mirror of
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611 lines
21 KiB
C++
611 lines
21 KiB
C++
//===--- Symbol.cpp - Symbol Graph Node -----------------------------------===//
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//
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// This source file is part of the Swift.org open source project
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//
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// Copyright (c) 2014 - 2017 Apple Inc. and the Swift project authors
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// Licensed under Apache License v2.0 with Runtime Library Exception
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//
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// See https://swift.org/LICENSE.txt for license information
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// See https://swift.org/CONTRIBUTORS.txt for the list of Swift project authors
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//
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//===----------------------------------------------------------------------===//
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#include "swift/AST/ASTContext.h"
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#include "swift/AST/Comment.h"
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#include "swift/AST/Module.h"
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#include "swift/AST/ParameterList.h"
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#include "swift/AST/RawComment.h"
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#include "swift/AST/USRGeneration.h"
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#include "swift/Basic/SourceManager.h"
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#include "AvailabilityMixin.h"
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#include "JSON.h"
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#include "Symbol.h"
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#include "SymbolGraph.h"
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#include "SymbolGraphASTWalker.h"
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#include "DeclarationFragmentPrinter.h"
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using namespace swift;
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using namespace symbolgraphgen;
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Symbol::Symbol(SymbolGraph *Graph, const ValueDecl *VD,
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const NominalTypeDecl *SynthesizedBaseTypeDecl,
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Type BaseType)
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: Graph(Graph),
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VD(VD),
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BaseType(BaseType),
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SynthesizedBaseTypeDecl(SynthesizedBaseTypeDecl) {
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if (!BaseType && SynthesizedBaseTypeDecl)
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BaseType = SynthesizedBaseTypeDecl->getDeclaredInterfaceType();
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}
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void Symbol::serializeKind(StringRef Identifier, StringRef DisplayName,
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llvm::json::OStream &OS) const {
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OS.object([&](){
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OS.attribute("identifier", Identifier);
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OS.attribute("displayName", DisplayName);
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});
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}
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std::pair<StringRef, StringRef> Symbol::getKind(const ValueDecl *VD) const {
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// Make sure supportsKind stays in sync with getKind.
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assert(Symbol::supportsKind(VD->getKind()) && "unsupported decl kind");
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switch (VD->getKind()) {
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case swift::DeclKind::Class:
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return {"swift.class", "Class"};
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case swift::DeclKind::Struct:
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return {"swift.struct", "Structure"};
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case swift::DeclKind::Enum:
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return {"swift.enum", "Enumeration"};
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case swift::DeclKind::EnumElement:
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return {"swift.enum.case", "Case"};
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case swift::DeclKind::Protocol:
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return {"swift.protocol", "Protocol"};
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case swift::DeclKind::Constructor:
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return {"swift.init", "Initializer"};
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case swift::DeclKind::Destructor:
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return {"swift.deinit", "Deinitializer"};
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case swift::DeclKind::Func:
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if (VD->isOperator())
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return {"swift.func.op", "Operator"};
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if (VD->isStatic())
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return {"swift.type.method", "Type Method"};
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if (VD->getDeclContext()->getSelfNominalTypeDecl())
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return {"swift.method", "Instance Method"};
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return {"swift.func", "Function"};
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case swift::DeclKind::Var:
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if (VD->isStatic())
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return {"swift.type.property", "Type Property"};
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if (VD->getDeclContext()->getSelfNominalTypeDecl())
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return {"swift.property", "Instance Property"};
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return {"swift.var", "Global Variable"};
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case swift::DeclKind::Subscript:
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if (VD->isStatic())
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return {"swift.type.subscript", "Type Subscript"};
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return {"swift.subscript", "Instance Subscript"};
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case swift::DeclKind::TypeAlias:
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return {"swift.typealias", "Type Alias"};
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case swift::DeclKind::AssociatedType:
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return {"swift.associatedtype", "Associated Type"};
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default:
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llvm::errs() << "Unsupported kind: " << VD->getKindName(VD->getKind());
