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907 lines
32 KiB
C++
907 lines
32 KiB
C++
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//
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// spawn.hpp
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// ~~~~~~~~~
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//
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// Copyright (c) 2003-2022 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 ASIO_SPAWN_HPP
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#define ASIO_SPAWN_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 "asio/detail/config.hpp"
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#include "asio/any_io_executor.hpp"
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#include "asio/cancellation_signal.hpp"
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#include "asio/cancellation_state.hpp"
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#include "asio/detail/exception.hpp"
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#include "asio/detail/memory.hpp"
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#include "asio/detail/type_traits.hpp"
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#include "asio/io_context.hpp"
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#include "asio/is_executor.hpp"
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#include "asio/strand.hpp"
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#if defined(ASIO_HAS_BOOST_COROUTINE)
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# include <boost/coroutine/all.hpp>
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#endif // defined(ASIO_HAS_BOOST_COROUTINE)
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#include "asio/detail/push_options.hpp"
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namespace asio {
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namespace detail {
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// Base class for all spawn()-ed thread implementations.
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class spawned_thread_base
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{
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public:
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spawned_thread_base()
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: owner_(0),
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has_context_switched_(false),
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throw_if_cancelled_(false),
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terminal_(false)
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{
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}
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virtual ~spawned_thread_base() {}
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virtual void resume() = 0;
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virtual void suspend_with(void (*fn)(void*), void* arg) = 0;
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virtual void destroy() = 0;
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void attach(spawned_thread_base** owner)
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{
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owner_ = owner;
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*owner_ = this;
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}
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void detach()
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{
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if (owner_)
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*owner_ = 0;
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owner_ = 0;
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}
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void suspend()
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{
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suspend_with(0, 0);
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}
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template <typename F>
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void suspend_with(F f)
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{
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suspend_with(&spawned_thread_base::call<F>, &f);
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}
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cancellation_slot get_cancellation_slot() const ASIO_NOEXCEPT
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{
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return cancellation_state_.slot();
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}
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cancellation_state get_cancellation_state() const ASIO_NOEXCEPT
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{
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return cancellation_state_;
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}
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void reset_cancellation_state()
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{
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cancellation_state_ = cancellation_state(parent_cancellation_slot_);
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}
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template <typename Filter>
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void reset_cancellation_state(Filter filter)
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{
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cancellation_state_ = cancellation_state(
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parent_cancellation_slot_, filter, filter);
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}
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template <typename InFilter, typename OutFilter>
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void reset_cancellation_state(InFilter in_filter, OutFilter out_filter)
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{
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cancellation_state_ = cancellation_state(
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parent_cancellation_slot_, in_filter, out_filter);
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}
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cancellation_type_t cancelled() const ASIO_NOEXCEPT
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{
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return cancellation_state_.cancelled();
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}
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bool has_context_switched() const ASIO_NOEXCEPT
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{
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return has_context_switched_;
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}
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bool throw_if_cancelled() const ASIO_NOEXCEPT
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{
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return throw_if_cancelled_;
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}
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void throw_if_cancelled(bool value) ASIO_NOEXCEPT
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{
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throw_if_cancelled_ = value;
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}
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protected:
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spawned_thread_base** owner_; // Points to data member in active handler.
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asio::cancellation_slot parent_cancellation_slot_;
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asio::cancellation_state cancellation_state_;
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bool has_context_switched_;
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bool throw_if_cancelled_;
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bool terminal_;
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private:
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// Disallow copying and assignment.
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spawned_thread_base(const spawned_thread_base&) ASIO_DELETED;
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spawned_thread_base& operator=(const spawned_thread_base&) ASIO_DELETED;
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template <typename F>
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static void call(void* f)
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{
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(*static_cast<F*>(f))();
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}
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};
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template <typename T>
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struct spawn_signature
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{
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typedef void type(exception_ptr, T);
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};
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template <>
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struct spawn_signature<void>
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{
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typedef void type(exception_ptr);
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};
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template <typename Executor>
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class initiate_spawn;
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} // namespace detail
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/// A @ref completion_token that represents the currently executing coroutine.
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/**
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* The basic_yield_context class is a completion token type that is used to
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* represent the currently executing stackful coroutine. A basic_yield_context
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* object may be passed as a completion token to an asynchronous operation. For
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* example:
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*
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* @code template <typename Executor>
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* void my_coroutine(basic_yield_context<Executor> yield)
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* {
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* ...
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* std::size_t n = my_socket.async_read_some(buffer, yield);
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* ...
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* } @endcode
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*
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* The initiating function (async_read_some in the above example) suspends the
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* current coroutine. The coroutine is resumed when the asynchronous operation
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* completes, and the result of the operation is returned.
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*/
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template <typename Executor>
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class basic_yield_context
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{
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public:
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/// The executor type associated with the yield context.
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typedef Executor executor_type;
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/// The cancellation slot type associated with the yield context.
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typedef cancellation_slot cancellation_slot_type;
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/// Construct a yield context from another yield context type.
