afd88205d8
2009-12-20 Benjamin Kosnik <bkoz@redhat.com> * include/std/atomic: Update to N3000. * include/bits/atomic_0.h: Same. * include/bits/atomic_2.h: Same. * include/c_global/cstdatomic: Move... * include/bits/atomic_base.h: ...here. * include/c_compatibility/stdatomic.h: Just include atomic_base.h. * include/precompiled/stdc++.h: Adjust includes. * include/Makefile.am: Adjust files. * include/Makefile.in: Regenerate. * include/std/future: Adjust. * src/atomic.cc: Adjust, adjust exports for compatibility. * src/compatibility.cc: Move C++0x stuff... * src/compatibility-c++0x.cc: ...here. * doc/xml/manual/using.xml: Update. * doc/xml/manual/status_cxx200x.xml: Update. * doc/doxygen/user.cfg.in: Update. * testsuite/29_atomics/atomic_address/cons/assign_neg.cc: Same. * testsuite/29_atomics/atomic_address/cons/single_value.cc: Same. * testsuite/29_atomics/atomic_address/cons/copy_neg.cc: Same. * testsuite/29_atomics/atomic_address/cons/default.cc: Same. * testsuite/29_atomics/atomic_address/cons/aggregate.cc: Same. * testsuite/29_atomics/atomic_address/requirements/ standard_layout.cc: Same. * testsuite/29_atomics/atomic_address/requirements/trivial.cc: Same. * testsuite/29_atomics/atomic_integral/cons/assign_neg.cc: Same. * testsuite/29_atomics/atomic_integral/cons/single_value.cc: Same. * testsuite/29_atomics/atomic_integral/cons/copy_neg.cc: Same. * testsuite/29_atomics/atomic_integral/cons/default.cc: Same. * testsuite/29_atomics/atomic_integral/cons/copy_list.cc: Same. * testsuite/29_atomics/atomic_integral/cons/direct_list.cc: Same. * testsuite/29_atomics/atomic_integral/requirements/ standard_layout.cc: Same. * testsuite/29_atomics/atomic_integral/requirements/trivial.cc: Same. * testsuite/29_atomics/atomic_integral/operators/increment_neg.cc: Same. * testsuite/29_atomics/atomic_integral/operators/ integral_assignment.cc: Same. * testsuite/29_atomics/atomic_integral/operators/bitwise_neg.cc: Same. * testsuite/29_atomics/atomic_integral/operators/decrement_neg.cc: Same. * testsuite/29_atomics/atomic_integral/operators/increment.cc: Same. * testsuite/29_atomics/atomic_integral/operators/bitwise.cc: Same. * testsuite/29_atomics/atomic_integral/operators/decrement.cc: Same. * testsuite/29_atomics/atomic_integral/operators/ integral_conversion.cc: Same. * testsuite/29_atomics/atomic_flag/cons/assign_neg.cc: Same. * testsuite/29_atomics/atomic_flag/cons/copy_neg.cc: Same. * testsuite/29_atomics/atomic_flag/cons/default.cc: Same. * testsuite/29_atomics/atomic_flag/cons/aggregate.cc: Same. * testsuite/29_atomics/atomic_flag/requirements/ standard_layout.cc: Same. * testsuite/29_atomics/atomic_flag/requirements/trivial.cc: Same. * testsuite/29_atomics/atomic_flag/clear/1.cc: Same. * testsuite/29_atomics/atomic_flag/test_and_set/explicit.c * testsuite/29_atomics/atomic_flag/test_and_set/explicit.cc: Same. * testsuite/29_atomics/atomic_flag/test_and_set/implicit.c * testsuite/29_atomics/atomic_flag/test_and_set/implicit.cc: Same. * testsuite/29_atomics/headers/stdatomic.h/functions.c * testsuite/29_atomics/atomic/cons/assign_neg.cc: Same. * testsuite/29_atomics/atomic/cons/single_value.cc: Same. * testsuite/29_atomics/atomic/cons/copy_neg.cc: Same. * testsuite/29_atomics/atomic/cons/default.cc: Same. * testsuite/29_atomics/atomic/cons/copy_list.cc: Same. * testsuite/29_atomics/atomic/cons/direct_list.cc: Same. * testsuite/29_atomics/atomic/requirements/explicit_instantiation/ 1.cc: Same. * testsuite/29_atomics/atomic/requirements/base_classes.cc: Same. * testsuite/29_atomics/atomic/operators/integral_assignment.cc: Same. * testsuite/29_atomics/atomic/operators/integral_conversion.cc: Same. * testsuite/util/testsuite_common_types.h: Adjust. * testsuite/29_atomics/headers/cstdatomic: Move and adjust... * testsuite/29_atomics/headers/atomic: ...here. * testsuite/29_atomics/headers/atomic/types_std_c++0x.cc: Same. * testsuite/29_atomics/headers/atomic/functions_std_c++0x.cc: Same. * testsuite/29_atomics/headers/atomic/std_c++0x_neg.cc: Same. * testsuite/29_atomics/headers/atomic/macros.cc: Same. * testsuite/29_atomics/headers/atomic/types_std_c++0x_neg.cc: Add. * testsuite/29_atomics/atomic/cons/user_pod.cc: Add. From-SVN: r155377
832 lines
23 KiB
C++
832 lines
23 KiB
C++
// -*- C++ -*- header.
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// Copyright (C) 2008, 2009
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// Free Software Foundation, Inc.
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//
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// This file is part of the GNU ISO C++ Library. This library is free
