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include/asio/bind_immediate_executor.hpp
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623
include/asio/bind_immediate_executor.hpp
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//
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// bind_immediate_executor.hpp
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// ~~~~~~~~~~~~~~~~~~~~~~~~~~~
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//
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// Copyright (c) 2003-2025 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_BIND_IMMEDIATE_EXECUTOR_HPP
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#define ASIO_BIND_IMMEDIATE_EXECUTOR_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/associated_executor.hpp"
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#include "asio/associated_immediate_executor.hpp"
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#include "asio/associator.hpp"
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#include "asio/async_result.hpp"
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#include "asio/detail/initiation_base.hpp"
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#include "asio/detail/type_traits.hpp"
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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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// Helper to automatically define nested typedef result_type.
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template <typename T, typename = void>
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struct immediate_executor_binder_result_type
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{
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protected:
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typedef void result_type_or_void;
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};
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template <typename T>
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struct immediate_executor_binder_result_type<T, void_t<typename T::result_type>>
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{
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typedef typename T::result_type result_type;
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protected:
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typedef result_type result_type_or_void;
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};
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template <typename R>
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struct immediate_executor_binder_result_type<R(*)()>
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{
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typedef R result_type;
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protected:
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typedef result_type result_type_or_void;
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};
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template <typename R>
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struct immediate_executor_binder_result_type<R(&)()>
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{
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typedef R result_type;
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protected:
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typedef result_type result_type_or_void;
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};
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template <typename R, typename A1>
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struct immediate_executor_binder_result_type<R(*)(A1)>
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{
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typedef R result_type;
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protected:
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typedef result_type result_type_or_void;
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};
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template <typename R, typename A1>
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struct immediate_executor_binder_result_type<R(&)(A1)>
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{
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typedef R result_type;
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protected:
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typedef result_type result_type_or_void;
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};
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template <typename R, typename A1, typename A2>
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struct immediate_executor_binder_result_type<R(*)(A1, A2)>
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{
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typedef R result_type;
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protected:
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typedef result_type result_type_or_void;
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};
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template <typename R, typename A1, typename A2>
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struct immediate_executor_binder_result_type<R(&)(A1, A2)>
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{
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typedef R result_type;
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protected:
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typedef result_type result_type_or_void;
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};
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// Helper to automatically define nested typedef argument_type.
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template <typename T, typename = void>
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struct immediate_executor_binder_argument_type {};
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template <typename T>
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struct immediate_executor_binder_argument_type<T,
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void_t<typename T::argument_type>>
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{
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typedef typename T::argument_type argument_type;
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};
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template <typename R, typename A1>
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struct immediate_executor_binder_argument_type<R(*)(A1)>
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{
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typedef A1 argument_type;
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};
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template <typename R, typename A1>
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struct immediate_executor_binder_argument_type<R(&)(A1)>
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{
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typedef A1 argument_type;
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};
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// Helper to automatically define nested typedefs first_argument_type and
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// second_argument_type.
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template <typename T, typename = void>
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struct immediate_executor_binder_argument_types {};
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template <typename T>
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struct immediate_executor_binder_argument_types<T,
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void_t<typename T::first_argument_type>>
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{
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typedef typename T::first_argument_type first_argument_type;
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typedef typename T::second_argument_type second_argument_type;
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};
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template <typename R, typename A1, typename A2>
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struct immediate_executor_binder_argument_type<R(*)(A1, A2)>
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{
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typedef A1 first_argument_type;
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typedef A2 second_argument_type;
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};
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template <typename R, typename A1, typename A2>
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struct immediate_executor_binder_argument_type<R(&)(A1, A2)>
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{
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typedef A1 first_argument_type;
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typedef A2 second_argument_type;
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};
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} // namespace detail
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/// A call wrapper type to bind a immediate executor of type @c Executor
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/// to an object of type @c T.
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template <typename T, typename Executor>
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class immediate_executor_binder
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#if !defined(GENERATING_DOCUMENTATION)
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: public detail::immediate_executor_binder_result_type<T>,
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public detail::immediate_executor_binder_argument_type<T>,
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public detail::immediate_executor_binder_argument_types<T>
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#endif // !defined(GENERATING_DOCUMENTATION)
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{
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public:
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/// The type of the target object.
