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   /// How to handle import errors that occur when import of a child declaration
142   /// of a DeclContext fails.
143   class ChildErrorHandlingStrategy {
144     /// This context is imported (in the 'from' domain).
145     /// It is nullptr if a non-DeclContext is imported.
146     const DeclContext *const FromDC;
147     /// Ignore import errors of the children.
148     /// If true, the context can be imported successfully if a child
149     /// of it failed to import. Otherwise the import errors of the child nodes
150     /// are accumulated (joined) into the import error object of the parent.
151     /// (Import of a parent can fail in other ways.)
152     bool const IgnoreChildErrors;
153 
154   public:
155     ChildErrorHandlingStrategy(const DeclContext *FromDC)
156         : FromDC(FromDC), IgnoreChildErrors(!isa<TagDecl>(FromDC)) {}
157     ChildErrorHandlingStrategy(const Decl *FromD)
158         : FromDC(dyn_cast<DeclContext>(FromD)),
159           IgnoreChildErrors(!isa<TagDecl>(FromD)) {}
160 
161     /// Process the import result of a child (of the current declaration).
162     /// \param ResultErr The import error that can be used as result of
163     /// importing the parent. This may be changed by the function.
164     /// \param ChildErr Result of importing a child. Can be success or error.
165     void handleChildImportResult(Error &ResultErr, Error &&ChildErr) {
166       if (ChildErr && !IgnoreChildErrors)
167         ResultErr = joinErrors(std::move(ResultErr), std::move(ChildErr));
168       else
169         consumeError(std::move(ChildErr));
170     }
171 
172     /// Determine if import failure of a child does not cause import failure of
173     /// its parent.
174     bool ignoreChildErrorOnParent(Decl *FromChildD) const {
175       if (!IgnoreChildErrors || !FromDC)
176         return false;
177       return FromDC->containsDecl(FromChildD);
178     }
179   };
180 
181   class ASTNodeImporter : public TypeVisitor<ASTNodeImporter, ExpectedType>,
182                           public DeclVisitor<ASTNodeImporter, ExpectedDecl>,
183                           public StmtVisitor<ASTNodeImporter, ExpectedStmt> {
184     ASTImporter &Importer;
185 
186     // Use this instead of Importer.importInto .
187     template <typename ImportT>
188     LLVM_NODISCARD Error importInto(ImportT &To, const ImportT &From) {
189       return Importer.importInto(To, From);
190     }
191 
192     // Use this to import pointers of specific type.
193     template <typename ImportT>
194     LLVM_NODISCARD Error importInto(ImportT *&To, ImportT *From) {
195       auto ToOrErr = Importer.Import(From);
196       if (ToOrErr)
197         To = cast_or_null<ImportT>(*ToOrErr);
198       return ToOrErr.takeError();
199     }
200 
201     // Call the import function of ASTImporter for a baseclass of type `T` and
202     // cast the return value to `T`.
203     template <typename T>
204     auto import(T *From)
205         -> std::conditional_t<std::is_base_of<Type, T>::value,
206                               Expected<const T *>, Expected<T *>> {
207       auto ToOrErr = Importer.Import(From);
208       if (!ToOrErr)
209         return ToOrErr.takeError();
210       return cast_or_null<T>(*ToOrErr);
211     }
212 
213     template <typename T>
214     auto import(const T *From) {
215       return import(const_cast<T *>(From));
216     }
217 
218     // Call the import function of ASTImporter for type `T`.
219     template <typename T>
220     Expected<T> import(const T &From) {
221       return Importer.Import(From);
222     }
223 
224     // Import an Optional<T> by importing the contained T, if any.
225     template<typename T>
226     Expected<Optional<T>> import(Optional<T> From) {
227       if (!From)
228         return Optional<T>();
229       return import(*From);
230     }
231 
232     ExplicitSpecifier importExplicitSpecifier(Error &Err,
233                                               ExplicitSpecifier ESpec);
234 
235     // Wrapper for an overload set.
236     template <typename ToDeclT> struct CallOverloadedCreateFun {
237       template <typename... Args> decltype(auto) operator()(Args &&... args) {
238         return ToDeclT::Create(std::forward<Args>(args)...);
239       }
240     };
241 
242     // Always use these functions to create a Decl during import. There are
243     // certain tasks which must be done after the Decl was created, e.g. we
244     // must immediately register that as an imported Decl.  The parameter `ToD`
245     // will be set to the newly created Decl or if had been imported before
246     // then to the already imported Decl.  Returns a bool value set to true if
247     // the `FromD` had been imported before.
248     template <typename ToDeclT, typename FromDeclT, typename... Args>
249     LLVM_NODISCARD bool GetImportedOrCreateDecl(ToDeclT *&ToD, FromDeclT *FromD,
250                                                 Args &&... args) {
251       // There may be several overloads of ToDeclT::Create. We must make sure
252       // to call the one which would be chosen by the arguments, thus we use a
253       // wrapper for the overload set.
254       CallOverloadedCreateFun<ToDeclT> OC;
255       return GetImportedOrCreateSpecialDecl(ToD, OC, FromD,
256                                             std::forward<Args>(args)...);
257     }
258     // Use this overload if a special Type is needed to be created.  E.g if we
259     // want to create a `TypeAliasDecl` and assign that to a `TypedefNameDecl`
260     // then:
261     // TypedefNameDecl *ToTypedef;
262     // GetImportedOrCreateDecl<TypeAliasDecl>(ToTypedef, FromD, ...);
263     template <typename NewDeclT, typename ToDeclT, typename FromDeclT,
264               typename... Args>
265     LLVM_NODISCARD bool GetImportedOrCreateDecl(ToDeclT *&ToD, FromDeclT *FromD,
266                                                 Args &&... args) {
267       CallOverloadedCreateFun<NewDeclT> OC;
268       return GetImportedOrCreateSpecialDecl(ToD, OC, FromD,
269                                             std::forward<Args>(args)...);
270     }
271     // Use this version if a special create function must be
272     // used, e.g. CXXRecordDecl::CreateLambda .
273     template <typename ToDeclT, typename CreateFunT, typename FromDeclT,
274               typename... Args>
275     LLVM_NODISCARD bool
276     GetImportedOrCreateSpecialDecl(ToDeclT *&ToD, CreateFunT CreateFun,
277                                    FromDeclT *FromD, Args &&... args) {
278       if (Importer.getImportDeclErrorIfAny(FromD)) {
279         ToD = nullptr;
280         return true; // Already imported but with error.
281       }
282       ToD = cast_or_null<ToDeclT>(Importer.GetAlreadyImportedOrNull(FromD));
283       if (ToD)
284         return true; // Already imported.
285       ToD = CreateFun(std::forward<Args>(args)...);
286       // Keep track of imported Decls.
287       Importer.RegisterImportedDecl(FromD, ToD);
288       Importer.SharedState->markAsNewDecl(ToD);
289       InitializeImportedDecl(FromD, ToD);
290       return false; // A new Decl is created.
291     }
292 
293     void InitializeImportedDecl(Decl *FromD, Decl *ToD) {
294       ToD->IdentifierNamespace = FromD->IdentifierNamespace;
295       if (FromD->isUsed())
296         ToD->setIsUsed();
297       if (FromD->isImplicit())
298         ToD->setImplicit();
299     }
300 
301     // Check if we have found an existing definition.  Returns with that
302     // definition if yes, otherwise returns null.
303     Decl *FindAndMapDefinition(FunctionDecl *D, FunctionDecl *FoundFunction) {
304       const FunctionDecl *Definition = nullptr;
305       if (D->doesThisDeclarationHaveABody() &&
306           FoundFunction->hasBody(Definition))
307         return Importer.MapImported(D, const_cast<FunctionDecl *>(Definition));
308       return nullptr;
309     }
310 
311     void addDeclToContexts(Decl *FromD, Decl *ToD) {
312       if (Importer.isMinimalImport()) {
313         // In minimal import case the decl must be added even if it is not
314         // contained in original context, for LLDB compatibility.
315         // FIXME: Check if a better solution is possible.
316         if (!FromD->getDescribedTemplate() &&
317             FromD->getFriendObjectKind() == Decl::FOK_None)
318           ToD->getLexicalDeclContext()->addDeclInternal(ToD);
319         return;
320       }
321 
322       DeclContext *FromDC = FromD->getDeclContext();
323       DeclContext *FromLexicalDC = FromD->getLexicalDeclContext();
324       DeclContext *ToDC = ToD->getDeclContext();
325       DeclContext *ToLexicalDC = ToD->getLexicalDeclContext();
326 
327       bool Visible = false;
328       if (FromDC->containsDeclAndLoad(FromD)) {
329         ToDC->addDeclInternal(ToD);
330         Visible = true;
331       }
332       if (ToDC != ToLexicalDC && FromLexicalDC->containsDeclAndLoad(FromD)) {
333         ToLexicalDC->addDeclInternal(ToD);
334         Visible = true;
335       }
336 
337       // If the Decl was added to any context, it was made already visible.
338       // Otherwise it is still possible that it should be visible.
339       if (!Visible) {
340         if (auto *FromNamed = dyn_cast<NamedDecl>(FromD)) {
341           auto *ToNamed = cast<NamedDecl>(ToD);
342           DeclContextLookupResult FromLookup =
343               FromDC->lookup(FromNamed->getDeclName());
344           if (llvm::is_contained(FromLookup, FromNamed))
345             ToDC->makeDeclVisibleInContext(ToNamed);
346         }
347       }
348     }
349 
350     void updateLookupTableForTemplateParameters(TemplateParameterList &Params,
351                                                 DeclContext *OldDC) {
352       ASTImporterLookupTable *LT = Importer.SharedState->getLookupTable();
353       if (!LT)
354         return;
355 
356       for (NamedDecl *TP : Params)
357         LT->update(TP, OldDC);
358     }
359 
360     void updateLookupTableForTemplateParameters(TemplateParameterList &Params) {
361       updateLookupTableForTemplateParameters(
362           Params, Importer.getToContext().getTranslationUnitDecl());
363     }
364 
365   public:
366     explicit ASTNodeImporter(ASTImporter &Importer) : Importer(Importer) {}
367 
368     using TypeVisitor<ASTNodeImporter, ExpectedType>::Visit;
369     using DeclVisitor<ASTNodeImporter, ExpectedDecl>::Visit;
370     using StmtVisitor<ASTNodeImporter, ExpectedStmt>::Visit;
371 
372     // Importing types
373     ExpectedType VisitType(const Type *T);
374     ExpectedType VisitAtomicType(const AtomicType *T);
375     ExpectedType VisitBuiltinType(const BuiltinType *T);
376     ExpectedType VisitDecayedType(const DecayedType *T);
377     ExpectedType VisitComplexType(const ComplexType *T);
378     ExpectedType VisitPointerType(const PointerType *T);
379     ExpectedType VisitBlockPointerType(const BlockPointerType *T);
380     ExpectedType VisitLValueReferenceType(const LValueReferenceType *T);
381     ExpectedType VisitRValueReferenceType(const RValueReferenceType *T);
382     ExpectedType VisitMemberPointerType(const MemberPointerType *T);
383     ExpectedType VisitConstantArrayType(const ConstantArrayType *T);
384     ExpectedType VisitIncompleteArrayType(const IncompleteArrayType *T);
385     ExpectedType VisitVariableArrayType(const VariableArrayType *T);
386     ExpectedType VisitDependentSizedArrayType(const DependentSizedArrayType *T);
387     // FIXME: DependentSizedExtVectorType
388     ExpectedType VisitVectorType(const VectorType *T);
389     ExpectedType VisitExtVectorType(const ExtVectorType *T);
390     ExpectedType VisitFunctionNoProtoType(const FunctionNoProtoType *T);
391     ExpectedType VisitFunctionProtoType(const FunctionProtoType *T);
392     ExpectedType VisitUnresolvedUsingType(const UnresolvedUsingType *T);
393     ExpectedType VisitParenType(const ParenType *T);
394     ExpectedType VisitTypedefType(const TypedefType *T);
395     ExpectedType VisitTypeOfExprType(const TypeOfExprType *T);
396     // FIXME: DependentTypeOfExprType
397     ExpectedType VisitTypeOfType(const TypeOfType *T);
398     ExpectedType VisitUsingType(const UsingType *T);
399     ExpectedType VisitDecltypeType(const DecltypeType *T);
400     ExpectedType VisitUnaryTransformType(const UnaryTransformType *T);
401     ExpectedType VisitAutoType(const AutoType *T);
402     ExpectedType VisitDeducedTemplateSpecializationType(
403         const DeducedTemplateSpecializationType *T);
404     ExpectedType VisitInjectedClassNameType(const InjectedClassNameType *T);
405     // FIXME: DependentDecltypeType
406     ExpectedType VisitRecordType(const RecordType *T);
407     ExpectedType VisitEnumType(const EnumType *T);
408     ExpectedType VisitAttributedType(const AttributedType *T);
409     ExpectedType VisitTemplateTypeParmType(const TemplateTypeParmType *T);
410     ExpectedType VisitSubstTemplateTypeParmType(
411         const SubstTemplateTypeParmType *T);
412     ExpectedType
413     VisitSubstTemplateTypeParmPackType(const SubstTemplateTypeParmPackType *T);
414     ExpectedType VisitTemplateSpecializationType(
415         const TemplateSpecializationType *T);
416     ExpectedType VisitElaboratedType(const ElaboratedType *T);
417     ExpectedType VisitDependentNameType(const DependentNameType *T);
418     ExpectedType VisitPackExpansionType(const PackExpansionType *T);
419     ExpectedType VisitDependentTemplateSpecializationType(
420         const DependentTemplateSpecializationType *T);
421     ExpectedType VisitObjCInterfaceType(const ObjCInterfaceType *T);
422     ExpectedType VisitObjCObjectType(const ObjCObjectType *T);
423     ExpectedType VisitObjCObjectPointerType(const ObjCObjectPointerType *T);
424 
425     // Importing declarations
426     Error ImportDeclParts(NamedDecl *D, DeclarationName &Name, NamedDecl *&ToD,
427                           SourceLocation &Loc);
428     Error ImportDeclParts(
429         NamedDecl *D, DeclContext *&DC, DeclContext *&LexicalDC,
430         DeclarationName &Name, NamedDecl *&ToD, SourceLocation &Loc);
431     Error ImportDefinitionIfNeeded(Decl *FromD, Decl *ToD = nullptr);
432     Error ImportDeclarationNameLoc(
433         const DeclarationNameInfo &From, DeclarationNameInfo &To);
434     Error ImportDeclContext(DeclContext *FromDC, bool ForceImport = false);
435     Error ImportDeclContext(
436         Decl *From, DeclContext *&ToDC, DeclContext *&ToLexicalDC);
437     Error ImportImplicitMethods(const CXXRecordDecl *From, CXXRecordDecl *To);
438 
439     Expected<CXXCastPath> ImportCastPath(CastExpr *E);
440     Expected<APValue> ImportAPValue(const APValue &FromValue);
441 
442     using Designator = DesignatedInitExpr::Designator;
443 
444     /// What we should import from the definition.
445     enum ImportDefinitionKind {
446       /// Import the default subset of the definition, which might be
447       /// nothing (if minimal import is set) or might be everything (if minimal
448       /// import is not set).
449       IDK_Default,
450       /// Import everything.
451       IDK_Everything,
452       /// Import only the bare bones needed to establish a valid
453       /// DeclContext.
454       IDK_Basic
455     };
456 
457     bool shouldForceImportDeclContext(ImportDefinitionKind IDK) {
458       return IDK == IDK_Everything ||
459              (IDK == IDK_Default && !Importer.isMinimalImport());
460     }
461 
462     Error ImportInitializer(VarDecl *From, VarDecl *To);
463     Error ImportDefinition(
464         RecordDecl *From, RecordDecl *To,
465         ImportDefinitionKind Kind = IDK_Default);
466     Error ImportDefinition(
467         EnumDecl *From, EnumDecl *To,
468         ImportDefinitionKind Kind = IDK_Default);
469     Error ImportDefinition(
470         ObjCInterfaceDecl *From, ObjCInterfaceDecl *To,
471         ImportDefinitionKind Kind = IDK_Default);
472     Error ImportDefinition(
473         ObjCProtocolDecl *From, ObjCProtocolDecl *To,
474         ImportDefinitionKind Kind = IDK_Default);
475     Error ImportTemplateArguments(
476         const TemplateArgument *FromArgs, unsigned NumFromArgs,
477         SmallVectorImpl<TemplateArgument> &ToArgs);
478     Expected<TemplateArgument>
479     ImportTemplateArgument(const TemplateArgument &From);
480 
481     template <typename InContainerTy>
482     Error ImportTemplateArgumentListInfo(
483         const InContainerTy &Container, TemplateArgumentListInfo &ToTAInfo);
484 
485     template<typename InContainerTy>
486     Error ImportTemplateArgumentListInfo(
487       SourceLocation FromLAngleLoc, SourceLocation FromRAngleLoc,
488       const InContainerTy &Container, TemplateArgumentListInfo &Result);
489 
490     using TemplateArgsTy = SmallVector<TemplateArgument, 8>;
491     using FunctionTemplateAndArgsTy =
492         std::tuple<FunctionTemplateDecl *, TemplateArgsTy>;
493     Expected<FunctionTemplateAndArgsTy>
494     ImportFunctionTemplateWithTemplateArgsFromSpecialization(
495         FunctionDecl *FromFD);
496     Error ImportTemplateParameterLists(const DeclaratorDecl *FromD,
497                                        DeclaratorDecl *ToD);
498 
499     Error ImportTemplateInformation(FunctionDecl *FromFD, FunctionDecl *ToFD);
500 
501     Error ImportFunctionDeclBody(FunctionDecl *FromFD, FunctionDecl *ToFD);
502 
503     Error ImportDefaultArgOfParmVarDecl(const ParmVarDecl *FromParam,
504                                         ParmVarDecl *ToParam);
505 
506     Expected<InheritedConstructor>
507     ImportInheritedConstructor(const InheritedConstructor &From);
508 
509     template <typename T>
510     bool hasSameVisibilityContextAndLinkage(T *Found, T *From);
511 
512     bool IsStructuralMatch(Decl *From, Decl *To, bool Complain = true);
513     ExpectedDecl VisitDecl(Decl *D);
514     ExpectedDecl VisitImportDecl(ImportDecl *D);
515     ExpectedDecl VisitEmptyDecl(EmptyDecl *D);
516     ExpectedDecl VisitAccessSpecDecl(AccessSpecDecl *D);
517     ExpectedDecl VisitStaticAssertDecl(StaticAssertDecl *D);
518     ExpectedDecl VisitTranslationUnitDecl(TranslationUnitDecl *D);
519     ExpectedDecl VisitBindingDecl(BindingDecl *D);
520     ExpectedDecl VisitNamespaceDecl(NamespaceDecl *D);
521     ExpectedDecl VisitNamespaceAliasDecl(NamespaceAliasDecl *D);
522     ExpectedDecl VisitTypedefNameDecl(TypedefNameDecl *D, bool IsAlias);
523     ExpectedDecl VisitTypedefDecl(TypedefDecl *D);
524     ExpectedDecl VisitTypeAliasDecl(TypeAliasDecl *D);
525     ExpectedDecl VisitTypeAliasTemplateDecl(TypeAliasTemplateDecl *D);
526     ExpectedDecl VisitLabelDecl(LabelDecl *D);
527     ExpectedDecl VisitEnumDecl(EnumDecl *D);
528     ExpectedDecl VisitRecordDecl(RecordDecl *D);
529     ExpectedDecl VisitEnumConstantDecl(EnumConstantDecl *D);
530     ExpectedDecl VisitFunctionDecl(FunctionDecl *D);
531     ExpectedDecl VisitCXXMethodDecl(CXXMethodDecl *D);
532     ExpectedDecl VisitCXXConstructorDecl(CXXConstructorDecl *D);
533     ExpectedDecl VisitCXXDestructorDecl(CXXDestructorDecl *D);
534     ExpectedDecl VisitCXXConversionDecl(CXXConversionDecl *D);
535     ExpectedDecl VisitCXXDeductionGuideDecl(CXXDeductionGuideDecl *D);
536     ExpectedDecl VisitFieldDecl(FieldDecl *D);
537     ExpectedDecl VisitIndirectFieldDecl(IndirectFieldDecl *D);
538     ExpectedDecl VisitFriendDecl(FriendDecl *D);
539     ExpectedDecl VisitObjCIvarDecl(ObjCIvarDecl *D);
540     ExpectedDecl VisitVarDecl(VarDecl *D);
541     ExpectedDecl VisitImplicitParamDecl(ImplicitParamDecl *D);
542     ExpectedDecl VisitParmVarDecl(ParmVarDecl *D);
543     ExpectedDecl VisitObjCMethodDecl(ObjCMethodDecl *D);
544     ExpectedDecl VisitObjCTypeParamDecl(ObjCTypeParamDecl *D);
545     ExpectedDecl VisitObjCCategoryDecl(ObjCCategoryDecl *D);
546     ExpectedDecl VisitObjCProtocolDecl(ObjCProtocolDecl *D);
547     ExpectedDecl VisitLinkageSpecDecl(LinkageSpecDecl *D);
548     ExpectedDecl VisitUsingDecl(UsingDecl *D);
549     ExpectedDecl VisitUsingShadowDecl(UsingShadowDecl *D);
550     ExpectedDecl VisitUsingDirectiveDecl(UsingDirectiveDecl *D);
551     ExpectedDecl ImportUsingShadowDecls(BaseUsingDecl *D, BaseUsingDecl *ToSI);
552     ExpectedDecl VisitUsingEnumDecl(UsingEnumDecl *D);
553     ExpectedDecl VisitUnresolvedUsingValueDecl(UnresolvedUsingValueDecl *D);
554     ExpectedDecl VisitUnresolvedUsingTypenameDecl(UnresolvedUsingTypenameDecl *D);
555     ExpectedDecl VisitBuiltinTemplateDecl(BuiltinTemplateDecl *D);
556     ExpectedDecl
557     VisitLifetimeExtendedTemporaryDecl(LifetimeExtendedTemporaryDecl *D);
558 
559     Expected<ObjCTypeParamList *>
560     ImportObjCTypeParamList(ObjCTypeParamList *list);
561 
562     ExpectedDecl VisitObjCInterfaceDecl(ObjCInterfaceDecl *D);
563     ExpectedDecl VisitObjCCategoryImplDecl(ObjCCategoryImplDecl *D);
564     ExpectedDecl VisitObjCImplementationDecl(ObjCImplementationDecl *D);
565     ExpectedDecl VisitObjCPropertyDecl(ObjCPropertyDecl *D);
566     ExpectedDecl VisitObjCPropertyImplDecl(ObjCPropertyImplDecl *D);
567     ExpectedDecl VisitTemplateTypeParmDecl(TemplateTypeParmDecl *D);
568     ExpectedDecl VisitNonTypeTemplateParmDecl(NonTypeTemplateParmDecl *D);
569     ExpectedDecl VisitTemplateTemplateParmDecl(TemplateTemplateParmDecl *D);
570     ExpectedDecl VisitClassTemplateDecl(ClassTemplateDecl *D);
571     ExpectedDecl VisitClassTemplateSpecializationDecl(
572                                             ClassTemplateSpecializationDecl *D);
573     ExpectedDecl VisitVarTemplateDecl(VarTemplateDecl *D);
574     ExpectedDecl VisitVarTemplateSpecializationDecl(VarTemplateSpecializationDecl *D);
575     ExpectedDecl VisitFunctionTemplateDecl(FunctionTemplateDecl *D);
576 
577     // Importing statements
578     ExpectedStmt VisitStmt(Stmt *S);
579     ExpectedStmt VisitGCCAsmStmt(GCCAsmStmt *S);
580     ExpectedStmt VisitDeclStmt(DeclStmt *S);
581     ExpectedStmt VisitNullStmt(NullStmt *S);
582     ExpectedStmt VisitCompoundStmt(CompoundStmt *S);
583     ExpectedStmt VisitCaseStmt(CaseStmt *S);
584     ExpectedStmt VisitDefaultStmt(DefaultStmt *S);
585     ExpectedStmt VisitLabelStmt(LabelStmt *S);
586     ExpectedStmt VisitAttributedStmt(AttributedStmt *S);
587     ExpectedStmt VisitIfStmt(IfStmt *S);
588     ExpectedStmt VisitSwitchStmt(SwitchStmt *S);
589     ExpectedStmt VisitWhileStmt(WhileStmt *S);
590     ExpectedStmt VisitDoStmt(DoStmt *S);
591     ExpectedStmt VisitForStmt(ForStmt *S);
592     ExpectedStmt VisitGotoStmt(GotoStmt *S);
593     ExpectedStmt VisitIndirectGotoStmt(IndirectGotoStmt *S);
594     ExpectedStmt VisitContinueStmt(ContinueStmt *S);
595     ExpectedStmt VisitBreakStmt(BreakStmt *S);
596     ExpectedStmt VisitReturnStmt(ReturnStmt *S);
597     // FIXME: MSAsmStmt
598     // FIXME: SEHExceptStmt
599     // FIXME: SEHFinallyStmt
600     // FIXME: SEHTryStmt
601     // FIXME: SEHLeaveStmt
602     // FIXME: CapturedStmt
603     ExpectedStmt VisitCXXCatchStmt(CXXCatchStmt *S);
604     ExpectedStmt VisitCXXTryStmt(CXXTryStmt *S);
605     ExpectedStmt VisitCXXForRangeStmt(CXXForRangeStmt *S);
606     // FIXME: MSDependentExistsStmt
607     ExpectedStmt VisitObjCForCollectionStmt(ObjCForCollectionStmt *S);
608     ExpectedStmt VisitObjCAtCatchStmt(ObjCAtCatchStmt *S);
609     ExpectedStmt VisitObjCAtFinallyStmt(ObjCAtFinallyStmt *S);
610     ExpectedStmt VisitObjCAtTryStmt(ObjCAtTryStmt *S);
611     ExpectedStmt VisitObjCAtSynchronizedStmt(ObjCAtSynchronizedStmt *S);
612     ExpectedStmt VisitObjCAtThrowStmt(ObjCAtThrowStmt *S);
613     ExpectedStmt VisitObjCAutoreleasePoolStmt(ObjCAutoreleasePoolStmt *S);
614 
615     // Importing expressions
616     ExpectedStmt VisitExpr(Expr *E);
617     ExpectedStmt VisitSourceLocExpr(SourceLocExpr *E);
618     ExpectedStmt VisitVAArgExpr(VAArgExpr *E);
619     ExpectedStmt VisitChooseExpr(ChooseExpr *E);
620     ExpectedStmt VisitShuffleVectorExpr(ShuffleVectorExpr *E);
621     ExpectedStmt VisitGNUNullExpr(GNUNullExpr *E);
622     ExpectedStmt VisitGenericSelectionExpr(GenericSelectionExpr *E);
623     ExpectedStmt VisitPredefinedExpr(PredefinedExpr *E);
624     ExpectedStmt VisitDeclRefExpr(DeclRefExpr *E);
625     ExpectedStmt VisitImplicitValueInitExpr(ImplicitValueInitExpr *E);
626     ExpectedStmt VisitDesignatedInitExpr(DesignatedInitExpr *E);
627     ExpectedStmt VisitCXXNullPtrLiteralExpr(CXXNullPtrLiteralExpr *E);
628     ExpectedStmt VisitIntegerLiteral(IntegerLiteral *E);
629     ExpectedStmt VisitFloatingLiteral(FloatingLiteral *E);
630     ExpectedStmt VisitImaginaryLiteral(ImaginaryLiteral *E);
631     ExpectedStmt VisitFixedPointLiteral(FixedPointLiteral *E);
632     ExpectedStmt VisitCharacterLiteral(CharacterLiteral *E);
633     ExpectedStmt VisitStringLiteral(StringLiteral *E);
634     ExpectedStmt VisitCompoundLiteralExpr(CompoundLiteralExpr *E);
635     ExpectedStmt VisitAtomicExpr(AtomicExpr *E);
636     ExpectedStmt VisitAddrLabelExpr(AddrLabelExpr *E);
637     ExpectedStmt VisitConstantExpr(ConstantExpr *E);
638     ExpectedStmt VisitParenExpr(ParenExpr *E);
639     ExpectedStmt VisitParenListExpr(ParenListExpr *E);
640     ExpectedStmt VisitStmtExpr(StmtExpr *E);
641     ExpectedStmt VisitUnaryOperator(UnaryOperator *E);
642     ExpectedStmt VisitUnaryExprOrTypeTraitExpr(UnaryExprOrTypeTraitExpr *E);
643     ExpectedStmt VisitBinaryOperator(BinaryOperator *E);
644     ExpectedStmt VisitConditionalOperator(ConditionalOperator *E);
645     ExpectedStmt VisitBinaryConditionalOperator(BinaryConditionalOperator *E);
646     ExpectedStmt VisitOpaqueValueExpr(OpaqueValueExpr *E);
647     ExpectedStmt VisitArrayTypeTraitExpr(ArrayTypeTraitExpr *E);
648     ExpectedStmt VisitExpressionTraitExpr(ExpressionTraitExpr *E);
649     ExpectedStmt VisitArraySubscriptExpr(ArraySubscriptExpr *E);
650     ExpectedStmt VisitCompoundAssignOperator(CompoundAssignOperator *E);
651     ExpectedStmt VisitImplicitCastExpr(ImplicitCastExpr *E);
652     ExpectedStmt VisitExplicitCastExpr(ExplicitCastExpr *E);
653     ExpectedStmt VisitOffsetOfExpr(OffsetOfExpr *OE);
654     ExpectedStmt VisitCXXThrowExpr(CXXThrowExpr *E);
655     ExpectedStmt VisitCXXNoexceptExpr(CXXNoexceptExpr *E);
656     ExpectedStmt VisitCXXDefaultArgExpr(CXXDefaultArgExpr *E);
657     ExpectedStmt VisitCXXScalarValueInitExpr(CXXScalarValueInitExpr *E);
658     ExpectedStmt VisitCXXBindTemporaryExpr(CXXBindTemporaryExpr *E);
659     ExpectedStmt VisitCXXTemporaryObjectExpr(CXXTemporaryObjectExpr *E);
660     ExpectedStmt VisitMaterializeTemporaryExpr(MaterializeTemporaryExpr *E);
661     ExpectedStmt VisitPackExpansionExpr(PackExpansionExpr *E);
662     ExpectedStmt VisitSizeOfPackExpr(SizeOfPackExpr *E);
663     ExpectedStmt VisitCXXNewExpr(CXXNewExpr *E);
664     ExpectedStmt VisitCXXDeleteExpr(CXXDeleteExpr *E);
665     ExpectedStmt VisitCXXConstructExpr(CXXConstructExpr *E);
666     ExpectedStmt VisitCXXMemberCallExpr(CXXMemberCallExpr *E);
667     ExpectedStmt VisitCXXDependentScopeMemberExpr(CXXDependentScopeMemberExpr *E);
668     ExpectedStmt VisitDependentScopeDeclRefExpr(DependentScopeDeclRefExpr *E);
669     ExpectedStmt VisitCXXUnresolvedConstructExpr(CXXUnresolvedConstructExpr *E);
670     ExpectedStmt VisitUnresolvedLookupExpr(UnresolvedLookupExpr *E);
671     ExpectedStmt VisitUnresolvedMemberExpr(UnresolvedMemberExpr *E);
672     ExpectedStmt VisitExprWithCleanups(ExprWithCleanups *E);
673     ExpectedStmt VisitCXXThisExpr(CXXThisExpr *E);
674     ExpectedStmt VisitCXXBoolLiteralExpr(CXXBoolLiteralExpr *E);
675     ExpectedStmt VisitCXXPseudoDestructorExpr(CXXPseudoDestructorExpr *E);
676     ExpectedStmt VisitMemberExpr(MemberExpr *E);
677     ExpectedStmt VisitCallExpr(CallExpr *E);
678     ExpectedStmt VisitLambdaExpr(LambdaExpr *LE);
679     ExpectedStmt VisitInitListExpr(InitListExpr *E);
680     ExpectedStmt VisitCXXStdInitializerListExpr(CXXStdInitializerListExpr *E);
681     ExpectedStmt VisitCXXInheritedCtorInitExpr(CXXInheritedCtorInitExpr *E);
682     ExpectedStmt VisitArrayInitLoopExpr(ArrayInitLoopExpr *E);
683     ExpectedStmt VisitArrayInitIndexExpr(ArrayInitIndexExpr *E);
684     ExpectedStmt VisitCXXDefaultInitExpr(CXXDefaultInitExpr *E);
685     ExpectedStmt VisitCXXNamedCastExpr(CXXNamedCastExpr *E);
686     ExpectedStmt VisitSubstNonTypeTemplateParmExpr(SubstNonTypeTemplateParmExpr *E);
687     ExpectedStmt VisitTypeTraitExpr(TypeTraitExpr *E);
688     ExpectedStmt VisitCXXTypeidExpr(CXXTypeidExpr *E);
689     ExpectedStmt VisitCXXFoldExpr(CXXFoldExpr *E);
690 
691     // Helper for chaining together multiple imports. If an error is detected,
692     // subsequent imports will return default constructed nodes, so that failure
693     // can be detected with a single conditional branch after a sequence of
694     // imports.
695     template <typename T> T importChecked(Error &Err, const T &From) {
696       // Don't attempt to import nodes if we hit an error earlier.
697       if (Err)
698         return T{};
699       Expected<T> MaybeVal = import(From);
700       if (!MaybeVal) {
701         Err = MaybeVal.takeError();
702         return T{};
703       }
704       return *MaybeVal;
705     }
706 
707     template<typename IIter, typename OIter>
708     Error ImportArrayChecked(IIter Ibegin, IIter Iend, OIter Obegin) {
709       using ItemT = std::remove_reference_t<decltype(*Obegin)>;
710       for (; Ibegin != Iend; ++Ibegin, ++Obegin) {
711         Expected<ItemT> ToOrErr = import(*Ibegin);
712         if (!ToOrErr)
713           return ToOrErr.takeError();
714         *Obegin = *ToOrErr;
715       }
716       return Error::success();
717     }
718 
719     // Import every item from a container structure into an output container.
720     // If error occurs, stops at first error and returns the error.
721     // The output container should have space for all needed elements (it is not
722     // expanded, new items are put into from the beginning).
723     template<typename InContainerTy, typename OutContainerTy>
724     Error ImportContainerChecked(
725         const InContainerTy &InContainer, OutContainerTy &OutContainer) {
726       return ImportArrayChecked(
727           InContainer.begin(), InContainer.end(), OutContainer.begin());
728     }
729 
730     template<typename InContainerTy, typename OIter>
731     Error ImportArrayChecked(const InContainerTy &InContainer, OIter Obegin) {
732       return ImportArrayChecked(InContainer.begin(), InContainer.end(), Obegin);
733     }
734 
735     Error ImportOverriddenMethods(CXXMethodDecl *ToMethod,
736                                   CXXMethodDecl *FromMethod);
737 
738     Expected<FunctionDecl *> FindFunctionTemplateSpecialization(
739         FunctionDecl *FromFD);
740 
741     // Returns true if the given function has a placeholder return type and
742     // that type is declared inside the body of the function.
743     // E.g. auto f() { struct X{}; return X(); }
744     bool hasAutoReturnTypeDeclaredInside(FunctionDecl *D);
745   };
746 
747 template <typename InContainerTy>
748 Error ASTNodeImporter::ImportTemplateArgumentListInfo(
749     SourceLocation FromLAngleLoc, SourceLocation FromRAngleLoc,
750     const InContainerTy &Container, TemplateArgumentListInfo &Result) {
751   auto ToLAngleLocOrErr = import(FromLAngleLoc);
752   if (!ToLAngleLocOrErr)
753     return ToLAngleLocOrErr.takeError();
754   auto ToRAngleLocOrErr = import(FromRAngleLoc);
755   if (!ToRAngleLocOrErr)
756     return ToRAngleLocOrErr.takeError();
757 
758   TemplateArgumentListInfo ToTAInfo(*ToLAngleLocOrErr, *ToRAngleLocOrErr);
759   if (auto Err = ImportTemplateArgumentListInfo(Container, ToTAInfo))
760     return Err;
761   Result = ToTAInfo;
762   return Error::success();
763 }
764 
765 template <>
766 Error ASTNodeImporter::ImportTemplateArgumentListInfo<TemplateArgumentListInfo>(
767     const TemplateArgumentListInfo &From, TemplateArgumentListInfo &Result) {
768   return ImportTemplateArgumentListInfo(
769       From.getLAngleLoc(), From.getRAngleLoc(), From.arguments(), Result);
770 }
771 
772 template <>
773 Error ASTNodeImporter::ImportTemplateArgumentListInfo<
774     ASTTemplateArgumentListInfo>(
775         const ASTTemplateArgumentListInfo &From,
776         TemplateArgumentListInfo &Result) {
777   return ImportTemplateArgumentListInfo(
778       From.LAngleLoc, From.RAngleLoc, From.arguments(), Result);
779 }
780 
781 Expected<ASTNodeImporter::FunctionTemplateAndArgsTy>
782 ASTNodeImporter::ImportFunctionTemplateWithTemplateArgsFromSpecialization(
783     FunctionDecl *FromFD) {
784   assert(FromFD->getTemplatedKind() ==
785       FunctionDecl::TK_FunctionTemplateSpecialization);
786 
787   FunctionTemplateAndArgsTy Result;
788 
789   auto *FTSInfo = FromFD->getTemplateSpecializationInfo();
790   if (Error Err = importInto(std::get<0>(Result), FTSInfo->getTemplate()))
791     return std::move(Err);
792 
793   // Import template arguments.
794   auto TemplArgs = FTSInfo->TemplateArguments->asArray();
795   if (Error Err = ImportTemplateArguments(TemplArgs.data(), TemplArgs.size(),
796       std::get<1>(Result)))
797     return std::move(Err);
798 
799   return Result;
800 }
801 
802 template <>
803 Expected<TemplateParameterList *>
804 ASTNodeImporter::import(TemplateParameterList *From) {
805   SmallVector<NamedDecl *, 4> To(From->size());
806   if (Error Err = ImportContainerChecked(*From, To))
807     return std::move(Err);
808 
809   ExpectedExpr ToRequiresClause = import(From->getRequiresClause());
810   if (!ToRequiresClause)
811     return ToRequiresClause.takeError();
812 
813   auto ToTemplateLocOrErr = import(From->getTemplateLoc());
814   if (!ToTemplateLocOrErr)
815     return ToTemplateLocOrErr.takeError();
816   auto ToLAngleLocOrErr = import(From->getLAngleLoc());
817   if (!ToLAngleLocOrErr)
818     return ToLAngleLocOrErr.takeError();
819   auto ToRAngleLocOrErr = import(From->getRAngleLoc());
820   if (!ToRAngleLocOrErr)
821     return ToRAngleLocOrErr.takeError();
822 
823   return TemplateParameterList::Create(
824       Importer.getToContext(),
825       *ToTemplateLocOrErr,
826       *ToLAngleLocOrErr,
827       To,
828       *ToRAngleLocOrErr,
829       *ToRequiresClause);
830 }
831 
832 template <>
833 Expected<TemplateArgument>
834 ASTNodeImporter::import(const TemplateArgument &From) {
835   switch (From.getKind()) {
836   case TemplateArgument::Null:
837     return TemplateArgument();
838 
839   case TemplateArgument::Type: {
840     ExpectedType ToTypeOrErr = import(From.getAsType());
841     if (!ToTypeOrErr)
842       return ToTypeOrErr.takeError();
843     return TemplateArgument(*ToTypeOrErr);
844   }
845 
846   case TemplateArgument::Integral: {
847     ExpectedType ToTypeOrErr = import(From.getIntegralType());
848     if (!ToTypeOrErr)
849       return ToTypeOrErr.takeError();
850     return TemplateArgument(From, *ToTypeOrErr);
851   }
852 
853   case TemplateArgument::Declaration: {
854     Expected<ValueDecl *> ToOrErr = import(From.getAsDecl());
855     if (!ToOrErr)
856       return ToOrErr.takeError();
857     ExpectedType ToTypeOrErr = import(From.getParamTypeForDecl());
858     if (!ToTypeOrErr)
859       return ToTypeOrErr.takeError();
860     return TemplateArgument(*ToOrErr, *ToTypeOrErr);
861   }
862 
863   case TemplateArgument::NullPtr: {
864     ExpectedType ToTypeOrErr = import(From.getNullPtrType());
865     if (!ToTypeOrErr)
866       return ToTypeOrErr.takeError();
867     return TemplateArgument(*ToTypeOrErr, /*isNullPtr*/true);
868   }
869 
870   case TemplateArgument::Template: {
871     Expected<TemplateName> ToTemplateOrErr = import(From.getAsTemplate());
872     if (!ToTemplateOrErr)
873       return ToTemplateOrErr.takeError();
874 
875     return TemplateArgument(*ToTemplateOrErr);
876   }
877 
878   case TemplateArgument::TemplateExpansion: {
879     Expected<TemplateName> ToTemplateOrErr =
880         import(From.getAsTemplateOrTemplatePattern());
881     if (!ToTemplateOrErr)
882       return ToTemplateOrErr.takeError();
883 
884     return TemplateArgument(
885         *ToTemplateOrErr, From.getNumTemplateExpansions());
886   }
887 
888   case TemplateArgument::Expression:
889     if (ExpectedExpr ToExpr = import(From.getAsExpr()))
890       return TemplateArgument(*ToExpr);
891     else
892       return ToExpr.takeError();
893 
894   case TemplateArgument::Pack: {
895     SmallVector<TemplateArgument, 2> ToPack;
896     ToPack.reserve(From.pack_size());
897     if (Error Err = ImportTemplateArguments(
898         From.pack_begin(), From.pack_size(), ToPack))
899       return std::move(Err);
900 
901     return TemplateArgument(
902         llvm::makeArrayRef(ToPack).copy(Importer.getToContext()));
903   }
904   }
905 
906   llvm_unreachable("Invalid template argument kind");
907 }
908 
909 template <>
910 Expected<TemplateArgumentLoc>
911 ASTNodeImporter::import(const TemplateArgumentLoc &TALoc) {
912   Expected<TemplateArgument> ArgOrErr = import(TALoc.getArgument());
913   if (!ArgOrErr)
914     return ArgOrErr.takeError();
915   TemplateArgument Arg = *ArgOrErr;
916 
917   TemplateArgumentLocInfo FromInfo = TALoc.getLocInfo();
918 
919   TemplateArgumentLocInfo ToInfo;
920   if (Arg.getKind() == TemplateArgument::Expression) {
921     ExpectedExpr E = import(FromInfo.getAsExpr());
922     if (!E)
923       return E.takeError();
924     ToInfo = TemplateArgumentLocInfo(*E);
925   } else if (Arg.getKind() == TemplateArgument::Type) {
926     if (auto TSIOrErr = import(FromInfo.getAsTypeSourceInfo()))
927       ToInfo = TemplateArgumentLocInfo(*TSIOrErr);
928     else
929       return TSIOrErr.takeError();
930   } else {
931     auto ToTemplateQualifierLocOrErr =
932         import(FromInfo.getTemplateQualifierLoc());
933     if (!ToTemplateQualifierLocOrErr)
934       return ToTemplateQualifierLocOrErr.takeError();
935     auto ToTemplateNameLocOrErr = import(FromInfo.getTemplateNameLoc());
936     if (!ToTemplateNameLocOrErr)
937       return ToTemplateNameLocOrErr.takeError();
938     auto ToTemplateEllipsisLocOrErr =
939         import(FromInfo.getTemplateEllipsisLoc());
940     if (!ToTemplateEllipsisLocOrErr)
941       return ToTemplateEllipsisLocOrErr.takeError();
942     ToInfo = TemplateArgumentLocInfo(
943         Importer.getToContext(), *ToTemplateQualifierLocOrErr,
944         *ToTemplateNameLocOrErr, *ToTemplateEllipsisLocOrErr);
945   }
946 
947   return TemplateArgumentLoc(Arg, ToInfo);
948 }
949 
950 template <>
951 Expected<DeclGroupRef> ASTNodeImporter::import(const DeclGroupRef &DG) {
952   if (DG.isNull())
953     return DeclGroupRef::Create(Importer.getToContext(), nullptr, 0);
954   size_t NumDecls = DG.end() - DG.begin();
955   SmallVector<Decl *, 1> ToDecls;
956   ToDecls.reserve(NumDecls);
957   for (Decl *FromD : DG) {
958     if (auto ToDOrErr = import(FromD))
959       ToDecls.push_back(*ToDOrErr);
960     else
961       return ToDOrErr.takeError();
962   }
963   return DeclGroupRef::Create(Importer.getToContext(),
964                               ToDecls.begin(),
965                               NumDecls);
966 }
967 
968 template <>
969 Expected<ASTNodeImporter::Designator>
970 ASTNodeImporter::import(const Designator &D) {
971   if (D.isFieldDesignator()) {
972     IdentifierInfo *ToFieldName = Importer.Import(D.getFieldName());
973 
974     ExpectedSLoc ToDotLocOrErr = import(D.getDotLoc());
975     if (!ToDotLocOrErr)
976       return ToDotLocOrErr.takeError();
977 
978     ExpectedSLoc ToFieldLocOrErr = import(D.getFieldLoc());
979     if (!ToFieldLocOrErr)
980       return ToFieldLocOrErr.takeError();
981 
982     return Designator(ToFieldName, *ToDotLocOrErr, *ToFieldLocOrErr);
983   }
984 
985   ExpectedSLoc ToLBracketLocOrErr = import(D.getLBracketLoc());
986   if (!ToLBracketLocOrErr)
987     return ToLBracketLocOrErr.takeError();
988 
989   ExpectedSLoc ToRBracketLocOrErr = import(D.getRBracketLoc());
990   if (!ToRBracketLocOrErr)
991     return ToRBracketLocOrErr.takeError();
992 
993   if (D.isArrayDesignator())
994     return Designator(D.getFirstExprIndex(),
995                       *ToLBracketLocOrErr, *ToRBracketLocOrErr);
996 
997   ExpectedSLoc ToEllipsisLocOrErr = import(D.getEllipsisLoc());
998   if (!ToEllipsisLocOrErr)
999     return ToEllipsisLocOrErr.takeError();
1000 
1001   assert(D.isArrayRangeDesignator());
1002   return Designator(
1003       D.getFirstExprIndex(), *ToLBracketLocOrErr, *ToEllipsisLocOrErr,
1004       *ToRBracketLocOrErr);
1005 }
1006 
1007 template <>
1008 Expected<LambdaCapture> ASTNodeImporter::import(const LambdaCapture &From) {
1009   VarDecl *Var = nullptr;
1010   if (From.capturesVariable()) {
1011     if (auto VarOrErr = import(From.getCapturedVar()))
1012       Var = *VarOrErr;
1013     else
1014       return VarOrErr.takeError();
1015   }
1016 
1017   auto LocationOrErr = import(From.getLocation());
1018   if (!LocationOrErr)
1019     return LocationOrErr.takeError();
1020 
1021   SourceLocation EllipsisLoc;
1022   if (From.isPackExpansion())
1023     if (Error Err = importInto(EllipsisLoc, From.getEllipsisLoc()))
1024       return std::move(Err);
1025 
1026   return LambdaCapture(
1027       *LocationOrErr, From.isImplicit(), From.getCaptureKind(), Var,
1028       EllipsisLoc);
1029 }
1030 
1031 template <typename T>
1032 bool ASTNodeImporter::hasSameVisibilityContextAndLinkage(T *Found, T *From) {
1033   if (Found->getLinkageInternal() != From->getLinkageInternal())
1034     return false;
1035 
1036   if (From->hasExternalFormalLinkage())
1037     return Found->hasExternalFormalLinkage();
1038   if (Importer.GetFromTU(Found) != From->getTranslationUnitDecl())
1039     return false;
1040   if (From->isInAnonymousNamespace())
1041     return Found->isInAnonymousNamespace();
1042   else
1043     return !Found->isInAnonymousNamespace() &&
1044            !Found->hasExternalFormalLinkage();
1045 }
1046 
1047 template <>
1048 bool ASTNodeImporter::hasSameVisibilityContextAndLinkage(TypedefNameDecl *Found,
1049                                                TypedefNameDecl *From) {
1050   if (Found->getLinkageInternal() != From->getLinkageInternal())
1051     return false;
1052 
1053   if (From->isInAnonymousNamespace() && Found->isInAnonymousNamespace())
1054     return Importer.GetFromTU(Found) == From->getTranslationUnitDecl();
1055   return From->isInAnonymousNamespace() == Found->isInAnonymousNamespace();
1056 }
1057 
1058 } // namespace clang
1059 
1060 //----------------------------------------------------------------------------
1061 // Import Types
1062 //----------------------------------------------------------------------------
1063 
1064 using namespace clang;
1065 
1066 ExpectedType ASTNodeImporter::VisitType(const Type *T) {
1067   Importer.FromDiag(SourceLocation(), diag::err_unsupported_ast_node)
1068     << T->getTypeClassName();
1069   return make_error<ImportError>(ImportError::UnsupportedConstruct);
1070 }
1071 
1072 ExpectedType ASTNodeImporter::VisitAtomicType(const AtomicType *T){
1073   ExpectedType UnderlyingTypeOrErr = import(T->getValueType());
1074   if (!UnderlyingTypeOrErr)
1075     return UnderlyingTypeOrErr.takeError();
1076 
1077   return Importer.getToContext().getAtomicType(*UnderlyingTypeOrErr);
1078 }
1079 
1080 ExpectedType ASTNodeImporter::VisitBuiltinType(const BuiltinType *T) {
1081   switch (T->getKind()) {
1082 #define IMAGE_TYPE(ImgType, Id, SingletonId, Access, Suffix) \
1083   case BuiltinType::Id: \
1084     return Importer.getToContext().SingletonId;
1085 #include "clang/Basic/OpenCLImageTypes.def"
1086 #define EXT_OPAQUE_TYPE(ExtType, Id, Ext) \
1087   case BuiltinType::Id: \
1088     return Importer.getToContext().Id##Ty;
1089 #include "clang/Basic/OpenCLExtensionTypes.def"
1090 #define SVE_TYPE(Name, Id, SingletonId) \
1091   case BuiltinType::Id: \
1092     return Importer.getToContext().SingletonId;
1093 #include "clang/Basic/AArch64SVEACLETypes.def"
1094 #define PPC_VECTOR_TYPE(Name, Id, Size) \
1095   case BuiltinType::Id: \
1096     return Importer.getToContext().Id##Ty;
1097 #include "clang/Basic/PPCTypes.def"
1098 #define RVV_TYPE(Name, Id, SingletonId)                                        \
1099   case BuiltinType::Id:                                                        \
1100     return Importer.getToContext().SingletonId;
1101 #include "clang/Basic/RISCVVTypes.def"
1102 #define SHARED_SINGLETON_TYPE(Expansion)
1103 #define BUILTIN_TYPE(Id, SingletonId) \
1104   case BuiltinType::Id: return Importer.getToContext().SingletonId;
1105 #include "clang/AST/BuiltinTypes.def"
1106 
1107   // FIXME: for Char16, Char32, and NullPtr, make sure that the "to"
1108   // context supports C++.
1109 
1110   // FIXME: for ObjCId, ObjCClass, and ObjCSel, make sure that the "to"
1111   // context supports ObjC.
1112 
1113   case BuiltinType::Char_U:
1114     // The context we're importing from has an unsigned 'char'. If we're
1115     // importing into a context with a signed 'char', translate to
1116     // 'unsigned char' instead.
1117     if (Importer.getToContext().getLangOpts().CharIsSigned)
1118       return Importer.getToContext().UnsignedCharTy;
1119 
1120     return Importer.getToContext().CharTy;
1121 
1122   case BuiltinType::Char_S:
1123     // The context we're importing from has an unsigned 'char'. If we're
1124     // importing into a context with a signed 'char', translate to
1125     // 'unsigned char' instead.
1126     if (!Importer.getToContext().getLangOpts().CharIsSigned)
1127       return Importer.getToContext().SignedCharTy;
1128 
1129     return Importer.getToContext().CharTy;
1130 
1131   case BuiltinType::WChar_S:
1132   case BuiltinType::WChar_U:
1133     // FIXME: If not in C++, shall we translate to the C equivalent of
1134     // wchar_t?
1135     return Importer.getToContext().WCharTy;
1136   }
1137 
1138   llvm_unreachable("Invalid BuiltinType Kind!");
1139 }
1140 
1141 ExpectedType ASTNodeImporter::VisitDecayedType(const DecayedType *T) {
1142   ExpectedType ToOriginalTypeOrErr = import(T->getOriginalType());
1143   if (!ToOriginalTypeOrErr)
1144     return ToOriginalTypeOrErr.takeError();
1145 
1146   return Importer.getToContext().getDecayedType(*ToOriginalTypeOrErr);
1147 }
1148 
1149 ExpectedType ASTNodeImporter::VisitComplexType(const ComplexType *T) {
1150   ExpectedType ToElementTypeOrErr = import(T->getElementType());
1151   if (!ToElementTypeOrErr)
1152     return ToElementTypeOrErr.takeError();
1153 
1154   return Importer.getToContext().getComplexType(*ToElementTypeOrErr);
1155 }
1156 
1157 ExpectedType ASTNodeImporter::VisitPointerType(const PointerType *T) {
1158   ExpectedType ToPointeeTypeOrErr = import(T->getPointeeType());
1159   if (!ToPointeeTypeOrErr)
1160     return ToPointeeTypeOrErr.takeError();
1161 
1162   return Importer.getToContext().getPointerType(*ToPointeeTypeOrErr);
1163 }
1164 
1165 ExpectedType ASTNodeImporter::VisitBlockPointerType(const BlockPointerType *T) {
1166   // FIXME: Check for blocks support in "to" context.
1167   ExpectedType ToPointeeTypeOrErr = import(T->getPointeeType());
1168   if (!ToPointeeTypeOrErr)
1169     return ToPointeeTypeOrErr.takeError();
1170 
1171   return Importer.getToContext().getBlockPointerType(*ToPointeeTypeOrErr);
1172 }
1173 
1174 ExpectedType
1175 ASTNodeImporter::VisitLValueReferenceType(const LValueReferenceType *T) {
1176   // FIXME: Check for C++ support in "to" context.
1177   ExpectedType ToPointeeTypeOrErr = import(T->getPointeeTypeAsWritten());
1178   if (!ToPointeeTypeOrErr)
1179     return ToPointeeTypeOrErr.takeError();
1180 
1181   return Importer.getToContext().getLValueReferenceType(*ToPointeeTypeOrErr);
1182 }
1183 
1184 ExpectedType
1185 ASTNodeImporter::VisitRValueReferenceType(const RValueReferenceType *T) {
1186   // FIXME: Check for C++0x support in "to" context.
1187   ExpectedType ToPointeeTypeOrErr = import(T->getPointeeTypeAsWritten());
1188   if (!ToPointeeTypeOrErr)
1189     return ToPointeeTypeOrErr.takeError();
1190 
1191   return Importer.getToContext().getRValueReferenceType(*ToPointeeTypeOrErr);
1192 }
1193 
1194 ExpectedType
1195 ASTNodeImporter::VisitMemberPointerType(const MemberPointerType *T) {
1196   // FIXME: Check for C++ support in "to" context.
1197   ExpectedType ToPointeeTypeOrErr = import(T->getPointeeType());
1198   if (!ToPointeeTypeOrErr)
1199     return ToPointeeTypeOrErr.takeError();
1200 
1201   ExpectedTypePtr ClassTypeOrErr = import(T->getClass());
1202   if (!ClassTypeOrErr)
1203     return ClassTypeOrErr.takeError();
1204 
1205   return Importer.getToContext().getMemberPointerType(*ToPointeeTypeOrErr,
1206                                                       *ClassTypeOrErr);
1207 }
1208 
1209 ExpectedType
1210 ASTNodeImporter::VisitConstantArrayType(const ConstantArrayType *T) {
1211   Error Err = Error::success();
1212   auto ToElementType = importChecked(Err, T->getElementType());
1213   auto ToSizeExpr = importChecked(Err, T->getSizeExpr());
1214   if (Err)
1215     return std::move(Err);
1216 
1217   return Importer.getToContext().getConstantArrayType(
1218       ToElementType, T->getSize(), ToSizeExpr, T->getSizeModifier(),
1219       T->getIndexTypeCVRQualifiers());
1220 }
1221 
1222 ExpectedType
1223 ASTNodeImporter::VisitIncompleteArrayType(const IncompleteArrayType *T) {
1224   ExpectedType ToElementTypeOrErr = import(T->getElementType());
1225   if (!ToElementTypeOrErr)
1226     return ToElementTypeOrErr.takeError();
1227 
1228   return Importer.getToContext().getIncompleteArrayType(*ToElementTypeOrErr,
1229                                                         T->getSizeModifier(),
1230                                                 T->getIndexTypeCVRQualifiers());
1231 }
1232 
1233 ExpectedType
1234 ASTNodeImporter::VisitVariableArrayType(const VariableArrayType *T) {
1235   Error Err = Error::success();
1236   QualType ToElementType = importChecked(Err, T->getElementType());
1237   Expr *ToSizeExpr = importChecked(Err, T->getSizeExpr());
1238   SourceRange ToBracketsRange = importChecked(Err, T->getBracketsRange());
1239   if (Err)
1240     return std::move(Err);
1241   return Importer.getToContext().getVariableArrayType(
1242       ToElementType, ToSizeExpr, T->getSizeModifier(),
1243       T->getIndexTypeCVRQualifiers(), ToBracketsRange);
1244 }
1245 
1246 ExpectedType ASTNodeImporter::VisitDependentSizedArrayType(
1247     const DependentSizedArrayType *T) {
1248   Error Err = Error::success();
1249   QualType ToElementType = importChecked(Err, T->getElementType());
1250   Expr *ToSizeExpr = importChecked(Err, T->getSizeExpr());
1251   SourceRange ToBracketsRange = importChecked(Err, T->getBracketsRange());
1252   if (Err)
1253     return std::move(Err);
1254   // SizeExpr may be null if size is not specified directly.