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// software; you can redistribute it and/or modify it under the
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// terms of the GNU General Public License as published by the
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// Free Software Foundation; either version 3, or (at your option)
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// any later version.
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// This library is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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// Under Section 7 of GPL version 3, you are granted additional
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// permissions described in the GCC Runtime Library Exception, version
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// 3.1, as published by the Free Software Foundation.
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// You should have received a copy of the GNU General Public License and
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// a copy of the GCC Runtime Library Exception along with this program;
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// see the files COPYING3 and COPYING.RUNTIME respectively. If not, see
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// <http://www.gnu.org/licenses/>.
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/** @file atomic
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* This is a Standard C++ Library header.
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*/
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// Based on "C++ Atomic Types and Operations" by Hans Boehm and Lawrence Crowl.
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// http://www.open-std.org/jtc1/sc22/wg21/docs/papers/2007/n2427.html
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#ifndef _GLIBCXX_ATOMIC
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#define _GLIBCXX_ATOMIC 1
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#pragma GCC system_header
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#ifndef __GXX_EXPERIMENTAL_CXX0X__
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# include <c++0x_warning.h>
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#endif
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#include <bits/atomic_base.h>
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#include <cstddef>
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_GLIBCXX_BEGIN_NAMESPACE(std)
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/**
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* @addtogroup atomics
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* @{
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*/
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/// kill_dependency
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template<typename _Tp>
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inline _Tp
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kill_dependency(_Tp __y)
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{
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_Tp ret(__y);
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return ret;
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}
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inline memory_order
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__calculate_memory_order(memory_order __m)
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{
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const bool __cond1 = __m == memory_order_release;
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const bool __cond2 = __m == memory_order_acq_rel;
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memory_order __mo1(__cond1 ? memory_order_relaxed : __m);
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memory_order __mo2(__cond2 ? memory_order_acquire : __mo1);
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return __mo2;
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}
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//
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// Three nested namespaces for atomic implementation details.
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//
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// The nested namespace inlined into std:: is determined by the value
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// of the _GLIBCXX_ATOMIC_PROPERTY macro and the resulting
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// ATOMIC_*_LOCK_FREE macros. See file atomic_base.h.
