зеркало из https://github.com/mozilla/gecko-dev.git
254 строки
7.8 KiB
C++
254 строки
7.8 KiB
C++
/* -*- Mode: C++; tab-width: 8; indent-tabs-mode: nil; c-basic-offset: 2 -*- */
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/* vim: set ts=8 sts=2 et sw=2 tw=80: */
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/* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this
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* file, You can obtain one at https://mozilla.org/MPL/2.0/. */
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#ifndef mozilla_StaticLocalPtr_h
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#define mozilla_StaticLocalPtr_h
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#include "mozilla/AlreadyAddRefed.h"
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#include "mozilla/Assertions.h"
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#include "mozilla/Attributes.h"
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#include "mozilla/RefPtr.h"
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namespace mozilla {
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/**
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* StaticLocalAutoPtr and StaticLocalRefPtr are like nsAutoPtr and nsRefPtr,
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* except they are suitable for use as "magic static" local variables -- that
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* is, they are able to take advantage of C++11's guarantee of thread safety
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* during initialization by atomically constructing both the smart pointer
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* itself as well as the object being pointed to.
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*
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* A static local instance of StaticLocal{Auto,Ref}Ptr does not cause the
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* compiler to emit any atexit calls. In order to accomplish this,
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* StaticLocal{Auto,Ref}Ptr must have a trivial destructor. As a consequence,
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* it does not delete/release its raw pointer upon destruction.
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*
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* The clang plugin, run as part of our "static analysis" builds, makes it a
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* compile-time error to use StaticLocal{Auto,Ref}Ptr as anything except a
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* static local variable.
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*
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* StaticLocal{Auto,Ref}Ptr have a limited interface as compared to
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* ns{Auto,Ref}Ptr; this is intentional, since their range of acceptable uses is
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* smaller.
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*/
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template <typename T>
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class MOZ_STATIC_LOCAL_CLASS StaticLocalAutoPtr final {
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public:
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explicit StaticLocalAutoPtr(T* aRawPtr) : mRawPtr(aRawPtr) {}
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StaticLocalAutoPtr(StaticLocalAutoPtr<T>&& aOther) : mRawPtr(aOther.mRawPtr) {
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aOther.mRawPtr = nullptr;
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}
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StaticLocalAutoPtr<T>& operator=(T* aRhs) {
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Assign(aRhs);
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return *this;
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}
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T* get() const { return mRawPtr; }
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operator T*() const { return get(); }
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T* operator->() const {
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MOZ_ASSERT(mRawPtr);
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return get();
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}
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T& operator*() const { return *get(); }
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T* forget() {
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T* temp = mRawPtr;
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mRawPtr = nullptr;
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return temp;
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}
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private:
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StaticLocalAutoPtr(const StaticLocalAutoPtr<T>& aOther) = delete;
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// We do not allow assignment as the intention of this class is to only
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// assign to mRawPtr during construction.
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StaticLocalAutoPtr& operator=(const StaticLocalAutoPtr<T>& aOther) = delete;
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StaticLocalAutoPtr& operator=(StaticLocalAutoPtr<T>&&) = delete;
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void Assign(T* aNewPtr) {
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MOZ_ASSERT(!aNewPtr || mRawPtr != aNewPtr);
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T* oldPtr = mRawPtr;
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mRawPtr = aNewPtr;
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delete oldPtr;
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}
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T* mRawPtr;
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};
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template <typename T>
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class MOZ_STATIC_LOCAL_CLASS StaticLocalRefPtr final {
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public:
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explicit StaticLocalRefPtr(T* aRawPtr) : mRawPtr(nullptr) {
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AssignWithAddref(aRawPtr);
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}
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explicit StaticLocalRefPtr(already_AddRefed<T>& aPtr) : mRawPtr(nullptr) {
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AssignAssumingAddRef(aPtr.take());
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}
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explicit StaticLocalRefPtr(already_AddRefed<T>&& aPtr) : mRawPtr(nullptr) {
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AssignAssumingAddRef(aPtr.take());
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}
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StaticLocalRefPtr(const StaticLocalRefPtr<T>& aPtr)
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: StaticLocalRefPtr(aPtr.mRawPtr) {}
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StaticLocalRefPtr(StaticLocalRefPtr<T>&& aPtr) : mRawPtr(aPtr.mRawPtr) {
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aPtr.mRawPtr = nullptr;
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}
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StaticLocalRefPtr<T>& operator=(T* aRhs) {
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AssignWithAddref(aRhs);
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return *this;
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}
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already_AddRefed<T> forget() {
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T* temp = mRawPtr;
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mRawPtr = nullptr;
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return already_AddRefed<T>(temp);
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}
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T* get() const { return mRawPtr; }
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operator T*() const { return get(); }
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T* operator->() const {
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MOZ_ASSERT(mRawPtr);
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return get();
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}
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T& operator*() const { return *get(); }
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private:
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// We do not allow assignment as the intention of this class is to only
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// assign to mRawPtr during construction.
