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241 lines
8.3 KiB
C
241 lines
8.3 KiB
C
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// Copyright (c) 2012 The Chromium Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style license that can be
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// found in the LICENSE file.
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#ifndef BASE_MAC_SCOPED_NSOBJECT_H_
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#define BASE_MAC_SCOPED_NSOBJECT_H_
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#include <type_traits>
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// Include NSObject.h directly because Foundation.h pulls in many dependencies.
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// (Approx 100k lines of code versus 1.5k for NSObject.h). scoped_nsobject gets
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// singled out because it is most typically included from other header files.
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#import <Foundation/NSObject.h>
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#include "base/base_export.h"
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#include "base/compiler_specific.h"
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#include "base/mac/scoped_typeref.h"
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#if !defined(__has_feature) || !__has_feature(objc_arc)
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@class NSAutoreleasePool;
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#endif
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namespace base {
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// scoped_nsobject<> is patterned after std::unique_ptr<>, but maintains
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// ownership of an NSObject subclass object. Style deviations here are solely
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// for compatibility with std::unique_ptr<>'s interface, with which everyone is
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// already familiar.
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//
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// scoped_nsobject<> takes ownership of an object (in the constructor or in
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// reset()) by taking over the caller's existing ownership claim. The caller
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// must own the object it gives to scoped_nsobject<>, and relinquishes an
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// ownership claim to that object. scoped_nsobject<> does not call -retain,
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// callers have to call this manually if appropriate.
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//
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// scoped_nsprotocol<> has the same behavior as scoped_nsobject, but can be used
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// with protocols.
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//
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// scoped_nsobject<> is not to be used for NSAutoreleasePools. For
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// NSAutoreleasePools use ScopedNSAutoreleasePool from
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// scoped_nsautorelease_pool.h instead.
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// We check for bad uses of scoped_nsobject and NSAutoreleasePool at compile
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// time with a template specialization (see below).
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//
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// If Automatic Reference Counting (aka ARC) is enabled then the ownership
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// policy is not controllable by the user as ARC make it really difficult to
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// transfer ownership (the reference passed to scoped_nsobject constructor is
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// sunk by ARC and __attribute((ns_consumed)) appears to not work correctly
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// with Objective-C++ see https://llvm.org/bugs/show_bug.cgi?id=27887). Due to
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// that, the policy is always to |RETAIN| when using ARC.
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namespace internal {
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BASE_EXPORT id ScopedNSProtocolTraitsRetain(__unsafe_unretained id obj)
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__attribute((ns_returns_not_retained));
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BASE_EXPORT id ScopedNSProtocolTraitsAutoRelease(__unsafe_unretained id obj)
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__attribute((ns_returns_not_retained));
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BASE_EXPORT void ScopedNSProtocolTraitsRelease(__unsafe_unretained id obj);
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// Traits for ScopedTypeRef<>. As this class may be compiled from file with
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// Automatic Reference Counting enable or not all methods have annotation to
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// enforce the same code generation in both case (in particular, the Retain
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// method uses ns_returns_not_retained to prevent ARC to insert a -release
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// call on the returned value and thus defeating the -retain).
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template <typename NST>
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struct ScopedNSProtocolTraits {
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static NST InvalidValue() __attribute((ns_returns_not_retained)) {
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return nil;
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}
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static NST Retain(__unsafe_unretained NST nst)
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__attribute((ns_returns_not_retained)) {
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return ScopedNSProtocolTraitsRetain(nst);
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}
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static void Release(__unsafe_unretained NST nst) {
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ScopedNSProtocolTraitsRelease(nst);
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}
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};
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} // namespace internal
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template <typename NST>
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class scoped_nsprotocol
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: public ScopedTypeRef<NST, internal::ScopedNSProtocolTraits<NST>> {
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public:
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using Traits = internal::ScopedNSProtocolTraits<NST>;
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#if !defined(__has_feature) || !__has_feature(objc_arc)
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explicit scoped_nsprotocol(
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NST object = Traits::InvalidValue(),
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base::scoped_policy::OwnershipPolicy policy = base::scoped_policy::ASSUME)
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: ScopedTypeRef<NST, Traits>(object, policy) {}
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#else
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explicit scoped_nsprotocol(NST object = Traits::InvalidValue())
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: ScopedTypeRef<NST, Traits>(object, base::scoped_policy::RETAIN) {}
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#endif
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scoped_nsprotocol(const scoped_nsprotocol<NST>& that)
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: ScopedTypeRef<NST, Traits>(that) {}
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template <typename NSR>
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explicit scoped_nsprotocol(const scoped_nsprotocol<NSR>& that_as_subclass)
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: ScopedTypeRef<NST, Traits>(that_as_subclass) {}
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scoped_nsprotocol(scoped_nsprotocol<NST>&& that)
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: ScopedTypeRef<NST, Traits>(std::move(that)) {}
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scoped_nsprotocol& operator=(const scoped_nsprotocol<NST>& that) {
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ScopedTypeRef<NST, Traits>::operator=(that);
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return *this;
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}
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#if !defined(__has_feature) || !__has_feature(objc_arc)
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void reset(NST object = Traits::InvalidValue(),
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base::scoped_policy::OwnershipPolicy policy =
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base::scoped_policy::ASSUME) {
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ScopedTypeRef<NST, Traits>::reset(object, policy);
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}
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#else
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void reset(NST object = Traits::InvalidValue()) {
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ScopedTypeRef<NST, Traits>::reset(object, base::scoped_policy::RETAIN);
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}
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#endif
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// Shift reference to the autorelease pool to be released later.