1255   // For example, 'int a[]'.
1256 
1257   return Importer.getToContext().getDependentSizedArrayType(
1258       ToElementType, ToSizeExpr, T->getSizeModifier(),
1259       T->getIndexTypeCVRQualifiers(), ToBracketsRange);
1260 }
1261 
1262 ExpectedType ASTNodeImporter::VisitVectorType(const VectorType *T) {
1263   ExpectedType ToElementTypeOrErr = import(T->getElementType());
1264   if (!ToElementTypeOrErr)
1265     return ToElementTypeOrErr.takeError();
1266 
1267   return Importer.getToContext().getVectorType(*ToElementTypeOrErr,
1268                                                T->getNumElements(),
1269                                                T->getVectorKind());
1270 }
1271 
1272 ExpectedType ASTNodeImporter::VisitExtVectorType(const ExtVectorType *T) {
1273   ExpectedType ToElementTypeOrErr = import(T->getElementType());
1274   if (!ToElementTypeOrErr)
1275     return ToElementTypeOrErr.takeError();
1276 
1277   return Importer.getToContext().getExtVectorType(*ToElementTypeOrErr,
1278                                                   T->getNumElements());
1279 }
1280 
1281 ExpectedType
1282 ASTNodeImporter::VisitFunctionNoProtoType(const FunctionNoProtoType *T) {
1283   // FIXME: What happens if we're importing a function without a prototype
1284   // into C++? Should we make it variadic?
1285   ExpectedType ToReturnTypeOrErr = import(T->getReturnType());
1286   if (!ToReturnTypeOrErr)
1287     return ToReturnTypeOrErr.takeError();
1288 
1289   return Importer.getToContext().getFunctionNoProtoType(*ToReturnTypeOrErr,
1290                                                         T->getExtInfo());
1291 }
1292 
1293 ExpectedType
1294 ASTNodeImporter::VisitFunctionProtoType(const FunctionProtoType *T) {
1295   ExpectedType ToReturnTypeOrErr = import(T->getReturnType());
1296   if (!ToReturnTypeOrErr)
1297     return ToReturnTypeOrErr.takeError();
1298 
1299   // Import argument types
1300   SmallVector<QualType, 4> ArgTypes;
1301   for (const auto &A : T->param_types()) {
1302     ExpectedType TyOrErr = import(A);
1303     if (!TyOrErr)
1304       return TyOrErr.takeError();
1305     ArgTypes.push_back(*TyOrErr);
1306   }
1307 
1308   // Import exception types
1309   SmallVector<QualType, 4> ExceptionTypes;
1310   for (const auto &E : T->exceptions()) {
1311     ExpectedType TyOrErr = import(E);
1312     if (!TyOrErr)
1313       return TyOrErr.takeError();
1314     ExceptionTypes.push_back(*TyOrErr);
1315   }
1316 
1317   FunctionProtoType::ExtProtoInfo FromEPI = T->getExtProtoInfo();
1318   Error Err = Error::success();
1319   FunctionProtoType::ExtProtoInfo ToEPI;
1320   ToEPI.ExtInfo = FromEPI.ExtInfo;
1321   ToEPI.Variadic = FromEPI.Variadic;
1322   ToEPI.HasTrailingReturn = FromEPI.HasTrailingReturn;
1323   ToEPI.TypeQuals = FromEPI.TypeQuals;
1324   ToEPI.RefQualifier = FromEPI.RefQualifier;
1325   ToEPI.ExceptionSpec.Type = FromEPI.ExceptionSpec.Type;
1326   ToEPI.ExceptionSpec.NoexceptExpr =
1327       importChecked(Err, FromEPI.ExceptionSpec.NoexceptExpr);
1328   ToEPI.ExceptionSpec.SourceDecl =
1329       importChecked(Err, FromEPI.ExceptionSpec.SourceDecl);
1330   ToEPI.ExceptionSpec.SourceTemplate =
1331       importChecked(Err, FromEPI.ExceptionSpec.SourceTemplate);
1332   ToEPI.ExceptionSpec.Exceptions = ExceptionTypes;
1333 
1334   if (Err)
1335     return std::move(Err);
1336 
1337   return Importer.getToContext().getFunctionType(
1338       *ToReturnTypeOrErr, ArgTypes, ToEPI);
1339 }
1340 
1341 ExpectedType ASTNodeImporter::VisitUnresolvedUsingType(
1342     const UnresolvedUsingType *T) {
1343   Error Err = Error::success();
1344   auto ToD = importChecked(Err, T->getDecl());
1345   auto ToPrevD = importChecked(Err, T->getDecl()->getPreviousDecl());
1346   if (Err)
1347     return std::move(Err);
1348 
1349   return Importer.getToContext().getTypeDeclType(
1350       ToD, cast_or_null<TypeDecl>(ToPrevD));
1351 }
1352 
1353 ExpectedType ASTNodeImporter::VisitParenType(const ParenType *T) {
1354   ExpectedType ToInnerTypeOrErr = import(T->getInnerType());
1355   if (!ToInnerTypeOrErr)
1356     return ToInnerTypeOrErr.takeError();
1357 
1358   return Importer.getToContext().getParenType(*ToInnerTypeOrErr);
1359 }
1360 
1361 ExpectedType ASTNodeImporter::VisitTypedefType(const TypedefType *T) {
1362   Expected<TypedefNameDecl *> ToDeclOrErr = import(T->getDecl());
1363   if (!ToDeclOrErr)
1364     return ToDeclOrErr.takeError();
1365 
1366   return Importer.getToContext().getTypeDeclType(*ToDeclOrErr);
1367 }
1368 
1369 ExpectedType ASTNodeImporter::VisitTypeOfExprType(const TypeOfExprType *T) {
1370   ExpectedExpr ToExprOrErr = import(T->getUnderlyingExpr());
1371   if (!ToExprOrErr)
1372     return ToExprOrErr.takeError();
1373 
1374   return Importer.getToContext().getTypeOfExprType(*ToExprOrErr);
1375 }
1376 
1377 ExpectedType ASTNodeImporter::VisitTypeOfType(const TypeOfType *T) {
1378   ExpectedType ToUnderlyingTypeOrErr = import(T->getUnderlyingType());
1379   if (!ToUnderlyingTypeOrErr)
1380     return ToUnderlyingTypeOrErr.takeError();
1381 
1382   return Importer.getToContext().getTypeOfType(*ToUnderlyingTypeOrErr);
1383 }
1384 
1385 ExpectedType ASTNodeImporter::VisitUsingType(const UsingType *T) {
1386   Expected<UsingShadowDecl *> FoundOrErr = import(T->getFoundDecl());
1387   if (!FoundOrErr)
1388     return FoundOrErr.takeError();
1389   Expected<QualType> UnderlyingOrErr = import(T->getUnderlyingType());
1390   if (!UnderlyingOrErr)
1391     return UnderlyingOrErr.takeError();
1392 
1393   return Importer.getToContext().getUsingType(*FoundOrErr, *UnderlyingOrErr);
1394 }
1395 
1396 ExpectedType ASTNodeImporter::VisitDecltypeType(const DecltypeType *T) {
1397   // FIXME: Make sure that the "to" context supports C++0x!
1398   ExpectedExpr ToExprOrErr = import(T->getUnderlyingExpr());
1399   if (!ToExprOrErr)
1400     return ToExprOrErr.takeError();
1401 
1402   ExpectedType ToUnderlyingTypeOrErr = import(T->getUnderlyingType());
1403   if (!ToUnderlyingTypeOrErr)
1404     return ToUnderlyingTypeOrErr.takeError();
1405 
1406   return Importer.getToContext().getDecltypeType(
1407       *ToExprOrErr, *ToUnderlyingTypeOrErr);
1408 }
1409 
1410 ExpectedType
1411 ASTNodeImporter::VisitUnaryTransformType(const UnaryTransformType *T) {
1412   ExpectedType ToBaseTypeOrErr = import(T->getBaseType());
1413   if (!ToBaseTypeOrErr)
1414     return ToBaseTypeOrErr.takeError();
1415 
1416   ExpectedType ToUnderlyingTypeOrErr = import(T->getUnderlyingType());
1417   if (!ToUnderlyingTypeOrErr)
1418     return ToUnderlyingTypeOrErr.takeError();
1419 
1420   return Importer.getToContext().getUnaryTransformType(
1421       *ToBaseTypeOrErr, *ToUnderlyingTypeOrErr, T->getUTTKind());
1422 }
1423 
1424 ExpectedType ASTNodeImporter::VisitAutoType(const AutoType *T) {
1425   // FIXME: Make sure that the "to" context supports C++11!
1426   ExpectedType ToDeducedTypeOrErr = import(T->getDeducedType());
1427   if (!ToDeducedTypeOrErr)
1428     return ToDeducedTypeOrErr.takeError();
1429 
1430   ExpectedDecl ToTypeConstraintConcept = import(T->getTypeConstraintConcept());
1431   if (!ToTypeConstraintConcept)
1432     return ToTypeConstraintConcept.takeError();
1433 
1434   SmallVector<TemplateArgument, 2> ToTemplateArgs;
1435   ArrayRef<TemplateArgument> FromTemplateArgs = T->getTypeConstraintArguments();
1436   if (Error Err = ImportTemplateArguments(FromTemplateArgs.data(),
1437                                           FromTemplateArgs.size(),
1438                                           ToTemplateArgs))
1439     return std::move(Err);
1440 
1441   return Importer.getToContext().getAutoType(
1442       *ToDeducedTypeOrErr, T->getKeyword(), /*IsDependent*/false,
1443       /*IsPack=*/false, cast_or_null<ConceptDecl>(*ToTypeConstraintConcept),
1444       ToTemplateArgs);
1445 }
1446 
1447 ExpectedType ASTNodeImporter::VisitDeducedTemplateSpecializationType(
1448     const DeducedTemplateSpecializationType *T) {
1449   // FIXME: Make sure that the "to" context supports C++17!
1450   Expected<TemplateName> ToTemplateNameOrErr = import(T->getTemplateName());
1451   if (!ToTemplateNameOrErr)
1452     return ToTemplateNameOrErr.takeError();
1453   ExpectedType ToDeducedTypeOrErr = import(T->getDeducedType());
1454   if (!ToDeducedTypeOrErr)
1455     return ToDeducedTypeOrErr.takeError();
1456 
1457   return Importer.getToContext().getDeducedTemplateSpecializationType(
1458       *ToTemplateNameOrErr, *ToDeducedTypeOrErr, T->isDependentType());
1459 }
1460 
1461 ExpectedType ASTNodeImporter::VisitInjectedClassNameType(
1462     const InjectedClassNameType *T) {
1463   Expected<CXXRecordDecl *> ToDeclOrErr = import(T->getDecl());
1464   if (!ToDeclOrErr)
1465     return ToDeclOrErr.takeError();
1466 
1467   ExpectedType ToInjTypeOrErr = import(T->getInjectedSpecializationType());
1468   if (!ToInjTypeOrErr)
1469     return ToInjTypeOrErr.takeError();
1470 
1471   // FIXME: ASTContext::getInjectedClassNameType is not suitable for AST reading
1472   // See comments in InjectedClassNameType definition for details
1473   // return Importer.getToContext().getInjectedClassNameType(D, InjType);
1474   enum {
1475     TypeAlignmentInBits = 4,
1476     TypeAlignment = 1 << TypeAlignmentInBits
1477   };
1478 
1479   return QualType(new (Importer.getToContext(), TypeAlignment)
1480                   InjectedClassNameType(*ToDeclOrErr, *ToInjTypeOrErr), 0);
1481 }
1482 
1483 ExpectedType ASTNodeImporter::VisitRecordType(const RecordType *T) {
1484   Expected<RecordDecl *> ToDeclOrErr = import(T->getDecl());
1485   if (!ToDeclOrErr)
1486     return ToDeclOrErr.takeError();
1487 
1488   return Importer.getToContext().getTagDeclType(*ToDeclOrErr);
1489 }
1490 
1491 ExpectedType ASTNodeImporter::VisitEnumType(const EnumType *T) {
1492   Expected<EnumDecl *> ToDeclOrErr = import(T->getDecl());
1493   if (!ToDeclOrErr)
1494     return ToDeclOrErr.takeError();
1495 
1496   return Importer.getToContext().getTagDeclType(*ToDeclOrErr);
1497 }
1498 
1499 ExpectedType ASTNodeImporter::VisitAttributedType(const AttributedType *T) {
1500   ExpectedType ToModifiedTypeOrErr = import(T->getModifiedType());
1501   if (!ToModifiedTypeOrErr)
1502     return ToModifiedTypeOrErr.takeError();
1503   ExpectedType ToEquivalentTypeOrErr = import(T->getEquivalentType());
1504   if (!ToEquivalentTypeOrErr)
1505     return ToEquivalentTypeOrErr.takeError();
1506 
1507   return Importer.getToContext().getAttributedType(T->getAttrKind(),
1508       *ToModifiedTypeOrErr, *ToEquivalentTypeOrErr);
1509 }
1510 
1511 ExpectedType ASTNodeImporter::VisitTemplateTypeParmType(
1512     const TemplateTypeParmType *T) {
1513   Expected<TemplateTypeParmDecl *> ToDeclOrErr = import(T->getDecl());
1514   if (!ToDeclOrErr)
1515     return ToDeclOrErr.takeError();
1516 
1517   return Importer.getToContext().getTemplateTypeParmType(
1518       T->getDepth(), T->getIndex(), T->isParameterPack(), *ToDeclOrErr);
1519 }
1520 
1521 ExpectedType ASTNodeImporter::VisitSubstTemplateTypeParmType(
1522     const SubstTemplateTypeParmType *T) {
1523   Expected<const TemplateTypeParmType *> ReplacedOrErr =
1524       import(T->getReplacedParameter());
1525   if (!ReplacedOrErr)
1526     return ReplacedOrErr.takeError();
1527 
1528   ExpectedType ToReplacementTypeOrErr = import(T->getReplacementType());
1529   if (!ToReplacementTypeOrErr)
1530     return ToReplacementTypeOrErr.takeError();
1531 
1532   return Importer.getToContext().getSubstTemplateTypeParmType(
1533       *ReplacedOrErr, ToReplacementTypeOrErr->getCanonicalType());
1534 }
1535 
1536 ExpectedType ASTNodeImporter::VisitSubstTemplateTypeParmPackType(
1537     const SubstTemplateTypeParmPackType *T) {
1538   Expected<const TemplateTypeParmType *> ReplacedOrErr =
1539       import(T->getReplacedParameter());
1540   if (!ReplacedOrErr)
1541     return ReplacedOrErr.takeError();
1542 
1543   Expected<TemplateArgument> ToArgumentPack = import(T->getArgumentPack());
1544   if (!ToArgumentPack)
1545     return ToArgumentPack.takeError();
1546 
1547   return Importer.getToContext().getSubstTemplateTypeParmPackType(
1548       *ReplacedOrErr, *ToArgumentPack);
1549 }
1550 
1551 ExpectedType ASTNodeImporter::VisitTemplateSpecializationType(
1552                                        const TemplateSpecializationType *T) {
1553   auto ToTemplateOrErr = import(T->getTemplateName());
1554   if (!ToTemplateOrErr)
1555     return ToTemplateOrErr.takeError();
1556 
1557   SmallVector<TemplateArgument, 2> ToTemplateArgs;
1558   if (Error Err = ImportTemplateArguments(
1559       T->getArgs(), T->getNumArgs(), ToTemplateArgs))
1560     return std::move(Err);
1561 
1562   QualType ToCanonType;
1563   if (!T->isCanonicalUnqualified()) {
1564     QualType FromCanonType
1565       = Importer.getFromContext().getCanonicalType(QualType(T, 0));
1566     if (ExpectedType TyOrErr = import(FromCanonType))
1567       ToCanonType = *TyOrErr;
1568     else
1569       return TyOrErr.takeError();
1570   }
1571   return Importer.getToContext().getTemplateSpecializationType(*ToTemplateOrErr,
1572                                                                ToTemplateArgs,
1573                                                                ToCanonType);
1574 }
1575 
1576 ExpectedType ASTNodeImporter::VisitElaboratedType(const ElaboratedType *T) {
1577   // Note: the qualifier in an ElaboratedType is optional.
1578   auto ToQualifierOrErr = import(T->getQualifier());
1579   if (!ToQualifierOrErr)
1580     return ToQualifierOrErr.takeError();
1581 
1582   ExpectedType ToNamedTypeOrErr = import(T->getNamedType());
1583   if (!ToNamedTypeOrErr)
1584     return ToNamedTypeOrErr.takeError();
1585 
1586   Expected<TagDecl *> ToOwnedTagDeclOrErr = import(T->getOwnedTagDecl());
1587   if (!ToOwnedTagDeclOrErr)
1588     return ToOwnedTagDeclOrErr.takeError();
1589 
1590   return Importer.getToContext().getElaboratedType(T->getKeyword(),
1591                                                    *ToQualifierOrErr,
1592                                                    *ToNamedTypeOrErr,
1593                                                    *ToOwnedTagDeclOrErr);
1594 }
1595 
1596 ExpectedType
1597 ASTNodeImporter::VisitPackExpansionType(const PackExpansionType *T) {
1598   ExpectedType ToPatternOrErr = import(T->getPattern());
1599   if (!ToPatternOrErr)
1600     return ToPatternOrErr.takeError();
1601 
1602   return Importer.getToContext().getPackExpansionType(*ToPatternOrErr,
1603                                                       T->getNumExpansions(),
1604                                                       /*ExpactPack=*/false);
1605 }
1606 
1607 ExpectedType ASTNodeImporter::VisitDependentTemplateSpecializationType(
1608     const DependentTemplateSpecializationType *T) {
1609   auto ToQualifierOrErr = import(T->getQualifier());
1610   if (!ToQualifierOrErr)
1611     return ToQualifierOrErr.takeError();
1612 
1613   IdentifierInfo *ToName = Importer.Import(T->getIdentifier());
1614 
1615   SmallVector<TemplateArgument, 2> ToPack;
1616   ToPack.reserve(T->getNumArgs());
1617   if (Error Err = ImportTemplateArguments(
1618       T->getArgs(), T->getNumArgs(), ToPack))
1619     return std::move(Err);
1620 
1621   return Importer.getToContext().getDependentTemplateSpecializationType(
1622       T->getKeyword(), *ToQualifierOrErr, ToName, ToPack);
1623 }
1624 
1625 ExpectedType
1626 ASTNodeImporter::VisitDependentNameType(const DependentNameType *T) {
1627   auto ToQualifierOrErr = import(T->getQualifier());
1628   if (!ToQualifierOrErr)
1629     return ToQualifierOrErr.takeError();
1630 
1631   IdentifierInfo *Name = Importer.Import(T->getIdentifier());
1632 
1633   QualType Canon;
1634   if (T != T->getCanonicalTypeInternal().getTypePtr()) {
1635     if (ExpectedType TyOrErr = import(T->getCanonicalTypeInternal()))
1636       Canon = (*TyOrErr).getCanonicalType();
1637     else
1638       return TyOrErr.takeError();
1639   }
1640 
1641   return Importer.getToContext().getDependentNameType(T->getKeyword(),
1642                                                       *ToQualifierOrErr,
1643                                                       Name, Canon);
1644 }
1645 
1646 ExpectedType
1647 ASTNodeImporter::VisitObjCInterfaceType(const ObjCInterfaceType *T) {
1648   Expected<ObjCInterfaceDecl *> ToDeclOrErr = import(T->getDecl());
1649   if (!ToDeclOrErr)
1650     return ToDeclOrErr.takeError();
1651 
1652   return Importer.getToContext().getObjCInterfaceType(*ToDeclOrErr);
1653 }
1654 
1655 ExpectedType ASTNodeImporter::VisitObjCObjectType(const ObjCObjectType *T) {
1656   ExpectedType ToBaseTypeOrErr = import(T->getBaseType());
1657   if (!ToBaseTypeOrErr)
1658     return ToBaseTypeOrErr.takeError();
1659 
1660   SmallVector<QualType, 4> TypeArgs;
1661   for (auto TypeArg : T->getTypeArgsAsWritten()) {
1662     if (ExpectedType TyOrErr = import(TypeArg))
1663       TypeArgs.push_back(*TyOrErr);
1664     else
1665       return TyOrErr.takeError();
1666   }
1667 
1668   SmallVector<ObjCProtocolDecl *, 4> Protocols;
1669   for (auto *P : T->quals()) {
1670     if (Expected<ObjCProtocolDecl *> ProtocolOrErr = import(P))
1671       Protocols.push_back(*ProtocolOrErr);
1672     else
1673       return ProtocolOrErr.takeError();
1674 
1675   }
1676 
1677   return Importer.getToContext().getObjCObjectType(*ToBaseTypeOrErr, TypeArgs,
1678                                                    Protocols,
1679                                                    T->isKindOfTypeAsWritten());
1680 }
1681 
1682 ExpectedType
1683 ASTNodeImporter::VisitObjCObjectPointerType(const ObjCObjectPointerType *T) {
1684   ExpectedType ToPointeeTypeOrErr = import(T->getPointeeType());
1685   if (!ToPointeeTypeOrErr)
1686     return ToPointeeTypeOrErr.takeError();
1687 
1688   return Importer.getToContext().getObjCObjectPointerType(*ToPointeeTypeOrErr);
1689 }
1690 
1691 //----------------------------------------------------------------------------
1692 // Import Declarations
1693 //----------------------------------------------------------------------------
1694 Error ASTNodeImporter::ImportDeclParts(
1695     NamedDecl *D, DeclContext *&DC, DeclContext *&LexicalDC,
1696     DeclarationName &Name, NamedDecl *&ToD, SourceLocation &Loc) {
1697   // Check if RecordDecl is in FunctionDecl parameters to avoid infinite loop.
1698   // example: int struct_in_proto(struct data_t{int a;int b;} *d);
1699   // FIXME: We could support these constructs by importing a different type of
1700   // this parameter and by importing the original type of the parameter only
1701   // after the FunctionDecl is created. See
1702   // VisitFunctionDecl::UsedDifferentProtoType.
1703   DeclContext *OrigDC = D->getDeclContext();
1704   FunctionDecl *FunDecl;
1705   if (isa<RecordDecl>(D) && (FunDecl = dyn_cast<FunctionDecl>(OrigDC)) &&
1706       FunDecl->hasBody()) {
1707     auto getLeafPointeeType = [](const Type *T) {
1708       while (T->isPointerType() || T->isArrayType()) {
1709         T = T->getPointeeOrArrayElementType();
1710       }
1711       return T;
1712     };
1713     for (const ParmVarDecl *P : FunDecl->parameters()) {
1714       const Type *LeafT =
1715           getLeafPointeeType(P->getType().getCanonicalType().getTypePtr());
1716       auto *RT = dyn_cast<RecordType>(LeafT);
1717       if (RT && RT->getDecl() == D) {
1718         Importer.FromDiag(D->getLocation(), diag::err_unsupported_ast_node)
1719             << D->getDeclKindName();
1720         return make_error<ImportError>(ImportError::UnsupportedConstruct);
1721       }
1722     }
1723   }
1724 
1725   // Import the context of this declaration.
1726   if (Error Err = ImportDeclContext(D, DC, LexicalDC))
1727     return Err;
1728 
1729   // Import the name of this declaration.
1730   if (Error Err = importInto(Name, D->getDeclName()))
1731     return Err;
1732 
1733   // Import the location of this declaration.
1734   if (Error Err = importInto(Loc, D->getLocation()))
1735     return Err;
1736 
1737   ToD = cast_or_null<NamedDecl>(Importer.GetAlreadyImportedOrNull(D));
1738   if (ToD)
1739     if (Error Err = ASTNodeImporter(*this).ImportDefinitionIfNeeded(D, ToD))
1740       return Err;
1741 
1742   return Error::success();
1743 }
1744 
1745 Error ASTNodeImporter::ImportDeclParts(NamedDecl *D, DeclarationName &Name,
1746                                        NamedDecl *&ToD, SourceLocation &Loc) {
1747 
1748   // Import the name of this declaration.
1749   if (Error Err = importInto(Name, D->getDeclName()))
1750     return Err;
1751 
1752   // Import the location of this declaration.
1753   if (Error Err = importInto(Loc, D->getLocation()))
1754     return Err;
1755 
1756   ToD = cast_or_null<NamedDecl>(Importer.GetAlreadyImportedOrNull(D));
1757   if (ToD)
1758     if (Error Err = ASTNodeImporter(*this).ImportDefinitionIfNeeded(D, ToD))
1759       return Err;
1760 
1761   return Error::success();
1762 }
1763 
1764 Error ASTNodeImporter::ImportDefinitionIfNeeded(Decl *FromD, Decl *ToD) {
1765   if (!FromD)
1766     return Error::success();
1767 
1768   if (!ToD)
1769     if (Error Err = importInto(ToD, FromD))
1770       return Err;
1771 
1772   if (RecordDecl *FromRecord = dyn_cast<RecordDecl>(FromD)) {
1773     if (RecordDecl *ToRecord = cast<RecordDecl>(ToD)) {
1774       if (FromRecord->getDefinition() && FromRecord->isCompleteDefinition() &&
1775           !ToRecord->getDefinition()) {
1776         if (Error Err = ImportDefinition(FromRecord, ToRecord))
1777           return Err;
1778       }
1779     }
1780     return Error::success();
1781   }
1782 
1783   if (EnumDecl *FromEnum = dyn_cast<EnumDecl>(FromD)) {
1784     if (EnumDecl *ToEnum = cast<EnumDecl>(ToD)) {
1785       if (FromEnum->getDefinition() && !ToEnum->getDefinition()) {
1786         if (Error Err = ImportDefinition(FromEnum, ToEnum))
1787           return Err;
1788       }
1789     }
1790     return Error::success();
1791   }
1792 
1793   return Error::success();
1794 }
1795 
1796 Error
1797 ASTNodeImporter::ImportDeclarationNameLoc(
1798     const DeclarationNameInfo &From, DeclarationNameInfo& To) {
1799   // NOTE: To.Name and To.Loc are already imported.
1800   // We only have to import To.LocInfo.
1801   switch (To.getName().getNameKind()) {
1802   case DeclarationName::Identifier:
1803   case DeclarationName::ObjCZeroArgSelector:
1804   case DeclarationName::ObjCOneArgSelector:
1805   case DeclarationName::ObjCMultiArgSelector:
1806   case DeclarationName::CXXUsingDirective:
1807   case DeclarationName::CXXDeductionGuideName:
1808     return Error::success();
1809 
1810   case DeclarationName::CXXOperatorName: {
1811     if (auto ToRangeOrErr = import(From.getCXXOperatorNameRange()))
1812       To.setCXXOperatorNameRange(*ToRangeOrErr);
1813     else
1814       return ToRangeOrErr.takeError();
1815     return Error::success();
1816   }
1817   case DeclarationName::CXXLiteralOperatorName: {
1818     if (ExpectedSLoc LocOrErr = import(From.getCXXLiteralOperatorNameLoc()))
1819       To.setCXXLiteralOperatorNameLoc(*LocOrErr);
1820     else
1821       return LocOrErr.takeError();
1822     return Error::success();
1823   }
1824   case DeclarationName::CXXConstructorName:
1825   case DeclarationName::CXXDestructorName:
1826   case DeclarationName::CXXConversionFunctionName: {
1827     if (auto ToTInfoOrErr = import(From.getNamedTypeInfo()))
1828       To.setNamedTypeInfo(*ToTInfoOrErr);
1829     else
1830       return ToTInfoOrErr.takeError();
1831     return Error::success();
1832   }
1833   }
1834   llvm_unreachable("Unknown name kind.");
1835 }
1836 
1837 Error
1838 ASTNodeImporter::ImportDeclContext(DeclContext *FromDC, bool ForceImport) {
1839   if (Importer.isMinimalImport() && !ForceImport) {
1840     auto ToDCOrErr = Importer.ImportContext(FromDC);
1841     return ToDCOrErr.takeError();
1842   }
1843 
1844   // We use strict error handling in case of records and enums, but not
1845   // with e.g. namespaces.
1846   //
1847   // FIXME Clients of the ASTImporter should be able to choose an
1848   // appropriate error handling strategy for their needs.  For instance,
1849   // they may not want to mark an entire namespace as erroneous merely
1850   // because there is an ODR error with two typedefs.  As another example,
1851   // the client may allow EnumConstantDecls with same names but with
1852   // different values in two distinct translation units.
1853   ChildErrorHandlingStrategy HandleChildErrors(FromDC);
1854 
1855   Error ChildErrors = Error::success();
1856   for (auto *From : FromDC->decls()) {
1857     ExpectedDecl ImportedOrErr = import(From);
1858 
1859     // If we are in the process of ImportDefinition(...) for a RecordDecl we
1860     // want to make sure that we are also completing each FieldDecl. There
1861     // are currently cases where this does not happen and this is correctness
1862     // fix since operations such as code generation will expect this to be so.
1863     if (ImportedOrErr) {
1864       FieldDecl *FieldFrom = dyn_cast_or_null<FieldDecl>(From);
1865       Decl *ImportedDecl = *ImportedOrErr;
1866       FieldDecl *FieldTo = dyn_cast_or_null<FieldDecl>(ImportedDecl);
1867       if (FieldFrom && FieldTo) {
1868         RecordDecl *FromRecordDecl = nullptr;
1869         RecordDecl *ToRecordDecl = nullptr;
1870         // If we have a field that is an ArrayType we need to check if the array
1871         // element is a RecordDecl and if so we need to import the definition.
1872         if (FieldFrom->getType()->isArrayType()) {
1873           // getBaseElementTypeUnsafe(...) handles multi-dimensonal arrays for us.
1874           FromRecordDecl = FieldFrom->getType()->getBaseElementTypeUnsafe()->getAsRecordDecl();
1875           ToRecordDecl = FieldTo->getType()->getBaseElementTypeUnsafe()->getAsRecordDecl();
1876         }
1877 
1878         if (!FromRecordDecl || !ToRecordDecl) {
1879           const RecordType *RecordFrom =
1880               FieldFrom->getType()->getAs<RecordType>();
1881           const RecordType *RecordTo = FieldTo->getType()->getAs<RecordType>();
1882 
1883           if (RecordFrom && RecordTo) {
1884             FromRecordDecl = RecordFrom->getDecl();
1885             ToRecordDecl = RecordTo->getDecl();
1886           }
1887         }
1888 
1889         if (FromRecordDecl && ToRecordDecl) {
1890           if (FromRecordDecl->isCompleteDefinition() &&
1891               !ToRecordDecl->isCompleteDefinition()) {
1892             Error Err = ImportDefinition(FromRecordDecl, ToRecordDecl);
1893             HandleChildErrors.handleChildImportResult(ChildErrors,
1894                                                       std::move(Err));
1895           }
1896         }
1897       }
1898     } else {
1899       HandleChildErrors.handleChildImportResult(ChildErrors,
1900                                                 ImportedOrErr.takeError());
1901     }
1902   }
1903 
1904   // We reorder declarations in RecordDecls because they may have another order
1905   // in the "to" context than they have in the "from" context. This may happen
1906   // e.g when we import a class like this:
1907   //    struct declToImport {
1908   //        int a = c + b;
1909   //        int b = 1;
1910   //        int c = 2;
1911   //    };
1912   // During the import of `a` we import first the dependencies in sequence,
1913   // thus the order would be `c`, `b`, `a`. We will get the normal order by
1914   // first removing the already imported members and then adding them in the
1915   // order as they apper in the "from" context.
1916   //
1917   // Keeping field order is vital because it determines structure layout.
1918   //
1919   // Here and below, we cannot call field_begin() method and its callers on
1920   // ToDC if it has an external storage. Calling field_begin() will
1921   // automatically load all the fields by calling
1922   // LoadFieldsFromExternalStorage(). LoadFieldsFromExternalStorage() would
1923   // call ASTImporter::Import(). This is because the ExternalASTSource
1924   // interface in LLDB is implemented by the means of the ASTImporter. However,
1925   // calling an import at this point would result in an uncontrolled import, we
1926   // must avoid that.
1927   const auto *FromRD = dyn_cast<RecordDecl>(FromDC);
1928   if (!FromRD)
1929     return ChildErrors;
1930 
1931   auto ToDCOrErr = Importer.ImportContext(FromDC);
1932   if (!ToDCOrErr) {
1933     consumeError(std::move(ChildErrors));
1934     return ToDCOrErr.takeError();
1935   }
1936 
1937   DeclContext *ToDC = *ToDCOrErr;
1938   // Remove all declarations, which may be in wrong order in the
1939   // lexical DeclContext and then add them in the proper order.
1940   for (auto *D : FromRD->decls()) {
1941     if (isa<FieldDecl>(D) || isa<IndirectFieldDecl>(D) || isa<FriendDecl>(D)) {
1942       assert(D && "DC contains a null decl");
1943       Decl *ToD = Importer.GetAlreadyImportedOrNull(D);
1944       // Remove only the decls which we successfully imported.
1945       if (ToD) {
1946         assert(ToDC == ToD->getLexicalDeclContext() && ToDC->containsDecl(ToD));
1947         // Remove the decl from its wrong place in the linked list.
1948         ToDC->removeDecl(ToD);
1949         // Add the decl to the end of the linked list.
1950         // This time it will be at the proper place because the enclosing for
1951         // loop iterates in the original (good) order of the decls.
1952         ToDC->addDeclInternal(ToD);
1953       }
1954     }
1955   }
1956 
1957   return ChildErrors;
1958 }
1959 
1960 Error ASTNodeImporter::ImportDeclContext(
1961     Decl *FromD, DeclContext *&ToDC, DeclContext *&ToLexicalDC) {
1962   auto ToDCOrErr = Importer.ImportContext(FromD->getDeclContext());
1963   if (!ToDCOrErr)
1964     return ToDCOrErr.takeError();
1965   ToDC = *ToDCOrErr;
1966 
1967   if (FromD->getDeclContext() != FromD->getLexicalDeclContext()) {
1968     auto ToLexicalDCOrErr = Importer.ImportContext(
1969         FromD->getLexicalDeclContext());
1970     if (!ToLexicalDCOrErr)
1971       return ToLexicalDCOrErr.takeError();
1972     ToLexicalDC = *ToLexicalDCOrErr;
1973   } else
1974     ToLexicalDC = ToDC;
1975 
1976   return Error::success();
1977 }
1978 
1979 Error ASTNodeImporter::ImportImplicitMethods(
1980     const CXXRecordDecl *From, CXXRecordDecl *To) {
1981   assert(From->isCompleteDefinition() && To->getDefinition() == To &&
1982       "Import implicit methods to or from non-definition");
1983 
1984   for (CXXMethodDecl *FromM : From->methods())
1985     if (FromM->isImplicit()) {
1986       Expected<CXXMethodDecl *> ToMOrErr = import(FromM);
1987       if (!ToMOrErr)
1988         return ToMOrErr.takeError();
1989     }
1990 
1991   return Error::success();
1992 }
1993 
1994 static Error setTypedefNameForAnonDecl(TagDecl *From, TagDecl *To,
1995                                        ASTImporter &Importer) {
1996   if (TypedefNameDecl *FromTypedef = From->getTypedefNameForAnonDecl()) {
1997     if (ExpectedDecl ToTypedefOrErr = Importer.Import(FromTypedef))
1998       To->setTypedefNameForAnonDecl(cast<TypedefNameDecl>(*ToTypedefOrErr));
1999     else
2000       return ToTypedefOrErr.takeError();
2001   }
2002   return Error::success();
2003 }
2004 
2005 Error ASTNodeImporter::ImportDefinition(
2006     RecordDecl *From, RecordDecl *To, ImportDefinitionKind Kind) {
2007   auto DefinitionCompleter = [To]() {
2008     // There are cases in LLDB when we first import a class without its
2009     // members. The class will have DefinitionData, but no members. Then,
2010     // importDefinition is called from LLDB, which tries to get the members, so
2011     // when we get here, the class already has the DefinitionData set, so we
2012     // must unset the CompleteDefinition here to be able to complete again the
2013     // definition.
2014     To->setCompleteDefinition(false);
2015     To->completeDefinition();
2016   };
2017 
2018   if (To->getDefinition() || To->isBeingDefined()) {
2019     if (Kind == IDK_Everything ||
2020         // In case of lambdas, the class already has a definition ptr set, but
2021         // the contained decls are not imported yet. Also, isBeingDefined was
2022         // set in CXXRecordDecl::CreateLambda.  We must import the contained
2023         // decls here and finish the definition.
2024         (To->isLambda() && shouldForceImportDeclContext(Kind))) {
2025       if (To->isLambda()) {
2026         auto *FromCXXRD = cast<CXXRecordDecl>(From);
2027         SmallVector<LambdaCapture, 8> ToCaptures;
2028         ToCaptures.reserve(FromCXXRD->capture_size());
2029         for (const auto &FromCapture : FromCXXRD->captures()) {
2030           if (auto ToCaptureOrErr = import(FromCapture))
2031             ToCaptures.push_back(*ToCaptureOrErr);
2032           else
2033             return ToCaptureOrErr.takeError();
2034         }
2035         cast<CXXRecordDecl>(To)->setCaptures(Importer.getToContext(),
2036                                              ToCaptures);
2037       }
2038 
2039       Error Result = ImportDeclContext(From, /*ForceImport=*/true);
2040       // Finish the definition of the lambda, set isBeingDefined to false.
2041       if (To->isLambda())
2042         DefinitionCompleter();
2043       return Result;
2044     }
2045 
2046     return Error::success();
2047   }
2048 
2049   To->startDefinition();
2050   // Set the definition to complete even if it is really not complete during
2051   // import. Some AST constructs (expressions) require the record layout
2052   // to be calculated (see 'clang::computeDependence') at the time they are
2053   // constructed. Import of such AST node is possible during import of the
2054   // same record, there is no way to have a completely defined record (all
2055   // fields imported) at that time without multiple AST import passes.
2056   if (!Importer.isMinimalImport())
2057     To->setCompleteDefinition(true);
2058   // Complete the definition even if error is returned.
2059   // The RecordDecl may be already part of the AST so it is better to
2060   // have it in complete state even if something is wrong with it.
2061   auto DefinitionCompleterScopeExit =
2062       llvm::make_scope_exit(DefinitionCompleter);
2063 
2064   if (Error Err = setTypedefNameForAnonDecl(From, To, Importer))
2065     return Err;
2066 
2067   // Add base classes.
2068   auto *ToCXX = dyn_cast<CXXRecordDecl>(To);
2069   auto *FromCXX = dyn_cast<CXXRecordDecl>(From);
2070   if (ToCXX && FromCXX && ToCXX->dataPtr() && FromCXX->dataPtr()) {
2071 
2072     struct CXXRecordDecl::DefinitionData &ToData = ToCXX->data();
2073     struct CXXRecordDecl::DefinitionData &FromData = FromCXX->data();
2074 
2075     #define FIELD(Name, Width, Merge) \
2076     ToData.Name = FromData.Name;
2077     #include "clang/AST/CXXRecordDeclDefinitionBits.def"
2078 
2079     // Copy over the data stored in RecordDeclBits
2080     ToCXX->setArgPassingRestrictions(FromCXX->getArgPassingRestrictions());
2081 
2082     SmallVector<CXXBaseSpecifier *, 4> Bases;
2083     for (const auto &Base1 : FromCXX->bases()) {
2084       ExpectedType TyOrErr = import(Base1.getType());
2085       if (!TyOrErr)
2086         return TyOrErr.takeError();
2087 
2088       SourceLocation EllipsisLoc;
2089       if (Base1.isPackExpansion()) {
2090         if (ExpectedSLoc LocOrErr = import(Base1.getEllipsisLoc()))
2091           EllipsisLoc = *LocOrErr;
2092         else
2093           return LocOrErr.takeError();
2094       }
2095 
2096       // Ensure that we have a definition for the base.
2097       if (Error Err =
2098           ImportDefinitionIfNeeded(Base1.getType()->getAsCXXRecordDecl()))
2099         return Err;
2100 
2101       auto RangeOrErr = import(Base1.getSourceRange());
2102       if (!RangeOrErr)
2103         return RangeOrErr.takeError();
2104 
2105       auto TSIOrErr = import(Base1.getTypeSourceInfo());
2106       if (!TSIOrErr)
2107         return TSIOrErr.takeError();
2108 
2109       Bases.push_back(
2110           new (Importer.getToContext()) CXXBaseSpecifier(
2111               *RangeOrErr,
2112               Base1.isVirtual(),
2113               Base1.isBaseOfClass(),
2114               Base1.getAccessSpecifierAsWritten(),
2115               *TSIOrErr,
2116               EllipsisLoc));
2117     }
2118     if (!Bases.empty())
2119       ToCXX->setBases(Bases.data(), Bases.size());
2120   }
2121 
2122   if (shouldForceImportDeclContext(Kind)) {
2123     if (Error Err = ImportDeclContext(From, /*ForceImport=*/true))
2124       return Err;
2125   }
2126 
2127   return Error::success();
2128 }
2129 
2130 Error ASTNodeImporter::ImportInitializer(VarDecl *From, VarDecl *To) {
2131   if (To->getAnyInitializer())
2132     return Error::success();
2133 
2134   Expr *FromInit = From->getInit();
2135   if (!FromInit)
2136     return Error::success();
2137 
2138   ExpectedExpr ToInitOrErr = import(FromInit);
2139   if (!ToInitOrErr)
2140     return ToInitOrErr.takeError();
2141 
2142   To->setInit(*ToInitOrErr);
2143   if (EvaluatedStmt *FromEval = From->getEvaluatedStmt()) {
2144     EvaluatedStmt *ToEval = To->ensureEvaluatedStmt();
2145     ToEval->HasConstantInitialization = FromEval->HasConstantInitialization;
2146     ToEval->HasConstantDestruction = FromEval->HasConstantDestruction;
2147     // FIXME: Also import the initializer value.
2148   }
2149 
2150   // FIXME: Other bits to merge?
2151   return Error::success();
2152 }
2153 
2154 Error ASTNodeImporter::ImportDefinition(
2155     EnumDecl *From, EnumDecl *To, ImportDefinitionKind Kind) {
2156   if (To->getDefinition() || To->isBeingDefined()) {
2157     if (Kind == IDK_Everything)
2158       return ImportDeclContext(From, /*ForceImport=*/true);
2159     return Error::success();
2160   }
2161 
2162   To->startDefinition();
2163 
2164   if (Error Err = setTypedefNameForAnonDecl(From, To, Importer))
2165     return Err;
2166 
2167   ExpectedType ToTypeOrErr =
2168       import(Importer.getFromContext().getTypeDeclType(From));
2169   if (!ToTypeOrErr)
2170     return ToTypeOrErr.takeError();
2171 
2172   ExpectedType ToPromotionTypeOrErr = import(From->getPromotionType());
2173   if (!ToPromotionTypeOrErr)
2174     return ToPromotionTypeOrErr.takeError();
2175 
2176   if (shouldForceImportDeclContext(Kind))
2177     if (Error Err = ImportDeclContext(From, /*ForceImport=*/true))
2178       return Err;
2179 
2180   // FIXME: we might need to merge the number of positive or negative bits
2181   // if the enumerator lists don't match.
2182   To->completeDefinition(*ToTypeOrErr, *ToPromotionTypeOrErr,
2183                          From->getNumPositiveBits(),
2184                          From->getNumNegativeBits());
2185   return Error::success();
2186 }
2187 
2188 Error ASTNodeImporter::ImportTemplateArguments(
2189     const TemplateArgument *FromArgs, unsigned NumFromArgs,
2190     SmallVectorImpl<TemplateArgument> &ToArgs) {
2191   for (unsigned I = 0; I != NumFromArgs; ++I) {
2192     if (auto ToOrErr = import(FromArgs[I]))
2193       ToArgs.push_back(*ToOrErr);
2194     else
2195       return ToOrErr.takeError();
2196   }
2197 
2198   return Error::success();
2199 }
2200 
2201 // FIXME: Do not forget to remove this and use only 'import'.
2202 Expected<TemplateArgument>
2203 ASTNodeImporter::ImportTemplateArgument(const TemplateArgument &From) {
2204   return import(From);
2205 }
2206 
2207 template <typename InContainerTy>
2208 Error ASTNodeImporter::ImportTemplateArgumentListInfo(
2209     const InContainerTy &Container, TemplateArgumentListInfo &ToTAInfo) {
2210   for (const auto &FromLoc : Container) {
2211     if (auto ToLocOrErr = import(FromLoc))
2212       ToTAInfo.addArgument(*ToLocOrErr);
2213     else
2214       return ToLocOrErr.takeError();
2215   }
2216   return Error::success();
2217 }
2218 
2219 static StructuralEquivalenceKind
2220 getStructuralEquivalenceKind(const ASTImporter &Importer) {
2221   return Importer.isMinimalImport() ? StructuralEquivalenceKind::Minimal
2222                                     : StructuralEquivalenceKind::Default;
2223 }
2224 
2225 bool ASTNodeImporter::IsStructuralMatch(Decl *From, Decl *To, bool Complain) {
2226   // Eliminate a potential failure point where we attempt to re-import
2227   // something we're trying to import while completing ToRecord.
2228   Decl *ToOrigin = Importer.GetOriginalDecl(To);
2229   if (ToOrigin) {
2230     To = ToOrigin;
2231   }
2232 
2233   StructuralEquivalenceContext Ctx(
2234       Importer.getFromContext(), Importer.getToContext(),
2235       Importer.getNonEquivalentDecls(), getStructuralEquivalenceKind(Importer),
2236       false, Complain);
2237   return Ctx.IsEquivalent(From, To);
2238 }
2239 
2240 ExpectedDecl ASTNodeImporter::VisitDecl(Decl *D) {
2241   Importer.FromDiag(D->getLocation(), diag::err_unsupported_ast_node)
2242     << D->getDeclKindName();
2243   return make_error<ImportError>(ImportError::UnsupportedConstruct);
2244 }
2245 
2246 ExpectedDecl ASTNodeImporter::VisitImportDecl(ImportDecl *D) {
2247   Importer.FromDiag(D->getLocation(), diag::err_unsupported_ast_node)
2248       << D->getDeclKindName();
2249   return make_error<ImportError>(ImportError::UnsupportedConstruct);
2250 }
2251 
2252 ExpectedDecl ASTNodeImporter::VisitEmptyDecl(EmptyDecl *D) {
2253   // Import the context of this declaration.
2254   DeclContext *DC, *LexicalDC;
2255   if (Error Err = ImportDeclContext(D, DC, LexicalDC))
2256     return std::move(Err);
2257 
2258   // Import the location of this declaration.
2259   ExpectedSLoc LocOrErr = import(D->getLocation());
2260   if (!LocOrErr)
2261     return LocOrErr.takeError();
2262 
2263   EmptyDecl *ToD;
2264   if (GetImportedOrCreateDecl(ToD, D, Importer.getToContext(), DC, *LocOrErr))
2265     return ToD;
2266 
2267   ToD->setLexicalDeclContext(LexicalDC);
2268   LexicalDC->addDeclInternal(ToD);
2269   return ToD;
2270 }
2271 
2272 ExpectedDecl ASTNodeImporter::VisitTranslationUnitDecl(TranslationUnitDecl *D) {
2273   TranslationUnitDecl *ToD =
2274     Importer.getToContext().getTranslationUnitDecl();
2275 
2276   Importer.MapImported(D, ToD);
2277 
2278   return ToD;
2279 }
2280 
2281 ExpectedDecl ASTNodeImporter::VisitBindingDecl(BindingDecl *D) {
2282   DeclContext *DC, *LexicalDC;
2283   DeclarationName Name;
2284   SourceLocation Loc;
2285   NamedDecl *ToND;
2286   if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToND, Loc))
2287     return std::move(Err);
2288   if (ToND)
2289     return ToND;
2290 
2291   BindingDecl *ToD;
2292   if (GetImportedOrCreateDecl(ToD, D, Importer.getToContext(), DC, Loc,
2293                               Name.getAsIdentifierInfo()))
2294     return ToD;
2295 
2296   Error Err = Error::success();
2297   QualType ToType = importChecked(Err, D->getType());
2298   Expr *ToBinding = importChecked(Err, D->getBinding());
2299   ValueDecl *ToDecomposedDecl = importChecked(Err, D->getDecomposedDecl());
2300   if (Err)
2301     return std::move(Err);
2302 
2303   ToD->setBinding(ToType, ToBinding);
2304   ToD->setDecomposedDecl(ToDecomposedDecl);
2305   addDeclToContexts(D, ToD);
2306 
2307   return ToD;
2308 }
2309 
2310 ExpectedDecl ASTNodeImporter::VisitAccessSpecDecl(AccessSpecDecl *D) {
2311   ExpectedSLoc LocOrErr = import(D->getLocation());
2312   if (!LocOrErr)
2313     return LocOrErr.takeError();
2314   auto ColonLocOrErr = import(D->getColonLoc());
2315   if (!ColonLocOrErr)
2316     return ColonLocOrErr.takeError();
2317 
2318   // Import the context of this declaration.
2319   auto DCOrErr = Importer.ImportContext(D->getDeclContext());
2320   if (!DCOrErr)
2321     return DCOrErr.takeError();
2322   DeclContext *DC = *DCOrErr;
2323 
2324   AccessSpecDecl *ToD;
2325   if (GetImportedOrCreateDecl(ToD, D, Importer.getToContext(), D->getAccess(),
2326                               DC, *LocOrErr, *ColonLocOrErr))
2327     return ToD;
2328 
2329   // Lexical DeclContext and Semantic DeclContext
2330   // is always the same for the accessSpec.
2331   ToD->setLexicalDeclContext(DC);
2332   DC->addDeclInternal(ToD);
2333 
2334   return ToD;
2335 }
2336 
2337 ExpectedDecl ASTNodeImporter::VisitStaticAssertDecl(StaticAssertDecl *D) {
2338   auto DCOrErr = Importer.ImportContext(D->getDeclContext());
2339   if (!DCOrErr)
2340     return DCOrErr.takeError();
2341   DeclContext *DC = *DCOrErr;
2342   DeclContext *LexicalDC = DC;
2343 
2344   Error Err = Error::success();
2345   auto ToLocation = importChecked(Err, D->getLocation());
2346   auto ToRParenLoc = importChecked(Err, D->getRParenLoc());
2347   auto ToAssertExpr = importChecked(Err, D->getAssertExpr());
2348   auto ToMessage = importChecked(Err, D->getMessage());
2349   if (Err)
2350     return std::move(Err);
2351 
2352   StaticAssertDecl *ToD;
2353   if (GetImportedOrCreateDecl(
2354       ToD, D, Importer.getToContext(), DC, ToLocation, ToAssertExpr, ToMessage,
2355       ToRParenLoc, D->isFailed()))
2356     return ToD;
2357 
2358   ToD->setLexicalDeclContext(LexicalDC);
2359   LexicalDC->addDeclInternal(ToD);
2360   return ToD;
2361 }
2362 
2363 ExpectedDecl ASTNodeImporter::VisitNamespaceDecl(NamespaceDecl *D) {
2364   // Import the major distinguishing characteristics of this namespace.
2365   DeclContext *DC, *LexicalDC;
2366   DeclarationName Name;
2367   SourceLocation Loc;
2368   NamedDecl *ToD;
2369   if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc))
2370     return std::move(Err);
2371   if (ToD)
2372     return ToD;
2373 
2374   NamespaceDecl *MergeWithNamespace = nullptr;
2375   if (!Name) {
2376     // This is an anonymous namespace. Adopt an existing anonymous
2377     // namespace if we can.
2378     // FIXME: Not testable.
2379     if (auto *TU = dyn_cast<TranslationUnitDecl>(DC))
2380       MergeWithNamespace = TU->getAnonymousNamespace();
2381     else
2382       MergeWithNamespace = cast<NamespaceDecl>(DC)->getAnonymousNamespace();
2383   } else {
2384     SmallVector<NamedDecl *, 4> ConflictingDecls;
2385     auto FoundDecls = Importer.findDeclsInToCtx(DC, Name);
2386     for (auto *FoundDecl : FoundDecls) {
2387       if (!FoundDecl->isInIdentifierNamespace(Decl::IDNS_Namespace))
2388         continue;
2389 
2390       if (auto *FoundNS = dyn_cast<NamespaceDecl>(FoundDecl)) {
2391         MergeWithNamespace = FoundNS;
2392         ConflictingDecls.clear();
2393         break;
2394       }
2395 
2396       ConflictingDecls.push_back(FoundDecl);
2397     }
2398 
2399     if (!ConflictingDecls.empty()) {
2400       ExpectedName NameOrErr = Importer.HandleNameConflict(
2401           Name, DC, Decl::IDNS_Namespace, ConflictingDecls.data(),
2402           ConflictingDecls.size());
2403       if (NameOrErr)
2404         Name = NameOrErr.get();
2405       else
2406         return NameOrErr.takeError();
2407     }
2408   }
2409 
2410   ExpectedSLoc BeginLocOrErr = import(D->getBeginLoc());
2411   if (!BeginLocOrErr)
2412     return BeginLocOrErr.takeError();
2413   ExpectedSLoc RBraceLocOrErr = import(D->getRBraceLoc());
2414   if (!RBraceLocOrErr)
2415     return RBraceLocOrErr.takeError();
2416 
2417   // Create the "to" namespace, if needed.
2418   NamespaceDecl *ToNamespace = MergeWithNamespace;
2419   if (!ToNamespace) {
2420     if (GetImportedOrCreateDecl(
2421             ToNamespace, D, Importer.getToContext(), DC, D->isInline(),
2422             *BeginLocOrErr, Loc, Name.getAsIdentifierInfo(),
2423             /*PrevDecl=*/nullptr))
2424       return ToNamespace;
2425     ToNamespace->setRBraceLoc(*RBraceLocOrErr);
2426     ToNamespace->setLexicalDeclContext(LexicalDC);
2427     LexicalDC->addDeclInternal(ToNamespace);
2428 
2429     // If this is an anonymous namespace, register it as the anonymous
2430     // namespace within its context.
2431     if (!Name) {
2432       if (auto *TU = dyn_cast<TranslationUnitDecl>(DC))
2433         TU->setAnonymousNamespace(ToNamespace);
2434       else
2435         cast<NamespaceDecl>(DC)->setAnonymousNamespace(ToNamespace);
2436     }
2437   }
2438   Importer.MapImported(D, ToNamespace);
2439 
2440   if (Error Err = ImportDeclContext(D))
2441     return std::move(Err);
2442 
2443   return ToNamespace;
2444 }
2445 
2446 ExpectedDecl ASTNodeImporter::VisitNamespaceAliasDecl(NamespaceAliasDecl *D) {
2447   // Import the major distinguishing characteristics of this namespace.
2448   DeclContext *DC, *LexicalDC;
2449   DeclarationName Name;
2450   SourceLocation Loc;
2451   NamedDecl *LookupD;
2452   if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, LookupD, Loc))
2453     return std::move(Err);
2454   if (LookupD)
2455     return LookupD;
2456 
2457   // NOTE: No conflict resolution is done for namespace aliases now.
2458 
2459   Error Err = Error::success();
2460   auto ToNamespaceLoc = importChecked(Err, D->getNamespaceLoc());
2461   auto ToAliasLoc = importChecked(Err, D->getAliasLoc());
2462   auto ToQualifierLoc = importChecked(Err, D->getQualifierLoc());
2463   auto ToTargetNameLoc = importChecked(Err, D->getTargetNameLoc());
2464   auto ToNamespace = importChecked(Err, D->getNamespace());
2465   if (Err)
2466     return std::move(Err);
2467 
2468   IdentifierInfo *ToIdentifier = Importer.Import(D->getIdentifier());
2469 
2470   NamespaceAliasDecl *ToD;
2471   if (GetImportedOrCreateDecl(
2472       ToD, D, Importer.getToContext(), DC, ToNamespaceLoc, ToAliasLoc,
2473       ToIdentifier, ToQualifierLoc, ToTargetNameLoc, ToNamespace))
2474     return ToD;
2475 
2476   ToD->setLexicalDeclContext(LexicalDC);
2477   LexicalDC->addDeclInternal(ToD);
2478 
2479   return ToD;
2480 }
2481 
2482 ExpectedDecl
2483 ASTNodeImporter::VisitTypedefNameDecl(TypedefNameDecl *D, bool IsAlias) {
2484   // Import the major distinguishing characteristics of this typedef.
2485   DeclarationName Name;
2486   SourceLocation Loc;
2487   NamedDecl *ToD;
2488   // Do not import the DeclContext, we will import it once the TypedefNameDecl
2489   // is created.
2490   if (Error Err = ImportDeclParts(D, Name, ToD, Loc))
2491     return std::move(Err);
2492   if (ToD)
2493     return ToD;
2494 
2495   DeclContext *DC = cast_or_null<DeclContext>(
2496       Importer.GetAlreadyImportedOrNull(cast<Decl>(D->getDeclContext())));
2497   DeclContext *LexicalDC =
2498       cast_or_null<DeclContext>(Importer.GetAlreadyImportedOrNull(
2499           cast<Decl>(D->getLexicalDeclContext())));
2500 
2501   // If this typedef is not in block scope, determine whether we've
2502   // seen a typedef with the same name (that we can merge with) or any
2503   // other entity by that name (which name lookup could conflict with).
2504   // Note: Repeated typedefs are not valid in C99:
2505   // 'typedef int T; typedef int T;' is invalid
2506   // We do not care about this now.
2507   if (DC && !DC->isFunctionOrMethod()) {
2508     SmallVector<NamedDecl *, 4> ConflictingDecls;
2509     unsigned IDNS = Decl::IDNS_Ordinary;
2510     auto FoundDecls = Importer.findDeclsInToCtx(DC, Name);
2511     for (auto *FoundDecl : FoundDecls) {
2512       if (!FoundDecl->isInIdentifierNamespace(IDNS))
2513         continue;
2514       if (auto *FoundTypedef = dyn_cast<TypedefNameDecl>(FoundDecl)) {
2515         if (!hasSameVisibilityContextAndLinkage(FoundTypedef, D))
2516           continue;
2517 
2518         QualType FromUT = D->getUnderlyingType();
2519         QualType FoundUT = FoundTypedef->getUnderlyingType();
2520         if (Importer.IsStructurallyEquivalent(FromUT, FoundUT)) {
2521           // If the "From" context has a complete underlying type but we
2522           // already have a complete underlying type then return with that.
