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APValue.h
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AST.h
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ASTConcept.h
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ASTConsumer.h
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ASTContext.h
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ASTContextAllocate.h
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ASTDiagnostic.h
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ASTDumper.h
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ASTDumperUtils.h
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ASTFwd.h
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ASTImporter.h
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ASTImporterLookupTable.h
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ASTImporterSharedState.h
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ASTLambda.h
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ASTMutationListener.h
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ASTNodeTraverser.h
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ASTStructuralEquivalence.h
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ASTTypeTraits.h
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ASTUnresolvedSet.h
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ASTVector.h
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AbstractBasicReader.h
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AbstractBasicWriter.h
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AbstractTypeReader.h
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AbstractTypeWriter.h
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Attr.h
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AttrIterator.h
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AttrVisitor.h
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Availability.h
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BaseSubobject.h
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BuiltinTypes.def
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CXXInheritance.h
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CXXRecordDeclDefinitionBits.def
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CanonicalType.h
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CharUnits.h
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Comment.h
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CommentBriefParser.h
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CommentCommandTraits.h
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CommentCommands.td
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CommentDiagnostic.h
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CommentHTMLNamedCharacterReferences.td
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CommentHTMLTags.td
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CommentLexer.h
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CommentParser.h
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CommentSema.h
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CommentVisitor.h
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ComparisonCategories.h
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ComputeDependence.h
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CurrentSourceLocExprScope.h
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DataCollection.h
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Decl.h
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DeclAccessPair.h
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DeclBase.h
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DeclCXX.h
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DeclContextInternals.h
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DeclFriend.h
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DeclGroup.h
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DeclLookups.h
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DeclObjC.h
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DeclObjCCommon.h
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DeclOpenMP.h
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DeclTemplate.h
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DeclVisitor.h
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DeclarationName.h
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DependenceFlags.h
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DependentDiagnostic.h
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EvaluatedExprVisitor.h
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Expr.h
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ExprCXX.h
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ExprConcepts.h
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ExprObjC.h
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ExprOpenMP.h
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ExternalASTMerger.h
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ExternalASTSource.h
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FormatString.h
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GlobalDecl.h
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JSONNodeDumper.h
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LambdaCapture.h
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LexicallyOrderedRecursiveASTVisitor.h
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LocInfoType.h
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Mangle.h
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MangleNumberingContext.h
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NSAPI.h
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NestedNameSpecifier.h
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NonTrivialTypeVisitor.h
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ODRHash.h
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OSLog.h
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OpenMPClause.h
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OperationKinds.def
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OperationKinds.h
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OptionalDiagnostic.h
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ParentMap.h
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ParentMapContext.h
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PrettyDeclStackTrace.h
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PrettyPrinter.h
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PropertiesBase.td
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QualTypeNames.h
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RawCommentList.h
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RecordLayout.h
(11.49 KB)
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RecursiveASTVisitor.h
(124.41 KB)
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Redeclarable.h
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SelectorLocationsKind.h
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Stmt.h
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StmtCXX.h
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StmtDataCollectors.td
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StmtGraphTraits.h
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StmtIterator.h
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StmtObjC.h
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StmtOpenMP.h
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StmtVisitor.h
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TemplateArgumentVisitor.h
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TemplateBase.h
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TemplateName.h
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TextNodeDumper.h
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Type.h
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TypeLoc.h
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TypeLocNodes.def
