370 lines
11 KiB
C++
370 lines
11 KiB
C++
//
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// detail/impl/strand_executor_service.hpp
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// ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
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//
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// Copyright (c) 2003-2023 Christopher M. Kohlhoff (chris at kohlhoff dot com)
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//
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// Distributed under the Boost Software License, Version 1.0. (See accompanying
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// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
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//
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#ifndef BOOST_ASIO_DETAIL_IMPL_STRAND_EXECUTOR_SERVICE_HPP
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#define BOOST_ASIO_DETAIL_IMPL_STRAND_EXECUTOR_SERVICE_HPP
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#if defined(_MSC_VER) && (_MSC_VER >= 1200)
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# pragma once
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#endif // defined(_MSC_VER) && (_MSC_VER >= 1200)
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#include <boost/asio/detail/fenced_block.hpp>
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#include <boost/asio/detail/handler_invoke_helpers.hpp>
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#include <boost/asio/detail/recycling_allocator.hpp>
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#include <boost/asio/executor_work_guard.hpp>
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#include <boost/asio/defer.hpp>
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#include <boost/asio/dispatch.hpp>
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#include <boost/asio/post.hpp>
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#include <boost/asio/detail/push_options.hpp>
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namespace boost {
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namespace asio {
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namespace detail {
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template <typename F, typename Allocator>
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class strand_executor_service::allocator_binder
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{
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public:
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typedef Allocator allocator_type;
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allocator_binder(BOOST_ASIO_MOVE_ARG(F) f, const Allocator& a)
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: f_(BOOST_ASIO_MOVE_CAST(F)(f)),
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allocator_(a)
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{
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}
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allocator_binder(const allocator_binder& other)
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: f_(other.f_),
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allocator_(other.allocator_)
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{
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}
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#if defined(BOOST_ASIO_HAS_MOVE)
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allocator_binder(allocator_binder&& other)
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: f_(BOOST_ASIO_MOVE_CAST(F)(other.f_)),
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allocator_(BOOST_ASIO_MOVE_CAST(allocator_type)(other.allocator_))
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{
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}
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#endif // defined(BOOST_ASIO_HAS_MOVE)
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allocator_type get_allocator() const BOOST_ASIO_NOEXCEPT
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{
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return allocator_;
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}
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void operator()()
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{
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f_();
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}
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private:
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F f_;
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allocator_type allocator_;
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};
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template <typename Executor>
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class strand_executor_service::invoker<Executor,
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typename enable_if<
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execution::is_executor<Executor>::value
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>::type>
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{
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public:
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invoker(const implementation_type& impl, Executor& ex)
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: impl_(impl),
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executor_(boost::asio::prefer(ex, execution::outstanding_work.tracked))
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{
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}
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invoker(const invoker& other)
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: impl_(other.impl_),
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executor_(other.executor_)
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{
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}
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#if defined(BOOST_ASIO_HAS_MOVE)
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invoker(invoker&& other)
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: impl_(BOOST_ASIO_MOVE_CAST(implementation_type)(other.impl_)),
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executor_(BOOST_ASIO_MOVE_CAST(executor_type)(other.executor_))
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{
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}
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#endif // defined(BOOST_ASIO_HAS_MOVE)
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struct on_invoker_exit
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{
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invoker* this_;
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~on_invoker_exit()
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{
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if (push_waiting_to_ready(this_->impl_))
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{
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recycling_allocator<void> allocator;
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executor_type ex = this_->executor_;
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#if defined(BOOST_ASIO_NO_DEPRECATED)
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boost::asio::prefer(
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boost::asio::require(
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BOOST_ASIO_MOVE_CAST(executor_type)(ex),
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execution::blocking.never),
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execution::allocator(allocator)
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).execute(BOOST_ASIO_MOVE_CAST(invoker)(*this_));
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#else // defined(BOOST_ASIO_NO_DEPRECATED)
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execution::execute(
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boost::asio::prefer(
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boost::asio::require(
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BOOST_ASIO_MOVE_CAST(executor_type)(ex),
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execution::blocking.never),
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execution::allocator(allocator)),
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BOOST_ASIO_MOVE_CAST(invoker)(*this_));
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#endif // defined(BOOST_ASIO_NO_DEPRECATED)
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}
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}
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};
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void operator()()
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{
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// Ensure the next handler, if any, is scheduled on block exit.