2523           if (!FromUT->isIncompleteType() && !FoundUT->isIncompleteType())
2524             return Importer.MapImported(D, FoundTypedef);
2525           // FIXME Handle redecl chain. When you do that make consistent changes
2526           // in ASTImporterLookupTable too.
2527         } else {
2528           ConflictingDecls.push_back(FoundDecl);
2529         }
2530       }
2531     }
2532 
2533     if (!ConflictingDecls.empty()) {
2534       ExpectedName NameOrErr = Importer.HandleNameConflict(
2535           Name, DC, IDNS, ConflictingDecls.data(), ConflictingDecls.size());
2536       if (NameOrErr)
2537         Name = NameOrErr.get();
2538       else
2539         return NameOrErr.takeError();
2540     }
2541   }
2542 
2543   Error Err = Error::success();
2544   auto ToUnderlyingType = importChecked(Err, D->getUnderlyingType());
2545   auto ToTypeSourceInfo = importChecked(Err, D->getTypeSourceInfo());
2546   auto ToBeginLoc = importChecked(Err, D->getBeginLoc());
2547   if (Err)
2548     return std::move(Err);
2549 
2550   // Create the new typedef node.
2551   // FIXME: ToUnderlyingType is not used.
2552   (void)ToUnderlyingType;
2553   TypedefNameDecl *ToTypedef;
2554   if (IsAlias) {
2555     if (GetImportedOrCreateDecl<TypeAliasDecl>(
2556         ToTypedef, D, Importer.getToContext(), DC, ToBeginLoc, Loc,
2557         Name.getAsIdentifierInfo(), ToTypeSourceInfo))
2558       return ToTypedef;
2559   } else if (GetImportedOrCreateDecl<TypedefDecl>(
2560       ToTypedef, D, Importer.getToContext(), DC, ToBeginLoc, Loc,
2561       Name.getAsIdentifierInfo(), ToTypeSourceInfo))
2562     return ToTypedef;
2563 
2564   // Import the DeclContext and set it to the Typedef.
2565   if ((Err = ImportDeclContext(D, DC, LexicalDC)))
2566     return std::move(Err);
2567   ToTypedef->setDeclContext(DC);
2568   ToTypedef->setLexicalDeclContext(LexicalDC);
2569   // Add to the lookupTable because we could not do that in MapImported.
2570   Importer.AddToLookupTable(ToTypedef);
2571 
2572   ToTypedef->setAccess(D->getAccess());
2573 
2574   // Templated declarations should not appear in DeclContext.
2575   TypeAliasDecl *FromAlias = IsAlias ? cast<TypeAliasDecl>(D) : nullptr;
2576   if (!FromAlias || !FromAlias->getDescribedAliasTemplate())
2577     LexicalDC->addDeclInternal(ToTypedef);
2578 
2579   return ToTypedef;
2580 }
2581 
2582 ExpectedDecl ASTNodeImporter::VisitTypedefDecl(TypedefDecl *D) {
2583   return VisitTypedefNameDecl(D, /*IsAlias=*/false);
2584 }
2585 
2586 ExpectedDecl ASTNodeImporter::VisitTypeAliasDecl(TypeAliasDecl *D) {
2587   return VisitTypedefNameDecl(D, /*IsAlias=*/true);
2588 }
2589 
2590 ExpectedDecl
2591 ASTNodeImporter::VisitTypeAliasTemplateDecl(TypeAliasTemplateDecl *D) {
2592   // Import the major distinguishing characteristics of this typedef.
2593   DeclContext *DC, *LexicalDC;
2594   DeclarationName Name;
2595   SourceLocation Loc;
2596   NamedDecl *FoundD;
2597   if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, FoundD, Loc))
2598     return std::move(Err);
2599   if (FoundD)
2600     return FoundD;
2601 
2602   // If this typedef is not in block scope, determine whether we've
2603   // seen a typedef with the same name (that we can merge with) or any
2604   // other entity by that name (which name lookup could conflict with).
2605   if (!DC->isFunctionOrMethod()) {
2606     SmallVector<NamedDecl *, 4> ConflictingDecls;
2607     unsigned IDNS = Decl::IDNS_Ordinary;
2608     auto FoundDecls = Importer.findDeclsInToCtx(DC, Name);
2609     for (auto *FoundDecl : FoundDecls) {
2610       if (!FoundDecl->isInIdentifierNamespace(IDNS))
2611         continue;
2612       if (auto *FoundAlias = dyn_cast<TypeAliasTemplateDecl>(FoundDecl))
2613         return Importer.MapImported(D, FoundAlias);
2614       ConflictingDecls.push_back(FoundDecl);
2615     }
2616 
2617     if (!ConflictingDecls.empty()) {
2618       ExpectedName NameOrErr = Importer.HandleNameConflict(
2619           Name, DC, IDNS, ConflictingDecls.data(), ConflictingDecls.size());
2620       if (NameOrErr)
2621         Name = NameOrErr.get();
2622       else
2623         return NameOrErr.takeError();
2624     }
2625   }
2626 
2627   Error Err = Error::success();
2628   auto ToTemplateParameters = importChecked(Err, D->getTemplateParameters());
2629   auto ToTemplatedDecl = importChecked(Err, D->getTemplatedDecl());
2630   if (Err)
2631     return std::move(Err);
2632 
2633   TypeAliasTemplateDecl *ToAlias;
2634   if (GetImportedOrCreateDecl(ToAlias, D, Importer.getToContext(), DC, Loc,
2635                               Name, ToTemplateParameters, ToTemplatedDecl))
2636     return ToAlias;
2637 
2638   ToTemplatedDecl->setDescribedAliasTemplate(ToAlias);
2639 
2640   ToAlias->setAccess(D->getAccess());
2641   ToAlias->setLexicalDeclContext(LexicalDC);
2642   LexicalDC->addDeclInternal(ToAlias);
2643   if (DC != Importer.getToContext().getTranslationUnitDecl())
2644     updateLookupTableForTemplateParameters(*ToTemplateParameters);
2645   return ToAlias;
2646 }
2647 
2648 ExpectedDecl ASTNodeImporter::VisitLabelDecl(LabelDecl *D) {
2649   // Import the major distinguishing characteristics of this label.
2650   DeclContext *DC, *LexicalDC;
2651   DeclarationName Name;
2652   SourceLocation Loc;
2653   NamedDecl *ToD;
2654   if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc))
2655     return std::move(Err);
2656   if (ToD)
2657     return ToD;
2658 
2659   assert(LexicalDC->isFunctionOrMethod());
2660 
2661   LabelDecl *ToLabel;
2662   if (D->isGnuLocal()) {
2663     ExpectedSLoc BeginLocOrErr = import(D->getBeginLoc());
2664     if (!BeginLocOrErr)
2665       return BeginLocOrErr.takeError();
2666     if (GetImportedOrCreateDecl(ToLabel, D, Importer.getToContext(), DC, Loc,
2667                                 Name.getAsIdentifierInfo(), *BeginLocOrErr))
2668       return ToLabel;
2669 
2670   } else {
2671     if (GetImportedOrCreateDecl(ToLabel, D, Importer.getToContext(), DC, Loc,
2672                                 Name.getAsIdentifierInfo()))
2673       return ToLabel;
2674 
2675   }
2676 
2677   Expected<LabelStmt *> ToStmtOrErr = import(D->getStmt());
2678   if (!ToStmtOrErr)
2679     return ToStmtOrErr.takeError();
2680 
2681   ToLabel->setStmt(*ToStmtOrErr);
2682   ToLabel->setLexicalDeclContext(LexicalDC);
2683   LexicalDC->addDeclInternal(ToLabel);
2684   return ToLabel;
2685 }
2686 
2687 ExpectedDecl ASTNodeImporter::VisitEnumDecl(EnumDecl *D) {
2688   // Import the major distinguishing characteristics of this enum.
2689   DeclContext *DC, *LexicalDC;
2690   DeclarationName Name;
2691   SourceLocation Loc;
2692   NamedDecl *ToD;
2693   if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc))
2694     return std::move(Err);
2695   if (ToD)
2696     return ToD;
2697 
2698   // Figure out what enum name we're looking for.
2699   unsigned IDNS = Decl::IDNS_Tag;
2700   DeclarationName SearchName = Name;
2701   if (!SearchName && D->getTypedefNameForAnonDecl()) {
2702     if (Error Err = importInto(
2703         SearchName, D->getTypedefNameForAnonDecl()->getDeclName()))
2704       return std::move(Err);
2705     IDNS = Decl::IDNS_Ordinary;
2706   } else if (Importer.getToContext().getLangOpts().CPlusPlus)
2707     IDNS |= Decl::IDNS_Ordinary;
2708 
2709   // We may already have an enum of the same name; try to find and match it.
2710   EnumDecl *PrevDecl = nullptr;
2711   if (!DC->isFunctionOrMethod() && SearchName) {
2712     SmallVector<NamedDecl *, 4> ConflictingDecls;
2713     auto FoundDecls =
2714         Importer.findDeclsInToCtx(DC, SearchName);
2715     for (auto *FoundDecl : FoundDecls) {
2716       if (!FoundDecl->isInIdentifierNamespace(IDNS))
2717         continue;
2718 
2719       if (auto *Typedef = dyn_cast<TypedefNameDecl>(FoundDecl)) {
2720         if (const auto *Tag = Typedef->getUnderlyingType()->getAs<TagType>())
2721           FoundDecl = Tag->getDecl();
2722       }
2723 
2724       if (auto *FoundEnum = dyn_cast<EnumDecl>(FoundDecl)) {
2725         if (!hasSameVisibilityContextAndLinkage(FoundEnum, D))
2726           continue;
2727         if (IsStructuralMatch(D, FoundEnum)) {
2728           EnumDecl *FoundDef = FoundEnum->getDefinition();
2729           if (D->isThisDeclarationADefinition() && FoundDef)
2730             return Importer.MapImported(D, FoundDef);
2731           PrevDecl = FoundEnum->getMostRecentDecl();
2732           break;
2733         }
2734         ConflictingDecls.push_back(FoundDecl);
2735       }
2736     }
2737 
2738     if (!ConflictingDecls.empty()) {
2739       ExpectedName NameOrErr = Importer.HandleNameConflict(
2740           SearchName, DC, IDNS, ConflictingDecls.data(),
2741           ConflictingDecls.size());
2742       if (NameOrErr)
2743         Name = NameOrErr.get();
2744       else
2745         return NameOrErr.takeError();
2746     }
2747   }
2748 
2749   Error Err = Error::success();
2750   auto ToBeginLoc = importChecked(Err, D->getBeginLoc());
2751   auto ToQualifierLoc = importChecked(Err, D->getQualifierLoc());
2752   auto ToIntegerType = importChecked(Err, D->getIntegerType());
2753   auto ToBraceRange = importChecked(Err, D->getBraceRange());
2754   if (Err)
2755     return std::move(Err);
2756 
2757   // Create the enum declaration.
2758   EnumDecl *D2;
2759   if (GetImportedOrCreateDecl(
2760           D2, D, Importer.getToContext(), DC, ToBeginLoc,
2761           Loc, Name.getAsIdentifierInfo(), PrevDecl, D->isScoped(),
2762           D->isScopedUsingClassTag(), D->isFixed()))
2763     return D2;
2764 
2765   D2->setQualifierInfo(ToQualifierLoc);
2766   D2->setIntegerType(ToIntegerType);
2767   D2->setBraceRange(ToBraceRange);
2768   D2->setAccess(D->getAccess());
2769   D2->setLexicalDeclContext(LexicalDC);
2770   addDeclToContexts(D, D2);
2771 
2772   if (MemberSpecializationInfo *MemberInfo = D->getMemberSpecializationInfo()) {
2773     TemplateSpecializationKind SK = MemberInfo->getTemplateSpecializationKind();
2774     EnumDecl *FromInst = D->getInstantiatedFromMemberEnum();
2775     if (Expected<EnumDecl *> ToInstOrErr = import(FromInst))
2776       D2->setInstantiationOfMemberEnum(*ToInstOrErr, SK);
2777     else
2778       return ToInstOrErr.takeError();
2779     if (ExpectedSLoc POIOrErr = import(MemberInfo->getPointOfInstantiation()))
2780       D2->getMemberSpecializationInfo()->setPointOfInstantiation(*POIOrErr);
2781     else
2782       return POIOrErr.takeError();
2783   }
2784 
2785   // Import the definition
2786   if (D->isCompleteDefinition())
2787     if (Error Err = ImportDefinition(D, D2))
2788       return std::move(Err);
2789 
2790   return D2;
2791 }
2792 
2793 ExpectedDecl ASTNodeImporter::VisitRecordDecl(RecordDecl *D) {
2794   bool IsFriendTemplate = false;
2795   if (auto *DCXX = dyn_cast<CXXRecordDecl>(D)) {
2796     IsFriendTemplate =
2797         DCXX->getDescribedClassTemplate() &&
2798         DCXX->getDescribedClassTemplate()->getFriendObjectKind() !=
2799             Decl::FOK_None;
2800   }
2801 
2802   // Import the major distinguishing characteristics of this record.
2803   DeclContext *DC = nullptr, *LexicalDC = nullptr;
2804   DeclarationName Name;
2805   SourceLocation Loc;
2806   NamedDecl *ToD = nullptr;
2807   if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc))
2808     return std::move(Err);
2809   if (ToD)
2810     return ToD;
2811 
2812   // Figure out what structure name we're looking for.
2813   unsigned IDNS = Decl::IDNS_Tag;
2814   DeclarationName SearchName = Name;
2815   if (!SearchName && D->getTypedefNameForAnonDecl()) {
2816     if (Error Err = importInto(
2817         SearchName, D->getTypedefNameForAnonDecl()->getDeclName()))
2818       return std::move(Err);
2819     IDNS = Decl::IDNS_Ordinary;
2820   } else if (Importer.getToContext().getLangOpts().CPlusPlus)
2821     IDNS |= Decl::IDNS_Ordinary | Decl::IDNS_TagFriend;
2822 
2823   // We may already have a record of the same name; try to find and match it.
2824   RecordDecl *PrevDecl = nullptr;
2825   if (!DC->isFunctionOrMethod() && !D->isLambda()) {
2826     SmallVector<NamedDecl *, 4> ConflictingDecls;
2827     auto FoundDecls =
2828         Importer.findDeclsInToCtx(DC, SearchName);
2829     if (!FoundDecls.empty()) {
2830       // We're going to have to compare D against potentially conflicting Decls,
2831       // so complete it.
2832       if (D->hasExternalLexicalStorage() && !D->isCompleteDefinition())
2833         D->getASTContext().getExternalSource()->CompleteType(D);
2834     }
2835 
2836     for (auto *FoundDecl : FoundDecls) {
2837       if (!FoundDecl->isInIdentifierNamespace(IDNS))
2838         continue;
2839 
2840       Decl *Found = FoundDecl;
2841       if (auto *Typedef = dyn_cast<TypedefNameDecl>(Found)) {
2842         if (const auto *Tag = Typedef->getUnderlyingType()->getAs<TagType>())
2843           Found = Tag->getDecl();
2844       }
2845 
2846       if (auto *FoundRecord = dyn_cast<RecordDecl>(Found)) {
2847         // Do not emit false positive diagnostic in case of unnamed
2848         // struct/union and in case of anonymous structs.  Would be false
2849         // because there may be several anonymous/unnamed structs in a class.
2850         // E.g. these are both valid:
2851         //  struct A { // unnamed structs
2852         //    struct { struct A *next; } entry0;
2853         //    struct { struct A *next; } entry1;
2854         //  };
2855         //  struct X { struct { int a; }; struct { int b; }; }; // anon structs
2856         if (!SearchName)
2857           if (!IsStructuralMatch(D, FoundRecord, false))
2858             continue;
2859 
2860         if (!hasSameVisibilityContextAndLinkage(FoundRecord, D))
2861           continue;
2862 
2863         if (IsStructuralMatch(D, FoundRecord)) {
2864           RecordDecl *FoundDef = FoundRecord->getDefinition();
2865           if (D->isThisDeclarationADefinition() && FoundDef) {
2866             // FIXME: Structural equivalence check should check for same
2867             // user-defined methods.
2868             Importer.MapImported(D, FoundDef);
2869             if (const auto *DCXX = dyn_cast<CXXRecordDecl>(D)) {
2870               auto *FoundCXX = dyn_cast<CXXRecordDecl>(FoundDef);
2871               assert(FoundCXX && "Record type mismatch");
2872 
2873               if (!Importer.isMinimalImport())
2874                 // FoundDef may not have every implicit method that D has
2875                 // because implicit methods are created only if they are used.
2876                 if (Error Err = ImportImplicitMethods(DCXX, FoundCXX))
2877                   return std::move(Err);
2878             }
2879           }
2880           PrevDecl = FoundRecord->getMostRecentDecl();
2881           break;
2882         }
2883         ConflictingDecls.push_back(FoundDecl);
2884       } // kind is RecordDecl
2885     } // for
2886 
2887     if (!ConflictingDecls.empty() && SearchName) {
2888       ExpectedName NameOrErr = Importer.HandleNameConflict(
2889           SearchName, DC, IDNS, ConflictingDecls.data(),
2890           ConflictingDecls.size());
2891       if (NameOrErr)
2892         Name = NameOrErr.get();
2893       else
2894         return NameOrErr.takeError();
2895     }
2896   }
2897 
2898   ExpectedSLoc BeginLocOrErr = import(D->getBeginLoc());
2899   if (!BeginLocOrErr)
2900     return BeginLocOrErr.takeError();
2901 
2902   // Create the record declaration.
2903   RecordDecl *D2 = nullptr;
2904   CXXRecordDecl *D2CXX = nullptr;
2905   if (auto *DCXX = dyn_cast<CXXRecordDecl>(D)) {
2906     if (DCXX->isLambda()) {
2907       auto TInfoOrErr = import(DCXX->getLambdaTypeInfo());
2908       if (!TInfoOrErr)
2909         return TInfoOrErr.takeError();
2910       if (GetImportedOrCreateSpecialDecl(
2911               D2CXX, CXXRecordDecl::CreateLambda, D, Importer.getToContext(),
2912               DC, *TInfoOrErr, Loc, DCXX->getLambdaDependencyKind(),
2913               DCXX->isGenericLambda(), DCXX->getLambdaCaptureDefault()))
2914         return D2CXX;
2915       ExpectedDecl CDeclOrErr = import(DCXX->getLambdaContextDecl());
2916       if (!CDeclOrErr)
2917         return CDeclOrErr.takeError();
2918       D2CXX->setLambdaMangling(DCXX->getLambdaManglingNumber(), *CDeclOrErr,
2919                                DCXX->hasKnownLambdaInternalLinkage());
2920       D2CXX->setDeviceLambdaManglingNumber(
2921           DCXX->getDeviceLambdaManglingNumber());
2922    } else if (DCXX->isInjectedClassName()) {
2923       // We have to be careful to do a similar dance to the one in
2924       // Sema::ActOnStartCXXMemberDeclarations
2925       const bool DelayTypeCreation = true;
2926       if (GetImportedOrCreateDecl(
2927               D2CXX, D, Importer.getToContext(), D->getTagKind(), DC,
2928               *BeginLocOrErr, Loc, Name.getAsIdentifierInfo(),
2929               cast_or_null<CXXRecordDecl>(PrevDecl), DelayTypeCreation))
2930         return D2CXX;
2931       Importer.getToContext().getTypeDeclType(
2932           D2CXX, dyn_cast<CXXRecordDecl>(DC));
2933     } else {
2934       if (GetImportedOrCreateDecl(D2CXX, D, Importer.getToContext(),
2935                                   D->getTagKind(), DC, *BeginLocOrErr, Loc,
2936                                   Name.getAsIdentifierInfo(),
2937                                   cast_or_null<CXXRecordDecl>(PrevDecl)))
2938         return D2CXX;
2939     }
2940 
2941     D2 = D2CXX;
2942     D2->setAccess(D->getAccess());
2943     D2->setLexicalDeclContext(LexicalDC);
2944     addDeclToContexts(D, D2);
2945 
2946     if (ClassTemplateDecl *FromDescribed =
2947         DCXX->getDescribedClassTemplate()) {
2948       ClassTemplateDecl *ToDescribed;
2949       if (Error Err = importInto(ToDescribed, FromDescribed))
2950         return std::move(Err);
2951       D2CXX->setDescribedClassTemplate(ToDescribed);
2952       if (!DCXX->isInjectedClassName() && !IsFriendTemplate) {
2953         // In a record describing a template the type should be an
2954         // InjectedClassNameType (see Sema::CheckClassTemplate). Update the
2955         // previously set type to the correct value here (ToDescribed is not
2956         // available at record create).
2957         // FIXME: The previous type is cleared but not removed from
2958         // ASTContext's internal storage.
2959         CXXRecordDecl *Injected = nullptr;
2960         for (NamedDecl *Found : D2CXX->noload_lookup(Name)) {
2961           auto *Record = dyn_cast<CXXRecordDecl>(Found);
2962           if (Record && Record->isInjectedClassName()) {
2963             Injected = Record;
2964             break;
2965           }
2966         }
2967         // Create an injected type for the whole redecl chain.
2968         SmallVector<Decl *, 2> Redecls =
2969             getCanonicalForwardRedeclChain(D2CXX);
2970         for (auto *R : Redecls) {
2971           auto *RI = cast<CXXRecordDecl>(R);
2972           RI->setTypeForDecl(nullptr);
2973           // Below we create a new injected type and assign that to the
2974           // canonical decl, subsequent declarations in the chain will reuse
2975           // that type.
2976           Importer.getToContext().getInjectedClassNameType(
2977               RI, ToDescribed->getInjectedClassNameSpecialization());
2978         }
2979         // Set the new type for the previous injected decl too.
2980         if (Injected) {
2981           Injected->setTypeForDecl(nullptr);
2982           Importer.getToContext().getTypeDeclType(Injected, D2CXX);
2983         }
2984       }
2985     } else if (MemberSpecializationInfo *MemberInfo =
2986                    DCXX->getMemberSpecializationInfo()) {
2987         TemplateSpecializationKind SK =
2988             MemberInfo->getTemplateSpecializationKind();
2989         CXXRecordDecl *FromInst = DCXX->getInstantiatedFromMemberClass();
2990 
2991         if (Expected<CXXRecordDecl *> ToInstOrErr = import(FromInst))
2992           D2CXX->setInstantiationOfMemberClass(*ToInstOrErr, SK);
2993         else
2994           return ToInstOrErr.takeError();
2995 
2996         if (ExpectedSLoc POIOrErr =
2997             import(MemberInfo->getPointOfInstantiation()))
2998           D2CXX->getMemberSpecializationInfo()->setPointOfInstantiation(
2999             *POIOrErr);
3000         else
3001           return POIOrErr.takeError();
3002     }
3003 
3004   } else {
3005     if (GetImportedOrCreateDecl(D2, D, Importer.getToContext(),
3006                                 D->getTagKind(), DC, *BeginLocOrErr, Loc,
3007                                 Name.getAsIdentifierInfo(), PrevDecl))
3008       return D2;
3009     D2->setLexicalDeclContext(LexicalDC);
3010     addDeclToContexts(D, D2);
3011   }
3012 
3013   if (auto BraceRangeOrErr = import(D->getBraceRange()))
3014     D2->setBraceRange(*BraceRangeOrErr);
3015   else
3016     return BraceRangeOrErr.takeError();
3017   if (auto QualifierLocOrErr = import(D->getQualifierLoc()))
3018     D2->setQualifierInfo(*QualifierLocOrErr);
3019   else
3020     return QualifierLocOrErr.takeError();
3021 
3022   if (D->isAnonymousStructOrUnion())
3023     D2->setAnonymousStructOrUnion(true);
3024 
3025   if (D->isCompleteDefinition())
3026     if (Error Err = ImportDefinition(D, D2, IDK_Default))
3027       return std::move(Err);
3028 
3029   return D2;
3030 }
3031 
3032 ExpectedDecl ASTNodeImporter::VisitEnumConstantDecl(EnumConstantDecl *D) {
3033   // Import the major distinguishing characteristics of this enumerator.
3034   DeclContext *DC, *LexicalDC;
3035   DeclarationName Name;
3036   SourceLocation Loc;
3037   NamedDecl *ToD;
3038   if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc))
3039     return std::move(Err);
3040   if (ToD)
3041     return ToD;
3042 
3043   // Determine whether there are any other declarations with the same name and
3044   // in the same context.
3045   if (!LexicalDC->isFunctionOrMethod()) {
3046     SmallVector<NamedDecl *, 4> ConflictingDecls;
3047     unsigned IDNS = Decl::IDNS_Ordinary;
3048     auto FoundDecls = Importer.findDeclsInToCtx(DC, Name);
3049     for (auto *FoundDecl : FoundDecls) {
3050       if (!FoundDecl->isInIdentifierNamespace(IDNS))
3051         continue;
3052 
3053       if (auto *FoundEnumConstant = dyn_cast<EnumConstantDecl>(FoundDecl)) {
3054         if (IsStructuralMatch(D, FoundEnumConstant))
3055           return Importer.MapImported(D, FoundEnumConstant);
3056         ConflictingDecls.push_back(FoundDecl);
3057       }
3058     }
3059 
3060     if (!ConflictingDecls.empty()) {
3061       ExpectedName NameOrErr = Importer.HandleNameConflict(
3062           Name, DC, IDNS, ConflictingDecls.data(), ConflictingDecls.size());
3063       if (NameOrErr)
3064         Name = NameOrErr.get();
3065       else
3066         return NameOrErr.takeError();
3067     }
3068   }
3069 
3070   ExpectedType TypeOrErr = import(D->getType());
3071   if (!TypeOrErr)
3072     return TypeOrErr.takeError();
3073 
3074   ExpectedExpr InitOrErr = import(D->getInitExpr());
3075   if (!InitOrErr)
3076     return InitOrErr.takeError();
3077 
3078   EnumConstantDecl *ToEnumerator;
3079   if (GetImportedOrCreateDecl(
3080           ToEnumerator, D, Importer.getToContext(), cast<EnumDecl>(DC), Loc,
3081           Name.getAsIdentifierInfo(), *TypeOrErr, *InitOrErr, D->getInitVal()))
3082     return ToEnumerator;
3083 
3084   ToEnumerator->setAccess(D->getAccess());
3085   ToEnumerator->setLexicalDeclContext(LexicalDC);
3086   LexicalDC->addDeclInternal(ToEnumerator);
3087   return ToEnumerator;
3088 }
3089 
3090 Error ASTNodeImporter::ImportTemplateParameterLists(const DeclaratorDecl *FromD,
3091                                                     DeclaratorDecl *ToD) {
3092   unsigned int Num = FromD->getNumTemplateParameterLists();
3093   if (Num == 0)
3094     return Error::success();
3095   SmallVector<TemplateParameterList *, 2> ToTPLists(Num);
3096   for (unsigned int I = 0; I < Num; ++I)
3097     if (Expected<TemplateParameterList *> ToTPListOrErr =
3098             import(FromD->getTemplateParameterList(I)))
3099       ToTPLists[I] = *ToTPListOrErr;
3100     else
3101       return ToTPListOrErr.takeError();
3102   ToD->setTemplateParameterListsInfo(Importer.ToContext, ToTPLists);
3103   return Error::success();
3104 }
3105 
3106 Error ASTNodeImporter::ImportTemplateInformation(
3107     FunctionDecl *FromFD, FunctionDecl *ToFD) {
3108   switch (FromFD->getTemplatedKind()) {
3109   case FunctionDecl::TK_NonTemplate:
3110   case FunctionDecl::TK_FunctionTemplate:
3111     return Error::success();
3112 
3113   case FunctionDecl::TK_MemberSpecialization: {
3114     TemplateSpecializationKind TSK = FromFD->getTemplateSpecializationKind();
3115 
3116     if (Expected<FunctionDecl *> InstFDOrErr =
3117         import(FromFD->getInstantiatedFromMemberFunction()))
3118       ToFD->setInstantiationOfMemberFunction(*InstFDOrErr, TSK);
3119     else
3120       return InstFDOrErr.takeError();
3121 
3122     if (ExpectedSLoc POIOrErr = import(
3123         FromFD->getMemberSpecializationInfo()->getPointOfInstantiation()))
3124       ToFD->getMemberSpecializationInfo()->setPointOfInstantiation(*POIOrErr);
3125     else
3126       return POIOrErr.takeError();
3127 
3128     return Error::success();
3129   }
3130 
3131   case FunctionDecl::TK_FunctionTemplateSpecialization: {
3132     auto FunctionAndArgsOrErr =
3133         ImportFunctionTemplateWithTemplateArgsFromSpecialization(FromFD);
3134     if (!FunctionAndArgsOrErr)
3135       return FunctionAndArgsOrErr.takeError();
3136 
3137     TemplateArgumentList *ToTAList = TemplateArgumentList::CreateCopy(
3138           Importer.getToContext(), std::get<1>(*FunctionAndArgsOrErr));
3139 
3140     auto *FTSInfo = FromFD->getTemplateSpecializationInfo();
3141     TemplateArgumentListInfo ToTAInfo;
3142     const auto *FromTAArgsAsWritten = FTSInfo->TemplateArgumentsAsWritten;
3143     if (FromTAArgsAsWritten)
3144       if (Error Err = ImportTemplateArgumentListInfo(
3145           *FromTAArgsAsWritten, ToTAInfo))
3146         return Err;
3147 
3148     ExpectedSLoc POIOrErr = import(FTSInfo->getPointOfInstantiation());
3149     if (!POIOrErr)
3150       return POIOrErr.takeError();
3151 
3152     if (Error Err = ImportTemplateParameterLists(FromFD, ToFD))
3153       return Err;
3154 
3155     TemplateSpecializationKind TSK = FTSInfo->getTemplateSpecializationKind();
3156     ToFD->setFunctionTemplateSpecialization(
3157         std::get<0>(*FunctionAndArgsOrErr), ToTAList, /* InsertPos= */ nullptr,
3158         TSK, FromTAArgsAsWritten ? &ToTAInfo : nullptr, *POIOrErr);
3159     return Error::success();
3160   }
3161 
3162   case FunctionDecl::TK_DependentFunctionTemplateSpecialization: {
3163     auto *FromInfo = FromFD->getDependentSpecializationInfo();
3164     UnresolvedSet<8> TemplDecls;
3165     unsigned NumTemplates = FromInfo->getNumTemplates();
3166     for (unsigned I = 0; I < NumTemplates; I++) {
3167       if (Expected<FunctionTemplateDecl *> ToFTDOrErr =
3168           import(FromInfo->getTemplate(I)))
3169         TemplDecls.addDecl(*ToFTDOrErr);
3170       else
3171         return ToFTDOrErr.takeError();
3172     }
3173 
3174     // Import TemplateArgumentListInfo.
3175     TemplateArgumentListInfo ToTAInfo;
3176     if (Error Err = ImportTemplateArgumentListInfo(
3177         FromInfo->getLAngleLoc(), FromInfo->getRAngleLoc(),
3178         llvm::makeArrayRef(
3179             FromInfo->getTemplateArgs(), FromInfo->getNumTemplateArgs()),
3180         ToTAInfo))
3181       return Err;
3182 
3183     ToFD->setDependentTemplateSpecialization(Importer.getToContext(),
3184                                              TemplDecls, ToTAInfo);
3185     return Error::success();
3186   }
3187   }
3188   llvm_unreachable("All cases should be covered!");
3189 }
3190 
3191 Expected<FunctionDecl *>
3192 ASTNodeImporter::FindFunctionTemplateSpecialization(FunctionDecl *FromFD) {
3193   auto FunctionAndArgsOrErr =
3194       ImportFunctionTemplateWithTemplateArgsFromSpecialization(FromFD);
3195   if (!FunctionAndArgsOrErr)
3196     return FunctionAndArgsOrErr.takeError();
3197 
3198   FunctionTemplateDecl *Template;
3199   TemplateArgsTy ToTemplArgs;
3200   std::tie(Template, ToTemplArgs) = *FunctionAndArgsOrErr;
3201   void *InsertPos = nullptr;
3202   auto *FoundSpec = Template->findSpecialization(ToTemplArgs, InsertPos);
3203   return FoundSpec;
3204 }
3205 
3206 Error ASTNodeImporter::ImportFunctionDeclBody(FunctionDecl *FromFD,
3207                                               FunctionDecl *ToFD) {
3208   if (Stmt *FromBody = FromFD->getBody()) {
3209     if (ExpectedStmt ToBodyOrErr = import(FromBody))
3210       ToFD->setBody(*ToBodyOrErr);
3211     else
3212       return ToBodyOrErr.takeError();
3213   }
3214   return Error::success();
3215 }
3216 
3217 // Returns true if the given D has a DeclContext up to the TranslationUnitDecl
3218 // which is equal to the given DC.
3219 static bool isAncestorDeclContextOf(const DeclContext *DC, const Decl *D) {
3220   const DeclContext *DCi = D->getDeclContext();
3221   while (DCi != D->getTranslationUnitDecl()) {
3222     if (DCi == DC)
3223       return true;
3224     DCi = DCi->getParent();
3225   }
3226   return false;
3227 }
3228 
3229 bool ASTNodeImporter::hasAutoReturnTypeDeclaredInside(FunctionDecl *D) {
3230   QualType FromTy = D->getType();
3231   const auto *FromFPT = FromTy->getAs<FunctionProtoType>();
3232   assert(FromFPT && "Must be called on FunctionProtoType");
3233   if (const AutoType *AutoT =
3234           FromFPT->getReturnType()->getContainedAutoType()) {
3235     QualType DeducedT = AutoT->getDeducedType();
3236     if (const auto *RecordT =
3237             !DeducedT.isNull() ? DeducedT->getAs<RecordType>() : nullptr) {
3238       const RecordDecl *RD = RecordT->getDecl();
3239       assert(RD);
3240       if (isAncestorDeclContextOf(D, RD)) {
3241         assert(RD->getLexicalDeclContext() == RD->getDeclContext());
3242         return true;
3243       }
3244     }
3245   }
3246   if (const auto *TypedefT = FromFPT->getReturnType()->getAs<TypedefType>()) {
3247     const TypedefNameDecl *TD = TypedefT->getDecl();
3248     assert(TD);
3249     if (isAncestorDeclContextOf(D, TD)) {
3250       assert(TD->getLexicalDeclContext() == TD->getDeclContext());
3251       return true;
3252     }
3253   }
3254   return false;
3255 }
3256 
3257 ExplicitSpecifier
3258 ASTNodeImporter::importExplicitSpecifier(Error &Err, ExplicitSpecifier ESpec) {
3259   Expr *ExplicitExpr = ESpec.getExpr();
3260   if (ExplicitExpr)
3261     ExplicitExpr = importChecked(Err, ESpec.getExpr());
3262   return ExplicitSpecifier(ExplicitExpr, ESpec.getKind());
3263 }
3264 
3265 ExpectedDecl ASTNodeImporter::VisitFunctionDecl(FunctionDecl *D) {
3266 
3267   SmallVector<Decl *, 2> Redecls = getCanonicalForwardRedeclChain(D);
3268   auto RedeclIt = Redecls.begin();
3269   // Import the first part of the decl chain. I.e. import all previous
3270   // declarations starting from the canonical decl.
3271   for (; RedeclIt != Redecls.end() && *RedeclIt != D; ++RedeclIt) {
3272     ExpectedDecl ToRedeclOrErr = import(*RedeclIt);
3273     if (!ToRedeclOrErr)
3274       return ToRedeclOrErr.takeError();
3275   }
3276   assert(*RedeclIt == D);
3277 
3278   // Import the major distinguishing characteristics of this function.
3279   DeclContext *DC, *LexicalDC;
3280   DeclarationName Name;
3281   SourceLocation Loc;
3282   NamedDecl *ToD;
3283   if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc))
3284     return std::move(Err);
3285   if (ToD)
3286     return ToD;
3287 
3288   FunctionDecl *FoundByLookup = nullptr;
3289   FunctionTemplateDecl *FromFT = D->getDescribedFunctionTemplate();
3290 
3291   // If this is a function template specialization, then try to find the same
3292   // existing specialization in the "to" context. The lookup below will not
3293   // find any specialization, but would find the primary template; thus, we
3294   // have to skip normal lookup in case of specializations.
3295   // FIXME handle member function templates (TK_MemberSpecialization) similarly?
3296   if (D->getTemplatedKind() ==
3297       FunctionDecl::TK_FunctionTemplateSpecialization) {
3298     auto FoundFunctionOrErr = FindFunctionTemplateSpecialization(D);
3299     if (!FoundFunctionOrErr)
3300       return FoundFunctionOrErr.takeError();
3301     if (FunctionDecl *FoundFunction = *FoundFunctionOrErr) {
3302       if (Decl *Def = FindAndMapDefinition(D, FoundFunction))
3303         return Def;
3304       FoundByLookup = FoundFunction;
3305     }
3306   }
3307   // Try to find a function in our own ("to") context with the same name, same
3308   // type, and in the same context as the function we're importing.
3309   else if (!LexicalDC->isFunctionOrMethod()) {
3310     SmallVector<NamedDecl *, 4> ConflictingDecls;
3311     unsigned IDNS = Decl::IDNS_Ordinary | Decl::IDNS_OrdinaryFriend;
3312     auto FoundDecls = Importer.findDeclsInToCtx(DC, Name);
3313     for (auto *FoundDecl : FoundDecls) {
3314       if (!FoundDecl->isInIdentifierNamespace(IDNS))
3315         continue;
3316 
3317       if (auto *FoundFunction = dyn_cast<FunctionDecl>(FoundDecl)) {
3318         if (!hasSameVisibilityContextAndLinkage(FoundFunction, D))
3319           continue;
3320 
3321         if (IsStructuralMatch(D, FoundFunction)) {
3322           if (Decl *Def = FindAndMapDefinition(D, FoundFunction))
3323             return Def;
3324           FoundByLookup = FoundFunction;
3325           break;
3326         }
3327         // FIXME: Check for overloading more carefully, e.g., by boosting
3328         // Sema::IsOverload out to the AST library.
3329 
3330         // Function overloading is okay in C++.
3331         if (Importer.getToContext().getLangOpts().CPlusPlus)
3332           continue;
3333 
3334         // Complain about inconsistent function types.
3335         Importer.ToDiag(Loc, diag::warn_odr_function_type_inconsistent)
3336             << Name << D->getType() << FoundFunction->getType();
3337         Importer.ToDiag(FoundFunction->getLocation(), diag::note_odr_value_here)
3338             << FoundFunction->getType();
3339         ConflictingDecls.push_back(FoundDecl);
3340       }
3341     }
3342 
3343     if (!ConflictingDecls.empty()) {
3344       ExpectedName NameOrErr = Importer.HandleNameConflict(
3345           Name, DC, IDNS, ConflictingDecls.data(), ConflictingDecls.size());
3346       if (NameOrErr)
3347         Name = NameOrErr.get();
3348       else
3349         return NameOrErr.takeError();
3350     }
3351   }
3352 
3353   // We do not allow more than one in-class declaration of a function. This is
3354   // because AST clients like VTableBuilder asserts on this. VTableBuilder
3355   // assumes there is only one in-class declaration. Building a redecl
3356   // chain would result in more than one in-class declaration for
3357   // overrides (even if they are part of the same redecl chain inside the
3358   // derived class.)
3359   if (FoundByLookup) {
3360     if (isa<CXXMethodDecl>(FoundByLookup)) {
3361       if (D->getLexicalDeclContext() == D->getDeclContext()) {
3362         if (!D->doesThisDeclarationHaveABody()) {
3363           if (FunctionTemplateDecl *DescribedD =
3364                   D->getDescribedFunctionTemplate()) {
3365             // Handle a "templated" function together with its described
3366             // template. This avoids need for a similar check at import of the
3367             // described template.
3368             assert(FoundByLookup->getDescribedFunctionTemplate() &&
3369                    "Templated function mapped to non-templated?");
3370             Importer.MapImported(DescribedD,
3371                                  FoundByLookup->getDescribedFunctionTemplate());
3372           }
3373           return Importer.MapImported(D, FoundByLookup);
3374         } else {
3375           // Let's continue and build up the redecl chain in this case.
3376           // FIXME Merge the functions into one decl.
3377         }
3378       }
3379     }
3380   }
3381 
3382   DeclarationNameInfo NameInfo(Name, Loc);
3383   // Import additional name location/type info.
3384   if (Error Err = ImportDeclarationNameLoc(D->getNameInfo(), NameInfo))
3385     return std::move(Err);
3386 
3387   QualType FromTy = D->getType();
3388   TypeSourceInfo *FromTSI = D->getTypeSourceInfo();
3389   // Set to true if we do not import the type of the function as is. There are
3390   // cases when the original type would result in an infinite recursion during
3391   // the import. To avoid an infinite recursion when importing, we create the
3392   // FunctionDecl with a simplified function type and update it only after the
3393   // relevant AST nodes are already imported.
3394   // The type is related to TypeSourceInfo (it references the type), so we must
3395   // do the same with TypeSourceInfo.
3396   bool UsedDifferentProtoType = false;
3397   if (const auto *FromFPT = FromTy->getAs<FunctionProtoType>()) {
3398     QualType FromReturnTy = FromFPT->getReturnType();
3399     // Functions with auto return type may define a struct inside their body
3400     // and the return type could refer to that struct.
3401     // E.g.: auto foo() { struct X{}; return X(); }
3402     // To avoid an infinite recursion when importing, create the FunctionDecl
3403     // with a simplified return type.
3404     if (hasAutoReturnTypeDeclaredInside(D)) {
3405       FromReturnTy = Importer.getFromContext().VoidTy;
3406       UsedDifferentProtoType = true;
3407     }
3408     FunctionProtoType::ExtProtoInfo FromEPI = FromFPT->getExtProtoInfo();
3409     // FunctionProtoType::ExtProtoInfo's ExceptionSpecDecl can point to the
3410     // FunctionDecl that we are importing the FunctionProtoType for.
3411     // To avoid an infinite recursion when importing, create the FunctionDecl
3412     // with a simplified function type.
3413     if (FromEPI.ExceptionSpec.SourceDecl ||
3414         FromEPI.ExceptionSpec.SourceTemplate ||
3415         FromEPI.ExceptionSpec.NoexceptExpr) {
3416       FunctionProtoType::ExtProtoInfo DefaultEPI;
3417       FromEPI = DefaultEPI;
3418       UsedDifferentProtoType = true;
3419     }
3420     FromTy = Importer.getFromContext().getFunctionType(
3421         FromReturnTy, FromFPT->getParamTypes(), FromEPI);
3422     FromTSI = Importer.getFromContext().getTrivialTypeSourceInfo(
3423         FromTy, D->getBeginLoc());
3424   }
3425 
3426   Error Err = Error::success();
3427   auto T = importChecked(Err, FromTy);
3428   auto TInfo = importChecked(Err, FromTSI);
3429   auto ToInnerLocStart = importChecked(Err, D->getInnerLocStart());
3430   auto ToEndLoc = importChecked(Err, D->getEndLoc());
3431   auto ToQualifierLoc = importChecked(Err, D->getQualifierLoc());
3432   auto TrailingRequiresClause =
3433       importChecked(Err, D->getTrailingRequiresClause());
3434   if (Err)
3435     return std::move(Err);
3436 
3437   // Import the function parameters.
3438   SmallVector<ParmVarDecl *, 8> Parameters;
3439   for (auto P : D->parameters()) {
3440     if (Expected<ParmVarDecl *> ToPOrErr = import(P))
3441       Parameters.push_back(*ToPOrErr);
3442     else
3443       return ToPOrErr.takeError();
3444   }
3445 
3446   // Create the imported function.
3447   FunctionDecl *ToFunction = nullptr;
3448   if (auto *FromConstructor = dyn_cast<CXXConstructorDecl>(D)) {
3449     ExplicitSpecifier ESpec =
3450         importExplicitSpecifier(Err, FromConstructor->getExplicitSpecifier());
3451     if (Err)
3452       return std::move(Err);
3453     auto ToInheritedConstructor = InheritedConstructor();
3454     if (FromConstructor->isInheritingConstructor()) {
3455       Expected<InheritedConstructor> ImportedInheritedCtor =
3456           import(FromConstructor->getInheritedConstructor());
3457       if (!ImportedInheritedCtor)
3458         return ImportedInheritedCtor.takeError();
3459       ToInheritedConstructor = *ImportedInheritedCtor;
3460     }
3461     if (GetImportedOrCreateDecl<CXXConstructorDecl>(
3462             ToFunction, D, Importer.getToContext(), cast<CXXRecordDecl>(DC),
3463             ToInnerLocStart, NameInfo, T, TInfo, ESpec, D->UsesFPIntrin(),
3464             D->isInlineSpecified(), D->isImplicit(), D->getConstexprKind(),
3465             ToInheritedConstructor, TrailingRequiresClause))
3466       return ToFunction;
3467   } else if (CXXDestructorDecl *FromDtor = dyn_cast<CXXDestructorDecl>(D)) {
3468 
3469     Error Err = Error::success();
3470     auto ToOperatorDelete = importChecked(
3471         Err, const_cast<FunctionDecl *>(FromDtor->getOperatorDelete()));
3472     auto ToThisArg = importChecked(Err, FromDtor->getOperatorDeleteThisArg());
3473     if (Err)
3474       return std::move(Err);
3475 
3476     if (GetImportedOrCreateDecl<CXXDestructorDecl>(
3477             ToFunction, D, Importer.getToContext(), cast<CXXRecordDecl>(DC),
3478             ToInnerLocStart, NameInfo, T, TInfo, D->UsesFPIntrin(),
3479             D->isInlineSpecified(), D->isImplicit(), D->getConstexprKind(),
3480             TrailingRequiresClause))
3481       return ToFunction;
3482 
3483     CXXDestructorDecl *ToDtor = cast<CXXDestructorDecl>(ToFunction);
3484 
3485     ToDtor->setOperatorDelete(ToOperatorDelete, ToThisArg);
3486   } else if (CXXConversionDecl *FromConversion =
3487                  dyn_cast<CXXConversionDecl>(D)) {
3488     ExplicitSpecifier ESpec =
3489         importExplicitSpecifier(Err, FromConversion->getExplicitSpecifier());
3490     if (Err)
3491       return std::move(Err);
3492     if (GetImportedOrCreateDecl<CXXConversionDecl>(
3493             ToFunction, D, Importer.getToContext(), cast<CXXRecordDecl>(DC),
3494             ToInnerLocStart, NameInfo, T, TInfo, D->UsesFPIntrin(),
3495             D->isInlineSpecified(), ESpec, D->getConstexprKind(),
3496             SourceLocation(), TrailingRequiresClause))
3497       return ToFunction;
3498   } else if (auto *Method = dyn_cast<CXXMethodDecl>(D)) {
3499     if (GetImportedOrCreateDecl<CXXMethodDecl>(
3500             ToFunction, D, Importer.getToContext(), cast<CXXRecordDecl>(DC),
3501             ToInnerLocStart, NameInfo, T, TInfo, Method->getStorageClass(),
3502             Method->UsesFPIntrin(), Method->isInlineSpecified(),
3503             D->getConstexprKind(), SourceLocation(), TrailingRequiresClause))
3504       return ToFunction;
3505   } else if (auto *Guide = dyn_cast<CXXDeductionGuideDecl>(D)) {
3506     ExplicitSpecifier ESpec =
3507         importExplicitSpecifier(Err, Guide->getExplicitSpecifier());
3508     CXXConstructorDecl *Ctor =
3509         importChecked(Err, Guide->getCorrespondingConstructor());
3510     if (Err)
3511       return std::move(Err);
3512     if (GetImportedOrCreateDecl<CXXDeductionGuideDecl>(
3513             ToFunction, D, Importer.getToContext(), DC, ToInnerLocStart, ESpec,
3514             NameInfo, T, TInfo, ToEndLoc, Ctor))
3515       return ToFunction;
3516     cast<CXXDeductionGuideDecl>(ToFunction)
3517         ->setIsCopyDeductionCandidate(Guide->isCopyDeductionCandidate());
3518   } else {
3519     if (GetImportedOrCreateDecl(
3520             ToFunction, D, Importer.getToContext(), DC, ToInnerLocStart,
3521             NameInfo, T, TInfo, D->getStorageClass(), D->UsesFPIntrin(),
3522             D->isInlineSpecified(), D->hasWrittenPrototype(),
3523             D->getConstexprKind(), TrailingRequiresClause))
3524       return ToFunction;
3525   }
3526 
3527   // Connect the redecl chain.
3528   if (FoundByLookup) {
3529     auto *Recent = const_cast<FunctionDecl *>(
3530           FoundByLookup->getMostRecentDecl());
3531     ToFunction->setPreviousDecl(Recent);
3532     // FIXME Probably we should merge exception specifications.  E.g. In the
3533     // "To" context the existing function may have exception specification with
3534     // noexcept-unevaluated, while the newly imported function may have an
3535     // evaluated noexcept.  A call to adjustExceptionSpec() on the imported
3536     // decl and its redeclarations may be required.
3537   }
3538 
3539   ToFunction->setQualifierInfo(ToQualifierLoc);
3540   ToFunction->setAccess(D->getAccess());
3541   ToFunction->setLexicalDeclContext(LexicalDC);
3542   ToFunction->setVirtualAsWritten(D->isVirtualAsWritten());
3543   ToFunction->setTrivial(D->isTrivial());
3544   ToFunction->setPure(D->isPure());
3545   ToFunction->setDefaulted(D->isDefaulted());
3546   ToFunction->setExplicitlyDefaulted(D->isExplicitlyDefaulted());
3547   ToFunction->setDeletedAsWritten(D->isDeletedAsWritten());
3548   ToFunction->setRangeEnd(ToEndLoc);
3549 
3550   // Set the parameters.
3551   for (auto *Param : Parameters) {
3552     Param->setOwningFunction(ToFunction);
3553     ToFunction->addDeclInternal(Param);
3554     if (ASTImporterLookupTable *LT = Importer.SharedState->getLookupTable())
3555       LT->update(Param, Importer.getToContext().getTranslationUnitDecl());
3556   }
3557   ToFunction->setParams(Parameters);
3558 
3559   // We need to complete creation of FunctionProtoTypeLoc manually with setting
3560   // params it refers to.
3561   if (TInfo) {
3562     if (auto ProtoLoc =
3563         TInfo->getTypeLoc().IgnoreParens().getAs<FunctionProtoTypeLoc>()) {
3564       for (unsigned I = 0, N = Parameters.size(); I != N; ++I)
3565         ProtoLoc.setParam(I, Parameters[I]);
3566     }
3567   }
3568 
3569   // Import the describing template function, if any.
3570   if (FromFT) {
3571     auto ToFTOrErr = import(FromFT);
3572     if (!ToFTOrErr)
3573       return ToFTOrErr.takeError();
3574   }
3575 
3576   // Import Ctor initializers.
3577   if (auto *FromConstructor = dyn_cast<CXXConstructorDecl>(D)) {
3578     if (unsigned NumInitializers = FromConstructor->getNumCtorInitializers()) {
3579       SmallVector<CXXCtorInitializer *, 4> CtorInitializers(NumInitializers);
3580       // Import first, then allocate memory and copy if there was no error.
3581       if (Error Err = ImportContainerChecked(
3582           FromConstructor->inits(), CtorInitializers))
3583         return std::move(Err);
3584       auto **Memory =
3585           new (Importer.getToContext()) CXXCtorInitializer *[NumInitializers];
3586       std::copy(CtorInitializers.begin(), CtorInitializers.end(), Memory);
3587       auto *ToCtor = cast<CXXConstructorDecl>(ToFunction);
3588       ToCtor->setCtorInitializers(Memory);
3589       ToCtor->setNumCtorInitializers(NumInitializers);
3590     }
3591   }
3592 
3593   if (D->doesThisDeclarationHaveABody()) {
3594     Error Err = ImportFunctionDeclBody(D, ToFunction);
3595 
3596     if (Err)
3597       return std::move(Err);
3598   }
3599 
3600   // Import and set the original type in case we used another type.
3601   if (UsedDifferentProtoType) {
3602     if (ExpectedType TyOrErr = import(D->getType()))
3603       ToFunction->setType(*TyOrErr);
3604     else
3605       return TyOrErr.takeError();
3606     if (Expected<TypeSourceInfo *> TSIOrErr = import(D->getTypeSourceInfo()))
3607       ToFunction->setTypeSourceInfo(*TSIOrErr);
3608     else
3609       return TSIOrErr.takeError();
3610   }
3611 
3612   // FIXME: Other bits to merge?
3613 
3614   // If it is a template, import all related things.
3615   if (Error Err = ImportTemplateInformation(D, ToFunction))
3616     return std::move(Err);
3617 
3618   addDeclToContexts(D, ToFunction);
3619 
3620   if (auto *FromCXXMethod = dyn_cast<CXXMethodDecl>(D))
3621     if (Error Err = ImportOverriddenMethods(cast<CXXMethodDecl>(ToFunction),
3622                                             FromCXXMethod))
3623       return std::move(Err);
3624 
3625   // Import the rest of the chain. I.e. import all subsequent declarations.
3626   for (++RedeclIt; RedeclIt != Redecls.end(); ++RedeclIt) {
3627     ExpectedDecl ToRedeclOrErr = import(*RedeclIt);
3628     if (!ToRedeclOrErr)
3629       return ToRedeclOrErr.takeError();
3630   }
3631 
3632   return ToFunction;
3633 }
3634 
3635 ExpectedDecl ASTNodeImporter::VisitCXXMethodDecl(CXXMethodDecl *D) {
3636   return VisitFunctionDecl(D);
3637 }
3638 
3639 ExpectedDecl ASTNodeImporter::VisitCXXConstructorDecl(CXXConstructorDecl *D) {
3640   return VisitCXXMethodDecl(D);
3641 }
3642 
3643 ExpectedDecl ASTNodeImporter::VisitCXXDestructorDecl(CXXDestructorDecl *D) {
3644   return VisitCXXMethodDecl(D);
3645 }
3646 
3647 ExpectedDecl ASTNodeImporter::VisitCXXConversionDecl(CXXConversionDecl *D) {
3648   return VisitCXXMethodDecl(D);
3649 }
3650 
3651 ExpectedDecl
3652 ASTNodeImporter::VisitCXXDeductionGuideDecl(CXXDeductionGuideDecl *D) {
3653   return VisitFunctionDecl(D);
3654 }
3655 
3656 ExpectedDecl ASTNodeImporter::VisitFieldDecl(FieldDecl *D) {
3657   // Import the major distinguishing characteristics of a variable.
3658   DeclContext *DC, *LexicalDC;
3659   DeclarationName Name;
3660   SourceLocation Loc;
3661   NamedDecl *ToD;
3662   if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc))
3663     return std::move(Err);
3664   if (ToD)
3665     return ToD;
3666 
3667   // Determine whether we've already imported this field.
3668   auto FoundDecls = Importer.findDeclsInToCtx(DC, Name);
3669   for (auto *FoundDecl : FoundDecls) {
3670     if (FieldDecl *FoundField = dyn_cast<FieldDecl>(FoundDecl)) {
3671       // For anonymous fields, match up by index.
3672       if (!Name &&
3673           ASTImporter::getFieldIndex(D) !=
3674           ASTImporter::getFieldIndex(FoundField))
3675         continue;
3676 
3677       if (Importer.IsStructurallyEquivalent(D->getType(),
3678                                             FoundField->getType())) {
3679         Importer.MapImported(D, FoundField);
3680         // In case of a FieldDecl of a ClassTemplateSpecializationDecl, the
3681         // initializer of a FieldDecl might not had been instantiated in the
3682         // "To" context.  However, the "From" context might instantiated that,
3683         // thus we have to merge that.
3684         // Note: `hasInClassInitializer()` is not the same as non-null
3685         // `getInClassInitializer()` value.
3686         if (Expr *FromInitializer = D->getInClassInitializer()) {
3687           if (ExpectedExpr ToInitializerOrErr = import(FromInitializer)) {
3688             // Import of the FromInitializer may result in the setting of
3689             // InClassInitializer. If not, set it here.
3690             assert(FoundField->hasInClassInitializer() &&
3691                    "Field should have an in-class initializer if it has an "
3692                    "expression for it.");
3693             if (!FoundField->getInClassInitializer())
3694               FoundField->setInClassInitializer(*ToInitializerOrErr);
3695           } else {
3696               return ToInitializerOrErr.takeError();
3697           }
3698         }
3699         return FoundField;
3700       }
3701 
3702       // FIXME: Why is this case not handled with calling HandleNameConflict?