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typedef T target_type;
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/// The type of the associated immediate executor.
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typedef Executor immediate_executor_type;
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#if defined(GENERATING_DOCUMENTATION)
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/// The return type if a function.
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/**
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* The type of @c result_type is based on the type @c T of the wrapper's
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* target object:
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*
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* @li if @c T is a pointer to function type, @c result_type is a synonym for
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* the return type of @c T;
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*
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* @li if @c T is a class type with a member type @c result_type, then @c
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* result_type is a synonym for @c T::result_type;
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*
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* @li otherwise @c result_type is not defined.
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*/
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typedef see_below result_type;
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/// The type of the function's argument.
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/**
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* The type of @c argument_type is based on the type @c T of the wrapper's
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* target object:
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*
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* @li if @c T is a pointer to a function type accepting a single argument,
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* @c argument_type is a synonym for the return type of @c T;
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*
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* @li if @c T is a class type with a member type @c argument_type, then @c
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* argument_type is a synonym for @c T::argument_type;
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*
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* @li otherwise @c argument_type is not defined.
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*/
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typedef see_below argument_type;
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/// The type of the function's first argument.
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/**
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* The type of @c first_argument_type is based on the type @c T of the
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* wrapper's target object:
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*
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* @li if @c T is a pointer to a function type accepting two arguments, @c
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* first_argument_type is a synonym for the return type of @c T;
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*
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* @li if @c T is a class type with a member type @c first_argument_type,
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* then @c first_argument_type is a synonym for @c T::first_argument_type;
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*
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* @li otherwise @c first_argument_type is not defined.
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*/
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typedef see_below first_argument_type;
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/// The type of the function's second argument.
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/**
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* The type of @c second_argument_type is based on the type @c T of the
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* wrapper's target object:
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*
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* @li if @c T is a pointer to a function type accepting two arguments, @c
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* second_argument_type is a synonym for the return type of @c T;
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*
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* @li if @c T is a class type with a member type @c first_argument_type,
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* then @c second_argument_type is a synonym for @c T::second_argument_type;
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*
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* @li otherwise @c second_argument_type is not defined.
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*/
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typedef see_below second_argument_type;
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#endif // defined(GENERATING_DOCUMENTATION)
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/// Construct a immediate executor wrapper for the specified object.
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/**
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* This constructor is only valid if the type @c T is constructible from type
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* @c U.
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*/
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template <typename U>
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immediate_executor_binder(const immediate_executor_type& e,
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U&& u)
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: executor_(e),
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target_(static_cast<U&&>(u))
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{
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}
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/// Copy constructor.
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immediate_executor_binder(const immediate_executor_binder& other)
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: executor_(other.get_immediate_executor()),
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target_(other.get())
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{
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}
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/// Construct a copy, but specify a different immediate executor.
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immediate_executor_binder(const immediate_executor_type& e,
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const immediate_executor_binder& other)
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: executor_(e),
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target_(other.get())
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{
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}
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/// Construct a copy of a different immediate executor wrapper type.
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/**
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* This constructor is only valid if the @c Executor type is
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* constructible from type @c OtherExecutor, and the type @c T is
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* constructible from type @c U.
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*/
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template <typename U, typename OtherExecutor>
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immediate_executor_binder(
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const immediate_executor_binder<U, OtherExecutor>& other,
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constraint_t<is_constructible<Executor, OtherExecutor>::value> = 0,
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constraint_t<is_constructible<T, U>::value> = 0)
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: executor_(other.get_immediate_executor()),
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target_(other.get())
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{
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}
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/// Construct a copy of a different immediate executor wrapper type, but
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/// specify a different immediate executor.
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/**
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* This constructor is only valid if the type @c T is constructible from type
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* @c U.
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*/
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template <typename U, typename OtherExecutor>
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immediate_executor_binder(const immediate_executor_type& e,
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const immediate_executor_binder<U, OtherExecutor>& other,
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constraint_t<is_constructible<T, U>::value> = 0)
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: executor_(e),
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target_(other.get())
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{
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}
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/// Move constructor.