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//
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// 0 == __atomic0 == Never lock-free
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// 1 == __atomic1 == Best available, sometimes lock-free
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// 2 == __atomic2 == Always lock-free
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#include <bits/atomic_0.h>
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#include <bits/atomic_2.h>
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/// atomic
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/// 29.4.3, Generic atomic type, primary class template.
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template<typename _Tp>
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struct atomic
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{
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private:
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_Tp _M_i;
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public:
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atomic() = default;
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~atomic() = default;
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atomic(const atomic&) = delete;
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atomic& operator=(const atomic&) volatile = delete;
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atomic(_Tp __i) : _M_i(__i) { }
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operator _Tp() const;
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_Tp
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operator=(_Tp __i) { store(__i); return __i; }
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bool
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is_lock_free() const volatile;
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void
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store(_Tp, memory_order = memory_order_seq_cst) volatile;
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_Tp
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load(memory_order = memory_order_seq_cst) const volatile;
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_Tp
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exchange(_Tp __i, memory_order = memory_order_seq_cst) volatile;
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bool
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compare_exchange_weak(_Tp&, _Tp, memory_order, memory_order) volatile;
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bool
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compare_exchange_strong(_Tp&, _Tp, memory_order, memory_order) volatile;
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bool
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compare_exchange_weak(_Tp&, _Tp,
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memory_order = memory_order_seq_cst) volatile;
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bool
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compare_exchange_strong(_Tp&, _Tp,
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memory_order = memory_order_seq_cst) volatile;
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};
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/// Partial specialization for pointer types.
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template<typename _Tp>
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struct atomic<_Tp*> : atomic_address
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{
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atomic() = default;
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~atomic() = default;
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atomic(const atomic&) = delete;
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atomic& operator=(const atomic&) volatile = delete;
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atomic(_Tp* __v) : atomic_address(__v) { }
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void
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store(_Tp*, memory_order = memory_order_seq_cst);
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_Tp*
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load(memory_order = memory_order_seq_cst) const;
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_Tp*
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exchange(_Tp*, memory_order = memory_order_seq_cst);
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bool
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compare_exchange_weak(_Tp*&, _Tp*, memory_order, memory_order);
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bool
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compare_exchange_strong(_Tp*&, _Tp*, memory_order, memory_order);
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bool
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compare_exchange_weak(_Tp*&, _Tp*, memory_order = memory_order_seq_cst);
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bool
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compare_exchange_strong(_Tp*&, _Tp*, memory_order = memory_order_seq_cst);
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_Tp*
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fetch_add(ptrdiff_t, memory_order = memory_order_seq_cst);
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_Tp*
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fetch_sub(ptrdiff_t, memory_order = memory_order_seq_cst);
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operator _Tp*() const
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{ return load(); }
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_Tp*
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operator=(_Tp* __v)
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{
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store(__v);
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return __v;
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}
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_Tp*
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operator++(int) { return fetch_add(1); }
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_Tp*
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operator--(int) { return fetch_sub(1); }
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_Tp*
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operator++() { return fetch_add(1) + 1; }
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_Tp*
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operator--() { return fetch_sub(1) - 1; }
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_Tp*
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operator+=(ptrdiff_t __d)
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{ return fetch_add(__d) + __d; }
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_Tp*
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operator-=(ptrdiff_t __d)
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{ return fetch_sub(__d) - __d; }
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};
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/// Explicit specialization for void*
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template<>
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struct atomic<void*> : public atomic_address
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{
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typedef void* __integral_type;
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typedef atomic_address __base_type;
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atomic() = default;
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~atomic() = default;
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atomic(const atomic&) = delete;
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atomic& operator=(const atomic&) volatile = delete;
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atomic(__integral_type __i) : __base_type(__i) { }
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using __base_type::operator __integral_type;
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using __base_type::operator=;
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};
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/// Explicit specialization for bool.