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on_invoker_exit on_exit = { this };
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(void)on_exit;
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run_ready_handlers(impl_);
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}
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private:
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typedef typename decay<
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typename prefer_result<
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Executor,
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execution::outstanding_work_t::tracked_t
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>::type
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>::type executor_type;
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implementation_type impl_;
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executor_type executor_;
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};
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#if !defined(BOOST_ASIO_NO_TS_EXECUTORS)
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template <typename Executor>
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class strand_executor_service::invoker<Executor,
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typename enable_if<
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!execution::is_executor<Executor>::value
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>::type>
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{
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public:
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invoker(const implementation_type& impl, Executor& ex)
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: impl_(impl),
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work_(ex)
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{
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}
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invoker(const invoker& other)
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: impl_(other.impl_),
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work_(other.work_)
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{
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}
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#if defined(BOOST_ASIO_HAS_MOVE)
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invoker(invoker&& other)
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: impl_(BOOST_ASIO_MOVE_CAST(implementation_type)(other.impl_)),
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work_(BOOST_ASIO_MOVE_CAST(executor_work_guard<Executor>)(other.work_))
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{
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}
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#endif // defined(BOOST_ASIO_HAS_MOVE)
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struct on_invoker_exit
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{
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invoker* this_;
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~on_invoker_exit()
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{
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if (push_waiting_to_ready(this_->impl_))
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{
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Executor ex(this_->work_.get_executor());
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recycling_allocator<void> allocator;
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ex.post(BOOST_ASIO_MOVE_CAST(invoker)(*this_), allocator);
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}
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}
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};
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void operator()()
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{
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// Ensure the next handler, if any, is scheduled on block exit.
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on_invoker_exit on_exit = { this };
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(void)on_exit;
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run_ready_handlers(impl_);
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}
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private:
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implementation_type impl_;
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executor_work_guard<Executor> work_;
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};
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#endif // !defined(BOOST_ASIO_NO_TS_EXECUTORS)
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template <typename Executor, typename Function>
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inline void strand_executor_service::execute(const implementation_type& impl,
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Executor& ex, BOOST_ASIO_MOVE_ARG(Function) function,
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typename enable_if<
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can_query<Executor, execution::allocator_t<void> >::value
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>::type*)
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{
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return strand_executor_service::do_execute(impl, ex,
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BOOST_ASIO_MOVE_CAST(Function)(function),
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boost::asio::query(ex, execution::allocator));
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}
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template <typename Executor, typename Function>
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inline void strand_executor_service::execute(const implementation_type& impl,
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Executor& ex, BOOST_ASIO_MOVE_ARG(Function) function,
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typename enable_if<
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!can_query<Executor, execution::allocator_t<void> >::value
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>::type*)
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{
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return strand_executor_service::do_execute(impl, ex,
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BOOST_ASIO_MOVE_CAST(Function)(function),
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std::allocator<void>());
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}
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template <typename Executor, typename Function, typename Allocator>
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void strand_executor_service::do_execute(const implementation_type& impl,
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Executor& ex, BOOST_ASIO_MOVE_ARG(Function) function, const Allocator& a)
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{
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typedef typename decay<Function>::type function_type;
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// If the executor is not never-blocking, and we are already in the strand,
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// then the function can run immediately.
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if (boost::asio::query(ex, execution::blocking) != execution::blocking.never
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&& running_in_this_thread(impl))
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{
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// Make a local, non-const copy of the function.
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function_type tmp(BOOST_ASIO_MOVE_CAST(Function)(function));
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fenced_block b(fenced_block::full);
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boost_asio_handler_invoke_helpers::invoke(tmp, tmp);
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return;
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}
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// Allocate and construct an operation to wrap the function.
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typedef executor_op<function_type, Allocator> op;
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typename op::ptr p = { detail::addressof(a), op::ptr::allocate(a), 0 };
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p.p = new (p.v) op(BOOST_ASIO_MOVE_CAST(Function)(function), a);
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BOOST_ASIO_HANDLER_CREATION((impl->service_->context(), *p.p,
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"strand_executor", impl.get(), 0, "execute"));
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// Add the function to the strand and schedule the strand if required.