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immediate_executor_binder(immediate_executor_binder&& other)
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: executor_(static_cast<immediate_executor_type&&>(
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other.get_immediate_executor())),
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target_(static_cast<T&&>(other.get()))
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{
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}
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/// Move construct the target object, but specify a different immediate
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/// executor.
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immediate_executor_binder(const immediate_executor_type& e,
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immediate_executor_binder&& other)
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: executor_(e),
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target_(static_cast<T&&>(other.get()))
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{
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}
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/// Move construct from a different immediate executor wrapper type.
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template <typename U, typename OtherExecutor>
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immediate_executor_binder(
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immediate_executor_binder<U, OtherExecutor>&& other,
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constraint_t<is_constructible<Executor, OtherExecutor>::value> = 0,
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constraint_t<is_constructible<T, U>::value> = 0)
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: executor_(static_cast<OtherExecutor&&>(
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other.get_immediate_executor())),
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target_(static_cast<U&&>(other.get()))
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{
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}
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/// Move construct from a different immediate executor wrapper type, but
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/// specify a different immediate executor.
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template <typename U, typename OtherExecutor>
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immediate_executor_binder(const immediate_executor_type& e,
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immediate_executor_binder<U, OtherExecutor>&& other,
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constraint_t<is_constructible<T, U>::value> = 0)
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: executor_(e),
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target_(static_cast<U&&>(other.get()))
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{
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}
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/// Destructor.
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~immediate_executor_binder()
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{
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}
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/// Obtain a reference to the target object.
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target_type& get() noexcept
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{
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return target_;
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}
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/// Obtain a reference to the target object.
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const target_type& get() const noexcept
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{
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return target_;
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}
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/// Obtain the associated immediate executor.
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immediate_executor_type get_immediate_executor() const noexcept
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{
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return executor_;
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}
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/// Forwarding function call operator.
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template <typename... Args>
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result_of_t<T(Args...)> operator()(Args&&... args) &
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{
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return target_(static_cast<Args&&>(args)...);
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}
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/// Forwarding function call operator.
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template <typename... Args>
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result_of_t<T(Args...)> operator()(Args&&... args) &&
|
||||
{
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return static_cast<T&&>(target_)(static_cast<Args&&>(args)...);
|
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}
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/// Forwarding function call operator.
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template <typename... Args>
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result_of_t<T(Args...)> operator()(Args&&... args) const&
|
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{
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return target_(static_cast<Args&&>(args)...);
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}
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private:
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Executor executor_;
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T target_;
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};
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/// A function object type that adapts a @ref completion_token to specify that
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/// the completion handler should have the supplied executor as its associated
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/// immediate executor.
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/**
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* May also be used directly as a completion token, in which case it adapts the
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* asynchronous operation's default completion token (or asio::deferred
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* if no default is available).
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||||
*/
|
||||
template <typename Executor>
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struct partial_immediate_executor_binder
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||||
{
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/// Constructor that specifies associated executor.
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explicit partial_immediate_executor_binder(const Executor& ex)
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: executor_(ex)
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{
|
||||
}
|
||||
|
||||
/// Adapt a @ref completion_token to specify that the completion handler
|
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/// should have the executor as its associated immediate executor.
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template <typename CompletionToken>
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ASIO_NODISCARD inline
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constexpr immediate_executor_binder<decay_t<CompletionToken>, Executor>
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operator()(CompletionToken&& completion_token) const
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{
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return immediate_executor_binder<decay_t<CompletionToken>, Executor>(
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static_cast<CompletionToken&&>(completion_token), executor_);
|
||||
}
|
||||
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||||
//private:
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||||
Executor executor_;
|
||||
};
|
||||
|
||||
/// Create a partial completion token that associates an executor.
|
||||
template <typename Executor>
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ASIO_NODISCARD inline partial_immediate_executor_binder<Executor>
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bind_immediate_executor(const Executor& ex)
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||||
{
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||||
return partial_immediate_executor_binder<Executor>(ex);
|
||||
}
|
||||
|
||||
/// Associate an object of type @c T with a immediate executor of type
|
||||
/// @c Executor.