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/**
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* Requires that OtherExecutor be convertible to Executor.
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*/
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template <typename OtherExecutor>
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basic_yield_context(const basic_yield_context<OtherExecutor>& other,
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typename constraint<
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is_convertible<OtherExecutor, Executor>::value
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>::type = 0)
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: spawned_thread_(other.spawned_thread_),
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executor_(other.executor_),
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ec_(other.ec_)
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{
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}
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/// Get the executor associated with the yield context.
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executor_type get_executor() const ASIO_NOEXCEPT
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{
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return executor_;
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}
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/// Get the cancellation slot associated with the coroutine.
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cancellation_slot_type get_cancellation_slot() const ASIO_NOEXCEPT
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{
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return spawned_thread_->get_cancellation_slot();
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}
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/// Get the cancellation state associated with the coroutine.
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cancellation_state get_cancellation_state() const ASIO_NOEXCEPT
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{
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return spawned_thread_->get_cancellation_state();
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}
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/// Reset the cancellation state associated with the coroutine.
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/**
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* Let <tt>P</tt> be the cancellation slot associated with the current
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* coroutine's @ref spawn completion handler. Assigns a new
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* asio::cancellation_state object <tt>S</tt>, constructed as
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* <tt>S(P)</tt>, into the current coroutine's cancellation state object.
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*/
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void reset_cancellation_state() const
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{
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spawned_thread_->reset_cancellation_state();
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}
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/// Reset the cancellation state associated with the coroutine.
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/**
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* Let <tt>P</tt> be the cancellation slot associated with the current
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* coroutine's @ref spawn completion handler. Assigns a new
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* asio::cancellation_state object <tt>S</tt>, constructed as <tt>S(P,
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* std::forward<Filter>(filter))</tt>, into the current coroutine's
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* cancellation state object.
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*/
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template <typename Filter>
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void reset_cancellation_state(ASIO_MOVE_ARG(Filter) filter) const
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{
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spawned_thread_->reset_cancellation_state(
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ASIO_MOVE_CAST(Filter)(filter));
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}
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/// Reset the cancellation state associated with the coroutine.
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/**
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* Let <tt>P</tt> be the cancellation slot associated with the current
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* coroutine's @ref spawn completion handler. Assigns a new
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* asio::cancellation_state object <tt>S</tt>, constructed as <tt>S(P,
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* std::forward<InFilter>(in_filter),
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* std::forward<OutFilter>(out_filter))</tt>, into the current coroutine's
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* cancellation state object.
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*/
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template <typename InFilter, typename OutFilter>
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void reset_cancellation_state(ASIO_MOVE_ARG(InFilter) in_filter,
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ASIO_MOVE_ARG(OutFilter) out_filter) const
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{
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spawned_thread_->reset_cancellation_state(
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ASIO_MOVE_CAST(InFilter)(in_filter),
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ASIO_MOVE_CAST(OutFilter)(out_filter));
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}
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/// Determine whether the current coroutine has been cancelled.
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cancellation_type_t cancelled() const ASIO_NOEXCEPT
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{
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return spawned_thread_->cancelled();
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}
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/// Determine whether the coroutine throws if trying to suspend when it has
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/// been cancelled.
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bool throw_if_cancelled() const ASIO_NOEXCEPT
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{
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return spawned_thread_->throw_if_cancelled();
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}
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/// Set whether the coroutine throws if trying to suspend when it has been
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/// cancelled.
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void throw_if_cancelled(bool value) const ASIO_NOEXCEPT
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{
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spawned_thread_->throw_if_cancelled(value);
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}
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/// Return a yield context that sets the specified error_code.
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/**
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* By default, when a yield context is used with an asynchronous operation, a
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* non-success error_code is converted to system_error and thrown. This
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* operator may be used to specify an error_code object that should instead be
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* set with the asynchronous operation's result. For example:
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*
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* @code template <typename Executor>
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* void my_coroutine(basic_yield_context<Executor> yield)
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* {
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* ...
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* std::size_t n = my_socket.async_read_some(buffer, yield[ec]);
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* if (ec)
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* {
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* // An error occurred.
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* }
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* ...
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* } @endcode
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*/
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basic_yield_context operator[](asio::error_code& ec) const
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{
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basic_yield_context tmp(*this);
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tmp.ec_ = &ec;
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return tmp;
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}
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#if !defined(GENERATING_DOCUMENTATION)
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//private:
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basic_yield_context(detail::spawned_thread_base* spawned_thread,
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const Executor& ex)
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: spawned_thread_(spawned_thread),
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executor_(ex),
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ec_(0)
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{
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}
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detail::spawned_thread_base* spawned_thread_;
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Executor executor_;
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asio::error_code* ec_;
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#endif // !defined(GENERATING_DOCUMENTATION)
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};
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/// A @ref completion_token object that represents the currently executing
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/// coroutine.
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typedef basic_yield_context<any_io_executor> yield_context;
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/**
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* @defgroup spawn asio::spawn
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*
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* @brief Start a new stackful coroutine.