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NST autorelease() __attribute((ns_returns_not_retained)) {
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return internal::ScopedNSProtocolTraitsAutoRelease(this->release());
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}
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};
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// Free functions
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template <class C>
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void swap(scoped_nsprotocol<C>& p1, scoped_nsprotocol<C>& p2) {
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p1.swap(p2);
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}
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template <class C>
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bool operator==(C p1, const scoped_nsprotocol<C>& p2) {
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return p1 == p2.get();
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}
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template <class C>
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bool operator!=(C p1, const scoped_nsprotocol<C>& p2) {
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return p1 != p2.get();
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}
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template <typename NST>
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class scoped_nsobject : public scoped_nsprotocol<NST*> {
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public:
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using Traits = typename scoped_nsprotocol<NST*>::Traits;
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#if !defined(__has_feature) || !__has_feature(objc_arc)
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explicit scoped_nsobject(
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NST* object = Traits::InvalidValue(),
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base::scoped_policy::OwnershipPolicy policy = base::scoped_policy::ASSUME)
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: scoped_nsprotocol<NST*>(object, policy) {}
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#else
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explicit scoped_nsobject(NST* object = Traits::InvalidValue())
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: scoped_nsprotocol<NST*>(object) {}
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#endif
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scoped_nsobject(const scoped_nsobject<NST>& that)
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: scoped_nsprotocol<NST*>(that) {}
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template <typename NSR>
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explicit scoped_nsobject(const scoped_nsobject<NSR>& that_as_subclass)
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: scoped_nsprotocol<NST*>(that_as_subclass) {}
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scoped_nsobject(scoped_nsobject<NST>&& that)
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: scoped_nsprotocol<NST*>(std::move(that)) {}
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scoped_nsobject& operator=(const scoped_nsobject<NST>& that) {
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scoped_nsprotocol<NST*>::operator=(that);
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return *this;
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}
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#if !defined(__has_feature) || !__has_feature(objc_arc)
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void reset(NST* object = Traits::InvalidValue(),
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base::scoped_policy::OwnershipPolicy policy =
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base::scoped_policy::ASSUME) {
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scoped_nsprotocol<NST*>::reset(object, policy);
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}
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#else
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void reset(NST* object = Traits::InvalidValue()) {
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scoped_nsprotocol<NST*>::reset(object);
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}
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#endif
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#if !defined(__has_feature) || !__has_feature(objc_arc)
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static_assert(std::is_same<NST, NSAutoreleasePool>::value == false,
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"Use ScopedNSAutoreleasePool instead");
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#endif
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};
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// Specialization to make scoped_nsobject<id> work.
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template<>
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class scoped_nsobject<id> : public scoped_nsprotocol<id> {
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public:
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using Traits = typename scoped_nsprotocol<id>::Traits;
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#if !defined(__has_feature) || !__has_feature(objc_arc)
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explicit scoped_nsobject(
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id object = Traits::InvalidValue(),
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base::scoped_policy::OwnershipPolicy policy = base::scoped_policy::ASSUME)
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: scoped_nsprotocol<id>(object, policy) {}
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#else
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explicit scoped_nsobject(id object = Traits::InvalidValue())
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: scoped_nsprotocol<id>(object) {}
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#endif
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scoped_nsobject(const scoped_nsobject<id>& that)
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: scoped_nsprotocol<id>(that) {}
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template <typename NSR>
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explicit scoped_nsobject(const scoped_nsobject<NSR>& that_as_subclass)
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: scoped_nsprotocol<id>(that_as_subclass) {}
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scoped_nsobject(scoped_nsobject<id>&& that)
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: scoped_nsprotocol<id>(std::move(that)) {}
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scoped_nsobject& operator=(const scoped_nsobject<id>& that) {
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scoped_nsprotocol<id>::operator=(that);
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return *this;
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}
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#if !defined(__has_feature) || !__has_feature(objc_arc)
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void reset(id object = Traits::InvalidValue(),
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base::scoped_policy::OwnershipPolicy policy =
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base::scoped_policy::ASSUME) {
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scoped_nsprotocol<id>::reset(object, policy);
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}
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#else
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void reset(id object = Traits::InvalidValue()) {
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scoped_nsprotocol<id>::reset(object);
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}
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#endif
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};
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} // namespace base
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#endif // BASE_MAC_SCOPED_NSOBJECT_H_
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