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llvm_unreachable("Unsupported declaration kind for symbol graph");
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}
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}
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void Symbol::serializeKind(llvm::json::OStream &OS) const {
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AttributeRAII A("kind", OS);
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std::pair<StringRef, StringRef> IDAndName = getKind(VD);
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serializeKind(IDAndName.first, IDAndName.second, OS);
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}
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void Symbol::serializeIdentifier(llvm::json::OStream &OS) const {
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OS.attributeObject("identifier", [&](){
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SmallString<256> USR;
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getUSR(USR);
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OS.attribute("precise", USR.str());
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OS.attribute("interfaceLanguage", "swift");
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});
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}
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void Symbol::serializePathComponents(llvm::json::OStream &OS) const {
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OS.attributeArray("pathComponents", [&](){
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SmallVector<PathComponent, 8> PathComponents;
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getPathComponents(PathComponents);
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for (auto Component : PathComponents) {
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OS.value(Component.Title);
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}
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});
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}
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void Symbol::serializeNames(llvm::json::OStream &OS) const {
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OS.attributeObject("names", [&](){
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SmallVector<PathComponent, 8> PathComponents;
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getPathComponents(PathComponents);
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if (isa<GenericTypeDecl>(VD) || isa<EnumElementDecl>(VD)) {
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SmallString<64> FullyQualifiedTitle;
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for (const auto *It = PathComponents.begin(); It != PathComponents.end(); ++It) {
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if (It != PathComponents.begin()) {
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FullyQualifiedTitle.push_back('.');
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}
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FullyQualifiedTitle.append(It->Title);
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}
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OS.attribute("title", FullyQualifiedTitle.str());
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} else {
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OS.attribute("title", PathComponents.back().Title);
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}
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Graph->serializeNavigatorDeclarationFragments("navigator", *this, OS);
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Graph->serializeSubheadingDeclarationFragments("subHeading", *this, OS);
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// "prose": null
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});
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}
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void Symbol::serializePosition(StringRef Key, SourceLoc Loc,
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SourceManager &SourceMgr,
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llvm::json::OStream &OS) const {
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// Note: Line and columns are zero-based in this serialized format.
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auto LineAndColumn = SourceMgr.getPresumedLineAndColumnForLoc(Loc);
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auto Line = LineAndColumn.first - 1;
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auto Column = LineAndColumn.second - 1;
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OS.attributeObject(Key, [&](){
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OS.attribute("line", Line);
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OS.attribute("character", Column);
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});
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}
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void Symbol::serializeRange(size_t InitialIndentation,
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SourceRange Range, SourceManager &SourceMgr,
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llvm::json::OStream &OS) const {
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OS.attributeObject("range", [&](){
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// Note: Line and columns in the serialized format are zero-based.
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auto Start = Range.Start.getAdvancedLoc(InitialIndentation);
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serializePosition("start", Start, SourceMgr, OS);
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auto End = SourceMgr.isBeforeInBuffer(Range.End, Start)
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? Start
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: Range.End;
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serializePosition("end", End, SourceMgr, OS);
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});
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}
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const ValueDecl *Symbol::getDeclInheritingDocs() const {
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// get the decl that would provide docs for this symbol
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const auto *DocCommentProvidingDecl =
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dyn_cast_or_null<ValueDecl>(
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getDocCommentProvidingDecl(VD, /*AllowSerialized=*/true));
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// if the decl is the same as the one for this symbol, we're not
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// inheriting docs, so return null. however, if this symbol is
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// a synthesized symbol, `VD` is actually the source symbol, and
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// we should point to that one regardless.
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if (DocCommentProvidingDecl == VD && !SynthesizedBaseTypeDecl) {
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return nullptr;
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} else {
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// otherwise, return whatever `getDocCommentProvidingDecl` returned.
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// it will be null if there are no decls that provide docs for this
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// symbol.