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*
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* The spawn() function is a high-level wrapper over the Boost.Coroutine
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* library. This function enables programs to implement asynchronous logic in a
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* synchronous manner, as illustrated by the following example:
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*
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* @code asio::spawn(my_strand, do_echo, asio::detached);
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*
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* // ...
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*
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* void do_echo(asio::yield_context yield)
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* {
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* try
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* {
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* char data[128];
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* for (;;)
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* {
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* std::size_t length =
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* my_socket.async_read_some(
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* asio::buffer(data), yield);
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*
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* asio::async_write(my_socket,
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* asio::buffer(data, length), yield);
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* }
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* }
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* catch (std::exception& e)
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* {
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* // ...
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* }
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* } @endcode
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*/
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/*@{*/
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/// Start a new stackful coroutine that executes on a given executor.
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/**
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* This function is used to launch a new stackful coroutine.
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*
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* @param ex Identifies the executor that will run the stackful coroutine.
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*
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* @param function The coroutine function. The function must be callable the
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* signature:
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* @code void function(basic_yield_context<Executor> yield); @endcode
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*
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* @param token The @ref completion_token that will handle the notification
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* that the coroutine has completed. If the return type @c R of @c function is
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* @c void, the function signature of the completion handler must be:
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*
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* @code void handler(std::exception_ptr); @endcode
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* Otherwise, the function signature of the completion handler must be:
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* @code void handler(std::exception_ptr, R); @endcode
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*
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* @par Completion Signature
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* @code void(std::exception_ptr, R) @endcode
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* where @c R is the return type of the function object.
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*
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* @par Per-Operation Cancellation
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* The new thread of execution is created with a cancellation state that
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* supports @c cancellation_type::terminal values only. To change the
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* cancellation state, call the basic_yield_context member function
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* @c reset_cancellation_state.
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*/
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template <typename Executor, typename F,
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ASIO_COMPLETION_TOKEN_FOR(typename detail::spawn_signature<
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typename result_of<F(basic_yield_context<Executor>)>::type>::type)
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CompletionToken ASIO_DEFAULT_COMPLETION_TOKEN_TYPE(Executor)>
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ASIO_INITFN_AUTO_RESULT_TYPE_PREFIX(CompletionToken,
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typename detail::spawn_signature<
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typename result_of<F(basic_yield_context<Executor>)>::type>::type)
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spawn(const Executor& ex, ASIO_MOVE_ARG(F) function,
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ASIO_MOVE_ARG(CompletionToken) token
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ASIO_DEFAULT_COMPLETION_TOKEN(Executor),
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#if defined(ASIO_HAS_BOOST_COROUTINE)
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typename constraint<
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!is_same<
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typename decay<CompletionToken>::type,
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boost::coroutines::attributes
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>::value
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>::type = 0,
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#endif // defined(ASIO_HAS_BOOST_COROUTINE)
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typename constraint<
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is_executor<Executor>::value || execution::is_executor<Executor>::value
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>::type = 0)
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ASIO_INITFN_AUTO_RESULT_TYPE_SUFFIX((
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async_initiate<CompletionToken,
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typename detail::spawn_signature<
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typename result_of<F(basic_yield_context<Executor>)>::type>::type>(
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declval<detail::initiate_spawn<Executor> >(),
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token, ASIO_MOVE_CAST(F)(function))));
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/// Start a new stackful coroutine that executes on a given execution context.
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/**
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* This function is used to launch a new stackful coroutine.
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*
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* @param ctx Identifies the execution context that will run the stackful
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* coroutine.
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*
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* @param function The coroutine function. The function must be callable the
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* signature:
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|
* @code void function(basic_yield_context<Executor> yield); @endcode
|
||
|
*
|
||
|
* @param token The @ref completion_token that will handle the notification
|
||
|
* that the coroutine has completed. If the return type @c R of @c function is
|
||
|
* @c void, the function signature of the completion handler must be:
|
||
|
*
|
||
|
* @code void handler(std::exception_ptr); @endcode
|
||
|
* Otherwise, the function signature of the completion handler must be:
|
||
|
* @code void handler(std::exception_ptr, R); @endcode
|
||
|
*
|
||
|
* @par Completion Signature
|
||
|
* @code void(std::exception_ptr, R) @endcode
|
||
|
* where @c R is the return type of the function object.
|
||
|
*
|
||
|
* @par Per-Operation Cancellation
|
||
|
* The new thread of execution is created with a cancellation state that
|
||
|
* supports @c cancellation_type::terminal values only. To change the
|
||
|
* cancellation state, call the basic_yield_context member function
|
||
|
* @c reset_cancellation_state.