3703       Importer.ToDiag(Loc, diag::warn_odr_field_type_inconsistent)
3704         << Name << D->getType() << FoundField->getType();
3705       Importer.ToDiag(FoundField->getLocation(), diag::note_odr_value_here)
3706         << FoundField->getType();
3707 
3708       return make_error<ImportError>(ImportError::NameConflict);
3709     }
3710   }
3711 
3712   Error Err = Error::success();
3713   auto ToType = importChecked(Err, D->getType());
3714   auto ToTInfo = importChecked(Err, D->getTypeSourceInfo());
3715   auto ToBitWidth = importChecked(Err, D->getBitWidth());
3716   auto ToInnerLocStart = importChecked(Err, D->getInnerLocStart());
3717   auto ToInitializer = importChecked(Err, D->getInClassInitializer());
3718   if (Err)
3719     return std::move(Err);
3720   const Type *ToCapturedVLAType = nullptr;
3721   if (Error Err = Importer.importInto(
3722           ToCapturedVLAType, cast_or_null<Type>(D->getCapturedVLAType())))
3723     return std::move(Err);
3724 
3725   FieldDecl *ToField;
3726   if (GetImportedOrCreateDecl(ToField, D, Importer.getToContext(), DC,
3727                               ToInnerLocStart, Loc, Name.getAsIdentifierInfo(),
3728                               ToType, ToTInfo, ToBitWidth, D->isMutable(),
3729                               D->getInClassInitStyle()))
3730     return ToField;
3731 
3732   ToField->setAccess(D->getAccess());
3733   ToField->setLexicalDeclContext(LexicalDC);
3734   if (ToInitializer)
3735     ToField->setInClassInitializer(ToInitializer);
3736   ToField->setImplicit(D->isImplicit());
3737   if (ToCapturedVLAType)
3738     ToField->setCapturedVLAType(cast<VariableArrayType>(ToCapturedVLAType));
3739   LexicalDC->addDeclInternal(ToField);
3740   return ToField;
3741 }
3742 
3743 ExpectedDecl ASTNodeImporter::VisitIndirectFieldDecl(IndirectFieldDecl *D) {
3744   // Import the major distinguishing characteristics of a variable.
3745   DeclContext *DC, *LexicalDC;
3746   DeclarationName Name;
3747   SourceLocation Loc;
3748   NamedDecl *ToD;
3749   if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc))
3750     return std::move(Err);
3751   if (ToD)
3752     return ToD;
3753 
3754   // Determine whether we've already imported this field.
3755   auto FoundDecls = Importer.findDeclsInToCtx(DC, Name);
3756   for (unsigned I = 0, N = FoundDecls.size(); I != N; ++I) {
3757     if (auto *FoundField = dyn_cast<IndirectFieldDecl>(FoundDecls[I])) {
3758       // For anonymous indirect fields, match up by index.
3759       if (!Name &&
3760           ASTImporter::getFieldIndex(D) !=
3761           ASTImporter::getFieldIndex(FoundField))
3762         continue;
3763 
3764       if (Importer.IsStructurallyEquivalent(D->getType(),
3765                                             FoundField->getType(),
3766                                             !Name.isEmpty())) {
3767         Importer.MapImported(D, FoundField);
3768         return FoundField;
3769       }
3770 
3771       // If there are more anonymous fields to check, continue.
3772       if (!Name && I < N-1)
3773         continue;
3774 
3775       // FIXME: Why is this case not handled with calling HandleNameConflict?
3776       Importer.ToDiag(Loc, diag::warn_odr_field_type_inconsistent)
3777         << Name << D->getType() << FoundField->getType();
3778       Importer.ToDiag(FoundField->getLocation(), diag::note_odr_value_here)
3779         << FoundField->getType();
3780 
3781       return make_error<ImportError>(ImportError::NameConflict);
3782     }
3783   }
3784 
3785   // Import the type.
3786   auto TypeOrErr = import(D->getType());
3787   if (!TypeOrErr)
3788     return TypeOrErr.takeError();
3789 
3790   auto **NamedChain =
3791     new (Importer.getToContext()) NamedDecl*[D->getChainingSize()];
3792 
3793   unsigned i = 0;
3794   for (auto *PI : D->chain())
3795     if (Expected<NamedDecl *> ToD = import(PI))
3796       NamedChain[i++] = *ToD;
3797     else
3798       return ToD.takeError();
3799 
3800   llvm::MutableArrayRef<NamedDecl *> CH = {NamedChain, D->getChainingSize()};
3801   IndirectFieldDecl *ToIndirectField;
3802   if (GetImportedOrCreateDecl(ToIndirectField, D, Importer.getToContext(), DC,
3803                               Loc, Name.getAsIdentifierInfo(), *TypeOrErr, CH))
3804     // FIXME here we leak `NamedChain` which is allocated before
3805     return ToIndirectField;
3806 
3807   ToIndirectField->setAccess(D->getAccess());
3808   ToIndirectField->setLexicalDeclContext(LexicalDC);
3809   LexicalDC->addDeclInternal(ToIndirectField);
3810   return ToIndirectField;
3811 }
3812 
3813 /// Used as return type of getFriendCountAndPosition.
3814 struct FriendCountAndPosition {
3815   /// Number of similar looking friends.
3816   unsigned int TotalCount;
3817   /// Index of the specific FriendDecl.
3818   unsigned int IndexOfDecl;
3819 };
3820 
3821 template <class T>
3822 static FriendCountAndPosition getFriendCountAndPosition(
3823     const FriendDecl *FD,
3824     llvm::function_ref<T(const FriendDecl *)> GetCanTypeOrDecl) {
3825   unsigned int FriendCount = 0;
3826   llvm::Optional<unsigned int> FriendPosition;
3827   const auto *RD = cast<CXXRecordDecl>(FD->getLexicalDeclContext());
3828 
3829   T TypeOrDecl = GetCanTypeOrDecl(FD);
3830 
3831   for (const FriendDecl *FoundFriend : RD->friends()) {
3832     if (FoundFriend == FD) {
3833       FriendPosition = FriendCount;
3834       ++FriendCount;
3835     } else if (!FoundFriend->getFriendDecl() == !FD->getFriendDecl() &&
3836                GetCanTypeOrDecl(FoundFriend) == TypeOrDecl) {
3837       ++FriendCount;
3838     }
3839   }
3840 
3841   assert(FriendPosition && "Friend decl not found in own parent.");
3842 
3843   return {FriendCount, *FriendPosition};
3844 }
3845 
3846 static FriendCountAndPosition getFriendCountAndPosition(const FriendDecl *FD) {
3847   if (FD->getFriendType())
3848     return getFriendCountAndPosition<QualType>(FD, [](const FriendDecl *F) {
3849       if (TypeSourceInfo *TSI = F->getFriendType())
3850         return TSI->getType().getCanonicalType();
3851       llvm_unreachable("Wrong friend object type.");
3852     });
3853   else
3854     return getFriendCountAndPosition<Decl *>(FD, [](const FriendDecl *F) {
3855       if (Decl *D = F->getFriendDecl())
3856         return D->getCanonicalDecl();
3857       llvm_unreachable("Wrong friend object type.");
3858     });
3859 }
3860 
3861 ExpectedDecl ASTNodeImporter::VisitFriendDecl(FriendDecl *D) {
3862   // Import the major distinguishing characteristics of a declaration.
3863   DeclContext *DC, *LexicalDC;
3864   if (Error Err = ImportDeclContext(D, DC, LexicalDC))
3865     return std::move(Err);
3866 
3867   // Determine whether we've already imported this decl.
3868   // FriendDecl is not a NamedDecl so we cannot use lookup.
3869   // We try to maintain order and count of redundant friend declarations.
3870   const auto *RD = cast<CXXRecordDecl>(DC);
3871   FriendDecl *ImportedFriend = RD->getFirstFriend();
3872   SmallVector<FriendDecl *, 2> ImportedEquivalentFriends;
3873 
3874   while (ImportedFriend) {
3875     bool Match = false;
3876     if (D->getFriendDecl() && ImportedFriend->getFriendDecl()) {
3877       Match =
3878           IsStructuralMatch(D->getFriendDecl(), ImportedFriend->getFriendDecl(),
3879                             /*Complain=*/false);
3880     } else if (D->getFriendType() && ImportedFriend->getFriendType()) {
3881       Match = Importer.IsStructurallyEquivalent(
3882           D->getFriendType()->getType(),
3883           ImportedFriend->getFriendType()->getType(), /*Complain=*/false);
3884     }
3885     if (Match)
3886       ImportedEquivalentFriends.push_back(ImportedFriend);
3887 
3888     ImportedFriend = ImportedFriend->getNextFriend();
3889   }
3890   FriendCountAndPosition CountAndPosition = getFriendCountAndPosition(D);
3891 
3892   assert(ImportedEquivalentFriends.size() <= CountAndPosition.TotalCount &&
3893          "Class with non-matching friends is imported, ODR check wrong?");
3894   if (ImportedEquivalentFriends.size() == CountAndPosition.TotalCount)
3895     return Importer.MapImported(
3896         D, ImportedEquivalentFriends[CountAndPosition.IndexOfDecl]);
3897 
3898   // Not found. Create it.
3899   // The declarations will be put into order later by ImportDeclContext.
3900   FriendDecl::FriendUnion ToFU;
3901   if (NamedDecl *FriendD = D->getFriendDecl()) {
3902     NamedDecl *ToFriendD;
3903     if (Error Err = importInto(ToFriendD, FriendD))
3904       return std::move(Err);
3905 
3906     if (FriendD->getFriendObjectKind() != Decl::FOK_None &&
3907         !(FriendD->isInIdentifierNamespace(Decl::IDNS_NonMemberOperator)))
3908       ToFriendD->setObjectOfFriendDecl(false);
3909 
3910     ToFU = ToFriendD;
3911   } else { // The friend is a type, not a decl.
3912     if (auto TSIOrErr = import(D->getFriendType()))
3913       ToFU = *TSIOrErr;
3914     else
3915       return TSIOrErr.takeError();
3916   }
3917 
3918   SmallVector<TemplateParameterList *, 1> ToTPLists(D->NumTPLists);
3919   auto **FromTPLists = D->getTrailingObjects<TemplateParameterList *>();
3920   for (unsigned I = 0; I < D->NumTPLists; I++) {
3921     if (auto ListOrErr = import(FromTPLists[I]))
3922       ToTPLists[I] = *ListOrErr;
3923     else
3924       return ListOrErr.takeError();
3925   }
3926 
3927   auto LocationOrErr = import(D->getLocation());
3928   if (!LocationOrErr)
3929     return LocationOrErr.takeError();
3930   auto FriendLocOrErr = import(D->getFriendLoc());
3931   if (!FriendLocOrErr)
3932     return FriendLocOrErr.takeError();
3933 
3934   FriendDecl *FrD;
3935   if (GetImportedOrCreateDecl(FrD, D, Importer.getToContext(), DC,
3936                               *LocationOrErr, ToFU,
3937                               *FriendLocOrErr, ToTPLists))
3938     return FrD;
3939 
3940   FrD->setAccess(D->getAccess());
3941   FrD->setLexicalDeclContext(LexicalDC);
3942   LexicalDC->addDeclInternal(FrD);
3943   return FrD;
3944 }
3945 
3946 ExpectedDecl ASTNodeImporter::VisitObjCIvarDecl(ObjCIvarDecl *D) {
3947   // Import the major distinguishing characteristics of an ivar.
3948   DeclContext *DC, *LexicalDC;
3949   DeclarationName Name;
3950   SourceLocation Loc;
3951   NamedDecl *ToD;
3952   if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc))
3953     return std::move(Err);
3954   if (ToD)
3955     return ToD;
3956 
3957   // Determine whether we've already imported this ivar
3958   auto FoundDecls = Importer.findDeclsInToCtx(DC, Name);
3959   for (auto *FoundDecl : FoundDecls) {
3960     if (ObjCIvarDecl *FoundIvar = dyn_cast<ObjCIvarDecl>(FoundDecl)) {
3961       if (Importer.IsStructurallyEquivalent(D->getType(),
3962                                             FoundIvar->getType())) {
3963         Importer.MapImported(D, FoundIvar);
3964         return FoundIvar;
3965       }
3966 
3967       Importer.ToDiag(Loc, diag::warn_odr_ivar_type_inconsistent)
3968         << Name << D->getType() << FoundIvar->getType();
3969       Importer.ToDiag(FoundIvar->getLocation(), diag::note_odr_value_here)
3970         << FoundIvar->getType();
3971 
3972       return make_error<ImportError>(ImportError::NameConflict);
3973     }
3974   }
3975 
3976   Error Err = Error::success();
3977   auto ToType = importChecked(Err, D->getType());
3978   auto ToTypeSourceInfo = importChecked(Err, D->getTypeSourceInfo());
3979   auto ToBitWidth = importChecked(Err, D->getBitWidth());
3980   auto ToInnerLocStart = importChecked(Err, D->getInnerLocStart());
3981   if (Err)
3982     return std::move(Err);
3983 
3984   ObjCIvarDecl *ToIvar;
3985   if (GetImportedOrCreateDecl(
3986           ToIvar, D, Importer.getToContext(), cast<ObjCContainerDecl>(DC),
3987           ToInnerLocStart, Loc, Name.getAsIdentifierInfo(),
3988           ToType, ToTypeSourceInfo,
3989           D->getAccessControl(),ToBitWidth, D->getSynthesize()))
3990     return ToIvar;
3991 
3992   ToIvar->setLexicalDeclContext(LexicalDC);
3993   LexicalDC->addDeclInternal(ToIvar);
3994   return ToIvar;
3995 }
3996 
3997 ExpectedDecl ASTNodeImporter::VisitVarDecl(VarDecl *D) {
3998 
3999   SmallVector<Decl*, 2> Redecls = getCanonicalForwardRedeclChain(D);
4000   auto RedeclIt = Redecls.begin();
4001   // Import the first part of the decl chain. I.e. import all previous
4002   // declarations starting from the canonical decl.
4003   for (; RedeclIt != Redecls.end() && *RedeclIt != D; ++RedeclIt) {
4004     ExpectedDecl RedeclOrErr = import(*RedeclIt);
4005     if (!RedeclOrErr)
4006       return RedeclOrErr.takeError();
4007   }
4008   assert(*RedeclIt == D);
4009 
4010   // Import the major distinguishing characteristics of a variable.
4011   DeclContext *DC, *LexicalDC;
4012   DeclarationName Name;
4013   SourceLocation Loc;
4014   NamedDecl *ToD;
4015   if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc))
4016     return std::move(Err);
4017   if (ToD)
4018     return ToD;
4019 
4020   // Try to find a variable in our own ("to") context with the same name and
4021   // in the same context as the variable we're importing.
4022   VarDecl *FoundByLookup = nullptr;
4023   if (D->isFileVarDecl()) {
4024     SmallVector<NamedDecl *, 4> ConflictingDecls;
4025     unsigned IDNS = Decl::IDNS_Ordinary;
4026     auto FoundDecls = Importer.findDeclsInToCtx(DC, Name);
4027     for (auto *FoundDecl : FoundDecls) {
4028       if (!FoundDecl->isInIdentifierNamespace(IDNS))
4029         continue;
4030 
4031       if (auto *FoundVar = dyn_cast<VarDecl>(FoundDecl)) {
4032         if (!hasSameVisibilityContextAndLinkage(FoundVar, D))
4033           continue;
4034         if (Importer.IsStructurallyEquivalent(D->getType(),
4035                                               FoundVar->getType())) {
4036 
4037           // The VarDecl in the "From" context has a definition, but in the
4038           // "To" context we already have a definition.
4039           VarDecl *FoundDef = FoundVar->getDefinition();
4040           if (D->isThisDeclarationADefinition() && FoundDef)
4041             // FIXME Check for ODR error if the two definitions have
4042             // different initializers?
4043             return Importer.MapImported(D, FoundDef);
4044 
4045           // The VarDecl in the "From" context has an initializer, but in the
4046           // "To" context we already have an initializer.
4047           const VarDecl *FoundDInit = nullptr;
4048           if (D->getInit() && FoundVar->getAnyInitializer(FoundDInit))
4049             // FIXME Diagnose ODR error if the two initializers are different?
4050             return Importer.MapImported(D, const_cast<VarDecl*>(FoundDInit));
4051 
4052           FoundByLookup = FoundVar;
4053           break;
4054         }
4055 
4056         const ArrayType *FoundArray
4057           = Importer.getToContext().getAsArrayType(FoundVar->getType());
4058         const ArrayType *TArray
4059           = Importer.getToContext().getAsArrayType(D->getType());
4060         if (FoundArray && TArray) {
4061           if (isa<IncompleteArrayType>(FoundArray) &&
4062               isa<ConstantArrayType>(TArray)) {
4063             // Import the type.
4064             if (auto TyOrErr = import(D->getType()))
4065               FoundVar->setType(*TyOrErr);
4066             else
4067               return TyOrErr.takeError();
4068 
4069             FoundByLookup = FoundVar;
4070             break;
4071           } else if (isa<IncompleteArrayType>(TArray) &&
4072                      isa<ConstantArrayType>(FoundArray)) {
4073             FoundByLookup = FoundVar;
4074             break;
4075           }
4076         }
4077 
4078         Importer.ToDiag(Loc, diag::warn_odr_variable_type_inconsistent)
4079           << Name << D->getType() << FoundVar->getType();
4080         Importer.ToDiag(FoundVar->getLocation(), diag::note_odr_value_here)
4081           << FoundVar->getType();
4082         ConflictingDecls.push_back(FoundDecl);
4083       }
4084     }
4085 
4086     if (!ConflictingDecls.empty()) {
4087       ExpectedName NameOrErr = Importer.HandleNameConflict(
4088           Name, DC, IDNS, ConflictingDecls.data(), ConflictingDecls.size());
4089       if (NameOrErr)
4090         Name = NameOrErr.get();
4091       else
4092         return NameOrErr.takeError();
4093     }
4094   }
4095 
4096   Error Err = Error::success();
4097   auto ToType = importChecked(Err, D->getType());
4098   auto ToTypeSourceInfo = importChecked(Err, D->getTypeSourceInfo());
4099   auto ToInnerLocStart = importChecked(Err, D->getInnerLocStart());
4100   auto ToQualifierLoc = importChecked(Err, D->getQualifierLoc());
4101   if (Err)
4102     return std::move(Err);
4103 
4104   VarDecl *ToVar;
4105   if (auto *FromDecomp = dyn_cast<DecompositionDecl>(D)) {
4106     SmallVector<BindingDecl *> Bindings(FromDecomp->bindings().size());
4107     if (Error Err =
4108             ImportArrayChecked(FromDecomp->bindings(), Bindings.begin()))
4109       return std::move(Err);
4110     DecompositionDecl *ToDecomp;
4111     if (GetImportedOrCreateDecl(
4112             ToDecomp, FromDecomp, Importer.getToContext(), DC, ToInnerLocStart,
4113             Loc, ToType, ToTypeSourceInfo, D->getStorageClass(), Bindings))
4114       return ToDecomp;
4115     ToVar = ToDecomp;
4116   } else {
4117     // Create the imported variable.
4118     if (GetImportedOrCreateDecl(ToVar, D, Importer.getToContext(), DC,
4119                                 ToInnerLocStart, Loc,
4120                                 Name.getAsIdentifierInfo(), ToType,
4121                                 ToTypeSourceInfo, D->getStorageClass()))
4122       return ToVar;
4123   }
4124 
4125   ToVar->setTSCSpec(D->getTSCSpec());
4126   ToVar->setQualifierInfo(ToQualifierLoc);
4127   ToVar->setAccess(D->getAccess());
4128   ToVar->setLexicalDeclContext(LexicalDC);
4129 
4130   if (FoundByLookup) {
4131     auto *Recent = const_cast<VarDecl *>(FoundByLookup->getMostRecentDecl());
4132     ToVar->setPreviousDecl(Recent);
4133   }
4134 
4135   // Import the described template, if any.
4136   if (D->getDescribedVarTemplate()) {
4137     auto ToVTOrErr = import(D->getDescribedVarTemplate());
4138     if (!ToVTOrErr)
4139       return ToVTOrErr.takeError();
4140   }
4141 
4142   if (Error Err = ImportInitializer(D, ToVar))
4143     return std::move(Err);
4144 
4145   if (D->isConstexpr())
4146     ToVar->setConstexpr(true);
4147 
4148   addDeclToContexts(D, ToVar);
4149 
4150   // Import the rest of the chain. I.e. import all subsequent declarations.
4151   for (++RedeclIt; RedeclIt != Redecls.end(); ++RedeclIt) {
4152     ExpectedDecl RedeclOrErr = import(*RedeclIt);
4153     if (!RedeclOrErr)
4154       return RedeclOrErr.takeError();
4155   }
4156 
4157   return ToVar;
4158 }
4159 
4160 ExpectedDecl ASTNodeImporter::VisitImplicitParamDecl(ImplicitParamDecl *D) {
4161   // Parameters are created in the translation unit's context, then moved
4162   // into the function declaration's context afterward.
4163   DeclContext *DC = Importer.getToContext().getTranslationUnitDecl();
4164 
4165   Error Err = Error::success();
4166   auto ToDeclName = importChecked(Err, D->getDeclName());
4167   auto ToLocation = importChecked(Err, D->getLocation());
4168   auto ToType = importChecked(Err, D->getType());
4169   if (Err)
4170     return std::move(Err);
4171 
4172   // Create the imported parameter.
4173   ImplicitParamDecl *ToParm = nullptr;
4174   if (GetImportedOrCreateDecl(ToParm, D, Importer.getToContext(), DC,
4175                               ToLocation, ToDeclName.getAsIdentifierInfo(),
4176                               ToType, D->getParameterKind()))
4177     return ToParm;
4178   return ToParm;
4179 }
4180 
4181 Error ASTNodeImporter::ImportDefaultArgOfParmVarDecl(
4182     const ParmVarDecl *FromParam, ParmVarDecl *ToParam) {
4183   ToParam->setHasInheritedDefaultArg(FromParam->hasInheritedDefaultArg());
4184   ToParam->setKNRPromoted(FromParam->isKNRPromoted());
4185 
4186   if (FromParam->hasUninstantiatedDefaultArg()) {
4187     if (auto ToDefArgOrErr = import(FromParam->getUninstantiatedDefaultArg()))
4188       ToParam->setUninstantiatedDefaultArg(*ToDefArgOrErr);
4189     else
4190       return ToDefArgOrErr.takeError();
4191   } else if (FromParam->hasUnparsedDefaultArg()) {
4192     ToParam->setUnparsedDefaultArg();
4193   } else if (FromParam->hasDefaultArg()) {
4194     if (auto ToDefArgOrErr = import(FromParam->getDefaultArg()))
4195       ToParam->setDefaultArg(*ToDefArgOrErr);
4196     else
4197       return ToDefArgOrErr.takeError();
4198   }
4199 
4200   return Error::success();
4201 }
4202 
4203 Expected<InheritedConstructor>
4204 ASTNodeImporter::ImportInheritedConstructor(const InheritedConstructor &From) {
4205   Error Err = Error::success();
4206   CXXConstructorDecl *ToBaseCtor = importChecked(Err, From.getConstructor());
4207   ConstructorUsingShadowDecl *ToShadow =
4208       importChecked(Err, From.getShadowDecl());
4209   if (Err)
4210     return std::move(Err);
4211   return InheritedConstructor(ToShadow, ToBaseCtor);
4212 }
4213 
4214 ExpectedDecl ASTNodeImporter::VisitParmVarDecl(ParmVarDecl *D) {
4215   // Parameters are created in the translation unit's context, then moved
4216   // into the function declaration's context afterward.
4217   DeclContext *DC = Importer.getToContext().getTranslationUnitDecl();
4218 
4219   Error Err = Error::success();
4220   auto ToDeclName = importChecked(Err, D->getDeclName());
4221   auto ToLocation = importChecked(Err, D->getLocation());
4222   auto ToInnerLocStart = importChecked(Err, D->getInnerLocStart());
4223   auto ToType = importChecked(Err, D->getType());
4224   auto ToTypeSourceInfo = importChecked(Err, D->getTypeSourceInfo());
4225   if (Err)
4226     return std::move(Err);
4227 
4228   ParmVarDecl *ToParm;
4229   if (GetImportedOrCreateDecl(ToParm, D, Importer.getToContext(), DC,
4230                               ToInnerLocStart, ToLocation,
4231                               ToDeclName.getAsIdentifierInfo(), ToType,
4232                               ToTypeSourceInfo, D->getStorageClass(),
4233                               /*DefaultArg*/ nullptr))
4234     return ToParm;
4235 
4236   // Set the default argument. It should be no problem if it was already done.
4237   // Do not import the default expression before GetImportedOrCreateDecl call
4238   // to avoid possible infinite import loop because circular dependency.
4239   if (Error Err = ImportDefaultArgOfParmVarDecl(D, ToParm))
4240     return std::move(Err);
4241 
4242   if (D->isObjCMethodParameter()) {
4243     ToParm->setObjCMethodScopeInfo(D->getFunctionScopeIndex());
4244     ToParm->setObjCDeclQualifier(D->getObjCDeclQualifier());
4245   } else {
4246     ToParm->setScopeInfo(D->getFunctionScopeDepth(),
4247                          D->getFunctionScopeIndex());
4248   }
4249 
4250   return ToParm;
4251 }
4252 
4253 ExpectedDecl ASTNodeImporter::VisitObjCMethodDecl(ObjCMethodDecl *D) {
4254   // Import the major distinguishing characteristics of a method.
4255   DeclContext *DC, *LexicalDC;
4256   DeclarationName Name;
4257   SourceLocation Loc;
4258   NamedDecl *ToD;
4259   if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc))
4260     return std::move(Err);
4261   if (ToD)
4262     return ToD;
4263 
4264   auto FoundDecls = Importer.findDeclsInToCtx(DC, Name);
4265   for (auto *FoundDecl : FoundDecls) {
4266     if (auto *FoundMethod = dyn_cast<ObjCMethodDecl>(FoundDecl)) {
4267       if (FoundMethod->isInstanceMethod() != D->isInstanceMethod())
4268         continue;
4269 
4270       // Check return types.
4271       if (!Importer.IsStructurallyEquivalent(D->getReturnType(),
4272                                              FoundMethod->getReturnType())) {
4273         Importer.ToDiag(Loc, diag::warn_odr_objc_method_result_type_inconsistent)
4274             << D->isInstanceMethod() << Name << D->getReturnType()
4275             << FoundMethod->getReturnType();
4276         Importer.ToDiag(FoundMethod->getLocation(),
4277                         diag::note_odr_objc_method_here)
4278           << D->isInstanceMethod() << Name;
4279 
4280         return make_error<ImportError>(ImportError::NameConflict);
4281       }
4282 
4283       // Check the number of parameters.
4284       if (D->param_size() != FoundMethod->param_size()) {
4285         Importer.ToDiag(Loc, diag::warn_odr_objc_method_num_params_inconsistent)
4286           << D->isInstanceMethod() << Name
4287           << D->param_size() << FoundMethod->param_size();
4288         Importer.ToDiag(FoundMethod->getLocation(),
4289                         diag::note_odr_objc_method_here)
4290           << D->isInstanceMethod() << Name;
4291 
4292         return make_error<ImportError>(ImportError::NameConflict);
4293       }
4294 
4295       // Check parameter types.
4296       for (ObjCMethodDecl::param_iterator P = D->param_begin(),
4297              PEnd = D->param_end(), FoundP = FoundMethod->param_begin();
4298            P != PEnd; ++P, ++FoundP) {
4299         if (!Importer.IsStructurallyEquivalent((*P)->getType(),
4300                                                (*FoundP)->getType())) {
4301           Importer.FromDiag((*P)->getLocation(),
4302                             diag::warn_odr_objc_method_param_type_inconsistent)
4303             << D->isInstanceMethod() << Name
4304             << (*P)->getType() << (*FoundP)->getType();
4305           Importer.ToDiag((*FoundP)->getLocation(), diag::note_odr_value_here)
4306             << (*FoundP)->getType();
4307 
4308           return make_error<ImportError>(ImportError::NameConflict);
4309         }
4310       }
4311 
4312       // Check variadic/non-variadic.
4313       // Check the number of parameters.
4314       if (D->isVariadic() != FoundMethod->isVariadic()) {
4315         Importer.ToDiag(Loc, diag::warn_odr_objc_method_variadic_inconsistent)
4316           << D->isInstanceMethod() << Name;
4317         Importer.ToDiag(FoundMethod->getLocation(),
4318                         diag::note_odr_objc_method_here)
4319           << D->isInstanceMethod() << Name;
4320 
4321         return make_error<ImportError>(ImportError::NameConflict);
4322       }
4323 
4324       // FIXME: Any other bits we need to merge?
4325       return Importer.MapImported(D, FoundMethod);
4326     }
4327   }
4328 
4329   Error Err = Error::success();
4330   auto ToEndLoc = importChecked(Err, D->getEndLoc());
4331   auto ToReturnType = importChecked(Err, D->getReturnType());
4332   auto ToReturnTypeSourceInfo =
4333       importChecked(Err, D->getReturnTypeSourceInfo());
4334   if (Err)
4335     return std::move(Err);
4336 
4337   ObjCMethodDecl *ToMethod;
4338   if (GetImportedOrCreateDecl(
4339           ToMethod, D, Importer.getToContext(), Loc, ToEndLoc,
4340           Name.getObjCSelector(), ToReturnType, ToReturnTypeSourceInfo, DC,
4341           D->isInstanceMethod(), D->isVariadic(), D->isPropertyAccessor(),
4342           D->isSynthesizedAccessorStub(), D->isImplicit(), D->isDefined(),
4343           D->getImplementationControl(), D->hasRelatedResultType()))
4344     return ToMethod;
4345 
4346   // FIXME: When we decide to merge method definitions, we'll need to
4347   // deal with implicit parameters.
4348 
4349   // Import the parameters
4350   SmallVector<ParmVarDecl *, 5> ToParams;
4351   for (auto *FromP : D->parameters()) {
4352     if (Expected<ParmVarDecl *> ToPOrErr = import(FromP))
4353       ToParams.push_back(*ToPOrErr);
4354     else
4355       return ToPOrErr.takeError();
4356   }
4357 
4358   // Set the parameters.
4359   for (auto *ToParam : ToParams) {
4360     ToParam->setOwningFunction(ToMethod);
4361     ToMethod->addDeclInternal(ToParam);
4362   }
4363 
4364   SmallVector<SourceLocation, 12> FromSelLocs;
4365   D->getSelectorLocs(FromSelLocs);
4366   SmallVector<SourceLocation, 12> ToSelLocs(FromSelLocs.size());
4367   if (Error Err = ImportContainerChecked(FromSelLocs, ToSelLocs))
4368     return std::move(Err);
4369 
4370   ToMethod->setMethodParams(Importer.getToContext(), ToParams, ToSelLocs);
4371 
4372   ToMethod->setLexicalDeclContext(LexicalDC);
4373   LexicalDC->addDeclInternal(ToMethod);
4374 
4375   // Implicit params are declared when Sema encounters the definition but this
4376   // never happens when the method is imported. Manually declare the implicit
4377   // params now that the MethodDecl knows its class interface.
4378   if (D->getSelfDecl())
4379     ToMethod->createImplicitParams(Importer.getToContext(),
4380                                    ToMethod->getClassInterface());
4381 
4382   return ToMethod;
4383 }
4384 
4385 ExpectedDecl ASTNodeImporter::VisitObjCTypeParamDecl(ObjCTypeParamDecl *D) {
4386   // Import the major distinguishing characteristics of a category.
4387   DeclContext *DC, *LexicalDC;
4388   DeclarationName Name;
4389   SourceLocation Loc;
4390   NamedDecl *ToD;
4391   if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc))
4392     return std::move(Err);
4393   if (ToD)
4394     return ToD;
4395 
4396   Error Err = Error::success();
4397   auto ToVarianceLoc = importChecked(Err, D->getVarianceLoc());
4398   auto ToLocation = importChecked(Err, D->getLocation());
4399   auto ToColonLoc = importChecked(Err, D->getColonLoc());
4400   auto ToTypeSourceInfo = importChecked(Err, D->getTypeSourceInfo());
4401   if (Err)
4402     return std::move(Err);
4403 
4404   ObjCTypeParamDecl *Result;
4405   if (GetImportedOrCreateDecl(
4406           Result, D, Importer.getToContext(), DC, D->getVariance(),
4407           ToVarianceLoc, D->getIndex(),
4408           ToLocation, Name.getAsIdentifierInfo(),
4409           ToColonLoc, ToTypeSourceInfo))
4410     return Result;
4411 
4412   Result->setLexicalDeclContext(LexicalDC);
4413   return Result;
4414 }
4415 
4416 ExpectedDecl ASTNodeImporter::VisitObjCCategoryDecl(ObjCCategoryDecl *D) {
4417   // Import the major distinguishing characteristics of a category.
4418   DeclContext *DC, *LexicalDC;
4419   DeclarationName Name;
4420   SourceLocation Loc;
4421   NamedDecl *ToD;
4422   if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc))
4423     return std::move(Err);
4424   if (ToD)
4425     return ToD;
4426 
4427   ObjCInterfaceDecl *ToInterface;
4428   if (Error Err = importInto(ToInterface, D->getClassInterface()))
4429     return std::move(Err);
4430 
4431   // Determine if we've already encountered this category.
4432   ObjCCategoryDecl *MergeWithCategory
4433     = ToInterface->FindCategoryDeclaration(Name.getAsIdentifierInfo());
4434   ObjCCategoryDecl *ToCategory = MergeWithCategory;
4435   if (!ToCategory) {
4436 
4437     Error Err = Error::success();
4438     auto ToAtStartLoc = importChecked(Err, D->getAtStartLoc());
4439     auto ToCategoryNameLoc = importChecked(Err, D->getCategoryNameLoc());
4440     auto ToIvarLBraceLoc = importChecked(Err, D->getIvarLBraceLoc());
4441     auto ToIvarRBraceLoc = importChecked(Err, D->getIvarRBraceLoc());
4442     if (Err)
4443       return std::move(Err);
4444 
4445     if (GetImportedOrCreateDecl(ToCategory, D, Importer.getToContext(), DC,
4446                                 ToAtStartLoc, Loc,
4447                                 ToCategoryNameLoc,
4448                                 Name.getAsIdentifierInfo(), ToInterface,
4449                                 /*TypeParamList=*/nullptr,
4450                                 ToIvarLBraceLoc,
4451                                 ToIvarRBraceLoc))
4452       return ToCategory;
4453 
4454     ToCategory->setLexicalDeclContext(LexicalDC);
4455     LexicalDC->addDeclInternal(ToCategory);
4456     // Import the type parameter list after MapImported, to avoid
4457     // loops when bringing in their DeclContext.
4458     if (auto PListOrErr = ImportObjCTypeParamList(D->getTypeParamList()))
4459       ToCategory->setTypeParamList(*PListOrErr);
4460     else
4461       return PListOrErr.takeError();
4462 
4463     // Import protocols
4464     SmallVector<ObjCProtocolDecl *, 4> Protocols;
4465     SmallVector<SourceLocation, 4> ProtocolLocs;
4466     ObjCCategoryDecl::protocol_loc_iterator FromProtoLoc
4467       = D->protocol_loc_begin();
4468     for (ObjCCategoryDecl::protocol_iterator FromProto = D->protocol_begin(),
4469                                           FromProtoEnd = D->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     // FIXME: If we're merging, make sure that the protocol list is the same.
4484     ToCategory->setProtocolList(Protocols.data(), Protocols.size(),
4485                                 ProtocolLocs.data(), Importer.getToContext());
4486 
4487   } else {
4488     Importer.MapImported(D, ToCategory);
4489   }
4490 
4491   // Import all of the members of this category.
4492   if (Error Err = ImportDeclContext(D))
4493     return std::move(Err);
4494 
4495   // If we have an implementation, import it as well.
4496   if (D->getImplementation()) {
4497     if (Expected<ObjCCategoryImplDecl *> ToImplOrErr =
4498         import(D->getImplementation()))
4499       ToCategory->setImplementation(*ToImplOrErr);
4500     else
4501       return ToImplOrErr.takeError();
4502   }
4503 
4504   return ToCategory;
4505 }
4506 
4507 Error ASTNodeImporter::ImportDefinition(
4508     ObjCProtocolDecl *From, ObjCProtocolDecl *To, ImportDefinitionKind Kind) {
4509   if (To->getDefinition()) {
4510     if (shouldForceImportDeclContext(Kind))
4511       if (Error Err = ImportDeclContext(From))
4512         return Err;
4513     return Error::success();
4514   }
4515 
4516   // Start the protocol definition
4517   To->startDefinition();
4518 
4519   // Import protocols
4520   SmallVector<ObjCProtocolDecl *, 4> Protocols;
4521   SmallVector<SourceLocation, 4> ProtocolLocs;
4522   ObjCProtocolDecl::protocol_loc_iterator FromProtoLoc =
4523       From->protocol_loc_begin();
4524   for (ObjCProtocolDecl::protocol_iterator FromProto = From->protocol_begin(),
4525                                         FromProtoEnd = From->protocol_end();
4526        FromProto != FromProtoEnd;
4527        ++FromProto, ++FromProtoLoc) {
4528     if (Expected<ObjCProtocolDecl *> ToProtoOrErr = import(*FromProto))
4529       Protocols.push_back(*ToProtoOrErr);
4530     else
4531       return ToProtoOrErr.takeError();
4532 
4533     if (ExpectedSLoc ToProtoLocOrErr = import(*FromProtoLoc))
4534       ProtocolLocs.push_back(*ToProtoLocOrErr);
4535     else
4536       return ToProtoLocOrErr.takeError();
4537 
4538   }
4539 
4540   // FIXME: If we're merging, make sure that the protocol list is the same.
4541   To->setProtocolList(Protocols.data(), Protocols.size(),
4542                       ProtocolLocs.data(), Importer.getToContext());
4543 
4544   if (shouldForceImportDeclContext(Kind)) {
4545     // Import all of the members of this protocol.
4546     if (Error Err = ImportDeclContext(From, /*ForceImport=*/true))
4547       return Err;
4548   }
4549   return Error::success();
4550 }
4551 
4552 ExpectedDecl ASTNodeImporter::VisitObjCProtocolDecl(ObjCProtocolDecl *D) {
4553   // If this protocol has a definition in the translation unit we're coming
4554   // from, but this particular declaration is not that definition, import the
4555   // definition and map to that.
4556   ObjCProtocolDecl *Definition = D->getDefinition();
4557   if (Definition && Definition != D) {
4558     if (ExpectedDecl ImportedDefOrErr = import(Definition))
4559       return Importer.MapImported(D, *ImportedDefOrErr);
4560     else
4561       return ImportedDefOrErr.takeError();
4562   }
4563 
4564   // Import the major distinguishing characteristics of a protocol.
4565   DeclContext *DC, *LexicalDC;
4566   DeclarationName Name;
4567   SourceLocation Loc;
4568   NamedDecl *ToD;
4569   if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc))
4570     return std::move(Err);
4571   if (ToD)
4572     return ToD;
4573 
4574   ObjCProtocolDecl *MergeWithProtocol = nullptr;
4575   auto FoundDecls = Importer.findDeclsInToCtx(DC, Name);
4576   for (auto *FoundDecl : FoundDecls) {
4577     if (!FoundDecl->isInIdentifierNamespace(Decl::IDNS_ObjCProtocol))
4578       continue;
4579 
4580     if ((MergeWithProtocol = dyn_cast<ObjCProtocolDecl>(FoundDecl)))
4581       break;
4582   }
4583 
4584   ObjCProtocolDecl *ToProto = MergeWithProtocol;
4585   if (!ToProto) {
4586     auto ToAtBeginLocOrErr = import(D->getAtStartLoc());
4587     if (!ToAtBeginLocOrErr)
4588       return ToAtBeginLocOrErr.takeError();
4589 
4590     if (GetImportedOrCreateDecl(ToProto, D, Importer.getToContext(), DC,
4591                                 Name.getAsIdentifierInfo(), Loc,
4592                                 *ToAtBeginLocOrErr,
4593                                 /*PrevDecl=*/nullptr))
4594       return ToProto;
4595     ToProto->setLexicalDeclContext(LexicalDC);
4596     LexicalDC->addDeclInternal(ToProto);
4597   }
4598 
4599   Importer.MapImported(D, ToProto);
4600 
4601   if (D->isThisDeclarationADefinition())
4602     if (Error Err = ImportDefinition(D, ToProto))
4603       return std::move(Err);
4604 
4605   return ToProto;
4606 }
4607 
4608 ExpectedDecl ASTNodeImporter::VisitLinkageSpecDecl(LinkageSpecDecl *D) {
4609   DeclContext *DC, *LexicalDC;
4610   if (Error Err = ImportDeclContext(D, DC, LexicalDC))
4611     return std::move(Err);
4612 
4613   ExpectedSLoc ExternLocOrErr = import(D->getExternLoc());
4614   if (!ExternLocOrErr)
4615     return ExternLocOrErr.takeError();
4616 
4617   ExpectedSLoc LangLocOrErr = import(D->getLocation());
4618   if (!LangLocOrErr)
4619     return LangLocOrErr.takeError();
4620 
4621   bool HasBraces = D->hasBraces();
4622 
4623   LinkageSpecDecl *ToLinkageSpec;
4624   if (GetImportedOrCreateDecl(ToLinkageSpec, D, Importer.getToContext(), DC,
4625                               *ExternLocOrErr, *LangLocOrErr,
4626                               D->getLanguage(), HasBraces))
4627     return ToLinkageSpec;
4628 
4629   if (HasBraces) {
4630     ExpectedSLoc RBraceLocOrErr = import(D->getRBraceLoc());
4631     if (!RBraceLocOrErr)
4632       return RBraceLocOrErr.takeError();
4633     ToLinkageSpec->setRBraceLoc(*RBraceLocOrErr);
4634   }
4635 
4636   ToLinkageSpec->setLexicalDeclContext(LexicalDC);
4637   LexicalDC->addDeclInternal(ToLinkageSpec);
4638 
4639   return ToLinkageSpec;
4640 }
4641 
4642 ExpectedDecl ASTNodeImporter::ImportUsingShadowDecls(BaseUsingDecl *D,
4643                                                      BaseUsingDecl *ToSI) {
4644   for (UsingShadowDecl *FromShadow : D->shadows()) {
4645     if (Expected<UsingShadowDecl *> ToShadowOrErr = import(FromShadow))
4646       ToSI->addShadowDecl(*ToShadowOrErr);
4647     else
4648       // FIXME: We return error here but the definition is already created
4649       // and available with lookups. How to fix this?..
4650       return ToShadowOrErr.takeError();
4651   }
4652   return ToSI;
4653 }
4654 
4655 ExpectedDecl ASTNodeImporter::VisitUsingDecl(UsingDecl *D) {
4656   DeclContext *DC, *LexicalDC;
4657   DeclarationName Name;
4658   SourceLocation Loc;
4659   NamedDecl *ToD = nullptr;
4660   if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc))
4661     return std::move(Err);
4662   if (ToD)
4663     return ToD;
4664 
4665   Error Err = Error::success();
4666   auto ToLoc = importChecked(Err, D->getNameInfo().getLoc());
4667   auto ToUsingLoc = importChecked(Err, D->getUsingLoc());
4668   auto ToQualifierLoc = importChecked(Err, D->getQualifierLoc());
4669   if (Err)
4670     return std::move(Err);
4671 
4672   DeclarationNameInfo NameInfo(Name, ToLoc);
4673   if (Error Err = ImportDeclarationNameLoc(D->getNameInfo(), NameInfo))
4674     return std::move(Err);
4675 
4676   UsingDecl *ToUsing;
4677   if (GetImportedOrCreateDecl(ToUsing, D, Importer.getToContext(), DC,
4678                               ToUsingLoc, ToQualifierLoc, NameInfo,
4679                               D->hasTypename()))
4680     return ToUsing;
4681 
4682   ToUsing->setLexicalDeclContext(LexicalDC);
4683   LexicalDC->addDeclInternal(ToUsing);
4684 
4685   if (NamedDecl *FromPattern =
4686       Importer.getFromContext().getInstantiatedFromUsingDecl(D)) {
4687     if (Expected<NamedDecl *> ToPatternOrErr = import(FromPattern))
4688       Importer.getToContext().setInstantiatedFromUsingDecl(
4689           ToUsing, *ToPatternOrErr);
4690     else
4691       return ToPatternOrErr.takeError();
4692   }
4693 
4694   return ImportUsingShadowDecls(D, ToUsing);
4695 }
4696 
4697 ExpectedDecl ASTNodeImporter::VisitUsingEnumDecl(UsingEnumDecl *D) {
4698   DeclContext *DC, *LexicalDC;
4699   DeclarationName Name;
4700   SourceLocation Loc;
4701   NamedDecl *ToD = nullptr;
4702   if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc))
4703     return std::move(Err);
4704   if (ToD)
4705     return ToD;
4706 
4707   Error Err = Error::success();
4708   auto ToUsingLoc = importChecked(Err, D->getUsingLoc());
4709   auto ToEnumLoc = importChecked(Err, D->getEnumLoc());
4710   auto ToEnumDecl = importChecked(Err, D->getEnumDecl());
4711   if (Err)
4712     return std::move(Err);
4713 
4714   UsingEnumDecl *ToUsingEnum;
4715   if (GetImportedOrCreateDecl(ToUsingEnum, D, Importer.getToContext(), DC,
4716                               ToUsingLoc, ToEnumLoc, Loc, ToEnumDecl))
4717     return ToUsingEnum;
4718 
4719   ToUsingEnum->setLexicalDeclContext(LexicalDC);
4720   LexicalDC->addDeclInternal(ToUsingEnum);
4721 
4722   if (UsingEnumDecl *FromPattern =
4723           Importer.getFromContext().getInstantiatedFromUsingEnumDecl(D)) {
4724     if (Expected<UsingEnumDecl *> ToPatternOrErr = import(FromPattern))
4725       Importer.getToContext().setInstantiatedFromUsingEnumDecl(ToUsingEnum,
4726                                                                *ToPatternOrErr);
4727     else
4728       return ToPatternOrErr.takeError();
4729   }
4730 
4731   return ImportUsingShadowDecls(D, ToUsingEnum);
4732 }
4733 
4734 ExpectedDecl ASTNodeImporter::VisitUsingShadowDecl(UsingShadowDecl *D) {
4735   DeclContext *DC, *LexicalDC;
4736   DeclarationName Name;
4737   SourceLocation Loc;
4738   NamedDecl *ToD = nullptr;
4739   if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc))
4740     return std::move(Err);
4741   if (ToD)
4742     return ToD;
4743 
4744   Expected<BaseUsingDecl *> ToIntroducerOrErr = import(D->getIntroducer());
4745   if (!ToIntroducerOrErr)
4746     return ToIntroducerOrErr.takeError();
4747 
4748   Expected<NamedDecl *> ToTargetOrErr = import(D->getTargetDecl());
4749   if (!ToTargetOrErr)
4750     return ToTargetOrErr.takeError();
4751 
4752   UsingShadowDecl *ToShadow;
4753   if (auto *FromConstructorUsingShadow =
4754           dyn_cast<ConstructorUsingShadowDecl>(D)) {
4755     Error Err = Error::success();
4756     ConstructorUsingShadowDecl *Nominated = importChecked(
4757         Err, FromConstructorUsingShadow->getNominatedBaseClassShadowDecl());
4758     if (Err)
4759       return std::move(Err);
4760     // The 'Target' parameter of ConstructorUsingShadowDecl constructor
4761     // is really the "NominatedBaseClassShadowDecl" value if it exists
4762     // (see code of ConstructorUsingShadowDecl::ConstructorUsingShadowDecl).
4763     // We should pass the NominatedBaseClassShadowDecl to it (if non-null) to
4764     // get the correct values.
4765     if (GetImportedOrCreateDecl<ConstructorUsingShadowDecl>(
4766             ToShadow, D, Importer.getToContext(), DC, Loc,
4767             cast<UsingDecl>(*ToIntroducerOrErr),
4768             Nominated ? Nominated : *ToTargetOrErr,
4769             FromConstructorUsingShadow->constructsVirtualBase()))
4770       return ToShadow;
4771   } else {
4772     if (GetImportedOrCreateDecl(ToShadow, D, Importer.getToContext(), DC, Loc,
4773                                 Name, *ToIntroducerOrErr, *ToTargetOrErr))
4774       return ToShadow;
4775   }
4776 
4777   ToShadow->setLexicalDeclContext(LexicalDC);
4778   ToShadow->setAccess(D->getAccess());
4779 
4780   if (UsingShadowDecl *FromPattern =
4781       Importer.getFromContext().getInstantiatedFromUsingShadowDecl(D)) {
4782     if (Expected<UsingShadowDecl *> ToPatternOrErr = import(FromPattern))
4783       Importer.getToContext().setInstantiatedFromUsingShadowDecl(
4784           ToShadow, *ToPatternOrErr);
4785     else
4786       // FIXME: We return error here but the definition is already created
4787       // and available with lookups. How to fix this?..
4788       return ToPatternOrErr.takeError();
4789   }
4790 
4791   LexicalDC->addDeclInternal(ToShadow);
4792 
4793   return ToShadow;
4794 }
4795 
4796 ExpectedDecl ASTNodeImporter::VisitUsingDirectiveDecl(UsingDirectiveDecl *D) {
4797   DeclContext *DC, *LexicalDC;
4798   DeclarationName Name;
4799   SourceLocation Loc;
4800   NamedDecl *ToD = nullptr;
4801   if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc))
4802     return std::move(Err);
4803   if (ToD)
4804     return ToD;
4805 
4806   auto ToComAncestorOrErr = Importer.ImportContext(D->getCommonAncestor());
4807   if (!ToComAncestorOrErr)
4808     return ToComAncestorOrErr.takeError();
4809 
4810   Error Err = Error::success();
4811   auto ToNominatedNamespace = importChecked(Err, D->getNominatedNamespace());
4812   auto ToUsingLoc = importChecked(Err, D->getUsingLoc());
4813   auto ToNamespaceKeyLocation =
4814       importChecked(Err, D->getNamespaceKeyLocation());
4815   auto ToQualifierLoc = importChecked(Err, D->getQualifierLoc());
4816   auto ToIdentLocation = importChecked(Err, D->getIdentLocation());
4817   if (Err)
4818     return std::move(Err);
4819 
4820   UsingDirectiveDecl *ToUsingDir;
4821   if (GetImportedOrCreateDecl(ToUsingDir, D, Importer.getToContext(), DC,
4822                               ToUsingLoc,
4823                               ToNamespaceKeyLocation,
4824                               ToQualifierLoc,
4825                               ToIdentLocation,
4826                               ToNominatedNamespace, *ToComAncestorOrErr))
4827     return ToUsingDir;
4828 
4829   ToUsingDir->setLexicalDeclContext(LexicalDC);
4830   LexicalDC->addDeclInternal(ToUsingDir);
4831 
4832   return ToUsingDir;
4833 }
4834 
4835 ExpectedDecl ASTNodeImporter::VisitUnresolvedUsingValueDecl(
4836     UnresolvedUsingValueDecl *D) {
4837   DeclContext *DC, *LexicalDC;
4838   DeclarationName Name;
4839   SourceLocation Loc;
4840   NamedDecl *ToD = nullptr;
4841   if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc))
4842     return std::move(Err);
4843   if (ToD)
4844     return ToD;
4845 
4846   Error Err = Error::success();
4847   auto ToLoc = importChecked(Err, D->getNameInfo().getLoc());
4848   auto ToUsingLoc = importChecked(Err, D->getUsingLoc());
4849   auto ToQualifierLoc = importChecked(Err, D->getQualifierLoc());
4850   auto ToEllipsisLoc = importChecked(Err, D->getEllipsisLoc());
4851   if (Err)
4852     return std::move(Err);
4853 
4854   DeclarationNameInfo NameInfo(Name, ToLoc);
4855   if (Error Err = ImportDeclarationNameLoc(D->getNameInfo(), NameInfo))
4856     return std::move(Err);
4857 
4858   UnresolvedUsingValueDecl *ToUsingValue;
4859   if (GetImportedOrCreateDecl(ToUsingValue, D, Importer.getToContext(), DC,
4860                               ToUsingLoc, ToQualifierLoc, NameInfo,
4861                               ToEllipsisLoc))
4862     return ToUsingValue;
4863 
4864   ToUsingValue->setAccess(D->getAccess());
4865   ToUsingValue->setLexicalDeclContext(LexicalDC);
4866   LexicalDC->addDeclInternal(ToUsingValue);
4867 
4868   return ToUsingValue;
4869 }
4870 
4871 ExpectedDecl ASTNodeImporter::VisitUnresolvedUsingTypenameDecl(
4872     UnresolvedUsingTypenameDecl *D) {
4873   DeclContext *DC, *LexicalDC;
4874   DeclarationName Name;
4875   SourceLocation Loc;
4876   NamedDecl *ToD = nullptr;
4877   if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc))
4878     return std::move(Err);
4879   if (ToD)
4880     return ToD;
4881 
4882   Error Err = Error::success();
4883   auto ToUsingLoc = importChecked(Err, D->getUsingLoc());
4884   auto ToTypenameLoc = importChecked(Err, D->getTypenameLoc());
4885   auto ToQualifierLoc = importChecked(Err, D->getQualifierLoc());
4886   auto ToEllipsisLoc = importChecked(Err, D->getEllipsisLoc());
4887   if (Err)
4888     return std::move(Err);
4889 
4890   UnresolvedUsingTypenameDecl *ToUsing;
4891   if (GetImportedOrCreateDecl(ToUsing, D, Importer.getToContext(), DC,
4892                               ToUsingLoc, ToTypenameLoc,
4893                               ToQualifierLoc, Loc, Name, ToEllipsisLoc))
4894     return ToUsing;
4895 
4896   ToUsing->setAccess(D->getAccess());
4897   ToUsing->setLexicalDeclContext(LexicalDC);
4898   LexicalDC->addDeclInternal(ToUsing);
4899 
4900   return ToUsing;
4901 }
4902 
4903 ExpectedDecl ASTNodeImporter::VisitBuiltinTemplateDecl(BuiltinTemplateDecl *D) {
4904   Decl* ToD = nullptr;
4905   switch (D->getBuiltinTemplateKind()) {
4906   case BuiltinTemplateKind::BTK__make_integer_seq:
4907     ToD = Importer.getToContext().getMakeIntegerSeqDecl();
4908     break;
4909   case BuiltinTemplateKind::BTK__type_pack_element:
4910     ToD = Importer.getToContext().getTypePackElementDecl();
4911     break;
4912   }
4913   assert(ToD && "BuiltinTemplateDecl of unsupported kind!");
4914   Importer.MapImported(D, ToD);
4915   return ToD;
4916 }
4917 
4918 Error ASTNodeImporter::ImportDefinition(
4919     ObjCInterfaceDecl *From, ObjCInterfaceDecl *To, ImportDefinitionKind Kind) {
4920   if (To->getDefinition()) {
4921     // Check consistency of superclass.
4922     ObjCInterfaceDecl *FromSuper = From->getSuperClass();
4923     if (FromSuper) {
4924       if (auto FromSuperOrErr = import(FromSuper))
4925         FromSuper = *FromSuperOrErr;
4926       else
4927         return FromSuperOrErr.takeError();
4928     }
4929 
4930     ObjCInterfaceDecl *ToSuper = To->getSuperClass();
4931     if ((bool)FromSuper != (bool)ToSuper ||
4932         (FromSuper && !declaresSameEntity(FromSuper, ToSuper))) {
4933       Importer.ToDiag(To->getLocation(),
4934                       diag::warn_odr_objc_superclass_inconsistent)
4935         << To->getDeclName();
4936       if (ToSuper)
4937         Importer.ToDiag(To->getSuperClassLoc(), diag::note_odr_objc_superclass)
4938           << To->getSuperClass()->getDeclName();
4939       else
4940         Importer.ToDiag(To->getLocation(),
4941                         diag::note_odr_objc_missing_superclass);
4942       if (From->getSuperClass())
4943         Importer.FromDiag(From->getSuperClassLoc(),
4944                           diag::note_odr_objc_superclass)
4945         << From->getSuperClass()->getDeclName();
4946       else
4947         Importer.FromDiag(From->getLocation(),
4948                           diag::note_odr_objc_missing_superclass);
4949     }
4950 
4951     if (shouldForceImportDeclContext(Kind))
4952       if (Error Err = ImportDeclContext(From))
4953         return Err;
4954     return Error::success();
4955   }
4956 
4957   // Start the definition.
4958   To->startDefinition();
4959 
4960   // If this class has a superclass, import it.
4961   if (From->getSuperClass()) {
4962     if (auto SuperTInfoOrErr = import(From->getSuperClassTInfo()))
4963       To->setSuperClass(*SuperTInfoOrErr);
4964     else
4965       return SuperTInfoOrErr.takeError();
4966   }
4967 
4968   // Import protocols
4969   SmallVector<ObjCProtocolDecl *, 4> Protocols;
4970   SmallVector<SourceLocation, 4> ProtocolLocs;
4971   ObjCInterfaceDecl::protocol_loc_iterator FromProtoLoc =
4972       From->protocol_loc_begin();
4973 
4974   for (ObjCInterfaceDecl::protocol_iterator FromProto = From->protocol_begin(),
4975                                          FromProtoEnd = From->protocol_end();
4976        FromProto != FromProtoEnd;
4977        ++FromProto, ++FromProtoLoc) {
4978     if (Expected<ObjCProtocolDecl *> ToProtoOrErr = import(*FromProto))
4979       Protocols.push_back(*ToProtoOrErr);
4980     else
4981       return ToProtoOrErr.takeError();
4982 
4983     if (ExpectedSLoc ToProtoLocOrErr = import(*FromProtoLoc))
4984       ProtocolLocs.push_back(*ToProtoLocOrErr);
4985     else
4986       return ToProtoLocOrErr.takeError();
4987 
4988   }
4989 
4990   // FIXME: If we're merging, make sure that the protocol list is the same.
4991   To->setProtocolList(Protocols.data(), Protocols.size(),
4992                       ProtocolLocs.data(), Importer.getToContext());
4993 
4994   // Import categories. When the categories themselves are imported, they'll
4995   // hook themselves into this interface.
4996   for (auto *Cat : From->known_categories()) {
4997     auto ToCatOrErr = import(Cat);
4998     if (!ToCatOrErr)
4999       return ToCatOrErr.takeError();
5000   }
5001 
5002   // If we have an @implementation, import it as well.
5003   if (From->getImplementation()) {
5004     if (Expected<ObjCImplementationDecl *> ToImplOrErr =
5005         import(From->getImplementation()))
5006       To->setImplementation(*ToImplOrErr);
5007     else
5008       return ToImplOrErr.takeError();
5009   }
5010 
5011   // Import all of the members of this class.