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bool first = enqueue(impl, p.p);
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p.v = p.p = 0;
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if (first)
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{
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#if defined(BOOST_ASIO_NO_DEPRECATED)
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ex.execute(invoker<Executor>(impl, ex));
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#else // defined(BOOST_ASIO_NO_DEPRECATED)
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execution::execute(ex, invoker<Executor>(impl, ex));
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#endif // defined(BOOST_ASIO_NO_DEPRECATED)
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}
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}
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template <typename Executor, typename Function, typename Allocator>
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void strand_executor_service::dispatch(const implementation_type& impl,
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Executor& ex, BOOST_ASIO_MOVE_ARG(Function) function, const Allocator& a)
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{
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typedef typename decay<Function>::type function_type;
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// If we are already in the strand then the function can run immediately.
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if (running_in_this_thread(impl))
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{
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// Make a local, non-const copy of the function.
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function_type tmp(BOOST_ASIO_MOVE_CAST(Function)(function));
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fenced_block b(fenced_block::full);
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boost_asio_handler_invoke_helpers::invoke(tmp, tmp);
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return;
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}
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// Allocate and construct an operation to wrap the function.
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typedef executor_op<function_type, Allocator> op;
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typename op::ptr p = { detail::addressof(a), op::ptr::allocate(a), 0 };
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p.p = new (p.v) op(BOOST_ASIO_MOVE_CAST(Function)(function), a);
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BOOST_ASIO_HANDLER_CREATION((impl->service_->context(), *p.p,
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"strand_executor", impl.get(), 0, "dispatch"));
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// Add the function to the strand and schedule the strand if required.
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bool first = enqueue(impl, p.p);
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p.v = p.p = 0;
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if (first)
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{
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boost::asio::dispatch(ex,
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allocator_binder<invoker<Executor>, Allocator>(
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invoker<Executor>(impl, ex), a));
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}
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}
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// Request invocation of the given function and return immediately.
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template <typename Executor, typename Function, typename Allocator>
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void strand_executor_service::post(const implementation_type& impl,
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Executor& ex, BOOST_ASIO_MOVE_ARG(Function) function, const Allocator& a)
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{
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typedef typename decay<Function>::type function_type;
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// Allocate and construct an operation to wrap the function.
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typedef executor_op<function_type, Allocator> op;
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typename op::ptr p = { detail::addressof(a), op::ptr::allocate(a), 0 };
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p.p = new (p.v) op(BOOST_ASIO_MOVE_CAST(Function)(function), a);
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BOOST_ASIO_HANDLER_CREATION((impl->service_->context(), *p.p,
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"strand_executor", impl.get(), 0, "post"));
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// Add the function to the strand and schedule the strand if required.
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bool first = enqueue(impl, p.p);
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p.v = p.p = 0;
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if (first)
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{
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boost::asio::post(ex,
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allocator_binder<invoker<Executor>, Allocator>(
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invoker<Executor>(impl, ex), a));
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}
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}
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// Request invocation of the given function and return immediately.
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template <typename Executor, typename Function, typename Allocator>
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void strand_executor_service::defer(const implementation_type& impl,
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Executor& ex, BOOST_ASIO_MOVE_ARG(Function) function, const Allocator& a)
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{
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typedef typename decay<Function>::type function_type;
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// Allocate and construct an operation to wrap the function.
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typedef executor_op<function_type, Allocator> op;
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typename op::ptr p = { detail::addressof(a), op::ptr::allocate(a), 0 };
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p.p = new (p.v) op(BOOST_ASIO_MOVE_CAST(Function)(function), a);
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BOOST_ASIO_HANDLER_CREATION((impl->service_->context(), *p.p,
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"strand_executor", impl.get(), 0, "defer"));
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// Add the function to the strand and schedule the strand if required.
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bool first = enqueue(impl, p.p);
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p.v = p.p = 0;
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if (first)
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{
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boost::asio::defer(ex,
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allocator_binder<invoker<Executor>, Allocator>(
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invoker<Executor>(impl, ex), a));
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}
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}
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} // namespace detail
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} // namespace asio
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} // namespace boost
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#include <boost/asio/detail/pop_options.hpp>
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#endif // BOOST_ASIO_DETAIL_IMPL_STRAND_EXECUTOR_SERVICE_HPP
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