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template<>
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struct atomic<bool> : public atomic_bool
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{
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typedef bool __integral_type;
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typedef atomic_bool __base_type;
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atomic() = default;
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~atomic() = default;
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atomic(const atomic&) = delete;
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atomic& operator=(const atomic&) volatile = delete;
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atomic(__integral_type __i) : __base_type(__i) { }
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using __base_type::operator __integral_type;
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using __base_type::operator=;
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};
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/// Explicit specialization for char.
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template<>
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struct atomic<char> : public atomic_char
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{
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typedef char __integral_type;
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typedef atomic_char __base_type;
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atomic() = default;
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~atomic() = default;
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atomic(const atomic&) = delete;
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atomic& operator=(const atomic&) volatile = delete;
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atomic(__integral_type __i) : __base_type(__i) { }
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using __base_type::operator __integral_type;
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using __base_type::operator=;
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};
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/// Explicit specialization for signed char.
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template<>
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struct atomic<signed char> : public atomic_schar
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{
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typedef signed char __integral_type;
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typedef atomic_schar __base_type;
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atomic() = default;
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~atomic() = default;
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atomic(const atomic&) = delete;
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atomic& operator=(const atomic&) volatile = delete;
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atomic(__integral_type __i) : __base_type(__i) { }
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using __base_type::operator __integral_type;
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using __base_type::operator=;
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};
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/// Explicit specialization for unsigned char.
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template<>
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struct atomic<unsigned char> : public atomic_uchar
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{
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typedef unsigned char __integral_type;
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typedef atomic_uchar __base_type;
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atomic() = default;
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~atomic() = default;
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atomic(const atomic&) = delete;
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atomic& operator=(const atomic&) volatile = delete;
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atomic(__integral_type __i) : __base_type(__i) { }
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using __base_type::operator __integral_type;
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using __base_type::operator=;
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};
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/// Explicit specialization for short.
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template<>
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struct atomic<short> : public atomic_short
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{
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typedef short __integral_type;
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typedef atomic_short __base_type;
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atomic() = default;
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~atomic() = default;
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atomic(const atomic&) = delete;
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atomic& operator=(const atomic&) volatile = delete;
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atomic(__integral_type __i) : __base_type(__i) { }
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using __base_type::operator __integral_type;
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using __base_type::operator=;
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};
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/// Explicit specialization for unsigned short.
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template<>
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struct atomic<unsigned short> : public atomic_ushort
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{
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typedef unsigned short __integral_type;
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typedef atomic_ushort __base_type;
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atomic() = default;
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~atomic() = default;
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atomic(const atomic&) = delete;
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atomic& operator=(const atomic&) volatile = delete;
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atomic(__integral_type __i) : __base_type(__i) { }
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using __base_type::operator __integral_type;
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using __base_type::operator=;
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};
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/// Explicit specialization for int.
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template<>
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struct atomic<int> : atomic_int
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{
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typedef int __integral_type;
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typedef atomic_int __base_type;
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atomic() = default;
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~atomic() = default;
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atomic(const atomic&) = delete;
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atomic& operator=(const atomic&) volatile = delete;
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atomic(__integral_type __i) : __base_type(__i) { }
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using __base_type::operator __integral_type;
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using __base_type::operator=;
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};
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/// Explicit specialization for unsigned int.
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template<>
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struct atomic<unsigned int> : public atomic_uint
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{
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typedef unsigned int __integral_type;
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typedef atomic_uint __base_type;
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atomic() = default;
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~atomic() = default;
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atomic(const atomic&) = delete;
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atomic& operator=(const atomic&) volatile = delete;
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atomic(__integral_type __i) : __base_type(__i) { }
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using __base_type::operator __integral_type;
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using __base_type::operator=;
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};
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/// Explicit specialization for long.