5012   if (Error Err = ImportDeclContext(From, /*ForceImport=*/true))
5013     return Err;
5014 
5015   return Error::success();
5016 }
5017 
5018 Expected<ObjCTypeParamList *>
5019 ASTNodeImporter::ImportObjCTypeParamList(ObjCTypeParamList *list) {
5020   if (!list)
5021     return nullptr;
5022 
5023   SmallVector<ObjCTypeParamDecl *, 4> toTypeParams;
5024   for (auto *fromTypeParam : *list) {
5025     if (auto toTypeParamOrErr = import(fromTypeParam))
5026       toTypeParams.push_back(*toTypeParamOrErr);
5027     else
5028       return toTypeParamOrErr.takeError();
5029   }
5030 
5031   auto LAngleLocOrErr = import(list->getLAngleLoc());
5032   if (!LAngleLocOrErr)
5033     return LAngleLocOrErr.takeError();
5034 
5035   auto RAngleLocOrErr = import(list->getRAngleLoc());
5036   if (!RAngleLocOrErr)
5037     return RAngleLocOrErr.takeError();
5038 
5039   return ObjCTypeParamList::create(Importer.getToContext(),
5040                                    *LAngleLocOrErr,
5041                                    toTypeParams,
5042                                    *RAngleLocOrErr);
5043 }
5044 
5045 ExpectedDecl ASTNodeImporter::VisitObjCInterfaceDecl(ObjCInterfaceDecl *D) {
5046   // If this class has a definition in the translation unit we're coming from,
5047   // but this particular declaration is not that definition, import the
5048   // definition and map to that.
5049   ObjCInterfaceDecl *Definition = D->getDefinition();
5050   if (Definition && Definition != D) {
5051     if (ExpectedDecl ImportedDefOrErr = import(Definition))
5052       return Importer.MapImported(D, *ImportedDefOrErr);
5053     else
5054       return ImportedDefOrErr.takeError();
5055   }
5056 
5057   // Import the major distinguishing characteristics of an @interface.
5058   DeclContext *DC, *LexicalDC;
5059   DeclarationName Name;
5060   SourceLocation Loc;
5061   NamedDecl *ToD;
5062   if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc))
5063     return std::move(Err);
5064   if (ToD)
5065     return ToD;
5066 
5067   // Look for an existing interface with the same name.
5068   ObjCInterfaceDecl *MergeWithIface = nullptr;
5069   auto FoundDecls = Importer.findDeclsInToCtx(DC, Name);
5070   for (auto *FoundDecl : FoundDecls) {
5071     if (!FoundDecl->isInIdentifierNamespace(Decl::IDNS_Ordinary))
5072       continue;
5073 
5074     if ((MergeWithIface = dyn_cast<ObjCInterfaceDecl>(FoundDecl)))
5075       break;
5076   }
5077 
5078   // Create an interface declaration, if one does not already exist.
5079   ObjCInterfaceDecl *ToIface = MergeWithIface;
5080   if (!ToIface) {
5081     ExpectedSLoc AtBeginLocOrErr = import(D->getAtStartLoc());
5082     if (!AtBeginLocOrErr)
5083       return AtBeginLocOrErr.takeError();
5084 
5085     if (GetImportedOrCreateDecl(
5086             ToIface, D, Importer.getToContext(), DC,
5087             *AtBeginLocOrErr, Name.getAsIdentifierInfo(),
5088             /*TypeParamList=*/nullptr,
5089             /*PrevDecl=*/nullptr, Loc, D->isImplicitInterfaceDecl()))
5090       return ToIface;
5091     ToIface->setLexicalDeclContext(LexicalDC);
5092     LexicalDC->addDeclInternal(ToIface);
5093   }
5094   Importer.MapImported(D, ToIface);
5095   // Import the type parameter list after MapImported, to avoid
5096   // loops when bringing in their DeclContext.
5097   if (auto ToPListOrErr =
5098       ImportObjCTypeParamList(D->getTypeParamListAsWritten()))
5099     ToIface->setTypeParamList(*ToPListOrErr);
5100   else
5101     return ToPListOrErr.takeError();
5102 
5103   if (D->isThisDeclarationADefinition())
5104     if (Error Err = ImportDefinition(D, ToIface))
5105       return std::move(Err);
5106 
5107   return ToIface;
5108 }
5109 
5110 ExpectedDecl
5111 ASTNodeImporter::VisitObjCCategoryImplDecl(ObjCCategoryImplDecl *D) {
5112   ObjCCategoryDecl *Category;
5113   if (Error Err = importInto(Category, D->getCategoryDecl()))
5114     return std::move(Err);
5115 
5116   ObjCCategoryImplDecl *ToImpl = Category->getImplementation();
5117   if (!ToImpl) {
5118     DeclContext *DC, *LexicalDC;
5119     if (Error Err = ImportDeclContext(D, DC, LexicalDC))
5120       return std::move(Err);
5121 
5122     Error Err = Error::success();
5123     auto ToLocation = importChecked(Err, D->getLocation());
5124     auto ToAtStartLoc = importChecked(Err, D->getAtStartLoc());
5125     auto ToCategoryNameLoc = importChecked(Err, D->getCategoryNameLoc());
5126     if (Err)
5127       return std::move(Err);
5128 
5129     if (GetImportedOrCreateDecl(
5130             ToImpl, D, Importer.getToContext(), DC,
5131             Importer.Import(D->getIdentifier()), Category->getClassInterface(),
5132             ToLocation, ToAtStartLoc, ToCategoryNameLoc))
5133       return ToImpl;
5134 
5135     ToImpl->setLexicalDeclContext(LexicalDC);
5136     LexicalDC->addDeclInternal(ToImpl);
5137     Category->setImplementation(ToImpl);
5138   }
5139 
5140   Importer.MapImported(D, ToImpl);
5141   if (Error Err = ImportDeclContext(D))
5142     return std::move(Err);
5143 
5144   return ToImpl;
5145 }
5146 
5147 ExpectedDecl
5148 ASTNodeImporter::VisitObjCImplementationDecl(ObjCImplementationDecl *D) {
5149   // Find the corresponding interface.
5150   ObjCInterfaceDecl *Iface;
5151   if (Error Err = importInto(Iface, D->getClassInterface()))
5152     return std::move(Err);
5153 
5154   // Import the superclass, if any.
5155   ObjCInterfaceDecl *Super;
5156   if (Error Err = importInto(Super, D->getSuperClass()))
5157     return std::move(Err);
5158 
5159   ObjCImplementationDecl *Impl = Iface->getImplementation();
5160   if (!Impl) {
5161     // We haven't imported an implementation yet. Create a new @implementation
5162     // now.
5163     DeclContext *DC, *LexicalDC;
5164     if (Error Err = ImportDeclContext(D, DC, LexicalDC))
5165       return std::move(Err);
5166 
5167     Error Err = Error::success();
5168     auto ToLocation = importChecked(Err, D->getLocation());
5169     auto ToAtStartLoc = importChecked(Err, D->getAtStartLoc());
5170     auto ToSuperClassLoc = importChecked(Err, D->getSuperClassLoc());
5171     auto ToIvarLBraceLoc = importChecked(Err, D->getIvarLBraceLoc());
5172     auto ToIvarRBraceLoc = importChecked(Err, D->getIvarRBraceLoc());
5173     if (Err)
5174       return std::move(Err);
5175 
5176     if (GetImportedOrCreateDecl(Impl, D, Importer.getToContext(),
5177                                 DC, Iface, Super,
5178                                 ToLocation,
5179                                 ToAtStartLoc,
5180                                 ToSuperClassLoc,
5181                                 ToIvarLBraceLoc,
5182                                 ToIvarRBraceLoc))
5183       return Impl;
5184 
5185     Impl->setLexicalDeclContext(LexicalDC);
5186 
5187     // Associate the implementation with the class it implements.
5188     Iface->setImplementation(Impl);
5189     Importer.MapImported(D, Iface->getImplementation());
5190   } else {
5191     Importer.MapImported(D, Iface->getImplementation());
5192 
5193     // Verify that the existing @implementation has the same superclass.
5194     if ((Super && !Impl->getSuperClass()) ||
5195         (!Super && Impl->getSuperClass()) ||
5196         (Super && Impl->getSuperClass() &&
5197          !declaresSameEntity(Super->getCanonicalDecl(),
5198                              Impl->getSuperClass()))) {
5199       Importer.ToDiag(Impl->getLocation(),
5200                       diag::warn_odr_objc_superclass_inconsistent)
5201         << Iface->getDeclName();
5202       // FIXME: It would be nice to have the location of the superclass
5203       // below.
5204       if (Impl->getSuperClass())
5205         Importer.ToDiag(Impl->getLocation(),
5206                         diag::note_odr_objc_superclass)
5207         << Impl->getSuperClass()->getDeclName();
5208       else
5209         Importer.ToDiag(Impl->getLocation(),
5210                         diag::note_odr_objc_missing_superclass);
5211       if (D->getSuperClass())
5212         Importer.FromDiag(D->getLocation(),
5213                           diag::note_odr_objc_superclass)
5214         << D->getSuperClass()->getDeclName();
5215       else
5216         Importer.FromDiag(D->getLocation(),
5217                           diag::note_odr_objc_missing_superclass);
5218 
5219       return make_error<ImportError>(ImportError::NameConflict);
5220     }
5221   }
5222 
5223   // Import all of the members of this @implementation.
5224   if (Error Err = ImportDeclContext(D))
5225     return std::move(Err);
5226 
5227   return Impl;
5228 }
5229 
5230 ExpectedDecl ASTNodeImporter::VisitObjCPropertyDecl(ObjCPropertyDecl *D) {
5231   // Import the major distinguishing characteristics of an @property.
5232   DeclContext *DC, *LexicalDC;
5233   DeclarationName Name;
5234   SourceLocation Loc;
5235   NamedDecl *ToD;
5236   if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc))
5237     return std::move(Err);
5238   if (ToD)
5239     return ToD;
5240 
5241   // Check whether we have already imported this property.
5242   auto FoundDecls = Importer.findDeclsInToCtx(DC, Name);
5243   for (auto *FoundDecl : FoundDecls) {
5244     if (auto *FoundProp = dyn_cast<ObjCPropertyDecl>(FoundDecl)) {
5245       // Instance and class properties can share the same name but are different
5246       // declarations.
5247       if (FoundProp->isInstanceProperty() != D->isInstanceProperty())
5248         continue;
5249 
5250       // Check property types.
5251       if (!Importer.IsStructurallyEquivalent(D->getType(),
5252                                              FoundProp->getType())) {
5253         Importer.ToDiag(Loc, diag::warn_odr_objc_property_type_inconsistent)
5254           << Name << D->getType() << FoundProp->getType();
5255         Importer.ToDiag(FoundProp->getLocation(), diag::note_odr_value_here)
5256           << FoundProp->getType();
5257 
5258         return make_error<ImportError>(ImportError::NameConflict);
5259       }
5260 
5261       // FIXME: Check property attributes, getters, setters, etc.?
5262 
5263       // Consider these properties to be equivalent.
5264       Importer.MapImported(D, FoundProp);
5265       return FoundProp;
5266     }
5267   }
5268 
5269   Error Err = Error::success();
5270   auto ToType = importChecked(Err, D->getType());
5271   auto ToTypeSourceInfo = importChecked(Err, D->getTypeSourceInfo());
5272   auto ToAtLoc = importChecked(Err, D->getAtLoc());
5273   auto ToLParenLoc = importChecked(Err, D->getLParenLoc());
5274   if (Err)
5275     return std::move(Err);
5276 
5277   // Create the new property.
5278   ObjCPropertyDecl *ToProperty;
5279   if (GetImportedOrCreateDecl(
5280           ToProperty, D, Importer.getToContext(), DC, Loc,
5281           Name.getAsIdentifierInfo(), ToAtLoc,
5282           ToLParenLoc, ToType,
5283           ToTypeSourceInfo, D->getPropertyImplementation()))
5284     return ToProperty;
5285 
5286   auto ToGetterName = importChecked(Err, D->getGetterName());
5287   auto ToSetterName = importChecked(Err, D->getSetterName());
5288   auto ToGetterNameLoc = importChecked(Err, D->getGetterNameLoc());
5289   auto ToSetterNameLoc = importChecked(Err, D->getSetterNameLoc());
5290   auto ToGetterMethodDecl = importChecked(Err, D->getGetterMethodDecl());
5291   auto ToSetterMethodDecl = importChecked(Err, D->getSetterMethodDecl());
5292   auto ToPropertyIvarDecl = importChecked(Err, D->getPropertyIvarDecl());
5293   if (Err)
5294     return std::move(Err);
5295 
5296   ToProperty->setLexicalDeclContext(LexicalDC);
5297   LexicalDC->addDeclInternal(ToProperty);
5298 
5299   ToProperty->setPropertyAttributes(D->getPropertyAttributes());
5300   ToProperty->setPropertyAttributesAsWritten(
5301                                       D->getPropertyAttributesAsWritten());
5302   ToProperty->setGetterName(ToGetterName, ToGetterNameLoc);
5303   ToProperty->setSetterName(ToSetterName, ToSetterNameLoc);
5304   ToProperty->setGetterMethodDecl(ToGetterMethodDecl);
5305   ToProperty->setSetterMethodDecl(ToSetterMethodDecl);
5306   ToProperty->setPropertyIvarDecl(ToPropertyIvarDecl);
5307   return ToProperty;
5308 }
5309 
5310 ExpectedDecl
5311 ASTNodeImporter::VisitObjCPropertyImplDecl(ObjCPropertyImplDecl *D) {
5312   ObjCPropertyDecl *Property;
5313   if (Error Err = importInto(Property, D->getPropertyDecl()))
5314     return std::move(Err);
5315 
5316   DeclContext *DC, *LexicalDC;
5317   if (Error Err = ImportDeclContext(D, DC, LexicalDC))
5318     return std::move(Err);
5319 
5320   auto *InImpl = cast<ObjCImplDecl>(LexicalDC);
5321 
5322   // Import the ivar (for an @synthesize).
5323   ObjCIvarDecl *Ivar = nullptr;
5324   if (Error Err = importInto(Ivar, D->getPropertyIvarDecl()))
5325     return std::move(Err);
5326 
5327   ObjCPropertyImplDecl *ToImpl
5328     = InImpl->FindPropertyImplDecl(Property->getIdentifier(),
5329                                    Property->getQueryKind());
5330   if (!ToImpl) {
5331 
5332     Error Err = Error::success();
5333     auto ToBeginLoc = importChecked(Err, D->getBeginLoc());
5334     auto ToLocation = importChecked(Err, D->getLocation());
5335     auto ToPropertyIvarDeclLoc =
5336         importChecked(Err, D->getPropertyIvarDeclLoc());
5337     if (Err)
5338       return std::move(Err);
5339 
5340     if (GetImportedOrCreateDecl(ToImpl, D, Importer.getToContext(), DC,
5341                                 ToBeginLoc,
5342                                 ToLocation, Property,
5343                                 D->getPropertyImplementation(), Ivar,
5344                                 ToPropertyIvarDeclLoc))
5345       return ToImpl;
5346 
5347     ToImpl->setLexicalDeclContext(LexicalDC);
5348     LexicalDC->addDeclInternal(ToImpl);
5349   } else {
5350     // Check that we have the same kind of property implementation (@synthesize
5351     // vs. @dynamic).
5352     if (D->getPropertyImplementation() != ToImpl->getPropertyImplementation()) {
5353       Importer.ToDiag(ToImpl->getLocation(),
5354                       diag::warn_odr_objc_property_impl_kind_inconsistent)
5355         << Property->getDeclName()
5356         << (ToImpl->getPropertyImplementation()
5357                                               == ObjCPropertyImplDecl::Dynamic);
5358       Importer.FromDiag(D->getLocation(),
5359                         diag::note_odr_objc_property_impl_kind)
5360         << D->getPropertyDecl()->getDeclName()
5361         << (D->getPropertyImplementation() == ObjCPropertyImplDecl::Dynamic);
5362 
5363       return make_error<ImportError>(ImportError::NameConflict);
5364     }
5365 
5366     // For @synthesize, check that we have the same
5367     if (D->getPropertyImplementation() == ObjCPropertyImplDecl::Synthesize &&
5368         Ivar != ToImpl->getPropertyIvarDecl()) {
5369       Importer.ToDiag(ToImpl->getPropertyIvarDeclLoc(),
5370                       diag::warn_odr_objc_synthesize_ivar_inconsistent)
5371         << Property->getDeclName()
5372         << ToImpl->getPropertyIvarDecl()->getDeclName()
5373         << Ivar->getDeclName();
5374       Importer.FromDiag(D->getPropertyIvarDeclLoc(),
5375                         diag::note_odr_objc_synthesize_ivar_here)
5376         << D->getPropertyIvarDecl()->getDeclName();
5377 
5378       return make_error<ImportError>(ImportError::NameConflict);
5379     }
5380 
5381     // Merge the existing implementation with the new implementation.
5382     Importer.MapImported(D, ToImpl);
5383   }
5384 
5385   return ToImpl;
5386 }
5387 
5388 ExpectedDecl
5389 ASTNodeImporter::VisitTemplateTypeParmDecl(TemplateTypeParmDecl *D) {
5390   // For template arguments, we adopt the translation unit as our declaration
5391   // context. This context will be fixed when the actual template declaration
5392   // is created.
5393 
5394   ExpectedSLoc BeginLocOrErr = import(D->getBeginLoc());
5395   if (!BeginLocOrErr)
5396     return BeginLocOrErr.takeError();
5397 
5398   ExpectedSLoc LocationOrErr = import(D->getLocation());
5399   if (!LocationOrErr)
5400     return LocationOrErr.takeError();
5401 
5402   TemplateTypeParmDecl *ToD = nullptr;
5403   if (GetImportedOrCreateDecl(
5404       ToD, D, Importer.getToContext(),
5405       Importer.getToContext().getTranslationUnitDecl(),
5406       *BeginLocOrErr, *LocationOrErr,
5407       D->getDepth(), D->getIndex(), Importer.Import(D->getIdentifier()),
5408       D->wasDeclaredWithTypename(), D->isParameterPack(),
5409       D->hasTypeConstraint()))
5410     return ToD;
5411 
5412   // Import the type-constraint
5413   if (const TypeConstraint *TC = D->getTypeConstraint()) {
5414 
5415     Error Err = Error::success();
5416     auto ToNNS = importChecked(Err, TC->getNestedNameSpecifierLoc());
5417     auto ToName = importChecked(Err, TC->getConceptNameInfo().getName());
5418     auto ToNameLoc = importChecked(Err, TC->getConceptNameInfo().getLoc());
5419     auto ToFoundDecl = importChecked(Err, TC->getFoundDecl());
5420     auto ToNamedConcept = importChecked(Err, TC->getNamedConcept());
5421     auto ToIDC = importChecked(Err, TC->getImmediatelyDeclaredConstraint());
5422     if (Err)
5423       return std::move(Err);
5424 
5425     TemplateArgumentListInfo ToTAInfo;
5426     const auto *ASTTemplateArgs = TC->getTemplateArgsAsWritten();
5427     if (ASTTemplateArgs)
5428       if (Error Err = ImportTemplateArgumentListInfo(*ASTTemplateArgs,
5429                                                      ToTAInfo))
5430         return std::move(Err);
5431 
5432     ToD->setTypeConstraint(ToNNS, DeclarationNameInfo(ToName, ToNameLoc),
5433         ToFoundDecl, ToNamedConcept,
5434         ASTTemplateArgs ?
5435             ASTTemplateArgumentListInfo::Create(Importer.getToContext(),
5436                                                 ToTAInfo) : nullptr,
5437         ToIDC);
5438   }
5439 
5440   if (D->hasDefaultArgument()) {
5441     Expected<TypeSourceInfo *> ToDefaultArgOrErr =
5442         import(D->getDefaultArgumentInfo());
5443     if (!ToDefaultArgOrErr)
5444       return ToDefaultArgOrErr.takeError();
5445     ToD->setDefaultArgument(*ToDefaultArgOrErr);
5446   }
5447 
5448   return ToD;
5449 }
5450 
5451 ExpectedDecl
5452 ASTNodeImporter::VisitNonTypeTemplateParmDecl(NonTypeTemplateParmDecl *D) {
5453 
5454   Error Err = Error::success();
5455   auto ToDeclName = importChecked(Err, D->getDeclName());
5456   auto ToLocation = importChecked(Err, D->getLocation());
5457   auto ToType = importChecked(Err, D->getType());
5458   auto ToTypeSourceInfo = importChecked(Err, D->getTypeSourceInfo());
5459   auto ToInnerLocStart = importChecked(Err, D->getInnerLocStart());
5460   if (Err)
5461     return std::move(Err);
5462 
5463   NonTypeTemplateParmDecl *ToD = nullptr;
5464   if (GetImportedOrCreateDecl(ToD, D, Importer.getToContext(),
5465                               Importer.getToContext().getTranslationUnitDecl(),
5466                               ToInnerLocStart, ToLocation, D->getDepth(),
5467                               D->getPosition(),
5468                               ToDeclName.getAsIdentifierInfo(), ToType,
5469                               D->isParameterPack(), ToTypeSourceInfo))
5470     return ToD;
5471 
5472   if (D->hasDefaultArgument()) {
5473     ExpectedExpr ToDefaultArgOrErr = import(D->getDefaultArgument());
5474     if (!ToDefaultArgOrErr)
5475       return ToDefaultArgOrErr.takeError();
5476     ToD->setDefaultArgument(*ToDefaultArgOrErr);
5477   }
5478 
5479   return ToD;
5480 }
5481 
5482 ExpectedDecl
5483 ASTNodeImporter::VisitTemplateTemplateParmDecl(TemplateTemplateParmDecl *D) {
5484   // Import the name of this declaration.
5485   auto NameOrErr = import(D->getDeclName());
5486   if (!NameOrErr)
5487     return NameOrErr.takeError();
5488 
5489   // Import the location of this declaration.
5490   ExpectedSLoc LocationOrErr = import(D->getLocation());
5491   if (!LocationOrErr)
5492     return LocationOrErr.takeError();
5493 
5494   // Import template parameters.
5495   auto TemplateParamsOrErr = import(D->getTemplateParameters());
5496   if (!TemplateParamsOrErr)
5497     return TemplateParamsOrErr.takeError();
5498 
5499   TemplateTemplateParmDecl *ToD = nullptr;
5500   if (GetImportedOrCreateDecl(
5501           ToD, D, Importer.getToContext(),
5502           Importer.getToContext().getTranslationUnitDecl(), *LocationOrErr,
5503           D->getDepth(), D->getPosition(), D->isParameterPack(),
5504           (*NameOrErr).getAsIdentifierInfo(), *TemplateParamsOrErr))
5505     return ToD;
5506 
5507   if (D->hasDefaultArgument()) {
5508     Expected<TemplateArgumentLoc> ToDefaultArgOrErr =
5509         import(D->getDefaultArgument());
5510     if (!ToDefaultArgOrErr)
5511       return ToDefaultArgOrErr.takeError();
5512     ToD->setDefaultArgument(Importer.getToContext(), *ToDefaultArgOrErr);
5513   }
5514 
5515   return ToD;
5516 }
5517 
5518 // Returns the definition for a (forward) declaration of a TemplateDecl, if
5519 // it has any definition in the redecl chain.
5520 template <typename T> static auto getTemplateDefinition(T *D) -> T * {
5521   assert(D->getTemplatedDecl() && "Should be called on templates only");
5522   auto *ToTemplatedDef = D->getTemplatedDecl()->getDefinition();
5523   if (!ToTemplatedDef)
5524     return nullptr;
5525   auto *TemplateWithDef = ToTemplatedDef->getDescribedTemplate();
5526   return cast_or_null<T>(TemplateWithDef);
5527 }
5528 
5529 ExpectedDecl ASTNodeImporter::VisitClassTemplateDecl(ClassTemplateDecl *D) {
5530 
5531   // Import the major distinguishing characteristics of this class template.
5532   DeclContext *DC, *LexicalDC;
5533   DeclarationName Name;
5534   SourceLocation Loc;
5535   NamedDecl *ToD;
5536   if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc))
5537     return std::move(Err);
5538   if (ToD)
5539     return ToD;
5540 
5541   ClassTemplateDecl *FoundByLookup = nullptr;
5542 
5543   // We may already have a template of the same name; try to find and match it.
5544   if (!DC->isFunctionOrMethod()) {
5545     SmallVector<NamedDecl *, 4> ConflictingDecls;
5546     auto FoundDecls = Importer.findDeclsInToCtx(DC, Name);
5547     for (auto *FoundDecl : FoundDecls) {
5548       if (!FoundDecl->isInIdentifierNamespace(Decl::IDNS_Ordinary |
5549                                               Decl::IDNS_TagFriend))
5550         continue;
5551 
5552       Decl *Found = FoundDecl;
5553       auto *FoundTemplate = dyn_cast<ClassTemplateDecl>(Found);
5554       if (FoundTemplate) {
5555         if (!hasSameVisibilityContextAndLinkage(FoundTemplate, D))
5556           continue;
5557 
5558         if (IsStructuralMatch(D, FoundTemplate)) {
5559           ClassTemplateDecl *TemplateWithDef =
5560               getTemplateDefinition(FoundTemplate);
5561           if (D->isThisDeclarationADefinition() && TemplateWithDef)
5562             return Importer.MapImported(D, TemplateWithDef);
5563           if (!FoundByLookup)
5564             FoundByLookup = FoundTemplate;
5565           // Search in all matches because there may be multiple decl chains,
5566           // see ASTTests test ImportExistingFriendClassTemplateDef.
5567           continue;
5568         }
5569         ConflictingDecls.push_back(FoundDecl);
5570       }
5571     }
5572 
5573     if (!ConflictingDecls.empty()) {
5574       ExpectedName NameOrErr = Importer.HandleNameConflict(
5575           Name, DC, Decl::IDNS_Ordinary, ConflictingDecls.data(),
5576           ConflictingDecls.size());
5577       if (NameOrErr)
5578         Name = NameOrErr.get();
5579       else
5580         return NameOrErr.takeError();
5581     }
5582   }
5583 
5584   CXXRecordDecl *FromTemplated = D->getTemplatedDecl();
5585 
5586   auto TemplateParamsOrErr = import(D->getTemplateParameters());
5587   if (!TemplateParamsOrErr)
5588     return TemplateParamsOrErr.takeError();
5589 
5590   // Create the declaration that is being templated.
5591   CXXRecordDecl *ToTemplated;
5592   if (Error Err = importInto(ToTemplated, FromTemplated))
5593     return std::move(Err);
5594 
5595   // Create the class template declaration itself.
5596   ClassTemplateDecl *D2;
5597   if (GetImportedOrCreateDecl(D2, D, Importer.getToContext(), DC, Loc, Name,
5598                               *TemplateParamsOrErr, ToTemplated))
5599     return D2;
5600 
5601   ToTemplated->setDescribedClassTemplate(D2);
5602 
5603   D2->setAccess(D->getAccess());
5604   D2->setLexicalDeclContext(LexicalDC);
5605 
5606   addDeclToContexts(D, D2);
5607   updateLookupTableForTemplateParameters(**TemplateParamsOrErr);
5608 
5609   if (FoundByLookup) {
5610     auto *Recent =
5611         const_cast<ClassTemplateDecl *>(FoundByLookup->getMostRecentDecl());
5612 
5613     // It is possible that during the import of the class template definition
5614     // we start the import of a fwd friend decl of the very same class template
5615     // and we add the fwd friend decl to the lookup table. But the ToTemplated
5616     // had been created earlier and by that time the lookup could not find
5617     // anything existing, so it has no previous decl. Later, (still during the
5618     // import of the fwd friend decl) we start to import the definition again
5619     // and this time the lookup finds the previous fwd friend class template.
5620     // In this case we must set up the previous decl for the templated decl.
5621     if (!ToTemplated->getPreviousDecl()) {
5622       assert(FoundByLookup->getTemplatedDecl() &&
5623              "Found decl must have its templated decl set");
5624       CXXRecordDecl *PrevTemplated =
5625           FoundByLookup->getTemplatedDecl()->getMostRecentDecl();
5626       if (ToTemplated != PrevTemplated)
5627         ToTemplated->setPreviousDecl(PrevTemplated);
5628     }
5629 
5630     D2->setPreviousDecl(Recent);
5631   }
5632 
5633   if (FromTemplated->isCompleteDefinition() &&
5634       !ToTemplated->isCompleteDefinition()) {
5635     // FIXME: Import definition!
5636   }
5637 
5638   return D2;
5639 }
5640 
5641 ExpectedDecl ASTNodeImporter::VisitClassTemplateSpecializationDecl(
5642                                           ClassTemplateSpecializationDecl *D) {
5643   ClassTemplateDecl *ClassTemplate;
5644   if (Error Err = importInto(ClassTemplate, D->getSpecializedTemplate()))
5645     return std::move(Err);
5646 
5647   // Import the context of this declaration.
5648   DeclContext *DC, *LexicalDC;
5649   if (Error Err = ImportDeclContext(D, DC, LexicalDC))
5650     return std::move(Err);
5651 
5652   // Import template arguments.
5653   SmallVector<TemplateArgument, 2> TemplateArgs;
5654   if (Error Err = ImportTemplateArguments(
5655       D->getTemplateArgs().data(), D->getTemplateArgs().size(), TemplateArgs))
5656     return std::move(Err);
5657   // Try to find an existing specialization with these template arguments and
5658   // template parameter list.
5659   void *InsertPos = nullptr;
5660   ClassTemplateSpecializationDecl *PrevDecl = nullptr;
5661   ClassTemplatePartialSpecializationDecl *PartialSpec =
5662             dyn_cast<ClassTemplatePartialSpecializationDecl>(D);
5663 
5664   // Import template parameters.
5665   TemplateParameterList *ToTPList = nullptr;
5666 
5667   if (PartialSpec) {
5668     auto ToTPListOrErr = import(PartialSpec->getTemplateParameters());
5669     if (!ToTPListOrErr)
5670       return ToTPListOrErr.takeError();
5671     ToTPList = *ToTPListOrErr;
5672     PrevDecl = ClassTemplate->findPartialSpecialization(TemplateArgs,
5673                                                         *ToTPListOrErr,
5674                                                         InsertPos);
5675   } else
5676     PrevDecl = ClassTemplate->findSpecialization(TemplateArgs, InsertPos);
5677 
5678   if (PrevDecl) {
5679     if (IsStructuralMatch(D, PrevDecl)) {
5680       CXXRecordDecl *PrevDefinition = PrevDecl->getDefinition();
5681       if (D->isThisDeclarationADefinition() && PrevDefinition) {
5682         Importer.MapImported(D, PrevDefinition);
5683         // Import those default field initializers which have been
5684         // instantiated in the "From" context, but not in the "To" context.
5685         for (auto *FromField : D->fields()) {
5686           auto ToOrErr = import(FromField);
5687           if (!ToOrErr)
5688             return ToOrErr.takeError();
5689         }
5690 
5691         // Import those methods which have been instantiated in the
5692         // "From" context, but not in the "To" context.
5693         for (CXXMethodDecl *FromM : D->methods()) {
5694           auto ToOrErr = import(FromM);
5695           if (!ToOrErr)
5696             return ToOrErr.takeError();
5697         }
5698 
5699         // TODO Import instantiated default arguments.
5700         // TODO Import instantiated exception specifications.
5701         //
5702         // Generally, ASTCommon.h/DeclUpdateKind enum gives a very good hint
5703         // what else could be fused during an AST merge.
5704         return PrevDefinition;
5705       }
5706     } else { // ODR violation.
5707       // FIXME HandleNameConflict
5708       return make_error<ImportError>(ImportError::NameConflict);
5709     }
5710   }
5711 
5712   // Import the location of this declaration.
5713   ExpectedSLoc BeginLocOrErr = import(D->getBeginLoc());
5714   if (!BeginLocOrErr)
5715     return BeginLocOrErr.takeError();
5716   ExpectedSLoc IdLocOrErr = import(D->getLocation());
5717   if (!IdLocOrErr)
5718     return IdLocOrErr.takeError();
5719 
5720   // Create the specialization.
5721   ClassTemplateSpecializationDecl *D2 = nullptr;
5722   if (PartialSpec) {
5723     // Import TemplateArgumentListInfo.
5724     TemplateArgumentListInfo ToTAInfo;
5725     const auto &ASTTemplateArgs = *PartialSpec->getTemplateArgsAsWritten();
5726     if (Error Err = ImportTemplateArgumentListInfo(ASTTemplateArgs, ToTAInfo))
5727       return std::move(Err);
5728 
5729     QualType CanonInjType;
5730     if (Error Err = importInto(
5731         CanonInjType, PartialSpec->getInjectedSpecializationType()))
5732       return std::move(Err);
5733     CanonInjType = CanonInjType.getCanonicalType();
5734 
5735     if (GetImportedOrCreateDecl<ClassTemplatePartialSpecializationDecl>(
5736             D2, D, Importer.getToContext(), D->getTagKind(), DC,
5737             *BeginLocOrErr, *IdLocOrErr, ToTPList, ClassTemplate,
5738             llvm::makeArrayRef(TemplateArgs.data(), TemplateArgs.size()),
5739             ToTAInfo, CanonInjType,
5740             cast_or_null<ClassTemplatePartialSpecializationDecl>(PrevDecl)))
5741       return D2;
5742 
5743     // Update InsertPos, because preceding import calls may have invalidated
5744     // it by adding new specializations.
5745     auto *PartSpec2 = cast<ClassTemplatePartialSpecializationDecl>(D2);
5746     if (!ClassTemplate->findPartialSpecialization(TemplateArgs, ToTPList,
5747                                                   InsertPos))
5748       // Add this partial specialization to the class template.
5749       ClassTemplate->AddPartialSpecialization(PartSpec2, InsertPos);
5750 
5751     updateLookupTableForTemplateParameters(*ToTPList);
5752   } else { // Not a partial specialization.
5753     if (GetImportedOrCreateDecl(
5754             D2, D, Importer.getToContext(), D->getTagKind(), DC,
5755             *BeginLocOrErr, *IdLocOrErr, ClassTemplate, TemplateArgs,
5756             PrevDecl))
5757       return D2;
5758 
5759     // Update InsertPos, because preceding import calls may have invalidated
5760     // it by adding new specializations.
5761     if (!ClassTemplate->findSpecialization(TemplateArgs, InsertPos))
5762       // Add this specialization to the class template.
5763       ClassTemplate->AddSpecialization(D2, InsertPos);
5764   }
5765 
5766   D2->setSpecializationKind(D->getSpecializationKind());
5767 
5768   // Set the context of this specialization/instantiation.
5769   D2->setLexicalDeclContext(LexicalDC);
5770 
5771   // Add to the DC only if it was an explicit specialization/instantiation.
5772   if (D2->isExplicitInstantiationOrSpecialization()) {
5773     LexicalDC->addDeclInternal(D2);
5774   }
5775 
5776   if (auto BraceRangeOrErr = import(D->getBraceRange()))
5777     D2->setBraceRange(*BraceRangeOrErr);
5778   else
5779     return BraceRangeOrErr.takeError();
5780 
5781   // Import the qualifier, if any.
5782   if (auto LocOrErr = import(D->getQualifierLoc()))
5783     D2->setQualifierInfo(*LocOrErr);
5784   else
5785     return LocOrErr.takeError();
5786 
5787   if (auto *TSI = D->getTypeAsWritten()) {
5788     if (auto TInfoOrErr = import(TSI))
5789       D2->setTypeAsWritten(*TInfoOrErr);
5790     else
5791       return TInfoOrErr.takeError();
5792 
5793     if (auto LocOrErr = import(D->getTemplateKeywordLoc()))
5794       D2->setTemplateKeywordLoc(*LocOrErr);
5795     else
5796       return LocOrErr.takeError();
5797 
5798     if (auto LocOrErr = import(D->getExternLoc()))
5799       D2->setExternLoc(*LocOrErr);
5800     else
5801       return LocOrErr.takeError();
5802   }
5803 
5804   if (D->getPointOfInstantiation().isValid()) {
5805     if (auto POIOrErr = import(D->getPointOfInstantiation()))
5806       D2->setPointOfInstantiation(*POIOrErr);
5807     else
5808       return POIOrErr.takeError();
5809   }
5810 
5811   D2->setTemplateSpecializationKind(D->getTemplateSpecializationKind());
5812 
5813   if (D->isCompleteDefinition())
5814     if (Error Err = ImportDefinition(D, D2))
5815       return std::move(Err);
5816 
5817   return D2;
5818 }
5819 
5820 ExpectedDecl ASTNodeImporter::VisitVarTemplateDecl(VarTemplateDecl *D) {
5821   // Import the major distinguishing characteristics of this variable template.
5822   DeclContext *DC, *LexicalDC;
5823   DeclarationName Name;
5824   SourceLocation Loc;
5825   NamedDecl *ToD;
5826   if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc))
5827     return std::move(Err);
5828   if (ToD)
5829     return ToD;
5830 
5831   // We may already have a template of the same name; try to find and match it.
5832   assert(!DC->isFunctionOrMethod() &&
5833          "Variable templates cannot be declared at function scope");
5834 
5835   SmallVector<NamedDecl *, 4> ConflictingDecls;
5836   auto FoundDecls = Importer.findDeclsInToCtx(DC, Name);
5837   VarTemplateDecl *FoundByLookup = nullptr;
5838   for (auto *FoundDecl : FoundDecls) {
5839     if (!FoundDecl->isInIdentifierNamespace(Decl::IDNS_Ordinary))
5840       continue;
5841 
5842     if (VarTemplateDecl *FoundTemplate = dyn_cast<VarTemplateDecl>(FoundDecl)) {
5843       // Use the templated decl, some linkage flags are set only there.
5844       if (!hasSameVisibilityContextAndLinkage(FoundTemplate->getTemplatedDecl(),
5845                                               D->getTemplatedDecl()))
5846         continue;
5847       if (IsStructuralMatch(D, FoundTemplate)) {
5848         // The Decl in the "From" context has a definition, but in the
5849         // "To" context we already have a definition.
5850         VarTemplateDecl *FoundDef = getTemplateDefinition(FoundTemplate);
5851         if (D->isThisDeclarationADefinition() && FoundDef)
5852           // FIXME Check for ODR error if the two definitions have
5853           // different initializers?
5854           return Importer.MapImported(D, FoundDef);
5855 
5856         FoundByLookup = FoundTemplate;
5857         break;
5858       }
5859       ConflictingDecls.push_back(FoundDecl);
5860     }
5861   }
5862 
5863   if (!ConflictingDecls.empty()) {
5864     ExpectedName NameOrErr = Importer.HandleNameConflict(
5865         Name, DC, Decl::IDNS_Ordinary, ConflictingDecls.data(),
5866         ConflictingDecls.size());
5867     if (NameOrErr)
5868       Name = NameOrErr.get();
5869     else
5870       return NameOrErr.takeError();
5871   }
5872 
5873   VarDecl *DTemplated = D->getTemplatedDecl();
5874 
5875   // Import the type.
5876   // FIXME: Value not used?
5877   ExpectedType TypeOrErr = import(DTemplated->getType());
5878   if (!TypeOrErr)
5879     return TypeOrErr.takeError();
5880 
5881   // Create the declaration that is being templated.
5882   VarDecl *ToTemplated;
5883   if (Error Err = importInto(ToTemplated, DTemplated))
5884     return std::move(Err);
5885 
5886   // Create the variable template declaration itself.
5887   auto TemplateParamsOrErr = import(D->getTemplateParameters());
5888   if (!TemplateParamsOrErr)
5889     return TemplateParamsOrErr.takeError();
5890 
5891   VarTemplateDecl *ToVarTD;
5892   if (GetImportedOrCreateDecl(ToVarTD, D, Importer.getToContext(), DC, Loc,
5893                               Name, *TemplateParamsOrErr, ToTemplated))
5894     return ToVarTD;
5895 
5896   ToTemplated->setDescribedVarTemplate(ToVarTD);
5897 
5898   ToVarTD->setAccess(D->getAccess());
5899   ToVarTD->setLexicalDeclContext(LexicalDC);
5900   LexicalDC->addDeclInternal(ToVarTD);
5901   if (DC != Importer.getToContext().getTranslationUnitDecl())
5902     updateLookupTableForTemplateParameters(**TemplateParamsOrErr);
5903 
5904   if (FoundByLookup) {
5905     auto *Recent =
5906         const_cast<VarTemplateDecl *>(FoundByLookup->getMostRecentDecl());
5907     if (!ToTemplated->getPreviousDecl()) {
5908       auto *PrevTemplated =
5909           FoundByLookup->getTemplatedDecl()->getMostRecentDecl();
5910       if (ToTemplated != PrevTemplated)
5911         ToTemplated->setPreviousDecl(PrevTemplated);
5912     }
5913     ToVarTD->setPreviousDecl(Recent);
5914   }
5915 
5916   if (DTemplated->isThisDeclarationADefinition() &&
5917       !ToTemplated->isThisDeclarationADefinition()) {
5918     // FIXME: Import definition!
5919   }
5920 
5921   return ToVarTD;
5922 }
5923 
5924 ExpectedDecl ASTNodeImporter::VisitVarTemplateSpecializationDecl(
5925     VarTemplateSpecializationDecl *D) {
5926   // If this record has a definition in the translation unit we're coming from,
5927   // but this particular declaration is not that definition, import the
5928   // definition and map to that.
5929   VarDecl *Definition = D->getDefinition();
5930   if (Definition && Definition != D) {
5931     if (ExpectedDecl ImportedDefOrErr = import(Definition))
5932       return Importer.MapImported(D, *ImportedDefOrErr);
5933     else
5934       return ImportedDefOrErr.takeError();
5935   }
5936 
5937   VarTemplateDecl *VarTemplate = nullptr;
5938   if (Error Err = importInto(VarTemplate, D->getSpecializedTemplate()))
5939     return std::move(Err);
5940 
5941   // Import the context of this declaration.
5942   DeclContext *DC, *LexicalDC;
5943   if (Error Err = ImportDeclContext(D, DC, LexicalDC))
5944     return std::move(Err);
5945 
5946   // Import the location of this declaration.
5947   ExpectedSLoc BeginLocOrErr = import(D->getBeginLoc());
5948   if (!BeginLocOrErr)
5949     return BeginLocOrErr.takeError();
5950 
5951   auto IdLocOrErr = import(D->getLocation());
5952   if (!IdLocOrErr)
5953     return IdLocOrErr.takeError();
5954 
5955   // Import template arguments.
5956   SmallVector<TemplateArgument, 2> TemplateArgs;
5957   if (Error Err = ImportTemplateArguments(
5958       D->getTemplateArgs().data(), D->getTemplateArgs().size(), TemplateArgs))
5959     return std::move(Err);
5960 
5961   // Try to find an existing specialization with these template arguments.
5962   void *InsertPos = nullptr;
5963   VarTemplateSpecializationDecl *D2 = VarTemplate->findSpecialization(
5964       TemplateArgs, InsertPos);
5965   if (D2) {
5966     // We already have a variable template specialization with these template
5967     // arguments.
5968 
5969     // FIXME: Check for specialization vs. instantiation errors.
5970 
5971     if (VarDecl *FoundDef = D2->getDefinition()) {
5972       if (!D->isThisDeclarationADefinition() ||
5973           IsStructuralMatch(D, FoundDef)) {
5974         // The record types structurally match, or the "from" translation
5975         // unit only had a forward declaration anyway; call it the same
5976         // variable.
5977         return Importer.MapImported(D, FoundDef);
5978       }
5979     }
5980   } else {
5981     // Import the type.
5982     QualType T;
5983     if (Error Err = importInto(T, D->getType()))
5984       return std::move(Err);
5985 
5986     auto TInfoOrErr = import(D->getTypeSourceInfo());
5987     if (!TInfoOrErr)
5988       return TInfoOrErr.takeError();
5989 
5990     TemplateArgumentListInfo ToTAInfo;
5991     if (Error Err = ImportTemplateArgumentListInfo(
5992         D->getTemplateArgsInfo(), ToTAInfo))
5993       return std::move(Err);
5994 
5995     using PartVarSpecDecl = VarTemplatePartialSpecializationDecl;
5996     // Create a new specialization.
5997     if (auto *FromPartial = dyn_cast<PartVarSpecDecl>(D)) {
5998       // Import TemplateArgumentListInfo
5999       TemplateArgumentListInfo ArgInfos;
6000       const auto *FromTAArgsAsWritten = FromPartial->getTemplateArgsAsWritten();
6001       // NOTE: FromTAArgsAsWritten and template parameter list are non-null.
6002       if (Error Err = ImportTemplateArgumentListInfo(
6003           *FromTAArgsAsWritten, ArgInfos))
6004         return std::move(Err);
6005 
6006       auto ToTPListOrErr = import(FromPartial->getTemplateParameters());
6007       if (!ToTPListOrErr)
6008         return ToTPListOrErr.takeError();
6009 
6010       PartVarSpecDecl *ToPartial;
6011       if (GetImportedOrCreateDecl(ToPartial, D, Importer.getToContext(), DC,
6012                                   *BeginLocOrErr, *IdLocOrErr, *ToTPListOrErr,
6013                                   VarTemplate, T, *TInfoOrErr,
6014                                   D->getStorageClass(), TemplateArgs, ArgInfos))
6015         return ToPartial;
6016 
6017       if (Expected<PartVarSpecDecl *> ToInstOrErr = import(
6018           FromPartial->getInstantiatedFromMember()))
6019         ToPartial->setInstantiatedFromMember(*ToInstOrErr);
6020       else
6021         return ToInstOrErr.takeError();
6022 
6023       if (FromPartial->isMemberSpecialization())
6024         ToPartial->setMemberSpecialization();
6025 
6026       D2 = ToPartial;
6027 
6028       // FIXME: Use this update if VarTemplatePartialSpecializationDecl is fixed
6029       // to adopt template parameters.
6030       // updateLookupTableForTemplateParameters(**ToTPListOrErr);
6031     } else { // Full specialization
6032       if (GetImportedOrCreateDecl(D2, D, Importer.getToContext(), DC,
6033                                   *BeginLocOrErr, *IdLocOrErr, VarTemplate,
6034                                   T, *TInfoOrErr,
6035                                   D->getStorageClass(), TemplateArgs))
6036         return D2;
6037     }
6038 
6039     if (D->getPointOfInstantiation().isValid()) {
6040       if (ExpectedSLoc POIOrErr = import(D->getPointOfInstantiation()))
6041         D2->setPointOfInstantiation(*POIOrErr);
6042       else
6043         return POIOrErr.takeError();
6044     }
6045 
6046     D2->setSpecializationKind(D->getSpecializationKind());
6047     D2->setTemplateArgsInfo(ToTAInfo);
6048 
6049     // Add this specialization to the class template.
6050     VarTemplate->AddSpecialization(D2, InsertPos);
6051 
6052     // Import the qualifier, if any.
6053     if (auto LocOrErr = import(D->getQualifierLoc()))
6054       D2->setQualifierInfo(*LocOrErr);
6055     else
6056       return LocOrErr.takeError();
6057 
6058     if (D->isConstexpr())
6059       D2->setConstexpr(true);
6060 
6061     // Add the specialization to this context.
6062     D2->setLexicalDeclContext(LexicalDC);
6063     LexicalDC->addDeclInternal(D2);
6064 
6065     D2->setAccess(D->getAccess());
6066   }
6067 
6068   if (Error Err = ImportInitializer(D, D2))
6069     return std::move(Err);
6070 
6071   return D2;
6072 }
6073 
6074 ExpectedDecl
6075 ASTNodeImporter::VisitFunctionTemplateDecl(FunctionTemplateDecl *D) {
6076   DeclContext *DC, *LexicalDC;
6077   DeclarationName Name;
6078   SourceLocation Loc;
6079   NamedDecl *ToD;
6080 
6081   if (Error Err = ImportDeclParts(D, DC, LexicalDC, Name, ToD, Loc))
6082     return std::move(Err);
6083 
6084   if (ToD)
6085     return ToD;
6086 
6087   const FunctionTemplateDecl *FoundByLookup = nullptr;
6088 
6089   // Try to find a function in our own ("to") context with the same name, same
6090   // type, and in the same context as the function we're importing.
6091   // FIXME Split this into a separate function.
6092   if (!LexicalDC->isFunctionOrMethod()) {
6093     unsigned IDNS = Decl::IDNS_Ordinary | Decl::IDNS_OrdinaryFriend;
6094     auto FoundDecls = Importer.findDeclsInToCtx(DC, Name);
6095     for (auto *FoundDecl : FoundDecls) {
6096       if (!FoundDecl->isInIdentifierNamespace(IDNS))
6097         continue;
6098 
6099       if (auto *FoundTemplate = dyn_cast<FunctionTemplateDecl>(FoundDecl)) {
6100         if (!hasSameVisibilityContextAndLinkage(FoundTemplate, D))
6101           continue;
6102         if (IsStructuralMatch(D, FoundTemplate)) {
6103           FunctionTemplateDecl *TemplateWithDef =
6104               getTemplateDefinition(FoundTemplate);
6105           if (D->isThisDeclarationADefinition() && TemplateWithDef)
6106             return Importer.MapImported(D, TemplateWithDef);
6107 
6108           FoundByLookup = FoundTemplate;
6109           break;
6110           // TODO: handle conflicting names
6111         }
6112       }
6113     }
6114   }
6115 
6116   auto ParamsOrErr = import(D->getTemplateParameters());
6117   if (!ParamsOrErr)
6118     return ParamsOrErr.takeError();
6119   TemplateParameterList *Params = *ParamsOrErr;
6120 
6121   FunctionDecl *TemplatedFD;
6122   if (Error Err = importInto(TemplatedFD, D->getTemplatedDecl()))
6123     return std::move(Err);
6124 
6125   // At creation of the template the template parameters are "adopted"
6126   // (DeclContext is changed). After this possible change the lookup table
6127   // must be updated.
6128   // At deduction guides the DeclContext of the template parameters may be
6129   // different from what we would expect, it may be the class template, or a
6130   // probably different CXXDeductionGuideDecl. This may come from the fact that
6131   // the template parameter objects may be shared between deduction guides or
6132   // the class template, and at creation of multiple FunctionTemplateDecl
6133   // objects (for deduction guides) the same parameters are re-used. The
6134   // "adoption" happens multiple times with different parent, even recursively
6135   // for TemplateTemplateParmDecl. The same happens at import when the
6136   // FunctionTemplateDecl objects are created, but in different order.
6137   // In this way the DeclContext of these template parameters is not necessarily
6138   // the same as in the "from" context.
6139   SmallVector<DeclContext *, 2> OldParamDC;
6140   OldParamDC.reserve(Params->size());
6141   llvm::transform(*Params, std::back_inserter(OldParamDC),
6142                   [](NamedDecl *ND) { return ND->getDeclContext(); });
6143 
6144   FunctionTemplateDecl *ToFunc;
6145   if (GetImportedOrCreateDecl(ToFunc, D, Importer.getToContext(), DC, Loc, Name,
6146                               Params, TemplatedFD))
6147     return ToFunc;
6148 
6149   TemplatedFD->setDescribedFunctionTemplate(ToFunc);
6150 
6151   ToFunc->setAccess(D->getAccess());
6152   ToFunc->setLexicalDeclContext(LexicalDC);
6153   LexicalDC->addDeclInternal(ToFunc);
6154 
6155   ASTImporterLookupTable *LT = Importer.SharedState->getLookupTable();
6156   if (LT && !OldParamDC.empty()) {
6157     for (unsigned int I = 0; I < OldParamDC.size(); ++I)
6158       LT->updateForced(Params->getParam(I), OldParamDC[I]);
6159   }
6160 
6161   if (FoundByLookup) {
6162     auto *Recent =
6163         const_cast<FunctionTemplateDecl *>(FoundByLookup->getMostRecentDecl());
6164     if (!TemplatedFD->getPreviousDecl()) {
6165       assert(FoundByLookup->getTemplatedDecl() &&
6166              "Found decl must have its templated decl set");
6167       auto *PrevTemplated =
6168           FoundByLookup->getTemplatedDecl()->getMostRecentDecl();
6169       if (TemplatedFD != PrevTemplated)
6170         TemplatedFD->setPreviousDecl(PrevTemplated);
6171     }
6172     ToFunc->setPreviousDecl(Recent);
6173   }
6174 
6175   return ToFunc;
6176 }
6177 
6178 //----------------------------------------------------------------------------
6179 // Import Statements
6180 //----------------------------------------------------------------------------
6181 
6182 ExpectedStmt ASTNodeImporter::VisitStmt(Stmt *S) {
6183   Importer.FromDiag(S->getBeginLoc(), diag::err_unsupported_ast_node)
6184       << S->getStmtClassName();
6185   return make_error<ImportError>(ImportError::UnsupportedConstruct);
6186 }
6187 
6188 
6189 ExpectedStmt ASTNodeImporter::VisitGCCAsmStmt(GCCAsmStmt *S) {
6190   if (Importer.returnWithErrorInTest())
6191     return make_error<ImportError>(ImportError::UnsupportedConstruct);
6192   SmallVector<IdentifierInfo *, 4> Names;
6193   for (unsigned I = 0, E = S->getNumOutputs(); I != E; I++) {
6194     IdentifierInfo *ToII = Importer.Import(S->getOutputIdentifier(I));
6195     // ToII is nullptr when no symbolic name is given for output operand
6196     // see ParseStmtAsm::ParseAsmOperandsOpt
6197     Names.push_back(ToII);
6198   }
6199 
6200   for (unsigned I = 0, E = S->getNumInputs(); I != E; I++) {
6201     IdentifierInfo *ToII = Importer.Import(S->getInputIdentifier(I));
6202     // ToII is nullptr when no symbolic name is given for input operand
6203     // see ParseStmtAsm::ParseAsmOperandsOpt
6204     Names.push_back(ToII);
6205   }
6206 
6207   SmallVector<StringLiteral *, 4> Clobbers;
6208   for (unsigned I = 0, E = S->getNumClobbers(); I != E; I++) {
6209     if (auto ClobberOrErr = import(S->getClobberStringLiteral(I)))
6210       Clobbers.push_back(*ClobberOrErr);
6211     else
6212       return ClobberOrErr.takeError();
6213 
6214   }
6215 
6216   SmallVector<StringLiteral *, 4> Constraints;
6217   for (unsigned I = 0, E = S->getNumOutputs(); I != E; I++) {
6218     if (auto OutputOrErr = import(S->getOutputConstraintLiteral(I)))
6219       Constraints.push_back(*OutputOrErr);
6220     else
6221       return OutputOrErr.takeError();
6222   }
6223 
6224   for (unsigned I = 0, E = S->getNumInputs(); I != E; I++) {
6225     if (auto InputOrErr = import(S->getInputConstraintLiteral(I)))
6226       Constraints.push_back(*InputOrErr);
6227     else
6228       return InputOrErr.takeError();
6229   }
6230 
6231   SmallVector<Expr *, 4> Exprs(S->getNumOutputs() + S->getNumInputs() +
6232                                S->getNumLabels());
6233   if (Error Err = ImportContainerChecked(S->outputs(), Exprs))
6234     return std::move(Err);
6235 
6236   if (Error Err =
6237           ImportArrayChecked(S->inputs(), Exprs.begin() + S->getNumOutputs()))
6238     return std::move(Err);
6239 
6240   if (Error Err = ImportArrayChecked(
6241           S->labels(), Exprs.begin() + S->getNumOutputs() + S->getNumInputs()))
6242     return std::move(Err);
6243 
6244   ExpectedSLoc AsmLocOrErr = import(S->getAsmLoc());
6245   if (!AsmLocOrErr)
6246     return AsmLocOrErr.takeError();
6247   auto AsmStrOrErr = import(S->getAsmString());
6248   if (!AsmStrOrErr)
6249     return AsmStrOrErr.takeError();
6250   ExpectedSLoc RParenLocOrErr = import(S->getRParenLoc());
6251   if (!RParenLocOrErr)
6252     return RParenLocOrErr.takeError();
6253 
6254   return new (Importer.getToContext()) GCCAsmStmt(
6255       Importer.getToContext(),
6256       *AsmLocOrErr,
6257       S->isSimple(),
6258       S->isVolatile(),
6259       S->getNumOutputs(),
6260       S->getNumInputs(),
6261       Names.data(),
6262       Constraints.data(),
6263       Exprs.data(),
6264       *AsmStrOrErr,
6265       S->getNumClobbers(),
6266       Clobbers.data(),
6267       S->getNumLabels(),
6268       *RParenLocOrErr);
6269 }
6270 
6271 ExpectedStmt ASTNodeImporter::VisitDeclStmt(DeclStmt *S) {
6272 
6273   Error Err = Error::success();
6274   auto ToDG = importChecked(Err, S->getDeclGroup());
6275   auto ToBeginLoc = importChecked(Err, S->getBeginLoc());
6276   auto ToEndLoc = importChecked(Err, S->getEndLoc());
6277   if (Err)
6278     return std::move(Err);
6279   return new (Importer.getToContext()) DeclStmt(ToDG, ToBeginLoc, ToEndLoc);
6280 }
6281 
6282 ExpectedStmt ASTNodeImporter::VisitNullStmt(NullStmt *S) {
6283   ExpectedSLoc ToSemiLocOrErr = import(S->getSemiLoc());
6284   if (!ToSemiLocOrErr)
6285     return ToSemiLocOrErr.takeError();
6286   return new (Importer.getToContext()) NullStmt(
6287       *ToSemiLocOrErr, S->hasLeadingEmptyMacro());
6288 }
6289 
6290 ExpectedStmt ASTNodeImporter::VisitCompoundStmt(CompoundStmt *S) {
6291   SmallVector<Stmt *, 8> ToStmts(S->size());
6292 
6293   if (Error Err = ImportContainerChecked(S->body(), ToStmts))
6294     return std::move(Err);
6295 
6296   ExpectedSLoc ToLBracLocOrErr = import(S->getLBracLoc());
6297   if (!ToLBracLocOrErr)
6298     return ToLBracLocOrErr.takeError();
6299 
6300   ExpectedSLoc ToRBracLocOrErr = import(S->getRBracLoc());
6301   if (!ToRBracLocOrErr)
6302     return ToRBracLocOrErr.takeError();
6303 
6304   return CompoundStmt::Create(
6305       Importer.getToContext(), ToStmts,
6306       *ToLBracLocOrErr, *ToRBracLocOrErr);
6307 }
6308 
6309 ExpectedStmt ASTNodeImporter::VisitCaseStmt(CaseStmt *S) {
6310 
6311   Error Err = Error::success();
6312   auto ToLHS = importChecked(Err, S->getLHS());
6313   auto ToRHS = importChecked(Err, S->getRHS());
6314   auto ToSubStmt = importChecked(Err, S->getSubStmt());
6315   auto ToCaseLoc = importChecked(Err, S->getCaseLoc());
6316   auto ToEllipsisLoc = importChecked(Err, S->getEllipsisLoc());
6317   auto ToColonLoc = importChecked(Err, S->getColonLoc());
6318   if (Err)
6319     return std::move(Err);
6320 
6321   auto *ToStmt = CaseStmt::Create(Importer.getToContext(), ToLHS, ToRHS,
6322                                   ToCaseLoc, ToEllipsisLoc, ToColonLoc);
6323   ToStmt->setSubStmt(ToSubStmt);
6324 
6325   return ToStmt;
6326 }
6327 
6328 ExpectedStmt ASTNodeImporter::VisitDefaultStmt(DefaultStmt *S) {
6329 
6330   Error Err = Error::success();
6331   auto ToDefaultLoc = importChecked(Err, S->getDefaultLoc());
6332   auto ToColonLoc = importChecked(Err, S->getColonLoc());
6333   auto ToSubStmt = importChecked(Err, S->getSubStmt());
6334   if (Err)
6335     return std::move(Err);
6336 
6337   return new (Importer.getToContext()) DefaultStmt(
6338     ToDefaultLoc, ToColonLoc, ToSubStmt);
6339 }
6340 
6341 ExpectedStmt ASTNodeImporter::VisitLabelStmt(LabelStmt *S) {
6342 
6343   Error Err = Error::success();
6344   auto ToIdentLoc = importChecked(Err, S->getIdentLoc());
6345   auto ToLabelDecl = importChecked(Err, S->getDecl());
6346   auto ToSubStmt = importChecked(Err, S->getSubStmt());
6347   if (Err)
6348     return std::move(Err);
6349 
6350   return new (Importer.getToContext()) LabelStmt(
6351       ToIdentLoc, ToLabelDecl, ToSubStmt);
6352 }
6353 
6354 ExpectedStmt ASTNodeImporter::VisitAttributedStmt(AttributedStmt *S) {
6355   ExpectedSLoc ToAttrLocOrErr = import(S->getAttrLoc());
6356   if (!ToAttrLocOrErr)
6357     return ToAttrLocOrErr.takeError();
6358   ArrayRef<const Attr*> FromAttrs(S->getAttrs());
6359   SmallVector<const Attr *, 1> ToAttrs(FromAttrs.size());
6360   if (Error Err = ImportContainerChecked(FromAttrs, ToAttrs))
6361     return std::move(Err);
6362   ExpectedStmt ToSubStmtOrErr = import(S->getSubStmt());
6363   if (!ToSubStmtOrErr)
6364     return ToSubStmtOrErr.takeError();
6365 
6366   return AttributedStmt::Create(
6367       Importer.getToContext(), *ToAttrLocOrErr, ToAttrs, *ToSubStmtOrErr);
6368 }
6369 
6370 ExpectedStmt ASTNodeImporter::VisitIfStmt(IfStmt *S) {
6371 
6372   Error Err = Error::success();
6373   auto ToIfLoc = importChecked(Err, S->getIfLoc());
6374   auto ToInit = importChecked(Err, S->getInit());
6375   auto ToConditionVariable = importChecked(Err, S->getConditionVariable());
6376   auto ToCond = importChecked(Err, S->getCond());
6377   auto ToLParenLoc = importChecked(Err, S->getLParenLoc());
6378   auto ToRParenLoc = importChecked(Err, S->getRParenLoc());
6379   auto ToThen = importChecked(Err, S->getThen());
6380   auto ToElseLoc = importChecked(Err, S->getElseLoc());
6381   auto ToElse = importChecked(Err, S->getElse());
6382   if (Err)
6383     return std::move(Err);
6384 
6385   return IfStmt::Create(Importer.getToContext(), ToIfLoc, S->getStatementKind(),
6386                         ToInit, ToConditionVariable, ToCond, ToLParenLoc,
6387                         ToRParenLoc, ToThen, ToElseLoc, ToElse);
6388 }
6389 
6390 ExpectedStmt ASTNodeImporter::VisitSwitchStmt(SwitchStmt *S) {
6391 
6392   Error Err = Error::success();
6393   auto ToInit = importChecked(Err, S->getInit());
6394   auto ToConditionVariable = importChecked(Err, S->getConditionVariable());
6395   auto ToCond = importChecked(Err, S->getCond());
6396   auto ToLParenLoc = importChecked(Err, S->getLParenLoc());
6397   auto ToRParenLoc = importChecked(Err, S->getRParenLoc());
6398   auto ToBody = importChecked(Err, S->getBody());
6399   auto ToSwitchLoc = importChecked(Err, S->getSwitchLoc());
6400   if (Err)
6401     return std::move(Err);
6402 
6403   auto *ToStmt =
6404       SwitchStmt::Create(Importer.getToContext(), ToInit, ToConditionVariable,
6405                          ToCond, ToLParenLoc, ToRParenLoc);
6406   ToStmt->setBody(ToBody);
6407   ToStmt->setSwitchLoc(ToSwitchLoc);
6408 
6409   // Now we have to re-chain the cases.
