->getDeclContext()) 8736 SharedState->removeDeclFromLookup(ToD); 8737 ImportedFromDecls.erase(PosF); 8738 } 8739 8740 // FIXME: AST may contain remaining references to the failed object. 8741 // However, the ImportDeclErrors in the shared state contains all the 8742 // failed objects together with their error. 8743 } 8744 8745 // Error encountered for the first time. 8746 // After takeError the error is not usable any more in ToDOrErr. 8747 // Get a copy of the error object (any more simple solution for this?). 8748 ImportError ErrOut; 8749 handleAllErrors(ToDOrErr.takeError(), 8750 [&ErrOut](const ImportError &E) { ErrOut = E; }); 8751 setImportDeclError(FromD, ErrOut); 8752 // Set the error for the mapped to Decl, which is in the "to" context. 8753 if (Pos != ImportedDecls.end()) 8754 SharedState->setImportDeclError(Pos->second, ErrOut); 8755 8756 // Set the error for all nodes which have been created before we 8757 // recognized the error. 8758 for (const auto &Path : SavedImportPaths[FromD]) 8759 for (Decl *FromDi : Path) { 8760 setImportDeclError(FromDi, ErrOut); 8761 //FIXME Should we remove these Decls from ImportedDecls? 8762 // Set the error for the mapped to Decl, which is in the "to" context. 8763 auto Ii = ImportedDecls.find(FromDi); 8764 if (Ii != ImportedDecls.end()) 8765 SharedState->setImportDeclError(Ii->second, ErrOut); 8766 // FIXME Should we remove these Decls from the LookupTable, 8767 // and from ImportedFromDecls? 8768 } 8769 SavedImportPaths.erase(FromD); 8770 8771 // Do not return ToDOrErr, error was taken out of it. 8772 return make_error<ImportError>(ErrOut); 8773 } 8774 8775 ToD = *ToDOrErr; 8776 8777 // FIXME: Handle the "already imported with error" case. We can get here 8778 // nullptr only if GetImportedOrCreateDecl returned nullptr (after a 8779 // previously failed create was requested). 8780 // Later GetImportedOrCreateDecl can be updated to return the error. 8781 if (!ToD) { 8782 auto Err = getImportDeclErrorIfAny(FromD); 8783 assert(Err); 8784 return make_error<ImportError>(*Err); 8785 } 8786 8787 // We could import from the current TU without error. But previously we 8788 // already had imported a Decl as `ToD` from another TU (with another 8789 // ASTImporter object) and with an error. 8790 if (auto Error = SharedState->getImportDeclErrorIfAny(ToD)) { 8791 setImportDeclError(FromD, *Error); 8792 return make_error<ImportError>(*Error); 8793 } 8794 8795 // Make sure that ImportImpl registered the imported decl. 8796 assert(ImportedDecls.count(FromD) != 0 && "Missing call to MapImported?"); 8797 8798 if (FromD->hasAttrs()) 8799 for (const Attr *FromAttr : FromD->getAttrs()) { 8800 auto ToAttrOrErr = Import(FromAttr); 8801 if (ToAttrOrErr) 8802 ToD->addAttr(*ToAttrOrErr); 8803 else 8804 return ToAttrOrErr.takeError(); 8805 } 8806 8807 // Notify subclasses. 8808 Imported(FromD, ToD); 8809 8810 updateFlags(FromD, ToD); 8811 SavedImportPaths.erase(FromD); 8812 return ToDOrErr; 8813 } 8814 8815 llvm::Expected<InheritedConstructor> 8816 ASTImporter::Import(const InheritedConstructor &From) { 8817 return ASTNodeImporter(*this).ImportInheritedConstructor(From); 8818 } 8819 8820 Expected<DeclContext *> ASTImporter::ImportContext(DeclContext *FromDC) { 8821 if (!FromDC) 8822 return FromDC; 8823 8824 ExpectedDecl ToDCOrErr = Import(cast<Decl>(FromDC)); 8825 if (!ToDCOrErr) 8826 return ToDCOrErr.takeError(); 8827 auto *ToDC = cast<DeclContext>(*ToDCOrErr); 8828 8829 // When we're using a record/enum/Objective-C class/protocol as a context, we 8830 // need it to have a definition. 8831 if (auto *ToRecord = dyn_cast<RecordDecl>(ToDC)) { 8832 auto *FromRecord = cast<RecordDecl>(FromDC); 8833 if (ToRecord->isCompleteDefinition()) 8834 return ToDC; 8835 8836 // If FromRecord is not defined we need to force it to be. 8837 // Simply calling CompleteDecl(...) for a RecordDecl will break some cases 8838 // it will start the definition but we never finish it. 8839 // If there are base classes they won't be imported and we will 8840 // be missing anything that we inherit from those bases. 8841 if (FromRecord->getASTContext().getExternalSource() && 8842 !FromRecord->isCompleteDefinition()) 8843 FromRecord->getASTContext().getExternalSource()->CompleteType(FromRecord); 8844 8845 if (FromRecord->isCompleteDefinition()) 8846 if (Error Err = ASTNodeImporter(*this).ImportDefinition( 8847 FromRecord, ToRecord, ASTNodeImporter::IDK_Basic)) 8848 return std::move(Err); 8849 } else if (auto *ToEnum = dyn_cast<EnumDecl>(ToDC)) { 8850 auto *FromEnum = cast<EnumDecl>(FromDC); 8851 if (ToEnum->isCompleteDefinition()) { 8852 // Do nothing. 