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template<>
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struct atomic<long> : public atomic_long
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{
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typedef long __integral_type;
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typedef atomic_long __base_type;
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atomic() = default;
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~atomic() = default;
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atomic(const atomic&) = delete;
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atomic& operator=(const atomic&) volatile = delete;
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atomic(__integral_type __i) : __base_type(__i) { }
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using __base_type::operator __integral_type;
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using __base_type::operator=;
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};
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/// Explicit specialization for unsigned long.
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template<>
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struct atomic<unsigned long> : public atomic_ulong
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{
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typedef unsigned long __integral_type;
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typedef atomic_ulong __base_type;
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atomic() = default;
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~atomic() = default;
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atomic(const atomic&) = delete;
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atomic& operator=(const atomic&) volatile = delete;
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atomic(__integral_type __i) : __base_type(__i) { }
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using __base_type::operator __integral_type;
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using __base_type::operator=;
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};
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/// Explicit specialization for long long.
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template<>
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struct atomic<long long> : public atomic_llong
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{
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typedef long long __integral_type;
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typedef atomic_llong __base_type;
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atomic() = default;
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~atomic() = default;
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atomic(const atomic&) = delete;
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atomic& operator=(const atomic&) volatile = delete;
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atomic(__integral_type __i) : __base_type(__i) { }
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using __base_type::operator __integral_type;
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using __base_type::operator=;
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};
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/// Explicit specialization for unsigned long long.
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template<>
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struct atomic<unsigned long long> : public atomic_ullong
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{
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typedef unsigned long long __integral_type;
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typedef atomic_ullong __base_type;
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atomic() = default;
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~atomic() = default;
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atomic(const atomic&) = delete;
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atomic& operator=(const atomic&) volatile = delete;
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atomic(__integral_type __i) : __base_type(__i) { }
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using __base_type::operator __integral_type;
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using __base_type::operator=;
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};
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/// Explicit specialization for wchar_t.
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template<>
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struct atomic<wchar_t> : public atomic_wchar_t
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{
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typedef wchar_t __integral_type;
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typedef atomic_wchar_t __base_type;
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atomic() = default;
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~atomic() = default;
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atomic(const atomic&) = delete;
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atomic& operator=(const atomic&) volatile = delete;
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atomic(__integral_type __i) : __base_type(__i) { }
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using __base_type::operator __integral_type;
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using __base_type::operator=;
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};
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/// Explicit specialization for char16_t.
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template<>
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struct atomic<char16_t> : public atomic_char16_t
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{
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typedef char16_t __integral_type;
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typedef atomic_char16_t __base_type;
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atomic() = default;
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~atomic() = default;
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atomic(const atomic&) = delete;
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atomic& operator=(const atomic&) volatile = delete;
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atomic(__integral_type __i) : __base_type(__i) { }
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using __base_type::operator __integral_type;
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using __base_type::operator=;
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};
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/// Explicit specialization for char32_t.