|
||||
template <typename Executor, typename T>
|
||||
ASIO_NODISCARD inline immediate_executor_binder<decay_t<T>, Executor>
|
||||
bind_immediate_executor(const Executor& e, T&& t)
|
||||
{
|
||||
return immediate_executor_binder<
|
||||
decay_t<T>, Executor>(
|
||||
e, static_cast<T&&>(t));
|
||||
}
|
||||
|
||||
#if !defined(GENERATING_DOCUMENTATION)
|
||||
|
||||
namespace detail {
|
||||
|
||||
template <typename TargetAsyncResult, typename Executor, typename = void>
|
||||
class immediate_executor_binder_completion_handler_async_result
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||||
{
|
||||
public:
|
||||
template <typename T>
|
||||
explicit immediate_executor_binder_completion_handler_async_result(T&)
|
||||
{
|
||||
}
|
||||
};
|
||||
|
||||
template <typename TargetAsyncResult, typename Executor>
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||||
class immediate_executor_binder_completion_handler_async_result<
|
||||
TargetAsyncResult, Executor,
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||||
void_t<
|
||||
typename TargetAsyncResult::completion_handler_type
|
||||
>>
|
||||
{
|
||||
private:
|
||||
TargetAsyncResult target_;
|
||||
|
||||
public:
|
||||
typedef immediate_executor_binder<
|
||||
typename TargetAsyncResult::completion_handler_type, Executor>
|
||||
completion_handler_type;
|
||||
|
||||
explicit immediate_executor_binder_completion_handler_async_result(
|
||||
typename TargetAsyncResult::completion_handler_type& handler)
|
||||
: target_(handler)
|
||||
{
|
||||
}
|
||||
|
||||
auto get() -> decltype(target_.get())
|
||||
{
|
||||
return target_.get();
|
||||
}
|
||||
};
|
||||
|
||||
template <typename TargetAsyncResult, typename = void>
|
||||
struct immediate_executor_binder_async_result_return_type
|
||||
{
|
||||
};
|
||||
|
||||
template <typename TargetAsyncResult>
|
||||
struct immediate_executor_binder_async_result_return_type<
|
||||
TargetAsyncResult,
|
||||
void_t<
|
||||
typename TargetAsyncResult::return_type
|
||||
>>
|
||||
{
|
||||
typedef typename TargetAsyncResult::return_type return_type;
|
||||
};
|
||||
|
||||
} // namespace detail
|
||||
|
||||
template <typename T, typename Executor, typename Signature>
|
||||
class async_result<immediate_executor_binder<T, Executor>, Signature> :
|
||||
public detail::immediate_executor_binder_completion_handler_async_result<
|
||||
async_result<T, Signature>, Executor>,
|
||||
public detail::immediate_executor_binder_async_result_return_type<
|
||||
async_result<T, Signature>>
|
||||
{
|
||||
public:
|
||||
explicit async_result(immediate_executor_binder<T, Executor>& b)
|
||||
: detail::immediate_executor_binder_completion_handler_async_result<
|
||||
async_result<T, Signature>, Executor>(b.get())
|
||||
{
|
||||
}
|
||||
|
||||
template <typename Initiation>
|
||||
struct init_wrapper : detail::initiation_base<Initiation>
|
||||
{
|
||||
using detail::initiation_base<Initiation>::initiation_base;
|
||||
|
||||
template <typename Handler, typename... Args>
|
||||
void operator()(Handler&& handler, const Executor& e, Args&&... args) &&
|
||||
{
|
||||
static_cast<Initiation&&>(*this)(
|
||||
immediate_executor_binder<
|
||||
decay_t<Handler>, Executor>(
|
||||
e, static_cast<Handler&&>(handler)),
|
||||
static_cast<Args&&>(args)...);
|
||||
}
|
||||
|
||||
template <typename Handler, typename... Args>
|
||||
void operator()(Handler&& handler,
|
||||
const Executor& e, Args&&... args) const &
|
||||
{
|
||||
static_cast<const Initiation&>(*this)(
|
||||
immediate_executor_binder<
|
||||
decay_t<Handler>, Executor>(
|
||||
e, static_cast<Handler&&>(handler)),
|
||||
static_cast<Args&&>(args)...);
|
||||
}
|
||||
};
|
||||
|
||||
template <typename Initiation, typename RawCompletionToken, typename... Args>
|
||||
static auto initiate(Initiation&& initiation,
|
||||
RawCompletionToken&& token, Args&&... args)
|
||||
-> decltype(
|
||||
async_initiate<
|
||||
conditional_t<
|
||||
is_const<remove_reference_t<RawCompletionToken>>::value, const T, T>,
|
||||
Signature>(
|
||||
declval<init_wrapper<decay_t<Initiation>>>(),
|
||||
token.get(), token.get_immediate_executor(),
|
||||
static_cast<Args&&>(args)...))