8853 } else if (FromEnum->isCompleteDefinition()) { 8854 if (Error Err = ASTNodeImporter(*this).ImportDefinition( 8855 FromEnum, ToEnum, ASTNodeImporter::IDK_Basic)) 8856 return std::move(Err); 8857 } else { 8858 CompleteDecl(ToEnum); 8859 } 8860 } else if (auto *ToClass = dyn_cast<ObjCInterfaceDecl>(ToDC)) { 8861 auto *FromClass = cast<ObjCInterfaceDecl>(FromDC); 8862 if (ToClass->getDefinition()) { 8863 // Do nothing. 8864 } else if (ObjCInterfaceDecl *FromDef = FromClass->getDefinition()) { 8865 if (Error Err = ASTNodeImporter(*this).ImportDefinition( 8866 FromDef, ToClass, ASTNodeImporter::IDK_Basic)) 8867 return std::move(Err); 8868 } else { 8869 CompleteDecl(ToClass); 8870 } 8871 } else if (auto *ToProto = dyn_cast<ObjCProtocolDecl>(ToDC)) { 8872 auto *FromProto = cast<ObjCProtocolDecl>(FromDC); 8873 if (ToProto->getDefinition()) { 8874 // Do nothing. 8875 } else if (ObjCProtocolDecl *FromDef = FromProto->getDefinition()) { 8876 if (Error Err = ASTNodeImporter(*this).ImportDefinition( 8877 FromDef, ToProto, ASTNodeImporter::IDK_Basic)) 8878 return std::move(Err); 8879 } else { 8880 CompleteDecl(ToProto); 8881 } 8882 } 8883 8884 return ToDC; 8885 } 8886 8887 Expected<Expr *> ASTImporter::Import(Expr *FromE) { 8888 if (ExpectedStmt ToSOrErr = Import(cast_or_null<Stmt>(FromE))) 8889 return cast_or_null<Expr>(*ToSOrErr); 8890 else 8891 return ToSOrErr.takeError(); 8892 } 8893 8894 Expected<Stmt *> ASTImporter::Import(Stmt *FromS) { 8895 if (!FromS) 8896 return nullptr; 8897 8898 // Check whether we've already imported this statement. 8899 llvm::DenseMap<Stmt *, Stmt *>::iterator Pos = ImportedStmts.find(FromS); 8900 if (Pos != ImportedStmts.end()) 8901 return Pos->second; 8902 8903 // Import the statement. 8904 ASTNodeImporter Importer(*this); 8905 ExpectedStmt ToSOrErr = Importer.Visit(FromS); 8906 if (!ToSOrErr) 8907 return ToSOrErr; 8908 8909 if (auto *ToE = dyn_cast<Expr>(*ToSOrErr)) { 8910 auto *FromE = cast<Expr>(FromS); 8911 // Copy ExprBitfields, which may not be handled in Expr subclasses 8912 // constructors. 8913 ToE->setValueKind(FromE->getValueKind()); 8914 ToE->setObjectKind(FromE->getObjectKind()); 8915 ToE->setDependence(FromE->getDependence()); 8916 } 8917 8918 // Record the imported statement object. 8919 ImportedStmts[FromS] = *ToSOrErr; 8920 return ToSOrErr; 8921 } 8922 8923 Expected<NestedNameSpecifier *> 8924 ASTImporter::Import(NestedNameSpecifier *FromNNS) { 8925 if (!FromNNS) 8926 return nullptr; 8927 8928 NestedNameSpecifier *Prefix = nullptr; 8929 if (Error Err = importInto(Prefix, FromNNS->getPrefix())) 8930 return std::move(Err); 8931 8932 switch (FromNNS->getKind()) { 8933 case NestedNameSpecifier::Identifier: 8934 assert(FromNNS->getAsIdentifier() && "NNS should contain identifier."); 8935 return NestedNameSpecifier::Create(ToContext, Prefix, 8936 Import(FromNNS->getAsIdentifier())); 8937 8938 case NestedNameSpecifier::Namespace: 8939 if (ExpectedDecl NSOrErr = Import(FromNNS->getAsNamespace())) { 8940 return NestedNameSpecifier::Create(ToContext, Prefix, 8941 cast<NamespaceDecl>(*NSOrErr)); 8942 } else 8943 return NSOrErr.takeError(); 8944 8945 case NestedNameSpecifier::NamespaceAlias: 8946 if (ExpectedDecl NSADOrErr = Import(FromNNS->getAsNamespaceAlias())) 8947 return NestedNameSpecifier::Create(ToContext, Prefix, 8948 cast<NamespaceAliasDecl>(*NSADOrErr)); 8949 else 8950 return NSADOrErr.takeError(); 8951 8952 case NestedNameSpecifier::Global: 8953 return NestedNameSpecifier::GlobalSpecifier(ToContext); 8954 8955 case NestedNameSpecifier::Super: 8956 if (ExpectedDecl RDOrErr = Import(FromNNS->getAsRecordDecl())) 8957 return NestedNameSpecifier::SuperSpecifier(ToContext, 8958 cast<CXXRecordDecl>(*RDOrErr)); 8959 else 8960 return RDOrErr.takeError(); 8961 8962 case NestedNameSpecifier::TypeSpec: 8963 case NestedNameSpecifier::TypeSpecWithTemplate: 8964 if (ExpectedTypePtr TyOrErr = Import(FromNNS->getAsType())) { 8965 bool TSTemplate = 8966 FromNNS->getKind() == NestedNameSpecifier::TypeSpecWithTemplate; 8967 return NestedNameSpecifier::Create(ToContext, Prefix, TSTemplate, 8968 *TyOrErr); 8969 } else { 8970 return TyOrErr.takeError(); 8971 } 8972 } 8973 8974 llvm_unreachable("Invalid nested name specifier kind"); 8975 } 8976 8977 Expected<NestedNameSpecifierLoc> 8978 ASTImporter::Import(NestedNameSpecifierLoc FromNNS) { 8979 // Copied from NestedNameSpecifier mostly. 8980 SmallVector<NestedNameSpecifierLoc , 8> NestedNames; 8981 NestedNameSpecifierLoc NNS = FromNNS; 8982 8983 // Push each of the nested-name-specifiers's onto a stack for 8984 // serialization in reverse order. 