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template<>
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struct atomic<char32_t> : public atomic_char32_t
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{
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typedef char32_t __integral_type;
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typedef atomic_char32_t __base_type;
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atomic() = default;
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~atomic() = default;
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atomic(const atomic&) = delete;
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atomic& operator=(const atomic&) volatile = delete;
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atomic(__integral_type __i) : __base_type(__i) { }
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using __base_type::operator __integral_type;
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using __base_type::operator=;
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};
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template<typename _Tp>
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_Tp*
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atomic<_Tp*>::load(memory_order __m) const
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{ return static_cast<_Tp*>(atomic_address::load(__m)); }
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template<typename _Tp>
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_Tp*
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atomic<_Tp*>::exchange(_Tp* __v, memory_order __m)
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{ return static_cast<_Tp*>(atomic_address::exchange(__v, __m)); }
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template<typename _Tp>
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bool
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atomic<_Tp*>::compare_exchange_weak(_Tp*& __r, _Tp* __v, memory_order __m1,
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memory_order __m2)
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{
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void** __vr = reinterpret_cast<void**>(&__r);
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void* __vv = static_cast<void*>(__v);
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return atomic_address::compare_exchange_weak(*__vr, __vv, __m1, __m2);
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}
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template<typename _Tp>
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bool
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atomic<_Tp*>::compare_exchange_strong(_Tp*& __r, _Tp* __v,
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memory_order __m1,
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memory_order __m2)
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{
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void** __vr = reinterpret_cast<void**>(&__r);
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void* __vv = static_cast<void*>(__v);
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return atomic_address::compare_exchange_strong(*__vr, __vv, __m1, __m2);
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}
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template<typename _Tp>
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bool
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atomic<_Tp*>::compare_exchange_weak(_Tp*& __r, _Tp* __v,
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memory_order __m)
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{
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return compare_exchange_weak(__r, __v, __m,
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__calculate_memory_order(__m));
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}
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template<typename _Tp>
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bool
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atomic<_Tp*>::compare_exchange_strong(_Tp*& __r, _Tp* __v,
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memory_order __m)
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{
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return compare_exchange_strong(__r, __v, __m,
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__calculate_memory_order(__m));
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}
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template<typename _Tp>
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_Tp*
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atomic<_Tp*>::fetch_add(ptrdiff_t __d, memory_order __m)
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{
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void* __p = atomic_fetch_add_explicit(this, sizeof(_Tp) * __d, __m);
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return static_cast<_Tp*>(__p);
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}
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template<typename _Tp>
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_Tp*
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atomic<_Tp*>::fetch_sub(ptrdiff_t __d, memory_order __m)
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{
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void* __p = atomic_fetch_sub_explicit(this, sizeof(_Tp) * __d, __m);
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return static_cast<_Tp*>(__p);
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}
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// Convenience function definitions, atomic_flag.
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inline bool
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atomic_flag_test_and_set_explicit(atomic_flag* __a, memory_order __m)
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{ return __a->test_and_set(__m); }
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inline void
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atomic_flag_clear_explicit(atomic_flag* __a, memory_order __m)
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{ return __a->clear(__m); }
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// Convenience function definitions, atomic_address.
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inline bool
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atomic_is_lock_free(const atomic_address* __a)
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{ return __a->is_lock_free(); }
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inline void
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atomic_store(atomic_address* __a, void* __v)
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{ __a->store(__v); }
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inline void
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atomic_store_explicit(atomic_address* __a, void* __v, memory_order __m)
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{ __a->store(__v, __m); }
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inline void*
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atomic_load(const atomic_address* __a)
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{ return __a->load(); }
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inline void*
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atomic_load_explicit(const atomic_address* __a, memory_order __m)
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{ return __a->load(__m); }
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inline void*
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atomic_exchange(atomic_address* __a, void* __v)
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{ return __a->exchange(__v); }
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inline void*
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atomic_exchange_explicit(atomic_address* __a, void* __v, memory_order __m)
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{ return __a->exchange(__v, __m); }
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inline bool
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atomic_compare_exchange_weak(atomic_address* __a, void** __v1, void* __v2)
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{
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return __a->compare_exchange_weak(*__v1, __v2, memory_order_seq_cst,
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memory_order_seq_cst);
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}
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inline bool
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atomic_compare_exchange_strong(atomic_address* __a,
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void** __v1, void* __v2)
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{
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return __a->compare_exchange_strong(*__v1, __v2, memory_order_seq_cst,
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memory_order_seq_cst);
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}
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inline bool
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atomic_compare_exchange_weak_explicit(atomic_address* __a,
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void** __v1, void* __v2,
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memory_order __m1, memory_order __m2)
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{ return __a->compare_exchange_weak(*__v1, __v2, __m1, __m2); }
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inline bool
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atomic_compare_exchange_strong_explicit(atomic_address* __a,
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void** __v1, void* __v2,
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memory_order __m1, memory_order __m2)
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{ return __a->compare_exchange_strong(*__v1, __v2, __m1, __m2); }
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inline void*
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atomic_fetch_add_explicit(atomic_address* __a, ptrdiff_t __d,
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memory_order __m)
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{ return __a->fetch_add(__d, __m); }
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inline void*
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atomic_fetch_add(atomic_address* __a, ptrdiff_t __d)
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{ return __a->fetch_add(__d); }
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inline void*
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atomic_fetch_sub_explicit(atomic_address* __a, ptrdiff_t __d,
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memory_order __m)
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{ return __a->fetch_sub(__d, __m); }
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inline void*
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atomic_fetch_sub(atomic_address* __a, ptrdiff_t __d)
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{ return __a->fetch_sub(__d); }
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// Convenience function definitions, atomic_bool.
