clang 20.0.0 (based on r547379) from build 12806354. Bug: http://b/379133546 Test: N/A Change-Id: I2eb8938af55d809de674be63cb30cf27e801862b Upstream-Commit: ad834e67b1105d15ef907f6255d4c96e8e733f57
287 lines
9.0 KiB
C++
287 lines
9.0 KiB
C++
//===- Ownership.h - Parser ownership helpers -------------------*- 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 contains classes for managing ownership of Stmt and Expr nodes.
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//
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//===----------------------------------------------------------------------===//
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#ifndef LLVM_CLANG_SEMA_OWNERSHIP_H
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#define LLVM_CLANG_SEMA_OWNERSHIP_H
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#include "clang/AST/Expr.h"
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#include "clang/Basic/LLVM.h"
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#include "llvm/ADT/ArrayRef.h"
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#include "llvm/Support/PointerLikeTypeTraits.h"
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#include "llvm/Support/type_traits.h"
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#include <cassert>
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#include <cstddef>
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#include <cstdint>
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//===----------------------------------------------------------------------===//
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// OpaquePtr
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//===----------------------------------------------------------------------===//
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namespace clang {
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class CXXBaseSpecifier;
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class CXXCtorInitializer;
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class Decl;
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class Expr;
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class ParsedTemplateArgument;
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class QualType;
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class Stmt;
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class TemplateName;
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class TemplateParameterList;
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/// Wrapper for void* pointer.
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/// \tparam PtrTy Either a pointer type like 'T*' or a type that behaves like
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/// a pointer.
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///
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/// This is a very simple POD type that wraps a pointer that the Parser
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/// doesn't know about but that Sema or another client does. The PtrTy
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/// template argument is used to make sure that "Decl" pointers are not
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/// compatible with "Type" pointers for example.
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template <class PtrTy>
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class OpaquePtr {
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void *Ptr = nullptr;
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explicit OpaquePtr(void *Ptr) : Ptr(Ptr) {}
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using Traits = llvm::PointerLikeTypeTraits<PtrTy>;
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public:
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OpaquePtr(std::nullptr_t = nullptr) {}
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static OpaquePtr make(PtrTy P) { OpaquePtr OP; OP.set(P); return OP; }
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/// Returns plain pointer to the entity pointed by this wrapper.
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/// \tparam PointeeT Type of pointed entity.
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///
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/// It is identical to getPtrAs<PointeeT*>.
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template <typename PointeeT> PointeeT* getPtrTo() const {
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return get();
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}
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/// Returns pointer converted to the specified type.
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/// \tparam PtrT Result pointer type. There must be implicit conversion
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/// from PtrTy to PtrT.
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///
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/// In contrast to getPtrTo, this method allows the return type to be
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/// a smart pointer.
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template <typename PtrT> PtrT getPtrAs() const {
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return get();
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}
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PtrTy get() const {
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return Traits::getFromVoidPointer(Ptr);
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}
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void set(PtrTy P) {
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Ptr = Traits::getAsVoidPointer(P);
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}
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explicit operator bool() const { return Ptr != nullptr; }
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void *getAsOpaquePtr() const { return Ptr; }
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static OpaquePtr getFromOpaquePtr(void *P) { return OpaquePtr(P); }
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};
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/// UnionOpaquePtr - A version of OpaquePtr suitable for membership
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/// in a union.
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template <class T> struct UnionOpaquePtr {
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void *Ptr;
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static UnionOpaquePtr make(OpaquePtr<T> P) {
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UnionOpaquePtr OP = { P.getAsOpaquePtr() };
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return OP;
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}
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OpaquePtr<T> get() const { return OpaquePtr<T>::getFromOpaquePtr(Ptr); }
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operator OpaquePtr<T>() const { return get(); }
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UnionOpaquePtr &operator=(OpaquePtr<T> P) {
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Ptr = P.getAsOpaquePtr();
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return *this;
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}
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};
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} // namespace clang
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namespace llvm {
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template <class T>
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struct PointerLikeTypeTraits<clang::OpaquePtr<T>> {
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static constexpr int NumLowBitsAvailable = 0;
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static inline void *getAsVoidPointer(clang::OpaquePtr<T> P) {
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// FIXME: Doesn't work? return P.getAs< void >();
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return P.getAsOpaquePtr();
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}
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static inline clang::OpaquePtr<T> getFromVoidPointer(void *P) {
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return clang::OpaquePtr<T>::getFromOpaquePtr(P);
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}
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};
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} // namespace llvm
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namespace clang {
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class StreamingDiagnostic;
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// Determines whether the low bit of the result pointer for the
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// given UID is always zero. If so, ActionResult will use that bit
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// for it's "invalid" flag.
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template <class Ptr> struct IsResultPtrLowBitFree {
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static const bool value = false;
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};
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/// The result of parsing/analyzing an expression, statement etc.
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///
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/// It may be:
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/// - usable: a valid pointer to the result object
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/// - unset (null but valid): for constructs that may legitimately be absent
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/// (for example, the condition of a for loop)
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/// - invalid: indicating an error
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/// (no detail is provided, usually the error has already been diagnosed)
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template <class PtrTy, bool Compress = IsResultPtrLowBitFree<PtrTy>::value>
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class ActionResult {
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PtrTy Val = {};
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bool Invalid = false;
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public:
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ActionResult(bool Invalid = false) : Val(PtrTy()), Invalid(Invalid) {}
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ActionResult(PtrTy Val) { *this = Val; }
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ActionResult(const DiagnosticBuilder &) : ActionResult(/*Invalid=*/true) {}
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// These two overloads prevent void* -> bool conversions.