|
||
|
*/
|
||
|
template <typename ExecutionContext, typename F,
|
||
|
ASIO_COMPLETION_TOKEN_FOR(typename detail::spawn_signature<
|
||
|
typename result_of<F(basic_yield_context<
|
||
|
typename ExecutionContext::executor_type>)>::type>::type)
|
||
|
CompletionToken ASIO_DEFAULT_COMPLETION_TOKEN_TYPE(
|
||
|
typename ExecutionContext::executor_type)>
|
||
|
ASIO_INITFN_AUTO_RESULT_TYPE_PREFIX(CompletionToken,
|
||
|
typename detail::spawn_signature<
|
||
|
typename result_of<F(basic_yield_context<
|
||
|
typename ExecutionContext::executor_type>)>::type>::type)
|
||
|
spawn(ExecutionContext& ctx, ASIO_MOVE_ARG(F) function,
|
||
|
ASIO_MOVE_ARG(CompletionToken) token
|
||
|
ASIO_DEFAULT_COMPLETION_TOKEN(
|
||
|
typename ExecutionContext::executor_type),
|
||
|
#if defined(ASIO_HAS_BOOST_COROUTINE)
|
||
|
typename constraint<
|
||
|
!is_same<
|
||
|
typename decay<CompletionToken>::type,
|
||
|
boost::coroutines::attributes
|
||
|
>::value
|
||
|
>::type = 0,
|
||
|
#endif // defined(ASIO_HAS_BOOST_COROUTINE)
|
||
|
typename constraint<
|
||
|
is_convertible<ExecutionContext&, execution_context&>::value
|
||
|
>::type = 0)
|
||
|
ASIO_INITFN_AUTO_RESULT_TYPE_SUFFIX((
|
||
|
async_initiate<CompletionToken,
|
||
|
typename detail::spawn_signature<
|
||
|
typename result_of<F(basic_yield_context<
|
||
|
typename ExecutionContext::executor_type>)>::type>::type>(
|
||
|
declval<detail::initiate_spawn<
|
||
|
typename ExecutionContext::executor_type> >(),
|
||
|
token, ASIO_MOVE_CAST(F)(function))));
|
||
|
|
||
|
/// Start a new stackful coroutine, inheriting the executor of another.
|
||
|
/**
|
||
|
* This function is used to launch a new stackful coroutine.
|
||
|
*
|
||
|
* @param ctx Identifies the current coroutine as a parent of the new
|
||
|
* coroutine. This specifies that the new coroutine should inherit the executor
|
||
|
* of the parent. For example, if the parent coroutine is executing in a
|
||
|
* particular strand, then the new coroutine will execute in the same strand.
|
||
|
*
|
||
|
* @param function The coroutine function. The function must be callable the
|
||
|
* signature:
|
||
|
* @code void function(basic_yield_context<Executor> yield); @endcode
|
||
|
*
|
||
|
* @param token The @ref completion_token that will handle the notification
|
||
|
* that the coroutine has completed. If the return type @c R of @c function is
|
||
|
* @c void, the function signature of the completion handler must be:
|
||
|
*
|
||
|
* @code void handler(std::exception_ptr); @endcode
|
||
|
* Otherwise, the function signature of the completion handler must be:
|
||
|
* @code void handler(std::exception_ptr, R); @endcode
|
||
|
*
|
||
|
* @par Completion Signature
|
||
|
* @code void(std::exception_ptr, R) @endcode
|
||
|
* where @c R is the return type of the function object.
|
||
|
*
|
||
|
* @par Per-Operation Cancellation
|
||
|
* The new thread of execution is created with a cancellation state that
|
||
|
* supports @c cancellation_type::terminal values only. To change the
|
||
|
* cancellation state, call the basic_yield_context member function
|
||
|
* @c reset_cancellation_state.
|
||
|
*/
|
||
|
template <typename Executor, typename F,
|
||
|
ASIO_COMPLETION_TOKEN_FOR(typename detail::spawn_signature<
|
||
|
typename result_of<F(basic_yield_context<Executor>)>::type>::type)
|
||
|
CompletionToken ASIO_DEFAULT_COMPLETION_TOKEN_TYPE(Executor)>
|
||
|
ASIO_INITFN_AUTO_RESULT_TYPE_PREFIX(CompletionToken,
|
||
|
typename detail::spawn_signature<
|
||
|
typename result_of<F(basic_yield_context<Executor>)>::type>::type)
|
||
|
spawn(const basic_yield_context<Executor>& ctx,
|
||
|
ASIO_MOVE_ARG(F) function,
|
||
|
ASIO_MOVE_ARG(CompletionToken) token
|
||
|
ASIO_DEFAULT_COMPLETION_TOKEN(Executor),
|
||
|
#if defined(ASIO_HAS_BOOST_COROUTINE)
|
||
|
typename constraint<
|
||
|
!is_same<
|
||
|
typename decay<CompletionToken>::type,
|
||
|
boost::coroutines::attributes
|
||
|
>::value
|
||
|
>::type = 0,
|
||
|
#endif // defined(ASIO_HAS_BOOST_COROUTINE)
|
||
|
typename constraint<
|
||
|
is_executor<Executor>::value || execution::is_executor<Executor>::value
|
||
|
>::type = 0)
|
||
|
ASIO_INITFN_AUTO_RESULT_TYPE_SUFFIX((
|
||
|
async_initiate<CompletionToken,
|
||
|
typename detail::spawn_signature<
|
||
|
typename result_of<F(basic_yield_context<Executor>)>::type>::type>(
|
||
|
declval<detail::initiate_spawn<Executor> >(),
|
||
|
token, ASIO_MOVE_CAST(F)(function))));
|
||
|
|
||
|
#if defined(ASIO_HAS_BOOST_CONTEXT_FIBER) \
|
||
|
|| defined(GENERATING_DOCUMENTATION)
|
||
|
|
||
|
/// Start a new stackful coroutine that executes on a given executor.