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inline bool
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atomic_is_lock_free(const atomic_bool* __a)
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{ return __a->is_lock_free(); }
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inline void
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atomic_store(atomic_bool* __a, bool __i)
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{ __a->store(__i); }
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inline void
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atomic_store_explicit(atomic_bool* __a, bool __i, memory_order __m)
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{ __a->store(__i, __m); }
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inline bool
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atomic_load(const atomic_bool* __a)
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{ return __a->load(); }
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inline bool
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atomic_load_explicit(const atomic_bool* __a, memory_order __m)
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{ return __a->load(__m); }
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inline bool
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atomic_exchange(atomic_bool* __a, bool __i)
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{ return __a->exchange(__i); }
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inline bool
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atomic_exchange_explicit(atomic_bool* __a, bool __i, memory_order __m)
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{ return __a->exchange(__i, __m); }
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inline bool
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atomic_compare_exchange_weak(atomic_bool* __a, bool* __i1, bool __i2)
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{
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return __a->compare_exchange_weak(*__i1, __i2, memory_order_seq_cst,
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memory_order_seq_cst);
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}
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inline bool
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atomic_compare_exchange_strong(atomic_bool* __a, bool* __i1, bool __i2)
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{
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return __a->compare_exchange_strong(*__i1, __i2, memory_order_seq_cst,
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memory_order_seq_cst);
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}
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inline bool
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atomic_compare_exchange_weak_explicit(atomic_bool* __a, bool* __i1,
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bool __i2, memory_order __m1,
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memory_order __m2)
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{ return __a->compare_exchange_weak(*__i1, __i2, __m1, __m2); }
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inline bool
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atomic_compare_exchange_strong_explicit(atomic_bool* __a,
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bool* __i1, bool __i2,
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memory_order __m1, memory_order __m2)
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{ return __a->compare_exchange_strong(*__i1, __i2, __m1, __m2); }
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// Free standing functions. Template argument should be constricted
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// to intergral types as specified in the standard.