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return DocCommentProvidingDecl;
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}
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}
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void Symbol::serializeDocComment(llvm::json::OStream &OS) const {
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const auto *DocCommentProvidingDecl = VD;
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if (!Graph->Walker.Options.SkipInheritedDocs) {
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DocCommentProvidingDecl = dyn_cast_or_null<ValueDecl>(
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getDocCommentProvidingDecl(VD, /*AllowSerialized=*/true));
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if (!DocCommentProvidingDecl) {
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DocCommentProvidingDecl = VD;
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}
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}
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auto RC = DocCommentProvidingDecl->getRawComment(/*SerializedOK=*/true);
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if (RC.isEmpty()) {
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return;
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}
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OS.attributeObject("docComment", [&](){
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auto LL = Graph->Ctx.getLineList(RC);
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StringRef FirstNonBlankLine;
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for (const auto &Line : LL.getLines()) {
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if (!Line.Text.empty()) {
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FirstNonBlankLine = Line.Text;
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break;
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}
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}
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size_t InitialIndentation = FirstNonBlankLine.empty()
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? 0
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: markup::measureIndentation(FirstNonBlankLine);
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OS.attributeArray("lines", [&](){
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for (const auto &Line : LL.getLines()) {
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// Line object
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OS.object([&](){
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// Trim off any initial indentation from the line's
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// text and start of its source range, if it has one.
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if (Line.Range.isValid()) {
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serializeRange(std::min(InitialIndentation,
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Line.FirstNonspaceOffset),
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Line.Range, Graph->M.getASTContext().SourceMgr, OS);
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}
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auto TrimmedLine = Line.Text.drop_front(std::min(InitialIndentation,
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Line.FirstNonspaceOffset));
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OS.attribute("text", TrimmedLine);
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});
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}
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}); // end lines: []
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}); // end docComment:
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}
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void Symbol::serializeFunctionSignature(llvm::json::OStream &OS) const {
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if (const auto *FD = dyn_cast_or_null<FuncDecl>(VD)) {
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OS.attributeObject("functionSignature", [&](){
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// Parameters
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if (const auto *ParamList = FD->getParameters()) {
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if (ParamList->size()) {
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OS.attributeArray("parameters", [&](){
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for (const auto *Param : *ParamList) {
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auto ExternalName = Param->getArgumentName().str();
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auto InternalName = Param->getParameterName().str();
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OS.object([&](){
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if (ExternalName.empty()) {
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OS.attribute("name", InternalName);
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} else {
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OS.attribute("name", ExternalName);
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if (ExternalName != InternalName &&
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!InternalName.empty()) {
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OS.attribute("internalName", InternalName);
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}
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}
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Graph->serializeDeclarationFragments("declarationFragments",
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Symbol(Graph, Param,
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getSynthesizedBaseTypeDecl(),
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getBaseType()), OS);
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}); // end parameter object
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}
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}); // end parameters:
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}
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}
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// Returns
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if (const auto ReturnType = FD->getResultInterfaceType()) {
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Graph->serializeDeclarationFragments("returns", ReturnType, BaseType,
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OS);
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}
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});
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}
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}
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static SubstitutionMap getSubMapForDecl(const ValueDecl *D, Type BaseType) {
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if (!BaseType || BaseType->isExistentialType())
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return {};
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// Map from the base type into the this declaration's innermost type context,
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// or if we're dealing with an extention rather than a member, into its
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// extended nominal (the extension's own requirements shouldn't be considered
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// in the substitution).