|
||
|
/**
|
||
|
* This function is used to launch a new stackful coroutine using the
|
||
|
* specified stack allocator.
|
||
|
*
|
||
|
* @param ex Identifies the executor that will run the stackful coroutine.
|
||
|
*
|
||
|
* @param stack_allocator Denotes the allocator to be used to allocate the
|
||
|
* underlying coroutine's stack. The type must satisfy the stack-allocator
|
||
|
* concept defined by the Boost.Context library.
|
||
|
*
|
||
|
* @param function The coroutine function. The function must be callable the
|
||
|
* signature:
|
||
|
* @code void function(basic_yield_context<Executor> yield); @endcode
|
||
|
*
|
||
|
* @param token The @ref completion_token that will handle the notification
|
||
|
* that the coroutine has completed. If the return type @c R of @c function is
|
||
|
* @c void, the function signature of the completion handler must be:
|
||
|
*
|
||
|
* @code void handler(std::exception_ptr); @endcode
|
||
|
* Otherwise, the function signature of the completion handler must be:
|
||
|
* @code void handler(std::exception_ptr, R); @endcode
|
||
|
*
|
||
|
* @par Completion Signature
|
||
|
* @code void(std::exception_ptr, R) @endcode
|
||
|
* where @c R is the return type of the function object.
|
||
|
*
|
||
|
* @par Per-Operation Cancellation
|
||
|
* The new thread of execution is created with a cancellation state that
|
||
|
* supports @c cancellation_type::terminal values only. To change the
|
||
|
* cancellation state, call the basic_yield_context member function
|
||
|
* @c reset_cancellation_state.
|
||
|
*/
|
||
|
template <typename Executor, typename StackAllocator, typename F,
|
||
|
ASIO_COMPLETION_TOKEN_FOR(typename detail::spawn_signature<
|
||
|
typename result_of<F(basic_yield_context<Executor>)>::type>::type)
|
||
|
CompletionToken ASIO_DEFAULT_COMPLETION_TOKEN_TYPE(Executor)>
|
||
|
ASIO_INITFN_AUTO_RESULT_TYPE_PREFIX(CompletionToken,
|
||
|
typename detail::spawn_signature<
|
||
|
typename result_of<F(basic_yield_context<Executor>)>::type>::type)
|
||
|
spawn(const Executor& ex, allocator_arg_t,
|
||
|
ASIO_MOVE_ARG(StackAllocator) stack_allocator,
|
||
|
ASIO_MOVE_ARG(F) function,
|
||
|
ASIO_MOVE_ARG(CompletionToken) token
|
||
|
ASIO_DEFAULT_COMPLETION_TOKEN(Executor),
|
||
|
typename constraint<
|
||
|
is_executor<Executor>::value || execution::is_executor<Executor>::value
|
||
|
>::type = 0)
|
||
|
ASIO_INITFN_AUTO_RESULT_TYPE_SUFFIX((
|
||
|
async_initiate<CompletionToken,
|
||
|
typename detail::spawn_signature<
|
||
|
typename result_of<F(basic_yield_context<Executor>)>::type>::type>(
|
||
|
declval<detail::initiate_spawn<Executor> >(),
|
||
|
token, allocator_arg_t(),
|
||
|
ASIO_MOVE_CAST(StackAllocator)(stack_allocator),
|
||
|
ASIO_MOVE_CAST(F)(function))));
|
||
|
|
||
|
/// Start a new stackful coroutine that executes on a given execution context.
|
||
|
/**
|
||
|
* This function is used to launch a new stackful coroutine.
|
||
|
*
|
||
|
* @param ctx Identifies the execution context that will run the stackful
|
||
|
* coroutine.
|
||
|
*
|
||
|
* @param stack_allocator Denotes the allocator to be used to allocate the
|
||
|
* underlying coroutine's stack. The type must satisfy the stack-allocator
|
||
|
* concept defined by the Boost.Context library.
|
||
|
*
|
||
|
* @param function The coroutine function. The function must be callable the
|
||
|
* signature:
|
||
|
* @code void function(basic_yield_context<Executor> yield); @endcode
|
||
|
*
|
||
|
* @param token The @ref completion_token that will handle the notification
|
||
|
* that the coroutine has completed. If the return type @c R of @c function is
|
||
|
* @c void, the function signature of the completion handler must be:
|
||
|
*
|
||
|
* @code void handler(std::exception_ptr); @endcode
|
||
|
* Otherwise, the function signature of the completion handler must be:
|
||
|
* @code void handler(std::exception_ptr, R); @endcode
|
||
|
*
|
||
|
* @par Completion Signature
|
||
|
* @code void(std::exception_ptr, R) @endcode
|
||
|
* where @c R is the return type of the function object.