8985 while (NNS) { 8986 NestedNames.push_back(NNS); 8987 NNS = NNS.getPrefix(); 8988 } 8989 8990 NestedNameSpecifierLocBuilder Builder; 8991 8992 while (!NestedNames.empty()) { 8993 NNS = NestedNames.pop_back_val(); 8994 NestedNameSpecifier *Spec = nullptr; 8995 if (Error Err = importInto(Spec, NNS.getNestedNameSpecifier())) 8996 return std::move(Err); 8997 8998 NestedNameSpecifier::SpecifierKind Kind = Spec->getKind(); 8999 9000 SourceLocation ToLocalBeginLoc, ToLocalEndLoc; 9001 if (Kind != NestedNameSpecifier::Super) { 9002 if (Error Err = importInto(ToLocalBeginLoc, NNS.getLocalBeginLoc())) 9003 return std::move(Err); 9004 9005 if (Kind != NestedNameSpecifier::Global) 9006 if (Error Err = importInto(ToLocalEndLoc, NNS.getLocalEndLoc())) 9007 return std::move(Err); 9008 } 9009 9010 switch (Kind) { 9011 case NestedNameSpecifier::Identifier: 9012 Builder.Extend(getToContext(), Spec->getAsIdentifier(), ToLocalBeginLoc, 9013 ToLocalEndLoc); 9014 break; 9015 9016 case NestedNameSpecifier::Namespace: 9017 Builder.Extend(getToContext(), Spec->getAsNamespace(), ToLocalBeginLoc, 9018 ToLocalEndLoc); 9019 break; 9020 9021 case NestedNameSpecifier::NamespaceAlias: 9022 Builder.Extend(getToContext(), Spec->getAsNamespaceAlias(), 9023 ToLocalBeginLoc, ToLocalEndLoc); 9024 break; 9025 9026 case NestedNameSpecifier::TypeSpec: 9027 case NestedNameSpecifier::TypeSpecWithTemplate: { 9028 SourceLocation ToTLoc; 9029 if (Error Err = importInto(ToTLoc, NNS.getTypeLoc().getBeginLoc())) 9030 return std::move(Err); 9031 TypeSourceInfo *TSI = getToContext().getTrivialTypeSourceInfo( 9032 QualType(Spec->getAsType(), 0), ToTLoc); 9033 if (Kind == NestedNameSpecifier::TypeSpecWithTemplate) 9034 // ToLocalBeginLoc is here the location of the 'template' keyword. 9035 Builder.Extend(getToContext(), ToLocalBeginLoc, TSI->getTypeLoc(), 9036 ToLocalEndLoc); 9037 else 9038 // No location for 'template' keyword here. 9039 Builder.Extend(getToContext(), SourceLocation{}, TSI->getTypeLoc(), 9040 ToLocalEndLoc); 9041 break; 9042 } 9043 9044 case NestedNameSpecifier::Global: 9045 Builder.MakeGlobal(getToContext(), ToLocalBeginLoc); 9046 break; 9047 9048 case NestedNameSpecifier::Super: { 9049 auto ToSourceRangeOrErr = Import(NNS.getSourceRange()); 9050 if (!ToSourceRangeOrErr) 9051 return ToSourceRangeOrErr.takeError(); 9052 9053 Builder.MakeSuper(getToContext(), Spec->getAsRecordDecl(), 9054 ToSourceRangeOrErr->getBegin(), 9055 ToSourceRangeOrErr->getEnd()); 9056 } 9057 } 9058 } 9059 9060 return Builder.getWithLocInContext(getToContext()); 9061 } 9062 9063 Expected<TemplateName> ASTImporter::Import(TemplateName From) { 9064 switch (From.getKind()) { 9065 case TemplateName::Template: 9066 if (ExpectedDecl ToTemplateOrErr = Import(From.getAsTemplateDecl())) 9067 return TemplateName(cast<TemplateDecl>(*ToTemplateOrErr)); 9068 else 9069 return ToTemplateOrErr.takeError(); 9070 9071 case TemplateName::OverloadedTemplate: { 9072 OverloadedTemplateStorage *FromStorage = From.getAsOverloadedTemplate(); 9073 UnresolvedSet<2> ToTemplates; 9074 for (auto *I : *FromStorage) { 9075 if (auto ToOrErr = Import(I)) 9076 ToTemplates.addDecl(cast<NamedDecl>(*ToOrErr)); 9077 else 9078 return ToOrErr.takeError(); 9079 } 9080 return ToContext.getOverloadedTemplateName(ToTemplates.begin(), 9081 ToTemplates.end()); 9082 } 9083 9084 case TemplateName::AssumedTemplate: { 9085 AssumedTemplateStorage *FromStorage = From.getAsAssumedTemplateName(); 9086 auto DeclNameOrErr = Import(FromStorage->getDeclName()); 9087 if (!DeclNameOrErr) 9088 return DeclNameOrErr.takeError(); 9089 return ToContext.getAssumedTemplateName(*DeclNameOrErr); 9090 } 9091 9092 case TemplateName::QualifiedTemplate: { 9093 QualifiedTemplateName *QTN = From.getAsQualifiedTemplateName(); 9094 auto QualifierOrErr = Import(QTN->getQualifier()); 9095 if (!QualifierOrErr) 9096 return QualifierOrErr.takeError(); 9097 9098 if (ExpectedDecl ToTemplateOrErr = Import(From.getAsTemplateDecl())) 9099 return ToContext.getQualifiedTemplateName( 9100 *QualifierOrErr, QTN->hasTemplateKeyword(), 9101 cast<TemplateDecl>(*ToTemplateOrErr)); 9102 else 9103 return ToTemplateOrErr.takeError(); 9104 } 9105 9106 case TemplateName::DependentTemplate: { 9107 DependentTemplateName *DTN = From.getAsDependentTemplateName(); 9108 auto QualifierOrErr = Import(DTN->getQualifier()); 9109 if (!QualifierOrErr) 9110 return QualifierOrErr.takeError(); 9111 9112 if (DTN->isIdentifier()) { 9113 return ToContext.getDependentTemplateName(*QualifierOrErr, 9114 Import(DTN->getIdentifier())); 9115 } 9116 9117 return ToContext.getDependentTemplateName(*QualifierOrErr, 9118 DTN->getOperator()); 9119 } 9120 9121 case TemplateName::SubstTemplateTemplateParm: { 9122 SubstTemplateTemplateParmStorage *Subst = 9123 