clang 20.0.0 (based on r547379) from build 12806354. Bug: http://b/379133546 Test: N/A Change-Id: I2eb8938af55d809de674be63cb30cf27e801862b Upstream-Commit: ad834e67b1105d15ef907f6255d4c96e8e733f57
613 lines
21 KiB
C++
613 lines
21 KiB
C++
//===- TemplateName.h - C++ Template Name Representation --------*- C++ -*-===//
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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// See https://llvm.org/LICENSE.txt for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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//
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//===----------------------------------------------------------------------===//
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//
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// This file defines the TemplateName interface and subclasses.
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//
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//===----------------------------------------------------------------------===//
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#ifndef LLVM_CLANG_AST_TEMPLATENAME_H
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#define LLVM_CLANG_AST_TEMPLATENAME_H
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#include "clang/AST/DependenceFlags.h"
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#include "clang/AST/NestedNameSpecifier.h"
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#include "clang/Basic/LLVM.h"
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#include "llvm/ADT/FoldingSet.h"
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#include "llvm/ADT/PointerIntPair.h"
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#include "llvm/ADT/PointerUnion.h"
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#include "llvm/Support/PointerLikeTypeTraits.h"
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#include <cassert>
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#include <optional>
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namespace clang {
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class ASTContext;
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class Decl;
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class DependentTemplateName;
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class IdentifierInfo;
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class NamedDecl;
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class NestedNameSpecifier;
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enum OverloadedOperatorKind : int;
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class OverloadedTemplateStorage;
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class AssumedTemplateStorage;
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struct PrintingPolicy;
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class QualifiedTemplateName;
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class SubstTemplateTemplateParmPackStorage;
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class SubstTemplateTemplateParmStorage;
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class TemplateArgument;
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class TemplateDecl;
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class TemplateTemplateParmDecl;
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class UsingShadowDecl;
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/// Implementation class used to describe either a set of overloaded
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/// template names or an already-substituted template template parameter pack.
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class UncommonTemplateNameStorage {
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protected:
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enum Kind {
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Overloaded,
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Assumed, // defined in DeclarationName.h
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SubstTemplateTemplateParm,
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SubstTemplateTemplateParmPack
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};
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struct BitsTag {
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LLVM_PREFERRED_TYPE(Kind)
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unsigned Kind : 2;
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// The template parameter index.
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unsigned Index : 15;
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/// The pack index, or the number of stored templates
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/// or template arguments, depending on which subclass we have.
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unsigned Data : 15;
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};
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union {
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struct BitsTag Bits;
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void *PointerAlignment;
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};
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UncommonTemplateNameStorage(Kind Kind, unsigned Index, unsigned Data) {
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Bits.Kind = Kind;
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Bits.Index = Index;
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Bits.Data = Data;
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}
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public:
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OverloadedTemplateStorage *getAsOverloadedStorage() {
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return Bits.Kind == Overloaded
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? reinterpret_cast<OverloadedTemplateStorage *>(this)
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: nullptr;
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}
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AssumedTemplateStorage *getAsAssumedTemplateName() {
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return Bits.Kind == Assumed
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? reinterpret_cast<AssumedTemplateStorage *>(this)
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: nullptr;
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}
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SubstTemplateTemplateParmStorage *getAsSubstTemplateTemplateParm() {
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return Bits.Kind == SubstTemplateTemplateParm
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? reinterpret_cast<SubstTemplateTemplateParmStorage *>(this)
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: nullptr;
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}
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SubstTemplateTemplateParmPackStorage *getAsSubstTemplateTemplateParmPack() {
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return Bits.Kind == SubstTemplateTemplateParmPack
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? reinterpret_cast<SubstTemplateTemplateParmPackStorage *>(this)
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: nullptr;
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}
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};
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/// A structure for storing the information associated with an
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/// overloaded template name.
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class OverloadedTemplateStorage : public UncommonTemplateNameStorage {
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friend class ASTContext;
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OverloadedTemplateStorage(unsigned size)
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: UncommonTemplateNameStorage(Overloaded, 0, size) {}
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NamedDecl **getStorage() {
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return reinterpret_cast<NamedDecl **>(this + 1);
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}
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NamedDecl * const *getStorage() const {
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return reinterpret_cast<NamedDecl *const *>(this + 1);
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}
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public:
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unsigned size() const { return Bits.Data; }
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using iterator = NamedDecl *const *;
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iterator begin() const { return getStorage(); }
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iterator end() const { return getStorage() + Bits.Data; }
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llvm::ArrayRef<NamedDecl*> decls() const {
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return llvm::ArrayRef(begin(), end());
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}
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};
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/// A structure for storing an already-substituted template template
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/// parameter pack.