|
||
|
*
|
||
|
* @par Per-Operation Cancellation
|
||
|
* The new thread of execution is created with a cancellation state that
|
||
|
* supports @c cancellation_type::terminal values only. To change the
|
||
|
* cancellation state, call the basic_yield_context member function
|
||
|
* @c reset_cancellation_state.
|
||
|
*/
|
||
|
template <typename ExecutionContext, typename StackAllocator, typename F,
|
||
|
ASIO_COMPLETION_TOKEN_FOR(typename detail::spawn_signature<
|
||
|
typename result_of<F(basic_yield_context<
|
||
|
typename ExecutionContext::executor_type>)>::type>::type)
|
||
|
CompletionToken ASIO_DEFAULT_COMPLETION_TOKEN_TYPE(
|
||
|
typename ExecutionContext::executor_type)>
|
||
|
ASIO_INITFN_AUTO_RESULT_TYPE_PREFIX(CompletionToken,
|
||
|
typename detail::spawn_signature<
|
||
|
typename result_of<F(basic_yield_context<
|
||
|
typename ExecutionContext::executor_type>)>::type>::type)
|
||
|
spawn(ExecutionContext& ctx, allocator_arg_t,
|
||
|
ASIO_MOVE_ARG(StackAllocator) stack_allocator,
|
||
|
ASIO_MOVE_ARG(F) function,
|
||
|
ASIO_MOVE_ARG(CompletionToken) token
|
||
|
ASIO_DEFAULT_COMPLETION_TOKEN(
|
||
|
typename ExecutionContext::executor_type),
|
||
|
typename constraint<
|
||
|
is_convertible<ExecutionContext&, execution_context&>::value
|
||
|
>::type = 0)
|
||
|
ASIO_INITFN_AUTO_RESULT_TYPE_SUFFIX((
|
||
|
async_initiate<CompletionToken,
|
||
|
typename detail::spawn_signature<
|
||
|
typename result_of<F(basic_yield_context<
|
||
|
typename ExecutionContext::executor_type>)>::type>::type>(
|
||
|
declval<detail::initiate_spawn<
|
||
|
typename ExecutionContext::executor_type> >(),
|
||
|
token, allocator_arg_t(),
|
||
|
ASIO_MOVE_CAST(StackAllocator)(stack_allocator),
|
||
|
ASIO_MOVE_CAST(F)(function))));
|
||
|
|
||
|
/// Start a new stackful coroutine, inheriting the executor of another.
|
||
|
/**
|
||
|
* This function is used to launch a new stackful coroutine using the
|
||
|
* specified stack allocator.
|
||
|
*
|
||
|
* @param ctx Identifies the current coroutine as a parent of the new
|
||
|
* coroutine. This specifies that the new coroutine should inherit the
|
||
|
* executor of the parent. For example, if the parent coroutine is executing
|
||
|
* in a particular strand, then the new coroutine will execute in the same
|
||
|
* strand.
|
||
|
*
|
||
|
* @param stack_allocator Denotes the allocator to be used to allocate the
|
||
|
* underlying coroutine's stack. The type must satisfy the stack-allocator
|
||
|
* concept defined by the Boost.Context library.
|
||
|
*
|
||
|
* @param function The coroutine function. The function must be callable the
|
||
|
* signature:
|
||
|
* @code void function(basic_yield_context<Executor> yield); @endcode
|
||
|
*
|
||
|
* @param token The @ref completion_token that will handle the notification
|
||
|
* that the coroutine has completed. If the return type @c R of @c function is
|
||
|
* @c void, the function signature of the completion handler must be:
|
||
|
*
|
||
|
* @code void handler(std::exception_ptr); @endcode
|
||
|
* Otherwise, the function signature of the completion handler must be:
|
||
|
* @code void handler(std::exception_ptr, R); @endcode
|
||
|
*
|
||
|
* @par Completion Signature
|
||
|
* @code void(std::exception_ptr, R) @endcode
|
||
|
* where @c R is the return type of the function object.
|
||
|
*
|
||
|
* @par Per-Operation Cancellation
|
||
|
* The new thread of execution is created with a cancellation state that
|
||
|
* supports @c cancellation_type::terminal values only. To change the
|
||
|
* cancellation state, call the basic_yield_context member function
|
||
|
* @c reset_cancellation_state.