|
||||
{
|
||||
return async_initiate<
|
||||
conditional_t<
|
||||
is_const<remove_reference_t<RawCompletionToken>>::value, const T, T>,
|
||||
Signature>(
|
||||
init_wrapper<decay_t<Initiation>>(
|
||||
static_cast<Initiation&&>(initiation)),
|
||||
token.get(), token.get_immediate_executor(),
|
||||
static_cast<Args&&>(args)...);
|
||||
}
|
||||
|
||||
private:
|
||||
async_result(const async_result&) = delete;
|
||||
async_result& operator=(const async_result&) = delete;
|
||||
|
||||
async_result<T, Signature> target_;
|
||||
};
|
||||
|
||||
template <typename Executor, typename... Signatures>
|
||||
struct async_result<partial_immediate_executor_binder<Executor>, Signatures...>
|
||||
{
|
||||
template <typename Initiation, typename RawCompletionToken, typename... Args>
|
||||
static auto initiate(Initiation&& initiation,
|
||||
RawCompletionToken&& token, Args&&... args)
|
||||
-> decltype(
|
||||
async_initiate<Signatures...>(
|
||||
static_cast<Initiation&&>(initiation),
|
||||
immediate_executor_binder<
|
||||
default_completion_token_t<associated_executor_t<Initiation>>,
|
||||
Executor>(token.executor_,
|
||||
default_completion_token_t<associated_executor_t<Initiation>>{}),
|
||||
static_cast<Args&&>(args)...))
|
||||
{
|
||||
return async_initiate<Signatures...>(
|
||||
static_cast<Initiation&&>(initiation),
|
||||
immediate_executor_binder<
|
||||
default_completion_token_t<associated_executor_t<Initiation>>,
|
||||
Executor>(token.executor_,
|
||||
default_completion_token_t<associated_executor_t<Initiation>>{}),
|
||||
static_cast<Args&&>(args)...);
|
||||
}
|
||||
};
|
||||
|
||||
template <template <typename, typename> class Associator,
|
||||
typename T, typename Executor, typename DefaultCandidate>
|
||||
struct associator<Associator,
|
||||
immediate_executor_binder<T, Executor>,
|
||||
DefaultCandidate>
|
||||
: Associator<T, DefaultCandidate>
|
||||
{
|
||||
static typename Associator<T, DefaultCandidate>::type get(
|
||||
const immediate_executor_binder<T, Executor>& b) noexcept
|
||||
{
|
||||
return Associator<T, DefaultCandidate>::get(b.get());
|
||||
}
|
||||
|
||||
static auto get(const immediate_executor_binder<T, Executor>& b,
|
||||
const DefaultCandidate& c) noexcept
|
||||
-> decltype(Associator<T, DefaultCandidate>::get(b.get(), c))
|
||||
{
|
||||
return Associator<T, DefaultCandidate>::get(b.get(), c);
|
||||
}
|
||||
};
|
||||
|
||||
template <typename T, typename Executor, typename Executor1>
|
||||
struct associated_immediate_executor<
|
||||
immediate_executor_binder<T, Executor>,
|
||||
Executor1>
|
||||
{
|
||||
typedef Executor type;
|
||||
|
||||
static auto get(const immediate_executor_binder<T, Executor>& b,
|
||||
const Executor1& = Executor1()) noexcept
|
||||
-> decltype(b.get_immediate_executor())
|
||||
{
|
||||
return b.get_immediate_executor();
|
||||
}
|
||||
};
|
||||
|
||||
#endif // !defined(GENERATING_DOCUMENTATION)
|
||||
|
||||
} // namespace asio
|
||||
|
||||
#include "asio/detail/pop_options.hpp"
|
||||
|
||||
#endif // ASIO_BIND_IMMEDIATE_EXECUTOR_HPP
|
||||
Reference in New Issue
Block a user