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///
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/// This kind of template names occurs when the parameter pack has been
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/// provided with a template template argument pack in a context where its
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/// enclosing pack expansion could not be fully expanded.
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class SubstTemplateTemplateParmPackStorage : public UncommonTemplateNameStorage,
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public llvm::FoldingSetNode {
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const TemplateArgument *Arguments;
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llvm::PointerIntPair<Decl *, 1, bool> AssociatedDeclAndFinal;
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public:
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SubstTemplateTemplateParmPackStorage(ArrayRef<TemplateArgument> ArgPack,
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Decl *AssociatedDecl, unsigned Index,
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bool Final);
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/// A template-like entity which owns the whole pattern being substituted.
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/// This will own a set of template parameters.
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Decl *getAssociatedDecl() const;
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/// Returns the index of the replaced parameter in the associated declaration.
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/// This should match the result of `getParameterPack()->getIndex()`.
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unsigned getIndex() const { return Bits.Index; }
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// When true the substitution will be 'Final' (subst node won't be placed).
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bool getFinal() const;
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/// Retrieve the template template parameter pack being substituted.
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TemplateTemplateParmDecl *getParameterPack() const;
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/// Retrieve the template template argument pack with which this
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/// parameter was substituted.
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TemplateArgument getArgumentPack() const;
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void Profile(llvm::FoldingSetNodeID &ID, ASTContext &Context);
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static void Profile(llvm::FoldingSetNodeID &ID, ASTContext &Context,
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const TemplateArgument &ArgPack, Decl *AssociatedDecl,
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unsigned Index, bool Final);
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};
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/// Represents a C++ template name within the type system.
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///
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/// A C++ template name refers to a template within the C++ type
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/// system. In most cases, a template name is simply a reference to a
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/// class template, e.g.
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///
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/// \code
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/// template<typename T> class X { };
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///
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/// X<int> xi;
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/// \endcode
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///
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/// Here, the 'X' in \c X<int> is a template name that refers to the
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/// declaration of the class template X, above. Template names can
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/// also refer to function templates, C++0x template aliases, etc.
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///
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/// Some template names are dependent. For example, consider:
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///
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/// \code
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/// template<typename MetaFun, typename T1, typename T2> struct apply2 {
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/// typedef typename MetaFun::template apply<T1, T2>::type type;
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/// };
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/// \endcode
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///
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/// Here, "apply" is treated as a template name within the typename
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/// specifier in the typedef. "apply" is a nested template, and can
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/// only be understood in the context of a template instantiation,
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/// hence is represented as a dependent template name.
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class TemplateName {
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// NameDecl is either a TemplateDecl or a UsingShadowDecl depending on the
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// NameKind.
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// !! There is no free low bits in 32-bit builds to discriminate more than 4
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// pointer types in PointerUnion.
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using StorageType =
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llvm::PointerUnion<Decl *, UncommonTemplateNameStorage *,
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QualifiedTemplateName *, DependentTemplateName *>;
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StorageType Storage;
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explicit TemplateName(void *Ptr);
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public:
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// Kind of name that is actually stored.
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enum NameKind {
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/// A single template declaration.
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Template,
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/// A set of overloaded template declarations.
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OverloadedTemplate,
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/// An unqualified-id that has been assumed to name a function template
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/// that will be found by ADL.
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AssumedTemplate,
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/// A qualified template name, where the qualification is kept
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/// to describe the source code as written.
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QualifiedTemplate,
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/// A dependent template name that has not been resolved to a
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/// template (or set of templates).
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DependentTemplate,
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/// A template template parameter that has been substituted
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/// for some other template name.
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SubstTemplateTemplateParm,
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/// A template template parameter pack that has been substituted for
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/// a template template argument pack, but has not yet been expanded into
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/// individual arguments.
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SubstTemplateTemplateParmPack,
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/// A template name that refers to a template declaration found through a
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/// specific using shadow declaration.
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UsingTemplate,
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};
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TemplateName() = default;
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explicit TemplateName(TemplateDecl *Template);
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explicit TemplateName(OverloadedTemplateStorage *Storage);
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explicit TemplateName(AssumedTemplateStorage *Storage);
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explicit TemplateName(SubstTemplateTemplateParmStorage *Storage);
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explicit TemplateName(SubstTemplateTemplateParmPackStorage *Storage);
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explicit TemplateName(QualifiedTemplateName *Qual);
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explicit TemplateName(DependentTemplateName *Dep);
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explicit TemplateName(UsingShadowDecl *Using);
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/// Determine whether this template name is NULL.
