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#include " Serialize.h"
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#include " BitcodeWriter.h"
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+ #include " clang/AST/Attr.h"
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#include " clang/AST/Comment.h"
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#include " clang/Index/USRGeneration.h"
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#include " clang/Lex/Lexer.h"
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- #include " llvm/ADT/Hashing.h"
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#include " llvm/ADT/StringExtras.h"
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#include " llvm/Support/SHA1.h"
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@@ -35,6 +35,169 @@ static void populateMemberTypeInfo(RecordInfo &I, AccessSpecifier &Access,
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const DeclaratorDecl *D,
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bool IsStatic = false );
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+ static void getTemplateParameters (const TemplateParameterList *TemplateParams,
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+ llvm::raw_ostream &Stream) {
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+ Stream << " template <" ;
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+
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+ for (unsigned i = 0 ; i < TemplateParams->size (); ++i) {
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+ if (i > 0 )
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+ Stream << " , " ;
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+
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+ const NamedDecl *Param = TemplateParams->getParam (i);
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+ if (const auto *TTP = llvm::dyn_cast<TemplateTypeParmDecl>(Param)) {
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+ if (TTP->wasDeclaredWithTypename ())
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+ Stream << " typename" ;
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+ else
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+ Stream << " class" ;
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+ if (TTP->isParameterPack ())
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+ Stream << " ..." ;
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+ Stream << " " << TTP->getNameAsString ();
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+ } else if (const auto *NTTP =
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+ llvm::dyn_cast<NonTypeTemplateParmDecl>(Param)) {
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+ NTTP->getType ().print (Stream, NTTP->getASTContext ().getPrintingPolicy ());
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+ if (NTTP->isParameterPack ())
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+ Stream << " ..." ;
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+ Stream << " " << NTTP->getNameAsString ();
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+ } else if (const auto *TTPD =
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+ llvm::dyn_cast<TemplateTemplateParmDecl>(Param)) {
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+ Stream << " template <" ;
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+ getTemplateParameters (TTPD->getTemplateParameters (), Stream);
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+ Stream << " > class " << TTPD->getNameAsString ();
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+ }
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+ }
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+
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+ Stream << " > " ;
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+ }
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+
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+ // Extract the full function prototype from a FunctionDecl including
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+ // Full Decl
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+ static llvm::SmallString<256 >
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+ getFunctionPrototype (const FunctionDecl *FuncDecl) {
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+ llvm::SmallString<256 > Result;
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+ llvm::raw_svector_ostream Stream (Result);
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+ const ASTContext &Ctx = FuncDecl->getASTContext ();
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+ const auto *Method = llvm::dyn_cast<CXXMethodDecl>(FuncDecl);
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+ // If it's a templated function, handle the template parameters
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+ if (const auto *TmplDecl = FuncDecl->getDescribedTemplate ())
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+ getTemplateParameters (TmplDecl->getTemplateParameters (), Stream);
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+
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+ // If it's a virtual method
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+ if (Method && Method->isVirtual ())
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+ Stream << " virtual " ;
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+
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+ // Print return type
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+ FuncDecl->getReturnType ().print (Stream, Ctx.getPrintingPolicy ());
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+
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+ // Print function name
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+ Stream << " " << FuncDecl->getNameAsString () << " (" ;
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+
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+ // Print parameter list with types, names, and default values
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+ for (unsigned I = 0 ; I < FuncDecl->getNumParams (); ++I) {
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+ if (I > 0 )
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+ Stream << " , " ;
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+ const ParmVarDecl *ParamDecl = FuncDecl->getParamDecl (I);
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+ QualType ParamType = ParamDecl->getType ();
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+ ParamType.print (Stream, Ctx.getPrintingPolicy ());
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+
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+ // Print parameter name if it has one
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+ if (!ParamDecl->getName ().empty ())
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+ Stream << " " << ParamDecl->getNameAsString ();
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+
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+ // Print default argument if it exists
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+ if (ParamDecl->hasDefaultArg ()) {
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+ const Expr *DefaultArg = ParamDecl->getDefaultArg ();
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+ if (DefaultArg) {
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+ Stream << " = " ;
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+ DefaultArg->printPretty (Stream, nullptr , Ctx.getPrintingPolicy ());
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+ }
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+ }
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+ }
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+
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+ // If it is a variadic function, add '...'