From.getAsSubstTemplateTemplateParm(); 9124 ExpectedDecl ParamOrErr = Import(Subst->getParameter()); 9125 if (!ParamOrErr) 9126 return ParamOrErr.takeError(); 9127 9128 auto ReplacementOrErr = Import(Subst->getReplacement()); 9129 if (!ReplacementOrErr) 9130 return ReplacementOrErr.takeError(); 9131 9132 return ToContext.getSubstTemplateTemplateParm( 9133 cast<TemplateTemplateParmDecl>(*ParamOrErr), *ReplacementOrErr); 9134 } 9135 9136 case TemplateName::SubstTemplateTemplateParmPack: { 9137 SubstTemplateTemplateParmPackStorage *SubstPack 9138 = From.getAsSubstTemplateTemplateParmPack(); 9139 ExpectedDecl ParamOrErr = Import(SubstPack->getParameterPack()); 9140 if (!ParamOrErr) 9141 return ParamOrErr.takeError(); 9142 9143 ASTNodeImporter Importer(*this); 9144 auto ArgPackOrErr = 9145 Importer.ImportTemplateArgument(SubstPack->getArgumentPack()); 9146 if (!ArgPackOrErr) 9147 return ArgPackOrErr.takeError(); 9148 9149 return ToContext.getSubstTemplateTemplateParmPack( 9150 cast<TemplateTemplateParmDecl>(*ParamOrErr), *ArgPackOrErr); 9151 } 9152 } 9153 9154 llvm_unreachable("Invalid template name kind"); 9155 } 9156 9157 Expected<SourceLocation> ASTImporter::Import(SourceLocation FromLoc) { 9158 if (FromLoc.isInvalid()) 9159 return SourceLocation{}; 9160 9161 SourceManager &FromSM = FromContext.getSourceManager(); 9162 bool IsBuiltin = FromSM.isWrittenInBuiltinFile(FromLoc); 9163 9164 std::pair<FileID, unsigned> Decomposed = FromSM.getDecomposedLoc(FromLoc); 9165 Expected<FileID> ToFileIDOrErr = Import(Decomposed.first, IsBuiltin); 9166 if (!ToFileIDOrErr) 9167 return ToFileIDOrErr.takeError(); 9168 SourceManager &ToSM = ToContext.getSourceManager(); 9169 return ToSM.getComposedLoc(*ToFileIDOrErr, Decomposed.second); 9170 } 9171 9172 Expected<SourceRange> ASTImporter::Import(SourceRange FromRange) { 9173 SourceLocation ToBegin, ToEnd; 9174 if (Error Err = importInto(ToBegin, FromRange.getBegin())) 9175 return std::move(Err); 9176 if (Error Err = importInto(ToEnd, FromRange.getEnd())) 9177 return std::move(Err); 9178 9179 return SourceRange(ToBegin, ToEnd); 9180 } 9181 9182 Expected<FileID> ASTImporter::Import(FileID FromID, bool IsBuiltin) { 9183 llvm::DenseMap<FileID, FileID>::iterator Pos = ImportedFileIDs.find(FromID); 9184 if (Pos != ImportedFileIDs.end()) 9185 return Pos->second; 9186 9187 SourceManager &FromSM = FromContext.getSourceManager(); 9188 SourceManager &ToSM = ToContext.getSourceManager(); 9189 const SrcMgr::SLocEntry &FromSLoc = FromSM.getSLocEntry(FromID); 9190 9191 // Map the FromID to the "to" source manager. 9192 FileID ToID; 9193 if (FromSLoc.isExpansion()) { 9194 const SrcMgr::ExpansionInfo &FromEx = FromSLoc.getExpansion(); 9195 ExpectedSLoc ToSpLoc = Import(FromEx.getSpellingLoc()); 9196 if (!ToSpLoc) 9197 return ToSpLoc.takeError(); 9198 ExpectedSLoc ToExLocS = Import(FromEx.getExpansionLocStart()); 9199 if (!ToExLocS) 9200 return ToExLocS.takeError(); 9201 unsigned TokenLen = FromSM.getFileIDSize(FromID); 9202 SourceLocation MLoc; 9203 if (FromEx.isMacroArgExpansion()) { 9204 MLoc = ToSM.createMacroArgExpansionLoc(*ToSpLoc, *ToExLocS, TokenLen); 9205 } else { 9206 if (ExpectedSLoc ToExLocE = Import(FromEx.getExpansionLocEnd())) 9207 MLoc = ToSM.createExpansionLoc(*ToSpLoc, *ToExLocS, *ToExLocE, TokenLen, 9208 FromEx.isExpansionTokenRange()); 9209 else 9210 return ToExLocE.takeError(); 9211 } 9212 ToID = ToSM.getFileID(MLoc); 9213 } else { 9214 const SrcMgr::ContentCache *Cache = &FromSLoc.getFile().getContentCache(); 9215 9216 if (!IsBuiltin && !Cache->BufferOverridden) { 9217 // Include location of this file. 9218 ExpectedSLoc ToIncludeLoc = Import(FromSLoc.getFile().getIncludeLoc()); 9219 if (!ToIncludeLoc) 9220 return ToIncludeLoc.takeError(); 9221 9222 // Every FileID that is not the main FileID needs to have a valid include 9223 // location so that the include chain points to the main FileID. When 9224 // importing the main FileID (which has no include location), we need to 9225 // create a fake include location in the main file to keep this property 9226 // intact. 9227 SourceLocation ToIncludeLocOrFakeLoc = *ToIncludeLoc; 9228 if (FromID == FromSM.getMainFileID()) 9229 ToIncludeLocOrFakeLoc = ToSM.getLocForStartOfFile(ToSM.getMainFileID()); 9230 9231 if (Cache->OrigEntry && Cache->OrigEntry->getDir()) { 9232 // FIXME: We probably want to use getVirtualFile(), so we don't hit the 9233 // disk again 9234 // FIXME: We definitely want to re-use the existing MemoryBuffer, rather 9235 // than mmap the files several times. 