6410   SwitchCase *LastChainedSwitchCase = nullptr;
6411   for (SwitchCase *SC = S->getSwitchCaseList(); SC != nullptr;
6412        SC = SC->getNextSwitchCase()) {
6413     Expected<SwitchCase *> ToSCOrErr = import(SC);
6414     if (!ToSCOrErr)
6415       return ToSCOrErr.takeError();
6416     if (LastChainedSwitchCase)
6417       LastChainedSwitchCase->setNextSwitchCase(*ToSCOrErr);
6418     else
6419       ToStmt->setSwitchCaseList(*ToSCOrErr);
6420     LastChainedSwitchCase = *ToSCOrErr;
6421   }
6422 
6423   return ToStmt;
6424 }
6425 
6426 ExpectedStmt ASTNodeImporter::VisitWhileStmt(WhileStmt *S) {
6427 
6428   Error Err = Error::success();
6429   auto ToConditionVariable = importChecked(Err, S->getConditionVariable());
6430   auto ToCond = importChecked(Err, S->getCond());
6431   auto ToBody = importChecked(Err, S->getBody());
6432   auto ToWhileLoc = importChecked(Err, S->getWhileLoc());
6433   auto ToLParenLoc = importChecked(Err, S->getLParenLoc());
6434   auto ToRParenLoc = importChecked(Err, S->getRParenLoc());
6435   if (Err)
6436     return std::move(Err);
6437 
6438   return WhileStmt::Create(Importer.getToContext(), ToConditionVariable, ToCond,
6439                            ToBody, ToWhileLoc, ToLParenLoc, ToRParenLoc);
6440 }
6441 
6442 ExpectedStmt ASTNodeImporter::VisitDoStmt(DoStmt *S) {
6443 
6444   Error Err = Error::success();
6445   auto ToBody = importChecked(Err, S->getBody());
6446   auto ToCond = importChecked(Err, S->getCond());
6447   auto ToDoLoc = importChecked(Err, S->getDoLoc());
6448   auto ToWhileLoc = importChecked(Err, S->getWhileLoc());
6449   auto ToRParenLoc = importChecked(Err, S->getRParenLoc());
6450   if (Err)
6451     return std::move(Err);
6452 
6453   return new (Importer.getToContext()) DoStmt(
6454       ToBody, ToCond, ToDoLoc, ToWhileLoc, ToRParenLoc);
6455 }
6456 
6457 ExpectedStmt ASTNodeImporter::VisitForStmt(ForStmt *S) {
6458 
6459   Error Err = Error::success();
6460   auto ToInit = importChecked(Err, S->getInit());
6461   auto ToCond = importChecked(Err, S->getCond());
6462   auto ToConditionVariable = importChecked(Err, S->getConditionVariable());
6463   auto ToInc = importChecked(Err, S->getInc());
6464   auto ToBody = importChecked(Err, S->getBody());
6465   auto ToForLoc = importChecked(Err, S->getForLoc());
6466   auto ToLParenLoc = importChecked(Err, S->getLParenLoc());
6467   auto ToRParenLoc = importChecked(Err, S->getRParenLoc());
6468   if (Err)
6469     return std::move(Err);
6470 
6471   return new (Importer.getToContext()) ForStmt(
6472       Importer.getToContext(),
6473       ToInit, ToCond, ToConditionVariable, ToInc, ToBody, ToForLoc, ToLParenLoc,
6474       ToRParenLoc);
6475 }
6476 
6477 ExpectedStmt ASTNodeImporter::VisitGotoStmt(GotoStmt *S) {
6478 
6479   Error Err = Error::success();
6480   auto ToLabel = importChecked(Err, S->getLabel());
6481   auto ToGotoLoc = importChecked(Err, S->getGotoLoc());
6482   auto ToLabelLoc = importChecked(Err, S->getLabelLoc());
6483   if (Err)
6484     return std::move(Err);
6485 
6486   return new (Importer.getToContext()) GotoStmt(
6487       ToLabel, ToGotoLoc, ToLabelLoc);
6488 }
6489 
6490 ExpectedStmt ASTNodeImporter::VisitIndirectGotoStmt(IndirectGotoStmt *S) {
6491 
6492   Error Err = Error::success();
6493   auto ToGotoLoc = importChecked(Err, S->getGotoLoc());
6494   auto ToStarLoc = importChecked(Err, S->getStarLoc());
6495   auto ToTarget = importChecked(Err, S->getTarget());
6496   if (Err)
6497     return std::move(Err);
6498 
6499   return new (Importer.getToContext()) IndirectGotoStmt(
6500       ToGotoLoc, ToStarLoc, ToTarget);
6501 }
6502 
6503 ExpectedStmt ASTNodeImporter::VisitContinueStmt(ContinueStmt *S) {
6504   ExpectedSLoc ToContinueLocOrErr = import(S->getContinueLoc());
6505   if (!ToContinueLocOrErr)
6506     return ToContinueLocOrErr.takeError();
6507   return new (Importer.getToContext()) ContinueStmt(*ToContinueLocOrErr);
6508 }
6509 
6510 ExpectedStmt ASTNodeImporter::VisitBreakStmt(BreakStmt *S) {
6511   auto ToBreakLocOrErr = import(S->getBreakLoc());
6512   if (!ToBreakLocOrErr)
6513     return ToBreakLocOrErr.takeError();
6514   return new (Importer.getToContext()) BreakStmt(*ToBreakLocOrErr);
6515 }
6516 
6517 ExpectedStmt ASTNodeImporter::VisitReturnStmt(ReturnStmt *S) {
6518 
6519   Error Err = Error::success();
6520   auto ToReturnLoc = importChecked(Err, S->getReturnLoc());
6521   auto ToRetValue = importChecked(Err, S->getRetValue());
6522   auto ToNRVOCandidate = importChecked(Err, S->getNRVOCandidate());
6523   if (Err)
6524     return std::move(Err);
6525 
6526   return ReturnStmt::Create(Importer.getToContext(), ToReturnLoc, ToRetValue,
6527                             ToNRVOCandidate);
6528 }
6529 
6530 ExpectedStmt ASTNodeImporter::VisitCXXCatchStmt(CXXCatchStmt *S) {
6531 
6532   Error Err = Error::success();
6533   auto ToCatchLoc = importChecked(Err, S->getCatchLoc());
6534   auto ToExceptionDecl = importChecked(Err, S->getExceptionDecl());
6535   auto ToHandlerBlock = importChecked(Err, S->getHandlerBlock());
6536   if (Err)
6537     return std::move(Err);
6538 
6539   return new (Importer.getToContext()) CXXCatchStmt (
6540       ToCatchLoc, ToExceptionDecl, ToHandlerBlock);
6541 }
6542 
6543 ExpectedStmt ASTNodeImporter::VisitCXXTryStmt(CXXTryStmt *S) {
6544   ExpectedSLoc ToTryLocOrErr = import(S->getTryLoc());
6545   if (!ToTryLocOrErr)
6546     return ToTryLocOrErr.takeError();
6547 
6548   ExpectedStmt ToTryBlockOrErr = import(S->getTryBlock());
6549   if (!ToTryBlockOrErr)
6550     return ToTryBlockOrErr.takeError();
6551 
6552   SmallVector<Stmt *, 1> ToHandlers(S->getNumHandlers());
6553   for (unsigned HI = 0, HE = S->getNumHandlers(); HI != HE; ++HI) {
6554     CXXCatchStmt *FromHandler = S->getHandler(HI);
6555     if (auto ToHandlerOrErr = import(FromHandler))
6556       ToHandlers[HI] = *ToHandlerOrErr;
6557     else
6558       return ToHandlerOrErr.takeError();
6559   }
6560 
6561   return CXXTryStmt::Create(
6562       Importer.getToContext(), *ToTryLocOrErr,*ToTryBlockOrErr, ToHandlers);
6563 }
6564 
6565 ExpectedStmt ASTNodeImporter::VisitCXXForRangeStmt(CXXForRangeStmt *S) {
6566 
6567   Error Err = Error::success();
6568   auto ToInit = importChecked(Err, S->getInit());
6569   auto ToRangeStmt = importChecked(Err, S->getRangeStmt());
6570   auto ToBeginStmt = importChecked(Err, S->getBeginStmt());
6571   auto ToEndStmt = importChecked(Err, S->getEndStmt());
6572   auto ToCond = importChecked(Err, S->getCond());
6573   auto ToInc = importChecked(Err, S->getInc());
6574   auto ToLoopVarStmt = importChecked(Err, S->getLoopVarStmt());
6575   auto ToBody = importChecked(Err, S->getBody());
6576   auto ToForLoc = importChecked(Err, S->getForLoc());
6577   auto ToCoawaitLoc = importChecked(Err, S->getCoawaitLoc());
6578   auto ToColonLoc = importChecked(Err, S->getColonLoc());
6579   auto ToRParenLoc = importChecked(Err, S->getRParenLoc());
6580   if (Err)
6581     return std::move(Err);
6582 
6583   return new (Importer.getToContext()) CXXForRangeStmt(
6584       ToInit, ToRangeStmt, ToBeginStmt, ToEndStmt, ToCond, ToInc, ToLoopVarStmt,
6585       ToBody, ToForLoc, ToCoawaitLoc, ToColonLoc, ToRParenLoc);
6586 }
6587 
6588 ExpectedStmt
6589 ASTNodeImporter::VisitObjCForCollectionStmt(ObjCForCollectionStmt *S) {
6590   Error Err = Error::success();
6591   auto ToElement = importChecked(Err, S->getElement());
6592   auto ToCollection = importChecked(Err, S->getCollection());
6593   auto ToBody = importChecked(Err, S->getBody());
6594   auto ToForLoc = importChecked(Err, S->getForLoc());
6595   auto ToRParenLoc = importChecked(Err, S->getRParenLoc());
6596   if (Err)
6597     return std::move(Err);
6598 
6599   return new (Importer.getToContext()) ObjCForCollectionStmt(ToElement,
6600                                                              ToCollection,
6601                                                              ToBody,
6602                                                              ToForLoc,
6603                                                              ToRParenLoc);
6604 }
6605 
6606 ExpectedStmt ASTNodeImporter::VisitObjCAtCatchStmt(ObjCAtCatchStmt *S) {
6607 
6608   Error Err = Error::success();
6609   auto ToAtCatchLoc = importChecked(Err, S->getAtCatchLoc());
6610   auto ToRParenLoc = importChecked(Err, S->getRParenLoc());
6611   auto ToCatchParamDecl = importChecked(Err, S->getCatchParamDecl());
6612   auto ToCatchBody = importChecked(Err, S->getCatchBody());
6613   if (Err)
6614     return std::move(Err);
6615 
6616   return new (Importer.getToContext()) ObjCAtCatchStmt (
6617       ToAtCatchLoc, ToRParenLoc, ToCatchParamDecl, ToCatchBody);
6618 }
6619 
6620 ExpectedStmt ASTNodeImporter::VisitObjCAtFinallyStmt(ObjCAtFinallyStmt *S) {
6621   ExpectedSLoc ToAtFinallyLocOrErr = import(S->getAtFinallyLoc());
6622   if (!ToAtFinallyLocOrErr)
6623     return ToAtFinallyLocOrErr.takeError();
6624   ExpectedStmt ToAtFinallyStmtOrErr = import(S->getFinallyBody());
6625   if (!ToAtFinallyStmtOrErr)
6626     return ToAtFinallyStmtOrErr.takeError();
6627   return new (Importer.getToContext()) ObjCAtFinallyStmt(*ToAtFinallyLocOrErr,
6628                                                          *ToAtFinallyStmtOrErr);
6629 }
6630 
6631 ExpectedStmt ASTNodeImporter::VisitObjCAtTryStmt(ObjCAtTryStmt *S) {
6632 
6633   Error Err = Error::success();
6634   auto ToAtTryLoc = importChecked(Err, S->getAtTryLoc());
6635   auto ToTryBody = importChecked(Err, S->getTryBody());
6636   auto ToFinallyStmt = importChecked(Err, S->getFinallyStmt());
6637   if (Err)
6638     return std::move(Err);
6639 
6640   SmallVector<Stmt *, 1> ToCatchStmts(S->getNumCatchStmts());
6641   for (unsigned CI = 0, CE = S->getNumCatchStmts(); CI != CE; ++CI) {
6642     ObjCAtCatchStmt *FromCatchStmt = S->getCatchStmt(CI);
6643     if (ExpectedStmt ToCatchStmtOrErr = import(FromCatchStmt))
6644       ToCatchStmts[CI] = *ToCatchStmtOrErr;
6645     else
6646       return ToCatchStmtOrErr.takeError();
6647   }
6648 
6649   return ObjCAtTryStmt::Create(Importer.getToContext(),
6650                                ToAtTryLoc, ToTryBody,
6651                                ToCatchStmts.begin(), ToCatchStmts.size(),
6652                                ToFinallyStmt);
6653 }
6654 
6655 ExpectedStmt
6656 ASTNodeImporter::VisitObjCAtSynchronizedStmt(ObjCAtSynchronizedStmt *S) {
6657 
6658   Error Err = Error::success();
6659   auto ToAtSynchronizedLoc = importChecked(Err, S->getAtSynchronizedLoc());
6660   auto ToSynchExpr = importChecked(Err, S->getSynchExpr());
6661   auto ToSynchBody = importChecked(Err, S->getSynchBody());
6662   if (Err)
6663     return std::move(Err);
6664 
6665   return new (Importer.getToContext()) ObjCAtSynchronizedStmt(
6666     ToAtSynchronizedLoc, ToSynchExpr, ToSynchBody);
6667 }
6668 
6669 ExpectedStmt ASTNodeImporter::VisitObjCAtThrowStmt(ObjCAtThrowStmt *S) {
6670   ExpectedSLoc ToThrowLocOrErr = import(S->getThrowLoc());
6671   if (!ToThrowLocOrErr)
6672     return ToThrowLocOrErr.takeError();
6673   ExpectedExpr ToThrowExprOrErr = import(S->getThrowExpr());
6674   if (!ToThrowExprOrErr)
6675     return ToThrowExprOrErr.takeError();
6676   return new (Importer.getToContext()) ObjCAtThrowStmt(
6677       *ToThrowLocOrErr, *ToThrowExprOrErr);
6678 }
6679 
6680 ExpectedStmt ASTNodeImporter::VisitObjCAutoreleasePoolStmt(
6681     ObjCAutoreleasePoolStmt *S) {
6682   ExpectedSLoc ToAtLocOrErr = import(S->getAtLoc());
6683   if (!ToAtLocOrErr)
6684     return ToAtLocOrErr.takeError();
6685   ExpectedStmt ToSubStmtOrErr = import(S->getSubStmt());
6686   if (!ToSubStmtOrErr)
6687     return ToSubStmtOrErr.takeError();
6688   return new (Importer.getToContext()) ObjCAutoreleasePoolStmt(*ToAtLocOrErr,
6689                                                                *ToSubStmtOrErr);
6690 }
6691 
6692 //----------------------------------------------------------------------------
6693 // Import Expressions
6694 //----------------------------------------------------------------------------
6695 ExpectedStmt ASTNodeImporter::VisitExpr(Expr *E) {
6696   Importer.FromDiag(E->getBeginLoc(), diag::err_unsupported_ast_node)
6697       << E->getStmtClassName();
6698   return make_error<ImportError>(ImportError::UnsupportedConstruct);
6699 }
6700 
6701 ExpectedStmt ASTNodeImporter::VisitSourceLocExpr(SourceLocExpr *E) {
6702   Error Err = Error::success();
6703   auto ToType = importChecked(Err, E->getType());
6704   auto BLoc = importChecked(Err, E->getBeginLoc());
6705   auto RParenLoc = importChecked(Err, E->getEndLoc());
6706   if (Err)
6707     return std::move(Err);
6708   auto ParentContextOrErr = Importer.ImportContext(E->getParentContext());
6709   if (!ParentContextOrErr)
6710     return ParentContextOrErr.takeError();
6711 
6712   return new (Importer.getToContext())
6713       SourceLocExpr(Importer.getToContext(), E->getIdentKind(), ToType, BLoc,
6714                     RParenLoc, *ParentContextOrErr);
6715 }
6716 
6717 ExpectedStmt ASTNodeImporter::VisitVAArgExpr(VAArgExpr *E) {
6718 
6719   Error Err = Error::success();
6720   auto ToBuiltinLoc = importChecked(Err, E->getBuiltinLoc());
6721   auto ToSubExpr = importChecked(Err, E->getSubExpr());
6722   auto ToWrittenTypeInfo = importChecked(Err, E->getWrittenTypeInfo());
6723   auto ToRParenLoc = importChecked(Err, E->getRParenLoc());
6724   auto ToType = importChecked(Err, E->getType());
6725   if (Err)
6726     return std::move(Err);
6727 
6728   return new (Importer.getToContext()) VAArgExpr(
6729       ToBuiltinLoc, ToSubExpr, ToWrittenTypeInfo, ToRParenLoc, ToType,
6730       E->isMicrosoftABI());
6731 }
6732 
6733 ExpectedStmt ASTNodeImporter::VisitChooseExpr(ChooseExpr *E) {
6734 
6735   Error Err = Error::success();
6736   auto ToCond = importChecked(Err, E->getCond());
6737   auto ToLHS = importChecked(Err, E->getLHS());
6738   auto ToRHS = importChecked(Err, E->getRHS());
6739   auto ToBuiltinLoc = importChecked(Err, E->getBuiltinLoc());
6740   auto ToRParenLoc = importChecked(Err, E->getRParenLoc());
6741   auto ToType = importChecked(Err, E->getType());
6742   if (Err)
6743     return std::move(Err);
6744 
6745   ExprValueKind VK = E->getValueKind();
6746   ExprObjectKind OK = E->getObjectKind();
6747 
6748   // The value of CondIsTrue only matters if the value is not
6749   // condition-dependent.
6750   bool CondIsTrue = !E->isConditionDependent() && E->isConditionTrue();
6751 
6752   return new (Importer.getToContext())
6753       ChooseExpr(ToBuiltinLoc, ToCond, ToLHS, ToRHS, ToType, VK, OK,
6754                  ToRParenLoc, CondIsTrue);
6755 }
6756 
6757 ExpectedStmt ASTNodeImporter::VisitShuffleVectorExpr(ShuffleVectorExpr *E) {
6758   Error Err = Error::success();
6759   auto ToRParenLoc = importChecked(Err, E->getRParenLoc());
6760   auto ToBeginLoc = importChecked(Err, E->getBeginLoc());
6761   auto ToType = importChecked(Err, E->getType());
6762   const unsigned NumSubExprs = E->getNumSubExprs();
6763 
6764   llvm::SmallVector<Expr *, 8> ToSubExprs;
6765   llvm::ArrayRef<Expr *> FromSubExprs(E->getSubExprs(), NumSubExprs);
6766   ToSubExprs.resize(NumSubExprs);
6767 
6768   if ((Err = ImportContainerChecked(FromSubExprs, ToSubExprs)))
6769     return std::move(Err);
6770 
6771   return new (Importer.getToContext()) ShuffleVectorExpr(
6772       Importer.getToContext(), ToSubExprs, ToType, ToBeginLoc, ToRParenLoc);
6773 }
6774 
6775 ExpectedStmt ASTNodeImporter::VisitGNUNullExpr(GNUNullExpr *E) {
6776   ExpectedType TypeOrErr = import(E->getType());
6777   if (!TypeOrErr)
6778     return TypeOrErr.takeError();
6779 
6780   ExpectedSLoc BeginLocOrErr = import(E->getBeginLoc());
6781   if (!BeginLocOrErr)
6782     return BeginLocOrErr.takeError();
6783 
6784   return new (Importer.getToContext()) GNUNullExpr(*TypeOrErr, *BeginLocOrErr);
6785 }
6786 
6787 ExpectedStmt
6788 ASTNodeImporter::VisitGenericSelectionExpr(GenericSelectionExpr *E) {
6789   Error Err = Error::success();
6790   auto ToGenericLoc = importChecked(Err, E->getGenericLoc());
6791   auto *ToControllingExpr = importChecked(Err, E->getControllingExpr());
6792   auto ToDefaultLoc = importChecked(Err, E->getDefaultLoc());
6793   auto ToRParenLoc = importChecked(Err, E->getRParenLoc());
6794   if (Err)
6795     return std::move(Err);
6796 
6797   ArrayRef<const TypeSourceInfo *> FromAssocTypes(E->getAssocTypeSourceInfos());
6798   SmallVector<TypeSourceInfo *, 1> ToAssocTypes(FromAssocTypes.size());
6799   if (Error Err = ImportContainerChecked(FromAssocTypes, ToAssocTypes))
6800     return std::move(Err);
6801 
6802   ArrayRef<const Expr *> FromAssocExprs(E->getAssocExprs());
6803   SmallVector<Expr *, 1> ToAssocExprs(FromAssocExprs.size());
6804   if (Error Err = ImportContainerChecked(FromAssocExprs, ToAssocExprs))
6805     return std::move(Err);
6806 
6807   const ASTContext &ToCtx = Importer.getToContext();
6808   if (E->isResultDependent()) {
6809     return GenericSelectionExpr::Create(
6810         ToCtx, ToGenericLoc, ToControllingExpr,
6811         llvm::makeArrayRef(ToAssocTypes), llvm::makeArrayRef(ToAssocExprs),
6812         ToDefaultLoc, ToRParenLoc, E->containsUnexpandedParameterPack());
6813   }
6814 
6815   return GenericSelectionExpr::Create(
6816       ToCtx, ToGenericLoc, ToControllingExpr, llvm::makeArrayRef(ToAssocTypes),
6817       llvm::makeArrayRef(ToAssocExprs), ToDefaultLoc, ToRParenLoc,
6818       E->containsUnexpandedParameterPack(), E->getResultIndex());
6819 }
6820 
6821 ExpectedStmt ASTNodeImporter::VisitPredefinedExpr(PredefinedExpr *E) {
6822 
6823   Error Err = Error::success();
6824   auto ToBeginLoc = importChecked(Err, E->getBeginLoc());
6825   auto ToType = importChecked(Err, E->getType());
6826   auto ToFunctionName = importChecked(Err, E->getFunctionName());
6827   if (Err)
6828     return std::move(Err);
6829 
6830   return PredefinedExpr::Create(Importer.getToContext(), ToBeginLoc, ToType,
6831                                 E->getIdentKind(), ToFunctionName);
6832 }
6833 
6834 ExpectedStmt ASTNodeImporter::VisitDeclRefExpr(DeclRefExpr *E) {
6835 
6836   Error Err = Error::success();
6837   auto ToQualifierLoc = importChecked(Err, E->getQualifierLoc());
6838   auto ToTemplateKeywordLoc = importChecked(Err, E->getTemplateKeywordLoc());
6839   auto ToDecl = importChecked(Err, E->getDecl());
6840   auto ToLocation = importChecked(Err, E->getLocation());
6841   auto ToType = importChecked(Err, E->getType());
6842   if (Err)
6843     return std::move(Err);
6844 
6845   NamedDecl *ToFoundD = nullptr;
6846   if (E->getDecl() != E->getFoundDecl()) {
6847     auto FoundDOrErr = import(E->getFoundDecl());
6848     if (!FoundDOrErr)
6849       return FoundDOrErr.takeError();
6850     ToFoundD = *FoundDOrErr;
6851   }
6852 
6853   TemplateArgumentListInfo ToTAInfo;
6854   TemplateArgumentListInfo *ToResInfo = nullptr;
6855   if (E->hasExplicitTemplateArgs()) {
6856     if (Error Err =
6857             ImportTemplateArgumentListInfo(E->getLAngleLoc(), E->getRAngleLoc(),
6858                                            E->template_arguments(), ToTAInfo))
6859       return std::move(Err);
6860     ToResInfo = &ToTAInfo;
6861   }
6862 
6863   auto *ToE = DeclRefExpr::Create(
6864       Importer.getToContext(), ToQualifierLoc, ToTemplateKeywordLoc, ToDecl,
6865       E->refersToEnclosingVariableOrCapture(), ToLocation, ToType,
6866       E->getValueKind(), ToFoundD, ToResInfo, E->isNonOdrUse());
6867   if (E->hadMultipleCandidates())
6868     ToE->setHadMultipleCandidates(true);
6869   return ToE;
6870 }
6871 
6872 ExpectedStmt ASTNodeImporter::VisitImplicitValueInitExpr(ImplicitValueInitExpr *E) {
6873   ExpectedType TypeOrErr = import(E->getType());
6874   if (!TypeOrErr)
6875     return TypeOrErr.takeError();
6876 
6877   return new (Importer.getToContext()) ImplicitValueInitExpr(*TypeOrErr);
6878 }
6879 
6880 ExpectedStmt ASTNodeImporter::VisitDesignatedInitExpr(DesignatedInitExpr *E) {
6881   ExpectedExpr ToInitOrErr = import(E->getInit());
6882   if (!ToInitOrErr)
6883     return ToInitOrErr.takeError();
6884 
6885   ExpectedSLoc ToEqualOrColonLocOrErr = import(E->getEqualOrColonLoc());
6886   if (!ToEqualOrColonLocOrErr)
6887     return ToEqualOrColonLocOrErr.takeError();
6888 
6889   SmallVector<Expr *, 4> ToIndexExprs(E->getNumSubExprs() - 1);
6890   // List elements from the second, the first is Init itself
6891   for (unsigned I = 1, N = E->getNumSubExprs(); I < N; I++) {
6892     if (ExpectedExpr ToArgOrErr = import(E->getSubExpr(I)))
6893       ToIndexExprs[I - 1] = *ToArgOrErr;
6894     else
6895       return ToArgOrErr.takeError();
6896   }
6897 
6898   SmallVector<Designator, 4> ToDesignators(E->size());
6899   if (Error Err = ImportContainerChecked(E->designators(), ToDesignators))
6900     return std::move(Err);
6901 
6902   return DesignatedInitExpr::Create(
6903         Importer.getToContext(), ToDesignators,
6904         ToIndexExprs, *ToEqualOrColonLocOrErr,
6905         E->usesGNUSyntax(), *ToInitOrErr);
6906 }
6907 
6908 ExpectedStmt
6909 ASTNodeImporter::VisitCXXNullPtrLiteralExpr(CXXNullPtrLiteralExpr *E) {
6910   ExpectedType ToTypeOrErr = import(E->getType());
6911   if (!ToTypeOrErr)
6912     return ToTypeOrErr.takeError();
6913 
6914   ExpectedSLoc ToLocationOrErr = import(E->getLocation());
6915   if (!ToLocationOrErr)
6916     return ToLocationOrErr.takeError();
6917 
6918   return new (Importer.getToContext()) CXXNullPtrLiteralExpr(
6919       *ToTypeOrErr, *ToLocationOrErr);
6920 }
6921 
6922 ExpectedStmt ASTNodeImporter::VisitIntegerLiteral(IntegerLiteral *E) {
6923   ExpectedType ToTypeOrErr = import(E->getType());
6924   if (!ToTypeOrErr)
6925     return ToTypeOrErr.takeError();
6926 
6927   ExpectedSLoc ToLocationOrErr = import(E->getLocation());
6928   if (!ToLocationOrErr)
6929     return ToLocationOrErr.takeError();
6930 
6931   return IntegerLiteral::Create(
6932       Importer.getToContext(), E->getValue(), *ToTypeOrErr, *ToLocationOrErr);
6933 }
6934 
6935 
6936 ExpectedStmt ASTNodeImporter::VisitFloatingLiteral(FloatingLiteral *E) {
6937   ExpectedType ToTypeOrErr = import(E->getType());
6938   if (!ToTypeOrErr)
6939     return ToTypeOrErr.takeError();
6940 
6941   ExpectedSLoc ToLocationOrErr = import(E->getLocation());
6942   if (!ToLocationOrErr)
6943     return ToLocationOrErr.takeError();
6944 
6945   return FloatingLiteral::Create(
6946       Importer.getToContext(), E->getValue(), E->isExact(),
6947       *ToTypeOrErr, *ToLocationOrErr);
6948 }
6949 
6950 ExpectedStmt ASTNodeImporter::VisitImaginaryLiteral(ImaginaryLiteral *E) {
6951   auto ToTypeOrErr = import(E->getType());
6952   if (!ToTypeOrErr)
6953     return ToTypeOrErr.takeError();
6954 
6955   ExpectedExpr ToSubExprOrErr = import(E->getSubExpr());
6956   if (!ToSubExprOrErr)
6957     return ToSubExprOrErr.takeError();
6958 
6959   return new (Importer.getToContext()) ImaginaryLiteral(
6960       *ToSubExprOrErr, *ToTypeOrErr);
6961 }
6962 
6963 ExpectedStmt ASTNodeImporter::VisitFixedPointLiteral(FixedPointLiteral *E) {
6964   auto ToTypeOrErr = import(E->getType());
6965   if (!ToTypeOrErr)
6966     return ToTypeOrErr.takeError();
6967 
6968   ExpectedSLoc ToLocationOrErr = import(E->getLocation());
6969   if (!ToLocationOrErr)
6970     return ToLocationOrErr.takeError();
6971 
6972   return new (Importer.getToContext()) FixedPointLiteral(
6973       Importer.getToContext(), E->getValue(), *ToTypeOrErr, *ToLocationOrErr,
6974       Importer.getToContext().getFixedPointScale(*ToTypeOrErr));
6975 }
6976 
6977 ExpectedStmt ASTNodeImporter::VisitCharacterLiteral(CharacterLiteral *E) {
6978   ExpectedType ToTypeOrErr = import(E->getType());
6979   if (!ToTypeOrErr)
6980     return ToTypeOrErr.takeError();
6981 
6982   ExpectedSLoc ToLocationOrErr = import(E->getLocation());
6983   if (!ToLocationOrErr)
6984     return ToLocationOrErr.takeError();
6985 
6986   return new (Importer.getToContext()) CharacterLiteral(
6987       E->getValue(), E->getKind(), *ToTypeOrErr, *ToLocationOrErr);
6988 }
6989 
6990 ExpectedStmt ASTNodeImporter::VisitStringLiteral(StringLiteral *E) {
6991   ExpectedType ToTypeOrErr = import(E->getType());
6992   if (!ToTypeOrErr)
6993     return ToTypeOrErr.takeError();
6994 
6995   SmallVector<SourceLocation, 4> ToLocations(E->getNumConcatenated());
6996   if (Error Err = ImportArrayChecked(
6997       E->tokloc_begin(), E->tokloc_end(), ToLocations.begin()))
6998     return std::move(Err);
6999 
7000   return StringLiteral::Create(
7001       Importer.getToContext(), E->getBytes(), E->getKind(), E->isPascal(),
7002       *ToTypeOrErr, ToLocations.data(), ToLocations.size());
7003 }
7004 
7005 ExpectedStmt ASTNodeImporter::VisitCompoundLiteralExpr(CompoundLiteralExpr *E) {
7006 
7007   Error Err = Error::success();
7008   auto ToLParenLoc = importChecked(Err, E->getLParenLoc());
7009   auto ToTypeSourceInfo = importChecked(Err, E->getTypeSourceInfo());
7010   auto ToType = importChecked(Err, E->getType());
7011   auto ToInitializer = importChecked(Err, E->getInitializer());
7012   if (Err)
7013     return std::move(Err);
7014 
7015   return new (Importer.getToContext()) CompoundLiteralExpr(
7016         ToLParenLoc, ToTypeSourceInfo, ToType, E->getValueKind(),
7017         ToInitializer, E->isFileScope());
7018 }
7019 
7020 ExpectedStmt ASTNodeImporter::VisitAtomicExpr(AtomicExpr *E) {
7021 
7022   Error Err = Error::success();
7023   auto ToBuiltinLoc = importChecked(Err, E->getBuiltinLoc());
7024   auto ToType = importChecked(Err, E->getType());
7025   auto ToRParenLoc = importChecked(Err, E->getRParenLoc());
7026   if (Err)
7027     return std::move(Err);
7028 
7029   SmallVector<Expr *, 6> ToExprs(E->getNumSubExprs());
7030   if (Error Err = ImportArrayChecked(
7031       E->getSubExprs(), E->getSubExprs() + E->getNumSubExprs(),
7032       ToExprs.begin()))
7033     return std::move(Err);
7034 
7035   return new (Importer.getToContext()) AtomicExpr(
7036 
7037       ToBuiltinLoc, ToExprs, ToType, E->getOp(), ToRParenLoc);
7038 }
7039 
7040 ExpectedStmt ASTNodeImporter::VisitAddrLabelExpr(AddrLabelExpr *E) {
7041   Error Err = Error::success();
7042   auto ToAmpAmpLoc = importChecked(Err, E->getAmpAmpLoc());
7043   auto ToLabelLoc = importChecked(Err, E->getLabelLoc());
7044   auto ToLabel = importChecked(Err, E->getLabel());
7045   auto ToType = importChecked(Err, E->getType());
7046   if (Err)
7047     return std::move(Err);
7048 
7049   return new (Importer.getToContext()) AddrLabelExpr(
7050       ToAmpAmpLoc, ToLabelLoc, ToLabel, ToType);
7051 }
7052 ExpectedStmt ASTNodeImporter::VisitConstantExpr(ConstantExpr *E) {
7053   Error Err = Error::success();
7054   auto ToSubExpr = importChecked(Err, E->getSubExpr());
7055   auto ToResult = importChecked(Err, E->getAPValueResult());
7056   if (Err)
7057     return std::move(Err);
7058 
7059   return ConstantExpr::Create(Importer.getToContext(), ToSubExpr, ToResult);
7060 }
7061 ExpectedStmt ASTNodeImporter::VisitParenExpr(ParenExpr *E) {
7062   Error Err = Error::success();
7063   auto ToLParen = importChecked(Err, E->getLParen());
7064   auto ToRParen = importChecked(Err, E->getRParen());
7065   auto ToSubExpr = importChecked(Err, E->getSubExpr());
7066   if (Err)
7067     return std::move(Err);
7068 
7069   return new (Importer.getToContext())
7070       ParenExpr(ToLParen, ToRParen, ToSubExpr);
7071 }
7072 
7073 ExpectedStmt ASTNodeImporter::VisitParenListExpr(ParenListExpr *E) {
7074   SmallVector<Expr *, 4> ToExprs(E->getNumExprs());
7075   if (Error Err = ImportContainerChecked(E->exprs(), ToExprs))
7076     return std::move(Err);
7077 
7078   ExpectedSLoc ToLParenLocOrErr = import(E->getLParenLoc());
7079   if (!ToLParenLocOrErr)
7080     return ToLParenLocOrErr.takeError();
7081 
7082   ExpectedSLoc ToRParenLocOrErr = import(E->getRParenLoc());
7083   if (!ToRParenLocOrErr)
7084     return ToRParenLocOrErr.takeError();
7085 
7086   return ParenListExpr::Create(Importer.getToContext(), *ToLParenLocOrErr,
7087                                ToExprs, *ToRParenLocOrErr);
7088 }
7089 
7090 ExpectedStmt ASTNodeImporter::VisitStmtExpr(StmtExpr *E) {
7091   Error Err = Error::success();
7092   auto ToSubStmt = importChecked(Err, E->getSubStmt());
7093   auto ToType = importChecked(Err, E->getType());
7094   auto ToLParenLoc = importChecked(Err, E->getLParenLoc());
7095   auto ToRParenLoc = importChecked(Err, E->getRParenLoc());
7096   if (Err)
7097     return std::move(Err);
7098 
7099   return new (Importer.getToContext())
7100       StmtExpr(ToSubStmt, ToType, ToLParenLoc, ToRParenLoc,
7101                E->getTemplateDepth());
7102 }
7103 
7104 ExpectedStmt ASTNodeImporter::VisitUnaryOperator(UnaryOperator *E) {
7105   Error Err = Error::success();
7106   auto ToSubExpr = importChecked(Err, E->getSubExpr());
7107   auto ToType = importChecked(Err, E->getType());
7108   auto ToOperatorLoc = importChecked(Err, E->getOperatorLoc());
7109   if (Err)
7110     return std::move(Err);
7111 
7112   return UnaryOperator::Create(
7113       Importer.getToContext(), ToSubExpr, E->getOpcode(), ToType,
7114       E->getValueKind(), E->getObjectKind(), ToOperatorLoc, E->canOverflow(),
7115       E->getFPOptionsOverride());
7116 }
7117 
7118 ExpectedStmt
7119 
7120 ASTNodeImporter::VisitUnaryExprOrTypeTraitExpr(UnaryExprOrTypeTraitExpr *E) {
7121   Error Err = Error::success();
7122   auto ToType = importChecked(Err, E->getType());
7123   auto ToOperatorLoc = importChecked(Err, E->getOperatorLoc());
7124   auto ToRParenLoc = importChecked(Err, E->getRParenLoc());
7125   if (Err)
7126     return std::move(Err);
7127 
7128   if (E->isArgumentType()) {
7129     Expected<TypeSourceInfo *> ToArgumentTypeInfoOrErr =
7130         import(E->getArgumentTypeInfo());
7131     if (!ToArgumentTypeInfoOrErr)
7132       return ToArgumentTypeInfoOrErr.takeError();
7133 
7134     return new (Importer.getToContext()) UnaryExprOrTypeTraitExpr(
7135         E->getKind(), *ToArgumentTypeInfoOrErr, ToType, ToOperatorLoc,
7136         ToRParenLoc);
7137   }
7138 
7139   ExpectedExpr ToArgumentExprOrErr = import(E->getArgumentExpr());
7140   if (!ToArgumentExprOrErr)
7141     return ToArgumentExprOrErr.takeError();
7142 
7143   return new (Importer.getToContext()) UnaryExprOrTypeTraitExpr(
7144       E->getKind(), *ToArgumentExprOrErr, ToType, ToOperatorLoc, ToRParenLoc);
7145 }
7146 
7147 ExpectedStmt ASTNodeImporter::VisitBinaryOperator(BinaryOperator *E) {
7148   Error Err = Error::success();
7149   auto ToLHS = importChecked(Err, E->getLHS());
7150   auto ToRHS = importChecked(Err, E->getRHS());
7151   auto ToType = importChecked(Err, E->getType());
7152   auto ToOperatorLoc = importChecked(Err, E->getOperatorLoc());
7153   if (Err)
7154     return std::move(Err);
7155 
7156   return BinaryOperator::Create(
7157       Importer.getToContext(), ToLHS, ToRHS, E->getOpcode(), ToType,
7158       E->getValueKind(), E->getObjectKind(), ToOperatorLoc,
7159       E->getFPFeatures(Importer.getFromContext().getLangOpts()));
7160 }
7161 
7162 ExpectedStmt ASTNodeImporter::VisitConditionalOperator(ConditionalOperator *E) {
7163   Error Err = Error::success();
7164   auto ToCond = importChecked(Err, E->getCond());
7165   auto ToQuestionLoc = importChecked(Err, E->getQuestionLoc());
7166   auto ToLHS = importChecked(Err, E->getLHS());
7167   auto ToColonLoc = importChecked(Err, E->getColonLoc());
7168   auto ToRHS = importChecked(Err, E->getRHS());
7169   auto ToType = importChecked(Err, E->getType());
7170   if (Err)
7171     return std::move(Err);
7172 
7173   return new (Importer.getToContext()) ConditionalOperator(
7174       ToCond, ToQuestionLoc, ToLHS, ToColonLoc, ToRHS, ToType,
7175       E->getValueKind(), E->getObjectKind());
7176 }
7177 
7178 ExpectedStmt
7179 ASTNodeImporter::VisitBinaryConditionalOperator(BinaryConditionalOperator *E) {
7180   Error Err = Error::success();
7181   auto ToCommon = importChecked(Err, E->getCommon());
7182   auto ToOpaqueValue = importChecked(Err, E->getOpaqueValue());
7183   auto ToCond = importChecked(Err, E->getCond());
7184   auto ToTrueExpr = importChecked(Err, E->getTrueExpr());
7185   auto ToFalseExpr = importChecked(Err, E->getFalseExpr());
7186   auto ToQuestionLoc = importChecked(Err, E->getQuestionLoc());
7187   auto ToColonLoc = importChecked(Err, E->getColonLoc());
7188   auto ToType = importChecked(Err, E->getType());
7189   if (Err)
7190     return std::move(Err);
7191 
7192   return new (Importer.getToContext()) BinaryConditionalOperator(
7193       ToCommon, ToOpaqueValue, ToCond, ToTrueExpr, ToFalseExpr,
7194       ToQuestionLoc, ToColonLoc, ToType, E->getValueKind(),
7195       E->getObjectKind());
7196 }
7197 
7198 ExpectedStmt ASTNodeImporter::VisitArrayTypeTraitExpr(ArrayTypeTraitExpr *E) {
7199   Error Err = Error::success();
7200   auto ToBeginLoc = importChecked(Err, E->getBeginLoc());
7201   auto ToQueriedTypeSourceInfo =
7202       importChecked(Err, E->getQueriedTypeSourceInfo());
7203   auto ToDimensionExpression = importChecked(Err, E->getDimensionExpression());
7204   auto ToEndLoc = importChecked(Err, E->getEndLoc());
7205   auto ToType = importChecked(Err, E->getType());
7206   if (Err)
7207     return std::move(Err);
7208 
7209   return new (Importer.getToContext()) ArrayTypeTraitExpr(
7210       ToBeginLoc, E->getTrait(), ToQueriedTypeSourceInfo, E->getValue(),
7211       ToDimensionExpression, ToEndLoc, ToType);
7212 }
7213 
7214 ExpectedStmt ASTNodeImporter::VisitExpressionTraitExpr(ExpressionTraitExpr *E) {
7215   Error Err = Error::success();
7216   auto ToBeginLoc = importChecked(Err, E->getBeginLoc());
7217   auto ToQueriedExpression = importChecked(Err, E->getQueriedExpression());
7218   auto ToEndLoc = importChecked(Err, E->getEndLoc());
7219   auto ToType = importChecked(Err, E->getType());
7220   if (Err)
7221     return std::move(Err);
7222 
7223   return new (Importer.getToContext()) ExpressionTraitExpr(
7224       ToBeginLoc, E->getTrait(), ToQueriedExpression, E->getValue(),
7225       ToEndLoc, ToType);
7226 }
7227 
7228 ExpectedStmt ASTNodeImporter::VisitOpaqueValueExpr(OpaqueValueExpr *E) {
7229   Error Err = Error::success();
7230   auto ToLocation = importChecked(Err, E->getLocation());
7231   auto ToType = importChecked(Err, E->getType());
7232   auto ToSourceExpr = importChecked(Err, E->getSourceExpr());
7233   if (Err)
7234     return std::move(Err);
7235 
7236   return new (Importer.getToContext()) OpaqueValueExpr(
7237       ToLocation, ToType, E->getValueKind(), E->getObjectKind(), ToSourceExpr);
7238 }
7239 
7240 ExpectedStmt ASTNodeImporter::VisitArraySubscriptExpr(ArraySubscriptExpr *E) {
7241   Error Err = Error::success();
7242   auto ToLHS = importChecked(Err, E->getLHS());
7243   auto ToRHS = importChecked(Err, E->getRHS());
7244   auto ToType = importChecked(Err, E->getType());
7245   auto ToRBracketLoc = importChecked(Err, E->getRBracketLoc());
7246   if (Err)
7247     return std::move(Err);
7248 
7249   return new (Importer.getToContext()) ArraySubscriptExpr(
7250       ToLHS, ToRHS, ToType, E->getValueKind(), E->getObjectKind(),
7251       ToRBracketLoc);
7252 }
7253 
7254 ExpectedStmt
7255 ASTNodeImporter::VisitCompoundAssignOperator(CompoundAssignOperator *E) {
7256   Error Err = Error::success();
7257   auto ToLHS = importChecked(Err, E->getLHS());
7258   auto ToRHS = importChecked(Err, E->getRHS());
7259   auto ToType = importChecked(Err, E->getType());
7260   auto ToComputationLHSType = importChecked(Err, E->getComputationLHSType());
7261   auto ToComputationResultType =
7262       importChecked(Err, E->getComputationResultType());
7263   auto ToOperatorLoc = importChecked(Err, E->getOperatorLoc());
7264   if (Err)
7265     return std::move(Err);
7266 
7267   return CompoundAssignOperator::Create(
7268       Importer.getToContext(), ToLHS, ToRHS, E->getOpcode(), ToType,
7269       E->getValueKind(), E->getObjectKind(), ToOperatorLoc,
7270       E->getFPFeatures(Importer.getFromContext().getLangOpts()),
7271       ToComputationLHSType, ToComputationResultType);
7272 }
7273 
7274 Expected<CXXCastPath>
7275 ASTNodeImporter::ImportCastPath(CastExpr *CE) {
7276   CXXCastPath Path;
7277   for (auto I = CE->path_begin(), E = CE->path_end(); I != E; ++I) {
7278     if (auto SpecOrErr = import(*I))
7279       Path.push_back(*SpecOrErr);
7280     else
7281       return SpecOrErr.takeError();
7282   }
7283   return Path;
7284 }
7285 
7286 ExpectedStmt ASTNodeImporter::VisitImplicitCastExpr(ImplicitCastExpr *E) {
7287   ExpectedType ToTypeOrErr = import(E->getType());
7288   if (!ToTypeOrErr)
7289     return ToTypeOrErr.takeError();
7290 
7291   ExpectedExpr ToSubExprOrErr = import(E->getSubExpr());
7292   if (!ToSubExprOrErr)
7293     return ToSubExprOrErr.takeError();
7294 
7295   Expected<CXXCastPath> ToBasePathOrErr = ImportCastPath(E);
7296   if (!ToBasePathOrErr)
7297     return ToBasePathOrErr.takeError();
7298 
7299   return ImplicitCastExpr::Create(
7300       Importer.getToContext(), *ToTypeOrErr, E->getCastKind(), *ToSubExprOrErr,
7301       &(*ToBasePathOrErr), E->getValueKind(), E->getFPFeatures());
7302 }
7303 
7304 ExpectedStmt ASTNodeImporter::VisitExplicitCastExpr(ExplicitCastExpr *E) {
7305   Error Err = Error::success();
7306   auto ToType = importChecked(Err, E->getType());
7307   auto ToSubExpr = importChecked(Err, E->getSubExpr());
7308   auto ToTypeInfoAsWritten = importChecked(Err, E->getTypeInfoAsWritten());
7309   if (Err)
7310     return std::move(Err);
7311 
7312   Expected<CXXCastPath> ToBasePathOrErr = ImportCastPath(E);
7313   if (!ToBasePathOrErr)
7314     return ToBasePathOrErr.takeError();
7315   CXXCastPath *ToBasePath = &(*ToBasePathOrErr);
7316 
7317   switch (E->getStmtClass()) {
7318   case Stmt::CStyleCastExprClass: {
7319     auto *CCE = cast<CStyleCastExpr>(E);
7320     ExpectedSLoc ToLParenLocOrErr = import(CCE->getLParenLoc());
7321     if (!ToLParenLocOrErr)
7322       return ToLParenLocOrErr.takeError();
7323     ExpectedSLoc ToRParenLocOrErr = import(CCE->getRParenLoc());
7324     if (!ToRParenLocOrErr)
7325       return ToRParenLocOrErr.takeError();
7326     return CStyleCastExpr::Create(
7327         Importer.getToContext(), ToType, E->getValueKind(), E->getCastKind(),
7328         ToSubExpr, ToBasePath, CCE->getFPFeatures(), ToTypeInfoAsWritten,
7329         *ToLParenLocOrErr, *ToRParenLocOrErr);
7330   }
7331 
7332   case Stmt::CXXFunctionalCastExprClass: {
7333     auto *FCE = cast<CXXFunctionalCastExpr>(E);
7334     ExpectedSLoc ToLParenLocOrErr = import(FCE->getLParenLoc());
7335     if (!ToLParenLocOrErr)
7336       return ToLParenLocOrErr.takeError();
7337     ExpectedSLoc ToRParenLocOrErr = import(FCE->getRParenLoc());
7338     if (!ToRParenLocOrErr)
7339       return ToRParenLocOrErr.takeError();
7340     return CXXFunctionalCastExpr::Create(
7341         Importer.getToContext(), ToType, E->getValueKind(), ToTypeInfoAsWritten,
7342         E->getCastKind(), ToSubExpr, ToBasePath, FCE->getFPFeatures(),
7343         *ToLParenLocOrErr, *ToRParenLocOrErr);
7344   }
7345 
7346   case Stmt::ObjCBridgedCastExprClass: {
7347     auto *OCE = cast<ObjCBridgedCastExpr>(E);
7348     ExpectedSLoc ToLParenLocOrErr = import(OCE->getLParenLoc());
7349     if (!ToLParenLocOrErr)
7350       return ToLParenLocOrErr.takeError();
7351     ExpectedSLoc ToBridgeKeywordLocOrErr = import(OCE->getBridgeKeywordLoc());
7352     if (!ToBridgeKeywordLocOrErr)
7353       return ToBridgeKeywordLocOrErr.takeError();
7354     return new (Importer.getToContext()) ObjCBridgedCastExpr(
7355         *ToLParenLocOrErr, OCE->getBridgeKind(), E->getCastKind(),
7356         *ToBridgeKeywordLocOrErr, ToTypeInfoAsWritten, ToSubExpr);
7357   }
7358   default:
7359     llvm_unreachable("Cast expression of unsupported type!");
7360     return make_error<ImportError>(ImportError::UnsupportedConstruct);
7361   }
7362 }
7363 
7364 ExpectedStmt ASTNodeImporter::VisitOffsetOfExpr(OffsetOfExpr *E) {
7365   SmallVector<OffsetOfNode, 4> ToNodes;
7366   for (int I = 0, N = E->getNumComponents(); I < N; ++I) {
7367     const OffsetOfNode &FromNode = E->getComponent(I);
7368 
7369     SourceLocation ToBeginLoc, ToEndLoc;
7370 
7371     if (FromNode.getKind() != OffsetOfNode::Base) {
7372       Error Err = Error::success();
7373       ToBeginLoc = importChecked(Err, FromNode.getBeginLoc());
7374       ToEndLoc = importChecked(Err, FromNode.getEndLoc());
7375       if (Err)
7376         return std::move(Err);
7377     }
7378 
7379     switch (FromNode.getKind()) {
7380     case OffsetOfNode::Array:
7381       ToNodes.push_back(
7382           OffsetOfNode(ToBeginLoc, FromNode.getArrayExprIndex(), ToEndLoc));
7383       break;
7384     case OffsetOfNode::Base: {
7385       auto ToBSOrErr = import(FromNode.getBase());
7386       if (!ToBSOrErr)
7387         return ToBSOrErr.takeError();
7388       ToNodes.push_back(OffsetOfNode(*ToBSOrErr));
7389       break;
7390     }
7391     case OffsetOfNode::Field: {
7392       auto ToFieldOrErr = import(FromNode.getField());
7393       if (!ToFieldOrErr)
7394         return ToFieldOrErr.takeError();
7395       ToNodes.push_back(OffsetOfNode(ToBeginLoc, *ToFieldOrErr, ToEndLoc));
7396       break;
7397     }
7398     case OffsetOfNode::Identifier: {
7399       IdentifierInfo *ToII = Importer.Import(FromNode.getFieldName());
7400       ToNodes.push_back(OffsetOfNode(ToBeginLoc, ToII, ToEndLoc));
7401       break;
7402     }
7403     }
7404   }
7405 
7406   SmallVector<Expr *, 4> ToExprs(E->getNumExpressions());
7407   for (int I = 0, N = E->getNumExpressions(); I < N; ++I) {
7408     ExpectedExpr ToIndexExprOrErr = import(E->getIndexExpr(I));
7409     if (!ToIndexExprOrErr)
7410       return ToIndexExprOrErr.takeError();
7411     ToExprs[I] = *ToIndexExprOrErr;
7412   }
7413 
7414   Error Err = Error::success();
7415   auto ToType = importChecked(Err, E->getType());
7416   auto ToTypeSourceInfo = importChecked(Err, E->getTypeSourceInfo());
7417   auto ToOperatorLoc = importChecked(Err, E->getOperatorLoc());
7418   auto ToRParenLoc = importChecked(Err, E->getRParenLoc());
7419   if (Err)
7420     return std::move(Err);
7421 
7422   return OffsetOfExpr::Create(
7423       Importer.getToContext(), ToType, ToOperatorLoc, ToTypeSourceInfo, ToNodes,
7424       ToExprs, ToRParenLoc);
7425 }
7426 
7427 ExpectedStmt ASTNodeImporter::VisitCXXNoexceptExpr(CXXNoexceptExpr *E) {
7428   Error Err = Error::success();
7429   auto ToType = importChecked(Err, E->getType());
7430   auto ToOperand = importChecked(Err, E->getOperand());
7431   auto ToBeginLoc = importChecked(Err, E->getBeginLoc());
7432   auto ToEndLoc = importChecked(Err, E->getEndLoc());
7433   if (Err)
7434     return std::move(Err);
7435 
7436   CanThrowResult ToCanThrow;
7437   if (E->isValueDependent())
7438     ToCanThrow = CT_Dependent;
7439   else
7440     ToCanThrow = E->getValue() ? CT_Can : CT_Cannot;
7441 
7442   return new (Importer.getToContext()) CXXNoexceptExpr(
7443       ToType, ToOperand, ToCanThrow, ToBeginLoc, ToEndLoc);
7444 }
7445 
7446 ExpectedStmt ASTNodeImporter::VisitCXXThrowExpr(CXXThrowExpr *E) {
7447   Error Err = Error::success();
7448   auto ToSubExpr = importChecked(Err, E->getSubExpr());
7449   auto ToType = importChecked(Err, E->getType());
7450   auto ToThrowLoc = importChecked(Err, E->getThrowLoc());
7451   if (Err)
7452     return std::move(Err);
7453 
7454   return new (Importer.getToContext()) CXXThrowExpr(
7455       ToSubExpr, ToType, ToThrowLoc, E->isThrownVariableInScope());
7456 }
7457 
7458 ExpectedStmt ASTNodeImporter::VisitCXXDefaultArgExpr(CXXDefaultArgExpr *E) {
7459   ExpectedSLoc ToUsedLocOrErr = import(E->getUsedLocation());
7460   if (!ToUsedLocOrErr)
7461     return ToUsedLocOrErr.takeError();
7462 
7463   auto ToParamOrErr = import(E->getParam());
7464   if (!ToParamOrErr)
7465     return ToParamOrErr.takeError();
7466 
7467   auto UsedContextOrErr = Importer.ImportContext(E->getUsedContext());
7468   if (!UsedContextOrErr)
7469     return UsedContextOrErr.takeError();
7470 
7471   // Import the default arg if it was not imported yet.
