| 123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183 | /* * Distributed under the Boost Software License, Version 1.0. * (See accompanying file LICENSE_1_0.txt or copy at * http://www.boost.org/LICENSE_1_0.txt) * * Copyright (c) 2014, 2020 Andrey Semashev *//*! * \file   atomic/detail/ops_emulated.hpp * * This header contains lock pool-based implementation of the \c operations template. */#ifndef BOOST_ATOMIC_DETAIL_OPS_EMULATED_HPP_INCLUDED_#define BOOST_ATOMIC_DETAIL_OPS_EMULATED_HPP_INCLUDED_#include <cstddef>#include <boost/memory_order.hpp>#include <boost/atomic/detail/config.hpp>#include <boost/atomic/detail/storage_traits.hpp>#include <boost/atomic/detail/operations_fwd.hpp>#include <boost/atomic/detail/lock_pool.hpp>#ifdef BOOST_HAS_PRAGMA_ONCE#pragma once#endifnamespace boost {namespace atomics {namespace detail {template< std::size_t Size, std::size_t Alignment, bool = Alignment >= storage_traits< Size >::native_alignment >struct base_emulated_operations{    typedef typename storage_traits< Size >::type storage_type;};template< std::size_t Size, std::size_t Alignment >struct base_emulated_operations< Size, Alignment, false >{    typedef buffer_storage< Size, Alignment > storage_type;};template< std::size_t Size, std::size_t Alignment, bool Signed >struct emulated_operations :    public base_emulated_operations< Size, Alignment >{    typedef base_emulated_operations< Size, Alignment > base_type;    // Define storage_type to have alignment not greater than Alignment. This will allow operations to work with value_types    // that possibly have weaker alignment requirements than storage_traits< Size >::type would. This is important for atomic_ref<>.    // atomic<> will allow higher alignment requirement than its value_type.    // Note that storage_type should be an integral type, if possible, so that arithmetic and bitwise operations are possible.    typedef typename base_type::storage_type storage_type;    static BOOST_CONSTEXPR_OR_CONST std::size_t storage_size = Size;    static BOOST_CONSTEXPR_OR_CONST std::size_t storage_alignment = Alignment >= storage_traits< Size >::alignment ? storage_traits< Size >::alignment : Alignment;    static BOOST_CONSTEXPR_OR_CONST bool is_signed = Signed;    static BOOST_CONSTEXPR_OR_CONST bool full_cas_based = false;    static BOOST_CONSTEXPR_OR_CONST bool is_always_lock_free = false;    typedef lock_pool::scoped_lock< storage_alignment > scoped_lock;    static BOOST_FORCEINLINE void store(storage_type volatile& storage, storage_type v, memory_order) BOOST_NOEXCEPT    {        scoped_lock lock(&storage);        const_cast< storage_type& >(storage) = v;    }    static BOOST_FORCEINLINE storage_type load(storage_type const volatile& storage, memory_order) BOOST_NOEXCEPT    {        scoped_lock lock(&storage);        return const_cast< storage_type const& >(storage);    }    static BOOST_FORCEINLINE storage_type fetch_add(storage_type volatile& storage, storage_type v, memory_order) BOOST_NOEXCEPT    {        storage_type& s = const_cast< storage_type& >(storage);        scoped_lock lock(&storage);        storage_type old_val = s;        s += v;        return old_val;    }    static BOOST_FORCEINLINE storage_type fetch_sub(storage_type volatile& storage, storage_type v, memory_order) BOOST_NOEXCEPT    {        storage_type& s = const_cast< storage_type& >(storage);        scoped_lock lock(&storage);        storage_type old_val = s;        s -= v;        return old_val;    }    static BOOST_FORCEINLINE storage_type exchange(storage_type volatile& storage, storage_type v, memory_order) BOOST_NOEXCEPT    {        storage_type& s = const_cast< storage_type& >(storage);        scoped_lock lock(&storage);        storage_type old_val = s;        s = v;        return old_val;    }    static BOOST_FORCEINLINE bool compare_exchange_strong(        storage_type volatile& storage, storage_type& expected, storage_type desired, memory_order, memory_order) BOOST_NOEXCEPT    {        storage_type& s = const_cast< storage_type& >(storage);        scoped_lock lock(&storage);        storage_type old_val = s;        const bool res = old_val == expected;        if (res)            s = desired;        expected = old_val;        return res;    }    static BOOST_FORCEINLINE bool compare_exchange_weak(        storage_type volatile& storage, storage_type& expected, storage_type desired, memory_order, memory_order) BOOST_NOEXCEPT    {        // Note: This function is the exact copy of compare_exchange_strong. The reason we're not just forwarding the call        // is that MSVC-12 ICEs in this case.        storage_type& s = const_cast< storage_type& >(storage);        scoped_lock lock(&storage);        storage_type old_val = s;        const bool res = old_val == expected;        if (res)            s = desired;        expected = old_val;        return res;    }    static BOOST_FORCEINLINE storage_type fetch_and(storage_type volatile& storage, storage_type v, memory_order) BOOST_NOEXCEPT    {        storage_type& s = const_cast< storage_type& >(storage);        scoped_lock lock(&storage);        storage_type old_val = s;        s &= v;        return old_val;    }    static BOOST_FORCEINLINE storage_type fetch_or(storage_type volatile& storage, storage_type v, memory_order) BOOST_NOEXCEPT    {        storage_type& s = const_cast< storage_type& >(storage);        scoped_lock lock(&storage);        storage_type old_val = s;        s |= v;        return old_val;    }    static BOOST_FORCEINLINE storage_type fetch_xor(storage_type volatile& storage, storage_type v, memory_order) BOOST_NOEXCEPT    {        storage_type& s = const_cast< storage_type& >(storage);        scoped_lock lock(&storage);        storage_type old_val = s;        s ^= v;        return old_val;    }    static BOOST_FORCEINLINE bool test_and_set(storage_type volatile& storage, memory_order order) BOOST_NOEXCEPT    {        return !!exchange(storage, (storage_type)1, order);    }    static BOOST_FORCEINLINE void clear(storage_type volatile& storage, memory_order order) BOOST_NOEXCEPT    {        store(storage, (storage_type)0, order);    }};template< std::size_t Size, bool Signed >struct operations :    public emulated_operations< Size, storage_traits< Size >::alignment, Signed >{};} // namespace detail} // namespace atomics} // namespace boost#endif // BOOST_ATOMIC_DETAIL_OPS_EMULATED_HPP_INCLUDED_
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