9236 auto Entry = 9237 ToFileManager.getOptionalFileRef(Cache->OrigEntry->getName()); 9238 // FIXME: The filename may be a virtual name that does probably not 9239 // point to a valid file and we get no Entry here. In this case try with 9240 // the memory buffer below. 9241 if (Entry) 9242 ToID = ToSM.createFileID(*Entry, ToIncludeLocOrFakeLoc, 9243 FromSLoc.getFile().getFileCharacteristic()); 9244 } 9245 } 9246 9247 if (ToID.isInvalid() || IsBuiltin) { 9248 // FIXME: We want to re-use the existing MemoryBuffer! 9249 llvm::Optional<llvm::MemoryBufferRef> FromBuf = 9250 Cache->getBufferOrNone(FromContext.getDiagnostics(), 9251 FromSM.getFileManager(), SourceLocation{}); 9252 if (!FromBuf) 9253 return llvm::make_error<ImportError>(ImportError::Unknown); 9254 9255 std::unique_ptr<llvm::MemoryBuffer> ToBuf = 9256 llvm::MemoryBuffer::getMemBufferCopy(FromBuf->getBuffer(), 9257 FromBuf->getBufferIdentifier()); 9258 ToID = ToSM.createFileID(std::move(ToBuf), 9259 FromSLoc.getFile().getFileCharacteristic()); 9260 } 9261 } 9262 9263 assert(ToID.isValid() && "Unexpected invalid fileID was created."); 9264 9265 ImportedFileIDs[FromID] = ToID; 9266 return ToID; 9267 } 9268 9269 Expected<CXXCtorInitializer *> ASTImporter::Import(CXXCtorInitializer *From) { 9270 ExpectedExpr ToExprOrErr = Import(From->getInit()); 9271 if (!ToExprOrErr) 9272 return ToExprOrErr.takeError(); 9273 9274 auto LParenLocOrErr = Import(From->getLParenLoc()); 9275 if (!LParenLocOrErr) 9276 return LParenLocOrErr.takeError(); 9277 9278 auto RParenLocOrErr = Import(From->getRParenLoc()); 9279 if (!RParenLocOrErr) 9280 return RParenLocOrErr.takeError(); 9281 9282 if (From->isBaseInitializer()) { 9283 auto ToTInfoOrErr = Import(From->getTypeSourceInfo()); 9284 if (!ToTInfoOrErr) 9285 return ToTInfoOrErr.takeError(); 9286 9287 SourceLocation EllipsisLoc; 9288 if (From->isPackExpansion()) 9289 if (Error Err = importInto(EllipsisLoc, From->getEllipsisLoc())) 9290 return std::move(Err); 9291 9292 return new (ToContext) CXXCtorInitializer( 9293 ToContext, *ToTInfoOrErr, From->isBaseVirtual(), *LParenLocOrErr, 9294 *ToExprOrErr, *RParenLocOrErr, EllipsisLoc); 9295 } else if (From->isMemberInitializer()) { 9296 ExpectedDecl ToFieldOrErr = Import(From->getMember()); 9297 if (!ToFieldOrErr) 9298 return ToFieldOrErr.takeError(); 9299 9300 auto MemberLocOrErr = Import(From->getMemberLocation()); 9301 if (!MemberLocOrErr) 9302 return MemberLocOrErr.takeError(); 9303 9304 return new (ToContext) CXXCtorInitializer( 9305 ToContext, cast_or_null<FieldDecl>(*ToFieldOrErr), *MemberLocOrErr, 9306 *LParenLocOrErr, *ToExprOrErr, *RParenLocOrErr); 9307 } else if (From->isIndirectMemberInitializer()) { 9308 ExpectedDecl ToIFieldOrErr = Import(From->getIndirectMember()); 9309 if (!ToIFieldOrErr) 9310 return ToIFieldOrErr.takeError(); 9311 9312 auto MemberLocOrErr = Import(From->getMemberLocation()); 9313 if (!MemberLocOrErr) 9314 return MemberLocOrErr.takeError(); 9315 9316 return new (ToContext) CXXCtorInitializer( 9317 ToContext, cast_or_null<IndirectFieldDecl>(*ToIFieldOrErr), 9318 *MemberLocOrErr, *LParenLocOrErr, *ToExprOrErr, *RParenLocOrErr); 9319 } else if (From->isDelegatingInitializer()) { 9320 auto ToTInfoOrErr = Import(From->getTypeSourceInfo()); 9321 if (!ToTInfoOrErr) 9322 return ToTInfoOrErr.takeError(); 9323 9324 return new (ToContext) 9325 CXXCtorInitializer(ToContext, *ToTInfoOrErr, *LParenLocOrErr, 9326 *ToExprOrErr, *RParenLocOrErr); 9327 } else { 9328 // FIXME: assert? 9329 return make_error<ImportError>(); 9330 } 9331 } 9332 9333 Expected<CXXBaseSpecifier *> 9334 ASTImporter::Import(const CXXBaseSpecifier *BaseSpec) { 9335 auto Pos = ImportedCXXBaseSpecifiers.find(BaseSpec); 9336 if (Pos != ImportedCXXBaseSpecifiers.end()) 9337 return Pos->second; 9338 9339 Expected<SourceRange> ToSourceRange = Import(BaseSpec->getSourceRange()); 9340 if (!ToSourceRange) 9341 return ToSourceRange.takeError(); 9342 Expected<TypeSourceInfo *> ToTSI = Import(BaseSpec->getTypeSourceInfo()); 9343 if (!ToTSI) 9344 return ToTSI.takeError(); 9345 ExpectedSLoc ToEllipsisLoc = Import(BaseSpec->getEllipsisLoc()); 9346 if (!ToEllipsisLoc) 9347 return ToEllipsisLoc.takeError(); 9348 CXXBaseSpecifier *Imported = new (ToContext) CXXBaseSpecifier( 9349 *ToSourceRange, BaseSpec->isVirtual(), BaseSpec->isBaseOfClass(), 9350 BaseSpec->getAccessSpecifierAsWritten(), *ToTSI, *ToEllipsisLoc); 9351 ImportedCXXBaseSpecifiers[BaseSpec] = Imported; 9352 return Imported; 9353 } 9354 9355 llvm::Expected<APValue> ASTImporter::Import(const APValue &FromValue) { 9356 ASTNodeImporter Importer(*this); 9357 return Importer.ImportAPValue(FromValue); 9358 } 9359 9360 Error ASTImporter::ImportDefinition(Decl *From) { 9361 ExpectedDecl ToOrErr = Import(From); 9362 if (!ToOrErr) 9363 return