7472   // This is needed because it can happen that during the import of the
7473   // default expression (from VisitParmVarDecl) the same ParmVarDecl is
7474   // encountered here. The default argument for a ParmVarDecl is set in the
7475   // ParmVarDecl only after it is imported (set in VisitParmVarDecl if not here,
7476   // see VisitParmVarDecl).
7477   ParmVarDecl *ToParam = *ToParamOrErr;
7478   if (!ToParam->getDefaultArg()) {
7479     Optional<ParmVarDecl *> FromParam = Importer.getImportedFromDecl(ToParam);
7480     assert(FromParam && "ParmVarDecl was not imported?");
7481 
7482     if (Error Err = ImportDefaultArgOfParmVarDecl(*FromParam, ToParam))
7483       return std::move(Err);
7484   }
7485 
7486   return CXXDefaultArgExpr::Create(Importer.getToContext(), *ToUsedLocOrErr,
7487                                    *ToParamOrErr, *UsedContextOrErr);
7488 }
7489 
7490 ExpectedStmt
7491 ASTNodeImporter::VisitCXXScalarValueInitExpr(CXXScalarValueInitExpr *E) {
7492   Error Err = Error::success();
7493   auto ToType = importChecked(Err, E->getType());
7494   auto ToTypeSourceInfo = importChecked(Err, E->getTypeSourceInfo());
7495   auto ToRParenLoc = importChecked(Err, E->getRParenLoc());
7496   if (Err)
7497     return std::move(Err);
7498 
7499   return new (Importer.getToContext()) CXXScalarValueInitExpr(
7500       ToType, ToTypeSourceInfo, ToRParenLoc);
7501 }
7502 
7503 ExpectedStmt
7504 ASTNodeImporter::VisitCXXBindTemporaryExpr(CXXBindTemporaryExpr *E) {
7505   ExpectedExpr ToSubExprOrErr = import(E->getSubExpr());
7506   if (!ToSubExprOrErr)
7507     return ToSubExprOrErr.takeError();
7508 
7509   auto ToDtorOrErr = import(E->getTemporary()->getDestructor());
7510   if (!ToDtorOrErr)
7511     return ToDtorOrErr.takeError();
7512 
7513   ASTContext &ToCtx = Importer.getToContext();
7514   CXXTemporary *Temp = CXXTemporary::Create(ToCtx, *ToDtorOrErr);
7515   return CXXBindTemporaryExpr::Create(ToCtx, Temp, *ToSubExprOrErr);
7516 }
7517 
7518 ExpectedStmt
7519 
7520 ASTNodeImporter::VisitCXXTemporaryObjectExpr(CXXTemporaryObjectExpr *E) {
7521   Error Err = Error::success();
7522   auto ToConstructor = importChecked(Err, E->getConstructor());
7523   auto ToType = importChecked(Err, E->getType());
7524   auto ToTypeSourceInfo = importChecked(Err, E->getTypeSourceInfo());
7525   auto ToParenOrBraceRange = importChecked(Err, E->getParenOrBraceRange());
7526   if (Err)
7527     return std::move(Err);
7528 
7529   SmallVector<Expr *, 8> ToArgs(E->getNumArgs());
7530   if (Error Err = ImportContainerChecked(E->arguments(), ToArgs))
7531     return std::move(Err);
7532 
7533   return CXXTemporaryObjectExpr::Create(
7534       Importer.getToContext(), ToConstructor, ToType, ToTypeSourceInfo, ToArgs,
7535       ToParenOrBraceRange, E->hadMultipleCandidates(),
7536       E->isListInitialization(), E->isStdInitListInitialization(),
7537       E->requiresZeroInitialization());
7538 }
7539 
7540 ExpectedDecl ASTNodeImporter::VisitLifetimeExtendedTemporaryDecl(
7541     LifetimeExtendedTemporaryDecl *D) {
7542   DeclContext *DC, *LexicalDC;
7543   if (Error Err = ImportDeclContext(D, DC, LexicalDC))
7544     return std::move(Err);
7545 
7546   Error Err = Error::success();
7547   auto Temporary = importChecked(Err, D->getTemporaryExpr());
7548   auto ExtendingDecl = importChecked(Err, D->getExtendingDecl());
7549   if (Err)
7550     return std::move(Err);
7551   // FIXME: Should ManglingNumber get numbers associated with 'to' context?
7552 
7553   LifetimeExtendedTemporaryDecl *To;
7554   if (GetImportedOrCreateDecl(To, D, Temporary, ExtendingDecl,
7555                               D->getManglingNumber()))
7556     return To;
7557 
7558   To->setLexicalDeclContext(LexicalDC);
7559   LexicalDC->addDeclInternal(To);
7560   return To;
7561 }
7562 
7563 ExpectedStmt
7564 ASTNodeImporter::VisitMaterializeTemporaryExpr(MaterializeTemporaryExpr *E) {
7565   Error Err = Error::success();
7566   auto ToType = importChecked(Err, E->getType());
7567   Expr *ToTemporaryExpr = importChecked(
7568       Err, E->getLifetimeExtendedTemporaryDecl() ? nullptr : E->getSubExpr());
7569   auto ToMaterializedDecl =
7570       importChecked(Err, E->getLifetimeExtendedTemporaryDecl());
7571   if (Err)
7572     return std::move(Err);
7573 
7574   if (!ToTemporaryExpr)
7575     ToTemporaryExpr = cast<Expr>(ToMaterializedDecl->getTemporaryExpr());
7576 
7577   auto *ToMTE = new (Importer.getToContext()) MaterializeTemporaryExpr(
7578       ToType, ToTemporaryExpr, E->isBoundToLvalueReference(),
7579       ToMaterializedDecl);
7580 
7581   return ToMTE;
7582 }
7583 
7584 ExpectedStmt ASTNodeImporter::VisitPackExpansionExpr(PackExpansionExpr *E) {
7585   Error Err = Error::success();
7586   auto ToType = importChecked(Err, E->getType());
7587   auto ToPattern = importChecked(Err, E->getPattern());
7588   auto ToEllipsisLoc = importChecked(Err, E->getEllipsisLoc());
7589   if (Err)
7590     return std::move(Err);
7591 
7592   return new (Importer.getToContext()) PackExpansionExpr(
7593       ToType, ToPattern, ToEllipsisLoc, E->getNumExpansions());
7594 }
7595 
7596 ExpectedStmt ASTNodeImporter::VisitSizeOfPackExpr(SizeOfPackExpr *E) {
7597   Error Err = Error::success();
7598   auto ToOperatorLoc = importChecked(Err, E->getOperatorLoc());
7599   auto ToPack = importChecked(Err, E->getPack());
7600   auto ToPackLoc = importChecked(Err, E->getPackLoc());
7601   auto ToRParenLoc = importChecked(Err, E->getRParenLoc());
7602   if (Err)
7603     return std::move(Err);
7604 
7605   Optional<unsigned> Length;
7606   if (!E->isValueDependent())
7607     Length = E->getPackLength();
7608 
7609   SmallVector<TemplateArgument, 8> ToPartialArguments;
7610   if (E->isPartiallySubstituted()) {
7611     if (Error Err = ImportTemplateArguments(
7612         E->getPartialArguments().data(),
7613         E->getPartialArguments().size(),
7614         ToPartialArguments))
7615       return std::move(Err);
7616   }
7617 
7618   return SizeOfPackExpr::Create(
7619       Importer.getToContext(), ToOperatorLoc, ToPack, ToPackLoc, ToRParenLoc,
7620       Length, ToPartialArguments);
7621 }
7622 
7623 
7624 ExpectedStmt ASTNodeImporter::VisitCXXNewExpr(CXXNewExpr *E) {
7625   Error Err = Error::success();
7626   auto ToOperatorNew = importChecked(Err, E->getOperatorNew());
7627   auto ToOperatorDelete = importChecked(Err, E->getOperatorDelete());
7628   auto ToTypeIdParens = importChecked(Err, E->getTypeIdParens());
7629   auto ToArraySize = importChecked(Err, E->getArraySize());
7630   auto ToInitializer = importChecked(Err, E->getInitializer());
7631   auto ToType = importChecked(Err, E->getType());
7632   auto ToAllocatedTypeSourceInfo =
7633       importChecked(Err, E->getAllocatedTypeSourceInfo());
7634   auto ToSourceRange = importChecked(Err, E->getSourceRange());
7635   auto ToDirectInitRange = importChecked(Err, E->getDirectInitRange());
7636   if (Err)
7637     return std::move(Err);
7638 
7639   SmallVector<Expr *, 4> ToPlacementArgs(E->getNumPlacementArgs());
7640   if (Error Err =
7641       ImportContainerChecked(E->placement_arguments(), ToPlacementArgs))
7642     return std::move(Err);
7643 
7644   return CXXNewExpr::Create(
7645       Importer.getToContext(), E->isGlobalNew(), ToOperatorNew,
7646       ToOperatorDelete, E->passAlignment(), E->doesUsualArrayDeleteWantSize(),
7647       ToPlacementArgs, ToTypeIdParens, ToArraySize, E->getInitializationStyle(),
7648       ToInitializer, ToType, ToAllocatedTypeSourceInfo, ToSourceRange,
7649       ToDirectInitRange);
7650 }
7651 
7652 ExpectedStmt ASTNodeImporter::VisitCXXDeleteExpr(CXXDeleteExpr *E) {
7653   Error Err = Error::success();
7654   auto ToType = importChecked(Err, E->getType());
7655   auto ToOperatorDelete = importChecked(Err, E->getOperatorDelete());
7656   auto ToArgument = importChecked(Err, E->getArgument());
7657   auto ToBeginLoc = importChecked(Err, E->getBeginLoc());
7658   if (Err)
7659     return std::move(Err);
7660 
7661   return new (Importer.getToContext()) CXXDeleteExpr(
7662       ToType, E->isGlobalDelete(), E->isArrayForm(), E->isArrayFormAsWritten(),
7663       E->doesUsualArrayDeleteWantSize(), ToOperatorDelete, ToArgument,
7664       ToBeginLoc);
7665 }
7666 
7667 ExpectedStmt ASTNodeImporter::VisitCXXConstructExpr(CXXConstructExpr *E) {
7668   Error Err = Error::success();
7669   auto ToType = importChecked(Err, E->getType());
7670   auto ToLocation = importChecked(Err, E->getLocation());
7671   auto ToConstructor = importChecked(Err, E->getConstructor());
7672   auto ToParenOrBraceRange = importChecked(Err, E->getParenOrBraceRange());
7673   if (Err)
7674     return std::move(Err);
7675 
7676   SmallVector<Expr *, 6> ToArgs(E->getNumArgs());
7677   if (Error Err = ImportContainerChecked(E->arguments(), ToArgs))
7678     return std::move(Err);
7679 
7680   return CXXConstructExpr::Create(
7681       Importer.getToContext(), ToType, ToLocation, ToConstructor,
7682       E->isElidable(), ToArgs, E->hadMultipleCandidates(),
7683       E->isListInitialization(), E->isStdInitListInitialization(),
7684       E->requiresZeroInitialization(), E->getConstructionKind(),
7685       ToParenOrBraceRange);
7686 }
7687 
7688 ExpectedStmt ASTNodeImporter::VisitExprWithCleanups(ExprWithCleanups *E) {
7689   ExpectedExpr ToSubExprOrErr = import(E->getSubExpr());
7690   if (!ToSubExprOrErr)
7691     return ToSubExprOrErr.takeError();
7692 
7693   SmallVector<ExprWithCleanups::CleanupObject, 8> ToObjects(E->getNumObjects());
7694   if (Error Err = ImportContainerChecked(E->getObjects(), ToObjects))
7695     return std::move(Err);
7696 
7697   return ExprWithCleanups::Create(
7698       Importer.getToContext(), *ToSubExprOrErr, E->cleanupsHaveSideEffects(),
7699       ToObjects);
7700 }
7701 
7702 ExpectedStmt ASTNodeImporter::VisitCXXMemberCallExpr(CXXMemberCallExpr *E) {
7703   Error Err = Error::success();
7704   auto ToCallee = importChecked(Err, E->getCallee());
7705   auto ToType = importChecked(Err, E->getType());
7706   auto ToRParenLoc = importChecked(Err, E->getRParenLoc());
7707   if (Err)
7708     return std::move(Err);
7709 
7710   SmallVector<Expr *, 4> ToArgs(E->getNumArgs());
7711   if (Error Err = ImportContainerChecked(E->arguments(), ToArgs))
7712     return std::move(Err);
7713 
7714   return CXXMemberCallExpr::Create(Importer.getToContext(), ToCallee, ToArgs,
7715                                    ToType, E->getValueKind(), ToRParenLoc,
7716                                    E->getFPFeatures());
7717 }
7718 
7719 ExpectedStmt ASTNodeImporter::VisitCXXThisExpr(CXXThisExpr *E) {
7720   ExpectedType ToTypeOrErr = import(E->getType());
7721   if (!ToTypeOrErr)
7722     return ToTypeOrErr.takeError();
7723 
7724   ExpectedSLoc ToLocationOrErr = import(E->getLocation());
7725   if (!ToLocationOrErr)
7726     return ToLocationOrErr.takeError();
7727 
7728   return new (Importer.getToContext()) CXXThisExpr(
7729       *ToLocationOrErr, *ToTypeOrErr, E->isImplicit());
7730 }
7731 
7732 ExpectedStmt ASTNodeImporter::VisitCXXBoolLiteralExpr(CXXBoolLiteralExpr *E) {
7733   ExpectedType ToTypeOrErr = import(E->getType());
7734   if (!ToTypeOrErr)
7735     return ToTypeOrErr.takeError();
7736 
7737   ExpectedSLoc ToLocationOrErr = import(E->getLocation());
7738   if (!ToLocationOrErr)
7739     return ToLocationOrErr.takeError();
7740 
7741   return new (Importer.getToContext()) CXXBoolLiteralExpr(
7742       E->getValue(), *ToTypeOrErr, *ToLocationOrErr);
7743 }
7744 
7745 ExpectedStmt ASTNodeImporter::VisitMemberExpr(MemberExpr *E) {
7746   Error Err = Error::success();
7747   auto ToBase = importChecked(Err, E->getBase());
7748   auto ToOperatorLoc = importChecked(Err, E->getOperatorLoc());
7749   auto ToQualifierLoc = importChecked(Err, E->getQualifierLoc());
7750   auto ToTemplateKeywordLoc = importChecked(Err, E->getTemplateKeywordLoc());
7751   auto ToMemberDecl = importChecked(Err, E->getMemberDecl());
7752   auto ToType = importChecked(Err, E->getType());
7753   auto ToDecl = importChecked(Err, E->getFoundDecl().getDecl());
7754   auto ToName = importChecked(Err, E->getMemberNameInfo().getName());
7755   auto ToLoc = importChecked(Err, E->getMemberNameInfo().getLoc());
7756   if (Err)
7757     return std::move(Err);
7758 
7759   DeclAccessPair ToFoundDecl =
7760       DeclAccessPair::make(ToDecl, E->getFoundDecl().getAccess());
7761 
7762   DeclarationNameInfo ToMemberNameInfo(ToName, ToLoc);
7763 
7764   TemplateArgumentListInfo ToTAInfo, *ResInfo = nullptr;
7765   if (E->hasExplicitTemplateArgs()) {
7766     if (Error Err =
7767             ImportTemplateArgumentListInfo(E->getLAngleLoc(), E->getRAngleLoc(),
7768                                            E->template_arguments(), ToTAInfo))
7769       return std::move(Err);
7770     ResInfo = &ToTAInfo;
7771   }
7772 
7773   return MemberExpr::Create(Importer.getToContext(), ToBase, E->isArrow(),
7774                             ToOperatorLoc, ToQualifierLoc, ToTemplateKeywordLoc,
7775                             ToMemberDecl, ToFoundDecl, ToMemberNameInfo,
7776                             ResInfo, ToType, E->getValueKind(),
7777                             E->getObjectKind(), E->isNonOdrUse());
7778 }
7779 
7780 ExpectedStmt
7781 ASTNodeImporter::VisitCXXPseudoDestructorExpr(CXXPseudoDestructorExpr *E) {
7782   Error Err = Error::success();
7783   auto ToBase = importChecked(Err, E->getBase());
7784   auto ToOperatorLoc = importChecked(Err, E->getOperatorLoc());
7785   auto ToQualifierLoc = importChecked(Err, E->getQualifierLoc());
7786   auto ToScopeTypeInfo = importChecked(Err, E->getScopeTypeInfo());
7787   auto ToColonColonLoc = importChecked(Err, E->getColonColonLoc());
7788   auto ToTildeLoc = importChecked(Err, E->getTildeLoc());
7789   if (Err)
7790     return std::move(Err);
7791 
7792   PseudoDestructorTypeStorage Storage;
7793   if (IdentifierInfo *FromII = E->getDestroyedTypeIdentifier()) {
7794     IdentifierInfo *ToII = Importer.Import(FromII);
7795     ExpectedSLoc ToDestroyedTypeLocOrErr = import(E->getDestroyedTypeLoc());
7796     if (!ToDestroyedTypeLocOrErr)
7797       return ToDestroyedTypeLocOrErr.takeError();
7798     Storage = PseudoDestructorTypeStorage(ToII, *ToDestroyedTypeLocOrErr);
7799   } else {
7800     if (auto ToTIOrErr = import(E->getDestroyedTypeInfo()))
7801       Storage = PseudoDestructorTypeStorage(*ToTIOrErr);
7802     else
7803       return ToTIOrErr.takeError();
7804   }
7805 
7806   return new (Importer.getToContext()) CXXPseudoDestructorExpr(
7807       Importer.getToContext(), ToBase, E->isArrow(), ToOperatorLoc,
7808       ToQualifierLoc, ToScopeTypeInfo, ToColonColonLoc, ToTildeLoc, Storage);
7809 }
7810 
7811 ExpectedStmt ASTNodeImporter::VisitCXXDependentScopeMemberExpr(
7812     CXXDependentScopeMemberExpr *E) {
7813   Error Err = Error::success();
7814   auto ToType = importChecked(Err, E->getType());
7815   auto ToOperatorLoc = importChecked(Err, E->getOperatorLoc());
7816   auto ToQualifierLoc = importChecked(Err, E->getQualifierLoc());
7817   auto ToTemplateKeywordLoc = importChecked(Err, E->getTemplateKeywordLoc());
7818   auto ToFirstQualifierFoundInScope =
7819       importChecked(Err, E->getFirstQualifierFoundInScope());
7820   if (Err)
7821     return std::move(Err);
7822 
7823   Expr *ToBase = nullptr;
7824   if (!E->isImplicitAccess()) {
7825     if (ExpectedExpr ToBaseOrErr = import(E->getBase()))
7826       ToBase = *ToBaseOrErr;
7827     else
7828       return ToBaseOrErr.takeError();
7829   }
7830 
7831   TemplateArgumentListInfo ToTAInfo, *ResInfo = nullptr;
7832 
7833   if (E->hasExplicitTemplateArgs()) {
7834     if (Error Err =
7835             ImportTemplateArgumentListInfo(E->getLAngleLoc(), E->getRAngleLoc(),
7836                                            E->template_arguments(), ToTAInfo))
7837       return std::move(Err);
7838     ResInfo = &ToTAInfo;
7839   }
7840   auto ToMember = importChecked(Err, E->getMember());
7841   auto ToMemberLoc = importChecked(Err, E->getMemberLoc());
7842   if (Err)
7843     return std::move(Err);
7844   DeclarationNameInfo ToMemberNameInfo(ToMember, ToMemberLoc);
7845 
7846   // Import additional name location/type info.
7847   if (Error Err =
7848           ImportDeclarationNameLoc(E->getMemberNameInfo(), ToMemberNameInfo))
7849     return std::move(Err);
7850 
7851   return CXXDependentScopeMemberExpr::Create(
7852       Importer.getToContext(), ToBase, ToType, E->isArrow(), ToOperatorLoc,
7853       ToQualifierLoc, ToTemplateKeywordLoc, ToFirstQualifierFoundInScope,
7854       ToMemberNameInfo, ResInfo);
7855 }
7856 
7857 ExpectedStmt
7858 ASTNodeImporter::VisitDependentScopeDeclRefExpr(DependentScopeDeclRefExpr *E) {
7859   Error Err = Error::success();
7860   auto ToQualifierLoc = importChecked(Err, E->getQualifierLoc());
7861   auto ToTemplateKeywordLoc = importChecked(Err, E->getTemplateKeywordLoc());
7862   auto ToDeclName = importChecked(Err, E->getDeclName());
7863   auto ToNameLoc = importChecked(Err, E->getNameInfo().getLoc());
7864   auto ToLAngleLoc = importChecked(Err, E->getLAngleLoc());
7865   auto ToRAngleLoc = importChecked(Err, E->getRAngleLoc());
7866   if (Err)
7867     return std::move(Err);
7868 
7869   DeclarationNameInfo ToNameInfo(ToDeclName, ToNameLoc);
7870   if (Error Err = ImportDeclarationNameLoc(E->getNameInfo(), ToNameInfo))
7871     return std::move(Err);
7872 
7873   TemplateArgumentListInfo ToTAInfo(ToLAngleLoc, ToRAngleLoc);
7874   TemplateArgumentListInfo *ResInfo = nullptr;
7875   if (E->hasExplicitTemplateArgs()) {
7876     if (Error Err =
7877         ImportTemplateArgumentListInfo(E->template_arguments(), ToTAInfo))
7878       return std::move(Err);
7879     ResInfo = &ToTAInfo;
7880   }
7881 
7882   return DependentScopeDeclRefExpr::Create(
7883       Importer.getToContext(), ToQualifierLoc, ToTemplateKeywordLoc,
7884       ToNameInfo, ResInfo);
7885 }
7886 
7887 ExpectedStmt ASTNodeImporter::VisitCXXUnresolvedConstructExpr(
7888     CXXUnresolvedConstructExpr *E) {
7889   Error Err = Error::success();
7890   auto ToLParenLoc = importChecked(Err, E->getLParenLoc());
7891   auto ToRParenLoc = importChecked(Err, E->getRParenLoc());
7892   auto ToType = importChecked(Err, E->getType());
7893   auto ToTypeSourceInfo = importChecked(Err, E->getTypeSourceInfo());
7894   if (Err)
7895     return std::move(Err);
7896 
7897   SmallVector<Expr *, 8> ToArgs(E->getNumArgs());
7898   if (Error Err =
7899       ImportArrayChecked(E->arg_begin(), E->arg_end(), ToArgs.begin()))
7900     return std::move(Err);
7901 
7902   return CXXUnresolvedConstructExpr::Create(
7903       Importer.getToContext(), ToType, ToTypeSourceInfo, ToLParenLoc,
7904       llvm::makeArrayRef(ToArgs), ToRParenLoc);
7905 }
7906 
7907 ExpectedStmt
7908 ASTNodeImporter::VisitUnresolvedLookupExpr(UnresolvedLookupExpr *E) {
7909   Expected<CXXRecordDecl *> ToNamingClassOrErr = import(E->getNamingClass());
7910   if (!ToNamingClassOrErr)
7911     return ToNamingClassOrErr.takeError();
7912 
7913   auto ToQualifierLocOrErr = import(E->getQualifierLoc());
7914   if (!ToQualifierLocOrErr)
7915     return ToQualifierLocOrErr.takeError();
7916 
7917   Error Err = Error::success();
7918   auto ToName = importChecked(Err, E->getName());
7919   auto ToNameLoc = importChecked(Err, E->getNameLoc());
7920   if (Err)
7921     return std::move(Err);
7922   DeclarationNameInfo ToNameInfo(ToName, ToNameLoc);
7923 
7924   // Import additional name location/type info.
7925   if (Error Err = ImportDeclarationNameLoc(E->getNameInfo(), ToNameInfo))
7926     return std::move(Err);
7927 
7928   UnresolvedSet<8> ToDecls;
7929   for (auto *D : E->decls())
7930     if (auto ToDOrErr = import(D))
7931       ToDecls.addDecl(cast<NamedDecl>(*ToDOrErr));
7932     else
7933       return ToDOrErr.takeError();
7934 
7935   if (E->hasExplicitTemplateArgs()) {
7936     TemplateArgumentListInfo ToTAInfo;
7937     if (Error Err = ImportTemplateArgumentListInfo(
7938         E->getLAngleLoc(), E->getRAngleLoc(), E->template_arguments(),
7939         ToTAInfo))
7940       return std::move(Err);
7941 
7942     ExpectedSLoc ToTemplateKeywordLocOrErr = import(E->getTemplateKeywordLoc());
7943     if (!ToTemplateKeywordLocOrErr)
7944       return ToTemplateKeywordLocOrErr.takeError();
7945 
7946     return UnresolvedLookupExpr::Create(
7947         Importer.getToContext(), *ToNamingClassOrErr, *ToQualifierLocOrErr,
7948         *ToTemplateKeywordLocOrErr, ToNameInfo, E->requiresADL(), &ToTAInfo,
7949         ToDecls.begin(), ToDecls.end());
7950   }
7951 
7952   return UnresolvedLookupExpr::Create(
7953       Importer.getToContext(), *ToNamingClassOrErr, *ToQualifierLocOrErr,
7954       ToNameInfo, E->requiresADL(), E->isOverloaded(), ToDecls.begin(),
7955       ToDecls.end());
7956 }
7957 
7958 ExpectedStmt
7959 ASTNodeImporter::VisitUnresolvedMemberExpr(UnresolvedMemberExpr *E) {
7960   Error Err = Error::success();
7961   auto ToType = importChecked(Err, E->getType());
7962   auto ToOperatorLoc = importChecked(Err, E->getOperatorLoc());
7963   auto ToQualifierLoc = importChecked(Err, E->getQualifierLoc());
7964   auto ToTemplateKeywordLoc = importChecked(Err, E->getTemplateKeywordLoc());
7965   auto ToName = importChecked(Err, E->getName());
7966   auto ToNameLoc = importChecked(Err, E->getNameLoc());
7967   if (Err)
7968     return std::move(Err);
7969 
7970   DeclarationNameInfo ToNameInfo(ToName, ToNameLoc);
7971   // Import additional name location/type info.
7972   if (Error Err = ImportDeclarationNameLoc(E->getNameInfo(), ToNameInfo))
7973     return std::move(Err);
7974 
7975   UnresolvedSet<8> ToDecls;
7976   for (Decl *D : E->decls())
7977     if (auto ToDOrErr = import(D))
7978       ToDecls.addDecl(cast<NamedDecl>(*ToDOrErr));
7979     else
7980       return ToDOrErr.takeError();
7981 
7982   TemplateArgumentListInfo ToTAInfo;
7983   TemplateArgumentListInfo *ResInfo = nullptr;
7984   if (E->hasExplicitTemplateArgs()) {
7985     TemplateArgumentListInfo FromTAInfo;
7986     E->copyTemplateArgumentsInto(FromTAInfo);
7987     if (Error Err = ImportTemplateArgumentListInfo(FromTAInfo, ToTAInfo))
7988       return std::move(Err);
7989     ResInfo = &ToTAInfo;
7990   }
7991 
7992   Expr *ToBase = nullptr;
7993   if (!E->isImplicitAccess()) {
7994     if (ExpectedExpr ToBaseOrErr = import(E->getBase()))
7995       ToBase = *ToBaseOrErr;
7996     else
7997       return ToBaseOrErr.takeError();
7998   }
7999 
8000   return UnresolvedMemberExpr::Create(
8001       Importer.getToContext(), E->hasUnresolvedUsing(), ToBase, ToType,
8002       E->isArrow(), ToOperatorLoc, ToQualifierLoc, ToTemplateKeywordLoc,
8003       ToNameInfo, ResInfo, ToDecls.begin(), ToDecls.end());
8004 }
8005 
8006 ExpectedStmt ASTNodeImporter::VisitCallExpr(CallExpr *E) {
8007   Error Err = Error::success();
8008   auto ToCallee = importChecked(Err, E->getCallee());
8009   auto ToType = importChecked(Err, E->getType());
8010   auto ToRParenLoc = importChecked(Err, E->getRParenLoc());
8011   if (Err)
8012     return std::move(Err);
8013 
8014   unsigned NumArgs = E->getNumArgs();
8015   llvm::SmallVector<Expr *, 2> ToArgs(NumArgs);
8016   if (Error Err = ImportContainerChecked(E->arguments(), ToArgs))
8017      return std::move(Err);
8018 
8019   if (const auto *OCE = dyn_cast<CXXOperatorCallExpr>(E)) {
8020     return CXXOperatorCallExpr::Create(
8021         Importer.getToContext(), OCE->getOperator(), ToCallee, ToArgs, ToType,
8022         OCE->getValueKind(), ToRParenLoc, OCE->getFPFeatures(),
8023         OCE->getADLCallKind());
8024   }
8025 
8026   return CallExpr::Create(Importer.getToContext(), ToCallee, ToArgs, ToType,
8027                           E->getValueKind(), ToRParenLoc, E->getFPFeatures(),
8028                           /*MinNumArgs=*/0, E->getADLCallKind());
8029 }
8030 
8031 ExpectedStmt ASTNodeImporter::VisitLambdaExpr(LambdaExpr *E) {
8032   CXXRecordDecl *FromClass = E->getLambdaClass();
8033   auto ToClassOrErr = import(FromClass);
8034   if (!ToClassOrErr)
8035     return ToClassOrErr.takeError();
8036   CXXRecordDecl *ToClass = *ToClassOrErr;
8037 
8038   auto ToCallOpOrErr = import(E->getCallOperator());
8039   if (!ToCallOpOrErr)
8040     return ToCallOpOrErr.takeError();
8041 
8042   SmallVector<Expr *, 8> ToCaptureInits(E->capture_size());
8043   if (Error Err = ImportContainerChecked(E->capture_inits(), ToCaptureInits))
8044     return std::move(Err);
8045 
8046   Error Err = Error::success();
8047   auto ToIntroducerRange = importChecked(Err, E->getIntroducerRange());
8048   auto ToCaptureDefaultLoc = importChecked(Err, E->getCaptureDefaultLoc());
8049   auto ToEndLoc = importChecked(Err, E->getEndLoc());
8050   if (Err)
8051     return std::move(Err);
8052 
8053   return LambdaExpr::Create(Importer.getToContext(), ToClass, ToIntroducerRange,
8054                             E->getCaptureDefault(), ToCaptureDefaultLoc,
8055                             E->hasExplicitParameters(),
8056                             E->hasExplicitResultType(), ToCaptureInits,
8057                             ToEndLoc, E->containsUnexpandedParameterPack());
8058 }
8059 
8060 
8061 ExpectedStmt ASTNodeImporter::VisitInitListExpr(InitListExpr *E) {
8062   Error Err = Error::success();
8063   auto ToLBraceLoc = importChecked(Err, E->getLBraceLoc());
8064   auto ToRBraceLoc = importChecked(Err, E->getRBraceLoc());
8065   auto ToType = importChecked(Err, E->getType());
8066   if (Err)
8067     return std::move(Err);
8068 
8069   SmallVector<Expr *, 4> ToExprs(E->getNumInits());
8070   if (Error Err = ImportContainerChecked(E->inits(), ToExprs))
8071     return std::move(Err);
8072 
8073   ASTContext &ToCtx = Importer.getToContext();
8074   InitListExpr *To = new (ToCtx) InitListExpr(
8075       ToCtx, ToLBraceLoc, ToExprs, ToRBraceLoc);
8076   To->setType(ToType);
8077 
8078   if (E->hasArrayFiller()) {
8079     if (ExpectedExpr ToFillerOrErr = import(E->getArrayFiller()))
8080       To->setArrayFiller(*ToFillerOrErr);
8081     else
8082       return ToFillerOrErr.takeError();
8083   }
8084 
8085   if (FieldDecl *FromFD = E->getInitializedFieldInUnion()) {
8086     if (auto ToFDOrErr = import(FromFD))
8087       To->setInitializedFieldInUnion(*ToFDOrErr);
8088     else
8089       return ToFDOrErr.takeError();
8090   }
8091 
8092   if (InitListExpr *SyntForm = E->getSyntacticForm()) {
8093     if (auto ToSyntFormOrErr = import(SyntForm))
8094       To->setSyntacticForm(*ToSyntFormOrErr);
8095     else
8096       return ToSyntFormOrErr.takeError();
8097   }
8098 
8099   // Copy InitListExprBitfields, which are not handled in the ctor of
8100   // InitListExpr.
8101   To->sawArrayRangeDesignator(E->hadArrayRangeDesignator());
8102 
8103   return To;
8104 }
8105 
8106 ExpectedStmt ASTNodeImporter::VisitCXXStdInitializerListExpr(
8107     CXXStdInitializerListExpr *E) {
8108   ExpectedType ToTypeOrErr = import(E->getType());
8109   if (!ToTypeOrErr)
8110     return ToTypeOrErr.takeError();
8111 
8112   ExpectedExpr ToSubExprOrErr = import(E->getSubExpr());
8113   if (!ToSubExprOrErr)
8114     return ToSubExprOrErr.takeError();
8115 
8116   return new (Importer.getToContext()) CXXStdInitializerListExpr(
8117       *ToTypeOrErr, *ToSubExprOrErr);
8118 }
8119 
8120 ExpectedStmt ASTNodeImporter::VisitCXXInheritedCtorInitExpr(
8121     CXXInheritedCtorInitExpr *E) {
8122   Error Err = Error::success();
8123   auto ToLocation = importChecked(Err, E->getLocation());
8124   auto ToType = importChecked(Err, E->getType());
8125   auto ToConstructor = importChecked(Err, E->getConstructor());
8126   if (Err)
8127     return std::move(Err);
8128 
8129   return new (Importer.getToContext()) CXXInheritedCtorInitExpr(
8130       ToLocation, ToType, ToConstructor, E->constructsVBase(),
8131       E->inheritedFromVBase());
8132 }
8133 
8134 ExpectedStmt ASTNodeImporter::VisitArrayInitLoopExpr(ArrayInitLoopExpr *E) {
8135   Error Err = Error::success();
8136   auto ToType = importChecked(Err, E->getType());
8137   auto ToCommonExpr = importChecked(Err, E->getCommonExpr());
8138   auto ToSubExpr = importChecked(Err, E->getSubExpr());
8139   if (Err)
8140     return std::move(Err);
8141 
8142   return new (Importer.getToContext()) ArrayInitLoopExpr(
8143       ToType, ToCommonExpr, ToSubExpr);
8144 }
8145 
8146 ExpectedStmt ASTNodeImporter::VisitArrayInitIndexExpr(ArrayInitIndexExpr *E) {
8147   ExpectedType ToTypeOrErr = import(E->getType());
8148   if (!ToTypeOrErr)
8149     return ToTypeOrErr.takeError();
8150   return new (Importer.getToContext()) ArrayInitIndexExpr(*ToTypeOrErr);
8151 }
8152 
8153 ExpectedStmt ASTNodeImporter::VisitCXXDefaultInitExpr(CXXDefaultInitExpr *E) {
8154   ExpectedSLoc ToBeginLocOrErr = import(E->getBeginLoc());
8155   if (!ToBeginLocOrErr)
8156     return ToBeginLocOrErr.takeError();
8157 
8158   auto ToFieldOrErr = import(E->getField());
8159   if (!ToFieldOrErr)
8160     return ToFieldOrErr.takeError();
8161 
8162   auto UsedContextOrErr = Importer.ImportContext(E->getUsedContext());
8163   if (!UsedContextOrErr)
8164     return UsedContextOrErr.takeError();
8165 
8166   FieldDecl *ToField = *ToFieldOrErr;
8167   assert(ToField->hasInClassInitializer() &&
8168          "Field should have in-class initializer if there is a default init "
8169          "expression that uses it.");
8170   if (!ToField->getInClassInitializer()) {
8171     // The in-class initializer may be not yet set in "To" AST even if the
8172     // field is already there. This must be set here to make construction of
8173     // CXXDefaultInitExpr work.
8174     auto ToInClassInitializerOrErr =
8175         import(E->getField()->getInClassInitializer());
8176     if (!ToInClassInitializerOrErr)
8177       return ToInClassInitializerOrErr.takeError();
8178     ToField->setInClassInitializer(*ToInClassInitializerOrErr);
8179   }
8180 
8181   return CXXDefaultInitExpr::Create(Importer.getToContext(), *ToBeginLocOrErr,
8182                                     ToField, *UsedContextOrErr);
8183 }
8184 
8185 ExpectedStmt ASTNodeImporter::VisitCXXNamedCastExpr(CXXNamedCastExpr *E) {
8186   Error Err = Error::success();
8187   auto ToType = importChecked(Err, E->getType());
8188   auto ToSubExpr = importChecked(Err, E->getSubExpr());
8189   auto ToTypeInfoAsWritten = importChecked(Err, E->getTypeInfoAsWritten());
8190   auto ToOperatorLoc = importChecked(Err, E->getOperatorLoc());
8191   auto ToRParenLoc = importChecked(Err, E->getRParenLoc());
8192   auto ToAngleBrackets = importChecked(Err, E->getAngleBrackets());
8193   if (Err)
8194     return std::move(Err);
8195 
8196   ExprValueKind VK = E->getValueKind();
8197   CastKind CK = E->getCastKind();
8198   auto ToBasePathOrErr = ImportCastPath(E);
8199   if (!ToBasePathOrErr)
8200     return ToBasePathOrErr.takeError();
8201 
8202   if (auto CCE = dyn_cast<CXXStaticCastExpr>(E)) {
8203     return CXXStaticCastExpr::Create(
8204         Importer.getToContext(), ToType, VK, CK, ToSubExpr, &(*ToBasePathOrErr),
8205         ToTypeInfoAsWritten, CCE->getFPFeatures(), ToOperatorLoc, ToRParenLoc,
8206         ToAngleBrackets);
8207   } else if (isa<CXXDynamicCastExpr>(E)) {
8208     return CXXDynamicCastExpr::Create(
8209         Importer.getToContext(), ToType, VK, CK, ToSubExpr, &(*ToBasePathOrErr),
8210         ToTypeInfoAsWritten, ToOperatorLoc, ToRParenLoc, ToAngleBrackets);
8211   } else if (isa<CXXReinterpretCastExpr>(E)) {
8212     return CXXReinterpretCastExpr::Create(
8213         Importer.getToContext(), ToType, VK, CK, ToSubExpr, &(*ToBasePathOrErr),
8214         ToTypeInfoAsWritten, ToOperatorLoc, ToRParenLoc, ToAngleBrackets);
8215   } else if (isa<CXXConstCastExpr>(E)) {
8216     return CXXConstCastExpr::Create(
8217         Importer.getToContext(), ToType, VK, ToSubExpr, ToTypeInfoAsWritten,
8218         ToOperatorLoc, ToRParenLoc, ToAngleBrackets);
8219   } else {
8220     llvm_unreachable("Unknown cast type");
8221     return make_error<ImportError>();
8222   }
8223 }
8224 
8225 ExpectedStmt ASTNodeImporter::VisitSubstNonTypeTemplateParmExpr(
8226     SubstNonTypeTemplateParmExpr *E) {
8227   Error Err = Error::success();
8228   auto ToType = importChecked(Err, E->getType());
8229   auto ToExprLoc = importChecked(Err, E->getExprLoc());
8230   auto ToParameter = importChecked(Err, E->getParameter());
8231   auto ToReplacement = importChecked(Err, E->getReplacement());
8232   if (Err)
8233     return std::move(Err);
8234 
8235   return new (Importer.getToContext()) SubstNonTypeTemplateParmExpr(
8236       ToType, E->getValueKind(), ToExprLoc, ToParameter,
8237       E->isReferenceParameter(), ToReplacement);
8238 }
8239 
8240 ExpectedStmt ASTNodeImporter::VisitTypeTraitExpr(TypeTraitExpr *E) {
8241   Error Err = Error::success();
8242   auto ToType = importChecked(Err, E->getType());
8243   auto ToBeginLoc = importChecked(Err, E->getBeginLoc());
8244   auto ToEndLoc = importChecked(Err, E->getEndLoc());
8245   if (Err)
8246     return std::move(Err);
8247 
8248   SmallVector<TypeSourceInfo *, 4> ToArgs(E->getNumArgs());
8249   if (Error Err = ImportContainerChecked(E->getArgs(), ToArgs))
8250     return std::move(Err);
8251 
8252   // According to Sema::BuildTypeTrait(), if E is value-dependent,
8253   // Value is always false.
8254   bool ToValue = (E->isValueDependent() ? false : E->getValue());
8255 
8256   return TypeTraitExpr::Create(
8257       Importer.getToContext(), ToType, ToBeginLoc, E->getTrait(), ToArgs,
8258       ToEndLoc, ToValue);
8259 }
8260 
8261 ExpectedStmt ASTNodeImporter::VisitCXXTypeidExpr(CXXTypeidExpr *E) {
8262   ExpectedType ToTypeOrErr = import(E->getType());
8263   if (!ToTypeOrErr)
8264     return ToTypeOrErr.takeError();
8265 
8266   auto ToSourceRangeOrErr = import(E->getSourceRange());
8267   if (!ToSourceRangeOrErr)
8268     return ToSourceRangeOrErr.takeError();
8269 
8270   if (E->isTypeOperand()) {
8271     if (auto ToTSIOrErr = import(E->getTypeOperandSourceInfo()))
8272       return new (Importer.getToContext()) CXXTypeidExpr(
8273           *ToTypeOrErr, *ToTSIOrErr, *ToSourceRangeOrErr);
8274     else
8275       return ToTSIOrErr.takeError();
8276   }
8277 
8278   ExpectedExpr ToExprOperandOrErr = import(E->getExprOperand());
8279   if (!ToExprOperandOrErr)
8280     return ToExprOperandOrErr.takeError();
8281 
8282   return new (Importer.getToContext()) CXXTypeidExpr(
8283       *ToTypeOrErr, *ToExprOperandOrErr, *ToSourceRangeOrErr);
8284 }
8285 
8286 ExpectedStmt ASTNodeImporter::VisitCXXFoldExpr(CXXFoldExpr *E) {
8287   Error Err = Error::success();
8288 
8289   QualType ToType = importChecked(Err, E->getType());
8290   UnresolvedLookupExpr *ToCallee = importChecked(Err, E->getCallee());
8291   SourceLocation ToLParenLoc = importChecked(Err, E->getLParenLoc());
8292   Expr *ToLHS = importChecked(Err, E->getLHS());
8293   SourceLocation ToEllipsisLoc = importChecked(Err, E->getEllipsisLoc());
8294   Expr *ToRHS = importChecked(Err, E->getRHS());
8295   SourceLocation ToRParenLoc = importChecked(Err, E->getRParenLoc());
8296 
8297   if (Err)
8298     return std::move(Err);
8299 
8300   return new (Importer.getToContext())
8301       CXXFoldExpr(ToType, ToCallee, ToLParenLoc, ToLHS, E->getOperator(),
8302                   ToEllipsisLoc, ToRHS, ToRParenLoc, E->getNumExpansions());
8303 }
8304 
8305 Error ASTNodeImporter::ImportOverriddenMethods(CXXMethodDecl *ToMethod,
8306                                                CXXMethodDecl *FromMethod) {
8307   Error ImportErrors = Error::success();
8308   for (auto *FromOverriddenMethod : FromMethod->overridden_methods()) {
8309     if (auto ImportedOrErr = import(FromOverriddenMethod))
8310       ToMethod->getCanonicalDecl()->addOverriddenMethod(cast<CXXMethodDecl>(
8311           (*ImportedOrErr)->getCanonicalDecl()));
8312     else
8313       ImportErrors =
8314           joinErrors(std::move(ImportErrors), ImportedOrErr.takeError());
8315   }
8316   return ImportErrors;
8317 }
8318 
8319 ASTImporter::ASTImporter(ASTContext &ToContext, FileManager &ToFileManager,
8320                          ASTContext &FromContext, FileManager &FromFileManager,
8321                          bool MinimalImport,
8322                          std::shared_ptr<ASTImporterSharedState> SharedState)
8323     : SharedState(SharedState), ToContext(ToContext), FromContext(FromContext),
8324       ToFileManager(ToFileManager), FromFileManager(FromFileManager),
8325       Minimal(MinimalImport), ODRHandling(ODRHandlingType::Conservative) {
8326 
8327   // Create a default state without the lookup table: LLDB case.
8328   if (!SharedState) {
8329     this->SharedState = std::make_shared<ASTImporterSharedState>();
8330   }
8331 
8332   ImportedDecls[FromContext.getTranslationUnitDecl()] =
8333       ToContext.getTranslationUnitDecl();
8334 }
8335 
8336 ASTImporter::~ASTImporter() = default;
8337 
8338 Optional<unsigned> ASTImporter::getFieldIndex(Decl *F) {
8339   assert(F && (isa<FieldDecl>(*F) || isa<IndirectFieldDecl>(*F)) &&
8340       "Try to get field index for non-field.");
8341 
8342   auto *Owner = dyn_cast<RecordDecl>(F->getDeclContext());
8343   if (!Owner)
8344     return None;
8345 
8346   unsigned Index = 0;
8347   for (const auto *D : Owner->decls()) {
8348     if (D == F)
8349       return Index;
8350 
8351     if (isa<FieldDecl>(*D) || isa<IndirectFieldDecl>(*D))
8352       ++Index;
8353   }
8354 
8355   llvm_unreachable("Field was not found in its parent context.");
8356 
8357   return None;
8358 }
8359 
8360 ASTImporter::FoundDeclsTy
8361 ASTImporter::findDeclsInToCtx(DeclContext *DC, DeclarationName Name) {
8362   // We search in the redecl context because of transparent contexts.
8363   // E.g. a simple C language enum is a transparent context:
8364   //   enum E { A, B };
8365   // Now if we had a global variable in the TU
8366   //   int A;
8367   // then the enum constant 'A' and the variable 'A' violates ODR.
8368   // We can diagnose this only if we search in the redecl context.
8369   DeclContext *ReDC = DC->getRedeclContext();
8370   if (SharedState->getLookupTable()) {
8371     ASTImporterLookupTable::LookupResult LookupResult =
8372         SharedState->getLookupTable()->lookup(ReDC, Name);
8373     return FoundDeclsTy(LookupResult.begin(), LookupResult.end());
8374   } else {
8375     DeclContext::lookup_result NoloadLookupResult = ReDC->noload_lookup(Name);
8376     FoundDeclsTy Result(NoloadLookupResult.begin(), NoloadLookupResult.end());
8377     // We must search by the slow case of localUncachedLookup because that is
8378     // working even if there is no LookupPtr for the DC. We could use
8379     // DC::buildLookup() to create the LookupPtr, but that would load external
8380     // decls again, we must avoid that case.
8381     // Also, even if we had the LookupPtr, we must find Decls which are not
8382     // in the LookupPtr, so we need the slow case.
8383     // These cases are handled in ASTImporterLookupTable, but we cannot use
8384     // that with LLDB since that traverses through the AST which initiates the
8385     // load of external decls again via DC::decls().  And again, we must avoid
8386     // loading external decls during the import.
8387     if (Result.empty())
8388       ReDC->localUncachedLookup(Name, Result);
8389     return Result;
8390   }
8391 }
8392 
8393 void ASTImporter::AddToLookupTable(Decl *ToD) {
8394   SharedState->addDeclToLookup(ToD);
8395 }
8396 
8397 Expected<Decl *> ASTImporter::ImportImpl(Decl *FromD) {
8398   // Import the decl using ASTNodeImporter.
8399   ASTNodeImporter Importer(*this);
8400   return Importer.Visit(FromD);
8401 }
8402 
8403 void ASTImporter::RegisterImportedDecl(Decl *FromD, Decl *ToD) {
8404   MapImported(FromD, ToD);
8405 }
8406 
8407 llvm::Expected<ExprWithCleanups::CleanupObject>
8408 ASTImporter::Import(ExprWithCleanups::CleanupObject From) {
8409   if (auto *CLE = From.dyn_cast<CompoundLiteralExpr *>()) {
8410     if (Expected<Expr *> R = Import(CLE))
8411       return ExprWithCleanups::CleanupObject(cast<CompoundLiteralExpr>(*R));
8412   }
8413 
8414   // FIXME: Handle BlockDecl when we implement importing BlockExpr in
8415   //        ASTNodeImporter.
8416   return make_error<ImportError>(ImportError::UnsupportedConstruct);
8417 }
8418 
8419 ExpectedTypePtr ASTImporter::Import(const Type *FromT) {
8420   if (!FromT)
8421     return FromT;
8422 
8423   // Check whether we've already imported this type.
8424   llvm::DenseMap<const Type *, const Type *>::iterator Pos =
8425       ImportedTypes.find(FromT);
8426   if (Pos != ImportedTypes.end())
8427     return Pos->second;
8428 
8429   // Import the type.
8430   ASTNodeImporter Importer(*this);
8431   ExpectedType ToTOrErr = Importer.Visit(FromT);
8432   if (!ToTOrErr)
8433     return ToTOrErr.takeError();
8434 
8435   // Record the imported type.
8436   ImportedTypes[FromT] = ToTOrErr->getTypePtr();
8437 
8438   return ToTOrErr->getTypePtr();
8439 }
8440 
8441 Expected<QualType> ASTImporter::Import(QualType FromT) {
8442   if (FromT.isNull())
8443     return QualType{};
8444 
8445   ExpectedTypePtr ToTyOrErr = Import(FromT.getTypePtr());
8446   if (!ToTyOrErr)
8447     return ToTyOrErr.takeError();
8448 
8449   return ToContext.getQualifiedType(*ToTyOrErr, FromT.getLocalQualifiers());
8450 }
8451 
8452 Expected<TypeSourceInfo *> ASTImporter::Import(TypeSourceInfo *FromTSI) {
8453   if (!FromTSI)
8454     return FromTSI;
8455 
8456   // FIXME: For now we just create a "trivial" type source info based
8457   // on the type and a single location. Implement a real version of this.
8458   ExpectedType TOrErr = Import(FromTSI->getType());
8459   if (!TOrErr)
8460     return TOrErr.takeError();
8461   ExpectedSLoc BeginLocOrErr = Import(FromTSI->getTypeLoc().getBeginLoc());
8462   if (!BeginLocOrErr)
8463     return BeginLocOrErr.takeError();
8464 
8465   return ToContext.getTrivialTypeSourceInfo(*TOrErr, *BeginLocOrErr);
8466 }
8467 
8468 // To use this object, it should be created before the new attribute is created,
8469 // and destructed after it is created. The construction already performs the
8470 // import of the data.
8471 template <typename T> struct AttrArgImporter {
8472   AttrArgImporter(const AttrArgImporter<T> &) = delete;
8473   AttrArgImporter(AttrArgImporter<T> &&) = default;
8474   AttrArgImporter<T> &operator=(const AttrArgImporter<T> &) = delete;
8475   AttrArgImporter<T> &operator=(AttrArgImporter<T> &&) = default;
8476 
8477   AttrArgImporter(ASTNodeImporter &I, Error &Err, const T &From)
8478       : To(I.importChecked(Err, From)) {}
8479 
8480   const T &value() { return To; }
8481 
8482 private:
8483   T To;
8484 };
8485 
8486 // To use this object, it should be created before the new attribute is created,
8487 // and destructed after it is created. The construction already performs the
8488 // import of the data. The array data is accessible in a pointer form, this form
8489 // is used by the attribute classes. This object should be created once for the
8490 // array data to be imported (the array size is not imported, just copied).
8491 template <typename T> struct AttrArgArrayImporter {
8492   AttrArgArrayImporter(const AttrArgArrayImporter<T> &) = delete;
8493   AttrArgArrayImporter(AttrArgArrayImporter<T> &&) = default;
8494   AttrArgArrayImporter<T> &operator=(const AttrArgArrayImporter<T> &) = delete;
8495   AttrArgArrayImporter<T> &operator=(AttrArgArrayImporter<T> &&) = default;
8496 
8497   AttrArgArrayImporter(ASTNodeImporter &I, Error &Err,
8498                        const llvm::iterator_range<T *> &From,
8499                        unsigned ArraySize) {
8500     if (Err)
8501       return;
8502     To.reserve(ArraySize);
8503     Err = I.ImportContainerChecked(From, To);
8504   }
8505 
8506   T *value() { return To.data(); }
8507 
8508 private:
8509   llvm::SmallVector<T, 2> To;
8510 };
8511 
8512 class AttrImporter {
8513   Error Err{Error::success()};
8514   Attr *ToAttr = nullptr;
8515   ASTImporter &Importer;
8516   ASTNodeImporter NImporter;
8517 
8518 public:
8519   AttrImporter(ASTImporter &I) : Importer(I), NImporter(I) {}
8520 
8521   // Create an "importer" for an attribute parameter.
8522   // Result of the 'value()' of that object is to be passed to the function
8523   // 'importAttr', in the order that is expected by the attribute class.
8524   template <class T> AttrArgImporter<T> importArg(const T &From) {
8525     return AttrArgImporter<T>(NImporter, Err, From);
8526   }
8527 
8528   // Create an "importer" for an attribute parameter that has array type.
8529   // Result of the 'value()' of that object is to be passed to the function
8530   // 'importAttr', then the size of the array as next argument.
8531   template <typename T>
8532   AttrArgArrayImporter<T> importArrayArg(const llvm::iterator_range<T *> &From,
8533                                          unsigned ArraySize) {
8534     return AttrArgArrayImporter<T>(NImporter, Err, From, ArraySize);
8535   }
8536 
8537   // Create an attribute object with the specified arguments.
8538   // The 'FromAttr' is the original (not imported) attribute, the 'ImportedArg'
8539   // should be values that are passed to the 'Create' function of the attribute.
8540   // (The 'Create' with 'ASTContext' first and 'AttributeCommonInfo' last is
8541   // used here.) As much data is copied or imported from the old attribute
8542   // as possible. The passed arguments should be already imported.
8543   // If an import error happens, the internal error is set to it, and any
8544   // further import attempt is ignored.
8545   template <typename T, typename... Arg>
8546   void importAttr(const T *FromAttr, Arg &&...ImportedArg) {
8547     static_assert(std::is_base_of<Attr, T>::value,
8548                   "T should be subclass of Attr.");
8549     assert(!ToAttr && "Use one AttrImporter to import one Attribute object.");
8550 
8551     const IdentifierInfo *ToAttrName = Importer.Import(FromAttr->getAttrName());
8552     const IdentifierInfo *ToScopeName =
8553         Importer.Import(FromAttr->getScopeName());
8554     SourceRange ToAttrRange =
8555         NImporter.importChecked(Err, FromAttr->getRange());
8556     SourceLocation ToScopeLoc =
8557         NImporter.importChecked(Err, FromAttr->getScopeLoc());
8558 
8559     if (Err)
8560       return;
8561 
8562     AttributeCommonInfo ToI(ToAttrName, ToScopeName, ToAttrRange, ToScopeLoc,
8563                             FromAttr->getParsedKind(), FromAttr->getSyntax(),
8564                             FromAttr->getAttributeSpellingListIndex());
8565     // The "SemanticSpelling" is not needed to be passed to the constructor.
8566     // That value is recalculated from the SpellingListIndex if needed.
8567     ToAttr = T::Create(Importer.getToContext(),
8568                        std::forward<Arg>(ImportedArg)..., ToI);
8569 
8570     ToAttr->setImplicit(FromAttr->isImplicit());
8571     ToAttr->setPackExpansion(FromAttr->isPackExpansion());
8572     if (auto *ToInheritableAttr = dyn_cast<InheritableAttr>(ToAttr))
8573       ToInheritableAttr->setInherited(FromAttr->isInherited());
8574   }
8575 
8576   // Create a clone of the 'FromAttr' and import its source range only.
8577   // This causes objects with invalid references to be created if the 'FromAttr'
8578   // contains other data that should be imported.