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template<typename _ITp>
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inline void
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atomic_store_explicit(__atomic_base<_ITp>* __a, _ITp __i, memory_order __m)
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{ __a->store(__i, __m); }
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template<typename _ITp>
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inline _ITp
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atomic_load_explicit(const __atomic_base<_ITp>* __a, memory_order __m)
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{ return __a->load(__m); }
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template<typename _ITp>
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inline _ITp
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atomic_exchange_explicit(__atomic_base<_ITp>* __a, _ITp __i,
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memory_order __m)
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{ return __a->exchange(__i, __m); }
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template<typename _ITp>
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inline bool
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atomic_compare_exchange_weak_explicit(__atomic_base<_ITp>* __a,
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_ITp* __i1, _ITp __i2,
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memory_order __m1, memory_order __m2)
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{ return __a->compare_exchange_weak(*__i1, __i2, __m1, __m2); }
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template<typename _ITp>
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inline bool
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atomic_compare_exchange_strong_explicit(__atomic_base<_ITp>* __a,
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_ITp* __i1, _ITp __i2,
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memory_order __m1,
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memory_order __m2)
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{ return __a->compare_exchange_strong(*__i1, __i2, __m1, __m2); }
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template<typename _ITp>
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inline _ITp
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atomic_fetch_add_explicit(__atomic_base<_ITp>* __a, _ITp __i,
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memory_order __m)
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{ return __a->fetch_add(__i, __m); }
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template<typename _ITp>
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inline _ITp
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atomic_fetch_sub_explicit(__atomic_base<_ITp>* __a, _ITp __i,
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memory_order __m)
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{ return __a->fetch_sub(__i, __m); }
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template<typename _ITp>
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inline _ITp
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atomic_fetch_and_explicit(__atomic_base<_ITp>* __a, _ITp __i,
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memory_order __m)
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{ return __a->fetch_and(__i, __m); }
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template<typename _ITp>
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inline _ITp
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atomic_fetch_or_explicit(__atomic_base<_ITp>* __a, _ITp __i,
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memory_order __m)
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{ return __a->fetch_or(__i, __m); }
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template<typename _ITp>
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inline _ITp
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atomic_fetch_xor_explicit(__atomic_base<_ITp>* __a, _ITp __i,
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memory_order __m)
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{ return __a->fetch_xor(__i, __m); }
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template<typename _ITp>
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inline bool
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atomic_is_lock_free(const __atomic_base<_ITp>* __a)
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{ return __a->is_lock_free(); }
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template<typename _ITp>
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inline void
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atomic_store(__atomic_base<_ITp>* __a, _ITp __i)
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{ atomic_store_explicit(__a, __i, memory_order_seq_cst); }
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template<typename _ITp>
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inline _ITp
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atomic_load(const __atomic_base<_ITp>* __a)
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{ return atomic_load_explicit(__a, memory_order_seq_cst); }
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template<typename _ITp>
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inline _ITp
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atomic_exchange(__atomic_base<_ITp>* __a, _ITp __i)
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{ return atomic_exchange_explicit(__a, __i, memory_order_seq_cst); }
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template<typename _ITp>
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inline bool
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atomic_compare_exchange_weak(__atomic_base<_ITp>* __a,
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_ITp* __i1, _ITp __i2)
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{
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return atomic_compare_exchange_weak_explicit(__a, __i1, __i2,
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memory_order_seq_cst,
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memory_order_seq_cst);
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}
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template<typename _ITp>
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inline bool
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atomic_compare_exchange_strong(__atomic_base<_ITp>* __a,
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_ITp* __i1, _ITp __i2)
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{
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return atomic_compare_exchange_strong_explicit(__a, __i1, __i2,
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memory_order_seq_cst,
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memory_order_seq_cst);
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}
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template<typename _ITp>
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inline _ITp
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atomic_fetch_add(__atomic_base<_ITp>* __a, _ITp __i)
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{ return atomic_fetch_add_explicit(__a, __i, memory_order_seq_cst); }
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template<typename _ITp>
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inline _ITp
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atomic_fetch_sub(__atomic_base<_ITp>* __a, _ITp __i)
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{ return atomic_fetch_sub_explicit(__a, __i, memory_order_seq_cst); }
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template<typename _ITp>
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inline _ITp
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atomic_fetch_and(__atomic_base<_ITp>* __a, _ITp __i)
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{ return atomic_fetch_and_explicit(__a, __i, memory_order_seq_cst); }
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template<typename _ITp>
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inline _ITp
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atomic_fetch_or(__atomic_base<_ITp>* __a, _ITp __i)
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{ return atomic_fetch_or_explicit(__a, __i, memory_order_seq_cst); }
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template<typename _ITp>
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inline _ITp
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atomic_fetch_xor(__atomic_base<_ITp>* __a, _ITp __i)
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{ return atomic_fetch_xor_explicit(__a, __i, memory_order_seq_cst); }
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// @} group atomics
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_GLIBCXX_END_NAMESPACE
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#endif
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