ToOrErr.takeError(); 9364 Decl *To = *ToOrErr; 9365 9366 auto *FromDC = cast<DeclContext>(From); 9367 ASTNodeImporter Importer(*this); 9368 9369 if (auto *ToRecord = dyn_cast<RecordDecl>(To)) { 9370 if (!ToRecord->getDefinition()) { 9371 return Importer.ImportDefinition( 9372 cast<RecordDecl>(FromDC), ToRecord, 9373 ASTNodeImporter::IDK_Everything); 9374 } 9375 } 9376 9377 if (auto *ToEnum = dyn_cast<EnumDecl>(To)) { 9378 if (!ToEnum->getDefinition()) { 9379 return Importer.ImportDefinition( 9380 cast<EnumDecl>(FromDC), ToEnum, ASTNodeImporter::IDK_Everything); 9381 } 9382 } 9383 9384 if (auto *ToIFace = dyn_cast<ObjCInterfaceDecl>(To)) { 9385 if (!ToIFace->getDefinition()) { 9386 return Importer.ImportDefinition( 9387 cast<ObjCInterfaceDecl>(FromDC), ToIFace, 9388 ASTNodeImporter::IDK_Everything); 9389 } 9390 } 9391 9392 if (auto *ToProto = dyn_cast<ObjCProtocolDecl>(To)) { 9393 if (!ToProto->getDefinition()) { 9394 return Importer.ImportDefinition( 9395 cast<ObjCProtocolDecl>(FromDC), ToProto, 9396 ASTNodeImporter::IDK_Everything); 9397 } 9398 } 9399 9400 return Importer.ImportDeclContext(FromDC, true); 9401 } 9402 9403 Expected<DeclarationName> ASTImporter::Import(DeclarationName FromName) { 9404 if (!FromName) 9405 return DeclarationName{}; 9406 9407 switch (FromName.getNameKind()) { 9408 case DeclarationName::Identifier: 9409 return DeclarationName(Import(FromName.getAsIdentifierInfo())); 9410 9411 case DeclarationName::ObjCZeroArgSelector: 9412 case DeclarationName::ObjCOneArgSelector: 9413 case DeclarationName::ObjCMultiArgSelector: 9414 if (auto ToSelOrErr = Import(FromName.getObjCSelector())) 9415 return DeclarationName(*ToSelOrErr); 9416 else 9417 return ToSelOrErr.takeError(); 9418 9419 case DeclarationName::CXXConstructorName: { 9420 if (auto ToTyOrErr = Import(FromName.getCXXNameType())) 9421 return ToContext.DeclarationNames.getCXXConstructorName( 9422 ToContext.getCanonicalType(*ToTyOrErr)); 9423 else 9424 return ToTyOrErr.takeError(); 9425 } 9426 9427 case DeclarationName::CXXDestructorName: { 9428 if (auto ToTyOrErr = Import(FromName.getCXXNameType())) 9429 return ToContext.DeclarationNames.getCXXDestructorName( 9430 ToContext.getCanonicalType(*ToTyOrErr)); 9431 else 9432 return ToTyOrErr.takeError(); 9433 } 9434 9435 case DeclarationName::CXXDeductionGuideName: { 9436 if (auto ToTemplateOrErr = Import(FromName.getCXXDeductionGuideTemplate())) 9437 return ToContext.DeclarationNames.getCXXDeductionGuideName( 9438 cast<TemplateDecl>(*ToTemplateOrErr)); 9439 else 9440 return ToTemplateOrErr.takeError(); 9441 } 9442 9443 case DeclarationName::CXXConversionFunctionName: { 9444 if (auto ToTyOrErr = Import(FromName.getCXXNameType())) 9445 return ToContext.DeclarationNames.getCXXConversionFunctionName( 9446 ToContext.getCanonicalType(*ToTyOrErr)); 9447 else 9448 return ToTyOrErr.takeError(); 9449 } 9450 9451 case DeclarationName::CXXOperatorName: 9452 return ToContext.DeclarationNames.getCXXOperatorName( 9453 FromName.getCXXOverloadedOperator()); 9454 9455 case DeclarationName::CXXLiteralOperatorName: 9456 return ToContext.DeclarationNames.getCXXLiteralOperatorName( 9457 Import(FromName.getCXXLiteralIdentifier())); 9458 9459 case DeclarationName::CXXUsingDirective: 9460 // FIXME: STATICS! 9461 return DeclarationName::getUsingDirectiveName(); 9462 } 9463 9464 llvm_unreachable("Invalid DeclarationName Kind!"); 9465 } 9466 9467 IdentifierInfo *ASTImporter::Import(const IdentifierInfo *FromId) { 9468 if (!FromId) 9469 return nullptr; 9470 9471 IdentifierInfo *ToId = &ToContext.Idents.get(FromId->getName()); 9472 9473 if (!ToId->getBuiltinID() && FromId->getBuiltinID()) 9474 ToId->setBuiltinID(FromId->getBuiltinID()); 9475 9476 return ToId; 9477 } 9478 9479 Expected<Selector> ASTImporter::Import(Selector FromSel) { 9480 if (FromSel.isNull()) 9481 return Selector{}; 9482 9483 SmallVector<IdentifierInfo *, 4> Idents; 9484 Idents.push_back(Import(FromSel.getIdentifierInfoForSlot(0))); 9485 for (unsigned I = 1, N = FromSel.getNumArgs(); I < N; ++I) 9486 Idents.push_back(Import(FromSel.getIdentifierInfoForSlot(I))); 9487 return ToContext.Selectors.getSelector(FromSel.getNumArgs(), Idents.data()); 9488 } 9489 9490 llvm::Expected<APValue> 9491 ASTNodeImporter::ImportAPValue(const APValue &FromValue) { 9492 APValue Result; 9493 llvm::Error Err = llvm::Error::success(); 9494 auto ImportLoop = [&](const APValue *From, APValue *To, unsigned Size) { 9495 for (unsigned Idx = 0; Idx < Size; Idx++) { 9496 APValue Tmp = importChecked(Err, From[Idx]); 9497 To[Idx] = Tmp; 9498 } 9499 }; 9500 switch (FromValue.getKind()) { 9501 case APValue::None: 9502 case APValue::Indeterminate: 9503 case