|
||
|
*/
|
||
|
template <typename Executor, typename StackAllocator, typename F,
|
||
|
ASIO_COMPLETION_TOKEN_FOR(typename detail::spawn_signature<
|
||
|
typename result_of<F(basic_yield_context<Executor>)>::type>::type)
|
||
|
CompletionToken ASIO_DEFAULT_COMPLETION_TOKEN_TYPE(Executor)>
|
||
|
ASIO_INITFN_AUTO_RESULT_TYPE_PREFIX(CompletionToken,
|
||
|
typename detail::spawn_signature<
|
||
|
typename result_of<F(basic_yield_context<Executor>)>::type>::type)
|
||
|
spawn(const basic_yield_context<Executor>& ctx, allocator_arg_t,
|
||
|
ASIO_MOVE_ARG(StackAllocator) stack_allocator,
|
||
|
ASIO_MOVE_ARG(F) function,
|
||
|
ASIO_MOVE_ARG(CompletionToken) token
|
||
|
ASIO_DEFAULT_COMPLETION_TOKEN(Executor),
|
||
|
typename constraint<
|
||
|
is_executor<Executor>::value || execution::is_executor<Executor>::value
|
||
|
>::type = 0)
|
||
|
ASIO_INITFN_AUTO_RESULT_TYPE_SUFFIX((
|
||
|
async_initiate<CompletionToken,
|
||
|
typename detail::spawn_signature<
|
||
|
typename result_of<F(basic_yield_context<Executor>)>::type>::type>(
|
||
|
declval<detail::initiate_spawn<Executor> >(),
|
||
|
token, allocator_arg_t(),
|
||
|
ASIO_MOVE_CAST(StackAllocator)(stack_allocator),
|
||
|
ASIO_MOVE_CAST(F)(function))));
|
||
|
|
||
|
#endif // defined(ASIO_HAS_BOOST_CONTEXT_FIBER)
|
||
|
// || defined(GENERATING_DOCUMENTATION)
|
||
|
|
||
|
#if defined(ASIO_HAS_BOOST_COROUTINE) \
|
||
|
|| defined(GENERATING_DOCUMENTATION)
|
||
|
|
||
|
/// (Deprecated: Use overloads with a completion token.) Start a new stackful
|
||
|
/// coroutine, calling the specified handler when it completes.
|
||
|
/**
|
||
|
* This function is used to launch a new coroutine.
|
||
|
*
|
||
|
* @param function The coroutine function. The function must have the signature:
|
||
|
* @code void function(basic_yield_context<Executor> yield); @endcode
|
||
|
* where Executor is the associated executor type of @c Function.
|
||
|
*
|
||
|
* @param attributes Boost.Coroutine attributes used to customise the coroutine.
|
||
|
*/
|
||
|
template <typename Function>
|
||
|
void spawn(ASIO_MOVE_ARG(Function) function,
|
||
|
const boost::coroutines::attributes& attributes
|
||
|
= boost::coroutines::attributes());
|
||
|
|
||
|
/// (Deprecated: Use overloads with a completion token.) Start a new stackful
|
||
|
/// coroutine, calling the specified handler when it completes.
|
||
|
/**
|
||
|
* This function is used to launch a new coroutine.
|
||
|
*
|
||
|
* @param handler A handler to be called when the coroutine exits. More
|
||
|
* importantly, the handler provides an execution context (via the the handler
|
||
|
* invocation hook) for the coroutine. The handler must have the signature:
|
||
|
* @code void handler(); @endcode
|
||
|
*
|
||
|
* @param function The coroutine function. The function must have the signature:
|
||
|
* @code void function(basic_yield_context<Executor> yield); @endcode
|
||
|
* where Executor is the associated executor type of @c Handler.
|
||
|
*
|
||
|
* @param attributes Boost.Coroutine attributes used to customise the coroutine.
|
||
|
*/
|
||
|
template <typename Handler, typename Function>
|
||
|
void spawn(ASIO_MOVE_ARG(Handler) handler,
|
||
|
ASIO_MOVE_ARG(Function) function,
|
||
|
const boost::coroutines::attributes& attributes
|
||
|
= boost::coroutines::attributes(),
|
||
|
typename constraint<
|
||
|
!is_executor<typename decay<Handler>::type>::value &&
|
||
|
!execution::is_executor<typename decay<Handler>::type>::value &&
|
||
|
!is_convertible<Handler&, execution_context&>::value>::type = 0);
|
||
|
|
||
|
/// (Deprecated: Use overloads with a completion token.) Start a new stackful
|
||
|
/// coroutine, inheriting the execution context of another.
|
||
|
/**
|
||
|
* This function is used to launch a new coroutine.
|
||
|
*
|
||
|
* @param ctx Identifies the current coroutine as a parent of the new
|
||
|
* coroutine. This specifies that the new coroutine should inherit the
|
||
|
* execution context of the parent. For example, if the parent coroutine is
|
||
|
* executing in a particular strand, then the new coroutine will execute in the
|
||
|
* same strand.
|
||
|
*
|
||
|
* @param function The coroutine function. The function must have the signature:
|
||
|
* @code void function(basic_yield_context<Executor> yield); @endcode
|
||
|
*
|
||
|
* @param attributes Boost.Coroutine attributes used to customise the coroutine.