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bool isNull() const;
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// Get the kind of name that is actually stored.
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NameKind getKind() const;
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/// Retrieve the underlying template declaration that
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/// this template name refers to, if known.
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///
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/// \returns The template declaration that this template name refers
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/// to, if any. If the template name does not refer to a specific
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/// declaration because it is a dependent name, or if it refers to a
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/// set of function templates, returns NULL.
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TemplateDecl *getAsTemplateDecl() const;
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/// Retrieve the underlying, overloaded function template
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/// declarations that this template name refers to, if known.
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///
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/// \returns The set of overloaded function templates that this template
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/// name refers to, if known. If the template name does not refer to a
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/// specific set of function templates because it is a dependent name or
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/// refers to a single template, returns NULL.
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OverloadedTemplateStorage *getAsOverloadedTemplate() const;
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/// Retrieve information on a name that has been assumed to be a
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/// template-name in order to permit a call via ADL.
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AssumedTemplateStorage *getAsAssumedTemplateName() const;
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/// Retrieve the substituted template template parameter, if
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/// known.
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///
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/// \returns The storage for the substituted template template parameter,
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/// if known. Otherwise, returns NULL.
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SubstTemplateTemplateParmStorage *getAsSubstTemplateTemplateParm() const;
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/// Retrieve the substituted template template parameter pack, if
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/// known.
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///
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/// \returns The storage for the substituted template template parameter pack,
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/// if known. Otherwise, returns NULL.
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SubstTemplateTemplateParmPackStorage *
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getAsSubstTemplateTemplateParmPack() const;
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/// Retrieve the underlying qualified template name
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/// structure, if any.
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QualifiedTemplateName *getAsQualifiedTemplateName() const;
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/// Retrieve the underlying dependent template name
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/// structure, if any.
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DependentTemplateName *getAsDependentTemplateName() const;
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/// Retrieve the using shadow declaration through which the underlying
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/// template declaration is introduced, if any.
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UsingShadowDecl *getAsUsingShadowDecl() const;
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TemplateName getUnderlying() const;
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TemplateNameDependence getDependence() const;
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/// Determines whether this is a dependent template name.
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bool isDependent() const;
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/// Determines whether this is a template name that somehow
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/// depends on a template parameter.
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bool isInstantiationDependent() const;
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/// Determines whether this template name contains an
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/// unexpanded parameter pack (for C++0x variadic templates).
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bool containsUnexpandedParameterPack() const;
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enum class Qualified { None, AsWritten };
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/// Print the template name.
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///
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/// \param OS the output stream to which the template name will be
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/// printed.
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///
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/// \param Qual print the (Qualified::None) simple name,
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/// (Qualified::AsWritten) any written (possibly partial) qualifier, or
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/// (Qualified::Fully) the fully qualified name.
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void print(raw_ostream &OS, const PrintingPolicy &Policy,
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Qualified Qual = Qualified::AsWritten) const;
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/// Debugging aid that dumps the template name.
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void dump(raw_ostream &OS, const ASTContext &Context) const;
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/// Debugging aid that dumps the template name to standard
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/// error.
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void dump() const;
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void Profile(llvm::FoldingSetNodeID &ID) {
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ID.AddPointer(Storage.getOpaqueValue());
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}
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/// Retrieve the template name as a void pointer.
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void *getAsVoidPointer() const { return Storage.getOpaqueValue(); }
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/// Build a template name from a void pointer.
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static TemplateName getFromVoidPointer(void *Ptr) {
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return TemplateName(Ptr);
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}
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/// Structural equality.
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bool operator==(TemplateName Other) const { return Storage == Other.Storage; }
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bool operator!=(TemplateName Other) const { return !operator==(Other); }
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};
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/// Insertion operator for diagnostics. This allows sending TemplateName's
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/// into a diagnostic with <<.
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const StreamingDiagnostic &operator<<(const StreamingDiagnostic &DB,
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TemplateName N);
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/// A structure for storing the information associated with a
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/// substituted template template parameter.
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class SubstTemplateTemplateParmStorage
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: public UncommonTemplateNameStorage, public llvm::FoldingSetNode {
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friend class ASTContext;
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TemplateName Replacement;
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Decl *AssociatedDecl;
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SubstTemplateTemplateParmStorage(TemplateName Replacement,
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Decl *AssociatedDecl, unsigned Index,
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std::optional<unsigned> PackIndex)
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: UncommonTemplateNameStorage(SubstTemplateTemplateParm, Index,
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PackIndex ? *PackIndex + 1 : 0),
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Replacement(Replacement), AssociatedDecl(AssociatedDecl) {
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assert(AssociatedDecl != nullptr);
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}
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public:
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/// A template-like entity which owns the whole pattern being substituted.