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swift::DeclContext *DC;
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if (isa<swift::ExtensionDecl>(D))
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DC = cast<swift::ExtensionDecl>(D)->getExtendedNominal();
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else
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DC = D->getInnermostDeclContext()->getInnermostTypeContext();
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swift::ModuleDecl *M = DC->getParentModule();
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if (isa<swift::NominalTypeDecl>(D) || isa<swift::ExtensionDecl>(D)) {
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return BaseType->getContextSubstitutionMap(M, DC);
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}
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const swift::ValueDecl *SubTarget = D;
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if (isa<swift::ParamDecl>(D)) {
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auto *DC = D->getDeclContext();
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if (auto *FD = dyn_cast<swift::AbstractFunctionDecl>(DC))
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SubTarget = FD;
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}
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return BaseType->getMemberSubstitutionMap(M, SubTarget);
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}
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void Symbol::serializeSwiftGenericMixin(llvm::json::OStream &OS) const {
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SubstitutionMap SubMap;
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if (BaseType)
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SubMap = getSubMapForDecl(VD, BaseType);
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if (const auto *GC = VD->getAsGenericContext()) {
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if (const auto Generics = GC->getGenericSignature()) {
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SmallVector<const GenericTypeParamType *, 4> FilteredParams;
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SmallVector<Requirement, 4> FilteredRequirements;
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filterGenericParams(Generics->getGenericParams(), FilteredParams,
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SubMap);
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const auto *Self = dyn_cast<NominalTypeDecl>(VD);
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if (!Self) {
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Self = VD->getDeclContext()->getSelfNominalTypeDecl();
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}
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filterGenericRequirements(Generics->getRequirements(), Self,
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FilteredRequirements, SubMap, FilteredParams);
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if (FilteredParams.empty() && FilteredRequirements.empty()) {
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return;
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}
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OS.attributeObject("swiftGenerics", [&](){
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if (!FilteredParams.empty()) {
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OS.attributeArray("parameters", [&](){
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for (const auto *Param : FilteredParams) {
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::serialize(Param, OS);
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}
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}); // end parameters:
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}
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if (!FilteredRequirements.empty()) {
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OS.attributeArray("constraints", [&](){
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for (const auto &Req : FilteredRequirements) {
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::serialize(Req, OS);
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}
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}); // end constraints:
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}
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}); // end swiftGenerics:
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}
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}
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}
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void Symbol::serializeSwiftExtensionMixin(llvm::json::OStream &OS) const {
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if (const auto *Extension
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= dyn_cast_or_null<ExtensionDecl>(VD->getDeclContext())) {
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::serialize(Extension, OS);
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}
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}
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void Symbol::serializeDeclarationFragmentMixin(llvm::json::OStream &OS) const {
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Graph->serializeDeclarationFragments("declarationFragments", *this, OS);
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}
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void Symbol::serializeAccessLevelMixin(llvm::json::OStream &OS) const {
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OS.attribute("accessLevel", getAccessLevelSpelling(VD->getFormalAccess()));
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}
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void Symbol::serializeLocationMixin(llvm::json::OStream &OS) const {
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auto Loc = VD->getLoc(/*SerializedOK=*/true);
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if (Loc.isInvalid()) {
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return;
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}
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auto FileName = VD->getASTContext().SourceMgr.getDisplayNameForLoc(Loc);
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if (FileName.empty()) {
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return;
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}
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OS.attributeObject("location", [&](){
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SmallString<1024> FileURI("file://");
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FileURI.append(FileName);
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OS.attribute("uri", FileURI.str());
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serializePosition("position", Loc, Graph->M.getASTContext().SourceMgr, OS);
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});
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}
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namespace {
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/// Get the availabilities for each domain on a declaration without walking
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/// up the parent hierarchy.
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///
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/// \param D The declaration whose availabilities the method will collect.
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/// \param Availabilities The domain -> availability map that will be updated.
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/// \param IsParent If \c true\c, will update or fill availabilities for a given
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/// domain with different "inheriting" rules rather than filling from
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/// duplicate \c \@available attributes on the same declaration.
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void getAvailabilities(const Decl *D,
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llvm::StringMap<Availability> &Availabilities,
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bool IsParent) {
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// DeclAttributes is a linked list in reverse order from where they
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// appeared in the source. Let's re-reverse them.
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SmallVector<const AvailableAttr *, 4> AvAttrs;
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for (const auto *Attr : D->getAttrs()) {
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if (const auto *AvAttr = dyn_cast<AvailableAttr>(Attr)) {
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AvAttrs.push_back(AvAttr);
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}
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}
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std::reverse(AvAttrs.begin(), AvAttrs.end());
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// Now go through them in source order.