|
||
|
*/
|
||
|
template <typename Executor, typename Function>
|
||
|
void spawn(basic_yield_context<Executor> ctx,
|
||
|
ASIO_MOVE_ARG(Function) function,
|
||
|
const boost::coroutines::attributes& attributes
|
||
|
= boost::coroutines::attributes());
|
||
|
|
||
|
/// (Deprecated: Use overloads with a completion token.) Start a new stackful
|
||
|
/// coroutine that executes on a given executor.
|
||
|
/**
|
||
|
* This function is used to launch a new coroutine.
|
||
|
*
|
||
|
* @param ex Identifies the executor that will run the coroutine. The new
|
||
|
* coroutine is automatically given its own explicit strand within this
|
||
|
* executor.
|
||
|
*
|
||
|
* @param function The coroutine function. The function must have the signature:
|
||
|
* @code void function(yield_context yield); @endcode
|
||
|
*
|
||
|
* @param attributes Boost.Coroutine attributes used to customise the coroutine.
|
||
|
*/
|
||
|
template <typename Function, typename Executor>
|
||
|
void spawn(const Executor& ex,
|
||
|
ASIO_MOVE_ARG(Function) function,
|
||
|
const boost::coroutines::attributes& attributes
|
||
|
= boost::coroutines::attributes(),
|
||
|
typename constraint<
|
||
|
is_executor<Executor>::value || execution::is_executor<Executor>::value
|
||
|
>::type = 0);
|
||
|
|
||
|
/// (Deprecated: Use overloads with a completion token.) Start a new stackful
|
||
|
/// coroutine that executes on a given strand.
|
||
|
/**
|
||
|
* This function is used to launch a new coroutine.
|
||
|
*
|
||
|
* @param ex Identifies the strand that will run the coroutine.
|
||
|
*
|
||
|
* @param function The coroutine function. The function must have the signature:
|
||
|
* @code void function(yield_context yield); @endcode
|
||
|
*
|
||
|
* @param attributes Boost.Coroutine attributes used to customise the coroutine.
|
||
|
*/
|
||
|
template <typename Function, typename Executor>
|
||
|
void spawn(const strand<Executor>& ex,
|
||
|
ASIO_MOVE_ARG(Function) function,
|
||
|
const boost::coroutines::attributes& attributes
|
||
|
= boost::coroutines::attributes());
|
||
|
|
||
|
#if !defined(ASIO_NO_TS_EXECUTORS)
|
||
|
|
||
|
/// (Deprecated: Use overloads with a completion token.) Start a new stackful
|
||
|
/// coroutine that executes in the context of a strand.
|
||
|
/**
|
||
|
* This function is used to launch a new coroutine.
|
||
|
*
|
||
|
* @param s Identifies a strand. By starting multiple coroutines on the same
|
||
|
* strand, the implementation ensures that none of those coroutines can execute
|
||
|
* simultaneously.
|
||
|
*
|
||
|
* @param function The coroutine function. The function must have the signature:
|
||
|
* @code void function(yield_context yield); @endcode
|
||
|
*
|
||
|
* @param attributes Boost.Coroutine attributes used to customise the coroutine.
|
||
|
*/
|
||
|
template <typename Function>
|
||
|
void spawn(const asio::io_context::strand& s,
|
||
|
ASIO_MOVE_ARG(Function) function,
|
||
|
const boost::coroutines::attributes& attributes
|
||
|
= boost::coroutines::attributes());
|
||
|
|
||
|
#endif // !defined(ASIO_NO_TS_EXECUTORS)
|
||
|
|
||
|
/// (Deprecated: Use overloads with a completion token.) Start a new stackful
|
||
|
/// coroutine that executes on a given execution context.
|
||
|
/**
|
||
|
* This function is used to launch a new coroutine.
|
||
|
*
|
||
|
* @param ctx Identifies the execution context that will run the coroutine. The
|
||
|
* new coroutine is implicitly given its own strand within this execution
|
||
|
* context.
|
||
|
*
|
||
|
* @param function The coroutine function. The function must have the signature:
|
||
|
* @code void function(yield_context yield); @endcode
|
||
|
*
|
||
|
* @param attributes Boost.Coroutine attributes used to customise the coroutine.
|
||
|
*/
|
||
|
template <typename Function, typename ExecutionContext>
|
||
|
void spawn(ExecutionContext& ctx,
|
||
|
ASIO_MOVE_ARG(Function) function,
|
||
|
const boost::coroutines::attributes& attributes
|
||
|
= boost::coroutines::attributes(),
|
||
|
typename constraint<is_convertible<
|
||
|
ExecutionContext&, execution_context&>::value>::type = 0);
|
||
|
|
||
|
#endif // defined(ASIO_HAS_BOOST_COROUTINE)
|
||
|
// || defined(GENERATING_DOCUMENTATION)
|
||
|
|
||
|
/*@}*/
|
||
|
|
||
|
} // namespace asio
|
||
|
|
||
|
#include "asio/detail/pop_options.hpp"
|
||
|
|
||
|
#include "asio/impl/spawn.hpp"
|
||
|
|
||
|
#endif // ASIO_SPAWN_HPP
|