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/// This will own a set of template parameters.
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Decl *getAssociatedDecl() const { return AssociatedDecl; }
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/// Returns the index of the replaced parameter in the associated declaration.
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/// This should match the result of `getParameter()->getIndex()`.
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unsigned getIndex() const { return Bits.Index; }
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std::optional<unsigned> getPackIndex() const {
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if (Bits.Data == 0)
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return std::nullopt;
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return Bits.Data - 1;
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}
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TemplateTemplateParmDecl *getParameter() const;
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TemplateName getReplacement() const { return Replacement; }
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void Profile(llvm::FoldingSetNodeID &ID);
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static void Profile(llvm::FoldingSetNodeID &ID, TemplateName Replacement,
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Decl *AssociatedDecl, unsigned Index,
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std::optional<unsigned> PackIndex);
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};
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inline TemplateName TemplateName::getUnderlying() const {
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if (SubstTemplateTemplateParmStorage *subst
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= getAsSubstTemplateTemplateParm())
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return subst->getReplacement().getUnderlying();
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return *this;
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}
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/// Represents a template name as written in source code.
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///
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/// This kind of template name may refer to a template name that was
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/// preceded by a nested name specifier, e.g., \c std::vector. Here,
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/// the nested name specifier is "std::" and the template name is the
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/// declaration for "vector". It may also have been written with the
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/// 'template' keyword. The QualifiedTemplateName class is only
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/// used to provide "sugar" for template names, so that they can
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/// be differentiated from canonical template names. and has no
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/// semantic meaning. In this manner, it is to TemplateName what
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/// ElaboratedType is to Type, providing extra syntactic sugar
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/// for downstream clients.
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class QualifiedTemplateName : public llvm::FoldingSetNode {
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friend class ASTContext;
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/// The nested name specifier that qualifies the template name.
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///
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/// The bit is used to indicate whether the "template" keyword was
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/// present before the template name itself. Note that the
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/// "template" keyword is always redundant in this case (otherwise,
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/// the template name would be a dependent name and we would express
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/// this name with DependentTemplateName).
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llvm::PointerIntPair<NestedNameSpecifier *, 1> Qualifier;
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/// The underlying template name, it is either
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/// 1) a Template -- a template declaration that this qualified name refers
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/// to.
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/// 2) or a UsingTemplate -- a template declaration introduced by a
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/// using-shadow declaration.
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TemplateName UnderlyingTemplate;
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QualifiedTemplateName(NestedNameSpecifier *NNS, bool TemplateKeyword,
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TemplateName Template)
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: Qualifier(NNS, TemplateKeyword ? 1 : 0), UnderlyingTemplate(Template) {
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assert(UnderlyingTemplate.getKind() == TemplateName::Template ||
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UnderlyingTemplate.getKind() == TemplateName::UsingTemplate);
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}
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public:
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/// Return the nested name specifier that qualifies this name.
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NestedNameSpecifier *getQualifier() const { return Qualifier.getPointer(); }
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/// Whether the template name was prefixed by the "template"
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/// keyword.
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bool hasTemplateKeyword() const { return Qualifier.getInt(); }
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/// Return the underlying template name.
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TemplateName getUnderlyingTemplate() const { return UnderlyingTemplate; }
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void Profile(llvm::FoldingSetNodeID &ID) {
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Profile(ID, getQualifier(), hasTemplateKeyword(), UnderlyingTemplate);
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}
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static void Profile(llvm::FoldingSetNodeID &ID, NestedNameSpecifier *NNS,
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bool TemplateKeyword, TemplateName TN) {
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ID.AddPointer(NNS);
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ID.AddBoolean(TemplateKeyword);
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ID.AddPointer(TN.getAsVoidPointer());
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}
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};
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/// Represents a dependent template name that cannot be
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/// resolved prior to template instantiation.
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///
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/// This kind of template name refers to a dependent template name,
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/// including its nested name specifier (if any). For example,
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/// DependentTemplateName can refer to "MetaFun::template apply",
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/// where "MetaFun::" is the nested name specifier and "apply" is the
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/// template name referenced. The "template" keyword is implied.
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class DependentTemplateName : public llvm::FoldingSetNode {
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friend class ASTContext;
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/// The nested name specifier that qualifies the template
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/// name.
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///
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/// The bit stored in this qualifier describes whether the \c Name field
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/// is interpreted as an IdentifierInfo pointer (when clear) or as an
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/// overloaded operator kind (when set).