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+ if (FuncDecl->isVariadic ()) {
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+ if (FuncDecl->getNumParams () > 0 )
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+ Stream << " , " ;
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+ Stream << " ..." ;
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+ }
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+
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+ Stream << " )" ;
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+
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+ // If it's a const method, add 'const' qualifier
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+ if (Method) {
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+ if (Method->size_overridden_methods ())
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+ Stream << " override" ;
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+ if (Method->hasAttr <clang::FinalAttr>())
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+ Stream << " final" ;
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+ if (Method->isConst ())
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+ Stream << " const" ;
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+ if (Method->isPureVirtual ())
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+ Stream << " = 0" ;
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+ }
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+ return Result; // Convert SmallString to std::string for return
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+ }
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+
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+ static llvm::SmallString<16 > getTypeAlias (const TypeAliasDecl *Alias) {
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+ llvm::SmallString<16 > Result;
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+ llvm::raw_svector_ostream Stream (Result);
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+ const ASTContext &Ctx = Alias->getASTContext ();
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+ if (const auto *TmplDecl = Alias->getDescribedTemplate ())
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+ getTemplateParameters (TmplDecl->getTemplateParameters (), Stream);
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+ Stream << " using " << Alias->getNameAsString () << " = " ;
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+ QualType Q = Alias->getUnderlyingType ();
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+ Q.print (Stream, Ctx.getPrintingPolicy ());
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+
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+ return Result;
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+ }
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+
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+ // extract full syntax for record declaration
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+ static llvm::SmallString<16 > getRecordPrototype (const CXXRecordDecl *CXXRD) {
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+ llvm::SmallString<16 > Result;
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+ LangOptions LangOpts;
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+ PrintingPolicy Policy (LangOpts);
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+ Policy.SuppressTagKeyword = false ;
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+ Policy.FullyQualifiedName = true ;
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+ Policy.IncludeNewlines = false ;
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+ llvm::raw_svector_ostream OS (Result);
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+ if (const auto *TD = CXXRD->getDescribedClassTemplate ()) {
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+ OS << " template <" ;
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+ bool FirstParam = true ;
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+ for (const auto *Param : *TD->getTemplateParameters ()) {
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+ if (!FirstParam)
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+ OS << " , " ;
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+ Param->print (OS, Policy);
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+ FirstParam = false ;
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+ }
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+ OS << " >\n " ;
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+ }
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+
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+ if (CXXRD->isStruct ())
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+ OS << " struct " ;
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+ else if (CXXRD->isClass ())
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+ OS << " class " ;
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+ else if (CXXRD->isUnion ())
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+ OS << " union " ;
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+
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+ OS << CXXRD->getNameAsString ();
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+
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+ // We need to make sure we have a good enough declaration to check. In the
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+ // case where the class is a forward declaration, we'll fail assertions in
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+ // DeclCXX.
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+ if (CXXRD->isCompleteDefinition () && CXXRD->getNumBases () > 0 ) {
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+ OS << " : " ;
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+ bool FirstBase = true ;
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+ for (const auto &Base : CXXRD->bases ()) {
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+ if (!FirstBase)
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+ OS << " , " ;
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+ if (Base.isVirtual ())
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+ OS << " virtual " ;
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+ OS << getAccessSpelling (Base.getAccessSpecifier ()) << " " ;
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+ OS << Base.getType ().getAsString (Policy);
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+ FirstBase = false ;
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+ }
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+ }
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+ return Result;
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+ }
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+
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// A function to extract the appropriate relative path for a given info's
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// documentation. The path returned is a composite of the parent namespaces.
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//
@@ -408,7 +571,6 @@ static void parseEnumerators(EnumInfo &I, const EnumDecl *D) {
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ASTContext &Context = E->getASTContext ();
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if (RawComment *Comment =
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E->getASTContext ().getRawCommentForDeclNoCache (E)) {
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- CommentInfo CInfo;
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Comment->setAttached ();
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if (comments::FullComment *Fc = Comment->parse (Context, nullptr , E)) {
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EnumValueInfo &Member = I.Members .back ();
@@ -434,6 +596,7 @@ static void parseBases(RecordInfo &I, const CXXRecordDecl *D) {
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// Don't parse bases if this isn't a definition.
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if (!D->isThisDeclarationADefinition ())
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return ;
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+
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for (const CXXBaseSpecifier &B : D->bases ()) {
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if (B.isVirtual ())
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continue ;
@@ -549,6 +712,7 @@ static void populateFunctionInfo(FunctionInfo &I, const FunctionDecl *D,
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populateSymbolInfo (I, D, FC, Loc, IsInAnonymousNamespace);
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auto &LO = D->getLangOpts ();
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I.ReturnType = getTypeInfoForType (D->getReturnType (), LO);
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+ I.Prototype = getFunctionPrototype (D);
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parseParameters (I, D);
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populateTemplateParameters (I.Template , D);
@@ -680,15 +844,19 @@ emitInfo(const NamespaceDecl *D, const FullComment *FC, Location Loc,
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std::pair<std::unique_ptr<Info>, std::unique_ptr<Info>>
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emitInfo (const RecordDecl *D, const FullComment *FC, Location Loc,
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bool PublicOnly) {
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+
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auto RI = std::make_unique<RecordInfo>();
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bool IsInAnonymousNamespace = false ;
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+
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populateSymbolInfo (*RI, D, FC, Loc, IsInAnonymousNamespace);
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if (!shouldSerializeInfo (PublicOnly, IsInAnonymousNamespace, D))
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return {};
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RI->TagType = D->getTagKind ();
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parseFields (*RI, D, PublicOnly);
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+
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if (const auto *C = dyn_cast<CXXRecordDecl>(D)) {
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+ RI->FullName = getRecordPrototype (C);
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if (const TypedefNameDecl *TD = C->getTypedefNameForAnonDecl ()) {
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RI->Name = TD->getNameAsString ();
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RI->IsTypeDef = true ;
@@ -710,11 +878,11 @@ emitInfo(const RecordDecl *D, const FullComment *FC, Location Loc,
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// What this is a specialization of.
