// // executor_work_guard.hpp // ~~~~~~~~~~~~~~~~~~~~~~~ // // Copyright (c) 2003-2023 Christopher M. Kohlhoff (chris at kohlhoff dot com) // // Distributed under the Boost Software License, Version 1.0. (See accompanying // file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt) // #ifndef ASIO_EXECUTOR_WORK_GUARD_HPP #define ASIO_EXECUTOR_WORK_GUARD_HPP #if defined(_MSC_VER) && (_MSC_VER >= 1200) # pragma once #endif // defined(_MSC_VER) && (_MSC_VER >= 1200) #include "asio/detail/config.hpp" #include "asio/associated_executor.hpp" #include "asio/detail/type_traits.hpp" #include "asio/execution.hpp" #include "asio/is_executor.hpp" #include "asio/detail/push_options.hpp" namespace asio { #if !defined(ASIO_EXECUTOR_WORK_GUARD_DECL) #define ASIO_EXECUTOR_WORK_GUARD_DECL template class executor_work_guard; #endif // !defined(ASIO_EXECUTOR_WORK_GUARD_DECL) #if defined(GENERATING_DOCUMENTATION) /// An object of type @c executor_work_guard controls ownership of outstanding /// executor work within a scope. template class executor_work_guard { public: /// The underlying executor type. typedef Executor executor_type; /// Constructs a @c executor_work_guard object for the specified executor. /** * Stores a copy of @c e and calls on_work_started() on it. */ explicit executor_work_guard(const executor_type& e) ASIO_NOEXCEPT; /// Copy constructor. executor_work_guard(const executor_work_guard& other) ASIO_NOEXCEPT; /// Move constructor. executor_work_guard(executor_work_guard&& other) ASIO_NOEXCEPT; /// Destructor. /** * Unless the object has already been reset, or is in a moved-from state, * calls on_work_finished() on the stored executor. */ ~executor_work_guard(); /// Obtain the associated executor. executor_type get_executor() const ASIO_NOEXCEPT; /// Whether the executor_work_guard object owns some outstanding work. bool owns_work() const ASIO_NOEXCEPT; /// Indicate that the work is no longer outstanding. /** * Unless the object has already been reset, or is in a moved-from state, * calls on_work_finished() on the stored executor. */ void reset() ASIO_NOEXCEPT; }; #endif // defined(GENERATING_DOCUMENTATION) #if !defined(GENERATING_DOCUMENTATION) #if !defined(ASIO_NO_TS_EXECUTORS) template class executor_work_guard::value >::type> { public: typedef Executor executor_type; explicit executor_work_guard(const executor_type& e) ASIO_NOEXCEPT : executor_(e), owns_(true) { executor_.on_work_started(); } executor_work_guard(const executor_work_guard& other) ASIO_NOEXCEPT : executor_(other.executor_), owns_(other.owns_) { if (owns_) executor_.on_work_started(); } #if defined(ASIO_HAS_MOVE) executor_work_guard(executor_work_guard&& other) ASIO_NOEXCEPT : executor_(ASIO_MOVE_CAST(Executor)(other.executor_)), owns_(other.owns_) { other.owns_ = false; } #endif // defined(ASIO_HAS_MOVE) ~executor_work_guard() { if (owns_) executor_.on_work_finished(); } executor_type get_executor() const ASIO_NOEXCEPT { return executor_; } bool owns_work() const ASIO_NOEXCEPT { return owns_; } void reset() ASIO_NOEXCEPT { if (owns_) { executor_.on_work_finished(); owns_ = false; } } private: // Disallow assignment. executor_work_guard& operator=(const executor_work_guard&); executor_type executor_; bool owns_; }; #endif // !defined(ASIO_NO_TS_EXECUTORS) template class executor_work_guard::value >::type, typename enable_if< execution::is_executor::value >::type> { public: typedef Executor executor_type; explicit executor_work_guard(const executor_type& e) ASIO_NOEXCEPT : executor_(e), owns_(true) { new (&work_) work_type(asio::prefer(executor_, execution::outstanding_work.tracked)); } executor_work_guard(const executor_work_guard& other) ASIO_NOEXCEPT : executor_(other.executor_), owns_(other.owns_) { if (owns_) { new (&work_) work_type(asio::prefer(executor_, execution::outstanding_work.tracked)); } } #if defined(ASIO_HAS_MOVE) executor_work_guard(executor_work_guard&& other) ASIO_NOEXCEPT : executor_(ASIO_MOVE_CAST(Executor)(other.executor_)), owns_(other.owns_) { if (owns_) { new (&work_) work_type( ASIO_MOVE_CAST(work_type)( *static_cast( static_cast(&other.work_)))); other.owns_ = false; } } #endif // defined(ASIO_HAS_MOVE) ~executor_work_guard() { if (owns_) static_cast(static_cast(&work_))->~work_type(); } executor_type get_executor() const ASIO_NOEXCEPT { return executor_; } bool owns_work() const ASIO_NOEXCEPT { return owns_; } void reset() ASIO_NOEXCEPT { if (owns_) { static_cast(static_cast(&work_))->~work_type(); owns_ = false; } } private: // Disallow assignment. executor_work_guard& operator=(const executor_work_guard&); typedef typename decay< typename prefer_result< const executor_type&, execution::outstanding_work_t::tracked_t >::type >::type work_type; executor_type executor_; typename aligned_storage::value>::type work_; bool owns_; }; #endif // !defined(GENERATING_DOCUMENTATION) /// Create an @ref executor_work_guard object. /** * @param ex An executor. * * @returns A work guard constructed with the specified executor. */ template ASIO_NODISCARD inline executor_work_guard make_work_guard(const Executor& ex, typename constraint< is_executor::value || execution::is_executor::value >::type = 0) { return executor_work_guard(ex); } /// Create an @ref executor_work_guard object. /** * @param ctx An execution context, from which an executor will be obtained. * * @returns A work guard constructed with the execution context's executor, * obtained by performing ctx.get_executor(). */ template ASIO_NODISCARD inline executor_work_guard make_work_guard(ExecutionContext& ctx, typename constraint< is_convertible::value >::type = 0) { return executor_work_guard( ctx.get_executor()); } /// Create an @ref executor_work_guard object. /** * @param t An arbitrary object, such as a completion handler, for which the * associated executor will be obtained. * * @returns A work guard constructed with the associated executor of the object * @c t, which is obtained as if by calling get_associated_executor(t). */ template ASIO_NODISCARD inline executor_work_guard< typename constraint< !is_executor::value && !execution::is_executor::value && !is_convertible::value, associated_executor >::type::type> make_work_guard(const T& t) { return executor_work_guard::type>( associated_executor::get(t)); } /// Create an @ref executor_work_guard object. /** * @param t An arbitrary object, such as a completion handler, for which the * associated executor will be obtained. * * @param ex An executor to be used as the candidate object when determining the * associated executor. * * @returns A work guard constructed with the associated executor of the object * @c t, which is obtained as if by calling get_associated_executor(t, * ex). */ template ASIO_NODISCARD inline executor_work_guard::type> make_work_guard(const T& t, const Executor& ex, typename constraint< is_executor::value || execution::is_executor::value >::type = 0) { return executor_work_guard::type>( associated_executor::get(t, ex)); } /// Create an @ref executor_work_guard object. /** * @param t An arbitrary object, such as a completion handler, for which the * associated executor will be obtained. * * @param ctx An execution context, from which an executor is obtained to use as * the candidate object for determining the associated executor. * * @returns A work guard constructed with the associated executor of the object * @c t, which is obtained as if by calling get_associated_executor(t, * ctx.get_executor()). */ template ASIO_NODISCARD inline executor_work_guard::type> make_work_guard(const T& t, ExecutionContext& ctx, typename constraint< !is_executor::value >::type = 0, typename constraint< !execution::is_executor::value >::type = 0, typename constraint< !is_convertible::value >::type = 0, typename constraint< is_convertible::value >::type = 0) { return executor_work_guard::type>( associated_executor::get( t, ctx.get_executor())); } } // namespace asio #include "asio/detail/pop_options.hpp" #endif // ASIO_EXECUTOR_WORK_GUARD_HPP