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ActionResult(const void *) = delete;
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ActionResult(volatile void *) = delete;
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bool isInvalid() const { return Invalid; }
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bool isUnset() const { return !Invalid && !Val; }
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bool isUsable() const { return !isInvalid() && !isUnset(); }
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PtrTy get() const { return Val; }
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template <typename T> T *getAs() { return static_cast<T *>(get()); }
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ActionResult &operator=(PtrTy RHS) {
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Val = RHS;
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Invalid = false;
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return *this;
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}
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};
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// If we PtrTy has a free bit, we can represent "invalid" as nullptr|1.
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template <typename PtrTy> class ActionResult<PtrTy, true> {
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static constexpr uintptr_t UnsetValue = 0x0;
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static constexpr uintptr_t InvalidValue = 0x1;
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uintptr_t Value = UnsetValue;
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using PtrTraits = llvm::PointerLikeTypeTraits<PtrTy>;
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public:
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ActionResult(bool Invalid = false)
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: Value(Invalid ? InvalidValue : UnsetValue) {}
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ActionResult(PtrTy V) { *this = V; }
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ActionResult(const DiagnosticBuilder &) : ActionResult(/*Invalid=*/true) {}
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// These two overloads prevent void* -> bool conversions.
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ActionResult(const void *) = delete;
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ActionResult(volatile void *) = delete;
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bool isInvalid() const { return Value == InvalidValue; }
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bool isUnset() const { return Value == UnsetValue; }
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bool isUsable() const { return !isInvalid() && !isUnset(); }
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PtrTy get() const {
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void *VP = reinterpret_cast<void *>(Value & ~0x01);
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return PtrTraits::getFromVoidPointer(VP);
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}
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template <typename T> T *getAs() { return static_cast<T *>(get()); }
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ActionResult &operator=(PtrTy RHS) {
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void *VP = PtrTraits::getAsVoidPointer(RHS);
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Value = reinterpret_cast<uintptr_t>(VP);
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assert((Value & 0x01) == 0 && "Badly aligned pointer");
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return *this;
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}
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// For types where we can fit a flag in with the pointer, provide
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// conversions to/from pointer type.
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static ActionResult getFromOpaquePointer(void *P) {
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ActionResult Result;
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Result.Value = (uintptr_t)P;
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assert(Result.isInvalid() ||
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PtrTraits::getAsVoidPointer(Result.get()) == P);
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return Result;
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}
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void *getAsOpaquePointer() const { return (void *)Value; }
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};
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/// An opaque type for threading parsed type information through the parser.
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using ParsedType = OpaquePtr<QualType>;
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using UnionParsedType = UnionOpaquePtr<QualType>;
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// We can re-use the low bit of expression, statement, base, and
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// member-initializer pointers for the "invalid" flag of
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// ActionResult.
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template <> struct IsResultPtrLowBitFree<Expr *> {
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static const bool value = true;
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};
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template <> struct IsResultPtrLowBitFree<Stmt *> {
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static const bool value = true;
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};
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template <> struct IsResultPtrLowBitFree<CXXBaseSpecifier *> {
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static const bool value = true;
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};
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template <> struct IsResultPtrLowBitFree<CXXCtorInitializer *> {
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static const bool value = true;
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};
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using ExprResult = ActionResult<Expr *>;
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using StmtResult = ActionResult<Stmt *>;
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using TypeResult = ActionResult<ParsedType>;
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using BaseResult = ActionResult<CXXBaseSpecifier *>;
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using MemInitResult = ActionResult<CXXCtorInitializer *>;
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using DeclResult = ActionResult<Decl *>;
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using ParsedTemplateTy = OpaquePtr<TemplateName>;
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using UnionParsedTemplateTy = UnionOpaquePtr<TemplateName>;
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using MultiExprArg = MutableArrayRef<Expr *>;
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using MultiStmtArg = MutableArrayRef<Stmt *>;
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using ASTTemplateArgsPtr = MutableArrayRef<ParsedTemplateArgument>;
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using MultiTypeArg = MutableArrayRef<ParsedType>;
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using MultiTemplateParamsArg = MutableArrayRef<TemplateParameterList *>;
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inline ExprResult ExprError() { return ExprResult(true); }
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inline StmtResult StmtError() { return StmtResult(true); }
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inline TypeResult TypeError() { return TypeResult(true); }
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inline ExprResult ExprError(const StreamingDiagnostic &) { return ExprError(); }
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inline StmtResult StmtError(const StreamingDiagnostic &) { return StmtError(); }
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inline ExprResult ExprEmpty() { return ExprResult(false); }
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inline StmtResult StmtEmpty() { return StmtResult(false); }
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inline Expr *AssertSuccess(ExprResult R) {
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assert(!R.isInvalid() && "operation was asserted to never fail!");
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return R.get();
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}
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inline Stmt *AssertSuccess(StmtResult R) {
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assert(!R.isInvalid() && "operation was asserted to never fail!");
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return R.get();
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}
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} // namespace clang
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#endif // LLVM_CLANG_SEMA_OWNERSHIP_H
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