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llvm::PointerIntPair<NestedNameSpecifier *, 1, bool> Qualifier;
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/// The dependent template name.
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union {
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/// The identifier template name.
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///
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/// Only valid when the bit on \c Qualifier is clear.
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const IdentifierInfo *Identifier;
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/// The overloaded operator name.
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///
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/// Only valid when the bit on \c Qualifier is set.
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OverloadedOperatorKind Operator;
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};
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/// The canonical template name to which this dependent
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/// template name refers.
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///
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/// The canonical template name for a dependent template name is
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/// another dependent template name whose nested name specifier is
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/// canonical.
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TemplateName CanonicalTemplateName;
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DependentTemplateName(NestedNameSpecifier *Qualifier,
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const IdentifierInfo *Identifier)
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: Qualifier(Qualifier, false), Identifier(Identifier),
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CanonicalTemplateName(this) {}
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|
|
|
DependentTemplateName(NestedNameSpecifier *Qualifier,
|
|
const IdentifierInfo *Identifier,
|
|
TemplateName Canon)
|
|
: Qualifier(Qualifier, false), Identifier(Identifier),
|
|
CanonicalTemplateName(Canon) {}
|
|
|
|
DependentTemplateName(NestedNameSpecifier *Qualifier,
|
|
OverloadedOperatorKind Operator)
|
|
: Qualifier(Qualifier, true), Operator(Operator),
|
|
CanonicalTemplateName(this) {}
|
|
|
|
DependentTemplateName(NestedNameSpecifier *Qualifier,
|
|
OverloadedOperatorKind Operator,
|
|
TemplateName Canon)
|
|
: Qualifier(Qualifier, true), Operator(Operator),
|
|
CanonicalTemplateName(Canon) {}
|
|
|
|
public:
|
|
/// Return the nested name specifier that qualifies this name.
|
|
NestedNameSpecifier *getQualifier() const { return Qualifier.getPointer(); }
|
|
|
|
/// Determine whether this template name refers to an identifier.
|
|
bool isIdentifier() const { return !Qualifier.getInt(); }
|
|
|
|
/// Returns the identifier to which this template name refers.
|
|
const IdentifierInfo *getIdentifier() const {
|
|
assert(isIdentifier() && "Template name isn't an identifier?");
|
|
return Identifier;
|
|
}
|
|
|
|
/// Determine whether this template name refers to an overloaded
|
|
/// operator.
|
|
bool isOverloadedOperator() const { return Qualifier.getInt(); }
|
|
|
|
/// Return the overloaded operator to which this template name refers.
|
|
OverloadedOperatorKind getOperator() const {
|
|
assert(isOverloadedOperator() &&
|
|
"Template name isn't an overloaded operator?");
|
|
return Operator;
|
|
}
|
|
|
|
void Profile(llvm::FoldingSetNodeID &ID) {
|
|
if (isIdentifier())
|
|
Profile(ID, getQualifier(), getIdentifier());
|
|
else
|
|
Profile(ID, getQualifier(), getOperator());
|
|
}
|
|
|
|
static void Profile(llvm::FoldingSetNodeID &ID, NestedNameSpecifier *NNS,
|
|
const IdentifierInfo *Identifier) {
|
|
ID.AddPointer(NNS);
|
|
ID.AddBoolean(false);
|
|
ID.AddPointer(Identifier);
|
|
}
|
|
|
|
static void Profile(llvm::FoldingSetNodeID &ID, NestedNameSpecifier *NNS,
|
|
OverloadedOperatorKind Operator) {
|
|
ID.AddPointer(NNS);
|
|
ID.AddBoolean(true);
|
|
ID.AddInteger(Operator);
|
|
}
|
|
};
|
|
|
|
} // namespace clang.
|
|
|
|
namespace llvm {
|
|
|
|
/// The clang::TemplateName class is effectively a pointer.
|
|
template<>
|
|
struct PointerLikeTypeTraits<clang::TemplateName> {
|
|
static inline void *getAsVoidPointer(clang::TemplateName TN) {
|
|
return TN.getAsVoidPointer();
|
|
}
|
|
|
|
static inline clang::TemplateName getFromVoidPointer(void *Ptr) {
|
|
return clang::TemplateName::getFromVoidPointer(Ptr);
|
|
}
|
|
|
|
// No bits are available!
|
|
static constexpr int NumLowBitsAvailable = 0;
|
|
};
|
|
|
|
} // namespace llvm.
|
|
|
|
#endif // LLVM_CLANG_AST_TEMPLATENAME_H
|