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for (auto *AvAttr : AvAttrs) {
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Availability NewAvailability(*AvAttr);
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if (NewAvailability.empty()) {
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continue;
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}
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auto ExistingAvailability = Availabilities.find(NewAvailability.Domain);
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if (ExistingAvailability != Availabilities.end()) {
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// There are different rules for filling in missing components
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// or replacing existing components from a parent's @available
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// attribute compared to duplicate @available attributes on the
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// same declaration.
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// See the respective methods below for an explanation for the
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// replacement/filling rules.
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if (IsParent) {
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ExistingAvailability->getValue().updateFromParent(NewAvailability);
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} else {
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ExistingAvailability->getValue().updateFromDuplicate(NewAvailability);
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}
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} else {
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// There are no availabilities for this domain yet, so either
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// inherit the parent's in its entirety or set it from this declaration.
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Availabilities.insert(std::make_pair(NewAvailability.Domain,
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NewAvailability));
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}
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}
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}
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/// Get the availabilities of a declaration, considering all of its
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/// parent context's except for the module.
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void getInheritedAvailabilities(const Decl *D,
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llvm::StringMap<Availability> &Availabilities) {
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getAvailabilities(D, Availabilities, /*IsParent*/false);
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auto CurrentContext = D->getDeclContext();
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while (CurrentContext) {
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if (const auto *Parent = CurrentContext->getAsDecl()) {
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if (isa<ModuleDecl>(Parent)) {
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return;
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}
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getAvailabilities(Parent, Availabilities, /*IsParent*/true);
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}
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CurrentContext = CurrentContext->getParent();
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}
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}
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} // end anonymous namespace
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void Symbol::serializeAvailabilityMixin(llvm::json::OStream &OS) const {
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llvm::StringMap<Availability> Availabilities;
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getInheritedAvailabilities(VD, Availabilities);
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if (Availabilities.empty()) {
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return;
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}
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OS.attributeArray("availability", [&]{
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for (const auto &Availability : Availabilities) {
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Availability.getValue().serialize(OS);
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}
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});
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}
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void Symbol::serialize(llvm::json::OStream &OS) const {
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OS.object([&](){
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serializeKind(OS);
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serializeIdentifier(OS);
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serializePathComponents(OS);
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serializeNames(OS);
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serializeDocComment(OS);
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// "Mixins"
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serializeFunctionSignature(OS);
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serializeSwiftGenericMixin(OS);
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serializeSwiftExtensionMixin(OS);
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serializeDeclarationFragmentMixin(OS);
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serializeAccessLevelMixin(OS);
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serializeAvailabilityMixin(OS);
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serializeLocationMixin(OS);
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});
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}
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void
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Symbol::getPathComponents(SmallVectorImpl<PathComponent> &Components) const {
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// Note: this is also used for sourcekit's cursor-info request, so can be
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// called on local symbols too. For such symbols, the path contains all parent
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// decl contexts that are currently representable in the symbol graph,
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// skipping over the rest (e.g. containing closures and accessors).
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auto collectPathComponents = [&](const ValueDecl *Decl,
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SmallVectorImpl<PathComponent> &DeclComponents) {
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// Collect the spellings, kinds, and decls of the fully qualified identifier
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// components.
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while (Decl && !isa<ModuleDecl>(Decl)) {
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SmallString<32> Scratch;
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Decl->getName().getString(Scratch);
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if (supportsKind(Decl->getKind()))
|
|
DeclComponents.push_back({Scratch, getKind(Decl).first, Decl});
|
|
|
|
// Find the next parent.
|
|
auto *DC = Decl->getDeclContext();
|
|
while (DC && DC->getContextKind() == DeclContextKind::AbstractClosureExpr)
|
|
DC = DC->getParent();
|
|
if (DC) {
|
|
if (const auto *Nominal = DC->getSelfNominalTypeDecl()) {
|
|
Decl = Nominal;
|
|
} else {
|
|
Decl = dyn_cast_or_null<ValueDecl>(DC->getAsDecl());
|
|
}
|
|
} else {
|
|
Decl = nullptr;
|
|
}
|
|
}
|
|
};
|
|
|
|
if (const auto BaseTypeDecl = getSynthesizedBaseTypeDecl()) {
|
|
// This is a synthesized member of some base type declaration, actually
|
|
// existing on another type, such as a default implementation of
|
|
// a protocol. Build a path as if it were defined in the base type.