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StaticLocalRefPtr<T>& operator=(const StaticLocalRefPtr<T>& aRhs) = delete;
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StaticLocalRefPtr<T>& operator=(StaticLocalRefPtr<T>&& aRhs) = delete;
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void AssignWithAddref(T* aNewPtr) {
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if (aNewPtr) {
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aNewPtr->AddRef();
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}
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AssignAssumingAddRef(aNewPtr);
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}
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void AssignAssumingAddRef(T* aNewPtr) {
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T* oldPtr = mRawPtr;
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mRawPtr = aNewPtr;
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if (oldPtr) {
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oldPtr->Release();
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}
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}
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T* MOZ_OWNING_REF mRawPtr;
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};
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namespace StaticLocalPtr_internal {
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class Zero;
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} // namespace StaticLocalPtr_internal
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#define REFLEXIVE_EQUALITY_OPERATORS(type1, type2, eq_fn, ...) \
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template <__VA_ARGS__> \
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inline bool operator==(type1 lhs, type2 rhs) { \
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return eq_fn; \
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} \
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\
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template <__VA_ARGS__> \
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inline bool operator==(type2 lhs, type1 rhs) { \
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return rhs == lhs; \
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} \
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\
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template <__VA_ARGS__> \
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inline bool operator!=(type1 lhs, type2 rhs) { \
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return !(lhs == rhs); \
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} \
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\
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template <__VA_ARGS__> \
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inline bool operator!=(type2 lhs, type1 rhs) { \
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return !(lhs == rhs); \
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}
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// StaticLocalAutoPtr (in)equality operators
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template <class T, class U>
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inline bool operator==(const StaticLocalAutoPtr<T>& aLhs,
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const StaticLocalAutoPtr<U>& aRhs) {
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return aLhs.get() == aRhs.get();
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}
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template <class T, class U>
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inline bool operator!=(const StaticLocalAutoPtr<T>& aLhs,
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const StaticLocalAutoPtr<U>& aRhs) {
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return !(aLhs == aRhs);
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}
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REFLEXIVE_EQUALITY_OPERATORS(const StaticLocalAutoPtr<T>&, const U*,
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lhs.get() == rhs, class T, class U)
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REFLEXIVE_EQUALITY_OPERATORS(const StaticLocalAutoPtr<T>&, U*, lhs.get() == rhs,
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class T, class U)
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// Let us compare StaticLocalAutoPtr to 0.
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REFLEXIVE_EQUALITY_OPERATORS(const StaticLocalAutoPtr<T>&,
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StaticLocalPtr_internal::Zero*,
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lhs.get() == nullptr, class T)
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// StaticLocalRefPtr (in)equality operators
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template <class T, class U>
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inline bool operator==(const StaticLocalRefPtr<T>& aLhs,
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const StaticLocalRefPtr<U>& aRhs) {
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return aLhs.get() == aRhs.get();
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}
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template <class T, class U>
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inline bool operator!=(const StaticLocalRefPtr<T>& aLhs,
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const StaticLocalRefPtr<U>& aRhs) {
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return !(aLhs == aRhs);
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}
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REFLEXIVE_EQUALITY_OPERATORS(const StaticLocalRefPtr<T>&, const U*,
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lhs.get() == rhs, class T, class U)
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REFLEXIVE_EQUALITY_OPERATORS(const StaticLocalRefPtr<T>&, U*, lhs.get() == rhs,
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class T, class U)
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// Let us compare StaticLocalRefPtr to 0.
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REFLEXIVE_EQUALITY_OPERATORS(const StaticLocalRefPtr<T>&,
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StaticLocalPtr_internal::Zero*,
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lhs.get() == nullptr, class T)
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#undef REFLEXIVE_EQUALITY_OPERATORS
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} // namespace mozilla
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// Declared in mozilla/RefPtr.h
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template <class T>
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template <class U>
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RefPtr<T>::RefPtr(const mozilla::StaticLocalRefPtr<U>& aOther)
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: RefPtr(aOther.get()) {}
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template <class T>
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template <class U>
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RefPtr<T>& RefPtr<T>::operator=(const mozilla::StaticLocalRefPtr<U>& aOther) {
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return operator=(aOther.get());
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}
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template <class T>
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inline already_AddRefed<T> do_AddRef(
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const mozilla::StaticLocalRefPtr<T>& aObj) {
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RefPtr<T> ref(aObj);
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return ref.forget();
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}
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#endif // mozilla_StaticLocalPtr_h
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