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TypeLocVisitor.h
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TypeOrdering.h
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TypeProperties.td
(25.87 KB)
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TypeVisitor.h
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UnresolvedSet.h
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VTTBuilder.h
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VTableBuilder.h
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Editing: AbstractBasicWriter.h
//==--- AbstractBasicWriter.h - Abstract basic value serialization --------===// // // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. // See https://llvm.org/LICENSE.txt for license information. // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception // //===----------------------------------------------------------------------===// #ifndef CLANG_AST_ABSTRACTBASICWRITER_H #define CLANG_AST_ABSTRACTBASICWRITER_H #include "clang/AST/DeclTemplate.h" namespace clang { namespace serialization { template <class T> inline llvm::Optional<T> makeOptionalFromNullable(const T &value) { return (value.isNull() ? llvm::Optional<T>() : llvm::Optional<T>(value)); } template <class T> inline llvm::Optional<T*> makeOptionalFromPointer(T *value) { return (value ? llvm::Optional<T*>(value) : llvm::Optional<T*>()); } // PropertyWriter is a class concept that requires the following method: // BasicWriter find(llvm::StringRef propertyName); // where BasicWriter is some class conforming to the BasicWriter concept. // An abstract AST-node writer is created with a PropertyWriter and // performs a sequence of calls like so: // propertyWriter.find(propertyName).write##TypeName(value) // to write the properties of the node it is serializing. // BasicWriter is a class concept that requires methods like: // void write##TypeName(ValueType value); // where TypeName is the name of a PropertyType node from PropertiesBase.td // and ValueType is the corresponding C++ type name. // // In addition to the concrete property types, BasicWriter is expected // to implement these methods: // // template <class EnumType> // void writeEnum(T value); // // Writes an enum value as the current property. EnumType will always // be an enum type. Only necessary if the BasicWriter doesn't provide // type-specific writers for all the enum types. // // template <class ValueType> // void writeOptional(Optional<ValueType> value); // // Writes an optional value as the current property. // // template <class ValueType> // void writeArray(ArrayRef<ValueType> value); // // Writes an array of values as the current property. // // PropertyWriter writeObject(); // // Writes an object as the current property; the returned property // writer will be subjected to a sequence of property writes and then // discarded before any other properties are written to the "outer" // property writer (which need not be the same type). The sub-writer // will be used as if with the following code: // // { // auto &&widget = W.find("widget").writeObject(); // widget.find("kind").writeWidgetKind(...); // widget.find("declaration").writeDeclRef(...); // } // WriteDispatcher is a template which does type-based forwarding to one // of the write methods of the BasicWriter passed in: // // template <class ValueType> // struct WriteDispatcher { // template <class BasicWriter> // static void write(BasicWriter &W, ValueType value); // }; // BasicWriterBase provides convenience implementations of the write // methods for EnumPropertyType and SubclassPropertyType types that just // defer to the "underlying" implementations (for UInt32 and the base class, // respectively). // // template <class Impl> // class BasicWriterBase { // protected: // Impl &asImpl(); // public: // ... // }; // The actual classes are auto-generated; see ClangASTPropertiesEmitter.cpp. #include "clang/AST/AbstractBasicWriter.inc" /// DataStreamBasicWriter provides convenience implementations for many /// BasicWriter methods based on the assumption that the /// ultimate writer implementation is based on a variable-length stream /// of unstructured data (like Clang's module files). It is designed /// to pair with DataStreamBasicReader. /// /// This class can also act as a PropertyWriter, implementing find("...") /// by simply forwarding to itself. /// /// Unimplemented methods: /// writeBool /// writeUInt32 /// writeUInt64 /// writeIdentifier /// writeSelector /// writeSourceLocation /// writeQualType /// writeStmtRef /// writeDeclRef template <class Impl> class DataStreamBasicWriter : public BasicWriterBase<Impl> { protected: using BasicWriterBase<Impl>::asImpl; public: /// Implement property-find by ignoring it. We rely on properties being /// serialized and deserialized in a reliable order instead. Impl &find(const char *propertyName) { return asImpl(); } // Implement object writing by forwarding to this, collapsing the // structure into a single data stream. Impl &writeObject() { return asImpl(); } template <class T> void writeEnum(T value) { asImpl().writeUInt32(uint32_t(value)); } template <class T> void writeArray(llvm::ArrayRef<T> array) { asImpl().writeUInt32(array.size()); for (const T &elt : array) { WriteDispatcher<T>::write(asImpl(), elt); } } template <class T> void writeOptional(llvm::Optional<T> value) { WriteDispatcher<T>::write(asImpl(), PackOptionalValue<T>::pack(value)); } void writeAPSInt(const llvm::APSInt &value) { asImpl().writeBool(value.isUnsigned()); asImpl().writeAPInt(value); } void writeAPInt(const llvm::APInt &value) { asImpl().writeUInt32(value.getBitWidth()); const uint64_t *words = value.getRawData(); for (size_t i = 0, e = value.getNumWords(); i != e; ++i) asImpl().writeUInt64(words[i]); } void writeQualifiers(Qualifiers value) { static_assert(sizeof(value.getAsOpaqueValue()) <= sizeof(uint32_t), "update this if the value size changes"); asImpl().writeUInt32(value.getAsOpaqueValue()); } void writeExceptionSpecInfo( const FunctionProtoType::ExceptionSpecInfo &esi) { asImpl().writeUInt32(uint32_t(esi.Type)); if (esi.Type == EST_Dynamic) { asImpl().writeArray(esi.Exceptions); } else if (isComputedNoexcept(esi.Type)) { asImpl().writeExprRef(esi.NoexceptExpr); } else if (esi.Type == EST_Uninstantiated) { asImpl().writeDeclRef(esi.SourceDecl); asImpl().writeDeclRef(esi.SourceTemplate); } else if (esi.Type == EST_Unevaluated) { asImpl().writeDeclRef(esi.SourceDecl); } } void writeExtParameterInfo(FunctionProtoType::ExtParameterInfo epi) { static_assert(sizeof(epi.getOpaqueValue()) <= sizeof(uint32_t), "opaque value doesn't fit into uint32_t"); asImpl().writeUInt32(epi.getOpaqueValue()); } void writeNestedNameSpecifier(NestedNameSpecifier *NNS) { // Nested name specifiers usually aren't too long. I think that 8 would // typically accommodate the vast majority. SmallVector<NestedNameSpecifier *, 8> nestedNames; // Push each of the NNS's onto a stack for serialization in reverse order. while (NNS) { nestedNames.push_back(NNS); NNS = NNS->getPrefix(); } asImpl().writeUInt32(nestedNames.size()); while (!nestedNames.empty()) { NNS = nestedNames.pop_back_val(); NestedNameSpecifier::SpecifierKind kind = NNS->getKind(); asImpl().writeNestedNameSpecifierKind(kind); switch (kind) { case NestedNameSpecifier::Identifier: asImpl().writeIdentifier(NNS->getAsIdentifier()); continue; case NestedNameSpecifier::Namespace: asImpl().writeNamespaceDeclRef(NNS->getAsNamespace()); continue; case NestedNameSpecifier::NamespaceAlias: asImpl().writeNamespaceAliasDeclRef(NNS->getAsNamespaceAlias()); continue; case NestedNameSpecifier::TypeSpec: case NestedNameSpecifier::TypeSpecWithTemplate: asImpl().writeQualType(QualType(NNS->getAsType(), 0)); continue; case NestedNameSpecifier::Global: // Don't need to write an associated value. continue; case NestedNameSpecifier::Super: asImpl().writeDeclRef(NNS->getAsRecordDecl()); continue; } llvm_unreachable("bad nested name specifier kind"); } } }; } // end namespace serialization } // end namespace clang #endif
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