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auto SpecOf = CTSD->getSpecializedTemplateOrPartial ();
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- if (auto *CTD = dyn_cast<ClassTemplateDecl *>(SpecOf))
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- Specialization.SpecializationOf = getUSRForDecl (CTD );
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- else if (auto *CTPSD =
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+ if (auto *SpecTD = dyn_cast<ClassTemplateDecl *>(SpecOf))
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+ Specialization.SpecializationOf = getUSRForDecl (SpecTD );
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+ else if (auto *SpecTD =
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dyn_cast<ClassTemplatePartialSpecializationDecl *>(SpecOf))
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- Specialization.SpecializationOf = getUSRForDecl (CTPSD );
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+ Specialization.SpecializationOf = getUSRForDecl (SpecTD );
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// Parameters to the specialization. For partial specializations, get the
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// parameters "as written" from the ClassTemplatePartialSpecializationDecl
@@ -786,25 +954,42 @@ emitInfo(const CXXMethodDecl *D, const FullComment *FC, Location Loc,
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return {nullptr , makeAndInsertIntoParent<FunctionInfo &&>(std::move (Func))};
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}
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+ static void extractCommentFromDecl (const Decl *D, TypedefInfo &Info) {
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+ assert (D && " Invalid Decl when extracting comment" );
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+ ASTContext &Context = D->getASTContext ();
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+ RawComment *Comment = Context.getRawCommentForDeclNoCache (D);
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+ if (!Comment)
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+ return ;
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+
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+ Comment->setAttached ();
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+ if (comments::FullComment *Fc = Comment->parse (Context, nullptr , D)) {
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+ Info.Description .emplace_back ();
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+ parseFullComment (Fc, Info.Description .back ());
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+ }
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+ }
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+
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std::pair<std::unique_ptr<Info>, std::unique_ptr<Info>>
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emitInfo (const TypedefDecl *D, const FullComment *FC, Location Loc,
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bool PublicOnly) {
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TypedefInfo Info;
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bool IsInAnonymousNamespace = false ;
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populateInfo (Info, D, FC, IsInAnonymousNamespace);
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+
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if (!shouldSerializeInfo (PublicOnly, IsInAnonymousNamespace, D))
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return {};
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Info.DefLoc = Loc;
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auto &LO = D->getLangOpts ();
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Info.Underlying = getTypeInfoForType (D->getUnderlyingType (), LO);
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+
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if (Info.Underlying .Type .Name .empty ()) {
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// Typedef for an unnamed type. This is like "typedef struct { } Foo;"
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// The record serializer explicitly checks for this syntax and constructs
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// a record with that name, so we don't want to emit a duplicate here.
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return {};
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}
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Info.IsUsing = false ;
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+ extractCommentFromDecl (D, Info);
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// Info is wrapped in its parent scope so is returned in the second position.
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return {nullptr , makeAndInsertIntoParent<TypedefInfo &&>(std::move (Info))};
@@ -816,17 +1001,19 @@ std::pair<std::unique_ptr<Info>, std::unique_ptr<Info>>
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emitInfo (const TypeAliasDecl *D, const FullComment *FC, Location Loc,
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bool PublicOnly) {
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TypedefInfo Info;
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-
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bool IsInAnonymousNamespace = false ;
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populateInfo (Info, D, FC, IsInAnonymousNamespace);
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if (!shouldSerializeInfo (PublicOnly, IsInAnonymousNamespace, D))
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return {};
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Info.DefLoc = Loc;
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- auto &LO = D->getLangOpts ();
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+ const LangOptions &LO = D->getLangOpts ();
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Info.Underlying = getTypeInfoForType (D->getUnderlyingType (), LO);
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+ Info.TypeDeclaration = getTypeAlias (D);
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Info.IsUsing = true ;
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+ extractCommentFromDecl (D, Info);
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+
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// Info is wrapped in its parent scope so is returned in the second position.
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return {nullptr , makeAndInsertIntoParent<TypedefInfo &&>(std::move (Info))};
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}
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