APValue::Int: 9504 case APValue::Float: 9505 case APValue::FixedPoint: 9506 case APValue::ComplexInt: 9507 case APValue::ComplexFloat: 9508 Result = FromValue; 9509 break; 9510 case APValue::Vector: { 9511 Result.MakeVector(); 9512 MutableArrayRef<APValue> Elts = 9513 Result.setVectorUninit(FromValue.getVectorLength()); 9514 ImportLoop(((const APValue::Vec *)(const char *)&FromValue.Data)->Elts, 9515 Elts.data(), FromValue.getVectorLength()); 9516 break; 9517 } 9518 case APValue::Array: 9519 Result.MakeArray(FromValue.getArrayInitializedElts(), 9520 FromValue.getArraySize()); 9521 ImportLoop(((const APValue::Arr *)(const char *)&FromValue.Data)->Elts, 9522 ((const APValue::Arr *)(const char *)&Result.Data)->Elts, 9523 FromValue.getArrayInitializedElts()); 9524 break; 9525 case APValue::Struct: 9526 Result.MakeStruct(FromValue.getStructNumBases(), 9527 FromValue.getStructNumFields()); 9528 ImportLoop( 9529 ((const APValue::StructData *)(const char *)&FromValue.Data)->Elts, 9530 ((const APValue::StructData *)(const char *)&Result.Data)->Elts, 9531 FromValue.getStructNumBases() + FromValue.getStructNumFields()); 9532 break; 9533 case APValue::Union: { 9534 Result.MakeUnion(); 9535 const Decl *ImpFDecl = importChecked(Err, FromValue.getUnionField()); 9536 APValue ImpValue = importChecked(Err, FromValue.getUnionValue()); 9537 if (Err) 9538 return std::move(Err); 9539 Result.setUnion(cast<FieldDecl>(ImpFDecl), ImpValue); 9540 break; 9541 } 9542 case APValue::AddrLabelDiff: { 9543 Result.MakeAddrLabelDiff(); 9544 const Expr *ImpLHS = importChecked(Err, FromValue.getAddrLabelDiffLHS()); 9545 const Expr *ImpRHS = importChecked(Err, FromValue.getAddrLabelDiffRHS()); 9546 if (Err) 9547 return std::move(Err); 9548 Result.setAddrLabelDiff(cast<AddrLabelExpr>(ImpLHS), 9549 cast<AddrLabelExpr>(ImpRHS)); 9550 break; 9551 } 9552 case APValue::MemberPointer: { 9553 const Decl *ImpMemPtrDecl = 9554 importChecked(Err, FromValue.getMemberPointerDecl()); 9555 if (Err) 9556 return std::move(Err); 9557 MutableArrayRef<const CXXRecordDecl *> ToPath = 9558 Result.setMemberPointerUninit( 9559 cast<const ValueDecl>(ImpMemPtrDecl), 9560 FromValue.isMemberPointerToDerivedMember(), 9561 FromValue.getMemberPointerPath().size()); 9562 llvm::ArrayRef<const CXXRecordDecl *> FromPath = 9563 Result.getMemberPointerPath(); 9564 for (unsigned Idx = 0; Idx < FromValue.getMemberPointerPath().size(); 9565 Idx++) { 9566 const Decl *ImpDecl = importChecked(Err, FromPath[Idx]); 9567 if (Err) 9568 return std::move(Err); 9569 ToPath[Idx] = cast<const CXXRecordDecl>(ImpDecl->getCanonicalDecl()); 9570 } 9571 break; 9572 } 9573 case APValue::LValue: 9574 APValue::LValueBase Base; 9575 QualType FromElemTy; 9576 if (FromValue.getLValueBase()) { 9577 assert(!FromValue.getLValueBase().is<DynamicAllocLValue>() && 9578 "in C++20 dynamic allocation are transient so they shouldn't " 9579 "appear in the AST"); 9580 if (!FromValue.getLValueBase().is<TypeInfoLValue>()) { 9581 if (const auto *E = 9582 FromValue.getLValueBase().dyn_cast<const Expr *>()) { 9583 FromElemTy = E->getType(); 9584 const Expr *ImpExpr = importChecked(Err, E); 9585 if (Err) 9586 return std::move(Err); 9587 Base = APValue::LValueBase(ImpExpr, 9588 FromValue.getLValueBase().getCallIndex(), 9589 FromValue.getLValueBase().getVersion()); 9590 } else { 9591 FromElemTy = 9592 FromValue.getLValueBase().get<const ValueDecl *>()->getType(); 9593 const Decl *ImpDecl = importChecked( 9594 Err, FromValue.getLValueBase().get<const ValueDecl *>()); 9595 if (Err) 9596 return std::move(Err); 9597 Base = APValue::LValueBase(cast<ValueDecl>(ImpDecl), 9598 FromValue.getLValueBase().getCallIndex(), 9599 FromValue.getLValueBase().getVersion()); 9600 } 9601 } else { 9602 FromElemTy = FromValue.getLValueBase().getTypeInfoType(); 9603 const Type *ImpTypeInfo = importChecked( 9604 Err, FromValue.getLValueBase().get<TypeInfoLValue>().getType()); 9605 QualType ImpType = 9606 importChecked(Err, FromValue.getLValueBase().getTypeInfoType()); 9607 if (Err) 9608 return std::move(Err); 9609 Base = APValue::LValueBase::getTypeInfo(TypeInfoLValue(ImpTypeInfo), 9610 ImpType); 9611 } 9612 } 9613 CharUnits Offset = FromValue.getLValueOffset(); 9614 unsigned PathLength = FromValue.getLValuePath().size(); 9615 Result.MakeLValue(); 9616 if (FromValue.hasLValuePath()) { 9617 MutableArrayRef<APValue::LValuePathEntry> ToPath = Result.setLValueUninit( 9618 Base, Offset, PathLength, FromValue.isLValueOnePastTheEnd(), 9619 FromValue.isNullPointer()); 9620 llvm::ArrayRef<APValue::LValuePathEntry> FromPath = 9621 FromValue.getLValuePath(); 9622 for (unsigned LoopIdx = 0; LoopIdx < PathLength; LoopIdx++) { 9623 if (FromElemTy->isRecordType()) { 9624 const Decl *FromDecl = 9625 FromPath[LoopIdx].getAsBaseOrMember().getPointer(); 9626 const Decl *ImpDecl = importChecked(Err, FromDecl); 9627 if (Err) 9628 return std::move(Err); 9629 if (auto *RD = dyn_cast<CXXRecordDecl>(FromDecl)) 9630 FromElemTy = Importer.FromContext.getRecordType(RD); 9631 else 9632 FromElemTy = cast<ValueDecl>(FromDecl)->getType(); 9633 ToPath[LoopIdx] = APValue::LValuePathEntry(APValue::BaseOrMemberType( 9634 ImpDecl, FromPath[LoopIdx].getAsBaseOrMember().getInt())); 9635 } else { 9636 FromElemTy = 9637 Importer.FromContext.getAsArrayType(FromElemTy)->getElementType(); 9638 ToPath[LoopIdx] = APValue::LValuePathEntry::ArrayIndex( 9639 FromPath[LoopIdx].getAsArrayIndex()); 9640 } 9641 } 9642 } else 9643 Result.setLValue(Base, Offset, APValue::NoLValuePath{}, 9644 FromValue.isNullPointer()); 9645 } 9646 if (Err) 9647 return std::move(Err); 9648 return Result; 9649 } 9650 9651 Expected<DeclarationName> ASTImporter::HandleNameConflict(DeclarationName Name, 9652 DeclContext *DC, 9653 unsigned IDNS, 9654 NamedDecl **Decls, 9655 unsigned NumDecls) { 9656 if (ODRHandling == ODRHandlingType::Conservative) 9657 // Report error at any name conflict. 9658 return make_error<ImportError>(ImportError::NameConflict); 9659 else 9660 // Allow to create the new Decl with the same name. 9661 return Name; 9662 } 9663 9664 DiagnosticBuilder ASTImporter::ToDiag(SourceLocation Loc, unsigned DiagID) { 9665 if (LastDiagFromFrom) 9666 ToContext.getDiagnostics().notePriorDiagnosticFrom( 9667 FromContext.getDiagnostics()); 9668 LastDiagFromFrom = false; 9669 return ToContext.getDiagnostics().Report(Loc, DiagID); 9670 } 9671 9672 DiagnosticBuilder ASTImporter::FromDiag(SourceLocation Loc, unsigned DiagID) { 9673 if (!LastDiagFromFrom) 9674 FromContext.getDiagnostics().notePriorDiagnosticFrom( 9675 ToContext.getDiagnostics()); 9676 LastDiagFromFrom = true; 9677 return FromContext.getDiagnostics().Report(Loc, DiagID); 9678 } 9679 9680 void ASTImporter::CompleteDecl (Decl *D) { 9681 if (auto *ID = dyn_cast<ObjCInterfaceDecl>(D)) { 9682 if (!ID->getDefinition()) 9683 ID->startDefinition(); 9684 } 9685 else if (auto *PD = dyn_cast<ObjCProtocolDecl>(D)) { 9686 if (!PD->getDefinition()) 9687 PD->startDefinition(); 9688 } 9689 else if (auto *TD = dyn_cast<TagDecl>(D)) { 9690 if (!TD->getDefinition() && !TD->isBeingDefined()) { 9691 TD->startDefinition(); 9692 TD->setCompleteDefinition(true); 9693 } 9694 } 9695 else { 9696 assert(0 && "CompleteDecl called on a Decl that can't be completed"); 9697 } 9698 } 9699 9700 Decl *ASTImporter::MapImported(Decl *From, Decl *To) { 9701 llvm::DenseMap<Decl *, Decl *>::iterator Pos = ImportedDecls.find(From); 9702 assert((Pos == ImportedDecls.end() || Pos->second == To) && 9703 "Try to import an already imported Decl"); 9704 if (Pos != ImportedDecls.end()) 9705 return Pos->second; 9706 ImportedDecls[From] = To; 9707 // This mapping should be maintained only in this function. Therefore do not 9708 // check for additional consistency. 9709 ImportedFromDecls[To] = From; 9710 // In the case of TypedefNameDecl we create the Decl first and only then we 9711 // import and set its DeclContext. So, the DC is still not set when we reach 9712 // here from GetImportedOrCreateDecl. 9713 if (To->getDeclContext()) 9714 AddToLookupTable(To); 9715 return To; 9716 } 9717 9718 llvm::Optional<ImportError> 9719 ASTImporter::getImportDeclErrorIfAny(Decl *FromD) const { 9720 auto Pos = ImportDeclErrors.find(FromD); 9721 if (Pos != ImportDeclErrors.end()) 9722 return Pos->second; 9723 else 9724 return Optional<ImportError>(); 9725 } 9726 9727 void ASTImporter::setImportDeclError(Decl *From, ImportError Error) { 9728 auto InsertRes = ImportDeclErrors.insert({From, Error}); 9729 (void)InsertRes; 9730 // Either we set the error for the first time, or we already had set one and 9731 // now we want to set the same error. 9732 assert(InsertRes.second || InsertRes.first->second.Error == Error.Error); 9733 } 9734 9735 bool ASTImporter::IsStructurallyEquivalent(QualType From, QualType To, 9736 bool Complain) { 9737 llvm::DenseMap<const Type *, const Type *>::iterator Pos = 9738 ImportedTypes.find(From.getTypePtr()); 9739 if (Pos != ImportedTypes.end()) { 9740 if (ExpectedType ToFromOrErr = Import(From)) { 9741 if (ToContext.hasSameType(*ToFromOrErr, To)) 9742 return true; 9743 } else { 9744 llvm::consumeError(ToFromOrErr.takeError()); 9745 } 9746 } 9747 9748 StructuralEquivalenceContext Ctx(FromContext, ToContext, NonEquivalentDecls, 9749 getStructuralEquivalenceKind(*this), false, 9750 Complain); 9751 return Ctx.IsEquivalent(From, To); 9752 } 9753