8579   void cloneAttr(const Attr *FromAttr) {
8580     assert(!ToAttr && "Use one AttrImporter to import one Attribute object.");
8581 
8582     SourceRange ToRange = NImporter.importChecked(Err, FromAttr->getRange());
8583     if (Err)
8584       return;
8585 
8586     ToAttr = FromAttr->clone(Importer.getToContext());
8587     ToAttr->setRange(ToRange);
8588   }
8589 
8590   // Get the result of the previous import attempt (can be used only once).
8591   llvm::Expected<Attr *> getResult() && {
8592     if (Err)
8593       return std::move(Err);
8594     assert(ToAttr && "Attribute should be created.");
8595     return ToAttr;
8596   }
8597 };
8598 
8599 Expected<Attr *> ASTImporter::Import(const Attr *FromAttr) {
8600   AttrImporter AI(*this);
8601 
8602   // FIXME: Is there some kind of AttrVisitor to use here?
8603   switch (FromAttr->getKind()) {
8604   case attr::Aligned: {
8605     auto *From = cast<AlignedAttr>(FromAttr);
8606     if (From->isAlignmentExpr())
8607       AI.importAttr(From, true, AI.importArg(From->getAlignmentExpr()).value());
8608     else
8609       AI.importAttr(From, false,
8610                     AI.importArg(From->getAlignmentType()).value());
8611     break;
8612   }
8613 
8614   case attr::Format: {
8615     const auto *From = cast<FormatAttr>(FromAttr);
8616     AI.importAttr(From, Import(From->getType()), From->getFormatIdx(),
8617                   From->getFirstArg());
8618     break;
8619   }
8620 
8621   case attr::EnableIf: {
8622     const auto *From = cast<EnableIfAttr>(FromAttr);
8623     AI.importAttr(From, AI.importArg(From->getCond()).value(),
8624                   From->getMessage());
8625     break;
8626   }
8627 
8628   case attr::AssertCapability: {
8629     const auto *From = cast<AssertCapabilityAttr>(FromAttr);
8630     AI.importAttr(From,
8631                   AI.importArrayArg(From->args(), From->args_size()).value(),
8632                   From->args_size());
8633     break;
8634   }
8635   case attr::AcquireCapability: {
8636     const auto *From = cast<AcquireCapabilityAttr>(FromAttr);
8637     AI.importAttr(From,
8638                   AI.importArrayArg(From->args(), From->args_size()).value(),
8639                   From->args_size());
8640     break;
8641   }
8642   case attr::TryAcquireCapability: {
8643     const auto *From = cast<TryAcquireCapabilityAttr>(FromAttr);
8644     AI.importAttr(From, AI.importArg(From->getSuccessValue()).value(),
8645                   AI.importArrayArg(From->args(), From->args_size()).value(),
8646                   From->args_size());
8647     break;
8648   }
8649   case attr::ReleaseCapability: {
8650     const auto *From = cast<ReleaseCapabilityAttr>(FromAttr);
8651     AI.importAttr(From,
8652                   AI.importArrayArg(From->args(), From->args_size()).value(),
8653                   From->args_size());
8654     break;
8655   }
8656   case attr::RequiresCapability: {
8657     const auto *From = cast<RequiresCapabilityAttr>(FromAttr);
8658     AI.importAttr(From,
8659                   AI.importArrayArg(From->args(), From->args_size()).value(),
8660                   From->args_size());
8661     break;
8662   }
8663   case attr::GuardedBy: {
8664     const auto *From = cast<GuardedByAttr>(FromAttr);
8665     AI.importAttr(From, AI.importArg(From->getArg()).value());
8666     break;
8667   }
8668   case attr::PtGuardedBy: {
8669     const auto *From = cast<PtGuardedByAttr>(FromAttr);
8670     AI.importAttr(From, AI.importArg(From->getArg()).value());
8671     break;
8672   }
8673   case attr::AcquiredAfter: {
8674     const auto *From = cast<AcquiredAfterAttr>(FromAttr);
8675     AI.importAttr(From,
8676                   AI.importArrayArg(From->args(), From->args_size()).value(),
8677                   From->args_size());
8678     break;
8679   }
8680   case attr::AcquiredBefore: {
8681     const auto *From = cast<AcquiredBeforeAttr>(FromAttr);
8682     AI.importAttr(From,
8683                   AI.importArrayArg(From->args(), From->args_size()).value(),
8684                   From->args_size());
8685     break;
8686   }
8687   case attr::AssertExclusiveLock: {
8688     const auto *From = cast<AssertExclusiveLockAttr>(FromAttr);
8689     AI.importAttr(From,
8690                   AI.importArrayArg(From->args(), From->args_size()).value(),
8691                   From->args_size());
8692     break;
8693   }
8694   case attr::AssertSharedLock: {
8695     const auto *From = cast<AssertSharedLockAttr>(FromAttr);
8696     AI.importAttr(From,
8697                   AI.importArrayArg(From->args(), From->args_size()).value(),
8698                   From->args_size());
8699     break;
8700   }
8701   case attr::ExclusiveTrylockFunction: {
8702     const auto *From = cast<ExclusiveTrylockFunctionAttr>(FromAttr);
8703     AI.importAttr(From, AI.importArg(From->getSuccessValue()).value(),
8704                   AI.importArrayArg(From->args(), From->args_size()).value(),
8705                   From->args_size());
8706     break;
8707   }
8708   case attr::SharedTrylockFunction: {
8709     const auto *From = cast<SharedTrylockFunctionAttr>(FromAttr);
8710     AI.importAttr(From, AI.importArg(From->getSuccessValue()).value(),
8711                   AI.importArrayArg(From->args(), From->args_size()).value(),
8712                   From->args_size());
8713     break;
8714   }
8715   case attr::LockReturned: {
8716     const auto *From = cast<LockReturnedAttr>(FromAttr);
8717     AI.importAttr(From, AI.importArg(From->getArg()).value());
8718     break;
8719   }
8720   case attr::LocksExcluded: {
8721     const auto *From = cast<LocksExcludedAttr>(FromAttr);
8722     AI.importAttr(From,
8723                   AI.importArrayArg(From->args(), From->args_size()).value(),
8724                   From->args_size());
8725     break;
8726   }
8727 
8728   default: {
8729     // The default branch works for attributes that have no arguments to import.
8730     // FIXME: Handle every attribute type that has arguments of type to import
8731     // (most often Expr* or Decl* or type) in the switch above.
8732     AI.cloneAttr(FromAttr);
8733     break;
8734   }
8735   }
8736 
8737   return std::move(AI).getResult();
8738 }
8739 
8740 Decl *ASTImporter::GetAlreadyImportedOrNull(const Decl *FromD) const {
8741   auto Pos = ImportedDecls.find(FromD);
8742   if (Pos != ImportedDecls.end())
8743     return Pos->second;
8744   else
8745     return nullptr;
8746 }
8747 
8748 TranslationUnitDecl *ASTImporter::GetFromTU(Decl *ToD) {
8749   auto FromDPos = ImportedFromDecls.find(ToD);
8750   if (FromDPos == ImportedFromDecls.end())
8751     return nullptr;
8752   return FromDPos->second->getTranslationUnitDecl();
8753 }
8754 
8755 Expected<Decl *> ASTImporter::Import(Decl *FromD) {
8756   if (!FromD)
8757     return nullptr;
8758 
8759   // Push FromD to the stack, and remove that when we return.
8760   ImportPath.push(FromD);
8761   auto ImportPathBuilder =
8762       llvm::make_scope_exit([this]() { ImportPath.pop(); });
8763 
8764   // Check whether there was a previous failed import.
8765   // If yes return the existing error.
8766   if (auto Error = getImportDeclErrorIfAny(FromD))
8767     return make_error<ImportError>(*Error);
8768 
8769   // Check whether we've already imported this declaration.
8770   Decl *ToD = GetAlreadyImportedOrNull(FromD);
8771   if (ToD) {
8772     // Already imported (possibly from another TU) and with an error.
8773     if (auto Error = SharedState->getImportDeclErrorIfAny(ToD)) {
8774       setImportDeclError(FromD, *Error);
8775       return make_error<ImportError>(*Error);
8776     }
8777 
8778     // If FromD has some updated flags after last import, apply it.
8779     updateFlags(FromD, ToD);
8780     // If we encounter a cycle during an import then we save the relevant part
8781     // of the import path associated to the Decl.
8782     if (ImportPath.hasCycleAtBack())
8783       SavedImportPaths[FromD].push_back(ImportPath.copyCycleAtBack());
8784     return ToD;
8785   }
8786 
8787   // Import the declaration.
8788   ExpectedDecl ToDOrErr = ImportImpl(FromD);
8789   if (!ToDOrErr) {
8790     // Failed to import.
8791 
8792     auto Pos = ImportedDecls.find(FromD);
8793     if (Pos != ImportedDecls.end()) {
8794       // Import failed after the object was created.
8795       // Remove all references to it.
8796       auto *ToD = Pos->second;
8797       ImportedDecls.erase(Pos);
8798 
8799       // ImportedDecls and ImportedFromDecls are not symmetric.  It may happen
8800       // (e.g. with namespaces) that several decls from the 'from' context are
8801       // mapped to the same decl in the 'to' context.  If we removed entries
8802       // from the LookupTable here then we may end up removing them multiple
8803       // times.
8804 
8805       // The Lookuptable contains decls only which are in the 'to' context.
8806       // Remove from the Lookuptable only if it is *imported* into the 'to'
8807       // context (and do not remove it if it was added during the initial
8808       // traverse of the 'to' context).
8809       auto PosF = ImportedFromDecls.find(ToD);
8810       if (PosF != ImportedFromDecls.end()) {
8811         // In the case of TypedefNameDecl we create the Decl first and only
8812         // then we import and set its DeclContext. So, the DC might not be set
8813         // when we reach here.
8814         if (ToD->getDeclContext())
8815           SharedState->removeDeclFromLookup(ToD);
8816         ImportedFromDecls.erase(PosF);
8817       }
8818 
8819       // FIXME: AST may contain remaining references to the failed object.
8820       // However, the ImportDeclErrors in the shared state contains all the
8821       // failed objects together with their error.
8822     }
8823 
8824     // Error encountered for the first time.
8825     // After takeError the error is not usable any more in ToDOrErr.
8826     // Get a copy of the error object (any more simple solution for this?).
8827     ImportError ErrOut;
8828     handleAllErrors(ToDOrErr.takeError(),
8829                     [&ErrOut](const ImportError &E) { ErrOut = E; });
8830     setImportDeclError(FromD, ErrOut);
8831     // Set the error for the mapped to Decl, which is in the "to" context.
8832     if (Pos != ImportedDecls.end())
8833       SharedState->setImportDeclError(Pos->second, ErrOut);
8834 
8835     // Set the error for all nodes which have been created before we
8836     // recognized the error.
8837     for (const auto &Path : SavedImportPaths[FromD]) {
8838       // The import path contains import-dependency nodes first.
8839       // Save the node that was imported as dependency of the current node.
8840       Decl *PrevFromDi = FromD;
8841       for (Decl *FromDi : Path) {
8842         // Begin and end of the path equals 'FromD', skip it.
8843         if (FromDi == FromD)
8844           continue;
8845         // We should not set import error on a node and all following nodes in
8846         // the path if child import errors are ignored.
8847         if (ChildErrorHandlingStrategy(FromDi).ignoreChildErrorOnParent(
8848                 PrevFromDi))
8849           break;
8850         PrevFromDi = FromDi;
8851         setImportDeclError(FromDi, ErrOut);
8852         //FIXME Should we remove these Decls from ImportedDecls?
8853         // Set the error for the mapped to Decl, which is in the "to" context.
8854         auto Ii = ImportedDecls.find(FromDi);
8855         if (Ii != ImportedDecls.end())
8856           SharedState->setImportDeclError(Ii->second, ErrOut);
8857           // FIXME Should we remove these Decls from the LookupTable,
8858           // and from ImportedFromDecls?
8859       }
8860     }
8861     SavedImportPaths.erase(FromD);
8862 
8863     // Do not return ToDOrErr, error was taken out of it.
8864     return make_error<ImportError>(ErrOut);
8865   }
8866 
8867   ToD = *ToDOrErr;
8868 
8869   // FIXME: Handle the "already imported with error" case. We can get here
8870   // nullptr only if GetImportedOrCreateDecl returned nullptr (after a
8871   // previously failed create was requested).
8872   // Later GetImportedOrCreateDecl can be updated to return the error.
8873   if (!ToD) {
8874     auto Err = getImportDeclErrorIfAny(FromD);
8875     assert(Err);
8876     return make_error<ImportError>(*Err);
8877   }
8878 
8879   // We could import from the current TU without error.  But previously we
8880   // already had imported a Decl as `ToD` from another TU (with another
8881   // ASTImporter object) and with an error.
8882   if (auto Error = SharedState->getImportDeclErrorIfAny(ToD)) {
8883     setImportDeclError(FromD, *Error);
8884     return make_error<ImportError>(*Error);
8885   }
8886 
8887   // Make sure that ImportImpl registered the imported decl.
8888   assert(ImportedDecls.count(FromD) != 0 && "Missing call to MapImported?");
8889 
8890   if (FromD->hasAttrs())
8891     for (const Attr *FromAttr : FromD->getAttrs()) {
8892       auto ToAttrOrErr = Import(FromAttr);
8893       if (ToAttrOrErr)
8894         ToD->addAttr(*ToAttrOrErr);
8895       else
8896         return ToAttrOrErr.takeError();
8897     }
8898 
8899   // Notify subclasses.
8900   Imported(FromD, ToD);
8901 
8902   updateFlags(FromD, ToD);
8903   SavedImportPaths.erase(FromD);
8904   return ToDOrErr;
8905 }
8906 
8907 llvm::Expected<InheritedConstructor>
8908 ASTImporter::Import(const InheritedConstructor &From) {
8909   return ASTNodeImporter(*this).ImportInheritedConstructor(From);
8910 }
8911 
8912 Expected<DeclContext *> ASTImporter::ImportContext(DeclContext *FromDC) {
8913   if (!FromDC)
8914     return FromDC;
8915 
8916   ExpectedDecl ToDCOrErr = Import(cast<Decl>(FromDC));
8917   if (!ToDCOrErr)
8918     return ToDCOrErr.takeError();
8919   auto *ToDC = cast<DeclContext>(*ToDCOrErr);
8920 
8921   // When we're using a record/enum/Objective-C class/protocol as a context, we
8922   // need it to have a definition.
8923   if (auto *ToRecord = dyn_cast<RecordDecl>(ToDC)) {
8924     auto *FromRecord = cast<RecordDecl>(FromDC);
8925     if (ToRecord->isCompleteDefinition())
8926       return ToDC;
8927 
8928     // If FromRecord is not defined we need to force it to be.
8929     // Simply calling CompleteDecl(...) for a RecordDecl will break some cases
8930     // it will start the definition but we never finish it.
8931     // If there are base classes they won't be imported and we will
8932     // be missing anything that we inherit from those bases.
8933     if (FromRecord->getASTContext().getExternalSource() &&
8934         !FromRecord->isCompleteDefinition())
8935       FromRecord->getASTContext().getExternalSource()->CompleteType(FromRecord);
8936 
8937     if (FromRecord->isCompleteDefinition())
8938       if (Error Err = ASTNodeImporter(*this).ImportDefinition(
8939           FromRecord, ToRecord, ASTNodeImporter::IDK_Basic))
8940         return std::move(Err);
8941   } else if (auto *ToEnum = dyn_cast<EnumDecl>(ToDC)) {
8942     auto *FromEnum = cast<EnumDecl>(FromDC);
8943     if (ToEnum->isCompleteDefinition()) {
8944       // Do nothing.
8945     } else if (FromEnum->isCompleteDefinition()) {
8946       if (Error Err = ASTNodeImporter(*this).ImportDefinition(
8947           FromEnum, ToEnum, ASTNodeImporter::IDK_Basic))
8948         return std::move(Err);
8949     } else {
8950       CompleteDecl(ToEnum);
8951     }
8952   } else if (auto *ToClass = dyn_cast<ObjCInterfaceDecl>(ToDC)) {
8953     auto *FromClass = cast<ObjCInterfaceDecl>(FromDC);
8954     if (ToClass->getDefinition()) {
8955       // Do nothing.
8956     } else if (ObjCInterfaceDecl *FromDef = FromClass->getDefinition()) {
8957       if (Error Err = ASTNodeImporter(*this).ImportDefinition(
8958           FromDef, ToClass, ASTNodeImporter::IDK_Basic))
8959         return std::move(Err);
8960     } else {
8961       CompleteDecl(ToClass);
8962     }
8963   } else if (auto *ToProto = dyn_cast<ObjCProtocolDecl>(ToDC)) {
8964     auto *FromProto = cast<ObjCProtocolDecl>(FromDC);
8965     if (ToProto->getDefinition()) {
8966       // Do nothing.
8967     } else if (ObjCProtocolDecl *FromDef = FromProto->getDefinition()) {
8968       if (Error Err = ASTNodeImporter(*this).ImportDefinition(
8969           FromDef, ToProto, ASTNodeImporter::IDK_Basic))
8970         return std::move(Err);
8971     } else {
8972       CompleteDecl(ToProto);
8973     }
8974   }
8975 
8976   return ToDC;
8977 }
8978 
8979 Expected<Expr *> ASTImporter::Import(Expr *FromE) {
8980   if (ExpectedStmt ToSOrErr = Import(cast_or_null<Stmt>(FromE)))
8981     return cast_or_null<Expr>(*ToSOrErr);
8982   else
8983     return ToSOrErr.takeError();
8984 }
8985 
8986 Expected<Stmt *> ASTImporter::Import(Stmt *FromS) {
8987   if (!FromS)
8988     return nullptr;
8989 
8990   // Check whether we've already imported this statement.
8991   llvm::DenseMap<Stmt *, Stmt *>::iterator Pos = ImportedStmts.find(FromS);
8992   if (Pos != ImportedStmts.end())
8993     return Pos->second;
8994 
8995   // Import the statement.
8996   ASTNodeImporter Importer(*this);
8997   ExpectedStmt ToSOrErr = Importer.Visit(FromS);
8998   if (!ToSOrErr)
8999     return ToSOrErr;
9000 
9001   if (auto *ToE = dyn_cast<Expr>(*ToSOrErr)) {
9002     auto *FromE = cast<Expr>(FromS);
9003     // Copy ExprBitfields, which may not be handled in Expr subclasses
9004     // constructors.
9005     ToE->setValueKind(FromE->getValueKind());
9006     ToE->setObjectKind(FromE->getObjectKind());
9007     ToE->setDependence(FromE->getDependence());
9008   }
9009 
9010   // Record the imported statement object.
9011   ImportedStmts[FromS] = *ToSOrErr;
9012   return ToSOrErr;
9013 }
9014 
9015 Expected<NestedNameSpecifier *>
9016 ASTImporter::Import(NestedNameSpecifier *FromNNS) {
9017   if (!FromNNS)
9018     return nullptr;
9019 
9020   NestedNameSpecifier *Prefix = nullptr;
9021   if (Error Err = importInto(Prefix, FromNNS->getPrefix()))
9022     return std::move(Err);
9023 
9024   switch (FromNNS->getKind()) {
9025   case NestedNameSpecifier::Identifier:
9026     assert(FromNNS->getAsIdentifier() && "NNS should contain identifier.");
9027     return NestedNameSpecifier::Create(ToContext, Prefix,
9028                                        Import(FromNNS->getAsIdentifier()));
9029 
9030   case NestedNameSpecifier::Namespace:
9031     if (ExpectedDecl NSOrErr = Import(FromNNS->getAsNamespace())) {
9032       return NestedNameSpecifier::Create(ToContext, Prefix,
9033                                          cast<NamespaceDecl>(*NSOrErr));
9034     } else
9035       return NSOrErr.takeError();
9036 
9037   case NestedNameSpecifier::NamespaceAlias:
9038     if (ExpectedDecl NSADOrErr = Import(FromNNS->getAsNamespaceAlias()))
9039       return NestedNameSpecifier::Create(ToContext, Prefix,
9040                                          cast<NamespaceAliasDecl>(*NSADOrErr));
9041     else
9042       return NSADOrErr.takeError();
9043 
9044   case NestedNameSpecifier::Global:
9045     return NestedNameSpecifier::GlobalSpecifier(ToContext);
9046 
9047   case NestedNameSpecifier::Super:
9048     if (ExpectedDecl RDOrErr = Import(FromNNS->getAsRecordDecl()))
9049       return NestedNameSpecifier::SuperSpecifier(ToContext,
9050                                                  cast<CXXRecordDecl>(*RDOrErr));
9051     else
9052       return RDOrErr.takeError();
9053 
9054   case NestedNameSpecifier::TypeSpec:
9055   case NestedNameSpecifier::TypeSpecWithTemplate:
9056     if (ExpectedTypePtr TyOrErr = Import(FromNNS->getAsType())) {
9057       bool TSTemplate =
9058           FromNNS->getKind() == NestedNameSpecifier::TypeSpecWithTemplate;
9059       return NestedNameSpecifier::Create(ToContext, Prefix, TSTemplate,
9060                                          *TyOrErr);
9061     } else {
9062       return TyOrErr.takeError();
9063     }
9064   }
9065 
9066   llvm_unreachable("Invalid nested name specifier kind");
9067 }
9068 
9069 Expected<NestedNameSpecifierLoc>
9070 ASTImporter::Import(NestedNameSpecifierLoc FromNNS) {
9071   // Copied from NestedNameSpecifier mostly.
9072   SmallVector<NestedNameSpecifierLoc , 8> NestedNames;
9073   NestedNameSpecifierLoc NNS = FromNNS;
9074 
9075   // Push each of the nested-name-specifiers's onto a stack for
9076   // serialization in reverse order.
9077   while (NNS) {
9078     NestedNames.push_back(NNS);
9079     NNS = NNS.getPrefix();
9080   }
9081 
9082   NestedNameSpecifierLocBuilder Builder;
9083 
9084   while (!NestedNames.empty()) {
9085     NNS = NestedNames.pop_back_val();
9086     NestedNameSpecifier *Spec = nullptr;
9087     if (Error Err = importInto(Spec, NNS.getNestedNameSpecifier()))
9088       return std::move(Err);
9089 
9090     NestedNameSpecifier::SpecifierKind Kind = Spec->getKind();
9091 
9092     SourceLocation ToLocalBeginLoc, ToLocalEndLoc;
9093     if (Kind != NestedNameSpecifier::Super) {
9094       if (Error Err = importInto(ToLocalBeginLoc, NNS.getLocalBeginLoc()))
9095         return std::move(Err);
9096 
9097       if (Kind != NestedNameSpecifier::Global)
9098         if (Error Err = importInto(ToLocalEndLoc, NNS.getLocalEndLoc()))
9099           return std::move(Err);
9100     }
9101 
9102     switch (Kind) {
9103     case NestedNameSpecifier::Identifier:
9104       Builder.Extend(getToContext(), Spec->getAsIdentifier(), ToLocalBeginLoc,
9105                      ToLocalEndLoc);
9106       break;
9107 
9108     case NestedNameSpecifier::Namespace:
9109       Builder.Extend(getToContext(), Spec->getAsNamespace(), ToLocalBeginLoc,
9110                      ToLocalEndLoc);
9111       break;
9112 
9113     case NestedNameSpecifier::NamespaceAlias:
9114       Builder.Extend(getToContext(), Spec->getAsNamespaceAlias(),
9115                      ToLocalBeginLoc, ToLocalEndLoc);
9116       break;
9117 
9118     case NestedNameSpecifier::TypeSpec:
9119     case NestedNameSpecifier::TypeSpecWithTemplate: {
9120       SourceLocation ToTLoc;
9121       if (Error Err = importInto(ToTLoc, NNS.getTypeLoc().getBeginLoc()))
9122         return std::move(Err);
9123       TypeSourceInfo *TSI = getToContext().getTrivialTypeSourceInfo(
9124             QualType(Spec->getAsType(), 0), ToTLoc);
9125       if (Kind == NestedNameSpecifier::TypeSpecWithTemplate)
9126         // ToLocalBeginLoc is here the location of the 'template' keyword.
9127         Builder.Extend(getToContext(), ToLocalBeginLoc, TSI->getTypeLoc(),
9128                        ToLocalEndLoc);
9129       else
9130         // No location for 'template' keyword here.
9131         Builder.Extend(getToContext(), SourceLocation{}, TSI->getTypeLoc(),
9132                        ToLocalEndLoc);
9133       break;
9134     }
9135 
9136     case NestedNameSpecifier::Global:
9137       Builder.MakeGlobal(getToContext(), ToLocalBeginLoc);
9138       break;
9139 
9140     case NestedNameSpecifier::Super: {
9141       auto ToSourceRangeOrErr = Import(NNS.getSourceRange());
9142       if (!ToSourceRangeOrErr)
9143         return ToSourceRangeOrErr.takeError();
9144 
9145       Builder.MakeSuper(getToContext(), Spec->getAsRecordDecl(),
9146                         ToSourceRangeOrErr->getBegin(),
9147                         ToSourceRangeOrErr->getEnd());
9148     }
9149   }
9150   }
9151 
9152   return Builder.getWithLocInContext(getToContext());
9153 }
9154 
9155 Expected<TemplateName> ASTImporter::Import(TemplateName From) {
9156   switch (From.getKind()) {
9157   case TemplateName::Template:
9158     if (ExpectedDecl ToTemplateOrErr = Import(From.getAsTemplateDecl()))
9159       return TemplateName(cast<TemplateDecl>(*ToTemplateOrErr));
9160     else
9161       return ToTemplateOrErr.takeError();
9162 
9163   case TemplateName::OverloadedTemplate: {
9164     OverloadedTemplateStorage *FromStorage = From.getAsOverloadedTemplate();
9165     UnresolvedSet<2> ToTemplates;
9166     for (auto *I : *FromStorage) {
9167       if (auto ToOrErr = Import(I))
9168         ToTemplates.addDecl(cast<NamedDecl>(*ToOrErr));
9169       else
9170         return ToOrErr.takeError();
9171     }
9172     return ToContext.getOverloadedTemplateName(ToTemplates.begin(),
9173                                                ToTemplates.end());
9174   }
9175 
9176   case TemplateName::AssumedTemplate: {
9177     AssumedTemplateStorage *FromStorage = From.getAsAssumedTemplateName();
9178     auto DeclNameOrErr = Import(FromStorage->getDeclName());
9179     if (!DeclNameOrErr)
9180       return DeclNameOrErr.takeError();
9181     return ToContext.getAssumedTemplateName(*DeclNameOrErr);
9182   }
9183 
9184   case TemplateName::QualifiedTemplate: {
9185     QualifiedTemplateName *QTN = From.getAsQualifiedTemplateName();
9186     auto QualifierOrErr = Import(QTN->getQualifier());
9187     if (!QualifierOrErr)
9188       return QualifierOrErr.takeError();
9189     auto TNOrErr = Import(QTN->getUnderlyingTemplate());
9190     if (!TNOrErr)
9191       return TNOrErr.takeError();
9192     return ToContext.getQualifiedTemplateName(
9193         *QualifierOrErr, QTN->hasTemplateKeyword(), *TNOrErr);
9194   }
9195 
9196   case TemplateName::DependentTemplate: {
9197     DependentTemplateName *DTN = From.getAsDependentTemplateName();
9198     auto QualifierOrErr = Import(DTN->getQualifier());
9199     if (!QualifierOrErr)
9200       return QualifierOrErr.takeError();
9201 
9202     if (DTN->isIdentifier()) {
9203       return ToContext.getDependentTemplateName(*QualifierOrErr,
9204                                                 Import(DTN->getIdentifier()));
9205     }
9206 
9207     return ToContext.getDependentTemplateName(*QualifierOrErr,
9208                                               DTN->getOperator());
9209   }
9210 
9211   case TemplateName::SubstTemplateTemplateParm: {
9212     SubstTemplateTemplateParmStorage *Subst =
9213         From.getAsSubstTemplateTemplateParm();
9214     ExpectedDecl ParamOrErr = Import(Subst->getParameter());
9215     if (!ParamOrErr)
9216       return ParamOrErr.takeError();
9217 
9218     auto ReplacementOrErr = Import(Subst->getReplacement());
9219     if (!ReplacementOrErr)
9220       return ReplacementOrErr.takeError();
9221 
9222     return ToContext.getSubstTemplateTemplateParm(
9223         cast<TemplateTemplateParmDecl>(*ParamOrErr), *ReplacementOrErr);
9224   }
9225 
9226   case TemplateName::SubstTemplateTemplateParmPack: {
9227     SubstTemplateTemplateParmPackStorage *SubstPack
9228       = From.getAsSubstTemplateTemplateParmPack();
9229     ExpectedDecl ParamOrErr = Import(SubstPack->getParameterPack());
9230     if (!ParamOrErr)
9231       return ParamOrErr.takeError();
9232 
9233     ASTNodeImporter Importer(*this);
9234     auto ArgPackOrErr =
9235         Importer.ImportTemplateArgument(SubstPack->getArgumentPack());
9236     if (!ArgPackOrErr)
9237       return ArgPackOrErr.takeError();
9238 
9239     return ToContext.getSubstTemplateTemplateParmPack(
9240         cast<TemplateTemplateParmDecl>(*ParamOrErr), *ArgPackOrErr);
9241   }
9242   case TemplateName::UsingTemplate: {
9243     auto UsingOrError = Import(From.getAsUsingShadowDecl());
9244     if (!UsingOrError)
9245       return UsingOrError.takeError();
9246     return TemplateName(cast<UsingShadowDecl>(*UsingOrError));
9247   }
9248   }
9249 
9250   llvm_unreachable("Invalid template name kind");
9251 }
9252 
9253 Expected<SourceLocation> ASTImporter::Import(SourceLocation FromLoc) {
9254   if (FromLoc.isInvalid())
9255     return SourceLocation{};
9256 
9257   SourceManager &FromSM = FromContext.getSourceManager();
9258   bool IsBuiltin = FromSM.isWrittenInBuiltinFile(FromLoc);
9259 
9260   std::pair<FileID, unsigned> Decomposed = FromSM.getDecomposedLoc(FromLoc);
9261   Expected<FileID> ToFileIDOrErr = Import(Decomposed.first, IsBuiltin);
9262   if (!ToFileIDOrErr)
9263     return ToFileIDOrErr.takeError();
9264   SourceManager &ToSM = ToContext.getSourceManager();
9265   return ToSM.getComposedLoc(*ToFileIDOrErr, Decomposed.second);
9266 }
9267 
9268 Expected<SourceRange> ASTImporter::Import(SourceRange FromRange) {
9269   SourceLocation ToBegin, ToEnd;
9270   if (Error Err = importInto(ToBegin, FromRange.getBegin()))
9271     return std::move(Err);
9272   if (Error Err = importInto(ToEnd, FromRange.getEnd()))
9273     return std::move(Err);
9274 
9275   return SourceRange(ToBegin, ToEnd);
9276 }
9277 
9278 Expected<FileID> ASTImporter::Import(FileID FromID, bool IsBuiltin) {
9279   llvm::DenseMap<FileID, FileID>::iterator Pos = ImportedFileIDs.find(FromID);
9280   if (Pos != ImportedFileIDs.end())
9281     return Pos->second;
9282 
9283   SourceManager &FromSM = FromContext.getSourceManager();
9284   SourceManager &ToSM = ToContext.getSourceManager();
9285   const SrcMgr::SLocEntry &FromSLoc = FromSM.getSLocEntry(FromID);
9286 
9287   // Map the FromID to the "to" source manager.
9288   FileID ToID;
9289   if (FromSLoc.isExpansion()) {
9290     const SrcMgr::ExpansionInfo &FromEx = FromSLoc.getExpansion();
9291     ExpectedSLoc ToSpLoc = Import(FromEx.getSpellingLoc());
9292     if (!ToSpLoc)
9293       return ToSpLoc.takeError();
9294     ExpectedSLoc ToExLocS = Import(FromEx.getExpansionLocStart());
9295     if (!ToExLocS)
9296       return ToExLocS.takeError();
9297     unsigned ExLength = FromSM.getFileIDSize(FromID);
9298     SourceLocation MLoc;
9299     if (FromEx.isMacroArgExpansion()) {
9300       MLoc = ToSM.createMacroArgExpansionLoc(*ToSpLoc, *ToExLocS, ExLength);
9301     } else {
9302       if (ExpectedSLoc ToExLocE = Import(FromEx.getExpansionLocEnd()))
9303         MLoc = ToSM.createExpansionLoc(*ToSpLoc, *ToExLocS, *ToExLocE, ExLength,
9304                                        FromEx.isExpansionTokenRange());
9305       else
9306         return ToExLocE.takeError();
9307     }
9308     ToID = ToSM.getFileID(MLoc);
9309   } else {
9310     const SrcMgr::ContentCache *Cache = &FromSLoc.getFile().getContentCache();
9311 
9312     if (!IsBuiltin && !Cache->BufferOverridden) {
9313       // Include location of this file.
9314       ExpectedSLoc ToIncludeLoc = Import(FromSLoc.getFile().getIncludeLoc());
9315       if (!ToIncludeLoc)
9316         return ToIncludeLoc.takeError();
9317 
9318       // Every FileID that is not the main FileID needs to have a valid include
9319       // location so that the include chain points to the main FileID. When
9320       // importing the main FileID (which has no include location), we need to
9321       // create a fake include location in the main file to keep this property
9322       // intact.
9323       SourceLocation ToIncludeLocOrFakeLoc = *ToIncludeLoc;
9324       if (FromID == FromSM.getMainFileID())
9325         ToIncludeLocOrFakeLoc = ToSM.getLocForStartOfFile(ToSM.getMainFileID());
9326 
9327       if (Cache->OrigEntry && Cache->OrigEntry->getDir()) {
9328         // FIXME: We probably want to use getVirtualFile(), so we don't hit the
9329         // disk again
9330         // FIXME: We definitely want to re-use the existing MemoryBuffer, rather
9331         // than mmap the files several times.
9332         auto Entry =
9333             ToFileManager.getOptionalFileRef(Cache->OrigEntry->getName());
9334         // FIXME: The filename may be a virtual name that does probably not
9335         // point to a valid file and we get no Entry here. In this case try with
9336         // the memory buffer below.
9337         if (Entry)
9338           ToID = ToSM.createFileID(*Entry, ToIncludeLocOrFakeLoc,
9339                                    FromSLoc.getFile().getFileCharacteristic());
9340       }
9341     }
9342 
9343     if (ToID.isInvalid() || IsBuiltin) {
9344       // FIXME: We want to re-use the existing MemoryBuffer!
9345       llvm::Optional<llvm::MemoryBufferRef> FromBuf =
9346           Cache->getBufferOrNone(FromContext.getDiagnostics(),
9347                                  FromSM.getFileManager(), SourceLocation{});
9348       if (!FromBuf)
9349         return llvm::make_error<ImportError>(ImportError::Unknown);
9350 
9351       std::unique_ptr<llvm::MemoryBuffer> ToBuf =
9352           llvm::MemoryBuffer::getMemBufferCopy(FromBuf->getBuffer(),
9353                                                FromBuf->getBufferIdentifier());
9354       ToID = ToSM.createFileID(std::move(ToBuf),
9355                                FromSLoc.getFile().getFileCharacteristic());
9356     }
9357   }
9358 
9359   assert(ToID.isValid() && "Unexpected invalid fileID was created.");
9360 
9361   ImportedFileIDs[FromID] = ToID;
9362   return ToID;
9363 }
9364 
9365 Expected<CXXCtorInitializer *> ASTImporter::Import(CXXCtorInitializer *From) {
9366   ExpectedExpr ToExprOrErr = Import(From->getInit());
9367   if (!ToExprOrErr)
9368     return ToExprOrErr.takeError();
9369 
9370   auto LParenLocOrErr = Import(From->getLParenLoc());
9371   if (!LParenLocOrErr)
9372     return LParenLocOrErr.takeError();
9373 
9374   auto RParenLocOrErr = Import(From->getRParenLoc());
9375   if (!RParenLocOrErr)
9376     return RParenLocOrErr.takeError();
9377 
9378   if (From->isBaseInitializer()) {
9379     auto ToTInfoOrErr = Import(From->getTypeSourceInfo());
9380     if (!ToTInfoOrErr)
9381       return ToTInfoOrErr.takeError();
9382 
9383     SourceLocation EllipsisLoc;
9384     if (From->isPackExpansion())
9385       if (Error Err = importInto(EllipsisLoc, From->getEllipsisLoc()))
9386         return std::move(Err);
9387 
9388     return new (ToContext) CXXCtorInitializer(
9389         ToContext, *ToTInfoOrErr, From->isBaseVirtual(), *LParenLocOrErr,
9390         *ToExprOrErr, *RParenLocOrErr, EllipsisLoc);
9391   } else if (From->isMemberInitializer()) {
9392     ExpectedDecl ToFieldOrErr = Import(From->getMember());
9393     if (!ToFieldOrErr)
9394       return ToFieldOrErr.takeError();
9395 
9396     auto MemberLocOrErr = Import(From->getMemberLocation());
9397     if (!MemberLocOrErr)
9398       return MemberLocOrErr.takeError();
9399 
9400     return new (ToContext) CXXCtorInitializer(
9401         ToContext, cast_or_null<FieldDecl>(*ToFieldOrErr), *MemberLocOrErr,
9402         *LParenLocOrErr, *ToExprOrErr, *RParenLocOrErr);
9403   } else if (From->isIndirectMemberInitializer()) {
9404     ExpectedDecl ToIFieldOrErr = Import(From->getIndirectMember());
9405     if (!ToIFieldOrErr)
9406       return ToIFieldOrErr.takeError();
9407 
9408     auto MemberLocOrErr = Import(From->getMemberLocation());
9409     if (!MemberLocOrErr)
9410       return MemberLocOrErr.takeError();
9411 
9412     return new (ToContext) CXXCtorInitializer(
9413         ToContext, cast_or_null<IndirectFieldDecl>(*ToIFieldOrErr),
9414         *MemberLocOrErr, *LParenLocOrErr, *ToExprOrErr, *RParenLocOrErr);
9415   } else if (From->isDelegatingInitializer()) {
9416     auto ToTInfoOrErr = Import(From->getTypeSourceInfo());
9417     if (!ToTInfoOrErr)
9418       return ToTInfoOrErr.takeError();
9419 
9420     return new (ToContext)
9421         CXXCtorInitializer(ToContext, *ToTInfoOrErr, *LParenLocOrErr,
9422                            *ToExprOrErr, *RParenLocOrErr);
9423   } else {
9424     // FIXME: assert?
9425     return make_error<ImportError>();
9426   }
9427 }
9428 
9429 Expected<CXXBaseSpecifier *>
9430 ASTImporter::Import(const CXXBaseSpecifier *BaseSpec) {
9431   auto Pos = ImportedCXXBaseSpecifiers.find(BaseSpec);
9432   if (Pos != ImportedCXXBaseSpecifiers.end())
9433     return Pos->second;
9434 
9435   Expected<SourceRange> ToSourceRange = Import(BaseSpec->getSourceRange());
9436   if (!ToSourceRange)
9437     return ToSourceRange.takeError();
9438   Expected<TypeSourceInfo *> ToTSI = Import(BaseSpec->getTypeSourceInfo());
9439   if (!ToTSI)
9440     return ToTSI.takeError();
9441   ExpectedSLoc ToEllipsisLoc = Import(BaseSpec->getEllipsisLoc());
9442   if (!ToEllipsisLoc)
9443     return ToEllipsisLoc.takeError();
9444   CXXBaseSpecifier *Imported = new (ToContext) CXXBaseSpecifier(
9445       *ToSourceRange, BaseSpec->isVirtual(), BaseSpec->isBaseOfClass(),
9446       BaseSpec->getAccessSpecifierAsWritten(), *ToTSI, *ToEllipsisLoc);
9447   ImportedCXXBaseSpecifiers[BaseSpec] = Imported;
9448   return Imported;
9449 }
9450 
9451 llvm::Expected<APValue> ASTImporter::Import(const APValue &FromValue) {
9452   ASTNodeImporter Importer(*this);
9453   return Importer.ImportAPValue(FromValue);
9454 }
9455 
9456 Error ASTImporter::ImportDefinition(Decl *From) {
9457   ExpectedDecl ToOrErr = Import(From);
9458   if (!ToOrErr)
9459     return ToOrErr.takeError();
9460   Decl *To = *ToOrErr;
9461 
9462   auto *FromDC = cast<DeclContext>(From);
9463   ASTNodeImporter Importer(*this);
9464 
9465   if (auto *ToRecord = dyn_cast<RecordDecl>(To)) {
9466     if (!ToRecord->getDefinition()) {
9467       return Importer.ImportDefinition(
9468           cast<RecordDecl>(FromDC), ToRecord,
9469           ASTNodeImporter::IDK_Everything);
9470     }
9471   }
9472 
9473   if (auto *ToEnum = dyn_cast<EnumDecl>(To)) {
9474     if (!ToEnum->getDefinition()) {
9475       return Importer.ImportDefinition(
9476           cast<EnumDecl>(FromDC), ToEnum, ASTNodeImporter::IDK_Everything);
9477     }
9478   }
9479 
9480   if (auto *ToIFace = dyn_cast<ObjCInterfaceDecl>(To)) {
9481     if (!ToIFace->getDefinition()) {
9482       return Importer.ImportDefinition(
9483           cast<ObjCInterfaceDecl>(FromDC), ToIFace,
9484           ASTNodeImporter::IDK_Everything);
9485     }
9486   }
9487 
9488   if (auto *ToProto = dyn_cast<ObjCProtocolDecl>(To)) {
9489     if (!ToProto->getDefinition()) {
9490       return Importer.ImportDefinition(
9491           cast<ObjCProtocolDecl>(FromDC), ToProto,
9492           ASTNodeImporter::IDK_Everything);
9493     }
9494   }
9495 
9496   return Importer.ImportDeclContext(FromDC, true);
9497 }
9498 
9499 Expected<DeclarationName> ASTImporter::Import(DeclarationName FromName) {
9500   if (!FromName)
9501     return DeclarationName{};
9502 
9503   switch (FromName.getNameKind()) {
9504   case DeclarationName::Identifier:
9505     return DeclarationName(Import(FromName.getAsIdentifierInfo()));
9506 
9507   case DeclarationName::ObjCZeroArgSelector:
9508   case DeclarationName::ObjCOneArgSelector:
9509   case DeclarationName::ObjCMultiArgSelector:
9510     if (auto ToSelOrErr = Import(FromName.getObjCSelector()))
9511       return DeclarationName(*ToSelOrErr);
9512     else
9513       return ToSelOrErr.takeError();
9514 
9515   case DeclarationName::CXXConstructorName: {
9516     if (auto ToTyOrErr = Import(FromName.getCXXNameType()))
9517       return ToContext.DeclarationNames.getCXXConstructorName(
9518           ToContext.getCanonicalType(*ToTyOrErr));
9519     else
9520       return ToTyOrErr.takeError();
9521   }
9522 
9523   case DeclarationName::CXXDestructorName: {
9524     if (auto ToTyOrErr = Import(FromName.getCXXNameType()))
9525       return ToContext.DeclarationNames.getCXXDestructorName(
9526           ToContext.getCanonicalType(*ToTyOrErr));
9527     else
9528       return ToTyOrErr.takeError();
9529   }
9530 
9531   case DeclarationName::CXXDeductionGuideName: {
9532     if (auto ToTemplateOrErr = Import(FromName.getCXXDeductionGuideTemplate()))
9533       return ToContext.DeclarationNames.getCXXDeductionGuideName(
9534           cast<TemplateDecl>(*ToTemplateOrErr));
9535     else
9536       return ToTemplateOrErr.takeError();
9537   }
9538 
9539   case DeclarationName::CXXConversionFunctionName: {
9540     if (auto ToTyOrErr = Import(FromName.getCXXNameType()))
9541       return ToContext.DeclarationNames.getCXXConversionFunctionName(
9542           ToContext.getCanonicalType(*ToTyOrErr));
9543     else
9544       return ToTyOrErr.takeError();
9545   }
9546 
9547   case DeclarationName::CXXOperatorName:
9548     return ToContext.DeclarationNames.getCXXOperatorName(
9549                                           FromName.getCXXOverloadedOperator());
9550 
9551   case DeclarationName::CXXLiteralOperatorName:
9552     return ToContext.DeclarationNames.getCXXLiteralOperatorName(
9553         Import(FromName.getCXXLiteralIdentifier()));
9554 
9555   case DeclarationName::CXXUsingDirective:
9556     // FIXME: STATICS!
9557     return DeclarationName::getUsingDirectiveName();
9558   }
9559 
9560   llvm_unreachable("Invalid DeclarationName Kind!");
9561 }
9562 
9563 IdentifierInfo *ASTImporter::Import(const IdentifierInfo *FromId) {
9564   if (!FromId)
9565     return nullptr;
9566 
9567   IdentifierInfo *ToId = &ToContext.Idents.get(FromId->getName());
9568 
9569   if (!ToId->getBuiltinID() && FromId->getBuiltinID())
9570     ToId->setBuiltinID(FromId->getBuiltinID());
9571 
9572   return ToId;
9573 }
9574 
9575 Expected<Selector> ASTImporter::Import(Selector FromSel) {
9576   if (FromSel.isNull())
9577     return Selector{};
9578 
9579   SmallVector<IdentifierInfo *, 4> Idents;
9580   Idents.push_back(Import(FromSel.getIdentifierInfoForSlot(0)));
9581   for (unsigned I = 1, N = FromSel.getNumArgs(); I < N; ++I)
9582     Idents.push_back(Import(FromSel.getIdentifierInfoForSlot(I)));
9583   return ToContext.Selectors.getSelector(FromSel.getNumArgs(), Idents.data());
9584 }
9585 
9586 llvm::Expected<APValue>
9587 ASTNodeImporter::ImportAPValue(const APValue &FromValue) {
9588   APValue Result;
9589   llvm::Error Err = llvm::Error::success();
9590   auto ImportLoop = [&](const APValue *From, APValue *To, unsigned Size) {
9591     for (unsigned Idx = 0; Idx < Size; Idx++) {
9592       APValue Tmp = importChecked(Err, From[Idx]);
9593       To[Idx] = Tmp;
9594     }
9595   };
9596   switch (FromValue.getKind()) {
9597   case APValue::None:
9598   case APValue::Indeterminate:
9599   case APValue::Int:
9600   case APValue::Float:
9601   case APValue::FixedPoint:
9602   case APValue::ComplexInt:
9603   case APValue::ComplexFloat:
9604     Result = FromValue;
9605     break;
9606   case APValue::Vector: {
9607     Result.MakeVector();
9608     MutableArrayRef<APValue> Elts =
9609         Result.setVectorUninit(FromValue.getVectorLength());
9610     ImportLoop(((const APValue::Vec *)(const char *)&FromValue.Data)->Elts,
9611                Elts.data(), FromValue.getVectorLength());
9612     break;
9613   }
9614   case APValue::Array:
9615     Result.MakeArray(FromValue.getArrayInitializedElts(),
9616                      FromValue.getArraySize());
9617     ImportLoop(((const APValue::Arr *)(const char *)&FromValue.Data)->Elts,
9618                ((const APValue::Arr *)(const char *)&Result.Data)->Elts,
9619                FromValue.getArrayInitializedElts());
9620     break;
9621   case APValue::Struct:
9622     Result.MakeStruct(FromValue.getStructNumBases(),
9623                       FromValue.getStructNumFields());
9624     ImportLoop(
9625         ((const APValue::StructData *)(const char *)&FromValue.Data)->Elts,
9626         ((const APValue::StructData *)(const char *)&Result.Data)->Elts,
9627         FromValue.getStructNumBases() + FromValue.getStructNumFields());
9628     break;
9629   case APValue::Union: {
9630     Result.MakeUnion();
9631     const Decl *ImpFDecl = importChecked(Err, FromValue.getUnionField());
9632     APValue ImpValue = importChecked(Err, FromValue.getUnionValue());
9633     if (Err)
9634       return std::move(Err);
9635     Result.setUnion(cast<FieldDecl>(ImpFDecl), ImpValue);
9636     break;
9637   }
9638   case APValue::AddrLabelDiff: {
9639     Result.MakeAddrLabelDiff();
9640     const Expr *ImpLHS = importChecked(Err, FromValue.getAddrLabelDiffLHS());
9641     const Expr *ImpRHS = importChecked(Err, FromValue.getAddrLabelDiffRHS());
9642     if (Err)
9643       return std::move(Err);
9644     Result.setAddrLabelDiff(cast<AddrLabelExpr>(ImpLHS),
9645                             cast<AddrLabelExpr>(ImpRHS));
9646     break;
9647   }
9648   case APValue::MemberPointer: {
9649     const Decl *ImpMemPtrDecl =
9650         importChecked(Err, FromValue.getMemberPointerDecl());
9651     if (Err)
9652       return std::move(Err);
9653     MutableArrayRef<const CXXRecordDecl *> ToPath =
9654         Result.setMemberPointerUninit(
9655             cast<const ValueDecl>(ImpMemPtrDecl),
9656             FromValue.isMemberPointerToDerivedMember(),
9657             FromValue.getMemberPointerPath().size());
9658     llvm::ArrayRef<const CXXRecordDecl *> FromPath =
9659         Result.getMemberPointerPath();
9660     for (unsigned Idx = 0; Idx < FromValue.getMemberPointerPath().size();
9661          Idx++) {
9662       const Decl *ImpDecl = importChecked(Err, FromPath[Idx]);
9663       if (Err)
9664         return std::move(Err);
9665       ToPath[Idx] = cast<const CXXRecordDecl>(ImpDecl->getCanonicalDecl());
9666     }
9667     break;
9668   }
9669   case APValue::LValue:
9670     APValue::LValueBase Base;
9671     QualType FromElemTy;
9672     if (FromValue.getLValueBase()) {
9673       assert(!FromValue.getLValueBase().is<DynamicAllocLValue>() &&
9674              "in C++20 dynamic allocation are transient so they shouldn't "
9675              "appear in the AST");
9676       if (!FromValue.getLValueBase().is<TypeInfoLValue>()) {
9677         if (const auto *E =
9678                 FromValue.getLValueBase().dyn_cast<const Expr *>()) {
9679           FromElemTy = E->getType();
9680           const Expr *ImpExpr = importChecked(Err, E);
9681           if (Err)
9682             return std::move(Err);
9683           Base = APValue::LValueBase(ImpExpr,
9684                                      FromValue.getLValueBase().getCallIndex(),
9685                                      FromValue.getLValueBase().getVersion());
9686         } else {
9687           FromElemTy =
9688               FromValue.getLValueBase().get<const ValueDecl *>()->getType();
9689           const Decl *ImpDecl = importChecked(
9690               Err, FromValue.getLValueBase().get<const ValueDecl *>());
9691           if (Err)
9692             return std::move(Err);
9693           Base = APValue::LValueBase(cast<ValueDecl>(ImpDecl),
9694                                      FromValue.getLValueBase().getCallIndex(),
9695                                      FromValue.getLValueBase().getVersion());
9696         }
9697       } else {
9698         FromElemTy = FromValue.getLValueBase().getTypeInfoType();
9699         const Type *ImpTypeInfo = importChecked(
9700             Err, FromValue.getLValueBase().get<TypeInfoLValue>().getType());
9701         QualType ImpType =
9702             importChecked(Err, FromValue.getLValueBase().getTypeInfoType());
9703         if (Err)
9704           return std::move(Err);
9705         Base = APValue::LValueBase::getTypeInfo(TypeInfoLValue(ImpTypeInfo),
9706                                                 ImpType);
9707       }
9708     }
9709     CharUnits Offset = FromValue.getLValueOffset();
9710     unsigned PathLength = FromValue.getLValuePath().size();
9711     Result.MakeLValue();
9712     if (FromValue.hasLValuePath()) {
9713       MutableArrayRef<APValue::LValuePathEntry> ToPath = Result.setLValueUninit(
9714           Base, Offset, PathLength, FromValue.isLValueOnePastTheEnd(),
9715           FromValue.isNullPointer());
9716       llvm::ArrayRef<APValue::LValuePathEntry> FromPath =
9717           FromValue.getLValuePath();
9718       for (unsigned LoopIdx = 0; LoopIdx < PathLength; LoopIdx++) {
9719         if (FromElemTy->isRecordType()) {
9720           const Decl *FromDecl =
9721               FromPath[LoopIdx].getAsBaseOrMember().getPointer();
9722           const Decl *ImpDecl = importChecked(Err, FromDecl);
9723           if (Err)
9724             return std::move(Err);
9725           if (auto *RD = dyn_cast<CXXRecordDecl>(FromDecl))
9726             FromElemTy = Importer.FromContext.getRecordType(RD);
9727           else
9728             FromElemTy = cast<ValueDecl>(FromDecl)->getType();
9729           ToPath[LoopIdx] = APValue::LValuePathEntry(APValue::BaseOrMemberType(
9730               ImpDecl, FromPath[LoopIdx].getAsBaseOrMember().getInt()));
9731         } else {
9732           FromElemTy =
9733               Importer.FromContext.getAsArrayType(FromElemTy)->getElementType();
9734           ToPath[LoopIdx] = APValue::LValuePathEntry::ArrayIndex(
9735               FromPath[LoopIdx].getAsArrayIndex());
9736         }
9737       }
9738     } else
9739       Result.setLValue(Base, Offset, APValue::NoLValuePath{},
9740                        FromValue.isNullPointer());
9741   }
9742   if (Err)
9743     return std::move(Err);
9744   return Result;
9745 }
9746 
9747 Expected<DeclarationName> ASTImporter::HandleNameConflict(DeclarationName Name,
9748                                                           DeclContext *DC,
9749                                                           unsigned IDNS,
9750                                                           NamedDecl **Decls,
9751                                                           unsigned NumDecls) {
9752   if (ODRHandling == ODRHandlingType::Conservative)
9753     // Report error at any name conflict.
9754     return make_error<ImportError>(ImportError::NameConflict);
9755   else
9756     // Allow to create the new Decl with the same name.
9757     return Name;
9758 }
9759 
9760 DiagnosticBuilder ASTImporter::ToDiag(SourceLocation Loc, unsigned DiagID) {
9761   if (LastDiagFromFrom)
9762     ToContext.getDiagnostics().notePriorDiagnosticFrom(
9763       FromContext.getDiagnostics());
9764   LastDiagFromFrom = false;
9765   return ToContext.getDiagnostics().Report(Loc, DiagID);
9766 }
9767 
9768 DiagnosticBuilder ASTImporter::FromDiag(SourceLocation Loc, unsigned DiagID) {
9769   if (!LastDiagFromFrom)
9770     FromContext.getDiagnostics().notePriorDiagnosticFrom(
9771       ToContext.getDiagnostics());
9772   LastDiagFromFrom = true;
9773   return FromContext.getDiagnostics().Report(Loc, DiagID);
9774 }
9775 
9776 void ASTImporter::CompleteDecl (Decl *D) {
9777   if (auto *ID = dyn_cast<ObjCInterfaceDecl>(D)) {
9778     if (!ID->getDefinition())
9779       ID->startDefinition();
9780   }
9781   else if (auto *PD = dyn_cast<ObjCProtocolDecl>(D)) {
9782     if (!PD->getDefinition())
9783       PD->startDefinition();
9784   }
9785   else if (auto *TD = dyn_cast<TagDecl>(D)) {
9786     if (!TD->getDefinition() && !TD->isBeingDefined()) {
9787       TD->startDefinition();
9788       TD->setCompleteDefinition(true);
9789     }
9790   }
9791   else {
9792     assert(0 && "CompleteDecl called on a Decl that can't be completed");
9793   }
9794 }
9795 
9796 Decl *ASTImporter::MapImported(Decl *From, Decl *To) {
9797   llvm::DenseMap<Decl *, Decl *>::iterator Pos = ImportedDecls.find(From);
9798   assert((Pos == ImportedDecls.end() || Pos->second == To) &&
9799       "Try to import an already imported Decl");
9800   if (Pos != ImportedDecls.end())
9801     return Pos->second;
9802   ImportedDecls[From] = To;
9803   // This mapping should be maintained only in this function. Therefore do not
9804   // check for additional consistency.
9805   ImportedFromDecls[To] = From;
9806   // In the case of TypedefNameDecl we create the Decl first and only then we
9807   // import and set its DeclContext. So, the DC is still not set when we reach
9808   // here from GetImportedOrCreateDecl.
9809   if (To->getDeclContext())
9810     AddToLookupTable(To);
9811   return To;
9812 }
9813 
9814 llvm::Optional<ImportError>
9815 ASTImporter::getImportDeclErrorIfAny(Decl *FromD) const {
9816   auto Pos = ImportDeclErrors.find(FromD);
9817   if (Pos != ImportDeclErrors.end())
9818     return Pos->second;
9819   else
9820     return Optional<ImportError>();
9821 }
9822 
9823 void ASTImporter::setImportDeclError(Decl *From, ImportError Error) {
9824   auto InsertRes = ImportDeclErrors.insert({From, Error});
9825   (void)InsertRes;
9826   // Either we set the error for the first time, or we already had set one and
9827   // now we want to set the same error.
9828   assert(InsertRes.second || InsertRes.first->second.Error == Error.Error);
9829 }
9830 
9831 bool ASTImporter::IsStructurallyEquivalent(QualType From, QualType To,
9832                                            bool Complain) {
9833   llvm::DenseMap<const Type *, const Type *>::iterator Pos =
9834       ImportedTypes.find(From.getTypePtr());
9835   if (Pos != ImportedTypes.end()) {
9836     if (ExpectedType ToFromOrErr = Import(From)) {
9837       if (ToContext.hasSameType(*ToFromOrErr, To))
9838         return true;
9839     } else {
9840       llvm::consumeError(ToFromOrErr.takeError());
9841     }
9842   }
9843 
9844   StructuralEquivalenceContext Ctx(FromContext, ToContext, NonEquivalentDecls,
9845                                    getStructuralEquivalenceKind(*this), false,
9846                                    Complain);
9847   return Ctx.IsEquivalent(From, To);
9848 }
9849