|
|
SmallString<32> LastPathComponent;
|
|
VD->getName().getString(LastPathComponent);
|
|
if (supportsKind(VD->getKind()))
|
|
Components.push_back({LastPathComponent, getKind(VD).first, VD});
|
|
collectPathComponents(BaseTypeDecl, Components);
|
|
} else {
|
|
// Otherwise, this is just a normal declaration, so we can build
|
|
// its path normally.
|
|
collectPathComponents(VD, Components);
|
|
}
|
|
|
|
// The list is leaf-to-root, but we want root-to-leaf, so reverse it.
|
|
std::reverse(Components.begin(), Components.end());
|
|
}
|
|
|
|
void Symbol::
|
|
getFragmentInfo(SmallVectorImpl<FragmentInfo> &FragmentInfos) const {
|
|
SmallPtrSet<const Decl*, 8> Referenced;
|
|
|
|
auto Options = Graph->getDeclarationFragmentsPrintOptions();
|
|
if (getBaseType()) {
|
|
Options.setBaseType(getBaseType());
|
|
Options.PrintAsMember = true;
|
|
}
|
|
|
|
llvm::json::OStream OS(llvm::nulls());
|
|
OS.object([&]{
|
|
DeclarationFragmentPrinter Printer(Graph, OS, {"ignored"}, &Referenced);
|
|
getSymbolDecl()->print(Printer, Options);
|
|
});
|
|
|
|
for (auto *D: Referenced) {
|
|
if (!Symbol::supportsKind(D->getKind()))
|
|
continue;
|
|
if (auto *VD = dyn_cast<ValueDecl>(D)) {
|
|
FragmentInfos.push_back(FragmentInfo{VD, {}});
|
|
Symbol RefSym(Graph, VD, nullptr);
|
|
RefSym.getPathComponents(FragmentInfos.back().ParentContexts);
|
|
}
|
|
}
|
|
}
|
|
|
|
void Symbol::printPath(llvm::raw_ostream &OS) const {
|
|
SmallVector<PathComponent, 8> Components;
|
|
getPathComponents(Components);
|
|
for (auto it = Components.begin(); it != Components.end(); ++it) {
|
|
if (it != Components.begin()) {
|
|
OS << '.';
|
|
}
|
|
OS << it->Title.str();
|
|
}
|
|
}
|
|
|
|
void Symbol::getUSR(SmallVectorImpl<char> &USR) const {
|
|
llvm::raw_svector_ostream OS(USR);
|
|
ide::printDeclUSR(VD, OS);
|
|
if (SynthesizedBaseTypeDecl) {
|
|
OS << "::SYNTHESIZED::";
|
|
ide::printDeclUSR(SynthesizedBaseTypeDecl, OS);
|
|
}
|
|
}
|
|
|
|
bool Symbol::supportsKind(DeclKind Kind) {
|
|
switch (Kind) {
|
|
case DeclKind::Class: LLVM_FALLTHROUGH;
|
|
case DeclKind::Struct: LLVM_FALLTHROUGH;
|
|
case DeclKind::Enum: LLVM_FALLTHROUGH;
|
|
case DeclKind::EnumElement: LLVM_FALLTHROUGH;
|
|
case DeclKind::Protocol: LLVM_FALLTHROUGH;
|
|
case DeclKind::Constructor: LLVM_FALLTHROUGH;
|
|
case DeclKind::Destructor: LLVM_FALLTHROUGH;
|
|
case DeclKind::Func: LLVM_FALLTHROUGH;
|
|
case DeclKind::Var: LLVM_FALLTHROUGH;
|
|
case DeclKind::Subscript: LLVM_FALLTHROUGH;
|
|
case DeclKind::TypeAlias: LLVM_FALLTHROUGH;
|
|
case DeclKind::AssociatedType:
|
|
return true;
|
|
default:
|
|
return false;
|
|
}
|
|
}
|